Document ID: 1YHT905410A

Supported product release information

Note: This parameter list is the maximum set of parameters available for 620 series IED products. Parameter shown here are not available in each variant. Always use the parameter list delivered with the corresponding product connectivity package to see which parameters are available in each release and product. Please see the Application Manual for more information about the functions used in the products.

Explanations of tables

IEC 61850 Function IEC 61850 name
IEC 60617 Function IEC 60617 name
ANSI of function ANSI name
Category INP=input; OUT=Output; CFG=Configuration; SET=Settings; MON=Monitoring; CTR=Control; TES=Test; INF=Information; VER=Version
IECName Complete 61850 name of the data attribute (excluding the IED name)
CDC Common data class of the data object according the IEC 61850-7-3
Type Data attribute type (maximum length for strings)
FC Functional constraint acording the IEC 61850: ST=Status, MX=Measurement, CO=Control, SP=Setting; SG=Setting group, CF=Configuration, EX=Extension
Access ED2=Edition 2 only, ED1 edition 1 only, B=Basic, A=Advanced, P=Protocol only, H=LHMI only, O=Operator R/W, E=Engineer R/W, A=Administrator R/W, C=Coldboot, I=Application parameter re-init, #=Dependent on the product variant
Default Default value of settings, inputs and version data, settings are in pu level
Dataset Event handling default dataset
Event Event handling: P=Protocol, H=LHMI, T=transient (no deactivation events)
CMT MB=Modbus, DN=DNP, I1=IEC101, I3=IEC103
Parameter name Parameter name in menus
Parameter desc Parameter help in menus/ tooltip in PCM
Parameter range Enumeration values; minimum and maximum in pu level
Menu path Complete menu path
Channel relation Relation to analog channel (if defined)

Protection LLN0

IEC 61850-7-4:2007
IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
Protection LLN0 INP LD0.LLN0.Act2SetGr.stVal SPC BOOLEAN ST B 0 SG_2_ACT Setting group 2 is active Monitoring\Setting group\Outputs
Protection LLN0 INP LD0.LLN0.Act3SetGr.stVal SPC BOOLEAN ST B 0 SG_3_ACT Setting group 3 is active Monitoring\Setting group\Outputs
Protection LLN0 INP LD0.LLN0.Act4SetGr.stVal SPC BOOLEAN ST B 0 SG_4_ACT Setting group 4 is active Monitoring\Setting group\Outputs
Protection LLN0 INP LD0.LLN0.Act5SetGr.stVal SPC BOOLEAN ST B 0 SG_5_ACT Setting group 5 is active Monitoring\Setting group\Outputs
Protection LLN0 INP LD0.LLN0.Act6SetGr.stVal SPC BOOLEAN ST B 0 SG_6_ACT Setting group 6 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act1SetGr.stVal SPC BOOLEAN ST B SG_1_ACT Setting group 1 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act2SetGr.stVal SPC BOOLEAN ST B 0 SG_2_ACT Setting group 2 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act3SetGr.stVal SPC BOOLEAN ST B 0 SG_3_ACT Setting group 3 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act4SetGr.stVal SPC BOOLEAN ST B 0 SG_4_ACT Setting group 4 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act5SetGr.stVal SPC BOOLEAN ST B 0 SG_5_ACT Setting group 5 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.Act6SetGr.stVal SPC BOOLEAN ST B 0 SG_6_ACT Setting group 6 is active Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.LgcSelSetGr.stVal SPC BOOLEAN ST ED2,B SG_LOGIC_SEL Logic selection for setting group Monitoring\Setting group\Outputs
Protection LLN0 OUT LD0.LLN0.LgcSelGr.stVal SPC BOOLEAN ST ED1 SG_LOGIC_SEL Logic selection for setting group Monitoring\Setting group\Outputs
Protection LLN0 CTR LD0.LLN0.IndLEDRs.Oper.ctlVal SPC BOOLEAN CO B 0 Indications and LEDs Clear indication LEDs and texts 0=Cancel; 1=Clear Clear\Clear
Protection LLN0 CTR LD0.LLN0.ProgLEDRs.Oper.ctlVal SPC BOOLEAN CO B 0 Programmable LEDs Clear programmable LEDs 0=Cancel; 1=Clear Clear\Clear
Protection LLN0 CTR LD0.LLN0.MeasStatRs.Oper.ctlVal SPC BOOLEAN CO B 0 Metering records Reset meterering minimum and maximum recorded data 0=Cancel; 1=Clear Clear\Clear
Protection LLN0 CTR LD0.LLN0.PQRs.Oper.ctlVal SPC BOOLEAN CO B 0 Power quality data Reset all power quality data 0=Cancel; 1=Clear Clear\Clear
Protection LLN0 CTR LD0.LLN0.ActSetGr.Oper.ctlVal INC INT32 CO (Active setting group)
Device CTR LD0.LDEV1.ChgFlg.Oper.ctlVal INC INT32 CO (Composition has changed)
Device CTR LD0.LDEV1.WrmStrCmd.Oper.ctlVal SPC BOOLEAN CO B 0 Software reset Reset of IED 0=Cancel; 1=Activate Configuration\General
Device CTR BOOLEAN B,H 0 Factory setting Restore Factory settings 0=Cancel; 1=Activate Configuration\General
Device CTR LD0.LDEV1.EvtLstClr.Oper.ctlVal SPC BOOLEAN CO B 0 Events Clear events in HMI 0=Cancel; 1=Clear Clear\Clear
Protection LLN0 MON LD0.LLN0.Beh.stVal ENS Enum ST StatIed P,H (Behaviour) 1=on2=blocked3=test4=test/blocked5=off
Protection LLN0 MON LD0.LLN0.NamPlt.paramRev LPL INT32 ST StatIed P,H (Name plate)
Protection LLN0 MON LD0.LLN0.NamPlt.valRev LPL INT32 ST StatIed P,H (Name plate)
Protection LLN0 MON LD0.LLN0.SvMaxDl.mag.f MV FLOAT32 MX B,# Max delay Maximum SMV delay during last minute -1000.00...1000.00 ms Monitoring\IED status\SMV traffic
Protection LLN0 MON LD0.LLN0.SvAvDl.mag.f MV FLOAT32 MX B,# Average delay Average SMV delay during last minute -1000.00...1000.00 ms Monitoring\IED status\SMV traffic
Protection LLN0 MON LD0.LLN0.ParChgCnt.stVal INS INT32 ST B Setting changes Number of setting changes 0...20000 Monitoring\IED status\Setting changes
Protection LLN0 MON LD0.LLN0.ParChgCnt.t INS Timestamp ST B Setting time Latest setting time Monitoring\IED status\Setting changes
Physical device MON LD0.LPHD1.PhyHealth.stVal ENS Enum ST StatIed P,H (General state) -2=Waiting-1=Test1=Ok2=Warning3=Alarm
Physical device MON LD0.LPHD1.PwrUp.stVal SPS BOOLEAN ST StatIed P,H (Power up detected)
Device MON LD0.LDEV1.WrmStrDet.stVal SPS BOOLEAN ST StatIed P,H (Warm start detected)
Device MON LD0.LDEV1.WacTrgDet.stVal SPS BOOLEAN ST StatIed P,H (Watchdog reset detected)
Device MON LD0.LDEV1.DevWrn.stVal ENS Enum ST B StatIed P,H Warning IED warning 1=All ok; 2=System; 5=Time synch error; 6=Over temperature; 10=Watchdog reset; 11=Power down det.; 20=IEC 61850 error; 21=Modbus error; 22=DNP3 error; 23=PNIO error; 24=Dataset error; 25=Report cont. error; 26=GOOSE contr. error; 27=SCL config error; 28=Logic error; 29=SMT logic error; 30=GOOSE input error; 31=ACT error; 32=GOOSE rec. error; 33=AFL error; 34=SMV error; 35=Comm. channel down; 40=Unack card comp.; 85=ARC1 cont. light; 86=ARC2 cont. light; 87=ARC3 cont. light; 50=Protection comm.; 96=RTD card error,X130; 106=RTD meas. error,X130; 112=UPD voltage low,X115; 113=UPS comm. error,X115; 114=UPS cmd fail,X115; 115=Breaker oper. fail; 90=RTD card error,X105; 91=RTD card error,X115; 92=RTD card error,X000; 93=RTD card error,X100; 94=RTD card error,X110; 95=RTD card error,X120; 100=RTD meas. error,X105; 101=RTD meas. error,X115; 102=RTD meas. error,X000; 103=RTD meas. error,X100; 104=RTD meas. error,X110; 105=RTD meas. error,X120 Monitoring\IED status\Self-supervision
Device MON LD0.LDEV1.DevFail.stVal ENS Enum ST B StatIed P,H Internal Fault IED internal fault 1=All ok; 2=System error; 3=Runtime app. error; 4=Runtime exec error; 7=File system error; 8=Test; 10=SW watchdog error; 11=Uaux error; 32=Settings error; 43=SO-relay(s),X100; 44=SO-relay(s),X110; 46=SO-relay(s),X130; 53=PO-relay(s),X100; 54=PO-relay(s),X110; 56=PO-relay(s),X130; 57=Light sensor error; 62=Conf.error,X000; 63=Conf.error,X100; 64=Conf.error,X110; 65=Conf.error,X120; 66=Conf.error,X130; 72=Card error,X000; 73=Card error,X100; 74=Card error,X110; 75=Card error,X120; 76=Card error,X130; 79=LHMI module; 80=RAM error; 81=ROM error; 82=EEPROM error; 83=FPGA error; 84=RTC error; 96=RTD card error,X130; 110=UPD card error,X115; 111=UPD self check,X115; 40=SO-relay(s),X105; 41=SO-relay(s),X115; 45=SO-relay(s),X120; 50=PO-relay(s),X105; 51=PO-relay(s),X115; 55=PO-relay(s),X120; 60=Conf.error,X105; 61=Conf.error,X115; 70=Card error,X105; 71=Card error,X115; 90=RTD card error,X105; 91=RTD card error,X115; 92=RTD card error,X000; 93=RTD card error,X100; 94=RTD card error,X110; 95=RTD card error,X120; 116=COM card error Monitoring\IED status\Self-supervision
Device MON LD0.LDEV1.ChgAckCnt.stVal INS INT32 ST A No of comp. changes Number of composition changes 0...100000 Monitoring\IED status\Composition changes
Device MON LD0.LDEV1.WrmStrCmd.t SPC Timestamp ST B Boot up time IED boot up time Monitoring\IED status\Self-supervision
Protection LLN0 CFG LD0.LLN0.OpModSetGr.setVal ENG Enum SP B 0 SG operation mode Operation mode for setting group change 0=Operator; 1=Logic mode 1; 2=Logic mode 2 Configuration\Setting group
Protection LLN0 CFG LD0.LLN0.SetSvMaxDl.setVal ENG Enum SP B,I,# 1 SMV Max Delay SMV Maximum allowed delay 0=1.90 1.58 ms; 1=3.15 2.62 ms; 2=4.40 3.67 ms; 3=5.65 4.71 ms; 4=6.90 5.75 ms Configuration\System
Customer information CFG LD0.LINF1.BayNam.setVal VSG VisString255 (20) SP ED2,B REx620 Bay name Bay name in system Configuration\System
Customer information CFG LD0.LINF1.NamPlt.eBayName LPL VisString255 (20) EX ED1 REx620 Bay name Bay name in system Configuration\System
Device CFG LD0.LDEV1.IPAddr.setVal VSG VisString255 (20) SP ED2,B,C 192.168.2.10 IP address IP address for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.NamPlt.eIp LPL VisString255 (20) EX ED1,C 192.168.2.10 IP address IP address for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.IPAddrSubNtw.setVal VSG VisString255 (20) SP ED2,B,C 255.255.255.0 Subnet mask Subnet mask for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.NamPlt.eIpSubNet LPL VisString255 (20) EX ED1,C 255.255.255.0 Subnet mask Subnet mask for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.IPAddrGtw.setVal VSG VisString255 (20) SP ED2,B,C 192.168.2.1 Default gateway Default gateway for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.NamPlt.eIpGateWay LPL VisString255 (20) EX ED1,C 192.168.2.1 Default gateway Default gateway for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.IPAddrFrt.setVal VSG VisString255 (20) SP ED2,B 192.168.0.254 IP address IP address for front port (fixed) Configuration\Communication\Ethernet\Front port
Device CFG LD0.LDEV1.NamPlt.eIpFront LPL VisString255 (20) EX ED1 192.168.0.254 IP address IP address for front port (fixed) Configuration\Communication\Ethernet\Front port
Device CFG LD0.LDEV1.Mac1.setVal VSG VisString255 (20) SP ED2,B XX-XX-XX-XX-XX-XX Mac address Mac address for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.NamPlt.eMacAddr LPL VisString255 (20) EX ED1 XX-XX-XX-XX-XX-XX Mac address Mac address for rear port(s) Configuration\Communication\Ethernet\Rear port(s)
Device CFG LD0.LDEV1.Mac2.setVal VSG VisString255 (20) SP ED2,B XX-XX-XX-XX-XX-XX Mac address Mac address for front port Configuration\Communication\Ethernet\Front port
Device CFG LD0.LDEV1.NamPlt.eMacAddr1 LPL VisString255 (20) EX ED1 XX-XX-XX-XX-XX-XX Mac address Mac address for front port Configuration\Communication\Ethernet\Front port
Device CFG LD0.LDEV1.WrmStrCmd.Oper.ctlVal SPC BOOLEAN CO B 0 Software reset Reset of IED 0=Cancel; 1=Activate Configuration\General
Device CFG BOOLEAN B,H 0 Factory setting Restore Factory settings 0=Cancel; 1=Activate Configuration\General
Device CFG LD0.LDEV1.BlkMod.setVal ENG Enum SP B 1 Blocking mode Behaviour for function BLOCK inputs 1=Freeze timer; 2=Block all; 3=Block OPERATE output Configuration\System
Device CFG LD0.LDEV1.HzSetSel.setVal ENG Enum SP B,I 1 Rated frequency Rated frequency of the network 1=50Hz; 2=60Hz Configuration\System
Device CFG LD0.LDEV1.PhRotSet.setVal ENG Enum SP B,I 1 Phase rotation Phase rotation order 1=ABC; 2=ACB Configuration\System
Device CFG LD0.LDEV1.DiVThres.setVal ING INT32 SP B,I 16 Threshold voltage Binary input threshold voltage 16...176 Vdc Configuration\I/O modules\Common settings
Device CFG LD0.LDEV1.DiOscThres.setVal ING INT32 SP A,I 30 Input osc. level Binary input oscillation suppression threshold 2...50 events/s Configuration\I/O modules\Common settings
Device CFG LD0.LDEV1.DiOscHys.setVal ING INT32 SP A,I 10 Input osc. hyst Binary input oscillation suppression hysteresis 2...50 events/s Configuration\I/O modules\Common settings
Device CFG LD0.LDEV1.PhOrdMod.setVal ENG Enum SP B,# 1 Phase order mode Selection for phase connection order 1=ABC; 2=BCA; 3=CAB; 4=ACB; 5=CBA; 6=BAC Configuration\System
Device CFG LD0.LDEV1.ACrvSatPnt.setMag.f ASG FLOAT32 SP A,I 50 IDMT Sat point Overcurrent IDMT saturation point 10...50 I/I> Configuration\System
Device CFG LD0.LDEV1.ADmdAvMod.setVal ENG Enum SP B,I 1 A demand Av mode Current demand calculation method 1=Linear; 2=Logarithmic Configuration\Measurements\Demand metering
Device CFG LD0.LDEV1.MtrDmdItrv.setVal ENG Enum SP B,I 0 Demand interval Interval for demand calculation 0=1 minute; 1=5 minutes; 2=10 minutes; 3=15 minutes; 4=30 minutes; 5=60 minutes; 6=180 minutes Configuration\Measurements\Demand metering
Device CFG LD0.LDEV1.LgtLivTm.setVal ING INT32 SP B 3 Backlight timeout LHMI backlight timeout 1...60 min Configuration\HMI
Device CFG LD0.LDEV1.TmFrm.setVal ENG Enum SP B 1 Time format Time format 1=24H:MM:SS:MS; 2=12H:MM:SS:MS Configuration\Time\System time
Device CFG LD0.LDEV1.DateFrm.setVal ENG Enum SP B 1 Date format Date format 1=DD.MM.YYYY; 2=DD/MM/YYYY; 3=DD-MM-YYYY; 4=MM.DD.YYYY; 5=MM/DD/YYYY; 6=YYYY-MM-DD; 7=YYYY-DD-MM; 8=YYYY/DD/MM Configuration\Time\System time
Device CFG LD0.LDEV1.NamConvn.setVal ENG Enum SP B 1 FB naming convention FB naming convention used in IED 1=IEC61850; 2=IEC60617; 3=IEC-ANSI Configuration\HMI
Device CFG LD0.LDEV1.DftVw.setVal ENG Enum SP B 1 Default view LHMI default view 1=Measurements; 2=Main menu; 3=SLD Configuration\HMI
Device CFG LD0.LDEV1.AcsMod.setVal ENG Enum SP B,H,C 3 Web HMI mode Web HMI functionality 1=Active read only; 2=Active; 3=Disabled Configuration\HMI
Device CFG LD0.LDEV1.ConnExpTm.setVal ING INT32 SP B 3 Web HMI timeout Web HMI login timeout 1...60 min Configuration\HMI
Device CFG LD0.LDEV1.SLDSymFrm.setVal ENG Enum SP B 1 SLD symbol format Single Line Diagram symbol format 1=IEC; 2=ANSI Configuration\HMI
Device CFG LD0.LDEV1.ScrDlTms.setVal ING INT32 SP B 0 Autoscroll delay Autoscroll delay for Measurements view 0...30 s Configuration\HMI
Device CFG LD0.LDEV1.ClsDlMod.setVal ENG Enum SP B 2 Close delay mode Selection for using delayed LHMI close 1=In use; 2=Not in use Configuration\Control\LHMI
Device CFG LD0.LDEV1.ClsDlTms.setVal ING INT32 SP B 60 Close delay Delay for close done from LHMI 5...900 s Configuration\Control\LHMI
Device CFG LD0.LDEV1.SetVsb.setVal ENG Enum SP B,H 2 Setting visibility Setting visibility for HMI 1=Basic; 2=Advanced Configuration\HMI
Protection LLN0 SET LD0.LLN0.SGCB.ActSG SGCB INT8U SP B 1 Active group Selected active group - -
Protection LLN0 SET LD0.LLN0.SGCB.EditSG SGCB INT8U SP B,A 1 Edit group Selected edit group - -
Protection LLN0 SET LD0.LLN0.SGCB.CnfEdit SGCB BOOLEAN SP B,A 0 Commit settings Commit or reject the edit copy - -
Protection LLN0 SET Enum B,H 1 Copy group 1 Copy setting group 1 values into selected group 1=Cancel; 2=Copy 1 into 2; 3=Copy 1 into 3; 4=Copy 1 into 4; 5=Copy 1 into 5; 6=Copy 1 into 6; 99=Copy 1 into all Settings\Setting group
Protection LLN0 TES LD0.LLN0.Mod.Oper.ctlVal ENC Enum CO B,I 1 Test mode Test mode 1=Normal mode; 2=IED blocked; 3=IED test; 4=IED test and blocked Tests\IED test
Device TES LD0.LDEV1.FailTest.Oper.ctlVal SPC BOOLEAN CO B,H 0 Internal fault test Internal fault test mode 0=Test off; 1=Test on Tests\IED test
Device TES LD0.LDEV1.ModRemCtl.setVal ENG Enum SP A,H 1 Remote test mode Authority for remote activation of test mode 1=Off; 2=Maintenance; 3=All levels Tests\IED test
Physical device INF LD0.LPHD1.PhyNam.hwRev DPL VisString255 (20) DC B X HW revision IED HW revision Information\Product identifiers
Physical device INF LD0.LPHD1.PhyNam.swRev DPL VisString255 (20) DC B X.X SW version IED SW version Information\Product identifiers
Physical device INF LD0.LPHD1.PhyNam.serNum DPL VisString255 (20) DC B 1XXXXXXXXXXX Serial number IED serial number Information\Product identifiers
Physical device INF LD0.LPHD1.PhyNam.model DPL VisString255 (20) DC B REx620 Type IED type Information\Product identifiers
Physical device INF LD0.LPHD1.PhyNam.name DPL VisString64 DC B TIGER Technical key Technical key set by tool Information\System identifiers
Customer information INF LD0.LINF1.CfgNam.setVal VSG VisString255 (20) SP ED2,B PC15 Configuration name IED configuration name Information\Product identifiers
Customer information INF LD0.LINF1.NamPlt.eConfName LPL VisString255 (20) EX ED1 PC15 Configuration name IED configuration name Information\Product identifiers
Customer information INF LD0.LINF1.DevRev.setVal VSG VisString255 (64) SP ED2,B 0 Product version Product version number Information\Product identifiers
Customer information INF LD0.LINF1.NamPlt.eDevRev LPL VisString255 (64) EX ED1 0 Product version Product version number Information\Product identifiers
Customer information INF LD0.LINF1.CstNam.setVal VSG VisString255 (64) SP ED2,B 0 Customer name Name of the customer Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eCustomer LPL VisString255 (64) EX ED1 0 Customer name Name of the customer Information\Site identifiers
Customer information INF LD0.LINF1.CstStNam.setVal VSG VisString255 (64) SP ED2,B 0 State Name of state Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eState LPL VisString255 (64) EX ED1 0 State Name of state Information\Site identifiers
Customer information INF LD0.LINF1.CstStreNam.setVal VSG VisString255 (64) SP ED2,B 0 Street Name of the street Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eStreet LPL VisString255 (64) EX ED1 0 Street Name of the street Information\Site identifiers
Customer information INF LD0.LINF1.CstHouNum.setVal VSG VisString255 (64) SP ED2,B 0 House number Number of the house Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eHouseNum LPL VisString255 (64) EX ED1 0 House number Number of the house Information\Site identifiers
Customer information INF LD0.LINF1.CstZip.setVal VSG VisString255 (20) SP ED2,B 0 ZIP/Postal code ZIP/Postal code Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eZip LPL VisString255 (20) EX ED1 0 ZIP/Postal code ZIP/Postal code Information\Site identifiers
Customer information INF LD0.LINF1.CstCityNam.setVal VSG VisString255 (64) SP ED2,B 0 City/Province City/Province Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eCity LPL VisString255 (64) EX ED1 0 City/Province City/Province Information\Site identifiers
Customer information INF LD0.LINF1.CstCntyNam.setVal VSG VisString255 (64) SP ED2,B 0 Country Name of the country Information\Site identifiers
Customer information INF LD0.LINF1.NamPlt.eCountry LPL VisString255 (64) EX ED1 0 Country Name of the country Information\Site identifiers
Customer information INF LD0.LINF1.CardNam.hwRev DPL VisString255 (20) DC B X HW revision Card HW revision Information\HW modules\Main board
Customer information INF LD0.LINF1.CardNam.swRev DPL VisString255 (20) DC B A SW version Card SW version Information\HW modules\Main board
Customer information INF LD0.LINF1.CardNam.serNum DPL VisString255 (20) DC B 1XXXXXXXXXXX Serial number Card serial number Information\HW modules\Main board
Customer information INF LD0.LINF1.CardNam.model DPL VisString255 (20) DC B 2RAAXXXXXX Article number IED article number Information\HW modules\Main board
Customer information INF LD0.LINF1.TestStaId.t VSS Timestamp ST ED2,B Test date Card test date Information\HW modules\Main board
Customer information INF LD0.LINF1.CardNam.eTestDate DPL VisString255 (20) EX ED1 Test date Card test date Information\HW modules\Main board
Customer information INF LD0.LINF1.HwId.t VSS Timestamp ST ED2,B Manufacturing date Card manufacturing date Information\HW modules\Main board
Customer information INF LD0.LINF1.CardNam.eManDate DPL VisString255 (20) EX ED1 Manufacturing date Card manufacturing date Information\HW modules\Main board
Device INF LD0.LDEV1.SwrNum.stVal VSS VisString255 (20) ST ED2,B SW number IED SW number Information\Product identifiers
Device INF LD0.LDEV1.NamPlt.eSwNum LPL VisString255 (20) EX ED1 SW number IED SW number Information\Product identifiers
Device INF LD0.LDEV1.SwrNum.t VSS Timestamp ST ED2,B SW date IED SW date Information\Product identifiers
Device INF LD0.LDEV1.NamPlt.eSwDate LPL VisString255 (20) EX ED1 SW date IED SW date Information\Product identifiers
Device INF LD0.LDEV1.OrdrNum.stVal VSS VisString255 (20) ST ED2,B Order code IED order code Information\Product identifiers
Device INF LD0.LDEV1.NamPlt.eOrdNum LPL VisString255 (64) EX ED1 Order code IED order code Information\Product identifiers
Device INF LD0.LDEV1.OrdrNum.t VSS Timestamp ST ED2,B Production date IED production date Information\Product identifiers
Device INF LD0.LDEV1.NamPlt.eProdDate LPL VisString255 (20) EX ED1 Production date IED production date Information\Product identifiers
Protection LLN0 VER LD0.LLN0.NamPlt.swRev LPL VisString255 (20) DC G (Name plate)
Protection LLN0 VER LD0.LLN0.NamPlt.ldNs LPL VisString255 (20) EX IEC 61850-7-4:2003 (Name plate)
Physical device VER LD0.LPHD1.PhyNam.swRev DPL VisString255 (20) DC B X.X SW version IED SW version Information\Product identifiers
Customer information VER LD0.LINF1.CardNam.swRev DPL VisString255 (20) DC B A SW version Card SW version Information\HW modules\Main board

Security application

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
Security application CFG BOOLEAN B,H,OR,ER,AW 1 Local override Disable authority Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRem.setVal SPG BOOLEAN SP B,OR,ER,AW 1 Remote override Disable authority Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthAcsLev.setVal ENG Enum SP A 1 Authority logging Authority logging level 1=None; 2=Configuration change; 3=Setting group; 4=Setting group, control; 5=Settings edit; 6=All Configuration\Authorization\Security
Security application CFG BOOLEAN A,H,OR,ER,AW 1 Secure Communication Secure Communication Configuration\Authorization\Security
Security application CFG LD0.GSAL1.RemUpdEna.setVal SPG BOOLEAN SP B,OR,ER,AW 0 Remote Update Remote update 0=Disable; 1=Enable Configuration\Authorization\Security
Security application CFG VisString255 (64) ED2,B,H 0 Local administrator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthLoc.pwdAdmin VisString255 (64) ED1,OR,ER,AW 0 Local administrator Set password Configuration\Authorization\Passwords
Security application CFG VisString255 (64) ED2,B,H 0 Local engineer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthLoc.pwdEng VisString255 (64) ED1,OR,ER,AW 0 Local engineer Set password Configuration\Authorization\Passwords
Security application CFG VisString255 (64) ED2,B,H 0 Local operator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthLoc.pwdOper VisString255 (64) ED1,OR,ER,AW 0 Local operator Set password Configuration\Authorization\Passwords
Security application CFG VisString255 (64) ED2,B,H 0 Local viewer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthLoc.pwdView VisString255 (64) ED1,OR,ER,AW 0 Local viewer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRemAdm.setVal VSG VisString255 (64) SP ED2,B 0 Remote administrator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRem.pwdAdmin SPG VisString255 (64) EX ED1,OR,ER,AW 0 Remote administrator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRemEng.setVal VSG VisString255 (64) SP ED2,B 0 Remote engineer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRem.pwdEng SPG VisString255 (64) EX ED1,OR,ER,AW 0 Remote engineer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRemOpr.setVal VSG VisString255 (64) SP ED2,B 0 Remote operator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRem.pwdOper SPG VisString255 (64) EX ED1,OR,ER,AW 0 Remote operator Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRemVw.setVal VSG VisString255 (64) SP ED2,B 0 Remote viewer Set password Configuration\Authorization\Passwords
Security application CFG LD0.GSAL1.AuthRem.pwdView SPG VisString255 (64) EX ED1,OR,ER,AW 0 Remote viewer Set password Configuration\Authorization\Passwords
Security application VER LD0.GSAL1.NamPlt.swRev LPL VisString255 (20) DC ED1 H (Name plate)

Device

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
Device INF LD0.IHMI1.CardNam.hwRev DPL VisString255 (20) DC B X HW revision Card HW revision Information\HW modules\LHMI
Device INF LD0.IHMI1.CardNam.swRev DPL VisString255 (20) DC B A SW version Card SW version Information\HW modules\LHMI
Device INF LD0.IHMI1.CardNam.serNum DPL VisString255 (20) DC B 1XXXXXXXXXXX Serial number Card serial number Information\HW modules\LHMI
Device INF LD0.IHMI1.CardNam.model DPL VisString255 (20) DC B 2RAAXXXXXX Article number LHMI article number Information\HW modules\LHMI
Device INF LD0.IHMI1.TestStaId.t VSS Timestamp ST ED2,B Test date Card test date Information\HW modules\LHMI
Device INF LD0.IHMI1.CardNam.eTestDate DPL VisString255 (20) EX ED1 Test date Card test date Information\HW modules\LHMI
Device INF LD0.IHMI1.HwId.t VSS Timestamp ST ED2,B Manufacturing date Card manufacturing date Information\HW modules\LHMI
Device INF LD0.IHMI1.CardNam.eManDate DPL VisString255 (20) EX ED1 Manufacturing date Card manufacturing date Information\HW modules\LHMI
Device VER LD0.IHMI1.NamPlt.swRev LPL VisString255 (20) DC ED1 H (Name plate)
Device VER LD0.IHMI1.CardNam.swRev DPL VisString255 (20) DC B A SW version Card SW version Information\HW modules\LHMI

X100 (PSM)

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO1.stVal SPC BOOLEAN ST B 0 StatIO P X100-PO1 Connectors 6-7 Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO2.stVal SPC BOOLEAN ST B 0 StatIO P X100-PO2 Connectors 8-9 Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO3.stVal SPC BOOLEAN ST B 0 StatIO P X100-SO1 Connectors 10c-11nc-12no Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO4.stVal SPC BOOLEAN ST B 0 StatIO P X100-SO2 Connectors 13c-14no Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO5.stVal SPC BOOLEAN ST B 0 StatIO P X100-PO3 Connectors 15-17/18-19 Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INP LD0.XGGIO100.SPCSO6.stVal SPC BOOLEAN ST B 0 StatIO P X100-PO4 Connectors 20-22/23-24 Monitoring\I/O status\Binary output values\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO1.Oper.ctlVal SPC BOOLEAN CO B 0 X100-PO1 Connectors 6-7 Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO2.Oper.ctlVal SPC BOOLEAN CO B 0 X100-PO2 Connectors 8-9 Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO3.Oper.ctlVal SPC BOOLEAN CO B 0 X100-SO1 Connectors 10c-11nc-12no Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO4.Oper.ctlVal SPC BOOLEAN CO B 0 X100-SO2 Connectors 13c-14no Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO5.Oper.ctlVal SPC BOOLEAN CO B 0 X100-PO3 Connectors 15-17/18-19 Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) TES LD0.XGGIO100.SPCSO6.Oper.ctlVal SPC BOOLEAN CO B 0 X100-PO4 Connectors 20-22/23-24 Tests\Binary outputs\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.CardNam.hwRev DPL VisString255 (20) DC B 0 HW revision Card HW revision Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.CardNam.serNum DPL VisString255 (20) DC B 0 Serial number Card serial number Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.CardNam.model DPL VisString255 (20) DC B 0 Article number Card article number Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.HwId.t VSS Timestamp ST ED2,B Manufacturing date Card manufacturing date Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.CardNam.eManDate DPL VisString255 (20) EX ED1 Manufacturing date Card manufacturing date Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.TestStaId.t VSS Timestamp ST ED2,B Test date Card test date Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) INF LD0.XGGIO100.CardNam.eTestDate DPL VisString255 (20) EX ED1 Test date Card test date Information\HW modules\X100 (PSM)
X100 (PSM) X100 (PSM) X100 (PSM) VER LD0.XGGIO100.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)
X100 (PSM) X100 (PSM) X100 (PSM) VER LD0.XGGIO100.CardNam.swRev DPL VisString255 (20) DC (Card information)

Programmable LEDs

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
Programmable LEDs INP LD0.LEDGGIO1.Alm1.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 1 Monitoring\Programmable LEDs\Inputs\LED 1
Programmable LEDs INP LD0.LEDGGIO1.Alm2.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 2 Monitoring\Programmable LEDs\Inputs\LED 2
Programmable LEDs INP LD0.LEDGGIO1.Alm3.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 3 Monitoring\Programmable LEDs\Inputs\LED 3
Programmable LEDs INP LD0.LEDGGIO1.Alm4.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 4 Monitoring\Programmable LEDs\Inputs\LED 4
Programmable LEDs INP LD0.LEDGGIO1.Alm5.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 5 Monitoring\Programmable LEDs\Inputs\LED 5
Programmable LEDs INP LD0.LEDGGIO1.Alm6.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 6 Monitoring\Programmable LEDs\Inputs\LED 6
Programmable LEDs INP LD0.LEDGGIO1.Alm7.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 7 Monitoring\Programmable LEDs\Inputs\LED 7
Programmable LEDs INP LD0.LEDGGIO1.Alm8.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 8 Monitoring\Programmable LEDs\Inputs\LED 8
Programmable LEDs INP LD0.LEDGGIO1.Alm9.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 9 Monitoring\Programmable LEDs\Inputs\LED 9
Programmable LEDs INP LD0.LEDGGIO1.Alm10.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 10 Monitoring\Programmable LEDs\Inputs\LED 10
Programmable LEDs INP LD0.LEDGGIO1.Alm11.stVal SPS BOOLEAN ST B 0 ALARM Alarm input for LED 11 Monitoring\Programmable LEDs\Inputs\LED 11
Programmable LEDs INP LD0.LEDGGIO1.Ind1.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 1 Monitoring\Programmable LEDs\Inputs\LED 1
Programmable LEDs INP LD0.LEDGGIO1.Ind2.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 2 Monitoring\Programmable LEDs\Inputs\LED 2
Programmable LEDs INP LD0.LEDGGIO1.Ind3.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 3 Monitoring\Programmable LEDs\Inputs\LED 3
Programmable LEDs INP LD0.LEDGGIO1.Ind4.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 4 Monitoring\Programmable LEDs\Inputs\LED 4
Programmable LEDs INP LD0.LEDGGIO1.Ind5.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 5 Monitoring\Programmable LEDs\Inputs\LED 5
Programmable LEDs INP LD0.LEDGGIO1.Ind6.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 6 Monitoring\Programmable LEDs\Inputs\LED 6
Programmable LEDs INP LD0.LEDGGIO1.Ind7.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 7 Monitoring\Programmable LEDs\Inputs\LED 7
Programmable LEDs INP LD0.LEDGGIO1.Ind8.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 8 Monitoring\Programmable LEDs\Inputs\LED 8
Programmable LEDs INP LD0.LEDGGIO1.Ind9.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 9 Monitoring\Programmable LEDs\Inputs\LED 9
Programmable LEDs INP LD0.LEDGGIO1.Ind10.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 10 Monitoring\Programmable LEDs\Inputs\LED 10
Programmable LEDs INP LD0.LEDGGIO1.Ind11.stVal SPS BOOLEAN ST B 0 OK Ok input for LED 11 Monitoring\Programmable LEDs\Inputs\LED 11
Programmable LEDs INP LD0.LEDGGIO1.InRsLED1.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 1 Monitoring\Programmable LEDs\Inputs\LED 1
Programmable LEDs INP LD0.LEDGGIO1.InRsLED2.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 2 Monitoring\Programmable LEDs\Inputs\LED 2
Programmable LEDs INP LD0.LEDGGIO1.InRsLED3.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 3 Monitoring\Programmable LEDs\Inputs\LED 3
Programmable LEDs INP LD0.LEDGGIO1.InRsLED4.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 4 Monitoring\Programmable LEDs\Inputs\LED 4
Programmable LEDs INP LD0.LEDGGIO1.InRsLED5.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 5 Monitoring\Programmable LEDs\Inputs\LED 5
Programmable LEDs INP LD0.LEDGGIO1.InRsLED6.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 6 Monitoring\Programmable LEDs\Inputs\LED 6
Programmable LEDs INP LD0.LEDGGIO1.InRsLED7.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 7 Monitoring\Programmable LEDs\Inputs\LED 7
Programmable LEDs INP LD0.LEDGGIO1.InRsLED8.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 8 Monitoring\Programmable LEDs\Inputs\LED 8
Programmable LEDs INP LD0.LEDGGIO1.InRsLED9.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 9 Monitoring\Programmable LEDs\Inputs\LED 9
Programmable LEDs INP LD0.LEDGGIO1.InRsLED10.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 10 Monitoring\Programmable LEDs\Inputs\LED 10
Programmable LEDs INP LD0.LEDGGIO1.InRsLED11.stVal SPS BOOLEAN ST B 0 RESET Reset input for LED 11 Monitoring\Programmable LEDs\Inputs\LED 11
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt1.Oper.ctlVal ENC INT32 CO (LED 1)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt2.Oper.ctlVal ENC INT32 CO (LED 2)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt3.Oper.ctlVal ENC INT32 CO (LED 3)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt4.Oper.ctlVal ENC INT32 CO (LED 4)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt5.Oper.ctlVal ENC INT32 CO (LED 5)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt6.Oper.ctlVal ENC INT32 CO (LED 6)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt7.Oper.ctlVal ENC INT32 CO (LED 7)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt8.Oper.ctlVal ENC INT32 CO (LED 8)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt9.Oper.ctlVal ENC INT32 CO (LED 9)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt10.Oper.ctlVal ENC INT32 CO (LED 10)
Programmable LEDs CTR LD0.LEDGGIO1.LEDSt11.Oper.ctlVal ENC INT32 CO (LED 11)
Programmable LEDs MON LD0.LEDGGIO1.LEDSt1.stVal ENC Enum ST B StatIO P Programmable LED 1 Status of programmable LED 1 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt2.stVal ENC Enum ST B StatIO P Programmable LED 2 Status of programmable LED 2 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt3.stVal ENC Enum ST B StatIO P Programmable LED 3 Status of programmable LED 3 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt4.stVal ENC Enum ST B StatIO P Programmable LED 4 Status of programmable LED 4 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt5.stVal ENC Enum ST B StatIO P Programmable LED 5 Status of programmable LED 5 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt6.stVal ENC Enum ST B StatIO P Programmable LED 6 Status of programmable LED 6 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt7.stVal ENC Enum ST B StatIO P Programmable LED 7 Status of programmable LED 7 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt8.stVal ENC Enum ST B StatIO P Programmable LED 8 Status of programmable LED 8 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt9.stVal ENC Enum ST B StatIO P Programmable LED 9 Status of programmable LED 9 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt10.stVal ENC Enum ST B StatIO P Programmable LED 10 Status of programmable LED 10 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs MON LD0.LEDGGIO1.LEDSt11.stVal ENC Enum ST B StatIO P Programmable LED 11 Status of programmable LED 11 0=None; 1=Ok; 3=Alarm Monitoring\Programmable LEDs\Monitored data
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt1.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 1 Description Programmable LED description Configuration\Programmable LEDs\LED 1
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt1.d ENC VisString255 (64) DC Programmable LEDs LED 1 Description Programmable LED description Configuration\Programmable LEDs\LED 1
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt2.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 2 Description Programmable LED description Configuration\Programmable LEDs\LED 2
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt2.d ENC VisString255 (64) DC Programmable LEDs LED 2 Description Programmable LED description Configuration\Programmable LEDs\LED 2
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt3.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 3 Description Programmable LED description Configuration\Programmable LEDs\LED 3
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt3.d ENC VisString255 (64) DC Programmable LEDs LED 3 Description Programmable LED description Configuration\Programmable LEDs\LED 3
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt4.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 4 Description Programmable LED description Configuration\Programmable LEDs\LED 4
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt4.d ENC VisString255 (64) DC Programmable LEDs LED 4 Description Programmable LED description Configuration\Programmable LEDs\LED 4
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt5.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 5 Description Programmable LED description Configuration\Programmable LEDs\LED 5
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt5.d ENC VisString255 (64) DC Programmable LEDs LED 5 Description Programmable LED description Configuration\Programmable LEDs\LED 5
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt6.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 6 Description Programmable LED description Configuration\Programmable LEDs\LED 6
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt6.d ENC VisString255 (64) DC Programmable LEDs LED 6 Description Programmable LED description Configuration\Programmable LEDs\LED 6
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt7.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 7 Description Programmable LED description Configuration\Programmable LEDs\LED 7
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt7.d ENC VisString255 (64) DC Programmable LEDs LED 7 Description Programmable LED description Configuration\Programmable LEDs\LED 7
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt8.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 8 Description Programmable LED description Configuration\Programmable LEDs\LED 8
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt8.d ENC VisString255 (64) DC Programmable LEDs LED 8 Description Programmable LED description Configuration\Programmable LEDs\LED 8
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt9.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 9 Description Programmable LED description Configuration\Programmable LEDs\LED 9
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt9.d ENC VisString255 (64) DC Programmable LEDs LED 9 Description Programmable LED description Configuration\Programmable LEDs\LED 9
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt10.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 10 Description Programmable LED description Configuration\Programmable LEDs\LED 10
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt10.d ENC VisString255 (64) DC Programmable LEDs LED 10 Description Programmable LED description Configuration\Programmable LEDs\LED 10
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt11.dU ENC Unicode255 DC ED2,B Programmable LEDs LED 11 Description Programmable LED description Configuration\Programmable LEDs\LED 11
Programmable LEDs CFG LD0.LEDGGIO1.LEDSt11.d ENC VisString255 (64) DC Programmable LEDs LED 11 Description Programmable LED description Configuration\Programmable LEDs\LED 11
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq1.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 1 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 1
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq2.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 2 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 2
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq3.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 3 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 3
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq4.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 4 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 4
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq5.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 5 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 5
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq6.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 6 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 6
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq7.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 7 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 7
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq8.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 8 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 8
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq9.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 9 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 9
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq10.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 10 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 10
Programmable LEDs CFG LD0.LEDGGIO1.LEDSeq11.setVal ENG Enum SP B,I 0 Alarm mode Alarm mode for programmable LED 11 0=Follow-S; 1=Follow-F; 2=Latched-S; 3=LatchedAck-F-S Configuration\Programmable LEDs\LED 11
Programmable LEDs CFG LD0.LEDGGIO1.AlmColr.setVal ENG Enum SP B,I 2 Alarm colour Colour for the alarm state of the LED 1=Green; 2=Red Configuration\Programmable LEDs\General
Programmable LEDs VER LD0.LEDGGIO1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

GSELPRT1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
GSELPRT1 GSE GSE OUT LD0.GSELPRT1.Alm.stVal SPS BOOLEAN ST B StatUrg P,H ALARM Receiver Alarm general Monitoring\I/O status\Communication\GSELPRT1\Outputs
GSELPRT1 GSE GSE CTR LD0.GSELPRT1.CntRs.Oper.ctlVal SPC BOOLEAN CO B 0 Reset counters Resets GOOSE diagnostics counters Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.FrRxCnt.stVal INS INT32 ST B Received msgs Received GOOSE messages. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.FrTxCnt.stVal INS INT32 ST B Transmitted msgs Transmitted GOOSE messages. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.RxStCnt.stVal INS INT32 ST B State changes Received GOOSE state changes. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.RxSeqCnt.stVal INS INT32 ST B SeqNum changes Received GOOSE sequence number changes. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.RxTestCnt.stVal INS INT32 ST B Test msgs Received GOOSE messages with test bit set to TRUE. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.StWrnCnt.stVal INS INT32 ST B State warnings State number miss or disorder in GOOSE message reception. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.SeqWrnCnt.stVal INS INT32 ST B Seq. warnings Sequence number miss or disorder in GOOSE message reception. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.RxTmOutCnt.stVal INS INT32 ST B Recv. timeouts Receiver timeouts. Goose messages were not received in defined time. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.ConfErrCnt.stVal INS INT32 ST B ConfRev errors Received configuration revision mismatched GOOSE messages. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.NdsComCnt.stVal INS INT32 ST B NdsComm errors Received GOOSE messages with Needs Commissioning bit set to TRUE. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.DSErrCnt.stVal INS INT32 ST B Dataset errors Received dataset mismatched GOOSE messages. 0...10000000 Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE MON LD0.GSELPRT1.CntRs.Oper.ctlVal SPC BOOLEAN CO B 0 Reset counters Resets GOOSE diagnostics counters Monitoring\I/O status\Communication\GSELPRT1\Monitoring
GSELPRT1 GSE GSE VER LD0.GSELPRT1.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

61850-8-1 MMS

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
61850-8-1 MMS OUT LD0.MMSLPRT1.ChLiv.stVal SPS BOOLEAN ST B CHLIV MMS Communication status (True = OK, False = No connections) Monitoring\Communication\MMSLPRT1
61850-8-1 MMS CTR LD0.MMSLPRT1.SetCnfMod.Oper.ctlVal SPC BOOLEAN CO I (Setting group editing mode)
61850-8-1 MMS CTR LD0.MMSLPRT1.CntRs.Oper.ctlVal SPC BOOLEAN CO B 0 Reset counters Reset MMS counters Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.SucConn.stVal INS INT32 ST B Successful conn. MMS successful connections 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.FailConn.stVal INS INT32 ST B Failed conn. MMS failed connections 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.ConcCnt.stVal INS INT32 ST B Concludes MMS concludes 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.TxAbtCnt.stVal INS INT32 ST B Sent aborts MMS sent aborts 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.RxAbtCnt.stVal INS INT32 ST B Recv. aborts MMS received aborts 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.TxRejCnt.stVal INS INT32 ST B Sent rejects MMS sent rejects 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.RxRqCnt.stVal INS INT32 ST B Recv. requests MMS received requests 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.FailRqCnt.stVal INS INT32 ST B Failed requests MMS failed requests 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.SucReaCnt.stVal INS INT32 ST B Reads MMS successful reads 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.FailReaCnt.stVal INS INT32 ST B Failed reads MMS failed reads 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.SucWrCnt.stVal INS INT32 ST B Writes MMS successful writes 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.FailWrCnt.stVal INS INT32 ST B Failed writes MMS failed writes 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.InfRpCnt.stVal INS INT32 ST B Reports MMS Information reports 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.ActConnCnt.stVal INS INT32 ST B Active conn. MMS active connections 0...10000000 Monitoring\Communication\MMSLPRT1
61850-8-1 MMS MON LD0.MMSLPRT1.CntRs.Oper.ctlVal SPC BOOLEAN CO B 0 Reset counters Reset MMS counters Monitoring\Communication\MMSLPRT1
61850-8-1 MMS CFG LD0.MMSLPRT1.UnitMod.setVal ENG Enum SP B,C 0 Unit mode IEC 61850-8-1 unit mode 1=Primary; 0=Nominal Configuration\Communication\MMSLPRT1
61850-8-1 MMS INF LD0.MMSLPRT1.NamPlt.d LPL VisString255 (64) DC B Edition 2 IEC 61850 version IEC 61850 version selection Information\System identifiers
61850-8-1 MMS VER LD0.MMSLPRT1.NamPlt.swRev LPL VisString255 (20) DC E (Name plate)

GNRLLTMS1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
GNRLLTMS1 TSYNC(1) TSYNC(1) OUT LD0.GNRLLTMS1.Alm.stVal SPS BOOLEAN ST ED2 (Alarm)
GNRLLTMS1 TSYNC(1) TSYNC(1) OUT LD0.GNRLLTMM1.Alm.stVal SPS BOOLEAN ST ED1 (Alarm)
GNRLLTMS1 TSYNC(1) TSYNC(1) OUT LD0.GNRLLTMS1.Wrn.stVal SPS BOOLEAN ST ED2 (Warning)
GNRLLTMS1 TSYNC(1) TSYNC(1) OUT LD0.GNRLLTMM1.Wrn.stVal SPS BOOLEAN ST ED1 (Warning)
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.TmAcc.stVal INS INT32 ST ED2,B Synch accuracy Number of significant bits in the Fraction Of Second in the time accuracy part of the time stamp. 0...128 Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.TmAcc.stVal INS INT32 ST ED1 Synch accuracy Number of significant bits in the Fraction Of Second in the time accuracy part of the time stamp. 0...128 Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.TmSyn.stVal ENS Enum ST ED2,B,# StatIed P,H SMV Synch accuracy Time synchronized according to IEC 61850-9-2 0=No sync; 1=Local clock; 2=Global clock Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.TmSyn.stVal ENS Enum ST ED1 StatIed P,H SMV Synch accuracy Time synchronized according to IEC 61850-9-2 0=No sync; 1=Local clock; 2=Global clock Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.TmChSt1.stVal SPS BOOLEAN ST ED2,B StatIed P,H Synch status Time channel status (up/down) 0=Down; 1=Up Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.TmChSt1.stVal SPS BOOLEAN ST ED1 StatIed P,H Synch status Time channel status (up/down) 0=Down; 1=Up Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.TmSrcSt.stVal ENS Enum ST ED2,B StatIed P,H Synch source Current time source 0=Not defined; 1=SNTP primary; 2=SNTP secondary; 3=SNTP tertiary or further; 4=IEEE 1588 master; 5=IEEE 1588 slave; 6=IEEE 1588 further; 7=IRIG-B; 8=DNP 3.0; 9=Modbus; 10=SPA; 11=LON VATS; 12=LON other; 13=PPS; 14=Minute pulse; 15=local GPS; 16=IEC60870-5-101; 17=IEC60870-5-103; 18=IEC60870-5-104; 19=EXT; 20=LHMI; 21=Line differential; 99=Free running, locally generated Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.TmSrcSt.stVal ENS Enum ST ED1 StatIed P,H Synch source Current time source 0=Not defined; 1=SNTP primary; 2=SNTP secondary; 3=SNTP tertiary or further; 4=IEEE 1588 master; 5=IEEE 1588 slave; 6=IEEE 1588 further; 7=IRIG-B; 8=DNP 3.0; 9=Modbus; 10=SPA; 11=LON VATS; 12=LON other; 13=PPS; 14=Minute pulse; 15=local GPS; 16=IEC60870-5-101; 17=IEC60870-5-103; 18=IEC60870-5-104; 19=EXT; 20=LHMI; 21=Line differential; 99=Free running, locally generated Monitoring\IED status\Time synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.PTPTmSrc.stVal ENS Enum ST ED2,B,# Grandmaster time Src GrandMaster timeSource enum according to PTPv2 1=Atomic clock; 2=GPS; 3=Terrestial radio; 4=PTP; 5=NTP; 6=Hand set; 7=Other; 8=Internal oscil. Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.PTPTmSrc.stVal ENS Enum ST ED1 Grandmaster time Src GrandMaster timeSource enum according to PTPv2 1=Atomic clock; 2=GPS; 3=Terrestial radio; 4=PTP; 5=NTP; 6=Hand set; 7=Other; 8=Internal oscil. Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.PTPClkAcc.stVal ENS Enum ST ED2,B,# Grandmaster accuracy Grandmaster clockAccuracy enum according to PTPv2 1=25 ns; 2=100 ns; 3=250 ns; 4=1 us; 5=2.5 us; 6=10 us; 7=25 us; 8=100 us; 9=250 us; 10=1 ms; 11=2.5 ms; 12=10 ms; 13=25 ms; 14=100 ms; 15=250 ms; 16=1 s; 17=10 s; 18=more than 10 s Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.PTPClkAcc.stVal ENS Enum ST ED1 Grandmaster accuracy Grandmaster clockAccuracy enum according to PTPv2 1=25 ns; 2=100 ns; 3=250 ns; 4=1 us; 5=2.5 us; 6=10 us; 7=25 us; 8=100 us; 9=250 us; 10=1 ms; 11=2.5 ms; 12=10 ms; 13=25 ms; 14=100 ms; 15=250 ms; 16=1 s; 17=10 s; 18=more than 10 s Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.LocClkAcc.stVal INS INT32 ST ED2,B,# Local synch accuracy Local clock accuracy (master + IED synch accuracy)[us] 0...1000000000 us Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.LocClkAcc.stVal INS INT32 ST ED1 Local synch accuracy Local clock accuracy (master + IED synch accuracy)[us] 0...1000000000 us Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.MaxDevAcc.stVal INS INT32 ST ED2,B,# Max Dev synch Acc Maximum deviation of the Local synch accuracy [us] 0...1000000000 us Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMM1.MaxDevAcc.stVal INS INT32 ST ED1 Max Dev synch Acc Maximum deviation of the Local synch accuracy [us] 0...1000000000 us Monitoring\IED status\SMV accuracy
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.MstrId.setVal VSG VisString255 (20) SP ED2,B,# ------------------- Grandmaster identity Grandmaster Identity octet string according to PTPv2 Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) MON LD0.GNRLLTMS1.NamPlt.mstrId LPL VisString255 (20) EX ED1 ------------------- Grandmaster identity Grandmaster Identity octet string according to PTPv2 Monitoring\IED status\Time synchronization\IEEE 1588
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.TmSrcSel1.setVal ENG Enum SP ED2,B,I 1 Synch source Time synchronization source 0=None; 1=SNTP; 2=Modbus; 3=IEEE 1588; 5=IRIG-B; 9=DNP; 16=IEC60870-5-101; 17=IEC60870-5-103; 18=IEC60870-5-104 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMM1.TmSrcSel1.setVal ENG Enum SP ED1 1 Synch source Time synchronization source 0=None; 1=SNTP; 2=Modbus; 3=IEEE 1588; 5=IRIG-B; 9=DNP; 16=IEC60870-5-101; 17=IEC60870-5-103; 18=IEC60870-5-104 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.DomId.setVal ING INT32 SP ED2,B,# 0 PTP domain ID The domain is identified by an integer, the domainNumber, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMM1.DomId.setVal ING INT32 SP ED1 0 PTP domain ID The domain is identified by an integer, the domainNumber, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.PTPPrio1.setVal ING INT32 SP ED2,B,# 128 PTP priority 1 PTP priority 1, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMM1.PTPPrio1.setVal ING INT32 SP ED1 128 PTP priority 1 PTP priority 1, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.PTPPrio2.setVal ING INT32 SP ED2,B,# 128 PTP priority 2 PTP priority 2, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMM1.PTPPrio2.setVal ING INT32 SP ED1 128 PTP priority 2 PTP priority 2, in the range of 0 to 255. 0...255 Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.IPAddrSNTP1.setVal VSG VisString255 (20) SP ED2,B,C 10.58.125.165 IP SNTP primary IP address for SNTP primary server Configuration\Time\SNTP
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.NamPlt.eIpSNTPpri LPL VisString255 (20) EX ED1,C 10.58.125.165 IP SNTP primary IP address for SNTP primary server Configuration\Time\SNTP
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.IPAddrSNTP2.setVal VSG VisString255 (20) SP ED2,B,C 192.168.2.165 IP SNTP secondary IP address for SNTP secondary server Configuration\Time\SNTP
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.NamPlt.eIpSNTPsec LPL VisString255 (20) EX ED1,C 192.168.2.165 IP SNTP secondary IP address for SNTP secondary server Configuration\Time\SNTP
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMS1.PTPAnncMod.setVal ENG Enum SP ED2,B,# 1 PTP announce mode PTP announce frame mode 1=Basic IEEE1588; 2=Power Profile Configuration\Time\Synchronization
GNRLLTMS1 TSYNC(1) TSYNC(1) CFG LD0.GNRLLTMM1.PTPAnncMod.setVal ENG Enum SP ED1 1 PTP announce mode PTP announce frame mode 1=Basic IEEE1588; 2=Power Profile Configuration\Time\Synchronization
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmOfsTmm.setVal ING INT32 SP B 0 Local time offset Local time offset in minutes -840...840 min Configuration\Time\System time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmUseDT.setVal SPG BOOLEAN SP B 1 DST in use DST in use setting Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgDT.setCal.weekDay TSG Enum SP ED2,B 0 DST on day (weekday) Daylight saving time on, day of week 0=reserved; 1=Monday; 2=Tuesday; 3=Wednesday; 4=Thursday; 5=Friday; 6=Saturday; 7=Sunday Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.weekDayDT LPL Enum EX ED1 0 DST on day (weekday) Daylight saving time on, day of week 0=reserved; 1=Monday; 2=Tuesday; 3=Wednesday; 4=Thursday; 5=Friday; 6=Saturday; 7=Sunday Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgDT.setCal.month TSG Enum SP ED2,B 5 DST on date (month) Daylight saving time on, date (dd:mm) 1=January; 2=February; 3=March; 4=April; 5=May; 6=June; 7=July; 8=August; 9=September; 10=October; 11=November; 12=December Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.monthDT LPL Enum EX ED1 5 DST on date (month) Daylight saving time on, date (dd:mm) 1=January; 2=February; 3=March; 4=April; 5=May; 6=June; 7=July; 8=August; 9=September; 10=October; 11=November; 12=December Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgDT.setCal.day TSG INT8U SP ED2,B 1 DST on date (day) Daylight saving time on, date (dd:mm) 1...31 Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.dayDT LPL INT8U EX ED1 1 DST on date (day) Daylight saving time on, date (dd:mm) 1...31 Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgDT.setCal.hr TSG INT8U SP ED2,B 2 DST on time (hours) Daylight saving time on, time (hh) 0...23 h Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.hrDT LPL INT8U EX ED1 2 DST on time (hours) Daylight saving time on, time (hh) 0...23 h Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgDT.setCal.mn TSG INT8U SP ED2,B 0 DST on time (minutes) Daylight saving time on, time (mm) 0...59 min Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.mnDT LPL INT8U EX ED1 0 DST on time (minutes) Daylight saving time on, time (mm) 0...59 min Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgST.setCal.weekDay TSG Enum SP ED2,B 0 DST off day (weekday) Daylight saving time off, day of week 0=reserved; 1=Monday; 2=Tuesday; 3=Wednesday; 4=Thursday; 5=Friday; 6=Saturday; 7=Sunday Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.weekDayST LPL Enum EX ED1 0 DST off day (weekday) Daylight saving time off, day of week 0=reserved; 1=Monday; 2=Tuesday; 3=Wednesday; 4=Thursday; 5=Friday; 6=Saturday; 7=Sunday Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgST.setCal.month TSG Enum SP ED2,B 9 DST off date (month) Daylight saving time off, date (dd:mm) 1=January; 2=February; 3=March; 4=April; 5=May; 6=June; 7=July; 8=August; 9=September; 10=October; 11=November; 12=December Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.monthST LPL Enum EX ED1 9 DST off date (month) Daylight saving time off, date (dd:mm) 1=January; 2=February; 3=March; 4=April; 5=May; 6=June; 7=July; 8=August; 9=September; 10=October; 11=November; 12=December Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgST.setCal.day TSG INT8U SP ED2,B 25 DST off date (day) Daylight saving time off, date (dd:mm) 1...31 Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.dayST LPL INT8U EX ED1 25 DST off date (day) Daylight saving time off, date (dd:mm) 1...31 Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgST.setCal.hr TSG INT8U SP ED2,B 2 DST off time (hours) Daylight saving time off, time (hh) 0...23 h Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.hrST LPL INT8U EX ED1 2 DST off time (hours) Daylight saving time off, time (hh) 0...23 h Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmChgST.setCal.mn TSG INT8U SP ED2,B 0 DST off time (minutes) Daylight saving time off, time (mm) 0...59 min Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.mnST LPL INT8U EX ED1 0 DST off time (minutes) Daylight saving time off, time (mm) 0...59 min Configuration\Time\Daylight saving time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmSys.setVal VSG VisString255 (20) SP ED2,B 0 Time Time Configuration\Time\System time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.tmSys LPL VisString255 (20) EX ED1 0 Time Time Configuration\Time\System time
GNRLLTIM1 CFG LD0.GNRLLTIM1.DateSys.setVal VSG VisString255 (20) SP ED2,B 0 Date Date Configuration\Time\System time
GNRLLTIM1 CFG LD0.GNRLLTIM1.NamPlt.dateSys LPL VisString255 (20) EX ED1 0 Date Date Configuration\Time\System time
GNRLLTIM1 CFG LD0.GNRLLTIM1.TmOfsDT.setVal ING INT32 SP B 60 DST offset Daylight saving time offset -720...720 min Configuration\Time\Daylight saving time
GNRLLTMS1 TSYNC(1) TSYNC(1) VER LD0.GNRLLTMS1.NamPlt.swRev LPL VisString255 (20) DC ED2,ED1 C (Name plate)
GNRLLTMS1 TSYNC(1) TSYNC(1) VER LD0.GNRLLTMM1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

PHLPTOC1: Three phase non-directional OC, low stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHLPTOC1 3I>(1) 51P-1(1) INP LD0.PHLPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\PHLPTOC1\Inputs
PHLPTOC1 3I>(1) 51P-1(1) INP LD0.PHLPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\PHLPTOC1\Inputs
PHLPTOC1 3I>(1) 51P-1(1) OUT LD0.PHLPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\PHLPTOC1\Outputs
PHLPTOC1 3I>(1) 51P-1(1) OUT LD0.PHLPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\PHLPTOC1\Outputs
PHLPTOC1 3I>(1) 51P-1(1) MON LD0.PHLPTOC1.Beh.stVal ENS Enum ST B PHLPTOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHLPTOC1 3I>(1) 51P-1(1) MON LD0.PHLPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\PHLPTOC1\Monitored data
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 2=ANSI Very inv.; 3=ANSI Norm. inv.; 4=ANSI Mod. inv.; 5=ANSI Def. Time; 6=L.T.E. inv.; 7=L.T.V. inv.; 8=L.T. inv.; 9=IEC Norm. inv.; 10=IEC Very inv.; 11=IEC inv.; 12=IEC Ext. inv.; 13=IEC S.T. inv.; 14=IEC L.T. inv.; 15=IEC Def. Time; 17=Programmable; 18=RI type; 19=RD type Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.05 Start value Start value 0.05...5.00 xIn Settings\Settings\Current protection\PHLPTOC1 IL1TCTR1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) SET LD0.PHLPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\PHLPTOC1
PHLPTOC1 3I>(1) 51P-1(1) TES LD0.PHLPTOC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PHLPTOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
PHLPTOC1 3I>(1) 51P-1(1) VER LD0.PHLPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 E (Name plate)

PHHPTOC1: Three phase non-directional OC, high stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHHPTOC1 3I>>(1) 51P-2(1) INP LD0.PHHPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\PHHPTOC1\Inputs
PHHPTOC1 3I>>(1) 51P-2(1) INP LD0.PHHPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\PHHPTOC1\Inputs
PHHPTOC1 3I>>(1) 51P-2(1) OUT LD0.PHHPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\PHHPTOC1\Outputs
PHHPTOC1 3I>>(1) 51P-2(1) OUT LD0.PHHPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\PHHPTOC1\Outputs
PHHPTOC1 3I>>(1) 51P-2(1) MON LD0.PHHPTOC1.Beh.stVal ENS Enum ST B PHHPTOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHHPTOC1 3I>>(1) 51P-2(1) MON LD0.PHHPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\PHHPTOC1\Monitored data
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 3=ANSI Norm. inv.; 5=ANSI Def. Time; 9=IEC Norm. inv.; 10=IEC Very inv.; 12=IEC Ext. inv.; 15=IEC Def. Time; 17=Programmable Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.10 Start value Start value 0.10...40.00 xIn Settings\Settings\Current protection\PHHPTOC1 IL1TCTR1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) SET LD0.PHHPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\PHHPTOC1
PHHPTOC1 3I>>(1) 51P-2(1) TES LD0.PHHPTOC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PHHPTOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
PHHPTOC1 3I>>(1) 51P-2(1) VER LD0.PHHPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

PHHPTOC2: Three phase non-directional OC, high stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHHPTOC2 3I>>(2) 51P-2(2) INP LD0.PHHPTOC2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\PHHPTOC2\Inputs
PHHPTOC2 3I>>(2) 51P-2(2) INP LD0.PHHPTOC2.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\PHHPTOC2\Inputs
PHHPTOC2 3I>>(2) 51P-2(2) OUT LD0.PHHPTOC2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\PHHPTOC2\Outputs
PHHPTOC2 3I>>(2) 51P-2(2) OUT LD0.PHHPTOC2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\PHHPTOC2\Outputs
PHHPTOC2 3I>>(2) 51P-2(2) MON LD0.PHHPTOC2.Beh.stVal ENS Enum ST B PHHPTOC2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHHPTOC2 3I>>(2) 51P-2(2) MON LD0.PHHPTOC2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\PHHPTOC2\Monitored data
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 3=ANSI Norm. inv.; 5=ANSI Def. Time; 9=IEC Norm. inv.; 10=IEC Very inv.; 12=IEC Ext. inv.; 15=IEC Def. Time; 17=Programmable Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.StrVal.setMag.f ASG FLOAT32 SG B 0.10 Start value Start value 0.10...40.00 xIn Settings\Settings\Current protection\PHHPTOC2 IL1TCTR1
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) SET LD0.PHHPTOC2.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\PHHPTOC2
PHHPTOC2 3I>>(2) 51P-2(2) TES LD0.PHHPTOC2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PHHPTOC2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
PHHPTOC2 3I>>(2) 51P-2(2) VER LD0.PHHPTOC2.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

PHIPTOC1: Three phase non-directional OC, inst. stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHIPTOC1 3I>>>(1) 50P/51P(1) INP LD0.PHIPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\PHIPTOC1\Inputs
PHIPTOC1 3I>>>(1) 50P/51P(1) INP LD0.PHIPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\PHIPTOC1\Inputs
PHIPTOC1 3I>>>(1) 50P/51P(1) OUT LD0.PHIPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\PHIPTOC1\Outputs
PHIPTOC1 3I>>>(1) 50P/51P(1) OUT LD0.PHIPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\PHIPTOC1\Outputs
PHIPTOC1 3I>>>(1) 50P/51P(1) MON LD0.PHIPTOC1.Beh.stVal ENS Enum ST B PHIPTOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHIPTOC1 3I>>>(1) 50P/51P(1) MON LD0.PHIPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\PHIPTOC1\Monitored data
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\PHIPTOC1
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 1.00 Start value Start value 1.00...40.00 xIn Settings\Settings\Current protection\PHIPTOC1 IL1TCTR1
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\PHIPTOC1
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\PHIPTOC1
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\PHIPTOC1
PHIPTOC1 3I>>>(1) 50P/51P(1) SET LD0.PHIPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\PHIPTOC1
PHIPTOC1 3I>>>(1) 50P/51P(1) TES LD0.PHIPTOC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PHIPTOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
PHIPTOC1 3I>>>(1) 50P/51P(1) VER LD0.PHIPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 E (Name plate)

DPHLPDOC1: Three-phase directional overcurrent, low stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
DPHLPDOC1 3I>->(1) 67-1(1) INP LD0.DPHLPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\DPHLPDOC1\Inputs
DPHLPDOC1 3I>->(1) 67-1(1) INP LD0.DPHLPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\DPHLPDOC1\Inputs
DPHLPDOC1 3I>->(1) 67-1(1) INP LD0.DPHLPTOC1.NonDir.stVal SPS BOOLEAN ST B 0 NON_DIR Forces protection to non-directional Monitoring\I/O status\Current protection\DPHLPDOC1\Inputs
DPHLPDOC1 3I>->(1) 67-1(1) OUT LD0.DPHLPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\DPHLPDOC1\Outputs
DPHLPDOC1 3I>->(1) 67-1(1) OUT LD0.DPHLPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\DPHLPDOC1\Outputs
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLPTOC1.Beh.stVal ENS Enum ST B DPHLPDOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLPTOC1.Str.dirGeneral ACD Enum ST B StatNrml P,H FAULT_DIR Detected fault direction 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.Dir.dirGeneral ACD Enum ST B DIRECTION Direction information 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.Dir.dirPhsA ACD Enum ST B DIR_A Direction phase A 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.Dir.dirPhsB ACD Enum ST B DIR_B Direction phase B 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.Dir.dirPhsC ACD Enum ST B DIR_C Direction phase C 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngPhsA.mag.f MV FLOAT32 MX ED2,B ANGLE_A Calculated angle difference, Phase A -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngA.mag.f MV FLOAT32 MX ED1 ANGLE_A Calculated angle difference, Phase A -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngPhsB.mag.f MV FLOAT32 MX ED2,B ANGLE_B Calculated angle difference, Phase B -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngB.mag.f MV FLOAT32 MX ED1 ANGLE_B Calculated angle difference, Phase B -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngPhsC.mag.f MV FLOAT32 MX ED2,B ANGLE_C Calculated angle difference, Phase C -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.OpChrAngC.mag.f MV FLOAT32 MX ED1 ANGLE_C Calculated angle difference, Phase C -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) MON LD0.DPHLRDIR1.VMemUsedSt.stVal SPS BOOLEAN ST B VMEM_USED Voltage memory in use status Monitoring\I/O status\Current protection\DPHLPDOC1\Monitored data
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 2=ANSI Very inv.; 3=ANSI Norm. inv.; 4=ANSI Mod. inv.; 5=ANSI Def. Time; 6=L.T.E. inv.; 7=L.T.V. inv.; 8=L.T. inv.; 9=IEC Norm. inv.; 10=IEC Very inv.; 11=IEC inv.; 12=IEC Ext. inv.; 13=IEC S.T. inv.; 14=IEC L.T. inv.; 15=IEC Def. Time; 17=Programmable; 18=RI type; 19=RD type Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.05 Start value Start value 0.05...5.00 xIn Settings\Settings\Current protection\DPHLPDOC1 IL1TCTR1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.DirMod.setVal ENG Enum SG B 2 Directional mode Directional mode 1=Non-directional; 2=Forward; 3=Reverse Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLPTOC1.AllwNonDir.setVal SPG BOOLEAN SP A 0 Allow Non Dir Allows prot activation as non-dir when dir info is invalid Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.ChrAng.setMag.f ASG FLOAT32 SG B +60 Characteristic angle Characteristic angle -179...180 deg Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.MinFwdAng.setMag.f ASG FLOAT32 SG B 80 Min forward angle Minimum phase angle in forward direction 0...90 deg Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.MinRvAng.setMag.f ASG FLOAT32 SG B 80 Min reverse angle Minimum phase angle in reverse direction 0...90 deg Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.MaxFwdAng.setMag.f ASG FLOAT32 SG B 80 Max forward angle Maximum phase angle in forward direction 0...90 deg Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.MaxRvAng.setMag.f ASG FLOAT32 SG B 80 Max reverse angle Maximum phase angle in reverse direction 0...90 deg Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.BlkValA.setMag.f ASG FLOAT32 SP A 0.01 Min operate current Minimum operating current 0.01...1.00 xIn Settings\Settings\Current protection\DPHLPDOC1 IL1TCTR1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.BlkValV.setMag.f ASG FLOAT32 SP A 0.01 Min operate voltage Minimum operating voltage 0.01...1.00 xUn Settings\Settings\Current protection\DPHLPDOC1 UL1TVTR1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.PolQty.setVal ENG Enum SG A 5 Pol quantity Reference quantity used to determine fault direction 1=Self pol; 4=Neg. seq. volt.; 5=Cross pol; 7=Pos. seq. volt. Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) SET LD0.DPHLRDIR1.VMemTmms.setVal ING INT32 SG A 40 Voltage Mem time Voltage memory time 0...3000 ms Settings\Settings\Current protection\DPHLPDOC1
DPHLPDOC1 3I>->(1) 67-1(1) TES LD0.DPHLPTOC1.TestPro.Oper.ctlVal ENC Enum CO B 0 DPHLPDOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
DPHLPDOC1 3I>->(1) 67-1(1) VER LD0.DPHLPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 E (Name plate)

DPHHPDOC1: Three-phase directional overcurrent, high stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
DPHHPDOC1 3I>>->(1) 67-2(1) INP LD0.DPHHPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\DPHHPDOC1\Inputs
DPHHPDOC1 3I>>->(1) 67-2(1) INP LD0.DPHHPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\DPHHPDOC1\Inputs
DPHHPDOC1 3I>>->(1) 67-2(1) INP LD0.DPHHPTOC1.NonDir.stVal SPS BOOLEAN ST B 0 NON_DIR Forces protection to non-directional Monitoring\I/O status\Current protection\DPHHPDOC1\Inputs
DPHHPDOC1 3I>>->(1) 67-2(1) OUT LD0.DPHHPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Current protection\DPHHPDOC1\Outputs
DPHHPDOC1 3I>>->(1) 67-2(1) OUT LD0.DPHHPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Current protection\DPHHPDOC1\Outputs
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHPTOC1.Beh.stVal ENS Enum ST B DPHHPDOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHPTOC1.Str.dirGeneral ACD Enum ST B StatNrml P,H FAULT_DIR Detected fault direction 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.Dir.dirGeneral ACD Enum ST B DIRECTION Direction information 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.Dir.dirPhsA ACD Enum ST B DIR_A Direction phase A 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.Dir.dirPhsB ACD Enum ST B DIR_B Direction phase B 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.Dir.dirPhsC ACD Enum ST B DIR_C Direction phase C 0=unknown; 1=forward; 2=backward; -1=both Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngPhsA.mag.f MV FLOAT32 MX ED2,B ANGLE_A Calculated angle difference, Phase A -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngA.mag.f MV FLOAT32 MX ED1 ANGLE_A Calculated angle difference, Phase A -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngPhsB.mag.f MV FLOAT32 MX ED2,B ANGLE_B Calculated angle difference, Phase B -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngB.mag.f MV FLOAT32 MX ED1 ANGLE_B Calculated angle difference, Phase B -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngPhsC.mag.f MV FLOAT32 MX ED2,B ANGLE_C Calculated angle difference, Phase C -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.OpChrAngC.mag.f MV FLOAT32 MX ED1 ANGLE_C Calculated angle difference, Phase C -180.00...180.00 deg Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) MON LD0.DPHHRDIR1.VMemUsedSt.stVal SPS BOOLEAN ST B VMEM_USED Voltage memory in use status Monitoring\I/O status\Current protection\DPHHPDOC1\Monitored data
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 3=ANSI Norm. inv.; 5=ANSI Def. Time; 9=IEC Norm. inv.; 10=IEC Very inv.; 12=IEC Ext. inv.; 15=IEC Def. Time; 17=Programmable Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.10 Start value Start value 0.10...40.00 xIn Settings\Settings\Current protection\DPHHPDOC1 IL1TCTR1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.00 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.00 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.DirMod.setVal ENG Enum SG B 2 Directional mode Directional mode 1=Non-directional; 2=Forward; 3=Reverse Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHPTOC1.AllwNonDir.setVal SPG BOOLEAN SP A 0 Allow Non Dir Allows prot activation as non-dir when dir info is invalid Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.ChrAng.setMag.f ASG FLOAT32 SG B +60 Characteristic angle Characteristic angle -179...180 deg Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.MinFwdAng.setMag.f ASG FLOAT32 SG B 80 Min forward angle Minimum phase angle in forward direction 0...90 deg Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.MinRvAng.setMag.f ASG FLOAT32 SG B 80 Min reverse angle Minimum phase angle in reverse direction 0...90 deg Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.MaxFwdAng.setMag.f ASG FLOAT32 SG B 80 Max forward angle Maximum phase angle in forward direction 0...90 deg Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.MaxRvAng.setMag.f ASG FLOAT32 SG B 80 Max reverse angle Maximum phase angle in reverse direction 0...90 deg Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.BlkValA.setMag.f ASG FLOAT32 SP A 0.01 Min operate current Minimum operating current 0.01...1.00 xIn Settings\Settings\Current protection\DPHHPDOC1 IL1TCTR1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.BlkValV.setMag.f ASG FLOAT32 SP A 0.01 Min operate voltage Minimum operating voltage 0.01...1.00 xUn Settings\Settings\Current protection\DPHHPDOC1 UL1TVTR1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.PolQty.setVal ENG Enum SG A 5 Pol quantity Reference quantity used to determine fault direction 1=Self pol; 4=Neg. seq. volt.; 5=Cross pol; 7=Pos. seq. volt. Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) SET LD0.DPHHRDIR1.VMemTmms.setVal ING INT32 SG A 40 Voltage Mem time Voltage memory time 0...3000 ms Settings\Settings\Current protection\DPHHPDOC1
DPHHPDOC1 3I>>->(1) 67-2(1) TES LD0.DPHHPTOC1.TestPro.Oper.ctlVal ENC Enum CO B 0 DPHHPDOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
DPHHPDOC1 3I>>->(1) 67-2(1) VER LD0.DPHHPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 E (Name plate)

EFLPTOC1: Non-directional earth-fault protection, low stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
EFLPTOC1 Io>(1) 51N-1(1) INP LD0.EFLPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\EFLPTOC1\Inputs
EFLPTOC1 Io>(1) 51N-1(1) INP LD0.EFLPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\EFLPTOC1\Inputs
EFLPTOC1 Io>(1) 51N-1(1) OUT LD0.EFLPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Current protection\EFLPTOC1\Outputs
EFLPTOC1 Io>(1) 51N-1(1) OUT LD0.EFLPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Current protection\EFLPTOC1\Outputs
EFLPTOC1 Io>(1) 51N-1(1) MON LD0.EFLPTOC1.Beh.stVal ENS Enum ST B EFLPTOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
EFLPTOC1 Io>(1) 51N-1(1) MON LD0.EFLPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\EFLPTOC1\Monitored data
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 2=ANSI Very inv.; 3=ANSI Norm. inv.; 4=ANSI Mod. inv.; 5=ANSI Def. Time; 6=L.T.E. inv.; 7=L.T.V. inv.; 8=L.T. inv.; 9=IEC Norm. inv.; 10=IEC Very inv.; 11=IEC inv.; 12=IEC Ext. inv.; 13=IEC S.T. inv.; 14=IEC L.T. inv.; 15=IEC Def. Time; 17=Programmable; 18=RI type; 19=RD type Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.010 Start value Start value 0.010...5.000 xIn Settings\Settings\Current protection\EFLPTOC1 RESTCTR1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.00 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.00 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) SET LD0.EFLPTOC1.AResSigSel.setVal ENG Enum SP A,I 1 Io signal Sel Selection for used Io signal 1=Measured Io; 2=Calculated Io Settings\Settings\Current protection\EFLPTOC1
EFLPTOC1 Io>(1) 51N-1(1) TES LD0.EFLPTOC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 EFLPTOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
EFLPTOC1 Io>(1) 51N-1(1) VER LD0.EFLPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 G (Name plate)

EFHPTOC1: Non-directional earth-fault protection, high stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
EFHPTOC1 Io>>(1) 51N-2(1) INP LD0.EFHPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\EFHPTOC1\Inputs
EFHPTOC1 Io>>(1) 51N-2(1) INP LD0.EFHPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\EFHPTOC1\Inputs
EFHPTOC1 Io>>(1) 51N-2(1) OUT LD0.EFHPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Current protection\EFHPTOC1\Outputs
EFHPTOC1 Io>>(1) 51N-2(1) OUT LD0.EFHPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Current protection\EFHPTOC1\Outputs
EFHPTOC1 Io>>(1) 51N-2(1) MON LD0.EFHPTOC1.Beh.stVal ENS Enum ST B EFHPTOC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
EFHPTOC1 Io>>(1) 51N-2(1) MON LD0.EFHPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\EFHPTOC1\Monitored data
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 3=ANSI Norm. inv.; 5=ANSI Def. Time; 9=IEC Norm. inv.; 10=IEC Very inv.; 12=IEC Ext. inv.; 15=IEC Def. Time; 17=Programmable Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.10 Start value Start value 0.10...40.00 xIn Settings\Settings\Current protection\EFHPTOC1 RESTCTR1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.00 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.00 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.MinOpTmms.setVal ING INT32 SP A 20 Minimum operate time Minimum operate time for IDMT curves 20...60000 ms Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) SET LD0.EFHPTOC1.AResSigSel.setVal ENG Enum SP A,I 1 Io signal Sel Selection for used Io signal 1=Measured Io; 2=Calculated Io Settings\Settings\Current protection\EFHPTOC1
EFHPTOC1 Io>>(1) 51N-2(1) TES LD0.EFHPTOC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 EFHPTOC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
EFHPTOC1 Io>>(1) 51N-2(1) VER LD0.EFHPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

DEFLPDEF1: Directional earth-fault, low stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
DEFLPDEF1 Io>->(1) 67N-1(1) INP LD0.DEFLPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\DEFLPDEF1\Inputs
DEFLPDEF1 Io>->(1) 67N-1(1) INP LD0.DEFLPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\DEFLPDEF1\Inputs
DEFLPDEF1 Io>->(1) 67N-1(1) INP LD0.DEFLRDIR1.InRcaCtl.stVal SPS BOOLEAN ST B 0 RCA_CTL Relay characteristic angle control Monitoring\I/O status\Current protection\DEFLPDEF1\Inputs
DEFLPDEF1 Io>->(1) 67N-1(1) OUT LD0.DEFLPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Current protection\DEFLPDEF1\Outputs
DEFLPDEF1 Io>->(1) 67N-1(1) OUT LD0.DEFLPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Current protection\DEFLPDEF1\Outputs
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLPTOC1.Beh.stVal ENS Enum ST B DEFLPDEF1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLPTOC1.Str.dirGeneral ACD Enum ST B StatNrml P,H FAULT_DIR Detected fault direction 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLRDIR1.Dir.dirGeneral ACD Enum ST B DIRECTION Direction information 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLRDIR1.OpAEF.mag.f MV FLOAT32 MX B I_OPER Calculated operating current 0.00...40.00 xIn Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data RESTCTR1
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLRDIR1.OpPolAng.mag.f MV FLOAT32 MX B ANGLE Angle between polarizing and operating quantity -180.00...180.00 deg Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data
DEFLPDEF1 Io>->(1) 67N-1(1) MON LD0.DEFLRDIR1.OpChrAng.mag.f MV FLOAT32 MX B ANGLE_RCA Angle between operating angle and characteristic angle -180.00...180.00 deg Monitoring\I/O status\Current protection\DEFLPDEF1\Monitored data
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 2=ANSI Very inv.; 3=ANSI Norm. inv.; 4=ANSI Mod. inv.; 5=ANSI Def. Time; 6=L.T.E. inv.; 7=L.T.V. inv.; 8=L.T. inv.; 9=IEC Norm. inv.; 10=IEC Very inv.; 11=IEC inv.; 12=IEC Ext. inv.; 13=IEC S.T. inv.; 14=IEC L.T. inv.; 15=IEC Def. Time; 17=Programmable; 18=RI type; 19=RD type Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.010 Start value Start value 0.010...5.000 xIn Settings\Settings\Current protection\DEFLPDEF1 RESTCTR1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.00 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.00 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.MinOpTmms.setVal ING INT32 SP A 50 Minimum operate time Minimum operate time for IDMT curves 50...60000 ms Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.OpDlTmms.setVal ING INT32 SG B 50 Operate delay time Operate delay time 50...200000 ms Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.DirMod.setVal ENG Enum SG B 2 Directional mode Directional mode 1=Non-directional; 2=Forward; 3=Reverse Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.VStr.setMag.f ASG FLOAT32 SG B 0.010 Voltage start value Voltage start value 0.010...1.000 xUn Settings\Settings\Current protection\DEFLPDEF1 RESTVTR1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.AllwNonDir.setVal SPG BOOLEAN SP A 0 Allow Non Dir Allows prot activation as non-dir when dir info is invalid Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.EnaVLim.setVal SPG BOOLEAN SG A 1 Enable voltage limit Enable voltage limit Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLPTOC1.AResSigSel.setVal ENG Enum SP A,I 1 Io signal Sel Selection for used Io signal 1=Measured Io; 2=Calculated Io Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.ChrAng.setMag.f ASG FLOAT32 SG B -90 Characteristic angle Characteristic angle -179...180 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.MinFwdAng.setMag.f ASG FLOAT32 SG B 80 Min forward angle Minimum phase angle in forward direction 0...180 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.MinRvAng.setMag.f ASG FLOAT32 SG B 80 Min reverse angle Minimum phase angle in reverse direction 0...180 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.MaxFwdAng.setMag.f ASG FLOAT32 SG B 80 Max forward angle Maximum phase angle in forward direction 0...180 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.MaxRvAng.setMag.f ASG FLOAT32 SG B 80 Max reverse angle Maximum phase angle in reverse direction 0...180 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.BlkValA.setMag.f ASG FLOAT32 SP A 0.005 Min operate current Minimum operating current 0.005...1.000 xIn Settings\Settings\Current protection\DEFLPDEF1 RESTCTR1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.BlkValV.setMag.f ASG FLOAT32 SP A 0.01 Min operate voltage Minimum operating voltage 0.01...1.00 xUn Settings\Settings\Current protection\DEFLPDEF1 RESTVTR1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.PolQty.setVal ENG Enum SP A,I 3 Pol quantity Reference quantity used to determine fault direction 3=Zero seq. volt.; 4=Neg. seq. volt. Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.OpModEF.setVal ENG Enum SG A 1 Operation mode Operation criteria 1=Phase angle; 2=IoSin; 3=IoCos; 4=Phase angle 80; 5=Phase angle 88 Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.CorAng.setMag.f ASG FLOAT32 SP A 0.0 Correction angle Angle correction 0.0...10.0 deg Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.RevPol.setVal SPG BOOLEAN SP A 0 Pol reversal Rotate polarizing quantity Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) SET LD0.DEFLRDIR1.VResSigSel.setVal ENG Enum SP A,I 1 Uo signal Sel Selection for used Uo signal 1=Measured Uo; 2=Calculated Uo Settings\Settings\Current protection\DEFLPDEF1
DEFLPDEF1 Io>->(1) 67N-1(1) TES LD0.DEFLPTOC1.TestPro.Oper.ctlVal ENC Enum CO B 0 DEFLPDEF1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
DEFLPDEF1 Io>->(1) 67N-1(1) VER LD0.DEFLPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

DEFHPDEF1: Directional earth-fault, high stage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
DEFHPDEF1 Io>>->(1) 67N-2(1) INP LD0.DEFHPTOC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Current protection\DEFHPDEF1\Inputs
DEFHPDEF1 Io>>->(1) 67N-2(1) INP LD0.DEFHPTOC1.InEnaMult.stVal SPS BOOLEAN ST B 0 ENA_MULT Enable signal for current multiplier Monitoring\I/O status\Current protection\DEFHPDEF1\Inputs
DEFHPDEF1 Io>>->(1) 67N-2(1) INP LD0.DEFHRDIR1.InRcaCtl.stVal SPS BOOLEAN ST B 0 RCA_CTL Relay characteristic angle control Monitoring\I/O status\Current protection\DEFHPDEF1\Inputs
DEFHPDEF1 Io>>->(1) 67N-2(1) OUT LD0.DEFHPTOC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Current protection\DEFHPDEF1\Outputs
DEFHPDEF1 Io>>->(1) 67N-2(1) OUT LD0.DEFHPTOC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Current protection\DEFHPDEF1\Outputs
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHPTOC1.Beh.stVal ENS Enum ST B DEFHPDEF1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHPTOC1.Str.dirGeneral ACD Enum ST B StatNrml P,H FAULT_DIR Detected fault direction 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHPTOC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHRDIR1.Dir.dirGeneral ACD Enum ST B DIRECTION Direction information 0=unknown; 1=forward; 2=backward; 3=both Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHRDIR1.OpAEF.mag.f MV FLOAT32 MX B I_OPER Calculated operating current 0.00...40.00 xIn Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data RESTCTR1
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHRDIR1.OpPolAng.mag.f MV FLOAT32 MX B ANGLE Angle between polarizing and operating quantity -180.00...180.00 deg Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data
DEFHPDEF1 Io>>->(1) 67N-2(1) MON LD0.DEFHRDIR1.OpChrAng.mag.f MV FLOAT32 MX B ANGLE_RCA Angle between operating angle and characteristic angle -180.00...180.00 deg Monitoring\I/O status\Current protection\DEFHPDEF1\Monitored data
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 1=ANSI Ext. inv.; 3=ANSI Norm. inv.; 5=ANSI Def. Time; 15=IEC Def. Time; 17=Programmable Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setParA CURVE FLOAT32 SP B,I 28.2000 Curve parameter A Parameter A for customer programmable curve 0.0086...120.0000 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setParB CURVE FLOAT32 SP B,I 0.1217 Curve parameter B Parameter B for customer programmable curve 0.0000...0.7120 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setParC CURVE FLOAT32 SP B,I 2.00 Curve parameter C Parameter C for customer programmable curve 0.02...2.00 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setParD CURVE FLOAT32 SP B,I 29.10 Curve parameter D Parameter D for customer programmable curve 0.46...30.00 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmACrv.setParE CURVE FLOAT32 SP B,I 1.0 Curve parameter E Parameter E for customer programmable curve 0.0...1.0 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.StrVal.setMag.f ASG FLOAT32 SG B 0.10 Start value Start value 0.10...40.00 xIn Settings\Settings\Current protection\DEFHPDEF1 RESTCTR1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TmMult.setMag.f ASG FLOAT32 SG B 1.00 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.00 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.MinOpTmms.setVal ING INT32 SP A 40 Minimum operate time Minimum operate time for IDMT curves 40...60000 ms Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...200000 ms Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset; 3=Inverse reset Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.DirMod.setVal ENG Enum SG B 2 Directional mode Directional mode 1=Non-directional; 2=Forward; 3=Reverse Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.VStr.setMag.f ASG FLOAT32 SG B 0.010 Voltage start value Voltage start value 0.010...1.000 xUn Settings\Settings\Current protection\DEFHPDEF1 RESTVTR1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.StrValMult.setMag.f ASG FLOAT32 SG B 1.0 Start value Mult Multiplier for scaling the start value 0.8...10.0 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.AllwNonDir.setVal SPG BOOLEAN SP A 0 Allow Non Dir Allows prot activation as non-dir when dir info is invalid Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT; 3=Peak-to-Peak Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.EnaVLim.setVal SPG BOOLEAN SG A 1 Enable voltage limit Enable voltage limit Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHPTOC1.AResSigSel.setVal ENG Enum SP A,I 1 Io signal Sel Selection for used Io signal 1=Measured Io; 2=Calculated Io Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.ChrAng.setMag.f ASG FLOAT32 SG B -90 Characteristic angle Characteristic angle -179...180 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.MinFwdAng.setMag.f ASG FLOAT32 SG B 80 Min forward angle Minimum phase angle in forward direction 0...180 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.MinRvAng.setMag.f ASG FLOAT32 SG B 80 Min reverse angle Minimum phase angle in reverse direction 0...180 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.MaxFwdAng.setMag.f ASG FLOAT32 SG B 80 Max forward angle Maximum phase angle in forward direction 0...180 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.MaxRvAng.setMag.f ASG FLOAT32 SG B 80 Max reverse angle Maximum phase angle in reverse direction 0...180 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.BlkValA.setMag.f ASG FLOAT32 SP A 0.005 Min operate current Minimum operating current 0.005...1.000 xIn Settings\Settings\Current protection\DEFHPDEF1 RESTCTR1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.BlkValV.setMag.f ASG FLOAT32 SP A 0.01 Min operate voltage Minimum operating voltage 0.01...1.00 xUn Settings\Settings\Current protection\DEFHPDEF1 RESTVTR1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.PolQty.setVal ENG Enum SP A,I 3 Pol quantity Reference quantity used to determine fault direction 3=Zero seq. volt.; 4=Neg. seq. volt. Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.OpModEF.setVal ENG Enum SG A 1 Operation mode Operation criteria 1=Phase angle; 2=IoSin; 3=IoCos; 4=Phase angle 80; 5=Phase angle 88 Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.CorAng.setMag.f ASG FLOAT32 SP A 0.0 Correction angle Angle correction 0.0...10.0 deg Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.RevPol.setVal SPG BOOLEAN SP A 0 Pol reversal Rotate polarizing quantity Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) SET LD0.DEFHRDIR1.VResSigSel.setVal ENG Enum SP A,I 1 Uo signal Sel Selection for used Uo signal 1=Measured Uo; 2=Calculated Uo Settings\Settings\Current protection\DEFHPDEF1
DEFHPDEF1 Io>>->(1) 67N-2(1) TES LD0.DEFHPTOC1.TestPro.Oper.ctlVal ENC Enum CO B 0 DEFHPDEF1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Current protection
DEFHPDEF1 Io>>->(1) 67N-2(1) VER LD0.DEFHPTOC1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

ROVPTOV1: Residual overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
ROVPTOV1 Uo>(1) 59G(1) INP LD0.ROVPTOV1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\ROVPTOV1\Inputs
ROVPTOV1 Uo>(1) 59G(1) OUT LD0.ROVPTOV1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\ROVPTOV1\Outputs
ROVPTOV1 Uo>(1) 59G(1) OUT LD0.ROVPTOV1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\ROVPTOV1\Outputs
ROVPTOV1 Uo>(1) 59G(1) MON LD0.ROVPTOV1.Beh.stVal ENS Enum ST B ROVPTOV1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
ROVPTOV1 Uo>(1) 59G(1) MON LD0.ROVPTOV1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\ROVPTOV1\Monitored data
ROVPTOV1 Uo>(1) 59G(1) SET LD0.ROVPTOV1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\ROVPTOV1
ROVPTOV1 Uo>(1) 59G(1) SET LD0.ROVPTOV1.StrVal.setMag.f ASG FLOAT32 SG B 0.030 Start value Residual overvoltage start value 0.010...1.000 xUn Settings\Settings\Voltage protection\ROVPTOV1 RESTVTR1
ROVPTOV1 Uo>(1) 59G(1) SET LD0.ROVPTOV1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\ROVPTOV1
ROVPTOV1 Uo>(1) 59G(1) SET LD0.ROVPTOV1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\ROVPTOV1
ROVPTOV1 Uo>(1) 59G(1) SET LD0.ROVPTOV1.VResSigSel.setVal ENG Enum SP B,I 1 Uo signal Sel Selection for used Uo signal 1=Measured Uo; 2=Calculated Uo Settings\Settings\Voltage protection\ROVPTOV1
ROVPTOV1 Uo>(1) 59G(1) TES LD0.ROVPTOV1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 ROVPTOV1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
ROVPTOV1 Uo>(1) 59G(1) VER LD0.ROVPTOV1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

ROVPTOV2: Residual overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
ROVPTOV2 Uo>(2) 59G(2) INP LD0.ROVPTOV2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\ROVPTOV2\Inputs
ROVPTOV2 Uo>(2) 59G(2) OUT LD0.ROVPTOV2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\ROVPTOV2\Outputs
ROVPTOV2 Uo>(2) 59G(2) OUT LD0.ROVPTOV2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\ROVPTOV2\Outputs
ROVPTOV2 Uo>(2) 59G(2) MON LD0.ROVPTOV2.Beh.stVal ENS Enum ST B ROVPTOV2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
ROVPTOV2 Uo>(2) 59G(2) MON LD0.ROVPTOV2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\ROVPTOV2\Monitored data
ROVPTOV2 Uo>(2) 59G(2) SET LD0.ROVPTOV2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\ROVPTOV2
ROVPTOV2 Uo>(2) 59G(2) SET LD0.ROVPTOV2.StrVal.setMag.f ASG FLOAT32 SG B 0.030 Start value Residual overvoltage start value 0.010...1.000 xUn Settings\Settings\Voltage protection\ROVPTOV2 RESTVTR1
ROVPTOV2 Uo>(2) 59G(2) SET LD0.ROVPTOV2.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\ROVPTOV2
ROVPTOV2 Uo>(2) 59G(2) SET LD0.ROVPTOV2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\ROVPTOV2
ROVPTOV2 Uo>(2) 59G(2) SET LD0.ROVPTOV2.VResSigSel.setVal ENG Enum SP B,I 1 Uo signal Sel Selection for used Uo signal 1=Measured Uo; 2=Calculated Uo Settings\Settings\Voltage protection\ROVPTOV2
ROVPTOV2 Uo>(2) 59G(2) TES LD0.ROVPTOV2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 ROVPTOV2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
ROVPTOV2 Uo>(2) 59G(2) VER LD0.ROVPTOV2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

ROVPTOV3: Residual overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
ROVPTOV3 Uo>(3) 59G(3) INP LD0.ROVPTOV3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\ROVPTOV3\Inputs
ROVPTOV3 Uo>(3) 59G(3) OUT LD0.ROVPTOV3.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\ROVPTOV3\Outputs
ROVPTOV3 Uo>(3) 59G(3) OUT LD0.ROVPTOV3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\ROVPTOV3\Outputs
ROVPTOV3 Uo>(3) 59G(3) MON LD0.ROVPTOV3.Beh.stVal ENS Enum ST B ROVPTOV3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
ROVPTOV3 Uo>(3) 59G(3) MON LD0.ROVPTOV3.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\ROVPTOV3\Monitored data
ROVPTOV3 Uo>(3) 59G(3) SET LD0.ROVPTOV3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\ROVPTOV3
ROVPTOV3 Uo>(3) 59G(3) SET LD0.ROVPTOV3.StrVal.setMag.f ASG FLOAT32 SG B 0.030 Start value Residual overvoltage start value 0.010...1.000 xUn Settings\Settings\Voltage protection\ROVPTOV3 RESTVTR1
ROVPTOV3 Uo>(3) 59G(3) SET LD0.ROVPTOV3.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\ROVPTOV3
ROVPTOV3 Uo>(3) 59G(3) SET LD0.ROVPTOV3.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\ROVPTOV3
ROVPTOV3 Uo>(3) 59G(3) SET LD0.ROVPTOV3.VResSigSel.setVal ENG Enum SP B,I 1 Uo signal Sel Selection for used Uo signal 1=Measured Uo; 2=Calculated Uo Settings\Settings\Voltage protection\ROVPTOV3
ROVPTOV3 Uo>(3) 59G(3) TES LD0.ROVPTOV3.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 ROVPTOV3 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
ROVPTOV3 Uo>(3) 59G(3) VER LD0.ROVPTOV3.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTUV1: Three phase undervoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTUV1 3U<(1) 27(1) INP LD0.PHPTUV1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTUV1\Inputs
PHPTUV1 3U<(1) 27(1) OUT LD0.PHPTUV1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV1\Outputs
PHPTUV1 3U<(1) 27(1) OUT LD0.PHPTUV1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV1\Outputs
PHPTUV1 3U<(1) 27(1) MON LD0.PHPTUV1.Beh.stVal ENS Enum ST B PHPTUV1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTUV1 3U<(1) 27(1) MON LD0.PHPTUV1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTUV1\Monitored data
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 21=Inv. Curve A; 22=Inv. Curve B; 23=Programmable Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.StrVal.setMag.f ASG FLOAT32 SG B 0.90 Start value Start value 0.05...1.20 xUn Settings\Settings\Voltage protection\PHPTUV1 UL1TVTR1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.MinOpTmms.setVal ING INT32 SP A 60 Minimum operate time Minimum operate time for IDMT curves 60...60000 ms Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.OpDlTmms.setVal ING INT32 SG B 60 Operate delay time Operate delay time 60...300000 ms Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.BlkVal.setMag.f ASG FLOAT32 SP A 0.20 Voltage block value Low level blocking for undervoltage mode 0.05...1.00 xUn Settings\Settings\Voltage protection\PHPTUV1 UL1TVTR1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.EnaBlkVal.setVal SPG BOOLEAN SP A 1 Enable block value Enable internal blocking Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) SET LD0.PHPTUV1.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTUV1
PHPTUV1 3U<(1) 27(1) TES LD0.PHPTUV1.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTUV1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTUV1 3U<(1) 27(1) VER LD0.PHPTUV1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTUV2: Three phase undervoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTUV2 3U<(2) 27(2) INP LD0.PHPTUV2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTUV2\Inputs
PHPTUV2 3U<(2) 27(2) OUT LD0.PHPTUV2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV2\Outputs
PHPTUV2 3U<(2) 27(2) OUT LD0.PHPTUV2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV2\Outputs
PHPTUV2 3U<(2) 27(2) MON LD0.PHPTUV2.Beh.stVal ENS Enum ST B PHPTUV2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTUV2 3U<(2) 27(2) MON LD0.PHPTUV2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTUV2\Monitored data
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 21=Inv. Curve A; 22=Inv. Curve B; 23=Programmable Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.StrVal.setMag.f ASG FLOAT32 SG B 0.90 Start value Start value 0.05...1.20 xUn Settings\Settings\Voltage protection\PHPTUV2 UL1TVTR1
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.MinOpTmms.setVal ING INT32 SP A 60 Minimum operate time Minimum operate time for IDMT curves 60...60000 ms Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.OpDlTmms.setVal ING INT32 SG B 60 Operate delay time Operate delay time 60...300000 ms Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.BlkVal.setMag.f ASG FLOAT32 SP A 0.20 Voltage block value Low level blocking for undervoltage mode 0.05...1.00 xUn Settings\Settings\Voltage protection\PHPTUV2 UL1TVTR1
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.EnaBlkVal.setVal SPG BOOLEAN SP A 1 Enable block value Enable internal blocking Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) SET LD0.PHPTUV2.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTUV2
PHPTUV2 3U<(2) 27(2) TES LD0.PHPTUV2.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTUV2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTUV2 3U<(2) 27(2) VER LD0.PHPTUV2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTUV3: Three phase undervoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTUV3 3U<(3) 27(3) INP LD0.PHPTUV3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTUV3\Inputs
PHPTUV3 3U<(3) 27(3) OUT LD0.PHPTUV3.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV3\Outputs
PHPTUV3 3U<(3) 27(3) OUT LD0.PHPTUV3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV3\Outputs
PHPTUV3 3U<(3) 27(3) MON LD0.PHPTUV3.Beh.stVal ENS Enum ST B PHPTUV3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTUV3 3U<(3) 27(3) MON LD0.PHPTUV3.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTUV3\Monitored data
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 21=Inv. Curve A; 22=Inv. Curve B; 23=Programmable Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.StrVal.setMag.f ASG FLOAT32 SG B 0.90 Start value Start value 0.05...1.20 xUn Settings\Settings\Voltage protection\PHPTUV3 UL1TVTR1
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.MinOpTmms.setVal ING INT32 SP A 60 Minimum operate time Minimum operate time for IDMT curves 60...60000 ms Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.OpDlTmms.setVal ING INT32 SG B 60 Operate delay time Operate delay time 60...300000 ms Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.BlkVal.setMag.f ASG FLOAT32 SP A 0.20 Voltage block value Low level blocking for undervoltage mode 0.05...1.00 xUn Settings\Settings\Voltage protection\PHPTUV3 UL1TVTR1
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.EnaBlkVal.setVal SPG BOOLEAN SP A 1 Enable block value Enable internal blocking Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) SET LD0.PHPTUV3.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTUV3
PHPTUV3 3U<(3) 27(3) TES LD0.PHPTUV3.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTUV3 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTUV3 3U<(3) 27(3) VER LD0.PHPTUV3.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTUV4: Three phase undervoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTUV4 3U<(4) 27(4) INP LD0.PHPTUV4.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTUV4\Inputs
PHPTUV4 3U<(4) 27(4) OUT LD0.PHPTUV4.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV4\Outputs
PHPTUV4 3U<(4) 27(4) OUT LD0.PHPTUV4.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTUV4\Outputs
PHPTUV4 3U<(4) 27(4) MON LD0.PHPTUV4.Beh.stVal ENS Enum ST B PHPTUV4 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTUV4 3U<(4) 27(4) MON LD0.PHPTUV4.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTUV4\Monitored data
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 21=Inv. Curve A; 22=Inv. Curve B; 23=Programmable Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.StrVal.setMag.f ASG FLOAT32 SG B 0.90 Start value Start value 0.05...1.20 xUn Settings\Settings\Voltage protection\PHPTUV4 UL1TVTR1
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.MinOpTmms.setVal ING INT32 SP A 60 Minimum operate time Minimum operate time for IDMT curves 60...60000 ms Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.OpDlTmms.setVal ING INT32 SG B 60 Operate delay time Operate delay time 60...300000 ms Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.BlkVal.setMag.f ASG FLOAT32 SP A 0.20 Voltage block value Low level blocking for undervoltage mode 0.05...1.00 xUn Settings\Settings\Voltage protection\PHPTUV4 UL1TVTR1
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.EnaBlkVal.setVal SPG BOOLEAN SP A 1 Enable block value Enable internal blocking Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) SET LD0.PHPTUV4.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTUV4
PHPTUV4 3U<(4) 27(4) TES LD0.PHPTUV4.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTUV4 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTUV4 3U<(4) 27(4) VER LD0.PHPTUV4.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTOV1: Three phase overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTOV1 3U>(1) 59(1) INP LD0.PHPTOV1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTOV1\Inputs
PHPTOV1 3U>(1) 59(1) OUT LD0.PHPTOV1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV1\Outputs
PHPTOV1 3U>(1) 59(1) OUT LD0.PHPTOV1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV1\Outputs
PHPTOV1 3U>(1) 59(1) MON LD0.PHPTOV1.Beh.stVal ENS Enum ST B PHPTOV1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTOV1 3U>(1) 59(1) MON LD0.PHPTOV1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTOV1\Monitored data
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 17=Inv. Curve A; 18=Inv. Curve B; 19=Inv. Curve C; 20=Programmable Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.StrVal.setMag.f ASG FLOAT32 SG B 1.10 Start value Start value 0.05...1.60 xUn Settings\Settings\Voltage protection\PHPTOV1 UL1TVTR1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.MinOpTmms.setVal ING INT32 SP A 40 Minimum operate time Minimum operate time for IDMT curves 40...60000 ms Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) SET LD0.PHPTOV1.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTOV1
PHPTOV1 3U>(1) 59(1) TES LD0.PHPTOV1.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTOV1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTOV1 3U>(1) 59(1) VER LD0.PHPTOV1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTOV2: Three phase overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTOV2 3U>(2) 59(2) INP LD0.PHPTOV2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTOV2\Inputs
PHPTOV2 3U>(2) 59(2) OUT LD0.PHPTOV2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV2\Outputs
PHPTOV2 3U>(2) 59(2) OUT LD0.PHPTOV2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV2\Outputs
PHPTOV2 3U>(2) 59(2) MON LD0.PHPTOV2.Beh.stVal ENS Enum ST B PHPTOV2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTOV2 3U>(2) 59(2) MON LD0.PHPTOV2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTOV2\Monitored data
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 17=Inv. Curve A; 18=Inv. Curve B; 19=Inv. Curve C; 20=Programmable Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.StrVal.setMag.f ASG FLOAT32 SG B 1.10 Start value Start value 0.05...1.60 xUn Settings\Settings\Voltage protection\PHPTOV2 UL1TVTR1
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.MinOpTmms.setVal ING INT32 SP A 40 Minimum operate time Minimum operate time for IDMT curves 40...60000 ms Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) SET LD0.PHPTOV2.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTOV2
PHPTOV2 3U>(2) 59(2) TES LD0.PHPTOV2.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTOV2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTOV2 3U>(2) 59(2) VER LD0.PHPTOV2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PHPTOV3: Three phase overvoltage protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHPTOV3 3U>(3) 59(3) INP LD0.PHPTOV3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PHPTOV3\Inputs
PHPTOV3 3U>(3) 59(3) OUT LD0.PHPTOV3.Str.general ACD BOOLEAN ST B StatNrml P,H START Start (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV3\Outputs
PHPTOV3 3U>(3) 59(3) OUT LD0.PHPTOV3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate (A,B,C) Monitoring\I/O status\Voltage protection\PHPTOV3\Outputs
PHPTOV3 3U>(3) 59(3) MON LD0.PHPTOV3.Beh.stVal ENS Enum ST B PHPTOV3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHPTOV3 3U>(3) 59(3) MON LD0.PHPTOV3.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PHPTOV3\Monitored data
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setCharact CURVE Enum SG B,I 15 Operating curve type Selection of time delay curve type 5=ANSI Def. Time; 15=IEC Def. Time; 17=Inv. Curve A; 18=Inv. Curve B; 19=Inv. Curve C; 20=Programmable Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setParA CURVE FLOAT32 SP B,I 1.000 Curve parameter A Parameter A for customer programmable curve 0.005...200.000 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setParB CURVE FLOAT32 SP B,I 1.00 Curve parameter B Parameter B for customer programmable curve 0.50...100.00 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setParC CURVE FLOAT32 SP B,I 0.0 Curve parameter C Parameter C for customer programmable curve 0.0...1.0 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setParD CURVE FLOAT32 SP B,I 0.000 Curve parameter D Parameter D for customer programmable curve 0.000...60.000 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmVCrv.setParE CURVE FLOAT32 SP B,I 1.000 Curve parameter E Parameter E for customer programmable curve 0.000...3.000 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.StrVal.setMag.f ASG FLOAT32 SG B 1.10 Start value Start value 0.05...1.60 xUn Settings\Settings\Voltage protection\PHPTOV3 UL1TVTR1
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TmMult.setMag.f ASG FLOAT32 SG B 1.0 Time multiplier Time multiplier in IEC/ANSI IDMT curves 0.05...15.0 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.MinOpTmms.setVal ING INT32 SP A 40 Minimum operate time Minimum operate time for IDMT curves 40...60000 ms Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...300000 ms Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TypRsCrv.setVal ENG Enum SG A 1 Type of reset curve Selection of reset curve type 1=Immediate; 2=Def time reset Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.NumPh.setVal ENG Enum SP B 1 Num of start phases Number of phases required for operate activation 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.CrvSatRl.setMag.f ASG FLOAT32 SP A,I 0.0 Curve Sat Relative Tuning parameter to avoid curve discontinuities 0.0...10.0 Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.VSel.setVal ENG Enum SP B 2 Voltage selection Parameter to select phase or phase-to-phase voltages 1=phase-to-earth; 2=phase-to-phase Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) SET LD0.PHPTOV3.TypTmRs.setVal ENG Enum SG A 1 Type of time reset Selection of time reset 1=Freeze Op timer; 2=Decrease Op timer Settings\Settings\Voltage protection\PHPTOV3
PHPTOV3 3U>(3) 59(3) TES LD0.PHPTOV3.TestPro.Oper.ctlVal ENC Enum CO B 0 PHPTOV3 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PHPTOV3 3U>(3) 59(3) VER LD0.PHPTOV3.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PSPTUV1: Positive sequence undervoltage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PSPTUV1 U1<(1) 47U+(1) INP LD0.PSPTUV1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PSPTUV1\Inputs
PSPTUV1 U1<(1) 47U+(1) OUT LD0.PSPTUV1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\PSPTUV1\Outputs
PSPTUV1 U1<(1) 47U+(1) OUT LD0.PSPTUV1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\PSPTUV1\Outputs
PSPTUV1 U1<(1) 47U+(1) MON LD0.PSPTUV1.Beh.stVal ENS Enum ST B PSPTUV1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PSPTUV1 U1<(1) 47U+(1) MON LD0.PSPTUV1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PSPTUV1\Monitored data
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PSPTUV1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.StrVal.setMag.f ASG FLOAT32 SG B 0.500 Start value Start value 0.010...1.200 xUn Settings\Settings\Voltage protection\PSPTUV1 UL1TVTR1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...120000 ms Settings\Settings\Voltage protection\PSPTUV1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PSPTUV1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.BlkVal.setMag.f ASG FLOAT32 SG A 0.20 Voltage block value Internal blocking level 0.01...1.00 xUn Settings\Settings\Voltage protection\PSPTUV1 UL1TVTR1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.EnaBlkVal.setVal SPG BOOLEAN SG A 1 Enable block value Enable Internal Blocking Settings\Settings\Voltage protection\PSPTUV1
PSPTUV1 U1<(1) 47U+(1) SET LD0.PSPTUV1.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PSPTUV1
PSPTUV1 U1<(1) 47U+(1) TES LD0.PSPTUV1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PSPTUV1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PSPTUV1 U1<(1) 47U+(1) VER LD0.PSPTUV1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

PSPTUV2: Positive sequence undervoltage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PSPTUV2 U1<(2) 47U+(2) INP LD0.PSPTUV2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\PSPTUV2\Inputs
PSPTUV2 U1<(2) 47U+(2) OUT LD0.PSPTUV2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\PSPTUV2\Outputs IL1TCTR1
PSPTUV2 U1<(2) 47U+(2) OUT LD0.PSPTUV2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\PSPTUV2\Outputs IL1TCTR1
PSPTUV2 U1<(2) 47U+(2) MON LD0.PSPTUV2.Beh.stVal ENS Enum ST B PSPTUV2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PSPTUV2 U1<(2) 47U+(2) MON LD0.PSPTUV2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\PSPTUV2\Monitored data
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\PSPTUV2
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.StrVal.setMag.f ASG FLOAT32 SG B 0.500 Start value Start value 0.010...1.200 xUn Settings\Settings\Voltage protection\PSPTUV2 UL1TVTR1
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...120000 ms Settings\Settings\Voltage protection\PSPTUV2
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\PSPTUV2
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.BlkVal.setMag.f ASG FLOAT32 SG A 0.20 Voltage block value Internal blocking level 0.01...1.00 xUn Settings\Settings\Voltage protection\PSPTUV2 UL1TVTR1
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.EnaBlkVal.setVal SPG BOOLEAN SG A 1 Enable block value Enable Internal Blocking Settings\Settings\Voltage protection\PSPTUV2
PSPTUV2 U1<(2) 47U+(2) SET LD0.PSPTUV2.HysRl.setMag.f ASG FLOAT32 SP A,I 4.0 Relative hysteresis Relative hysteresis for operation 1.0...5.0 % Settings\Settings\Voltage protection\PSPTUV2
PSPTUV2 U1<(2) 47U+(2) TES LD0.PSPTUV2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PSPTUV2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
PSPTUV2 U1<(2) 47U+(2) VER LD0.PSPTUV2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

NSPTOV1: Negative sequence overvoltage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
NSPTOV1 U2>(1) 47O-(1) INP LD0.NSPTOV1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\NSPTOV1\Inputs
NSPTOV1 U2>(1) 47O-(1) OUT LD0.NSPTOV1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\NSPTOV1\Outputs
NSPTOV1 U2>(1) 47O-(1) OUT LD0.NSPTOV1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\NSPTOV1\Outputs
NSPTOV1 U2>(1) 47O-(1) MON LD0.NSPTOV1.Beh.stVal ENS Enum ST B NSPTOV1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
NSPTOV1 U2>(1) 47O-(1) MON LD0.NSPTOV1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\NSPTOV1\Monitored data
NSPTOV1 U2>(1) 47O-(1) SET LD0.NSPTOV1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\NSPTOV1
NSPTOV1 U2>(1) 47O-(1) SET LD0.NSPTOV1.StrVal.setMag.f ASG FLOAT32 SG B 0.030 Start value Start value 0.010...1.000 xUn Settings\Settings\Voltage protection\NSPTOV1 UL1TVTR1
NSPTOV1 U2>(1) 47O-(1) SET LD0.NSPTOV1.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...120000 ms Settings\Settings\Voltage protection\NSPTOV1
NSPTOV1 U2>(1) 47O-(1) SET LD0.NSPTOV1.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\NSPTOV1
NSPTOV1 U2>(1) 47O-(1) TES LD0.NSPTOV1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 NSPTOV1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
NSPTOV1 U2>(1) 47O-(1) VER LD0.NSPTOV1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

NSPTOV2: Negative sequence overvoltage

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
NSPTOV2 U2>(2) 47O-(2) INP LD0.NSPTOV2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Voltage protection\NSPTOV2\Inputs
NSPTOV2 U2>(2) 47O-(2) OUT LD0.NSPTOV2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Voltage protection\NSPTOV2\Outputs
NSPTOV2 U2>(2) 47O-(2) OUT LD0.NSPTOV2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Voltage protection\NSPTOV2\Outputs
NSPTOV2 U2>(2) 47O-(2) MON LD0.NSPTOV2.Beh.stVal ENS Enum ST B NSPTOV2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
NSPTOV2 U2>(2) 47O-(2) MON LD0.NSPTOV2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Voltage protection\NSPTOV2\Monitored data
NSPTOV2 U2>(2) 47O-(2) SET LD0.NSPTOV2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Voltage protection\NSPTOV2
NSPTOV2 U2>(2) 47O-(2) SET LD0.NSPTOV2.StrVal.setMag.f ASG FLOAT32 SG B 0.030 Start value Start value 0.010...1.000 xUn Settings\Settings\Voltage protection\NSPTOV2 UL1TVTR1
NSPTOV2 U2>(2) 47O-(2) SET LD0.NSPTOV2.OpDlTmms.setVal ING INT32 SG B 40 Operate delay time Operate delay time 40...120000 ms Settings\Settings\Voltage protection\NSPTOV2
NSPTOV2 U2>(2) 47O-(2) SET LD0.NSPTOV2.RsDlTmms.setVal ING INT32 SP A 20 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Voltage protection\NSPTOV2
NSPTOV2 U2>(2) 47O-(2) TES LD0.NSPTOV2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 NSPTOV2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Voltage protection
NSPTOV2 U2>(2) 47O-(2) VER LD0.NSPTOV2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

FRPFRQ1: Frequency protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
FRPFRQ1 f>/f<,df/dt(1) 81(1) INP LD0.FRPTRC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Frequency protection\FRPFRQ1\Inputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTRC1.Op.general ACT BOOLEAN ST B OPERATE Operate Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTRC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTOF1.Str.general ACD BOOLEAN ST B ST_OFRQ Start signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTOF1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_OFRQ Operate signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTUF1.Str.general ACD BOOLEAN ST B ST_UFRQ Start signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPTUF1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_UFRQ Operate signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPFRC1.Str.general ACD BOOLEAN ST B ST_FRG Start signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) OUT LD0.FRPFRC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_FRG Operate signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ1\Outputs
FRPFRQ1 f>/f<,df/dt(1) 81(1) MON LD0.FRPTRC1.Beh.stVal ENS Enum ST B FRPFRQ1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
FRPFRQ1 f>/f<,df/dt(1) 81(1) MON LD0.FRPTRC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ1\Monitored data
FRPFRQ1 f>/f<,df/dt(1) 81(1) MON LD0.FRPTOF1.StrDur.mag.f MV FLOAT32 MX B ST_DUR_OFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ1\Monitored data
FRPFRQ1 f>/f<,df/dt(1) 81(1) MON LD0.FRPTUF1.StrDur.mag.f MV FLOAT32 MX B ST_DUR_UFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ1\Monitored data
FRPFRQ1 f>/f<,df/dt(1) 81(1) MON LD0.FRPFRC1.StrDur.mag.f MV FLOAT32 MX B ST_DUR_FRG Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ1\Monitored data
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTRC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTRC1.OpModProHz.setVal ENG Enum SG B 1 Operation mode Frequency protection operation mode selection 1=Freq<; 2=Freq>; 3=df/dt; 4=Freq< + df/dt; 5=Freq> + df/dt; 6=Freq< OR df/dt; 7=Freq> OR df/dt Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTOF1.StrVal.setMag.f ASG FLOAT32 SG B 1.050 Start value Freq> Frequency start value overfrequency 0.900...1.200 xFn Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTOF1.OpDlTmms.setVal ING INT32 SG B 200 Operate Tm Freq Operate delay time for frequency 80...200000 ms Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTOF1.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm Freq Reset delay time for frequency 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPTUF1.StrVal.setMag.f ASG FLOAT32 SG B 0.950 Start value Freq< Frequency start value underfrequency 0.800...1.100 xFn Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPFRC1.StrVal.setMag.f ASG FLOAT32 SG B 0.0100 Start value df/dt Frequency start value rate of change -0.2000...0.2000 xFn /s Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPFRC1.OpDlTmms.setVal ING INT32 SG B 400 Operate Tm df/dt Operate delay time for frequency rate of change 120...200000 ms Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) SET LD0.FRPFRC1.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm df/dt Reset delay time for rate of change 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ1
FRPFRQ1 f>/f<,df/dt(1) 81(1) TES LD0.FRPTRC1.TestPro.Oper.ctlVal ENC Enum CO B 0 FRPFRQ1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE; 69=Activate OPR_UFRQ; 70=Deactive OPR_UFRQ; 71=Activate OPR_OFRQ; 72=Deactive OPR_OFRQ; 73=Activate OPR_FRG; 74=Deactive OPR_FRG; 75=Activate ST_UFRQ; 76=Deactive ST_UFRQ; 77=Activate ST_OFRQ; 78=Deactive ST_OFRQ; 79=Activate ST_FRG; 80=Deactive ST_FRG Tests\Function tests\Frequency protection
FRPFRQ1 f>/f<,df/dt(1) 81(1) VER LD0.FRPTRC1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

FRPFRQ2: Frequency protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
FRPFRQ2 f>/f<,df/dt(2) 81(2) INP LD0.FRPTRC2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Frequency protection\FRPFRQ2\Inputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTRC2.Op.general ACT BOOLEAN ST B OPERATE Operate Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTRC2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTOF2.Str.general ACD BOOLEAN ST B ST_OFRQ Start signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTOF2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_OFRQ Operate signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTUF2.Str.general ACD BOOLEAN ST B ST_UFRQ Start signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPTUF2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_UFRQ Operate signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPFRC2.Str.general ACD BOOLEAN ST B ST_FRG Start signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) OUT LD0.FRPFRC2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_FRG Operate signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ2\Outputs
FRPFRQ2 f>/f<,df/dt(2) 81(2) MON LD0.FRPTRC2.Beh.stVal ENS Enum ST B FRPFRQ2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
FRPFRQ2 f>/f<,df/dt(2) 81(2) MON LD0.FRPTRC2.StrDur.mag.f MV FLOAT32 MX B START_DUR Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ2\Monitored data
FRPFRQ2 f>/f<,df/dt(2) 81(2) MON LD0.FRPTOF2.StrDur.mag.f MV FLOAT32 MX B ST_DUR_OFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ2\Monitored data
FRPFRQ2 f>/f<,df/dt(2) 81(2) MON LD0.FRPTUF2.StrDur.mag.f MV FLOAT32 MX B ST_DUR_UFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ2\Monitored data
FRPFRQ2 f>/f<,df/dt(2) 81(2) MON LD0.FRPFRC2.StrDur.mag.f MV FLOAT32 MX B ST_DUR_FRG Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ2\Monitored data
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTRC2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTRC2.OpModProHz.setVal ENG Enum SG B 1 Operation mode Frequency protection operation mode selection 1=Freq<; 2=Freq>; 3=df/dt; 4=Freq< + df/dt; 5=Freq> + df/dt; 6=Freq< OR df/dt; 7=Freq> OR df/dt Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTOF2.StrVal.setMag.f ASG FLOAT32 SG B 1.050 Start value Freq> Frequency start value overfrequency 0.900...1.200 xFn Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTOF2.OpDlTmms.setVal ING INT32 SG B 200 Operate Tm Freq Operate delay time for frequency 80...200000 ms Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTOF2.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm Freq Reset delay time for frequency 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPTUF2.StrVal.setMag.f ASG FLOAT32 SG B 0.950 Start value Freq< Frequency start value underfrequency 0.800...1.100 xFn Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPFRC2.StrVal.setMag.f ASG FLOAT32 SG B 0.0100 Start value df/dt Frequency start value rate of change -0.2000...0.2000 xFn /s Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPFRC2.OpDlTmms.setVal ING INT32 SG B 400 Operate Tm df/dt Operate delay time for frequency rate of change 120...200000 ms Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) SET LD0.FRPFRC2.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm df/dt Reset delay time for rate of change 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ2
FRPFRQ2 f>/f<,df/dt(2) 81(2) TES LD0.FRPTRC2.TestPro.Oper.ctlVal ENC Enum CO B 0 FRPFRQ2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE; 69=Activate OPR_UFRQ; 70=Deactive OPR_UFRQ; 71=Activate OPR_OFRQ; 72=Deactive OPR_OFRQ; 73=Activate OPR_FRG; 74=Deactive OPR_FRG; 75=Activate ST_UFRQ; 76=Deactive ST_UFRQ; 77=Activate ST_OFRQ; 78=Deactive ST_OFRQ; 79=Activate ST_FRG; 80=Deactive ST_FRG Tests\Function tests\Frequency protection
FRPFRQ2 f>/f<,df/dt(2) 81(2) VER LD0.FRPTRC2.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

FRPFRQ3: Frequency protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
FRPFRQ3 f>/f<,df/dt(3) 81(3) INP LD0.FRPTRC3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Frequency protection\FRPFRQ3\Inputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTRC3.Op.general ACT BOOLEAN ST B OPERATE Operate Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTRC3.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTOF3.Str.general ACD BOOLEAN ST B ST_OFRQ Start signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTOF3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_OFRQ Operate signal for overfrequency Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTUF3.Str.general ACD BOOLEAN ST B ST_UFRQ Start signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPTUF3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_UFRQ Operate signal for underfrequency Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPFRC3.Str.general ACD BOOLEAN ST B ST_FRG Start signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) OUT LD0.FRPFRC3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPR_FRG Operate signal for frequency gradient Monitoring\I/O status\Frequency protection\FRPFRQ3\Outputs
FRPFRQ3 f>/f<,df/dt(3) 81(3) MON LD0.FRPTRC3.Beh.stVal ENS Enum ST B FRPFRQ3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
FRPFRQ3 f>/f<,df/dt(3) 81(3) MON LD0.FRPTRC3.StrDur.mag.f MV FLOAT32 MX B START_DUR Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ3\Monitored data
FRPFRQ3 f>/f<,df/dt(3) 81(3) MON LD0.FRPTOF3.StrDur.mag.f MV FLOAT32 MX B ST_DUR_OFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ3\Monitored data
FRPFRQ3 f>/f<,df/dt(3) 81(3) MON LD0.FRPTUF3.StrDur.mag.f MV FLOAT32 MX B ST_DUR_UFRQ Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ3\Monitored data
FRPFRQ3 f>/f<,df/dt(3) 81(3) MON LD0.FRPFRC3.StrDur.mag.f MV FLOAT32 MX B ST_DUR_FRG Start duration 0.00...100.00 % Monitoring\I/O status\Frequency protection\FRPFRQ3\Monitored data
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTRC3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTRC3.OpModProHz.setVal ENG Enum SG B 1 Operation mode Frequency protection operation mode selection 1=Freq<; 2=Freq>; 3=df/dt; 4=Freq< + df/dt; 5=Freq> + df/dt; 6=Freq< OR df/dt; 7=Freq> OR df/dt Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTOF3.StrVal.setMag.f ASG FLOAT32 SG B 1.050 Start value Freq> Frequency start value overfrequency 0.900...1.200 xFn Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTOF3.OpDlTmms.setVal ING INT32 SG B 200 Operate Tm Freq Operate delay time for frequency 80...200000 ms Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTOF3.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm Freq Reset delay time for frequency 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPTUF3.StrVal.setMag.f ASG FLOAT32 SG B 0.950 Start value Freq< Frequency start value underfrequency 0.800...1.100 xFn Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPFRC3.StrVal.setMag.f ASG FLOAT32 SG B 0.0100 Start value df/dt Frequency start value rate of change -0.2000...0.2000 xFn /s Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPFRC3.OpDlTmms.setVal ING INT32 SG B 400 Operate Tm df/dt Operate delay time for frequency rate of change 120...200000 ms Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) SET LD0.FRPFRC3.RsDlTmms.setVal ING INT32 SP A 0 Reset delay Tm df/dt Reset delay time for rate of change 0...60000 ms Settings\Settings\Frequency protection\FRPFRQ3
FRPFRQ3 f>/f<,df/dt(3) 81(3) TES LD0.FRPTRC3.TestPro.Oper.ctlVal ENC Enum CO B 0 FRPFRQ3 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE; 69=Activate OPR_UFRQ; 70=Deactive OPR_UFRQ; 71=Activate OPR_OFRQ; 72=Deactive OPR_OFRQ; 73=Activate OPR_FRG; 74=Deactive OPR_FRG; 75=Activate ST_UFRQ; 76=Deactive ST_UFRQ; 77=Activate ST_OFRQ; 78=Deactive ST_OFRQ; 79=Activate ST_FRG; 80=Deactive ST_FRG Tests\Function tests\Frequency protection
FRPFRQ3 f>/f<,df/dt(3) 81(3) VER LD0.FRPTRC3.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

CCBRBRF1: Circuit breaker failure protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) INP LD0.CCBRBRF1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block CBFP operation Monitoring\I/O status\Other protection\CCBRBRF1\Inputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) INP LD0.CCBRBRF1.InStr.stVal SPS BOOLEAN ST B 0 START CBFP start command Monitoring\I/O status\Other protection\CCBRBRF1\Inputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) INP LD0.CCBRBRF1.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE CB in closed position Monitoring\I/O status\Other protection\CCBRBRF1\Inputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) INP LD0.CCBRBRF1.InCBFlt.stVal SPS BOOLEAN ST B 0 CB_FAULT CB faulty and unable to trip Monitoring\I/O status\Other protection\CCBRBRF1\Inputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) OUT LD0.CCBRBRF1.Str.general ACD BOOLEAN ST B StatIed P,H CB_FAULT_AL Delayed CB failure alarm Monitoring\I/O status\Other protection\CCBRBRF1\Outputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) OUT LD0.CCBRBRF1.OpEx.general ACT BOOLEAN ST B StatIed P,H,T TRBU Backup trip Monitoring\I/O status\Other protection\CCBRBRF1\Outputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) OUT LD0.CCBRBRF1.OpIn.general ACT BOOLEAN ST B StatIed P,H,T TRRET Retrip Monitoring\I/O status\Other protection\CCBRBRF1\Outputs
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) MON LD0.CCBRBRF1.Beh.stVal ENS Enum ST B CCBRBRF1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.FailMod.setVal ENG Enum SP B 1 CB failure mode Operating mode of function 1=Current; 2=Breaker status; 3=Both Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.FailTmms.setVal ING INT32 SP B 240 CB failure delay Delay timer for backup trip 0...60000 ms Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.TPTrTmms.setVal ING INT32 SP B 120 Retrip time Delay timer for retrip 0...60000 ms Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.DetValA.setMag.f ASG FLOAT32 SP B 0.30 Current value Operating phase current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF1 IL1TCTR1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.ReTrMod.setVal ENG Enum SP B 1 CB fail retrip mode Operating mode of retrip logic 1=Off; 2=Without Check; 3=Current check Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.TrPlsTmms.setVal ING INT32 SP A 200 Trip pulse time Pulse length of retrip and backup trip outputs 0...60000 ms Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.DetValARes.setMag.f ASG FLOAT32 SP B 0.30 Current value Res Operating residual current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF1 IL1TCTR1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.AMeasMod.setVal ENG Enum SP A 3 Measurement mode Phase current measurement mode of function 2=DFT; 3=Peak-to-Peak Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.CBAlmTmms.setVal ING INT32 SP A 5000 CB fault delay Circuit breaker faulty delay 0...60000 ms Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.OpExMod.setVal ENG Enum SP B 2 CB failure trip mode Backup trip current check mode 1=2 out of 4; 2=1 out of 3; 3=1 out of 4 Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) SET LD0.CCBRBRF1.StrLtcMod.setVal ENG Enum SP A 1 Start latching mode Start reset delayed or immediately 1=Rising edge; 2=Level sensitive Settings\Settings\Other protection\CCBRBRF1
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) TES LD0.CCBRBRF1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 CCBRBRF1 Test control for outputs 0=Reset; 25=Activate CB_FAULT_AL; 26=Deactive CB_FAULT_AL; 27=Activate TRBU; 28=Deactive TRBU; 29=Activate TRRET; 30=Deactive TRRET Tests\Function tests\Other protection
CCBRBRF1 3I>/Io>BF(1) 51BF/51NBF(1) VER LD0.CCBRBRF1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

CCBRBRF2: Circuit breaker failure protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) INP LD0.CCBRBRF2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block CBFP operation Monitoring\I/O status\Other protection\CCBRBRF2\Inputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) INP LD0.CCBRBRF2.InStr.stVal SPS BOOLEAN ST B 0 START CBFP start command Monitoring\I/O status\Other protection\CCBRBRF2\Inputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) INP LD0.CCBRBRF2.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE CB in closed position Monitoring\I/O status\Other protection\CCBRBRF2\Inputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) INP LD0.CCBRBRF2.InCBFlt.stVal SPS BOOLEAN ST B 0 CB_FAULT CB faulty and unable to trip Monitoring\I/O status\Other protection\CCBRBRF2\Inputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) OUT LD0.CCBRBRF2.Str.general ACD BOOLEAN ST B StatIed P,H CB_FAULT_AL Delayed CB failure alarm Monitoring\I/O status\Other protection\CCBRBRF2\Outputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) OUT LD0.CCBRBRF2.OpEx.general ACT BOOLEAN ST B StatIed P,H,T TRBU Backup trip Monitoring\I/O status\Other protection\CCBRBRF2\Outputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) OUT LD0.CCBRBRF2.OpIn.general ACT BOOLEAN ST B StatIed P,H,T TRRET Retrip Monitoring\I/O status\Other protection\CCBRBRF2\Outputs
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) MON LD0.CCBRBRF2.Beh.stVal ENS Enum ST B CCBRBRF2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.FailMod.setVal ENG Enum SP B 1 CB failure mode Operating mode of function 1=Current; 2=Breaker status; 3=Both Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.FailTmms.setVal ING INT32 SP B 240 CB failure delay Delay timer for backup trip 0...60000 ms Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.TPTrTmms.setVal ING INT32 SP B 120 Retrip time Delay timer for retrip 0...60000 ms Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.DetValA.setMag.f ASG FLOAT32 SP B 0.30 Current value Operating phase current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF2 IL1TCTR2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.ReTrMod.setVal ENG Enum SP B 1 CB fail retrip mode Operating mode of retrip logic 1=Off; 2=Without Check; 3=Current check Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.TrPlsTmms.setVal ING INT32 SP A 200 Trip pulse time Pulse length of retrip and backup trip outputs 0...60000 ms Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.DetValARes.setMag.f ASG FLOAT32 SP B 0.30 Current value Res Operating residual current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF2 IL1TCTR2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.AMeasMod.setVal ENG Enum SP A 3 Measurement mode Phase current measurement mode of function 2=DFT; 3=Peak-to-Peak Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.CBAlmTmms.setVal ING INT32 SP A 5000 CB fault delay Circuit breaker faulty delay 0...60000 ms Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.OpExMod.setVal ENG Enum SP B 2 CB failure trip mode Backup trip current check mode 1=2 out of 4; 2=1 out of 3; 3=1 out of 4 Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) SET LD0.CCBRBRF2.StrLtcMod.setVal ENG Enum SP A 1 Start latching mode Start reset delayed or immediately 1=Rising edge; 2=Level sensitive Settings\Settings\Other protection\CCBRBRF2
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) TES LD0.CCBRBRF2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 CCBRBRF2 Test control for outputs 0=Reset; 25=Activate CB_FAULT_AL; 26=Deactive CB_FAULT_AL; 27=Activate TRBU; 28=Deactive TRBU; 29=Activate TRRET; 30=Deactive TRRET Tests\Function tests\Other protection
CCBRBRF2 3I>/Io>BF(2) 51BF/51NBF(2) VER LD0.CCBRBRF2.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

CCBRBRF3: Circuit breaker failure protection

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) INP LD0.CCBRBRF3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block CBFP operation Monitoring\I/O status\Other protection\CCBRBRF3\Inputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) INP LD0.CCBRBRF3.InStr.stVal SPS BOOLEAN ST B 0 START CBFP start command Monitoring\I/O status\Other protection\CCBRBRF3\Inputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) INP LD0.CCBRBRF3.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE CB in closed position Monitoring\I/O status\Other protection\CCBRBRF3\Inputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) INP LD0.CCBRBRF3.InCBFlt.stVal SPS BOOLEAN ST B 0 CB_FAULT CB faulty and unable to trip Monitoring\I/O status\Other protection\CCBRBRF3\Inputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) OUT LD0.CCBRBRF3.Str.general ACD BOOLEAN ST B StatIed P,H CB_FAULT_AL Delayed CB failure alarm Monitoring\I/O status\Other protection\CCBRBRF3\Outputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) OUT LD0.CCBRBRF3.OpEx.general ACT BOOLEAN ST B StatIed P,H,T TRBU Backup trip Monitoring\I/O status\Other protection\CCBRBRF3\Outputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) OUT LD0.CCBRBRF3.OpIn.general ACT BOOLEAN ST B StatIed P,H,T TRRET Retrip Monitoring\I/O status\Other protection\CCBRBRF3\Outputs
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) MON LD0.CCBRBRF3.Beh.stVal ENS Enum ST B CCBRBRF3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\CCBRBRF3 IL1TCTR2
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.FailMod.setVal ENG Enum SP B 1 CB failure mode Operating mode of function 1=Current; 2=Breaker status; 3=Both Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.FailTmms.setVal ING INT32 SP B 240 CB failure delay Delay timer for backup trip 0...60000 ms Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.TPTrTmms.setVal ING INT32 SP B 120 Retrip time Delay timer for retrip 0...60000 ms Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.DetValA.setMag.f ASG FLOAT32 SP B 0.30 Current value Operating phase current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF3 IL1TCTR2
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.ReTrMod.setVal ENG Enum SP B 1 CB fail retrip mode Operating mode of retrip logic 1=Off; 2=Without Check; 3=Current check Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.TrPlsTmms.setVal ING INT32 SP A 200 Trip pulse time Pulse length of retrip and backup trip outputs 0...60000 ms Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.DetValARes.setMag.f ASG FLOAT32 SP B 0.30 Current value Res Operating residual current 0.05...2.00 xIn Settings\Settings\Other protection\CCBRBRF3 IL1TCTR2
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.AMeasMod.setVal ENG Enum SP A 3 Measurement mode Phase current measurement mode of function 2=DFT; 3=Peak-to-Peak Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.CBAlmTmms.setVal ING INT32 SP A 5000 CB fault delay Circuit breaker faulty delay 0...60000 ms Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.OpExMod.setVal ENG Enum SP B 2 CB failure trip mode Backup trip current check mode 1=2 out of 4; 2=1 out of 3; 3=1 out of 4 Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) SET LD0.CCBRBRF3.StrLtcMod.setVal ENG Enum SP A 1 Start latching mode Start reset delayed or immediately 1=Rising edge; 2=Level sensitive Settings\Settings\Other protection\CCBRBRF3
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) TES LD0.CCBRBRF3.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 CCBRBRF3 Test control for outputs 0=Reset; 25=Activate CB_FAULT_AL; 26=Deactive CB_FAULT_AL; 27=Activate TRBU; 28=Deactive TRBU; 29=Activate TRRET; 30=Deactive TRRET Tests\Function tests\Other protection
CCBRBRF3 3I>/Io>BF(3) 51BF/51NBF(3) VER LD0.CCBRBRF3.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

TRPPTRC1: Trip logic

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TRPPTRC1 Master Trip(1) 94/86(1) INP LD0.TRPPTRC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block of function Monitoring\I/O status\Trip logic\TRPPTRC1\Inputs
TRPPTRC1 Master Trip(1) 94/86(1) INP LD0.TRPPTRC1.Op.general ACT BOOLEAN ST B 0 StatIO P OPERATE Operate Monitoring\I/O status\Trip logic\TRPPTRC1\Inputs
TRPPTRC1 Master Trip(1) 94/86(1) INP LD0.TRPPTRC1.LORs.stVal SPC BOOLEAN ST B 0 RST_LKOUT Input for resetting the circuit breaker lockout function Monitoring\I/O status\Trip logic\TRPPTRC1\Inputs
TRPPTRC1 Master Trip(1) 94/86(1) OUT LD0.TRPPTRC1.Tr.general ACT BOOLEAN ST B StatNrml P,H TRIP General trip output signal Monitoring\I/O status\Trip logic\TRPPTRC1\Outputs
TRPPTRC1 Master Trip(1) 94/86(1) OUT LD0.TRPPTRC1.ClsLO.stVal SPS BOOLEAN ST B CL_LKOUT Circuit breaker lockout output (set until reset) Monitoring\I/O status\Trip logic\TRPPTRC1\Outputs
TRPPTRC1 Master Trip(1) 94/86(1) CTR LD0.TRPPTRC1.LORs.Oper.ctlVal SPC BOOLEAN CO B,H 0 TRPPTRC1 Reset TRPPTRC1 lockout and latch 0=Cancel; 1=Clear Clear\Clear
TRPPTRC1 Master Trip(1) 94/86(1) CTR LD0.TRPPTRC1.TrRs.Oper.ctlVal SPC BOOLEAN CO (Reset latched trip)
TRPPTRC1 Master Trip(1) 94/86(1) MON LD0.TRPPTRC1.Beh.stVal ENS Enum ST B TRPPTRC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TRPPTRC1 Master Trip(1) 94/86(1) CFG LD0.TRPPTRC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Trip logic\TRPPTRC1
TRPPTRC1 Master Trip(1) 94/86(1) CFG LD0.TRPPTRC1.TrPlsTmms.setVal ING INT32 SP B 250 Trip pulse time Minimum duration of trip output signal 20...60000 ms Configuration\Trip logic\TRPPTRC1
TRPPTRC1 Master Trip(1) 94/86(1) CFG LD0.TRPPTRC1.TrOutMod.setVal ENG Enum SP B 1 Trip output mode Select the operation mode for trip output 1=Non-latched; 2=Latched; 3=Lockout Configuration\Trip logic\TRPPTRC1
TRPPTRC1 Master Trip(1) 94/86(1) VER LD0.TRPPTRC1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

TRPPTRC2: Trip logic

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TRPPTRC2 Master Trip(2) 94/86(2) INP LD0.TRPPTRC2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block of function Monitoring\I/O status\Trip logic\TRPPTRC2\Inputs
TRPPTRC2 Master Trip(2) 94/86(2) INP LD0.TRPPTRC2.Op.general ACT BOOLEAN ST B 0 StatIO P OPERATE Operate Monitoring\I/O status\Trip logic\TRPPTRC2\Inputs
TRPPTRC2 Master Trip(2) 94/86(2) INP LD0.TRPPTRC2.LORs.stVal SPC BOOLEAN ST B 0 RST_LKOUT Input for resetting the circuit breaker lockout function Monitoring\I/O status\Trip logic\TRPPTRC2\Inputs
TRPPTRC2 Master Trip(2) 94/86(2) OUT LD0.TRPPTRC2.Tr.general ACT BOOLEAN ST B StatNrml P,H TRIP General trip output signal Monitoring\I/O status\Trip logic\TRPPTRC2\Outputs
TRPPTRC2 Master Trip(2) 94/86(2) OUT LD0.TRPPTRC2.ClsLO.stVal SPS BOOLEAN ST B CL_LKOUT Circuit breaker lockout output (set until reset) Monitoring\I/O status\Trip logic\TRPPTRC2\Outputs
TRPPTRC2 Master Trip(2) 94/86(2) CTR LD0.TRPPTRC2.LORs.Oper.ctlVal SPC BOOLEAN CO B,H 0 TRPPTRC2 Reset TRPPTRC2 lockout and latch 0=Cancel; 1=Clear Clear\Clear
TRPPTRC2 Master Trip(2) 94/86(2) CTR LD0.TRPPTRC2.TrRs.Oper.ctlVal SPC BOOLEAN CO (Reset latched trip)
TRPPTRC2 Master Trip(2) 94/86(2) MON LD0.TRPPTRC2.Beh.stVal ENS Enum ST B TRPPTRC2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TRPPTRC2 Master Trip(2) 94/86(2) CFG LD0.TRPPTRC2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Trip logic\TRPPTRC2 IL1TCTR1
TRPPTRC2 Master Trip(2) 94/86(2) CFG LD0.TRPPTRC2.TrPlsTmms.setVal ING INT32 SP B 250 Trip pulse time Minimum duration of trip output signal 20...60000 ms Configuration\Trip logic\TRPPTRC2
TRPPTRC2 Master Trip(2) 94/86(2) CFG LD0.TRPPTRC2.TrOutMod.setVal ENG Enum SP B 1 Trip output mode Select the operation mode for trip output 1=Non-latched; 2=Latched; 3=Lockout Configuration\Trip logic\TRPPTRC2
TRPPTRC2 Master Trip(2) 94/86(2) VER LD0.TRPPTRC2.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

TRPPTRC3: Trip logic

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TRPPTRC3 Master Trip(3) 94/86(3) INP LD0.TRPPTRC3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block of function Monitoring\I/O status\Trip logic\TRPPTRC3\Inputs
TRPPTRC3 Master Trip(3) 94/86(3) INP LD0.TRPPTRC3.Op.general ACT BOOLEAN ST B 0 StatIO P OPERATE Operate Monitoring\I/O status\Trip logic\TRPPTRC3\Inputs
TRPPTRC3 Master Trip(3) 94/86(3) INP LD0.TRPPTRC3.LORs.stVal SPC BOOLEAN ST B 0 RST_LKOUT Input for resetting the circuit breaker lockout function Monitoring\I/O status\Trip logic\TRPPTRC3\Inputs
TRPPTRC3 Master Trip(3) 94/86(3) OUT LD0.TRPPTRC3.Tr.general ACT BOOLEAN ST B StatNrml P,H TRIP General trip output signal Monitoring\I/O status\Trip logic\TRPPTRC3\Outputs
TRPPTRC3 Master Trip(3) 94/86(3) OUT LD0.TRPPTRC3.ClsLO.stVal SPS BOOLEAN ST B CL_LKOUT Circuit breaker lockout output (set until reset) Monitoring\I/O status\Trip logic\TRPPTRC3\Outputs
TRPPTRC3 Master Trip(3) 94/86(3) CTR LD0.TRPPTRC3.LORs.Oper.ctlVal SPC BOOLEAN CO B,H 0 TRPPTRC3 Reset TRPPTRC3 lockout and latch 0=Cancel; 1=Clear Clear\Clear
TRPPTRC3 Master Trip(3) 94/86(3) CTR LD0.TRPPTRC3.TrRs.Oper.ctlVal SPC BOOLEAN CO (Reset latched trip)
TRPPTRC3 Master Trip(3) 94/86(3) MON LD0.TRPPTRC3.Beh.stVal ENS Enum ST B TRPPTRC3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TRPPTRC3 Master Trip(3) 94/86(3) CFG LD0.TRPPTRC3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Trip logic\TRPPTRC3
TRPPTRC3 Master Trip(3) 94/86(3) CFG LD0.TRPPTRC3.TrPlsTmms.setVal ING INT32 SP B 250 Trip pulse time Minimum duration of trip output signal 20...60000 ms Configuration\Trip logic\TRPPTRC3
TRPPTRC3 Master Trip(3) 94/86(3) CFG LD0.TRPPTRC3.TrOutMod.setVal ENG Enum SP B 1 Trip output mode Select the operation mode for trip output 1=Non-latched; 2=Latched; 3=Lockout Configuration\Trip logic\TRPPTRC3
TRPPTRC3 Master Trip(3) 94/86(3) VER LD0.TRPPTRC3.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

TRPPTRC4: Trip logic

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TRPPTRC4 Master Trip(4) 94/86(4) INP LD0.TRPPTRC4.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block of function Monitoring\I/O status\Trip logic\TRPPTRC4\Inputs
TRPPTRC4 Master Trip(4) 94/86(4) INP LD0.TRPPTRC4.Op.general ACT BOOLEAN ST B 0 StatIO P OPERATE Operate Monitoring\I/O status\Trip logic\TRPPTRC4\Inputs
TRPPTRC4 Master Trip(4) 94/86(4) INP LD0.TRPPTRC4.LORs.stVal SPC BOOLEAN ST B 0 RST_LKOUT Input for resetting the circuit breaker lockout function Monitoring\I/O status\Trip logic\TRPPTRC4\Inputs
TRPPTRC4 Master Trip(4) 94/86(4) OUT LD0.TRPPTRC4.Tr.general ACT BOOLEAN ST B StatNrml P,H TRIP General trip output signal Monitoring\I/O status\Trip logic\TRPPTRC4\Outputs
TRPPTRC4 Master Trip(4) 94/86(4) OUT LD0.TRPPTRC4.ClsLO.stVal SPS BOOLEAN ST B CL_LKOUT Circuit breaker lockout output (set until reset) Monitoring\I/O status\Trip logic\TRPPTRC4\Outputs
TRPPTRC4 Master Trip(4) 94/86(4) CTR LD0.TRPPTRC4.LORs.Oper.ctlVal SPC BOOLEAN CO B,H 0 TRPPTRC4 Reset TRPPTRC4 lockout and latch 0=Cancel; 1=Clear Clear\Clear
TRPPTRC4 Master Trip(4) 94/86(4) CTR LD0.TRPPTRC4.TrRs.Oper.ctlVal SPC BOOLEAN CO (Reset latched trip)
TRPPTRC4 Master Trip(4) 94/86(4) MON LD0.TRPPTRC4.Beh.stVal ENS Enum ST B TRPPTRC4 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TRPPTRC4 Master Trip(4) 94/86(4) CFG LD0.TRPPTRC4.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Trip logic\TRPPTRC4
TRPPTRC4 Master Trip(4) 94/86(4) CFG LD0.TRPPTRC4.TrPlsTmms.setVal ING INT32 SP B 250 Trip pulse time Minimum duration of trip output signal 20...60000 ms Configuration\Trip logic\TRPPTRC4
TRPPTRC4 Master Trip(4) 94/86(4) CFG LD0.TRPPTRC4.TrOutMod.setVal ENG Enum SP B 1 Trip output mode Select the operation mode for trip output 1=Non-latched; 2=Latched; 3=Lockout Configuration\Trip logic\TRPPTRC4
TRPPTRC4 Master Trip(4) 94/86(4) VER LD0.TRPPTRC4.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

Global conditioning

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
Global conditioning INP LD0.LEDPTRC1.InRs.stVal SPS BOOLEAN ST 0 (Reset)
Global conditioning INP LD0.LEDPTRC1.InOp.stVal SPS BOOLEAN ST 0 (Input operate)
Global conditioning INP LD0.LEDPTRC1.InStr.stVal SPS BOOLEAN ST 0 (Input start)
Global conditioning OUT LD0.LEDPTRC1.Op.general ACT BOOLEAN ST StatIed P,H (Operate) (A,B,C,N)
Global conditioning OUT LD0.LEDPTRC1.Op.phsA ACT BOOLEAN ST StatIed P,H (Operate)
Global conditioning OUT LD0.LEDPTRC1.Op.phsB ACT BOOLEAN ST StatIed P,H (Operate)
Global conditioning OUT LD0.LEDPTRC1.Op.phsC ACT BOOLEAN ST StatIed P,H (Operate)
Global conditioning OUT LD0.LEDPTRC1.Op.neut ACT BOOLEAN ST StatIed P,H (Operate)
Global conditioning OUT LD0.LEDPTRC1.Str.general ACD BOOLEAN ST StatIed P,H (Start) (A,B,C,N)
Global conditioning OUT LD0.LEDPTRC1.Str.phsA ACD BOOLEAN ST StatIed P,H (Start)
Global conditioning OUT LD0.LEDPTRC1.Str.phsB ACD BOOLEAN ST StatIed P,H (Start)
Global conditioning OUT LD0.LEDPTRC1.Str.phsC ACD BOOLEAN ST StatIed P,H (Start)
Global conditioning OUT LD0.LEDPTRC1.Str.neut ACD BOOLEAN ST StatIed P,H (Start)
Global conditioning MON LD0.LEDPTRC1.Str.dirGeneral ACD Enum ST StatIed P,H (Start) 0=unknown1=forward2=backward3=both
Global conditioning MON LD0.LEDPTRC1.Str.dirPhsA ACD Enum ST StatIed P,H (Start) -1=both0=unknown1=forward2=backward
Global conditioning MON LD0.LEDPTRC1.Str.dirPhsB ACD Enum ST StatIed P,H (Start) -1=both0=unknown1=forward2=backward
Global conditioning MON LD0.LEDPTRC1.Str.dirPhsC ACD Enum ST StatIed P,H (Start) -1=both0=unknown1=forward2=backward
Global conditioning MON LD0.LEDPTRC1.Str.dirNeut ACD Enum ST StatIed P,H (Start) -1=both0=unknown1=forward2=backward
Global conditioning VER LD0.LEDPTRC1.NamPlt.swRev LPL VisString255 (20) DC ED1 G (Name plate)

MAPGAPC1: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC1 MAP(1) MAP(1) INP LD0.MAPGAPC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC1\Inputs
MAPGAPC1 MAP(1) MAP(1) INP LD0.MAPGAPC1.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC1\Inputs
MAPGAPC1 MAP(1) MAP(1) INP LD0.MAPGAPC1.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC1\Inputs
MAPGAPC1 MAP(1) MAP(1) OUT LD0.MAPGAPC1.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC1\Outputs
MAPGAPC1 MAP(1) MAP(1) OUT LD0.MAPGAPC1.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC1\Outputs
MAPGAPC1 MAP(1) MAP(1) MON LD0.MAPGAPC1.Beh.stVal ENS Enum ST B MAPGAPC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC1 MAP(1) MAP(1) MON LD0.MAPGAPC1.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC1\Monitored data
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) SET LD0.MAPGAPC1.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC1
MAPGAPC1 MAP(1) MAP(1) TES LD0.MAPGAPC1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC1 MAP(1) MAP(1) VER LD0.MAPGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC2: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC2 MAP(2) MAP(2) INP LD0.MAPGAPC2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC2\Inputs
MAPGAPC2 MAP(2) MAP(2) INP LD0.MAPGAPC2.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC2\Inputs
MAPGAPC2 MAP(2) MAP(2) INP LD0.MAPGAPC2.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC2\Inputs
MAPGAPC2 MAP(2) MAP(2) OUT LD0.MAPGAPC2.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC2\Outputs
MAPGAPC2 MAP(2) MAP(2) OUT LD0.MAPGAPC2.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC2\Outputs
MAPGAPC2 MAP(2) MAP(2) MON LD0.MAPGAPC2.Beh.stVal ENS Enum ST B MAPGAPC2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC2 MAP(2) MAP(2) MON LD0.MAPGAPC2.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC2\Monitored data
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) SET LD0.MAPGAPC2.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC2
MAPGAPC2 MAP(2) MAP(2) TES LD0.MAPGAPC2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC2 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC2 MAP(2) MAP(2) VER LD0.MAPGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC3: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC3 MAP(3) MAP(3) INP LD0.MAPGAPC3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC3\Inputs
MAPGAPC3 MAP(3) MAP(3) INP LD0.MAPGAPC3.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC3\Inputs
MAPGAPC3 MAP(3) MAP(3) INP LD0.MAPGAPC3.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC3\Inputs
MAPGAPC3 MAP(3) MAP(3) OUT LD0.MAPGAPC3.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC3\Outputs
MAPGAPC3 MAP(3) MAP(3) OUT LD0.MAPGAPC3.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC3\Outputs
MAPGAPC3 MAP(3) MAP(3) MON LD0.MAPGAPC3.Beh.stVal ENS Enum ST B MAPGAPC3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC3 MAP(3) MAP(3) MON LD0.MAPGAPC3.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC3\Monitored data
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) SET LD0.MAPGAPC3.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC3
MAPGAPC3 MAP(3) MAP(3) TES LD0.MAPGAPC3.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC3 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC3 MAP(3) MAP(3) VER LD0.MAPGAPC3.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC4: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC4 MAP(4) MAP(4) INP LD0.MAPGAPC4.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC4\Inputs
MAPGAPC4 MAP(4) MAP(4) INP LD0.MAPGAPC4.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC4\Inputs
MAPGAPC4 MAP(4) MAP(4) INP LD0.MAPGAPC4.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC4\Inputs
MAPGAPC4 MAP(4) MAP(4) OUT LD0.MAPGAPC4.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC4\Outputs
MAPGAPC4 MAP(4) MAP(4) OUT LD0.MAPGAPC4.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC4\Outputs
MAPGAPC4 MAP(4) MAP(4) MON LD0.MAPGAPC4.Beh.stVal ENS Enum ST B MAPGAPC4 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC4 MAP(4) MAP(4) MON LD0.MAPGAPC4.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC4\Monitored data
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) SET LD0.MAPGAPC4.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC4
MAPGAPC4 MAP(4) MAP(4) TES LD0.MAPGAPC4.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC4 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC4 MAP(4) MAP(4) VER LD0.MAPGAPC4.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC5: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC5 MAP(5) MAP(5) INP LD0.MAPGAPC5.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC5\Inputs
MAPGAPC5 MAP(5) MAP(5) INP LD0.MAPGAPC5.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC5\Inputs
MAPGAPC5 MAP(5) MAP(5) INP LD0.MAPGAPC5.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC5\Inputs
MAPGAPC5 MAP(5) MAP(5) OUT LD0.MAPGAPC5.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC5\Outputs
MAPGAPC5 MAP(5) MAP(5) OUT LD0.MAPGAPC5.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC5\Outputs
MAPGAPC5 MAP(5) MAP(5) MON LD0.MAPGAPC5.Beh.stVal ENS Enum ST B MAPGAPC5 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC5 MAP(5) MAP(5) MON LD0.MAPGAPC5.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC5\Monitored data
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) SET LD0.MAPGAPC5.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC5
MAPGAPC5 MAP(5) MAP(5) TES LD0.MAPGAPC5.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC5 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC5 MAP(5) MAP(5) VER LD0.MAPGAPC5.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC6: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC6 MAP(6) MAP(6) INP LD0.MAPGAPC6.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC6\Inputs
MAPGAPC6 MAP(6) MAP(6) INP LD0.MAPGAPC6.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC6\Inputs
MAPGAPC6 MAP(6) MAP(6) INP LD0.MAPGAPC6.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC6\Inputs
MAPGAPC6 MAP(6) MAP(6) OUT LD0.MAPGAPC6.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC6\Outputs
MAPGAPC6 MAP(6) MAP(6) OUT LD0.MAPGAPC6.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC6\Outputs
MAPGAPC6 MAP(6) MAP(6) MON LD0.MAPGAPC6.Beh.stVal ENS Enum ST B MAPGAPC6 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC6 MAP(6) MAP(6) MON LD0.MAPGAPC6.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC6\Monitored data
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) SET LD0.MAPGAPC6.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC6
MAPGAPC6 MAP(6) MAP(6) TES LD0.MAPGAPC6.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC6 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC6 MAP(6) MAP(6) VER LD0.MAPGAPC6.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC7: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC7 MAP(7) MAP(7) INP LD0.MAPGAPC7.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC7\Inputs
MAPGAPC7 MAP(7) MAP(7) INP LD0.MAPGAPC7.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC7\Inputs
MAPGAPC7 MAP(7) MAP(7) INP LD0.MAPGAPC7.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC7\Inputs
MAPGAPC7 MAP(7) MAP(7) OUT LD0.MAPGAPC7.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC7\Outputs
MAPGAPC7 MAP(7) MAP(7) OUT LD0.MAPGAPC7.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC7\Outputs
MAPGAPC7 MAP(7) MAP(7) MON LD0.MAPGAPC7.Beh.stVal ENS Enum ST B MAPGAPC7 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC7 MAP(7) MAP(7) MON LD0.MAPGAPC7.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC7\Monitored data
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) SET LD0.MAPGAPC7.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC7
MAPGAPC7 MAP(7) MAP(7) TES LD0.MAPGAPC7.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC7 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC7 MAP(7) MAP(7) VER LD0.MAPGAPC7.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC8: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC8 MAP(8) MAP(8) INP LD0.MAPGAPC8.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC8\Inputs
MAPGAPC8 MAP(8) MAP(8) INP LD0.MAPGAPC8.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC8\Inputs
MAPGAPC8 MAP(8) MAP(8) INP LD0.MAPGAPC8.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC8\Inputs
MAPGAPC8 MAP(8) MAP(8) OUT LD0.MAPGAPC8.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC8\Outputs
MAPGAPC8 MAP(8) MAP(8) OUT LD0.MAPGAPC8.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC8\Outputs
MAPGAPC8 MAP(8) MAP(8) MON LD0.MAPGAPC8.Beh.stVal ENS Enum ST B MAPGAPC8 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC8 MAP(8) MAP(8) MON LD0.MAPGAPC8.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC8\Monitored data
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) SET LD0.MAPGAPC8.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC8
MAPGAPC8 MAP(8) MAP(8) TES LD0.MAPGAPC8.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC8 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC8 MAP(8) MAP(8) VER LD0.MAPGAPC8.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC9: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC9 MAP(9) MAP(9) INP LD0.MAPGAPC9.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC9\Inputs
MAPGAPC9 MAP(9) MAP(9) INP LD0.MAPGAPC9.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC9\Inputs
MAPGAPC9 MAP(9) MAP(9) INP LD0.MAPGAPC9.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC9\Inputs
MAPGAPC9 MAP(9) MAP(9) OUT LD0.MAPGAPC9.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC9\Outputs
MAPGAPC9 MAP(9) MAP(9) OUT LD0.MAPGAPC9.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC9\Outputs
MAPGAPC9 MAP(9) MAP(9) MON LD0.MAPGAPC9.Beh.stVal ENS Enum ST B MAPGAPC9 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC9 MAP(9) MAP(9) MON LD0.MAPGAPC9.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC9\Monitored data
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) SET LD0.MAPGAPC9.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC9
MAPGAPC9 MAP(9) MAP(9) TES LD0.MAPGAPC9.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC9 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC9 MAP(9) MAP(9) VER LD0.MAPGAPC9.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC10: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC10 MAP(10) MAP(10) INP LD0.MAPGAPC10.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC10\Inputs
MAPGAPC10 MAP(10) MAP(10) INP LD0.MAPGAPC10.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC10\Inputs
MAPGAPC10 MAP(10) MAP(10) INP LD0.MAPGAPC10.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC10\Inputs
MAPGAPC10 MAP(10) MAP(10) OUT LD0.MAPGAPC10.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC10\Outputs
MAPGAPC10 MAP(10) MAP(10) OUT LD0.MAPGAPC10.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC10\Outputs
MAPGAPC10 MAP(10) MAP(10) MON LD0.MAPGAPC10.Beh.stVal ENS Enum ST B MAPGAPC10 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC10 MAP(10) MAP(10) MON LD0.MAPGAPC10.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC10\Monitored data
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) SET LD0.MAPGAPC10.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC10
MAPGAPC10 MAP(10) MAP(10) TES LD0.MAPGAPC10.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC10 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC10 MAP(10) MAP(10) VER LD0.MAPGAPC10.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC11: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC11 MAP(11) MAP(11) INP LD0.MAPGAPC11.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC11\Inputs
MAPGAPC11 MAP(11) MAP(11) INP LD0.MAPGAPC11.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC11\Inputs
MAPGAPC11 MAP(11) MAP(11) INP LD0.MAPGAPC11.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC11\Inputs
MAPGAPC11 MAP(11) MAP(11) OUT LD0.MAPGAPC11.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC11\Outputs
MAPGAPC11 MAP(11) MAP(11) OUT LD0.MAPGAPC11.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC11\Outputs
MAPGAPC11 MAP(11) MAP(11) MON LD0.MAPGAPC11.Beh.stVal ENS Enum ST B MAPGAPC11 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC11 MAP(11) MAP(11) MON LD0.MAPGAPC11.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC11\Monitored data
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) SET LD0.MAPGAPC11.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC11
MAPGAPC11 MAP(11) MAP(11) TES LD0.MAPGAPC11.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC11 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC11 MAP(11) MAP(11) VER LD0.MAPGAPC11.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC12: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC12 MAP(12) MAP(12) INP LD0.MAPGAPC12.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC12\Inputs
MAPGAPC12 MAP(12) MAP(12) INP LD0.MAPGAPC12.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC12\Inputs
MAPGAPC12 MAP(12) MAP(12) INP LD0.MAPGAPC12.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC12\Inputs
MAPGAPC12 MAP(12) MAP(12) OUT LD0.MAPGAPC12.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC12\Outputs
MAPGAPC12 MAP(12) MAP(12) OUT LD0.MAPGAPC12.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC12\Outputs
MAPGAPC12 MAP(12) MAP(12) MON LD0.MAPGAPC12.Beh.stVal ENS Enum ST B MAPGAPC12 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC12 MAP(12) MAP(12) MON LD0.MAPGAPC12.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC12\Monitored data
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) SET LD0.MAPGAPC12.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC12
MAPGAPC12 MAP(12) MAP(12) TES LD0.MAPGAPC12.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC12 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC12 MAP(12) MAP(12) VER LD0.MAPGAPC12.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC13: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC13 MAP(13) MAP(13) INP LD0.MAPGAPC13.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC13\Inputs
MAPGAPC13 MAP(13) MAP(13) INP LD0.MAPGAPC13.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC13\Inputs
MAPGAPC13 MAP(13) MAP(13) INP LD0.MAPGAPC13.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC13\Inputs
MAPGAPC13 MAP(13) MAP(13) OUT LD0.MAPGAPC13.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC13\Outputs
MAPGAPC13 MAP(13) MAP(13) OUT LD0.MAPGAPC13.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC13\Outputs
MAPGAPC13 MAP(13) MAP(13) MON LD0.MAPGAPC13.Beh.stVal ENS Enum ST B MAPGAPC13 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC13 MAP(13) MAP(13) MON LD0.MAPGAPC13.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC13\Monitored data
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) SET LD0.MAPGAPC13.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC13
MAPGAPC13 MAP(13) MAP(13) TES LD0.MAPGAPC13.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC13 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC13 MAP(13) MAP(13) VER LD0.MAPGAPC13.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC14: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC14 MAP(14) MAP(14) INP LD0.MAPGAPC14.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC14\Inputs
MAPGAPC14 MAP(14) MAP(14) INP LD0.MAPGAPC14.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC14\Inputs
MAPGAPC14 MAP(14) MAP(14) INP LD0.MAPGAPC14.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC14\Inputs
MAPGAPC14 MAP(14) MAP(14) OUT LD0.MAPGAPC14.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC14\Outputs
MAPGAPC14 MAP(14) MAP(14) OUT LD0.MAPGAPC14.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC14\Outputs
MAPGAPC14 MAP(14) MAP(14) MON LD0.MAPGAPC14.Beh.stVal ENS Enum ST B MAPGAPC14 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC14 MAP(14) MAP(14) MON LD0.MAPGAPC14.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC14\Monitored data
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) SET LD0.MAPGAPC14.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC14
MAPGAPC14 MAP(14) MAP(14) TES LD0.MAPGAPC14.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC14 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC14 MAP(14) MAP(14) VER LD0.MAPGAPC14.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC15: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC15 MAP(15) MAP(15) INP LD0.MAPGAPC15.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC15\Inputs
MAPGAPC15 MAP(15) MAP(15) INP LD0.MAPGAPC15.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC15\Inputs
MAPGAPC15 MAP(15) MAP(15) INP LD0.MAPGAPC15.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC15\Inputs
MAPGAPC15 MAP(15) MAP(15) OUT LD0.MAPGAPC15.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC15\Outputs
MAPGAPC15 MAP(15) MAP(15) OUT LD0.MAPGAPC15.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC15\Outputs
MAPGAPC15 MAP(15) MAP(15) MON LD0.MAPGAPC15.Beh.stVal ENS Enum ST B MAPGAPC15 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC15 MAP(15) MAP(15) MON LD0.MAPGAPC15.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC15\Monitored data
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) SET LD0.MAPGAPC15.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC15
MAPGAPC15 MAP(15) MAP(15) TES LD0.MAPGAPC15.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC15 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC15 MAP(15) MAP(15) VER LD0.MAPGAPC15.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC16: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC16 MAP(16) MAP(16) INP LD0.MAPGAPC16.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC16\Inputs
MAPGAPC16 MAP(16) MAP(16) INP LD0.MAPGAPC16.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC16\Inputs
MAPGAPC16 MAP(16) MAP(16) INP LD0.MAPGAPC16.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC16\Inputs
MAPGAPC16 MAP(16) MAP(16) OUT LD0.MAPGAPC16.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC16\Outputs
MAPGAPC16 MAP(16) MAP(16) OUT LD0.MAPGAPC16.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC16\Outputs
MAPGAPC16 MAP(16) MAP(16) MON LD0.MAPGAPC16.Beh.stVal ENS Enum ST B MAPGAPC16 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC16 MAP(16) MAP(16) MON LD0.MAPGAPC16.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC16\Monitored data
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) SET LD0.MAPGAPC16.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC16
MAPGAPC16 MAP(16) MAP(16) TES LD0.MAPGAPC16.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC16 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC16 MAP(16) MAP(16) VER LD0.MAPGAPC16.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC17: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC17 MAP(17) MAP(17) INP LD0.MAPGAPC17.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC17\Inputs
MAPGAPC17 MAP(17) MAP(17) INP LD0.MAPGAPC17.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC17\Inputs
MAPGAPC17 MAP(17) MAP(17) INP LD0.MAPGAPC17.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC17\Inputs
MAPGAPC17 MAP(17) MAP(17) OUT LD0.MAPGAPC17.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC17\Outputs
MAPGAPC17 MAP(17) MAP(17) OUT LD0.MAPGAPC17.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC17\Outputs
MAPGAPC17 MAP(17) MAP(17) MON LD0.MAPGAPC17.Beh.stVal ENS Enum ST B MAPGAPC17 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC17 MAP(17) MAP(17) MON LD0.MAPGAPC17.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC17\Monitored data
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) SET LD0.MAPGAPC17.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC17
MAPGAPC17 MAP(17) MAP(17) TES LD0.MAPGAPC17.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC17 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC17 MAP(17) MAP(17) VER LD0.MAPGAPC17.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

MAPGAPC18: Multipurpose analogue protection function

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MAPGAPC18 MAP(18) MAP(18) INP LD0.MAPGAPC18.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\MAPGAPC18\Inputs
MAPGAPC18 MAP(18) MAP(18) INP LD0.MAPGAPC18.AnIn.mag.f MV FLOAT32 MX B 0.0 AI_VALUE Analogue input value -10000.0...10000.0 Monitoring\I/O status\Other protection\MAPGAPC18\Inputs
MAPGAPC18 MAP(18) MAP(18) INP LD0.MAPGAPC18.InEnaAdd.stVal SPS BOOLEAN ST B 0 ENA_ADD Enable start added Monitoring\I/O status\Other protection\MAPGAPC18\Inputs
MAPGAPC18 MAP(18) MAP(18) OUT LD0.MAPGAPC18.Str.general ACD BOOLEAN ST B StatNrml P,H START Start Monitoring\I/O status\Other protection\MAPGAPC18\Outputs
MAPGAPC18 MAP(18) MAP(18) OUT LD0.MAPGAPC18.Op.general ACT BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\MAPGAPC18\Outputs
MAPGAPC18 MAP(18) MAP(18) MON LD0.MAPGAPC18.Beh.stVal ENS Enum ST B MAPGAPC18 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MAPGAPC18 MAP(18) MAP(18) MON LD0.MAPGAPC18.StrDur.mag.f MV FLOAT32 MX B START_DUR Ratio of start time / operate time 0.00...100.00 % Monitoring\I/O status\Other protection\MAPGAPC18\Monitored data
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.StrVal.setMag.f ASG FLOAT32 SG B 0.0 Start value Start value -10000.0...10000.0 Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.OpDlTmms.setVal ING INT32 SG B 0 Operate delay time Operate delay time 0...200000 ms Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.RsDlTmms.setVal ING INT32 SP A 0 Reset delay time Reset delay time 0...60000 ms Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.OpModCom.setVal ENG Enum SP B,I 1 Operation mode Operation mode 1=Over; 2=Under Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.HysAbs.setMag.f ASG FLOAT32 SP A,I 0.10 Absolute hysteresis Absolute hysteresis for operation 0.01...100.00 Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) SET LD0.MAPGAPC18.StrValAdd.setMag.f ASG FLOAT32 SG B 0.0 Start value Add Start value Add -100.0...100.0 Settings\Settings\Other protection\MAPGAPC18
MAPGAPC18 MAP(18) MAP(18) TES LD0.MAPGAPC18.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 MAPGAPC18 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE Tests\Function tests\Other protection
MAPGAPC18 MAP(18) MAP(18) VER LD0.MAPGAPC18.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

CVPSOF1: Automatic switch onto fault logic

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CVPSOF1 CVPSOF(1) SOTF/21/50(1) INP LD0.CVPSOF1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Other protection\CVPSOF1\Inputs
CVPSOF1 CVPSOF(1) SOTF/21/50(1) INP LD0.CVPSOF1.InCBClsCmd.stVal SPS BOOLEAN ST B 0 CB_CL_CMD External enabling of SOTF by CB close command Monitoring\I/O status\Other protection\CVPSOF1\Inputs
CVPSOF1 CVPSOF(1) SOTF/21/50(1) INP LD0.CVPSOF1.InStr.stVal SPS BOOLEAN ST B 0 START Start from function to be accelerated by SOTF Monitoring\I/O status\Other protection\CVPSOF1\Inputs
CVPSOF1 CVPSOF(1) SOTF/21/50(1) INP LD0.CVPSOF1.InDlStr.stVal SPS BOOLEAN ST B 0 START_DLYD Start from function to be accelerated with delay by SOTF Monitoring\I/O status\Other protection\CVPSOF1\Inputs
CVPSOF1 CVPSOF(1) SOTF/21/50(1) OUT LD0.CVPSOF1.TrFltSt.stVal SPS BOOLEAN ST B StatNrml P,H,T OPERATE Operate Monitoring\I/O status\Other protection\CVPSOF1\Outputs
CVPSOF1 CVPSOF(1) SOTF/21/50(1) MON LD0.CVPSOF1.Beh.stVal ENS Enum ST B CVPSOF1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.DeaLinValA.setMag.f ASG FLOAT32 SP A 0.20 Current dead Lin Val Dead line value, current. Used also in auto activation logic 0.01...1.00 xIn Settings\Settings\Other protection\CVPSOF1 IL1TCTR1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.DeaLinVal.setMag.f ASG FLOAT32 SP A 0.40 Voltage dead Lin Val Dead line value, voltage. Used also in auto activation logic 0.01...0.58 xUn Settings\Settings\Other protection\CVPSOF1 UL1TVTR1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.OpModSOF.setVal ENG Enum SP A 3 Operation mode Mode of operation of SOTF Function 1=Start; 2=Current&voltage; 3=Both Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.AVDetTmms.setVal ING INT32 SP A 20 Cur voltage Det time Time delay for voltage and current based detection 0...60000 ms Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.AutoIniMod.setVal ENG Enum SP A 2 Automatic SOTF Ini Automatic switch onto fault initialization 1=DLD disabled; 2=Voltage; 3=Current; 4=Current&voltage Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.RsDlTmms.setVal ING INT32 SP A 1000 SOTF reset time SOTF detection period after initialization 0...60000 ms Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.DeaLinTmms.setVal ING INT32 SP A 200 Dead line time Delay time for activation of dead line detection 0...60000 ms Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) SET LD0.CVPSOF1.OpDlTmms.setVal ING INT32 SP A 20 Operate time delay Delay for the delayed start input 0...120000 ms Settings\Settings\Other protection\CVPSOF1
CVPSOF1 CVPSOF(1) SOTF/21/50(1) TES LD0.CVPSOF1.TestPro.Oper.ctlVal ENC Enum CO B 1 CVPSOF1 Test control for outputs 0=Reset; 1=Activate OPERATE; 2=Deactive OPERATE Tests\Function tests\Other protection
CVPSOF1 CVPSOF(1) SOTF/21/50(1) VER LD0.CVPSOF1.NamPlt.swRev LPL VisString255 (20) DC A (Name plate)

SSCBR1: Circuit breaker condition monitoring

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.ColOpn.stVal SPS BOOLEAN ST B 0 OPEN_CB_EXE Signal for open command to coil Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.InPosOpn.stVal SPS BOOLEAN ST B 0 POSOPEN Signal for open position of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE Signal for closeposition of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.ColCls.stVal SPS BOOLEAN ST B 0 CLOSE_CB_EXE Signal for close command to coil Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.RsAccmAPwr.stVal SPC BOOLEAN ST B 0 RST_IPOW Reset accumulation energy Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.RsCBWear.stVal SPC BOOLEAN ST B 0 RST_CB_WEAR Reset input for CB remaining life and operation counter Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) INP LD0.SSCBR1.RsTrvTm.stVal SPC BOOLEAN ST B 0 RST_TRV_T Reset input for CB closing and opening travel times Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSIMG1 INP LD0.SSIMG1.PresAlm.stVal SPS BOOLEAN ST B 0 PRES_ALM_IN Binary pressure alarm input Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSIMG1 INP LD0.SSIMG1.PresBlk.stVal SPS BOOLEAN ST B 0 PRES_LO_IN Binary pressure input for lockout indication Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSOPM1 INP LD0.SSOPM1.SprChaStr.stVal SPS BOOLEAN ST B 0 SPR_CHR_ST CB spring charging started input Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSOPM1 INP LD0.SSOPM1.SprChaStop.stVal SPS BOOLEAN ST B 0 SPR_CHR CB spring charged input Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSOPM1 INP LD0.SSOPM1.RsSprChaTm.stVal SPC BOOLEAN ST B 0 RST_SPR_T Reset input for the charging time of the CB spring Monitoring\I/O status\Condition monitoring\SSCBR1\Inputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.OpCntAlm.stVal SPS BOOLEAN ST B StatIed P,H OPR_ALM Number of CB operations exceeds alarm limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.PosOpn.stVal SPS BOOLEAN ST B OPENPOS CB is in open position Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.PosIvd.stVal SPS BOOLEAN ST B INVALIDPOS CB is in invalid position (not positively open or closed) Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.PosCls.stVal SPS BOOLEAN ST B CLOSEPOS CB is in closed position Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.OpnAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_OP_ALM CB open travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.ClsAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_CL_ALM CB close travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.OpCntLO.stVal SPS BOOLEAN ST B StatIed P,H OPR_LO Number of CB operations exceeds lockout limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.LonTmAlm.stVal SPS BOOLEAN ST B StatIed P,H MON_ALM CB 'not operated for long time' alarm Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.APwrAlm.stVal SPS BOOLEAN ST B StatIed P,H IPOW_ALM Accumulated currents power (Iyt),exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.APwrLO.stVal SPS BOOLEAN ST B StatIed P,H IPOW_LO Accumulated currents power (Iyt),exceeded lockout limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.RmnNumOpAlm.stVal SPS BOOLEAN ST ED2,B StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) OUT LD0.SSCBR1.RmnNumAlm.stVal SPS BOOLEAN ST ED1 StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSIMG1 OUT LD0.SSIMG1.InsAlm.stVal SPS BOOLEAN ST B StatIed P,H PRES_ALM Pressure below alarm level Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSIMG1 OUT LD0.SSIMG1.InsBlk.stVal SPS BOOLEAN ST B StatIed P,H PRES_LO Pressure below lockout level Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSOPM1 OUT LD0.SSOPM1.SprChaAlm.stVal SPS BOOLEAN ST B StatIed P,H SPR_CHR_ALM Spring charging time has crossed the set value Monitoring\I/O status\Condition monitoring\SSCBR1\Outputs
SSCBR1 CBCM(1) CBCM(1) CTR LD0.SSCBR1.RsAccmAPwr.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR1 acc.energy Resets SSCBR1 accumulation energy 0=Cancel; 1=Clear Clear\Clear
SSCBR1 CBCM(1) CBCM(1) CTR LD0.SSCBR1.RsCBWear.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR1 rem.life Reset SSCBR1 CB remaining life and operation counter 0=Cancel; 1=Clear Clear\Clear
SSCBR1 CBCM(1) CBCM(1) CTR LD0.SSCBR1.RsTrvTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR1 travel times Reset CB closing and opening travel times 0=Cancel; 1=Clear Clear\Clear
SSOPM1 CTR LD0.SSOPM1.RsSprChaTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR1 spr.charge t Reset the charging time of the CB spring 0=Cancel; 1=Clear Clear\Clear
SSCBR1 CBCM(1) CBCM(1) MON LD0.SSCBR1.Beh.stVal ENS Enum ST B SSCBR1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
SSCBR1 CBCM(1) CBCM(1) MON LD0.SSCBR1.OpTmOpn.mag.f MV FLOAT32 MX B T_TRV_OP Travel time of the CB during opening operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SSCBR1 CBCM(1) CBCM(1) MON LD0.SSCBR1.OpTmCls.mag.f MV FLOAT32 MX B T_TRV_CL Travel time of the CB during closing operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SSCBR1 CBCM(1) CBCM(1) MON LD0.SSCBR1.OpCntRs.stVal INC INT32 ST B StatIed P,H NO_OPR Number of CB operation cycle 0...99999 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SSCBR1 CBCM(1) CBCM(1) MON LD0.SSCBR1.InaTmdCnt.stVal INS INT32 ST B INA_DAYS The number of days CB has been inactive 0...9999 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH1SCBR1 MON LD0.SPH1SCBR1.RmnNumOp.stVal INS INT32 ST B CB_LIFE_A CB Remaining life phase A -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH1SCBR1 MON LD0.SPH1SCBR1.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_A Accumulated currents power (Iyt), phase A 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH2SCBR1 MON LD0.SPH2SCBR1.RmnNumOp.stVal INS INT32 ST B CB_LIFE_B CB Remaining life phase B -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH2SCBR1 MON LD0.SPH2SCBR1.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_B Accumulated currents power (Iyt), phase B 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH3SCBR1 MON LD0.SPH3SCBR1.RmnNumOp.stVal INS INT32 ST B CB_LIFE_C CB Remaining life phase C -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SPH3SCBR1 MON LD0.SPH3SCBR1.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_C Accumulated currents power (Iyt), phase C 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SSOPM1 MON LD0.SSOPM1.TmsSprCha.mag.f MV FLOAT32 MX B T_SPR_CHR The charging time of the CB spring 0.00...99.99 s Monitoring\I/O status\Condition monitoring\SSCBR1\Monitored data
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.OpAlmNum.setVal ING INT32 SP B 200 Alarm Op number Alarm limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.OpnAlmTmms.setVal ING INT32 SP B 40 Open alarm time Alarm level setting for open travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.CorOpnTmms.setVal ING INT32 SP A 10 Opening time Cor Correction factor for open travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.ClsAlmTmms.setVal ING INT32 SP B 40 Close alarm time Alarm level Setting for close travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.CorClsTmms.setVal ING INT32 SP A 10 Closing time Cor Correction factor for CB close travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.CorDifTmms.setVal ING INT32 SP B 5 Difference Cor time Corr. factor for time dif in aux. and main contacts open time -10...10 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.OpLONum.setVal ING INT32 SP B 300 Lockout Op number Lock out limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.OpNumRtg.setVal ING INT32 SP B 10000 Op number rated Number of operations possible at rated current 1...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.NumOpAlmLev.setVal ING INT32 SP ED2,A 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.NumAlmLev.setVal ING INT32 SP ED1 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.OpNumFlt.setVal ING INT32 SP B 1000 Op number fault Number of operations possible at rated fault current 1...10000 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.CntIniVal.setVal ING INT32 SP A,I 0 Counter initial Val The operation numbers counter initialization value 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.InaAlmTmd.setVal ING INT32 SP B,I 2000 Inactive Alm days Alarm limit value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.IniInaTmd.setVal ING INT32 SP A,I 0 Ini inactive days Initial value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.InaAlmTmh.setVal ING INT32 SP A,I 0 Inactive Alm hours Alarm time of the inactive days counter in hours 0...23 h Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.TrvClcMod.setVal ENG Enum SP B 2 Travel time Clc mode Travel time calculation mode selection 1=From Cmd to Pos; 2=From Pos to Pos Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.DirCff.setMag.f ASG FLOAT32 SP B,I -1.50 Directional Coef Directional coefficient for CB life calculation -3.00...-0.50 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.IniRmnNumOp.setMag.f ASG FLOAT32 SP ED2,B,I 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.IniRmnNum.setMag.f ASG FLOAT32 SP ED1 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AlmAccmAPwr.setMag.f ASG FLOAT32 SP ED2,B 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AlmAccAPwr.setMag.f ASG FLOAT32 SP ED1 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AccmStopA.setMag.f ASG FLOAT32 SP B 10.00 Acc stop current RMS current setting below which engy acm stops 5.00...500.00 A Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.LOAccmAPwr.setMag.f ASG FLOAT32 SP B 2500.00 LO Acc currents Pwr Lockout limit setting for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AExpn.setMag.f ASG FLOAT32 SP B,I 2.00 Current exponent Current exponent setting for energy calculation 0.00...2.00 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AOpRtg.setMag.f ASG FLOAT32 SP B 1000.00 Rated Op current Rated operating current of the breaker 100.00...5000.00 A Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.AFltRtg.setMag.f ASG FLOAT32 SP B 5000.00 Rated fault current Rated fault current of the breaker 500.00...75000.00 A Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.IniAccmAPwr.setMag.f ASG FLOAT32 SP ED2,A 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) CFG LD0.SSCBR1.IniAccAPwr.setMag.f ASG FLOAT32 SP ED1 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR1
SSIMG1 CFG LD0.SSIMG1.InsAlmTmms.setVal ING INT32 SP A 10 Pressure alarm time Time delay for gas pressure alarm in ms 0...60000 ms Configuration\Condition monitoring\SSCBR1
SSIMG1 CFG LD0.SSIMG1.InsBlkTmms.setVal ING INT32 SP A 10 Pres lockout time Time delay for gas pressure lockout in ms 0...60000 ms Configuration\Condition monitoring\SSCBR1
SSOPM1 CFG LD0.SSOPM1.SprChaTmms.setVal ING INT32 SP B 15000 Spring charge time Setting of alarm for spring charging time of CB in ms 0...60000 ms Configuration\Condition monitoring\SSCBR1
SSCBR1 CBCM(1) CBCM(1) TES LD0.SSCBR1.TestSpvn.Oper.ctlVal ENC Enum CO B 0 SSCBR1 Test control for outputs 0=Reset; 9=Act. TRV_T_OP_ALM; 10=Deact. TRV_T_OP_ALM; 11=Act. TRV_T_CL_ALM; 12=Deact. TRV_T_CL_ALM; 17=Activate SPR_CHR_ALM; 18=Deactive SPR_CHR_ALM; 19=Activate OPR_ALM; 20=Deactive OPR_ALM; 21=Activate OPR_LO; 22=Deactive OPR_LO; 23=Activate IPOW_ALM; 24=Deactive IPOW_ALM; 25=Activate IPOW_LO; 26=Deactive IPOW_LO; 27=Activate CB_LIFE_ALM; 28=Deactive CB_LIFE_ALM; 29=Activate MON_ALM; 30=Deactive MON_ALM; 31=Activate PRES_ALM; 32=Deactive PRES_ALM; 33=Activate PRES_LO; 34=Deactive PRES_LO; 35=Activate OPENPOS; 36=Deactive OPENPOS; 37=Activate INVALIDPOS; 38=Deactive INVALIDPOS; 39=Activate CLOSEPOS; 40=Deactive CLOSEPOS Tests\Function tests\Condition monitoring
SSCBR1 CBCM(1) CBCM(1) VER LD0.SSCBR1.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

SSCBR2: Circuit breaker condition monitoring

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.ColOpn.stVal SPS BOOLEAN ST B 0 OPEN_CB_EXE Signal for open command to coil Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.InPosOpn.stVal SPS BOOLEAN ST B 0 POSOPEN Signal for open position of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE Signal for closeposition of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.ColCls.stVal SPS BOOLEAN ST B 0 CLOSE_CB_EXE Signal for close command to coil Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.RsAccmAPwr.stVal SPC BOOLEAN ST B 0 RST_IPOW Reset accumulation energy Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.RsCBWear.stVal SPC BOOLEAN ST B 0 RST_CB_WEAR Reset input for CB remaining life and operation counter Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) INP LD0.SSCBR2.RsTrvTm.stVal SPC BOOLEAN ST B 0 RST_TRV_T Reset input for CB closing and opening travel times Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSIMG2 INP LD0.SSIMG2.PresAlm.stVal SPS BOOLEAN ST B 0 PRES_ALM_IN Binary pressure alarm input Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSIMG2 INP LD0.SSIMG2.PresBlk.stVal SPS BOOLEAN ST B 0 PRES_LO_IN Binary pressure input for lockout indication Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSOPM2 INP LD0.SSOPM2.SprChaStr.stVal SPS BOOLEAN ST B 0 SPR_CHR_ST CB spring charging started input Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSOPM2 INP LD0.SSOPM2.SprChaStop.stVal SPS BOOLEAN ST B 0 SPR_CHR CB spring charged input Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSOPM2 INP LD0.SSOPM2.RsSprChaTm.stVal SPC BOOLEAN ST B 0 RST_SPR_T Reset input for the charging time of the CB spring Monitoring\I/O status\Condition monitoring\SSCBR2\Inputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.OpCntAlm.stVal SPS BOOLEAN ST B StatIed P,H OPR_ALM Number of CB operations exceeds alarm limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.PosOpn.stVal SPS BOOLEAN ST B OPENPOS CB is in open position Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.PosIvd.stVal SPS BOOLEAN ST B INVALIDPOS CB is in invalid position (not positively open or closed) Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.PosCls.stVal SPS BOOLEAN ST B CLOSEPOS CB is in closed position Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.OpnAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_OP_ALM CB open travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.ClsAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_CL_ALM CB close travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.OpCntLO.stVal SPS BOOLEAN ST B StatIed P,H OPR_LO Number of CB operations exceeds lockout limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.LonTmAlm.stVal SPS BOOLEAN ST B StatIed P,H MON_ALM CB 'not operated for long time' alarm Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.APwrAlm.stVal SPS BOOLEAN ST B StatIed P,H IPOW_ALM Accumulated currents power (Iyt),exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.APwrLO.stVal SPS BOOLEAN ST B StatIed P,H IPOW_LO Accumulated currents power (Iyt),exceeded lockout limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.RmnNumOpAlm.stVal SPS BOOLEAN ST ED2,B StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) OUT LD0.SSCBR2.RmnNumAlm.stVal SPS BOOLEAN ST ED1 StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSIMG2 OUT LD0.SSIMG2.InsAlm.stVal SPS BOOLEAN ST B StatIed P,H PRES_ALM Pressure below alarm level Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSIMG2 OUT LD0.SSIMG2.InsBlk.stVal SPS BOOLEAN ST B StatIed P,H PRES_LO Pressure below lockout level Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSOPM2 OUT LD0.SSOPM2.SprChaAlm.stVal SPS BOOLEAN ST B StatIed P,H SPR_CHR_ALM Spring charging time has crossed the set value Monitoring\I/O status\Condition monitoring\SSCBR2\Outputs
SSCBR2 CBCM(2) CBCM(2) CTR LD0.SSCBR2.RsAccmAPwr.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR2 acc.energy Resets SSCBR2 accumulation energy 0=Cancel; 1=Clear Clear\Clear
SSCBR2 CBCM(2) CBCM(2) CTR LD0.SSCBR2.RsCBWear.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR2 rem.life Reset SSCBR2 CB remaining life and operation counter 0=Cancel; 1=Clear Clear\Clear
SSCBR2 CBCM(2) CBCM(2) CTR LD0.SSCBR2.RsTrvTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR2 travel times Reset CB closing and opening travel times 0=Cancel; 1=Clear Clear\Clear
SSOPM2 CTR LD0.SSOPM2.RsSprChaTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR2 spr.charge t Reset the charging time of the CB spring 0=Cancel; 1=Clear Clear\Clear
SSCBR2 CBCM(2) CBCM(2) MON LD0.SSCBR2.Beh.stVal ENS Enum ST B SSCBR2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
SSCBR2 CBCM(2) CBCM(2) MON LD0.SSCBR2.OpTmOpn.mag.f MV FLOAT32 MX B T_TRV_OP Travel time of the CB during opening operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SSCBR2 CBCM(2) CBCM(2) MON LD0.SSCBR2.OpTmCls.mag.f MV FLOAT32 MX B T_TRV_CL Travel time of the CB during closing operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SSCBR2 CBCM(2) CBCM(2) MON LD0.SSCBR2.OpCntRs.stVal INC INT32 ST B StatIed P,H NO_OPR Number of CB operation cycle 0...99999 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SSCBR2 CBCM(2) CBCM(2) MON LD0.SSCBR2.InaTmdCnt.stVal INS INT32 ST B INA_DAYS The number of days CB has been inactive 0...9999 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH1SCBR2 MON LD0.SPH1SCBR2.RmnNumOp.stVal INS INT32 ST B CB_LIFE_A CB Remaining life phase A -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH1SCBR2 MON LD0.SPH1SCBR2.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_A Accumulated currents power (Iyt), phase A 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH2SCBR2 MON LD0.SPH2SCBR2.RmnNumOp.stVal INS INT32 ST B CB_LIFE_B CB Remaining life phase B -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH2SCBR2 MON LD0.SPH2SCBR2.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_B Accumulated currents power (Iyt), phase B 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH3SCBR2 MON LD0.SPH3SCBR2.RmnNumOp.stVal INS INT32 ST B CB_LIFE_C CB Remaining life phase C -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SPH3SCBR2 MON LD0.SPH3SCBR2.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_C Accumulated currents power (Iyt), phase C 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SSOPM2 MON LD0.SSOPM2.TmsSprCha.mag.f MV FLOAT32 MX B T_SPR_CHR The charging time of the CB spring 0.00...99.99 s Monitoring\I/O status\Condition monitoring\SSCBR2\Monitored data
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.OpAlmNum.setVal ING INT32 SP B 200 Alarm Op number Alarm limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.OpnAlmTmms.setVal ING INT32 SP B 40 Open alarm time Alarm level setting for open travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.CorOpnTmms.setVal ING INT32 SP A 10 Opening time Cor Correction factor for open travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.ClsAlmTmms.setVal ING INT32 SP B 40 Close alarm time Alarm level Setting for close travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.CorClsTmms.setVal ING INT32 SP A 10 Closing time Cor Correction factor for CB close travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.CorDifTmms.setVal ING INT32 SP B 5 Difference Cor time Corr. factor for time dif in aux. and main contacts open time -10...10 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.OpLONum.setVal ING INT32 SP B 300 Lockout Op number Lock out limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.OpNumRtg.setVal ING INT32 SP B 10000 Op number rated Number of operations possible at rated current 1...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.NumOpAlmLev.setVal ING INT32 SP ED2,A 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.NumAlmLev.setVal ING INT32 SP ED1 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.OpNumFlt.setVal ING INT32 SP B 1000 Op number fault Number of operations possible at rated fault current 1...10000 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.CntIniVal.setVal ING INT32 SP A,I 0 Counter initial Val The operation numbers counter initialization value 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.InaAlmTmd.setVal ING INT32 SP B,I 2000 Inactive Alm days Alarm limit value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.IniInaTmd.setVal ING INT32 SP A,I 0 Ini inactive days Initial value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.InaAlmTmh.setVal ING INT32 SP A,I 0 Inactive Alm hours Alarm time of the inactive days counter in hours 0...23 h Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.TrvClcMod.setVal ENG Enum SP B 2 Travel time Clc mode Travel time calculation mode selection 1=From Cmd to Pos; 2=From Pos to Pos Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.DirCff.setMag.f ASG FLOAT32 SP B,I -1.50 Directional Coef Directional coefficient for CB life calculation -3.00...-0.50 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.IniRmnNumOp.setMag.f ASG FLOAT32 SP ED2,B,I 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.IniRmnNum.setMag.f ASG FLOAT32 SP ED1 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AlmAccmAPwr.setMag.f ASG FLOAT32 SP ED2,B 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AlmAccAPwr.setMag.f ASG FLOAT32 SP ED1 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AccmStopA.setMag.f ASG FLOAT32 SP B 10.00 Acc stop current RMS current setting below which engy acm stops 5.00...500.00 A Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.LOAccmAPwr.setMag.f ASG FLOAT32 SP B 2500.00 LO Acc currents Pwr Lockout limit setting for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AExpn.setMag.f ASG FLOAT32 SP B,I 2.00 Current exponent Current exponent setting for energy calculation 0.00...2.00 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AOpRtg.setMag.f ASG FLOAT32 SP B 1000.00 Rated Op current Rated operating current of the breaker 100.00...5000.00 A Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.AFltRtg.setMag.f ASG FLOAT32 SP B 5000.00 Rated fault current Rated fault current of the breaker 500.00...75000.00 A Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.IniAccmAPwr.setMag.f ASG FLOAT32 SP ED2,A 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) CFG LD0.SSCBR2.IniAccAPwr.setMag.f ASG FLOAT32 SP ED1 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR2
SSIMG2 CFG LD0.SSIMG2.InsAlmTmms.setVal ING INT32 SP A 10 Pressure alarm time Time delay for gas pressure alarm in ms 0...60000 ms Configuration\Condition monitoring\SSCBR2
SSIMG2 CFG LD0.SSIMG2.InsBlkTmms.setVal ING INT32 SP A 10 Pres lockout time Time delay for gas pressure lockout in ms 0...60000 ms Configuration\Condition monitoring\SSCBR2
SSOPM2 CFG LD0.SSOPM2.SprChaTmms.setVal ING INT32 SP B 15000 Spring charge time Setting of alarm for spring charging time of CB in ms 0...60000 ms Configuration\Condition monitoring\SSCBR2
SSCBR2 CBCM(2) CBCM(2) TES LD0.SSCBR2.TestSpvn.Oper.ctlVal ENC Enum CO B 0 SSCBR2 Test control for outputs 0=Reset; 9=Act. TRV_T_OP_ALM; 10=Deact. TRV_T_OP_ALM; 11=Act. TRV_T_CL_ALM; 12=Deact. TRV_T_CL_ALM; 17=Activate SPR_CHR_ALM; 18=Deactive SPR_CHR_ALM; 19=Activate OPR_ALM; 20=Deactive OPR_ALM; 21=Activate OPR_LO; 22=Deactive OPR_LO; 23=Activate IPOW_ALM; 24=Deactive IPOW_ALM; 25=Activate IPOW_LO; 26=Deactive IPOW_LO; 27=Activate CB_LIFE_ALM; 28=Deactive CB_LIFE_ALM; 29=Activate MON_ALM; 30=Deactive MON_ALM; 31=Activate PRES_ALM; 32=Deactive PRES_ALM; 33=Activate PRES_LO; 34=Deactive PRES_LO; 35=Activate OPENPOS; 36=Deactive OPENPOS; 37=Activate INVALIDPOS; 38=Deactive INVALIDPOS; 39=Activate CLOSEPOS; 40=Deactive CLOSEPOS Tests\Function tests\Condition monitoring
SSCBR2 CBCM(2) CBCM(2) VER LD0.SSCBR2.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

SSCBR3: Circuit breaker condition monitoring

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.ColOpn.stVal SPS BOOLEAN ST B 0 OPEN_CB_EXE Signal for open command to coil Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.InPosOpn.stVal SPS BOOLEAN ST B 0 POSOPEN Signal for open position of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.InPosCls.stVal SPS BOOLEAN ST B 0 POSCLOSE Signal for closeposition of apparatus from I/O Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.ColCls.stVal SPS BOOLEAN ST B 0 CLOSE_CB_EXE Signal for close command to coil Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.RsAccmAPwr.stVal SPC BOOLEAN ST B 0 RST_IPOW Reset accumulation energy Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.RsCBWear.stVal SPC BOOLEAN ST B 0 RST_CB_WEAR Reset input for CB remaining life and operation counter Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) INP LD0.SSCBR3.RsTrvTm.stVal SPC BOOLEAN ST B 0 RST_TRV_T Reset input for CB closing and opening travel times Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSIMG3 INP LD0.SSIMG3.PresAlm.stVal SPS BOOLEAN ST B 0 PRES_ALM_IN Binary pressure alarm input Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSIMG3 INP LD0.SSIMG3.PresBlk.stVal SPS BOOLEAN ST B 0 PRES_LO_IN Binary pressure input for lockout indication Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSOPM3 INP LD0.SSOPM3.SprChaStr.stVal SPS BOOLEAN ST B 0 SPR_CHR_ST CB spring charging started input Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSOPM3 INP LD0.SSOPM3.SprChaStop.stVal SPS BOOLEAN ST B 0 SPR_CHR CB spring charged input Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSOPM3 INP LD0.SSOPM3.RsSprChaTm.stVal SPC BOOLEAN ST B 0 RST_SPR_T Reset input for the charging time of the CB spring Monitoring\I/O status\Condition monitoring\SSCBR3\Inputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.OpCntAlm.stVal SPS BOOLEAN ST B StatIed P,H OPR_ALM Number of CB operations exceeds alarm limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.PosOpn.stVal SPS BOOLEAN ST B OPENPOS CB is in open position Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.PosIvd.stVal SPS BOOLEAN ST B INVALIDPOS CB is in invalid position (not positively open or closed) Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.PosCls.stVal SPS BOOLEAN ST B CLOSEPOS CB is in closed position Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.OpnAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_OP_ALM CB open travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.ClsAlm.stVal SPS BOOLEAN ST B StatIed P,H TRV_T_CL_ALM CB close travel time exceeded set value Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.OpCntLO.stVal SPS BOOLEAN ST B StatIed P,H OPR_LO Number of CB operations exceeds lockout limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.LonTmAlm.stVal SPS BOOLEAN ST B StatIed P,H MON_ALM CB 'not operated for long time' alarm Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.APwrAlm.stVal SPS BOOLEAN ST B StatIed P,H IPOW_ALM Accumulated currents power (Iyt),exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.APwrLO.stVal SPS BOOLEAN ST B StatIed P,H IPOW_LO Accumulated currents power (Iyt),exceeded lockout limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.RmnNumOpAlm.stVal SPS BOOLEAN ST ED2,B StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) OUT LD0.SSCBR3.RmnNumAlm.stVal SPS BOOLEAN ST ED1 StatIed P,H CB_LIFE_ALM Remaining life of CB exceeded alarm limit Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSIMG3 OUT LD0.SSIMG3.InsAlm.stVal SPS BOOLEAN ST B StatIed P,H PRES_ALM Pressure below alarm level Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSIMG3 OUT LD0.SSIMG3.InsBlk.stVal SPS BOOLEAN ST B StatIed P,H PRES_LO Pressure below lockout level Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSOPM3 OUT LD0.SSOPM3.SprChaAlm.stVal SPS BOOLEAN ST B StatIed P,H SPR_CHR_ALM Spring charging time has crossed the set value Monitoring\I/O status\Condition monitoring\SSCBR3\Outputs
SSCBR3 CBCM(3) CBCM(3) CTR LD0.SSCBR3.RsAccmAPwr.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR3 acc.energy Resets SSCBR3 accumulation energy 0=Cancel; 1=Clear Clear\Clear
SSCBR3 CBCM(3) CBCM(3) CTR LD0.SSCBR3.RsCBWear.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR3 rem.life Reset SSCBR3 CB remaining life and operation counter 0=Cancel; 1=Clear Clear\Clear
SSCBR3 CBCM(3) CBCM(3) CTR LD0.SSCBR3.RsTrvTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR3 travel times Reset CB closing and opening travel times 0=Cancel; 1=Clear Clear\Clear
SSOPM3 CTR LD0.SSOPM3.RsSprChaTm.Oper.ctlVal SPC BOOLEAN CO B 0 SSCBR3 spr.charge t Reset the charging time of the CB spring 0=Cancel; 1=Clear Clear\Clear
SSCBR3 CBCM(3) CBCM(3) MON LD0.SSCBR3.Beh.stVal ENS Enum ST B SSCBR3 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
SSCBR3 CBCM(3) CBCM(3) MON LD0.SSCBR3.OpTmOpn.mag.f MV FLOAT32 MX B T_TRV_OP Travel time of the CB during opening operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SSCBR3 CBCM(3) CBCM(3) MON LD0.SSCBR3.OpTmCls.mag.f MV FLOAT32 MX B T_TRV_CL Travel time of the CB during closing operation 0...60000 ms Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SSCBR3 CBCM(3) CBCM(3) MON LD0.SSCBR3.OpCntRs.stVal INC INT32 ST B StatIed P,H NO_OPR Number of CB operation cycle 0...99999 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SSCBR3 CBCM(3) CBCM(3) MON LD0.SSCBR3.InaTmdCnt.stVal INS INT32 ST B INA_DAYS The number of days CB has been inactive 0...9999 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH1SCBR3 MON LD0.SPH1SCBR3.RmnNumOp.stVal INS INT32 ST B CB_LIFE_A CB Remaining life phase A -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH1SCBR3 MON LD0.SPH1SCBR3.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_A Accumulated currents power (Iyt), phase A 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH2SCBR3 MON LD0.SPH2SCBR3.RmnNumOp.stVal INS INT32 ST B CB_LIFE_B CB Remaining life phase B -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH2SCBR3 MON LD0.SPH2SCBR3.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_B Accumulated currents power (Iyt), phase B 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH3SCBR3 MON LD0.SPH3SCBR3.RmnNumOp.stVal INS INT32 ST B CB_LIFE_C CB Remaining life phase C -99999...99999 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SPH3SCBR3 MON LD0.SPH3SCBR3.AccmAPwr.mag.f MV FLOAT32 MX B IPOW_C Accumulated currents power (Iyt), phase C 0.000...30000.000 Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SSOPM3 MON LD0.SSOPM3.TmsSprCha.mag.f MV FLOAT32 MX B T_SPR_CHR The charging time of the CB spring 0.00...99.99 s Monitoring\I/O status\Condition monitoring\SSCBR3\Monitored data
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.OpAlmNum.setVal ING INT32 SP B 200 Alarm Op number Alarm limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.OpnAlmTmms.setVal ING INT32 SP B 40 Open alarm time Alarm level setting for open travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.CorOpnTmms.setVal ING INT32 SP A 10 Opening time Cor Correction factor for open travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.ClsAlmTmms.setVal ING INT32 SP B 40 Close alarm time Alarm level Setting for close travel time in ms 0...200 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.CorClsTmms.setVal ING INT32 SP A 10 Closing time Cor Correction factor for CB close travel time in ms -100...100 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.CorDifTmms.setVal ING INT32 SP B 5 Difference Cor time Corr. factor for time dif in aux. and main contacts open time -10...10 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.OpLONum.setVal ING INT32 SP B 300 Lockout Op number Lock out limit for number of operations 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.OpNumRtg.setVal ING INT32 SP B 10000 Op number rated Number of operations possible at rated current 1...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.NumOpAlmLev.setVal ING INT32 SP ED2,A 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.NumAlmLev.setVal ING INT32 SP ED1 500 Life alarm level Alarm level for CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.OpNumFlt.setVal ING INT32 SP B 1000 Op number fault Number of operations possible at rated fault current 1...10000 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.CntIniVal.setVal ING INT32 SP A,I 0 Counter initial Val The operation numbers counter initialization value 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.InaAlmTmd.setVal ING INT32 SP B,I 2000 Inactive Alm days Alarm limit value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.IniInaTmd.setVal ING INT32 SP A,I 0 Ini inactive days Initial value of the inactive days counter 0...9999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.InaAlmTmh.setVal ING INT32 SP A,I 0 Inactive Alm hours Alarm time of the inactive days counter in hours 0...23 h Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.TrvClcMod.setVal ENG Enum SP B 2 Travel time Clc mode Travel time calculation mode selection 1=From Cmd to Pos; 2=From Pos to Pos Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.DirCff.setMag.f ASG FLOAT32 SP B,I -1.50 Directional Coef Directional coefficient for CB life calculation -3.00...-0.50 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.IniRmnNumOp.setMag.f ASG FLOAT32 SP ED2,B,I 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.IniRmnNum.setMag.f ASG FLOAT32 SP ED1 5000 Initial CB Rmn life Initial value for the CB remaining life 0...99999 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AlmAccmAPwr.setMag.f ASG FLOAT32 SP ED2,B 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AlmAccAPwr.setMag.f ASG FLOAT32 SP ED1 2500.00 Alm Acc currents Pwr Setting of alarm level for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AccmStopA.setMag.f ASG FLOAT32 SP B 10.00 Acc stop current RMS current setting below which engy acm stops 5.00...500.00 A Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.LOAccmAPwr.setMag.f ASG FLOAT32 SP B 2500.00 LO Acc currents Pwr Lockout limit setting for accumulated currents power 0.00...20000.00 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AExpn.setMag.f ASG FLOAT32 SP B,I 2.00 Current exponent Current exponent setting for energy calculation 0.00...2.00 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AOpRtg.setMag.f ASG FLOAT32 SP B 1000.00 Rated Op current Rated operating current of the breaker 100.00...5000.00 A Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.AFltRtg.setMag.f ASG FLOAT32 SP B 5000.00 Rated fault current Rated fault current of the breaker 500.00...75000.00 A Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.IniAccmAPwr.setMag.f ASG FLOAT32 SP ED2,A 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) CFG LD0.SSCBR3.IniAccAPwr.setMag.f ASG FLOAT32 SP ED1 0.00 Ini Acc currents Pwr Initial value for accumulation energy (Iyt) 0.00...20000.00 Configuration\Condition monitoring\SSCBR3
SSIMG3 CFG LD0.SSIMG3.InsAlmTmms.setVal ING INT32 SP A 10 Pressure alarm time Time delay for gas pressure alarm in ms 0...60000 ms Configuration\Condition monitoring\SSCBR3
SSIMG3 CFG LD0.SSIMG3.InsBlkTmms.setVal ING INT32 SP A 10 Pres lockout time Time delay for gas pressure lockout in ms 0...60000 ms Configuration\Condition monitoring\SSCBR3
SSOPM3 CFG LD0.SSOPM3.SprChaTmms.setVal ING INT32 SP B 15000 Spring charge time Setting of alarm for spring charging time of CB in ms 0...60000 ms Configuration\Condition monitoring\SSCBR3
SSCBR3 CBCM(3) CBCM(3) TES LD0.SSCBR3.TestSpvn.Oper.ctlVal ENC Enum CO B 0 SSCBR3 Test control for outputs 0=Reset; 9=Act. TRV_T_OP_ALM; 10=Deact. TRV_T_OP_ALM; 11=Act. TRV_T_CL_ALM; 12=Deact. TRV_T_CL_ALM; 17=Activate SPR_CHR_ALM; 18=Deactive SPR_CHR_ALM; 19=Activate OPR_ALM; 20=Deactive OPR_ALM; 21=Activate OPR_LO; 22=Deactive OPR_LO; 23=Activate IPOW_ALM; 24=Deactive IPOW_ALM; 25=Activate IPOW_LO; 26=Deactive IPOW_LO; 27=Activate CB_LIFE_ALM; 28=Deactive CB_LIFE_ALM; 29=Activate MON_ALM; 30=Deactive MON_ALM; 31=Activate PRES_ALM; 32=Deactive PRES_ALM; 33=Activate PRES_LO; 34=Deactive PRES_LO; 35=Activate OPENPOS; 36=Deactive OPENPOS; 37=Activate INVALIDPOS; 38=Deactive INVALIDPOS; 39=Activate CLOSEPOS; 40=Deactive CLOSEPOS Tests\Function tests\Condition monitoring
SSCBR3 CBCM(3) CBCM(3) VER LD0.SSCBR3.NamPlt.swRev LPL VisString255 (20) DC ED1 F (Name plate)

TCSSCBR1: Trip circuit supervision

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TCSSCBR1 TCS(1) TCM(1) INP LD0.TCSSCBR1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\TCSSCBR1\Inputs
TCSSCBR1 TCS(1) TCM(1) OUT LD0.TCSSCBR1.CircAlm.stVal SPS BOOLEAN ST B StatIed P,H ALARM Alarm output Monitoring\I/O status\Condition monitoring\TCSSCBR1\Outputs
TCSSCBR1 TCS(1) TCM(1) MON LD0.TCSSCBR1.Beh.stVal ENS Enum ST B TCSSCBR1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TCSSCBR1 TCS(1) TCM(1) CFG LD0.TCSSCBR1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\TCSSCBR1
TCSSCBR1 TCS(1) TCM(1) CFG LD0.TCSSCBR1.OpDlTmms.setVal ING INT32 SP B 3000 Operate delay time Operate delay time 20...300000 ms Configuration\Condition monitoring\TCSSCBR1
TCSSCBR1 TCS(1) TCM(1) CFG LD0.TCSSCBR1.RsDlTmms.setVal ING INT32 SP A 1000 Reset delay time Reset delay time 20...60000 ms Configuration\Condition monitoring\TCSSCBR1
TCSSCBR1 TCS(1) TCM(1) TES LD0.TCSSCBR1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 TCSSCBR1 Test control for outputs 0=Reset; 17=Activate ALARM; 18=Deactive ALARM Tests\Function tests\Condition monitoring
TCSSCBR1 TCS(1) TCM(1) VER LD0.TCSSCBR1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TCSSCBR2: Trip circuit supervision

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TCSSCBR2 TCS(2) TCM(2) INP LD0.TCSSCBR2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\TCSSCBR2\Inputs
TCSSCBR2 TCS(2) TCM(2) OUT LD0.TCSSCBR2.CircAlm.stVal SPS BOOLEAN ST B StatIed P,H ALARM Alarm output Monitoring\I/O status\Condition monitoring\TCSSCBR2\Outputs
TCSSCBR2 TCS(2) TCM(2) MON LD0.TCSSCBR2.Beh.stVal ENS Enum ST B TCSSCBR2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
TCSSCBR2 TCS(2) TCM(2) CFG LD0.TCSSCBR2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\TCSSCBR2
TCSSCBR2 TCS(2) TCM(2) CFG LD0.TCSSCBR2.OpDlTmms.setVal ING INT32 SP B 3000 Operate delay time Operate delay time 20...300000 ms Configuration\Condition monitoring\TCSSCBR2
TCSSCBR2 TCS(2) TCM(2) CFG LD0.TCSSCBR2.RsDlTmms.setVal ING INT32 SP A 1000 Reset delay time Reset delay time 20...60000 ms Configuration\Condition monitoring\TCSSCBR2
TCSSCBR2 TCS(2) TCM(2) TES LD0.TCSSCBR2.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 TCSSCBR2 Test control for outputs 0=Reset; 17=Activate ALARM; 18=Deactive ALARM Tests\Function tests\Condition monitoring
TCSSCBR2 TCS(2) TCM(2) VER LD0.TCSSCBR2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

CCSPVC1: Current circuit supervision

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CCSPVC1 MCS 3I(1) MCS 3I(1) INP LD0.CCSPVC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for all binary outputs Monitoring\I/O status\Condition monitoring\CCSPVC1\Inputs
CCSPVC1 MCS 3I(1) MCS 3I(1) OUT LD0.CCSPVC1.FailACirc.general ACT BOOLEAN ST B StatIed P,H FAIL Fail output Monitoring\I/O status\Condition monitoring\CCSPVC1\Outputs
CCSPVC1 MCS 3I(1) MCS 3I(1) OUT LD0.CCSPVC1.SigFailAlm.stVal SPS BOOLEAN ST B StatIed P,H ALARM Alarm output Monitoring\I/O status\Condition monitoring\CCSPVC1\Outputs
CCSPVC1 MCS 3I(1) MCS 3I(1) MON LD0.CCSPVC1.Beh.stVal ENS Enum ST B CCSPVC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
CCSPVC1 MCS 3I(1) MCS 3I(1) MON LD0.CCSPVC1.DifAClc.res.cVal.mag.f WYE FLOAT32 MX B IDIFF Differential current 0.00...40.00 xIn Monitoring\I/O status\Condition monitoring\CCSPVC1\Monitored data IL1TCTR1
CCSPVC1 MCS 3I(1) MCS 3I(1) CFG LD0.CCSPVC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation On / Off 1=on; 5=off Configuration\Condition monitoring\CCSPVC1
CCSPVC1 MCS 3I(1) MCS 3I(1) CFG LD0.CCSPVC1.StrVal.setMag.f ASG FLOAT32 SP B 0.05 Start value Minimum operate current differential level 0.05...0.20 xIn Configuration\Condition monitoring\CCSPVC1 IL1TCTR1
CCSPVC1 MCS 3I(1) MCS 3I(1) CFG LD0.CCSPVC1.MaxOpA.setMag.f ASG FLOAT32 SP A 1.5 Max operate current Block of the function at high phase current 1.00...5.00 xIn Configuration\Condition monitoring\CCSPVC1 IL1TCTR1
CCSPVC1 MCS 3I(1) MCS 3I(1) TES LD0.CCSPVC1.TestSpvn.Oper.ctlVal ENC Enum CO B 0 CCSPVC1 Test control for outputs 0=Reset; 5=Activate ALARM; 6=Deactive ALARM; 41=Activate FAIL; 42=Deactive FAIL Tests\Function tests\Condition monitoring
CCSPVC1 MCS 3I(1) MCS 3I(1) VER LD0.CCSPVC1.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

SEQSPVC1: Fuse failure supervision

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
SEQSPVC1 FUSEF(1) 60(1) INP LD0.SEQSPVC1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block of function Monitoring\I/O status\Condition monitoring\SEQSPVC1\Inputs
SEQSPVC1 FUSEF(1) 60(1) INP LD0.SEQSPVC1.InPosCls.stVal SPS BOOLEAN ST B 0 CB_CLOSED Active when circuit breaker is closed Monitoring\I/O status\Condition monitoring\SEQSPVC1\Inputs
SEQSPVC1 FUSEF(1) 60(1) INP LD0.SEQSPVC1.InDCPosOpn.stVal SPS BOOLEAN ST B 0 DISCON_OPEN Active when line disconnector is open Monitoring\I/O status\Condition monitoring\SEQSPVC1\Inputs
SEQSPVC1 FUSEF(1) 60(1) INP LD0.SEQSPVC1.InMCBPsOpn.stVal SPS BOOLEAN ST B 0 MINCB_OPEN Active when external MCB opens protected voltage circuit Monitoring\I/O status\Condition monitoring\SEQSPVC1\Inputs
SEQSPVC1 FUSEF(1) 60(1) OUT LD0.SEQSPVC1.Str.general ACD BOOLEAN ST B StatIed P,H FUSEF_U General start of function Monitoring\I/O status\Condition monitoring\SEQSPVC1\Outputs
SEQSPVC1 FUSEF(1) 60(1) OUT LD0.SEQSPVC1.Str3Ph.general ACD BOOLEAN ST B StatIed P,H FUSEF_3PH Three-phase start of function Monitoring\I/O status\Condition monitoring\SEQSPVC1\Outputs
SEQSPVC1 FUSEF(1) 60(1) MON LD0.SEQSPVC1.Beh.stVal ENS Enum ST B SEQSPVC1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\SEQSPVC1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.BlkValA.setMag.f ASG FLOAT32 SP A 0.10 Min Op current delta Minimum operate level of phase current for delta calculation 0.01...1.00 xIn Configuration\Condition monitoring\SEQSPVC1 IL1TCTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.NgSeqLevA.setMag.f ASG FLOAT32 SP A 0.03 Neg Seq current Lev Operate level of neg seq undercurrent element 0.03...0.20 xIn Configuration\Condition monitoring\SEQSPVC1 IL1TCTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.ChgRteA.setMag.f ASG FLOAT32 SP A 0.15 Current change rate Operate level of change in phase current 0.01...0.50 xIn Configuration\Condition monitoring\SEQSPVC1 IL1TCTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.ChgRteEna.setVal SPG BOOLEAN SP A 0 Change rate enable Enabling operation of change based function Configuration\Condition monitoring\SEQSPVC1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.ChgRteV.setMag.f ASG FLOAT32 SP A 0.40 Voltage change rate Operate level of change in phase voltage 0.25...0.90 xUn Configuration\Condition monitoring\SEQSPVC1 UL1TVTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.EnaSealIn.setVal SPG BOOLEAN SP A 0 Enable seal in Enabling seal in functionality Configuration\Condition monitoring\SEQSPVC1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.BlkValV.setMag.f ASG FLOAT32 SP A 0.50 Min Op voltage delta Minimum operate level of phase voltage for delta calculation 0.01...1.00 xUn Configuration\Condition monitoring\SEQSPVC1 UL1TVTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.SealInV.setMag.f ASG FLOAT32 SP A 0.50 Seal in voltage Operate level of seal-in phase voltage 0.01...1.00 xUn Configuration\Condition monitoring\SEQSPVC1 UL1TVTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.NgSeqLevV.setMag.f ASG FLOAT32 SP A 0.10 Neg Seq voltage Lev Operate level of neg seq overvoltage element 0.03...0.20 xUn Configuration\Condition monitoring\SEQSPVC1 UL1TVTR1
SEQSPVC1 FUSEF(1) 60(1) CFG LD0.SEQSPVC1.DeaLinValA.setMag.f ASG FLOAT32 SP A 0.05 Current dead Lin Val Operate level for open phase current detection 0.05...1.00 xIn Configuration\Condition monitoring\SEQSPVC1 IL1TCTR1
SEQSPVC1 FUSEF(1) 60(1) TES LD0.SEQSPVC1.TestSpvn.Oper.ctlVal ENC Enum CO B 0 SEQSPVC1 Test control for outputs 0=Reset; 43=Activate FUSEF_3PH; 44=Deactive FUSEF_3PH; 45=Activate FUSEF_U; 46=Deactive FUSEF_U Tests\Function tests\Condition monitoring
SEQSPVC1 FUSEF(1) 60(1) VER LD0.SEQSPVC1.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

MDSOPT1: Generic operation time supervision for machines and devices

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MDSOPT1 OPTS(1) OPTM(1) INP LD0.MDSOPT1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\MDSOPT1\Inputs
MDSOPT1 OPTS(1) OPTM(1) INP LD0.MDSOPT1.OpTmRs.stVal SPC BOOLEAN ST B 0 RESET Resets the accumulated operation time to initial value Monitoring\I/O status\Condition monitoring\MDSOPT1\Inputs
MDSOPT1 OPTS(1) OPTM(1) INP LD0.MDSOPT1.TmOp.stVal SPS BOOLEAN ST B 0 POS_ACTIVE When active indicates the equipment is running Monitoring\I/O status\Condition monitoring\MDSOPT1\Inputs
MDSOPT1 OPTS(1) OPTM(1) OUT LD0.MDSOPT1.OpTmWrn.stVal SPS BOOLEAN ST B StatIed P,H WARNING Warning accumulated operation time exceeds Warning value Monitoring\I/O status\Condition monitoring\MDSOPT1\Outputs
MDSOPT1 OPTS(1) OPTM(1) OUT LD0.MDSOPT1.OpTmAlm.stVal SPS BOOLEAN ST B StatIed P,H ALARM Alarm accumulated operation time exceeds Alarm value Monitoring\I/O status\Condition monitoring\MDSOPT1\Outputs
MDSOPT1 OPTS(1) OPTM(1) CTR LD0.MDSOPT1.OpTmRs.Oper.ctlVal SPC BOOLEAN CO B 0 MDSOPT1 operation t Resets the accumulated operation time to initial value 0=Cancel; 1=Clear Clear\Clear
MDSOPT1 OPTS(1) OPTM(1) MON LD0.MDSOPT1.Beh.stVal ENS Enum ST B MDSOPT1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MDSOPT1 OPTS(1) OPTM(1) MON LD0.MDSOPT1.OpTmh.stVal INS INT32 ST B OPR_TIME Total operation time in hours 0...299999 h Monitoring\I/O status\Condition monitoring\MDSOPT1\Monitored data
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.OpWrnTmh.setVal ING INT32 SP B 8000 Warning value Warning value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.OpAlmTmh.setVal ING INT32 SP B 10000 Alarm value Alarm value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.IniOpTmh.setVal ING INT32 SP A 0 Initial value Initial value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.OpActTmh.setVal ING INT32 SP A 0 Operating time hour Time of day when alarm and warning will occur 0...23 h Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) CFG LD0.MDSOPT1.OpActMod.setVal ENG Enum SP A 1 Operating time mode Operating time mode for warning and alarm 1=Immediate; 2=Timed Warn; 3=Timed Warn Alm Configuration\Condition monitoring\MDSOPT1
MDSOPT1 OPTS(1) OPTM(1) TES LD0.MDSOPT1.TstOutCmd.Oper.ctlVal ENC Enum CO B 1 MDSOPT1 Operation Off / On 0=Reset; 17=Activate ALARM; 18=Deactive ALARM; 19=Activate WARNING; 20=Deactive WARNING Tests\Function tests\Condition monitoring
MDSOPT1 OPTS(1) OPTM(1) VER LD0.MDSOPT1.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

MDSOPT2: Generic operation time supervision for machines and devices

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
MDSOPT2 OPTS(2) OPTM(2) INP LD0.MDSOPT2.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block input status Monitoring\I/O status\Condition monitoring\MDSOPT2\Inputs
MDSOPT2 OPTS(2) OPTM(2) INP LD0.MDSOPT2.OpTmRs.stVal SPC BOOLEAN ST B 0 RESET Resets the accumulated operation time to initial value Monitoring\I/O status\Condition monitoring\MDSOPT2\Inputs
MDSOPT2 OPTS(2) OPTM(2) INP LD0.MDSOPT2.TmOp.stVal SPS BOOLEAN ST B 0 POS_ACTIVE When active indicates the equipment is running Monitoring\I/O status\Condition monitoring\MDSOPT2\Inputs
MDSOPT2 OPTS(2) OPTM(2) OUT LD0.MDSOPT2.OpTmWrn.stVal SPS BOOLEAN ST B StatIed P,H WARNING Warning accumulated operation time exceeds Warning value Monitoring\I/O status\Condition monitoring\MDSOPT2\Outputs
MDSOPT2 OPTS(2) OPTM(2) OUT LD0.MDSOPT2.OpTmAlm.stVal SPS BOOLEAN ST B StatIed P,H ALARM Alarm accumulated operation time exceeds Alarm value Monitoring\I/O status\Condition monitoring\MDSOPT2\Outputs
MDSOPT2 OPTS(2) OPTM(2) CTR LD0.MDSOPT2.OpTmRs.Oper.ctlVal SPC BOOLEAN CO B 0 MDSOPT2 operation t Resets the accumulated operation time to initial value 0=Cancel; 1=Clear Clear\Clear
MDSOPT2 OPTS(2) OPTM(2) MON LD0.MDSOPT2.Beh.stVal ENS Enum ST B MDSOPT2 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
MDSOPT2 OPTS(2) OPTM(2) MON LD0.MDSOPT2.OpTmh.stVal INS INT32 ST B OPR_TIME Total operation time in hours 0...299999 h Monitoring\I/O status\Condition monitoring\MDSOPT2\Monitored data
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.OpWrnTmh.setVal ING INT32 SP B 8000 Warning value Warning value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.OpAlmTmh.setVal ING INT32 SP B 10000 Alarm value Alarm value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.IniOpTmh.setVal ING INT32 SP A 0 Initial value Initial value for operation time supervision 0...299999 h Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.OpActTmh.setVal ING INT32 SP A 0 Operating time hour Time of day when alarm and warning will occur 0...23 h Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) CFG LD0.MDSOPT2.OpActMod.setVal ENG Enum SP A 1 Operating time mode Operating time mode for warning and alarm 1=Immediate; 2=Timed Warn; 3=Timed Warn Alm Configuration\Condition monitoring\MDSOPT2
MDSOPT2 OPTS(2) OPTM(2) TES LD0.MDSOPT2.TstOutCmd.Oper.ctlVal ENC Enum CO B 1 MDSOPT2 Operation Off / On 0=Reset; 17=Activate ALARM; 18=Deactive ALARM; 19=Activate WARNING; 20=Deactive WARNING Tests\Function tests\Condition monitoring
MDSOPT2 OPTS(2) OPTM(2) VER LD0.MDSOPT2.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

CMMXU1: Three-phase current measurement

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CMMXU1 3I(1) 3I(1) INP LD0.CMMXU1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for all binary outputs Monitoring\I/O status\Measurements\CMMXU1\Inputs
CMMXU1 3I(1) 3I(1) OUT LD0.CMMXU1.HiAlm.stVal SPS BOOLEAN ST B StatUrg P,H HIGH_ALARM High alarm Monitoring\I/O status\Measurements\CMMXU1\Outputs
CMMXU1 3I(1) 3I(1) OUT LD0.CMMXU1.HiWrn.stVal SPS BOOLEAN ST B StatUrg P,H HIGH_WARN High warning Monitoring\I/O status\Measurements\CMMXU1\Outputs
CMMXU1 3I(1) 3I(1) OUT LD0.CMMXU1.LoWrn.stVal SPS BOOLEAN ST B StatUrg P,H LOW_WARN Low warning Monitoring\I/O status\Measurements\CMMXU1\Outputs
CMMXU1 3I(1) 3I(1) OUT LD0.CMMXU1.LoAlm.stVal SPS BOOLEAN ST B StatUrg P,H LOW_ALARM Low alarm Monitoring\I/O status\Measurements\CMMXU1\Outputs
CMMXU1 3I(1) 3I(1) CTR LD0.CMMXU1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (CMMXU1 demands)
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsA.instCVal.mag.f WYE FLOAT32 MX B MeasFlt P IL1-A Measured current amplitude phase A 0.00...40.00 xIn Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsA.instCVal.ang.f WYE FLOAT32 MX B MeasFlt P I_ANGL_A IL1 current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsA.cVal.mag.f WYE FLOAT32 MX B MeasFlt P I_DB_A IL1 Amplitude, magnitude of reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsA.range WYE Enum MX B MeasFlt P I_RANGE_A IL1 Amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsB.instCVal.mag.f WYE FLOAT32 MX B MeasFlt P IL2-A Measured current amplitude phase B 0.00...40.00 xIn Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsB.instCVal.ang.f WYE FLOAT32 MX B MeasFlt P I_ANGL_B IL2 current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsB.cVal.mag.f WYE FLOAT32 MX B MeasFlt P I_DB_B IL2 Amplitude, magnitude of reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsB.range WYE Enum MX B MeasFlt P I_RANGE_B IL2 Amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsC.instCVal.mag.f WYE FLOAT32 MX B MeasFlt P IL3-A Measured current amplitude phase C 0.00...40.00 xIn Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsC.instCVal.ang.f WYE FLOAT32 MX B MeasFlt P I_ANGL_C IL3 current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsC.cVal.mag.f WYE FLOAT32 MX B MeasFlt P I_DB_C IL3 Amplitude, magnitude of reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMMXU1.A.phsC.range WYE Enum MX B MeasFlt P I_RANGE_C IL3 Amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CAVMMXU1.A.phsA.cVal.mag.f WYE FLOAT32 MX B I_DMD_A Demand value of IL1 current 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CAVMMXU1.A.phsB.cVal.mag.f WYE FLOAT32 MX B I_DMD_B Demand value of IL2 current 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CAVMMXU1.A.phsC.cVal.mag.f WYE FLOAT32 MX B I_DMD_C Demand value of IL3 current 0.00...40.00 xIn Monitoring\I/O status\Measurements\CMMXU1\Monitored data IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsA.cVal.mag.f WYE FLOAT32 MX B Max demand IL1 Maximum demand for Phase A 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsA.t WYE Timestamp MX B Time max demand IL1 Time of maximum demand phase A Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsB.cVal.mag.f WYE FLOAT32 MX B Max demand IL2 Maximum demand for Phase B 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsB.t WYE Timestamp MX B Time max demand IL2 Time of maximum demand phase B Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsC.cVal.mag.f WYE FLOAT32 MX B Max demand IL3 Maximum demand for Phase C 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMAMMXU1.A.phsC.t WYE Timestamp MX B Time max demand IL3 Time of maximum demand phase C Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsA.cVal.mag.f WYE FLOAT32 MX B Min demand IL1 Minimum demand for Phase A 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsA.t WYE Timestamp MX B Time min demand IL1 Time of minimum demand phase A Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsB.cVal.mag.f WYE FLOAT32 MX B Min demand IL2 Minimum demand for Phase B 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsB.t WYE Timestamp MX B Time min demand IL2 Time of minimum demand phase B Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsC.cVal.mag.f WYE FLOAT32 MX B Min demand IL3 Minimum demand for Phase C 0.00...40.00 xIn Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) MON LD0.CMIMMXU1.A.phsC.t WYE Timestamp MX B Time min demand IL3 Time of minimum demand phase C Monitoring\Recorded data\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Measurements\CMMXU1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.A.phsA.db WYE INT32U CF B,I 2500 A deadband Deadband configuration value for integral calculation. (percentage of difference between min and max as 0,001 % s) 100...100000 Configuration\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.A.phsA.rangeC.hhLim.f WYE FLOAT32 CF B,I 1.40 A high high limit High alarm current limit 0.00...40.00 xIn Configuration\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.A.phsA.rangeC.hLim.f WYE FLOAT32 CF B,I 1.20 A high limit High warning current limit 0.00...40.00 xIn Configuration\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.A.phsA.rangeC.lLim.f WYE FLOAT32 CF B,I 0.00 A low limit Low warning current limit 0.00...40.00 xIn Configuration\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.A.phsA.rangeC.llLim.f WYE FLOAT32 CF B,I 0.00 A low low limit Low alarm current limit 0.00...40.00 xIn Configuration\Measurements\CMMXU1 IL1TCTR1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.AMeasMod.setVal ENG Enum SP A 2 Measurement mode Selects used measurement mode 1=RMS; 2=DFT Configuration\Measurements\CMMXU1
CMMXU1 3I(1) 3I(1) CFG LD0.CMMXU1.NumPh.setVal ENG Enum SP B 1 Num of phases Number of phases required by limit supervision 1=1 out of 3; 2=2 out of 3; 3=3 out of 3 Configuration\Measurements\CMMXU1
CMMXU1 3I(1) 3I(1) VER LD0.CMMXU1.NamPlt.swRev LPL VisString255 (20) DC ED1 E (Name plate)

CSMSQI1: Sequence current measurement

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c1.instCVal.mag.f SEQ FLOAT32 MX B MeasFlt P PsSeq-A Measured positive sequence current 0.00...40.00 xIn Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c1.instCVal.ang.f SEQ FLOAT32 MX B MeasFlt P I1_ANGL Positive sequence current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c1.cVal.mag.f SEQ FLOAT32 MX B MeasFlt P I1_DB Positive sequence current amplitude, reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c1.range SEQ Enum MX B MeasFlt P I1_RANGE Positive sequence current amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c2.instCVal.mag.f SEQ FLOAT32 MX B MeasFlt P NgSeq-A Measured negative sequence current 0.00...40.00 xIn Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c2.instCVal.ang.f SEQ FLOAT32 MX B MeasFlt P I2_ANGL Negative sequence current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c2.cVal.mag.f SEQ FLOAT32 MX B MeasFlt P I2_DB Negative sequence current amplitude, reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c2.range SEQ Enum MX B MeasFlt P I2_RANGE Negative sequence current amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c3.instCVal.mag.f SEQ FLOAT32 MX B MeasFlt P ZroSeq-A Measured zero sequence current 0.00...40.00 xIn Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c3.instCVal.ang.f SEQ FLOAT32 MX B MeasFlt P I0_ANGL Zero sequence current angle -180.00...180.00 deg Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c3.cVal.mag.f SEQ FLOAT32 MX B MeasFlt P I0_DB Zero sequence current amplitude, reported value 0.00...40.00 xIn Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) MON LD0.CSMSQI1.SeqA.c3.range SEQ Enum MX B MeasFlt P I0_RANGE Zero sequence current amplitude range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\CSMSQI1\Monitored data IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Measurements\CSMSQI1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c1.db SEQ INT32U CF B,I 2500 Ps Seq A deadband Deadband configuration value for positive sequence current for integral calculation. (percentage of difference between min and max as 0,001 % s) 100...100000 Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c1.rangeC.hhLim.f SEQ FLOAT32 CF B,I 1.40 Ps Seq A Hi high Lim High alarm current limit for positive sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c1.rangeC.hLim.f SEQ FLOAT32 CF B,I 1.20 Ps Seq A high limit High warning current limit for positive sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c1.rangeC.lLim.f SEQ FLOAT32 CF B,I 0.00 Ps Seq A low limit Low warning current limit for positive sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c1.rangeC.llLim.f SEQ FLOAT32 CF B,I 0.00 Ps Seq A low low Lim Low alarm current limit for positive sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c2.db SEQ INT32U CF B,I 2500 Ng Seq A deadband Deadband configuration value for negative sequence current for integral calculation. (percentage of difference between min and max as 0,001 % s) 100...100000 Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c2.rangeC.hhLim.f SEQ FLOAT32 CF B,I 0.20 Ng Seq A Hi high Lim High alarm current limit for negative sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c2.rangeC.hLim.f SEQ FLOAT32 CF B,I 0.05 Ng Seq A High limit High warning current limit for negative sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c2.rangeC.lLim.f SEQ FLOAT32 CF B,I 0.00 Ng Seq A low limit Low warning current limit for negative sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c2.rangeC.llLim.f SEQ FLOAT32 CF B,I 0.00 Ng Seq A low low Lim Low alarm current limit for negative sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c3.db SEQ INT32U CF B,I 2500 Zro A deadband Deadband configuration value for zero sequence current for integral calculation. (percentage of difference between min and max as 0,001 % s) 100...100000 Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c3.rangeC.hhLim.f SEQ FLOAT32 CF B,I 0.20 Zro A Hi high Lim High alarm current limit for zero sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c3.rangeC.hLim.f SEQ FLOAT32 CF B,I 0.05 Zro A High limit High warning current limit for zero sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c3.rangeC.lLim.f SEQ FLOAT32 CF B,I 0.00 Zro A low limit Low warning current limit for zero sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) CFG LD0.CSMSQI1.SeqA.c3.rangeC.llLim.f SEQ FLOAT32 CF B,I 0.00 Zro A low low Lim Low alarm current limit for zero sequence current 0.00...40.00 xIn Configuration\Measurements\CSMSQI1 IL1TCTR1
CSMSQI1 I1,I2,I0(1) I1,I2,I0(1) VER LD0.CSMSQI1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

PEMMXU1: Three-phase power and energy measurement

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PEMMXU1 P,E(1) P,E(1) INP LD0.PEMMTR1.SupDmdRs.stVal SPC BOOLEAN ST B 0 RSTACM Reset of accumulated energy reading Monitoring\I/O status\Measurements\PEMMXU1\Inputs
PEMMXU1 P,E(1) P,E(1) CTR LD0.PEMMXU1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (PEMMXU1 demands)
PEMMXU1 P,E(1) P,E(1) CTR LD0.PEMMTR1.SupDmdRs.Oper.ctlVal SPC BOOLEAN CO B 0 PEMMXU1 acc.energy Reset of accumulated energy reading 0=Cancel; 1=Clear Clear\Clear
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotW.instMag.f MV FLOAT32 MX B MeasFlt P P-kW Total Active Power -999999.9...999999.9 kW Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotW.mag.f MV FLOAT32 MX B MeasFlt P P_DB Active power, magnitude of reported value -999999.9...999999.9 kW Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotVAr.instMag.f MV FLOAT32 MX B MeasFlt P Q-kVAr Total Reactive Power -999999.9...999999.9 kVAr Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotVAr.mag.f MV FLOAT32 MX B MeasFlt P Q_DB Reactive power, magnitude of reported value -999999.9...999999.9 kVAr Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotVA.instMag.f MV FLOAT32 MX B MeasFlt P S-kVA Total Apparent Power -999999.9...999999.9 kVA Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotVA.mag.f MV FLOAT32 MX B MeasFlt P S_DB Apparent power, magnitude of reported value -999999.9...999999.9 kVA Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotPF.instMag.f MV FLOAT32 MX B MeasFlt P PF Average Power factor -1.00...1.00 Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMXU1.TotPF.mag.f MV FLOAT32 MX B MeasFlt P PF_DB Power factor, magnitude of reported value -1.00...1.00 Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMTR1.SupWh.actVal BCR INT64 ST B EA_RV_ACM Accumulated reverse active energy value 0...999999999 kWh Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMTR1.SupVArh.actVal BCR INT64 ST B ER_RV_ACM Accumulated reverse reactive energy value 0...999999999 kVArh Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMTR1.DmdWh.actVal BCR INT64 ST B EA_FWD_ACM Accumulated forward active energy value 0...999999999 kWh Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMMTR1.DmdVArh.actVal BCR INT64 ST B ER_FWD_ACM Accumulated forward reactive energy value 0...999999999 kVArh Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEAVMMXU1.TotW.mag.f MV FLOAT32 MX B P_DMD Demand value of active power -999999.9...999999.9 kW Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEAVMMXU1.TotVAr.mag.f MV FLOAT32 MX B Q_DMD Demand value of reactive power -999999.9...999999.9 kVAr Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEAVMMXU1.TotVA.mag.f MV FLOAT32 MX B S_DMD Demand value of apparent power -999999.9...999999.9 kVA Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEAVMMXU1.TotPF.mag.f MV FLOAT32 MX B PF_DMD Demand value of power factor -1.00...1.00 Monitoring\I/O status\Measurements\PEMMXU1\Monitored data
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotW.mag.f MV FLOAT32 MX B Max demand P Maximum demand value of active power -999999.9...999999.9 kW Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotW.t MV Timestamp MX B Time max dmd P Time of maximum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotVAr.mag.f MV FLOAT32 MX B Max demand Q Maximum demand value of reactive power -999999.9...999999.9 kVAr Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotVAr.t MV Timestamp MX B Time max dmd Q Time of maximum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotVA.mag.f MV FLOAT32 MX B Max demand S Maximum demand value of apparent power -999999.9...999999.9 kVA Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMAMMXU1.TotVA.t MV Timestamp MX B Time max dmd S Time of maximum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotW.mag.f MV FLOAT32 MX B Min demand P Minimum demand value of active power -999999.9...999999.9 kW Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotW.t MV Timestamp MX B Time min dmd P Time of minimum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotVAr.mag.f MV FLOAT32 MX B Min demand Q Minimum demand value of reactive power -999999.9...999999.9 kVAr Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotVAr.t MV Timestamp MX B Time min dmd Q Time of minimum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotVA.mag.f MV FLOAT32 MX B Min demand S Minimum demand value of apparent power -999999.9...999999.9 kVA Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) MON LD0.PEMIMMXU1.TotVA.t MV Timestamp MX B Time min dmd S Time of minimum demand Monitoring\Recorded data\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMXU1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMXU1.TotW.units.multiplier MV Enum CF B,I 3 Power unit Mult Unit multiplier for presentation of the power related values 3=Kilo; 6=Mega Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMXU1.WhDir.setVal ENG Enum SP B 1 Active power Dir Direction of active power flow: Forward, Reverse 1=Forward; 2=Reverse Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMXU1.VArhDir.setVal ENG Enum SP B 1 Reactive power Dir Direction of reactive power flow: Forward, Reverse 1=Forward; 2=Reverse Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMTR1.SupWh.units.multiplier BCR Enum CF B,I 3 Energy unit Mult Unit multiplier for presentation of the energy related values 3=Kilo; 6=Mega Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMTR1.IniDmdWh.setVal ING INT32 SP A 0 Forward Wh Initial Preset Initial value for forward active energy 0...999999999 Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMTR1.IniSupWh.setVal ING INT32 SP A 0 Reverse Wh Initial Preset Initial value for reverse active energy 0...999999999 Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMTR1.IniDmdVArh.setVal ING INT32 SP A 0 Forward VArh Initial Preset Initial value for forward reactive energy 0...999999999 Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) CFG LD0.PEMMTR1.IniSupVArh.setVal ING INT32 SP A 0 Reverse VArh Initial Preset Initial value for reverse reactive energy 0...999999999 Configuration\Measurements\PEMMXU1
PEMMXU1 P,E(1) P,E(1) VER LD0.PEMMXU1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

LDPRLRC1: Load profile record

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
LDPRLRC1 INP LD0.LDPRLRC1.RcdRs.stVal SPC BOOLEAN ST 0 (Reset load profile rec.)
LDPRLRC1 OUT LD0.LDPRLRC1.MemWrn.stVal SPS BOOLEAN ST B StatUrg P,H MEM_WARN Recording memory warning status Monitoring\Load profile record
LDPRLRC1 OUT LD0.LDPRLRC1.MemAlm.stVal SPS BOOLEAN ST B StatUrg P,H MEM_ALARM Recording memory alarm status Monitoring\Load profile record
LDPRLRC1 CTR LD0.LDPRLRC1.RcdRs.Oper.ctlVal SPC BOOLEAN CO B 0 Load Profile record Reset load profile record 0=Cancel; 1=Clear Clear\Clear
LDPRLRC1 MON LD0.LDPRLRC1.MemUsed.stVal INS INT32 ST B Rec. memory used How much recording memory is currently used 0...100 % Monitoring\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel1.setVal ENG Enum SP B,I 0 Quantity Sel 1 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel2.setVal ENG Enum SP B,I 0 Quantity Sel 2 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel3.setVal ENG Enum SP B,I 0 Quantity Sel 3 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel4.setVal ENG Enum SP B,I 0 Quantity Sel 4 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel5.setVal ENG Enum SP B,I 0 Quantity Sel 5 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel6.setVal ENG Enum SP B,I 0 Quantity Sel 6 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel7.setVal ENG Enum SP B,I 0 Quantity Sel 7 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel8.setVal ENG Enum SP B,I 0 Quantity Sel 8 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel9.setVal ENG Enum SP B,I 0 Quantity Sel 9 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel10.setVal ENG Enum SP B,I 0 Quantity Sel 10 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel11.setVal ENG Enum SP B,I 0 Quantity Sel 11 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.QtySel12.setVal ENG Enum SP B,I 0 Quantity Sel 12 Select quantity to be recorded 0=Disabled; 1=IL1; 2=IL2; 3=IL3; 4=Io; 5=IL1B; 6=IL2B; 7=IL3B; 8=IoB; 9=U12; 10=U23; 11=U31; 12=UL1; 13=UL2; 14=UL3; 21=S; 22=P; 23=Q; 24=PF Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.MemWrnLev.setVal ING INT32 SP B 0 Mem. warning level Set memory warning level 0...100 % Configuration\Load profile record
LDPRLRC1 CFG LD0.LDPRLRC1.MemAlmLev.setVal ING INT32 SP B 0 Mem. alarm level Set memory alarm level 0...100 % Configuration\Load profile record
LDPRLRC1 VER LD0.LDPRLRC1.NamPlt.swRev LPL VisString255 (20) DC D (Name plate)

FMMXU1: Frequency measurement

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
FMMXU1 f(1) f(1) MON LD0.FMMXU1.Hz.instMag.f MV FLOAT32 MX B MeasFlt P f-Hz Measured frequency 35.00...75.00 Hz Measurements\FMMXU1
FMMXU1 f(1) f(1) MON LD0.FMMXU1.Hz.mag.f MV FLOAT32 MX B MeasFlt P F_DB Frequency, reported value 35.00...75.00 Hz Monitoring\I/O status\Measurements\FMMXU1\Monitored data
FMMXU1 f(1) f(1) MON LD0.FMMXU1.Hz.range MV Enum MX B MeasFlt P F_RANGE Measured frequency range 0=normal; 1=high; 2=low; 3=high-high; 4=low-low Monitoring\I/O status\Measurements\FMMXU1\Monitored data
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Hz.db MV INT32U CF B,I 1000 F deadband Deadband configuration value for integral calculation (percentage of difference between min and max as 0,001 % s) 100...100000 Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Hz.rangeC.hhLim.f MV FLOAT32 CF B,I 60.00 F high high limit High alarm frequency limit 35.00...75.00 Hz Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Hz.rangeC.hLim.f MV FLOAT32 CF B,I 55.00 F high limit High warning frequency limit 35.00...75.00 Hz Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Hz.rangeC.lLim.f MV FLOAT32 CF B,I 45.00 F low limit Low warning frequency limit 35.00...75.00 Hz Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.Hz.rangeC.llLim.f MV FLOAT32 CF B,I 40.00 F low low limit Low alarm frequency limit 35.00...75.00 Hz Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) CFG LD0.FMMXU1.DefHzSel.setVal ENG Enum SP A,I 1 Def frequency Sel Default frequency selection 1=Nominal; 2=Zero Configuration\Measurements\FMMXU1
FMMXU1 f(1) f(1) VER LD0.FMMXU1.NamPlt.swRev LPL VisString255 (20) DC ED1 B (Name plate)

CMHAI1: Current total demand distortion

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
CMHAI1 PQM3I(1) PQM3I(1) INP LD0.CMHAI1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for all binary outputs Monitoring\I/O status\Power quality\CMHAI1\Inputs
CMHAI1 PQM3I(1) PQM3I(1) OUT LD0.CMHAI1.Alm.stVal SPS BOOLEAN ST B StatUrg P,H ALARM Alarm signal for TDD Monitoring\I/O status\Power quality\CMHAI1\Outputs
CMHAI1 PQM3I(1) PQM3I(1) CTR LD0.CMHAI1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (CMHAI1 max.demands)
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.TddA.phsA.cVal.mag.f WYE FLOAT32 MX B 3SMHTDD_A 3 second mean value of TDD for phase A 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.TddA.phsB.cVal.mag.f WYE FLOAT32 MX B 3SMHTDD_B 3 second mean value of TDD for phase B 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.TddA.phsC.cVal.mag.f WYE FLOAT32 MX B 3SMHTDD_C 3 second mean value of TDD for phase C 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.DmdTddA.phsA.cVal.mag.f WYE FLOAT32 MX B DMD_TDD_A Demand value for TDD for phase A 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.DmdTddA.phsB.cVal.mag.f WYE FLOAT32 MX B DMD_TDD_B Demand value for TDD for phase B 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.DmdTddA.phsC.cVal.mag.f WYE FLOAT32 MX B DMD_TDD_C Demand value for TDD for phase C 0.00...500.00 % Monitoring\I/O status\Power quality\CMHAI1\Monitored data
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsA.cVal.mag.f WYE FLOAT32 MX B Max demand TDD IL1 Maximum demand TDD for phase A 0.00...500.00 % Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsA.t WYE Timestamp MX B Time max dmd TDD IL1 Time of maximum demand TDD phase A Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsB.cVal.mag.f WYE FLOAT32 MX B Max demand TDD IL2 Maximum demand TDD for phase B 0.00...500.00 % Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsB.t WYE Timestamp MX B Time max dmd TDD IL2 Time of maximum demand TDD phase B Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsC.cVal.mag.f WYE FLOAT32 MX B Max demand TDD IL3 Maximum demand TDD for phase C 0.00...500.00 % Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) MON LD0.CMHAI1.MaxDmdTddA.phsC.t WYE Timestamp MX B Time max dmd TDD IL3 Time of maximum demand TDD phase C Monitoring\Recorded data\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) SET LD0.CMHAI1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) SET LD0.CMHAI1.NomA.setMag.f ASG FLOAT32 SP A 1.0 Initial Dmd current Initial demand current 0.10...1.0 xIn Settings\Settings\Power quality\CMHAI1 IL1TCTR1
CMHAI1 PQM3I(1) PQM3I(1) SET LD0.CMHAI1.TddAVal.setMag.f ASG FLOAT32 SP B 50.0 TDD alarm limit TDD alarm limit 1.0...100.0 % Settings\Settings\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) SET LD0.CMHAI1.DmdItrv.setVal ENG Enum SP B 2 Demand interval Time interval for demand calculation 0=1 minute; 1=5 minutes; 2=10 minutes; 3=15 minutes; 4=30 minutes; 5=60 minutes; 6=180 minutes Settings\Settings\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) SET LD0.CMHAI1.DmdWinMod.setVal ENG Enum SP B 1 Demand window Demand calculation window type 1=Sliding; 2=Non-sliding Settings\Settings\Power quality\CMHAI1
CMHAI1 PQM3I(1) PQM3I(1) VER LD0.CMHAI1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

VMHAI1: Voltage total harmonic distortion

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
VMHAI1 PQM3U(1) PQM3V(1) INP LD0.VMHAI1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for all binary outputs Monitoring\I/O status\Power quality\VMHAI1\Inputs
VMHAI1 PQM3U(1) PQM3V(1) OUT LD0.VMHAI1.Alm.stVal SPS BOOLEAN ST B StatUrg P,H ALARM Alarm signal for THD Monitoring\I/O status\Power quality\VMHAI1\Outputs
VMHAI1 PQM3U(1) PQM3V(1) CTR LD0.VMHAI1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (VMHAI1 max.demands)
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.ThdPhV.phsA.cVal.mag.f WYE FLOAT32 MX B 3SMHTHD_A 3 second mean value of THD for phase A 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.ThdPhV.phsB.cVal.mag.f WYE FLOAT32 MX B 3SMHTHD_B 3 second mean value of THD for phase B 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.ThdPhV.phsC.cVal.mag.f WYE FLOAT32 MX B 3SMHTHD_C 3 second mean value of THD for phase C 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.DmdThdPhV.phsA.cVal.mag.f WYE FLOAT32 MX B DMD_THD_A Demand value for THD for phase A 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.DmdThdPhV.phsB.cVal.mag.f WYE FLOAT32 MX B DMD_THD_B Demand value for THD for phase B 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.DmdThdPhV.phsC.cVal.mag.f WYE FLOAT32 MX B DMD_THD_C Demand value for THD for phase C 0.00...500.00 % Monitoring\I/O status\Power quality\VMHAI1\Monitored data
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsA.cVal.mag.f WYE FLOAT32 MX B Max demand THD UL1 Maximum demand THD for phase A 0.00...500.00 % Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsA.t WYE Timestamp MX B Time max dmd THD UL1 Time of maximum demand THD phase A Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsB.cVal.mag.f WYE FLOAT32 MX B Max demand THD UL2 Maximum demand THD for phase B 0.00...500.00 % Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsB.t WYE Timestamp MX B Time max dmd THD UL2 Time of maximum demand THD phase B Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsC.cVal.mag.f WYE FLOAT32 MX B Max demand THD UL3 Maximum demand THD for phase C 0.00...500.00 % Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) MON LD0.VMHAI1.MaxDmdThdV.phsC.t WYE Timestamp MX B Time max dmd THD UL3 Time of maximum demand THD phase C Monitoring\Recorded data\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) SET LD0.VMHAI1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Power quality\VMHAI1 IL1TCTR1
VMHAI1 PQM3U(1) PQM3V(1) SET LD0.VMHAI1.ThdVVal.setMag.f ASG FLOAT32 SP B 50.0 THD alarm limit THD alarm limit 1.0...100.0 % Settings\Settings\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) SET LD0.VMHAI1.DmdItrv.setVal ENG Enum SP B 2 Demand interval Time interval for demand calculation 0=1 minute; 1=5 minutes; 2=10 minutes; 3=15 minutes; 4=30 minutes; 5=60 minutes; 6=180 minutes Settings\Settings\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) SET LD0.VMHAI1.DmdWinMod.setVal ENG Enum SP B 1 Demand window Demand calculation window type 1=Sliding; 2=Non-sliding Settings\Settings\Power quality\VMHAI1
VMHAI1 PQM3U(1) PQM3V(1) VER LD0.VMHAI1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

PHQVVR1: Short duration voltage variations

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PHQVVR1 PQMU(1) PQMV(1) INP LD0.PH1QVVR1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block signal for activating the blocking mode Monitoring\I/O status\Power quality\PHQVVR1\Inputs
PHQVVR1 PQMU(1) PQMV(1) OUT LD0.PH1QVVR1.DipStr.stVal SPS BOOLEAN ST B DIPST Voltage dip active Monitoring\I/O status\Power quality\PHQVVR1\Outputs
PHQVVR1 PQMU(1) PQMV(1) OUT LD0.PH1QVVR1.SwlStr.stVal SPS BOOLEAN ST B SWELLST Voltage swell active Monitoring\I/O status\Power quality\PHQVVR1\Outputs
PHQVVR1 PQMU(1) PQMV(1) OUT LD0.PH1QVVR1.IntrStr.stVal SPS BOOLEAN ST B INTST Voltage interruption active Monitoring\I/O status\Power quality\PHQVVR1\Outputs
PHQVVR1 PQMU(1) PQMV(1) OUT LD0.PH1QVVR1.VaOp.stVal SPS BOOLEAN ST B OPERATE Voltage variation detected Monitoring\I/O status\Power quality\PHQVVR1\Outputs
PHQVVR1 PQMU(1) PQMV(1) OUT LD0.PH1QVVR1.VaStrGen.stVal SPS BOOLEAN ST B StatUrg P,H START Voltage variation present Monitoring\I/O status\Power quality\PHQVVR1\Outputs
PHQVVR1 PQMU(1) PQMV(1) CTR LD0.PH1QVVR1.OpCntRs.Oper.ctlVal INC INT32 CO (Resettable operation counter)
PHQVVR1 PQMU(1) PQMV(1) CTR LD0.PH1QVVR1.CntRs.Oper.ctlVal SPC BOOLEAN CO (Counters reset)
PHQVVR1 PQMU(1) PQMV(1) CTR LD0.PH1QVVR1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (Recorded data reset)
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.Beh.stVal ENS Enum ST B PHQVVR1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.VarStr.stVal SPS BOOLEAN ST B ST_A Start Phase A (Voltage Variation Event in progress) Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.SwlInstCnt.stVal INS INT32 ST B INSTSWELLCNT Instantaneous swell operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.SwlMomCnt.stVal INS INT32 ST B MOMSWELLCNT Momentary swell operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.SwlTmpCnt.stVal INS INT32 ST B TEMPSWELLCNT Temporary swell operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.SwlMaxCnt.stVal INS INT32 ST B MAXDURSWELLCNT Maximum duration swell operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.DipInstCnt.stVal INS INT32 ST B INSTDIPCNT Instantaneous dip operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.DipTmpCnt.stVal INS INT32 ST B TEMPDIPCNT Temporary dip operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.DipMomCnt.stVal INS INT32 ST B MOMDIPCNT Momentary dip operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.DipMaxCnt.stVal INS INT32 ST B MAXDURDIPCNT Maximum duration dip operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.IntrMomCnt.stVal INS INT32 ST B MOMINTCNT Momentary interruption operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.IntrTmpCnt.stVal INS INT32 ST B TEMPINTCNT Temporary interruption operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.IntrSstCnt.stVal INS INT32 ST B SUSTINTCNT Sustained interruption operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH1QVVR1.IntrMaxCnt.stVal INS INT32 ST B MAXDURINTCNT Maximum duration interruption operation counter 0...2147483647 Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH2QVVR1.VarStr.stVal SPS BOOLEAN ST B ST_B Start Phase B (Voltage Variation Event in progress) Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.PH3QVVR1.VarStr.stVal SPS BOOLEAN ST B ST_C Start Phase C (Voltage Variation Event in progress) Monitoring\I/O status\Power quality\PHQVVR1\Monitored data
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTyp.stVal ENS Enum ST B Variation type Variation type 0=No variation; 1=Swell; 2=Dip; 3=Swell + dip; 4=Interruption; 5=Swell + Int; 6=Dip + Int; 7=Swell+dip+Int Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTyp.t ENS Timestamp ST B Time Time Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsA.mag.f MV FLOAT32 MX B Variation Ph A Variation magnitude Phase A 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsA.t MV Timestamp MX B Var Ph A rec time Variation magnitude Phase A time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsB.mag.f MV FLOAT32 MX B Variation Ph B Variation magnitude Phase B 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsB.t MV Timestamp MX B Var Ph B rec time Variation magnitude Phase B time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsC.mag.f MV FLOAT32 MX B Variation Ph C Variation magnitude Phase C 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaPhsC.t MV Timestamp MX B Var Ph C rec time Variation magnitude Phase C time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsA.mag.f MV FLOAT32 MX B Variation Dur Ph A Variation duration Phase A 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsA.t MV Timestamp MX B Var Dur Ph A time Variation Ph A start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsB.mag.f MV FLOAT32 MX B Variation Dur Ph B Variation duration Phase B 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsB.t MV Timestamp MX B Var Dur Ph B time Variation Ph B start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsC.mag.f MV FLOAT32 MX B Variation Dur Ph C Variation duration Phase C 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.VVaTmPhsC.t MV Timestamp MX B Var Dur Ph C time Variation Ph C start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.APreVaPhsA.mag.f MV FLOAT32 MX B Var current Ph A Current magnitude Phase A preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.APreVaPhsB.mag.f MV FLOAT32 MX B Var current Ph B Current magnitude Phase B preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV1RQRC1.APreVaPhsC.mag.f MV FLOAT32 MX B Var current Ph C Current magnitude Phase C preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 1
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTyp.stVal ENS Enum ST B Variation type Variation type 0=No variation; 1=Swell; 2=Dip; 3=Swell + dip; 4=Interruption; 5=Swell + Int; 6=Dip + Int; 7=Swell+dip+Int Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTyp.t ENS Timestamp ST B Time Time Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsA.mag.f MV FLOAT32 MX B Variation Ph A Variation magnitude Phase A 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsA.t MV Timestamp MX B Var Ph A rec time Variation magnitude Phase A time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsB.mag.f MV FLOAT32 MX B Variation Ph B Variation magnitude Phase B 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsB.t MV Timestamp MX B Var Ph B rec time Variation magnitude Phase B time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsC.mag.f MV FLOAT32 MX B Variation Ph C Variation magnitude Phase C 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaPhsC.t MV Timestamp MX B Var Ph C rec time Variation magnitude Phase C time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsA.mag.f MV FLOAT32 MX B Variation Dur Ph A Variation duration Phase A 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsA.t MV Timestamp MX B Var Dur Ph A time Variation Ph A start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsB.mag.f MV FLOAT32 MX B Variation Dur Ph B Variation duration Phase B 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsB.t MV Timestamp MX B Var Dur Ph B time Variation Ph B start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsC.mag.f MV FLOAT32 MX B Variation Dur Ph C Variation duration Phase C 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.VVaTmPhsC.t MV Timestamp MX B Var Dur Ph C time Variation Ph C start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.APreVaPhsA.mag.f MV FLOAT32 MX B Var current Ph A Current magnitude Phase A preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.APreVaPhsB.mag.f MV FLOAT32 MX B Var current Ph B Current magnitude Phase B preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV2RQRC1.APreVaPhsC.mag.f MV FLOAT32 MX B Var current Ph C Current magnitude Phase C preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 2
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTyp.stVal ENS Enum ST B Variation type Variation type 0=No variation; 1=Swell; 2=Dip; 3=Swell + dip; 4=Interruption; 5=Swell + Int; 6=Dip + Int; 7=Swell+dip+Int Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTyp.t ENS Timestamp ST B Time Time Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsA.mag.f MV FLOAT32 MX B Variation Ph A Variation magnitude Phase A 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsA.t MV Timestamp MX B Var Ph A rec time Variation magnitude Phase A time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsB.mag.f MV FLOAT32 MX B Variation Ph B Variation magnitude Phase B 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsB.t MV Timestamp MX B Var Ph B rec time Variation magnitude Phase B time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsC.mag.f MV FLOAT32 MX B Variation Ph C Variation magnitude Phase C 0.00...5.00 xUn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaPhsC.t MV Timestamp MX B Var Ph C rec time Variation magnitude Phase C time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsA.mag.f MV FLOAT32 MX B Variation Dur Ph A Variation duration Phase A 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsA.t MV Timestamp MX B Var Dur Ph A time Variation Ph A start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsB.mag.f MV FLOAT32 MX B Variation Dur Ph B Variation duration Phase B 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsB.t MV Timestamp MX B Var Dur Ph B time Variation Ph B start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsC.mag.f MV FLOAT32 MX B Variation Dur Ph C Variation duration Phase C 0.000...3600.000 s Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.VVaTmPhsC.t MV Timestamp MX B Var Dur Ph C time Variation Ph C start time stamp Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.APreVaPhsA.mag.f MV FLOAT32 MX B Var current Ph A Current magnitude Phase A preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.APreVaPhsB.mag.f MV FLOAT32 MX B Var current Ph B Current magnitude Phase B preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) MON LD0.QVV3RQRC1.APreVaPhsC.mag.f MV FLOAT32 MX B Var current Ph C Current magnitude Phase C preceding variation 0.00...60.00 xIn Monitoring\Recorded data\Power quality\PHQVVR1\Variation 3
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation Off / On 1=on; 5=off Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.DipStrVal.setMag.f ASG FLOAT32 SG B 80.0 Voltage dip set 1 Dip limit 1 in % of reference voltage 10.0...100.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.DipStr2Val.setMag.f ASG FLOAT32 SG B 80.0 Voltage dip set 2 Dip limit 2 in % of reference voltage 10.0...100.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.DipStr3Val.setMag.f ASG FLOAT32 SG B 80.0 Voltage dip set 3 Dip limit 3 in % of reference voltage 10.0...100.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.SwlStrVal.setMag.f ASG FLOAT32 SG B 120.0 Voltage swell set 1 Swell limit 1 in % of reference voltage 100.0...140.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.SwlStr2Val.setMag.f ASG FLOAT32 SG B 120.0 Voltage swell set 2 Swell limit 2 in % of reference voltage 100.0...140.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.SwlStr3Val.setMag.f ASG FLOAT32 SG B 120.0 Voltage swell set 3 Swell limit 3 in % of reference voltage 100.0...140.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.IntrStrVal.setMag.f ASG FLOAT32 SG B 10.0 Voltage Int set Interruption limit in % of reference voltage 0.0...100.0 % Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.RefV.setMag.f ASG FLOAT32 SG B 57.7 Reference voltage Reference supply voltage in % 10.0...200.0 %Un Settings\Settings\Power quality\PHQVVR1 UL1TVTR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Dip1Cyc.setMag.f ASG FLOAT32 SG B 3.0 VVa dip time 1 Voltage variation dip duration 1 0.5...54.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Dip2Cyc.setMag.f ASG FLOAT32 SG B 30.0 VVa dip time 2 Voltage variation dip duration 2 10.0...180.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Dip3Tmms.setVal ING INT32 SG B 3000 VVa dip time 3 Voltage variation dip duration 3 2000...60000 ms Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Swl1Cyc.setMag.f ASG FLOAT32 SG B 0.5 VVa swell time 1 Voltage variation swell duration 1 0.5...54.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Swl2Cyc.setMag.f ASG FLOAT32 SG B 10.0 VVa swell time 2 Voltage variation swell duration 2 10.0...80.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Swl3Tmms.setVal ING INT32 SG B 2000 VVa swell time 3 Voltage variation swell duration 3 2000...60000 ms Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Intr1Cyc.setMag.f ASG FLOAT32 SG B 3.0 VVa Int time 1 Voltage variation Int duration 1 0.5...30.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Intr2Cyc.setMag.f ASG FLOAT32 SG B 30.0 VVa Int time 2 Voltage variation Int duration 2 10.0...180.0 cycles Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.Intr3Tmms.setVal ING INT32 SG B 3000 VVa Int time 3 Voltage variation interruption duration 3 2000...60000 ms Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.MaxDurTmms.setVal ING INT32 SG B 60000 VVa Dur Max Maximum voltage variation duration 100...3600000 ms Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.PhSpvn.setVal ENG Enum SP A 7 Phase supervision Monitored voltage phase 1=Ph A; 2=Ph B; 3=Ph A + B; 4=Ph C; 5=Ph A + C; 6=Ph B + C; 7=Ph A + B + C Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.OpModPh.setVal ENG Enum SP A 2 Phase mode Three/Single phase mode 1=Three Phase; 2=Single Phase Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) SET LD0.PH1QVVR1.VVaEna.setVal ENG Enum SP B 7 Variation enable Enable variation type 1=Swell; 2=Dip; 3=Swell + dip; 4=Interruption; 5=Swell + Int; 6=Dip + Int; 7=Swell+dip+Int Settings\Settings\Power quality\PHQVVR1
PHQVVR1 PQMU(1) PQMV(1) TES LD0.PH1QVVR1.TstOutCmd.Oper.ctlVal ENC Enum CO B 0 PHQVVR1 Test control for outputs 0=Reset; 1=Activate START; 2=Deactive START; 9=Activate OPERATE; 10=Deactive OPERATE; -59=Activate SWELLST; -60=Deactive SWELLST; -61=Activate DIPST; -62=Deactive DIPST; -63=Activate INTST; -64=Deactive INTST Tests\Function tests\Power quality
PHQVVR1 PQMU(1) PQMV(1) VER LD0.PH1QVVR1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

VSQVUB1: Voltage unbalance measurement

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
VSQVUB1 PQUUB(1) PQVUB(1) INP LD0.VSQVUB1.Blk.stVal SPS BOOLEAN ST B 0 BLOCK Block all outputs except measured values Monitoring\I/O status\Power quality\VSQVUB1\Inputs
VSQVUB1 PQUUB(1) PQVUB(1) OUT LD0.VSQVUB1.VarStr.stVal SPS BOOLEAN ST B StatNrml P,H MN_UNB_AL Alarm active when 3 sec voltage unbalance exceeds the limit Monitoring\I/O status\Power quality\VSQVUB1\Outputs
VSQVUB1 PQUUB(1) PQVUB(1) OUT LD0.VSQVUB1.HiPctVUnb.stVal SPS BOOLEAN ST B StatNrml P,H PCT_UNB_AL Alarm active when percentile unbalance exceeds the limit Monitoring\I/O status\Power quality\VSQVUB1\Outputs
VSQVUB1 PQUUB(1) PQVUB(1) OUT LD0.VSQVUB1.ObsPerAct.stVal SPS BOOLEAN ST B OBS_PR_ACT Observation period is active Monitoring\I/O status\Power quality\VSQVUB1\Outputs
VSQVUB1 PQUUB(1) PQVUB(1) CTR LD0.VSQVUB1.TrgObsPer.Oper.ctlVal SPC BOOLEAN CO (Trigger for observation period)
VSQVUB1 PQUUB(1) PQVUB(1) CTR LD0.VSQVUB1.RcdRs.Oper.ctlVal SPC BOOLEAN CO (Recorded data reset)
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.Beh.stVal ENS Enum ST B VSQVUB1 Status 1=on; 2=blocked; 3=test; 4=test/blocked; 5=off Monitoring\FB status
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.MaxVVa.mag.f MV FLOAT32 MX B MAX_UNB_VAL Maximum voltage unbalance measured in the observation period 0.00...150.00 % Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.MaxVVa.t MV Timestamp MX B MAX_UNB_TIME Time stamp at which maximum voltage unbalance measured in the observation period Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.PctUnbVal.mag.f MV FLOAT32 MX B PCT_UNB_VAL Limit below which percentile unbalance of the values lie 0.00...150.00 % Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.VUnb3sMn.mag.f MV FLOAT32 MX B 3S_MN_UNB Non sliding 3 second mean value of voltage unbalance 0.00...150.00 % Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.VUnb10mMn.mag.f MV FLOAT32 MX B 10MIN_MN_UNB Sliding 10 minutes mean value of voltage unbalance 0.00...150.00 % Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.ObsPerStr.t SPS Timestamp ST B PR_STR_TIME Time stamp of starting of the previous observation period Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.VSQVUB1.ObsPerEnd.t SPS Timestamp ST B PR_END_TIME Time stamp of end of previous observation period Monitoring\I/O status\Power quality\VSQVUB1\Monitored data
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU1RQRC1.MaxVVa.mag.f MV FLOAT32 MX B Max unbalance Volt Maximum 3 seconds unbalance voltage 0.00...150.00 % Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 1
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU1RQRC1.MaxVVa.t MV Timestamp MX B Time Max Unb Volt Time stamp of maximum voltage unbalance Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 1
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU1RQRC1.VVaTm.mag.f MV FLOAT32 MX B Alarm high mean Dur Time duration for alarm high mean unbalance 0.000...3600.000 s Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 1
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU2RQRC1.MaxVVa.mag.f MV FLOAT32 MX B Max unbalance Volt Maximum 3 seconds unbalance voltage 0.00...150.00 % Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 2
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU2RQRC1.MaxVVa.t MV Timestamp MX B Time Max Unb Volt Time stamp of maximum voltage unbalance Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 2
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU2RQRC1.VVaTm.mag.f MV FLOAT32 MX B Alarm high mean Dur Time duration for alarm high mean unbalance 0.000...3600.000 s Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 2
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU3RQRC1.MaxVVa.mag.f MV FLOAT32 MX B Max unbalance Volt Maximum 3 seconds unbalance voltage 0.00...150.00 % Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 3
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU3RQRC1.MaxVVa.t MV Timestamp MX B Time Max Unb Volt Time stamp of maximum voltage unbalance Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 3
VSQVUB1 PQUUB(1) PQVUB(1) MON LD0.QVU3RQRC1.VVaTm.mag.f MV FLOAT32 MX B Alarm high mean Dur Time duration for alarm high mean unbalance 0.000...3600.000 s Monitoring\Recorded data\Power quality\VSQVUB1\Unbalance 3
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.Mod.Oper.ctlVal ENC Enum CO B,I 1 Operation Operation On/Off 1=on; 5=off Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.UnbDetMth.setVal ENG Enum SP B 3 Unb detection method Set the operation mode for voltage unbalance calculation 1=Neg Seq; 2=Zero Seq; 3=Neg to Pos Seq; 4=Zero to Pos Seq; 5=Ph vectors Comp Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.StrVal.setMag.f ASG FLOAT32 SP B 1 Unbalance start Val Voltage unbalance start value 1...100 % Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.TrgModPQ.setVal ENG Enum SP B 3 Trigger mode Specifies the observation period triggering mode 1=Single; 2=Periodic; 3=Continuous Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.ObsPerSel.setVal ENG Enum SP B 5 Obs period selection Observation period for unbalance calculation 1=1 Hour; 2=12 Hours; 3=1 Day; 4=7 Days; 5=User defined Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.ObsPerUsr.setVal ING INT32 SP B 168 User Def Obs period User define observation period for statistic calculation 1...168 h Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.PctUnb.setMag.f ASG FLOAT32 SP B 95 Percentile unbalance The percent to which percentile value PCT_UNB_VAL is calculated 1...100 % Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.PerStrDate.setCal.occ TSG INT16U SP ED2,B 2011 Obs period Str year Calendar time for observation period start year in YYYY 2008...2076 Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.PerStrDate.setCal.month TSG Enum SP ED2,B 1 Obs period Str month Calendar time for observation period start month 0=reserved; 1=January; 2=February; 3=March; 4=April; 5=May; 6=June; 7=July; 8=August; 9=September; 10=October; 11=November; 12=December Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.PerStrDate.setCal.day TSG INT8U SP ED2,B 1 Obs period Str day Calendar time for observation period start day 1...31 Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) SET LD0.VSQVUB1.PerStrDate.setCal.hr TSG INT8U SP ED2,B 0 Obs period Str hour Calendar time for observation period start hour 0...23 h Settings\Settings\Power quality\VSQVUB1
VSQVUB1 PQUUB(1) PQVUB(1) TES LD0.VSQVUB1.TestOth.Oper.ctlVal ENC Enum CO B 0 VSQVUB1 Test control for outputs 0=Reset; 11=Activate MN_UNB_AL; 12=Deactive MN_UNB_AL; 13=Activate PCT_UNB_AL; 14=Deactive PCT_UNB_AL; 15=Activate OBS_PR_ACT; 16=Deactive OBS_PR_ACT Tests\Function tests\Power quality
VSQVUB1 PQUUB(1) PQVUB(1) VER LD0.VSQVUB1.NamPlt.swRev LPL VisString255 (20) DC ED1 D (Name plate)

TPGAPC1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPGAPC1 TP(1) TP(1) INP LD0.TPGAPC1.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPGAPC1\Inputs
TPGAPC1 TP(1) TP(1) INP LD0.TPGAPC1.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPGAPC1\Inputs
TPGAPC1 TP(1) TP(1) OUT LD0.TPGAPC1.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPGAPC1\Outputs
TPGAPC1 TP(1) TP(1) OUT LD0.TPGAPC1.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPGAPC1\Outputs
TPGAPC1 TP(1) TP(1) CFG LD0.TPGAPC1.PlsTmms.setVal ING INT32 SP B 150 Pulse time Minimum pulse time 0...60000 ms Configuration\Generic timers\TPGAPC1
TPGAPC1 TP(1) TP(1) VER LD0.TPGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPGAPC2

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPGAPC2 TP(2) TP(2) INP LD0.TPGAPC2.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPGAPC2\Inputs
TPGAPC2 TP(2) TP(2) INP LD0.TPGAPC2.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPGAPC2\Inputs
TPGAPC2 TP(2) TP(2) OUT LD0.TPGAPC2.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPGAPC2\Outputs
TPGAPC2 TP(2) TP(2) OUT LD0.TPGAPC2.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPGAPC2\Outputs
TPGAPC2 TP(2) TP(2) CFG LD0.TPGAPC2.PlsTmms.setVal ING INT32 SP B 150 Pulse time Minimum pulse time 0...60000 ms Configuration\Generic timers\TPGAPC2
TPGAPC2 TP(2) TP(2) VER LD0.TPGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPGAPC3

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPGAPC3 TP(3) TP(3) INP LD0.TPGAPC3.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPGAPC3\Inputs
TPGAPC3 TP(3) TP(3) INP LD0.TPGAPC3.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPGAPC3\Inputs
TPGAPC3 TP(3) TP(3) OUT LD0.TPGAPC3.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPGAPC3\Outputs
TPGAPC3 TP(3) TP(3) OUT LD0.TPGAPC3.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPGAPC3\Outputs
TPGAPC3 TP(3) TP(3) CFG LD0.TPGAPC3.PlsTmms.setVal ING INT32 SP B 150 Pulse time Minimum pulse time 0...60000 ms Configuration\Generic timers\TPGAPC3
TPGAPC3 TP(3) TP(3) VER LD0.TPGAPC3.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPGAPC4

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPGAPC4 TP(4) TP(4) INP LD0.TPGAPC4.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPGAPC4\Inputs
TPGAPC4 TP(4) TP(4) INP LD0.TPGAPC4.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPGAPC4\Inputs
TPGAPC4 TP(4) TP(4) OUT LD0.TPGAPC4.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPGAPC4\Outputs
TPGAPC4 TP(4) TP(4) OUT LD0.TPGAPC4.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPGAPC4\Outputs
TPGAPC4 TP(4) TP(4) CFG LD0.TPGAPC4.PlsTmms.setVal ING INT32 SP B 150 Pulse time Minimum pulse time 0...60000 ms Configuration\Generic timers\TPGAPC4
TPGAPC4 TP(4) TP(4) VER LD0.TPGAPC4.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPSGAPC1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPSGAPC1 TPS(1) TPS(1) INP LD0.TPSGAPC1.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPSGAPC1\Inputs
TPSGAPC1 TPS(1) TPS(1) INP LD0.TPSGAPC1.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPSGAPC1\Inputs
TPSGAPC1 TPS(1) TPS(1) OUT LD0.TPSGAPC1.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPSGAPC1\Outputs
TPSGAPC1 TPS(1) TPS(1) OUT LD0.TPSGAPC1.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPSGAPC1\Outputs
TPSGAPC1 TPS(1) TPS(1) CFG LD0.TPSGAPC1.PlsTms.setVal ING INT32 SP B 0 Pulse time Minimum pulse time 0...300 s Configuration\Generic timers\TPSGAPC1
TPSGAPC1 TPS(1) TPS(1) VER LD0.TPSGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPSGAPC2

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPSGAPC2 TPS(2) TPS(2) INP LD0.TPSGAPC2.Str.general ACD BOOLEAN ST ED1 0 (Str)
TPSGAPC2 TPS(2) TPS(2) INP LD0.TPSGAPC2.Op.general ACT BOOLEAN ST ED1 0 (Op)
TPSGAPC2 TPS(2) TPS(2) OUT LD0.TPSGAPC2.Str.general ACD BOOLEAN ST ED1 0 (Str)
TPSGAPC2 TPS(2) TPS(2) OUT LD0.TPSGAPC2.Op.general ACT BOOLEAN ST ED1 0 (Op)
TPSGAPC2 TPS(2) TPS(2) MON LD0.TPSGAPC2.Ind1.stVal SPS BOOLEAN ST B IN1 Input 1 Monitoring\I/O status\Generic timers\TPSGAPC2\Inputs
TPSGAPC2 TPS(2) TPS(2) MON LD0.TPSGAPC2.Ind2.stVal SPS BOOLEAN ST B IN2 Input 2 Monitoring\I/O status\Generic timers\TPSGAPC2\Inputs
TPSGAPC2 TPS(2) TPS(2) MON LD0.TPSGAPC2.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPSGAPC2\Outputs
TPSGAPC2 TPS(2) TPS(2) MON LD0.TPSGAPC2.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPSGAPC2\Outputs
TPSGAPC2 TPS(2) TPS(2) CFG LD0.TPSGAPC2.PlsTms.setVal ING INT32 SP B 0 Pulse time Minimum pulse time 0...300 s Configuration\Generic timers\TPSGAPC2
TPSGAPC2 TPS(2) TPS(2) VER LD0.TPSGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPMGAPC1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPMGAPC1 TPM(1) TPM(1) INP LD0.TPMGAPC1.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 Monitoring\I/O status\Generic timers\TPMGAPC1\Inputs
TPMGAPC1 TPM(1) TPM(1) INP LD0.TPMGAPC1.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 Monitoring\I/O status\Generic timers\TPMGAPC1\Inputs
TPMGAPC1 TPM(1) TPM(1) OUT LD0.TPMGAPC1.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPMGAPC1\Outputs
TPMGAPC1 TPM(1) TPM(1) OUT LD0.TPMGAPC1.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPMGAPC1\Outputs
TPMGAPC1 TPM(1) TPM(1) CFG LD0.TPMGAPC1.PlsTmm.setVal ING INT32 SP B 0 Pulse time Minimum pulse time 0...300 min Configuration\Generic timers\TPMGAPC1
TPMGAPC1 TPM(1) TPM(1) VER LD0.TPMGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TPMGAPC2

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TPMGAPC2 TPM(2) TPM(2) INP LD0.TPMGAPC2.Str.general ACD BOOLEAN ST ED1 0 (Str)
TPMGAPC2 TPM(2) TPM(2) INP LD0.TPMGAPC2.Op.general ACT BOOLEAN ST ED1 0 (Op)
TPMGAPC2 TPM(2) TPM(2) OUT LD0.TPMGAPC2.Str.general ACD BOOLEAN ST ED1 0 (Str)
TPMGAPC2 TPM(2) TPM(2) OUT LD0.TPMGAPC2.Op.general ACT BOOLEAN ST ED1 0 (Op)
TPMGAPC2 TPM(2) TPM(2) MON LD0.TPMGAPC2.Ind1.stVal SPS BOOLEAN ST B IN1 Input 1 Monitoring\I/O status\Generic timers\TPMGAPC2\Inputs
TPMGAPC2 TPM(2) TPM(2) MON LD0.TPMGAPC2.Ind2.stVal SPS BOOLEAN ST B IN2 Input 2 Monitoring\I/O status\Generic timers\TPMGAPC2\Inputs
TPMGAPC2 TPM(2) TPM(2) MON LD0.TPMGAPC2.SPCSO1.stVal SPC BOOLEAN ST B OUT1 Output 1 status Monitoring\I/O status\Generic timers\TPMGAPC2\Outputs
TPMGAPC2 TPM(2) TPM(2) MON LD0.TPMGAPC2.SPCSO2.stVal SPC BOOLEAN ST B OUT2 Output 2 status Monitoring\I/O status\Generic timers\TPMGAPC2\Outputs
TPMGAPC2 TPM(2) TPM(2) CFG LD0.TPMGAPC2.PlsTmm.setVal ING INT32 SP B 0 Pulse time Minimum pulse time 0...300 min Configuration\Generic timers\TPMGAPC2
TPMGAPC2 TPM(2) TPM(2) VER LD0.TPMGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

PTGAPC1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind3.stVal SPS BOOLEAN ST B 0 IN3 Input 3 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind4.stVal SPS BOOLEAN ST B 0 IN4 Input 4 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind5.stVal SPS BOOLEAN ST B 0 IN5 Input 5 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind6.stVal SPS BOOLEAN ST B 0 IN6 Input 6 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind7.stVal SPS BOOLEAN ST B 0 IN7 Input 7 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) INP LD0.PTGAPC1.Ind8.stVal SPS BOOLEAN ST B 0 IN8 Input 8 status Monitoring\I/O status\Generic timers\PTGAPC1\Inputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO1.stVal SPC BOOLEAN ST B Q1 Output 1 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO2.stVal SPC BOOLEAN ST B Q2 Output 2 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO3.stVal SPC BOOLEAN ST B Q3 Output 3 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO4.stVal SPC BOOLEAN ST B Q4 Output 4 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO5.stVal SPC BOOLEAN ST B Q5 Output 5 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO6.stVal SPC BOOLEAN ST B Q6 Output 6 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO7.stVal SPC BOOLEAN ST B Q7 Output 7 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) OUT LD0.PTGAPC1.SPCSO8.stVal SPC BOOLEAN ST B Q8 Output 8 status Monitoring\I/O status\Generic timers\PTGAPC1\Outputs
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms1.setVal ING INT32 SP B 0 Pulse time 1 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms2.setVal ING INT32 SP B 0 Pulse time 2 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms3.setVal ING INT32 SP B 0 Pulse time 3 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms4.setVal ING INT32 SP B 0 Pulse time 4 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms5.setVal ING INT32 SP B 0 Pulse time 5 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms6.setVal ING INT32 SP B 0 Pulse time 6 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms7.setVal ING INT32 SP B 0 Pulse time 7 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) CFG LD0.PTGAPC1.PlsTmms8.setVal ING INT32 SP B 0 Pulse time 8 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC1
PTGAPC1 PT(1) PT(1) VER LD0.PTGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

PTGAPC2

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind3.stVal SPS BOOLEAN ST B 0 IN3 Input 3 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind4.stVal SPS BOOLEAN ST B 0 IN4 Input 4 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind5.stVal SPS BOOLEAN ST B 0 IN5 Input 5 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind6.stVal SPS BOOLEAN ST B 0 IN6 Input 6 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind7.stVal SPS BOOLEAN ST B 0 IN7 Input 7 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) INP LD0.PTGAPC2.Ind8.stVal SPS BOOLEAN ST B 0 IN8 Input 8 status Monitoring\I/O status\Generic timers\PTGAPC2\Inputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO1.stVal SPC BOOLEAN ST B Q1 Output 1 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO2.stVal SPC BOOLEAN ST B Q2 Output 2 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO3.stVal SPC BOOLEAN ST B Q3 Output 3 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO4.stVal SPC BOOLEAN ST B Q4 Output 4 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO5.stVal SPC BOOLEAN ST B Q5 Output 5 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO6.stVal SPC BOOLEAN ST B Q6 Output 6 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO7.stVal SPC BOOLEAN ST B Q7 Output 7 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) OUT LD0.PTGAPC2.SPCSO8.stVal SPC BOOLEAN ST B Q8 Output 8 status Monitoring\I/O status\Generic timers\PTGAPC2\Outputs
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms1.setVal ING INT32 SP B 0 Pulse time 1 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms2.setVal ING INT32 SP B 0 Pulse time 2 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms3.setVal ING INT32 SP B 0 Pulse time 3 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms4.setVal ING INT32 SP B 0 Pulse time 4 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms5.setVal ING INT32 SP B 0 Pulse time 5 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms6.setVal ING INT32 SP B 0 Pulse time 6 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms7.setVal ING INT32 SP B 0 Pulse time 7 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) CFG LD0.PTGAPC2.PlsTmms8.setVal ING INT32 SP B 0 Pulse time 8 Pulse time 0...3600000 ms Configuration\Generic timers\PTGAPC2
PTGAPC2 PT(2) PT(2) VER LD0.PTGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 C (Name plate)

TOFGAPC1

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind3.stVal SPS BOOLEAN ST B 0 IN3 Input 3 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind4.stVal SPS BOOLEAN ST B 0 IN4 Input 4 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind5.stVal SPS BOOLEAN ST B 0 IN5 Input 5 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind6.stVal SPS BOOLEAN ST B 0 IN6 Input 6 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind7.stVal SPS BOOLEAN ST B 0 IN7 Input 7 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) INP LD0.TOFGAPC1.Ind8.stVal SPS BOOLEAN ST B 0 IN8 Input 8 status Monitoring\I/O status\Generic timers\TOFGAPC1\Inputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO1.stVal SPC BOOLEAN ST B Q1 Output 1 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO2.stVal SPC BOOLEAN ST B Q2 Output 2 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO3.stVal SPC BOOLEAN ST B Q3 Output 3 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO4.stVal SPC BOOLEAN ST B Q4 Output 4 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO5.stVal SPC BOOLEAN ST B Q5 Output 5 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO6.stVal SPC BOOLEAN ST B Q6 Output 6 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO7.stVal SPC BOOLEAN ST B Q7 Output 7 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) OUT LD0.TOFGAPC1.SPCSO8.stVal SPC BOOLEAN ST B Q8 Output 8 status Monitoring\I/O status\Generic timers\TOFGAPC1\Outputs
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms1.setVal ING INT32 SP B 0 Off delay time 1 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms2.setVal ING INT32 SP B 0 Off delay time 2 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms3.setVal ING INT32 SP B 0 Off delay time 3 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms4.setVal ING INT32 SP B 0 Off delay time 4 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms5.setVal ING INT32 SP B 0 Off delay time 5 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms6.setVal ING INT32 SP B 0 Off delay time 6 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms7.setVal ING INT32 SP B 0 Off delay time 7 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) CFG LD0.TOFGAPC1.OffDlTmms8.setVal ING INT32 SP B 0 Off delay time 8 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC1
TOFGAPC1 TOF(1) TOF(1) VER LD0.TOFGAPC1.NamPlt.swRev LPL VisString255 (20) DC ED1 B (Name plate)

TOFGAPC2

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind3.stVal SPS BOOLEAN ST B 0 IN3 Input 3 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind4.stVal SPS BOOLEAN ST B 0 IN4 Input 4 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind5.stVal SPS BOOLEAN ST B 0 IN5 Input 5 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind6.stVal SPS BOOLEAN ST B 0 IN6 Input 6 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind7.stVal SPS BOOLEAN ST B 0 IN7 Input 7 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) INP LD0.TOFGAPC2.Ind8.stVal SPS BOOLEAN ST B 0 IN8 Input 8 status Monitoring\I/O status\Generic timers\TOFGAPC2\Inputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO1.stVal SPC BOOLEAN ST B Q1 Output 1 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO2.stVal SPC BOOLEAN ST B Q2 Output 2 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO3.stVal SPC BOOLEAN ST B Q3 Output 3 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO4.stVal SPC BOOLEAN ST B Q4 Output 4 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO5.stVal SPC BOOLEAN ST B Q5 Output 5 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO6.stVal SPC BOOLEAN ST B Q6 Output 6 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO7.stVal SPC BOOLEAN ST B Q7 Output 7 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) OUT LD0.TOFGAPC2.SPCSO8.stVal SPC BOOLEAN ST B Q8 Output 8 status Monitoring\I/O status\Generic timers\TOFGAPC2\Outputs
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms1.setVal ING INT32 SP B 0 Off delay time 1 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms2.setVal ING INT32 SP B 0 Off delay time 2 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms3.setVal ING INT32 SP B 0 Off delay time 3 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms4.setVal ING INT32 SP B 0 Off delay time 4 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms5.setVal ING INT32 SP B 0 Off delay time 5 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms6.setVal ING INT32 SP B 0 Off delay time 6 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms7.setVal ING INT32 SP B 0 Off delay time 7 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) CFG LD0.TOFGAPC2.OffDlTmms8.setVal ING INT32 SP B 0 Off delay time 8 Off delay time 0...3600000 ms Configuration\Generic timers\TOFGAPC2
TOFGAPC2 TOF(2) TOF(2) VER LD0.TOFGAPC2.NamPlt.swRev LPL VisString255 (20) DC ED1 B (Name plate)

TOFGAPC3

IEC 61850 IEC 60617 ANSI Category IECName CDC Type FC Access Default Dataset Event CMT Parameter name Parameter desc Parameter range Menu path Channel relation
TOFGAPC3 TOF(3) TOF(3) INP LD0.TOFGAPC3.Ind1.stVal SPS BOOLEAN ST B 0 IN1 Input 1 status Monitoring\I/O status\Generic timers\TOFGAPC3\Inputs
TOFGAPC3 TOF(3) TOF(3) INP LD0.TOFGAPC3.Ind2.stVal SPS BOOLEAN ST B 0 IN2 Input 2 status Monitoring\I/O status\Generic timers\TOFGAPC3\Inputs
TOFGAPC3 TOF(