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en05000034.vsd

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X

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IEC05000034 V1 EN

Figure 11.

Typical quadrilateral distance protection zone with Phase
selection with load encroachment function FDPSPDIS
activated

The independent measurement of impedance for each fault
loop together with a sensitive and reliable built-in phase
selection makes the function suitable in applications with
single-phase autoreclosing.

Built-in adaptive load compensation algorithm prevents
overreaching of zone 1 at load exporting end at phase-to-earth
faults on heavily loaded power lines.

The distance protection zones can operate independently of
each other in directional (forward or reverse) or non-directional
mode. This makes them suitable, together with different
communication schemes, for the protection of power lines and
cables in complex network configurations, such as parallel
lines, multi-terminal lines.

Distance measuring zone, quadrilateral characteristic for
series compensated lines ZMCPDIS, ZMCAPDIS

The line distance protection is a five three zone full scheme
protection with three fault loops for phase-to-phase faults and
three fault loops for phase-to-earth fault for each of the
independent zones. Individual settings for each zone resistive
and reactive reach give flexibility for use on overhead lines and
cables of different types and lengths.

Quadrilateral characteristic is available.

ZMCPDIS function has functionality for load encroachment
which increases the possibility to detect high resistive faults on
heavily loaded lines.

en05000034.vsd

R

X

Forward

operation

Reverse

operation

IEC05000034 V1 EN

Figure 12.

Typical quadrilateral distance protection zone with load
encroachment function activated

The independent measurement of impedance for each fault
loop together with a sensitive and reliable built in phase
selection makes the function suitable in applications with single
phase auto-reclosing.

Built-in adaptive load compensation algorithm for the
quadrilateral function prevents overreaching of zone1 at load
exporting end at phase to earth-faults on heavily loaded power
lines.

The distance protection zones can operate, independent of
each other, in directional (forward or reverse) or non-directional
mode. This makes them suitable, together with different
communication schemes, for the protection of power lines and
cables in complex network configurations, such as parallel
lines, multi-terminal lines.

Phase selection, quadrilateral characteristic with fixed angle
FDPSPDIS

The operation of transmission networks today is in many cases
close to the stability limit. Due to environmental considerations,
the rate of expansion and reinforcement of the power system is
reduced, for example, difficulties to get permission to build new
power lines. The ability to accurately and reliably classify the
different types of fault, so that single pole tripping and
autoreclosing can be used plays an important role in this
matter. Phase selection, quadrilateral characteristic with fixed
angle FDPSPDIS is designed to accurately select the proper
fault loop in the distance function dependent on the fault type.

The heavy load transfer that is common in many transmission
networks may make fault resistance coverage difficult to
achieve. Therefore, FDPSPDIS has a built-in algorithm for load
encroachment, which gives the possibility to enlarge the
resistive setting of both the phase selection and the measuring
zones without interfering with the load.

1MRK 505 346-BEN -

Line differential protection RED670 2.1 IEC

 

Product version: 2.1

 
 

ABB

25

Summary of Contents for RED670 Relion 670 series

Page 1: ...Relion 670 series Line differential protection RED670 2 1 IEC Product guide...

Page 2: ...chnical data 47 22 Ordering for customized IED 116 23 Ordering for pre configured IED 126 24 Ordering for Accessories 132 Disclaimer The information in this document is subject to change without notic...

Page 3: ...es The Disturbance recorder will also show remote station currents as received to this IED time compensated with measure communication time Out of Step function is available to separate power system s...

Page 4: ...e been defined for following applications Single breaker double or single bus with three phase tripping A31 Single breaker double or single bus with single phase tripping A32 Multi breaker one and a h...

Page 5: ...F PIOC 50N IN GOP PDOP 32 P HZ PDIF 87 Id L6C PDIF 87L 3Id I STB PTOC 50STB 3I STB S SIMG 63 LT3C PDIF 87LT 3Id I LT6C PDIS 87LT 3Id I SA PTOF 81 f SA PTUF 81 f GUP PDUP 37 P ZMM PDIS 21 Z ZMH PDIS 21...

Page 6: ...GOP PDOP 32 P HZ PDIF 87 Id L6C PDIF 87L 3Id I STB PTOC 50STB 3I STB S SIMG 63 LT3C PDIF 87LT 3Id I LT6C PDIS 87LT 3Id I SA PTOF 81 f SA PTUF 81 f GUP PDUP 37 P ZMM PDIS 21 Z ZMH PDIS 21 Z ZMQ PDIS 2...

Page 7: ...0 VDC PTOV 60 Ud STB PTOC 50STB 3I STB CCS SPVC 87 INd I Q CBAY 3 Control FDPS PDIS 21 FMPS PDIS 21 EF4 PTOC 51N_67N 4 IN CV GAPC 2 I U VD SPVC 60 Ud ZD RDIR 21 Z _ SDE PSDE 67N IN ZMH PDIS 21 Z HZ PD...

Page 8: ...0STB 3I STB CCS SPVC 87 INd I Q CBAY 3 Control FDPS PDIS 21 FMPS PDIS 21 EF4 PTOC 51N_67N 4 IN CV GAPC 2 I U VD SPVC 60 Ud ZD RDIR 21 Z _ SDE PSDE 67N IN ZMH PDIS 21 Z HZ PDIF 87 Id NS4 PTOC 46I2 4 I2...

Page 9: ...ns Table 1 Example of quantities 2 number of basic instances 0 3 option quantities 3 A03 optional function included in packages A03 refer to ordering details 1MRK 505 346 BEN Line differential protect...

Page 10: ...B16 ZDSRDIR 21D Directional impedance quadrilateral including series compensation 0 2 1 B16 1 B16 1 B16 1 B16 FDPSPDIS 21 Phase selection quadrilateral characteristic with fixed angle 0 2 1 B11 1 B16...

Page 11: ...1 1 B22 1 B22 1 B22 1 B22 OOSPPAM 78 Out of step protection 0 1 1 B22 1 B22 1 B22 1 B22 ZCVPSOF Automatic switch onto fault logic voltage and current based 0 1 1 B11 1 B16 1 B17 1 B11 1 B16 1 B17 1 B...

Page 12: ...F Breaker failure protection 0 2 1 2 1 2 STBPTOC 50STB Stub protection 0 2 1 B11 1B 1 B11 1 B11 1B 1 B11 CCPDSC 52PD Pole discordance protection 0 2 1 2 1 2 GUPPDUP 37 Directional underpower protectio...

Page 13: ...A32 RED670 B32 Multipurpose protection CVGAPC General current and voltage protection 0 4 4 F01 4 F01 4 F01 4 F01 General calculation SMAIHPAC Multipurpose filter 0 6 1 67 requires voltage 2 67N requi...

Page 14: ...als 5 5 5 5 5 AUTOBITS AutomationBits command function for DNP3 0 3 3 3 3 3 SINGLECMD Single command 16 signals 4 4 4 4 4 I103CMD Function commands for IEC 60870 5 103 1 1 1 1 1 I103GENCMD Function co...

Page 15: ...nteger conversion 18 18 18 18 18 BTIGAPC Boolean 16 to Integer conversion with Logic Node representation 16 16 16 16 16 IB16 Integer to Boolean 16 conversion 18 18 18 18 18 ITBGAPC Integer to Boolean...

Page 16: ...13 6 M15 LMBRFLO Fault locator 1 1 1 1 1 I103MEAS Measurands for IEC 60870 5 103 1 1 1 1 1 I103MEASUSR Measurands user defined signals for IEC 60870 5 103 3 3 3 3 3 I103AR Function status auto reclose...

Page 17: ...e logic blocks Q T Total number of instances ANDQT 120 INDCOMBSPQT 20 INDEXTSPQT 20 INVALIDQT 22 INVERTERQT 120 ORQT 120 PULSETIMERQT 40 RSMEMORYQT 40 SRMEMORYQT 40 TIMERSETQT 40 XORQT 40 Table 4 Tota...

Page 18: ...MST1TCP MST2TCP MST3TCP MST4TCP DNP3 0 for serial communication protocol 1 1 1 1 1 DNPFREC DNP3 0 fault records for TCP IP and EIA 485 communication protocol 1 1 1 1 1 IEC 61850 8 1 Parameter setting...

Page 19: ...3 1 P03 1 P03 1 P03 Remote communication Binary signal transfer receive transmit 6 36 6 36 6 36 6 36 6 36 Transmission of analog data from LDCM 1 1 1 1 1 Receive binary status from remote LDCM 6 3 3 6...

Page 20: ...uts SMMI Signal matrix for mA inputs SMAI1 SMAI12 Signal matrix for analog inputs ATHSTAT Authority status ATHCHCK Authority check AUTHMAN Authority management FTPACCS FTP access with password SPACOMM...

Page 21: ...ternal series resistor and a voltage dependent resistor which are both mounted externally to the IED are also required The external resistor unit shall be ordered under IED accessories in the Product...

Page 22: ...nnel Comm Channel IEC05000040 V2 EN Figure 7 Example of application on a three terminal line with 1 breaker arrangements The current differential algorithm provides high sensitivity for internal fault...

Page 23: ...alog signal transfer for line differential protection The line differential protection function can be arranged as a master master system or a master slave system alternatively In the former current s...

Page 24: ...t increases the security of protection during the high impedance fault conditions Low voltage criterion takes the phase voltages and phase to phase voltages as inputs It increases the security of prot...

Page 25: ...encroachment function activated The independent measurement of impedance for each fault loop together with a sensitive and reliable built in phase selection makes the function suitable in application...

Page 26: ...onal forward or reverse or non directional mode offset This makes them suitable together with different communication schemes for the protection of power lines and cables in complex network configurat...

Page 27: ...pendent zones Individual settings for each zone in resistive and reactive reach gives flexibility for use as back up protection for transformer connected to overhead lines and cables of different type...

Page 28: ...ltage reversal Each measurement zone is designed with the flexibility to operate in either quadrilateral or mho characteristic mode This can even be decided separate for the phase to ground or phase t...

Page 29: ...perate first Two current channels I3P1 and I3P2 are available in OOSPPAM function to allow the direct connection of two groups of three phase currents that may be needed for very powerful generators w...

Page 30: ...acity There is also available one nondirectional 3I0 step and one 3U0 overvoltage tripping step No specific sensitive current input is needed SDEPSDE can be set as low 0 25 of IBase Thermal overload p...

Page 31: ...otection with undervoltage seal in 6 Voltage protection Two step undervoltage protection UV2PTUV Undervoltages can occur in the power system during faults or abnormal conditions Two step undervoltage...

Page 32: ...ges to be connected For information about how to connect analog inputs refer to Application manual IED application Analog inputs Setting guidelines Overfrequency protection SAPTOF Overfrequency protec...

Page 33: ...e associated with voltage transformer switching during station operations Fuse failure supervision VDSPVC Different protection functions within the protection IED operates on the basis of measured vol...

Page 34: ...material damage and or accidental human injury Each apparatus control function has interlocking modules included for different switchyard arrangements where each function handles interlocking of one...

Page 35: ...eady with a settable pulse time AutomationBits command function for DNP3 0 AUTOBITS AutomationBits function for DNP3 AUTOBITS is used within PCM600 to get into the configuration of the commands coming...

Page 36: ...rrent protection the directional residual overcurrent protection can be supported with a logic that uses communication channels In the directional scheme information of the fault current direction mus...

Page 37: ...components are present in all types of fault condition Negative sequence voltage and current get high values during unsymmetrical faults Zero sequence overvoltage protection LCZSPTOV Zero sequence co...

Page 38: ...resets or returns to the state it had before the power interruption The SET input has priority TIMERSET function has pick up and drop out delayed outputs related to the input signal The timer has a se...

Page 39: ...nd on the Substation automation system about measured voltages currents frequency active reactive and apparent power and power factor measured analog values from merging units primary phasors positive...

Page 40: ...and reliable information about disturbances in the power system It facilitates understanding system behavior and related primary and secondary equipment during and after a disturbance Recorded informa...

Page 41: ...4UFCNT The 30 limit counter L4UFCNT provides a settable counter with four independent limits where the number of positive and or negative flanks on the input signal are counted against the setting val...

Page 42: ...r equipment either on the Substation Automation SA bus or Substation Monitoring SM bus Available communication protocols are IEC 61850 8 1 communication protocol IEC 61850 9 2LE communication protocol...

Page 43: ...standard format is used Galvanic X 21 line data communication module X 21 LDCM A module with built in galvanic X 21 converter which e g can be connected to modems for pilot wires is also available Ga...

Page 44: ...e connection uses the same signal for RX and TX and is a multidrop communication with no dedicated Master or slave This variant requires however a control of the output The 4 wire connection has separ...

Page 45: ...0 316 0 12 4 228 6 9 00 6U 1 1 x 19 265 9 10 47 448 3 17 65 242 1 9 53 255 8 10 07 430 3 16 86 190 5 7 50 428 3 16 86 465 1 18 31 228 6 9 00 482 6 19 00 The H and K dimensions are defined by the 19 ra...

Page 46: ...ustomized products Connection diagram 670 series 2 11MRK002801 AF Connection diagrams for Configured products Connection diagram RED670 2 1 A31 1MRK002803 HA Connection diagram RED670 2 1 B31 1MRK0028...

Page 47: ...range Current Ir 1 or 5 A 0 2 40 Ir Operative range 0 100 x Ir Permissive overload 4 Ir cont 100 Ir for 1 s Burden 150 mVA at Ir 5 A 20 mVA at Ir 1 A Ac voltage Ur 110 V 0 5 288 V Operative range 0 34...

Page 48: ...C D for IEC 61850 9 2LE IEEE C37 118 Standard IEEE 802 3u 100BASE FX Type of fiber 62 5 125 mm multimode fibre Wave length 1300 nm Optical connector Type ST Communication speed Fast Ethernet 100 Mbit...

Page 49: ...ly with influencing factors within nominal range Table 13 BIM Binary input module with enhanced pulse counting capabilities Quantity Rated value Nominal range Binary inputs 16 DC voltage RL 24 30 V 48...

Page 50: ...dard IEC 61810 2 Function or quantity Trip and signal relays Fast signal relays parallel reed relay Binary outputs 10 2 Max system voltage 250 V AC DC 250 V DC Test voltage across open contact 1 min 1...

Page 51: ...250 V 8 0 A 250 V 8 0 A Breaking capacity for DC with L R 40 ms 48 V 1 A 110 V 0 4 A 220 V 0 2 A 250 V 0 15 A 48 V 1 A 110 V 0 4 A 220 V 0 2 A 250 V 0 15 A Maximum capacitive load 10 nF Table 17 SOM S...

Page 52: ...nal relays Binary outputs 24 Max system voltage 250 V AC DC Test voltage across open contact 1 min 1000 V rms Current carrying capacity Per relay continuous Per relay 1 s Per process connector pin con...

Page 53: ...ndence on Within nominal range Influence Frequency dependence operate value fr 2 5 Hz for 50 Hz fr 3 0 Hz for 60 Hz 1 0 Hz Frequency dependence for distance protection operate value fr 2 5 Hz for 50 H...

Page 54: ...A Power frequency immunity test 150 300 V 50 Hz IEC 60255 26 Zone A Conducted common mode immunity test 15 Hz 150 kHz IEC 61000 4 16 Class IV Power frequency magnetic field test 1000 A m 3 s 100 A m...

Page 55: ...93 IEC 60068 2 78 Damp heat test cyclic Test Db for 6 cycles at 25 to 55 C and humidity 93 to 95 1 cycle 24 hours IEC 60068 2 30 Table 26 CE compliance Test According to Immunity EN 60255 26 Emissivit...

Page 56: ...g 60 0 of fundamental hidden setting 1 0 of Ir Table 29 1Ph High impedance differential protection HZPDIF Function Range or value Accuracy Operate voltage 10 900 V I U R 1 0 of Ir at I Ir 1 0 of I at...

Page 57: ...and table 173 Critical impulse time 2ms typically at 0 to 10 x Id Charging current compensation On Off LT3CPDIF and LT6CPDIF Operate time restrained function at 0 to 10 x Id Min 25 ms Max 35 ms Reset...

Page 58: ...0 5 of Ur Independent time delay zero sequence current at 0 to 2 x Iset 0 000 60 000 s 0 2 or 40 ms whichever is greater Independent time delay low current operation at 2 x Iset to 0 0 000 60 000 s 0...

Page 59: ...Ir Angle at 0 degrees and 85 degrees Positive sequence resistance 0 01 1000 00 phase Zero sequence reactance 0 10 9000 00 phase Zero sequence resistance 0 01 3000 00 phase Fault resistance phase to ea...

Page 60: ...er is greater Operate time 25 ms typically IEC 60255 121 Reset ratio 105 typically Reset time at 0 1 to 2 x Zreach Min 20 ms Max 35 ms Table 34 Phase selection quadrilateral characteristic with fixed...

Page 61: ...lly Reset time at 0 5 to 1 5 x Zreach Min 30 ms Max 45 ms Table 36 Full scheme distance protection quadrilateral for earth faults ZMMPDIS Function Range or value Accuracy Number of zones Max 5 with se...

Page 62: ...se Positive sequence reactance 0 10 3000 00 phase 2 0 static accuracy 2 0 degrees static angular accuracy Conditions Voltage range 0 1 1 1 x Ur Current range 0 5 30 x Ir Angle at 0 degrees and 85 degr...

Page 63: ...speed distance protection ZMFPDIS ZMFCPDIS Function Range or value Accuracy Number of zones 3 selectable directions 3 fixed directions Minimum operate current Ph Ph and Ph E 5 6000 of IBase 1 0 of Ir...

Page 64: ...00 9000 00 l Dynamic overreach 5 at 85 deg measured with CVT s and 0 5 SIR 30 Definite time delay to trip Ph E and Ph Ph operation 0 000 60 000 s 0 2 or 35 ms whichever is greater Operate time 16 ms t...

Page 65: ...wer swings 0 000 60 0000 s 0 2 or 15 ms whichever is greater Timer for blocking the overreaching zones trip 0 000 60 0000 s 0 2 or 15 ms whichever is greater Table 44 Pole slip protection PSPPPAM Func...

Page 66: ...lay for residual voltage at 1 2 to 0 8 x Uset 0 000 60 000 s 0 2 or 25 ms whichever is greater Operating mode No Filter NoPref Cyclic 1231c 1321c Acyclic 123a 132a 213a 231a 312a 321a Table 47 Automat...

Page 67: ...te time at 0 to 2 x Iset Min 15 ms Max 25 ms Reset time at 2 to 0 x Iset Min 15 ms Max 25 ms Critical impulse time 10 ms typically at 0 to 2 x Iset Operate time at 0 to 10 x Iset Min 5ms Max 15ms Rese...

Page 68: ...start non directional at 0 to 2 x Iset Min 15 ms Max 30 ms Reset time start non directional at 2 to 0 x Iset Min 15 ms Max 30 ms Operate time start non directional at 0 to 10 x Iset Min 5 ms Max 20 ms...

Page 69: ...d Table 173 16 curve types See Table 171 Table 172 and Table 173 Second harmonic blocking 5 100 of fundamental 2 0 of Ir Minimum polarizing voltage 1 100 of UBase 0 5 of Ur Minimum polarizing current...

Page 70: ...for directional release 1 100 of IBase For RCA 60 degrees 2 5 of Ir at I Ir 2 5 of I at I Ir Minimum polarizing voltage 1 100 of UBase 0 5 of Ur Minimum polarizing current 2 100 of IBase 1 0 of Ir Rea...

Page 71: ...5 of U at U Ur Operate time for non directional residual overcurrent at 0 to 2 x Iset Min 40 ms Max 65 ms Reset time for non directional residual overcurrent at 2 to 0 x Iset Min 40 ms Max 65 ms Opera...

Page 72: ...rrent 5 200 of lBase 1 0 of Ir at I Ir 1 0 of I at I Ir Reset ratio phase current 95 Operate residual current 2 200 of lBase 1 0 of Ir at I Ir 1 0 of I at I Ir Reset ratio residual current 95 Phase cu...

Page 73: ...Range or value Accuracy Power level for Step 1 and Step 2 0 0 500 0 of SBase 1 0 of Sr at S Sr 1 0 of S at S Sr where 1 732 r r r S U I Characteristic angle for Step 1 and Step 2 180 0 180 0 degrees...

Page 74: ...ent 1 0 of Ir Independent operate time delay 0 000 60 000 s 0 2 or 45 ms whichever is greater Independent reset time delay 0 010 60 000 s 0 2 or 30 ms whichever is greater Start time at current change...

Page 75: ...2 or 40ms whichever is greater Definite time delay step 2 at 1 2 to 0 x Uset 0 000 60 000 s 0 2 or 40ms whichever is greater Minimum operate time inverse characteristics 0 000 60 000 s 0 5 or 40ms whi...

Page 76: ...te time start at 0 to 1 2 x Uset Min 20 ms Max 35 ms Reset time start at 1 2 to 0 x Uset Min 5 ms Max 25 ms Critical impulse time 10 ms typically at 0 to 2 x Uset Impulse margin time 15 ms typically T...

Page 77: ...tion 0 000 60 000 s 0 2 or 35 ms whichever is greater Operate time delay when disconnecting all three phases 0 000 60 000 s 0 2 or 35 ms whichever is greater Time delay to block when all three phase v...

Page 78: ...UMin 50 150 of Ubase Exponent 0 0 5 0 tMax 0 010 60 000 s tMin 0 010 60 000 s 1 0 or 120 ms whichever is greater Exponent U UMin t tMax tMin tMin UNom UMin EQUATION1182 V1 EN Equation 3 U Umeasured T...

Page 79: ...requency 45 00 65 00 Hz 2 0 mHz Definite restore time delay 0 000 60 000 s 0 2 or 100 ms whichever is greater Definite time delay for frequency gradient trip 0 200 60 000 s 0 2 or 120 ms whichever is...

Page 80: ...er is greater Overcurrent non directional Start time at 0 to 2 x Iset Min 15 ms Max 30 ms Reset time at 2 to 0 x Iset Min 15 ms Max 30 ms Start time at 0 to 10 x Iset Min 5 ms Max 20 ms Reset time at...

Page 81: ...operation step 1 2 1 0 200 0 of UBase 1 0 of Ur at U Ur 1 0 of U at U Ur Directional function Settable NonDir forward and reverse Relay characteristic angle 180 to 180 degrees 2 0 degrees Relay operat...

Page 82: ...voltage 120 or 230 V 50 60 Hz Operate earth fault resistance value Approx 1 20 k Influence of harmonics in the DC field voltage Negligible influence of 50 V 150 Hz or 50 V 300 Hz Permitted leakage ca...

Page 83: ...Minimum operate time for inverse time characteristics 0 00 60 00 s 0 2 or 35 ms whichever is greater High voltage limit voltage dependent operation 30 0 100 0 of UBase 1 0 of Ur Start undervoltage 2 0...

Page 84: ...equence 1 100 of IBase 0 5 of Ir Operate voltage negative sequence 1 100 of UBase 0 5 of Ur Operate current negative sequence 1 100 of IBase 0 5 of Ir Operate voltage change level 1 100 of UBase 10 0...

Page 85: ...n 5 ms Max 15 ms Reset time block of main fuse failure at 0 to 1 x Ur Min 15 ms Max 30 ms Operate value alarm for pilot fuse failure 10 0 80 0 of UBase 0 5 of Ur Reset ratio 110 Operate time alarm for...

Page 86: ...mHz Breaker closing pulse duration 0 050 60 000 s 0 2 or 15 ms whichever is greater tMaxSynch which resets synchronizing function if no close has been made before set time 0 000 6000 00 s 0 2 or 35 ms...

Page 87: ...r Maximum operate pulse duration 0 000 60 000 s 0 2 or 15 ms whichever is greater Reclaim time 0 00 6000 00 s 0 2 or 15 ms whichever is greater Circuit breaker closing pulse length 0 000 60 000 s 0 2...

Page 88: ...on logic for distance protection ZC1PPSCH Function Range or value Accuracy Scheme type Intertrip Permissive UR Permissive OR Blocking Co ordination time for blocking communication scheme 0 000 60 000...

Page 89: ...residual overcurrent protection ECRWPSCH Function Range or value Accuracy Operate mode of WEI logic Off Echo Echo Trip Operate voltage 3U0 for WEI trip 5 70 of UBase 0 5 of Ur Operate time for current...

Page 90: ...tical impulse time undervoltage 10 ms typically at 1 2 to 0 8x Uset Impulse margin time undervoltage 15 ms typically Operate value overvoltage 1 200 of UBase 0 5 of Ur at U Ur 0 5 of U at U Ur Critica...

Page 91: ...0 to 1 2 x Uset 0 000 120 000 s 0 2 or 40 ms whichever is greater Table 88 Zero sequence overvoltage protection LCZSPTOV Function Range or value Accuracy Operate value zero sequence overvoltage 1 200...

Page 92: ...60 000 s 0 2 or 35 ms whichever is greater Transient overreach start function 5 at 100 ms Table 90 Zero sequence overcurrent protection LCZSPTOC Function Range or value Accuracy Operate value zero seq...

Page 93: ...to operate at 0 to 2 x Iset 0 000 60 000 s 0 2 or 30 ms whichever is greater Table 92 Three phase undercurrent LCP3PTUC Function Range or value Accuracy Operate value undercurrent 1 00 100 00 of IBase...

Page 94: ...C instances Function Quantity with cycle time 3 ms 8 ms 100 ms TMAGAPC 6 6 Table 96 Number of ALMCALH instances Function Quantity with cycle time 3 ms 8 ms 100 ms ALMCALH 5 Table 97 Number of WRNCALH...

Page 95: ...PULSETIMER 10 10 20 0 000 90000 000 s 0 5 10 ms Table 105 Number of RSMEMORY instances Logic block Quantity with cycle time 3 ms 8 ms 100 ms RSMEMORY 10 10 20 Table 106 Number of SRMEMORY instances Lo...

Page 96: ...s 8 ms 100 ms INVALIDQT 6 6 Table 113 Number of INVERTERQT instances Logic block Quantity with cycle time 3 ms 8 ms 100 ms INVERTERQT 20 100 Table 114 Number of ORQT instances Logic block Quantity wit...

Page 97: ...00 ms XORQT 10 30 Table 120 Number of instances in the extension logic package Logic block Quantity with cycle time 3 ms 8 ms 100 ms AND 40 40 100 GATE 49 INV 40 40 100 LLD 49 OR 40 40 100 PULSETIMER...

Page 98: ...chever is greater 8 0 999999 9 s 0 2 or 100 ms whichever is greater 100 0 999999 9 s 0 2 or 250 ms whichever is greater Table 126 Number of TEIGAPC instances Function Quantity with cycle time 3 ms 8 m...

Page 99: ...t power S 10 to 300 V 0 1 4 0 x Ir 0 5 of Sr at S 0 5 x Sr 0 5 of S at S 0 5 x Sr 100 to 220 V 0 5 2 0 x Ir 0 2 of S Power factor cos 10 to 300 V 0 1 4 0 x Ir 0 02 100 to 220 V 0 5 2 0 x Ir 0 01 Table...

Page 100: ...nction Range or value Accuracy Voltage positive sequence U1 10 to 300 V 0 5 of U at U 50 V 0 2 of U at U 50 V Voltage zero sequence 3U0 10 to 300 V 0 5 of U at U 50 V 0 2 of U at U 50 V Voltage negati...

Page 101: ...Hz Sampling rate 1 kHz at 50 Hz 1 2 kHz at 60 Hz Recording bandwidth 5 300 Hz Table 137 Insulation gas monitoring function SSIMG Function Range or value Accuracy Pressure alarm level 1 00 100 00 10 0...

Page 102: ...Alarm level for open and close travel time 0 200 ms 3 ms Alarm level for number of operations 0 9999 Independent time delay for spring charging time alarm 0 00 60 00 s 0 2 or 30 ms whichever is greate...

Page 103: ...mum number of analog inputs 30 Maximum number of disturbance reports 100 Table 145 Disturbance recorder Function Value Buffer capacity Maximum number of analog inputs 40 Maximum number of binary input...

Page 104: ...dule BIM Cycle time for report of counter value 1 3600 s Table 148 Energy metering ETPMMTR Function Range or value Accuracy Energy metering kWh Export Import kvarh Export Import Input from MMXU No ext...

Page 105: ...e Protocol LON Communication speed 1 25 Mbit s Table 152 SPA communication protocol Function Value Protocol SPA Communication speed 300 1200 2400 4800 9600 19200 or 38400 Bd Slave number 1 to 899 Tabl...

Page 106: ...ity Range or value Connector X 21 Micro D sub 15 pole male 1 27 mm 0 050 pitch Connector ground selection 2 pole screw terminal Standard CCITT X21 Communication speed 64 kbit s Insulation 1 kV Maximum...

Page 107: ...about 2 km 1 mile 22 dB typical distance 80 km 50 mile 26 dB typical distance 110 km 68 mile Optical connector Type ST Type FC PC Type FC PC Protocol C37 94 C37 94 implementation C37 94 implementation...

Page 108: ...t occasionally a temporary conductivity caused by condensation is to be expected Connection system Table 164 CT and VT circuit connectors Connector type Rated voltage and current Maximum conductor are...

Page 109: ...ble 168 GPS time synchronization module GTM Function Range or value Accuracy Receiver 1 s relative UTC Time to reliable time reference with antenna in new position or after power loss longer than 1 mo...

Page 110: ...low level high level 1 3 Vpp 3 x low level max 9 Vpp Supported formats IRIG B 00x IRIG B 12x Accuracy 10 s for IRIG B 00x and 100 s for IRIG B 12x Input impedance 100 k ohm Optical connector Optical c...

Page 111: ...or 40 ms whichever is greater ANSI Extremely Inverse A 28 2 B 0 1217 P 2 0 tr 29 1 ANSI Very inverse A 19 61 B 0 491 P 2 0 tr 21 6 ANSI Normal Inverse A 0 0086 B 0 0185 P 0 02 tr 0 46 ANSI Moderately...

Page 112: ...k I CR EQUATION1253 SMALL V1 EN I Imeasured Iset k 0 05 999 in steps of 0 01 A 0 005 200 000 in steps of 0 001 B 0 00 20 00 in steps of 0 01 C 0 1 10 0 in steps of 0 1 P 0 005 3 000 in steps of 0 001...

Page 113: ...1437 SMALL V2 EN k 0 05 1 10 in steps of 0 01 Type C curve 3 0 480 32 0 5 0 035 t k U U U EQUATION1438 SMALL V2 EN k 0 05 1 10 in steps of 0 01 Programmable curve P k A t D U U B C U EQUATION1439 SMAL...

Page 114: ...055 32 0 5 k t U U U EQUATION1432 SMALL V1 EN U Uset U Umeasured k 0 05 1 10 in steps of 0 01 Programmable curve P k A t D U U B C U EQUATION1433 SMALL V1 EN U Uset U Umeasured k 0 05 1 10 in steps o...

Page 115: ...TION1437 SMALL V2 EN k 0 05 1 10 in steps of 0 01 Type C curve 3 0 480 32 0 5 0 035 t k U U U EQUATION1438 SMALL V2 EN k 0 05 1 10 in steps of 0 01 Programmable curve P k A t D U U B C U EQUATION1439...

Page 116: ...erential protection RED670 2 1 X00 A 0 0 0 0 0 0 0 Impedance protection B 0 0 0 0 Current protection C 00 0 00 1 0 0 0 0 0 Voltage protection Frequency protection Multipurpose protection General calcu...

Page 117: ...ordered Line differential protection 6 CT sets 3 5 line ends L6CPDIF 1MRK005904 NB 11 0 1 Line differential protection 3 CT sets with inzone transformers 2 3 line ends LT3CPDIF 1MRK005904 PB 12 0 1 Li...

Page 118: ...tive 4 Distance protection quadrilateral with separate settings for PP and PE Directional impedance quadrilateral ZDRDIR 1MRK005907 BA 2 0 2 Distance protection zone quadrilateral characteristic separ...

Page 119: ...rent protection VRPVOC 1MRK005910 XA 21 0 3 Table 187 Voltage protection Position 1 2 3 4 5 6 7 8 D 0 1 Table 188 Voltage functions Function Function identification Ordering no Positi on Available qty...

Page 120: ...5 0 1 Note Only one Apparatus control can be ordered Apparatus control for single bay max 15 app 2CBs incl Interlocking APC15 1MRK005917 BY 6 0 1 Table 199 Scheme communication Position 1 2 3 4 5 6 7...

Page 121: ...unction identification Ordering no Position Available qty Selected qty Notes and rules Process Bus communication IEC 61850 9 2 1MRK005930 TA 1 0 if F00 is selected 6 if N00 is selected Note RED670 cus...

Page 122: ...seal F Selected Table 210 Connection type for Power supply module Selection Notes and Rules Compression terminals M Ringlug terminals N Auxiliary power supply Power supply module 24 60 VDC A Power su...

Page 123: ...A 100 220V 50 60Hz 4 Second TRM 5I 1A 4I 5A 3U 100 220V 50 60Hz 5 Second TRM 6I 6U 1A 100 220V 50 60Hz 6 Second TRM 6I 6U 5A 100 220V 50 60Hz 7 Second TRM 6I 1A 50 60Hz 8 Maximum qty 1 Second TRM 6I 5...

Page 124: ...F F F F F F F F F F F F F BIMp 16 inputs RL48 60 VDC 30 mA for pulse counting G G G G G G G G G G G G G G BIMp 16 inputs RL110 125 VDC 30 mA for pulse counting H H H H H H H H H H H H H H BIM 16 input...

Page 125: ...h 2 TRM No remote communication board included X X X X X X Optical short range LDCM A A A A A A Max 4 LDCM same or different type can be selected Always place LDCM modules on the same board to support...

Page 126: ...0 DAB1RGN1N1XXXXXXX AXFXXX AX Using the code of each position 1 13 specified as RED670 1 2 2 3 3 3 3 3 3 3 3 3 3 3 3 3 4 4 5 6 7 8 9 10 10 10 10 110 11 11 11 11 11 11 11 11 11 11 12 12 12 12 12 12 13...

Page 127: ...ional distance protection with phase selection B 28 Directional distance protection with phase selection series compensation B 29 Out of step protection B 22 Sensitive directional residual overcurrent...

Page 128: ...rack mounting kit for 1 1 x 19 case C Wall mounting kit D Note Wall mounting not recommended with communication modules with fibre connection SLM OEM LDCM Flush mounting kit E Flush mounting kit IP54...

Page 129: ...nals B Second TRM 9I 3U 1A 110 220V 3 Second TRM 9I 3U 5A 110 220V 4 Second TRM 5I 1A 4I 5A 3U 110 220V 5 Second TRM 6I 6U 1A 110 220V 6 Second TRM 6I 6U 5A 110 220V 7 Second TRM 6I 1A 110 220V 8 Seco...

Page 130: ...ng F F F F F F F F F F F F BIMp 16 inputs RL48 60 VDC 30 mA for pulse counting G G G G G G G G G G G G BIMp 16 inputs RL110 125 VDC 30 mA for pulse counting H H H H H H H H H H H H BIM 16 inputs RL220...

Page 131: ...Always place LDCM modules on the same board to support redundant communication in P30 2 and P30 3 P31 2 and P31 3 or P32 2 and P32 3 Optical medium range LDCM 1310 nm B B B B B B Optical long range L...

Page 132: ...umber RK926 315 AK Single breaker Single or Three Phase trip with external neutral on current circuits ordering number RK926 315 AC Multi breaker Single or Three Phase trip with internal neutral on cu...

Page 133: ...antity 1MRK 000 611 A Note To connect the key switch leads with 10 A Combiflex socket on one end must be used Mounting kit Ordering number Side by side mounting kit Quantity 1MRK 002 420 Z Configurati...

Page 134: ...IEC 61850 Edition 2 IEC Quantity 1MRK 511 350 UEN Communication protocol manual IEC 60870 5 103 IEC Quantity 1MRK 511 351 UEN Communication protocol manual LON IEC Quantity 1MRK 511 352 UEN Communica...

Page 135: ...ment numbers Operation manual IEC 1MRK 500 123 UEN ANSI 1MRK 500 123 UUS Engineering manual IEC 1MRK 511 355 UEN ANSI 1MRK 511 355 UUS Installation manual IEC 1MRK 514 024 UEN ANSI 1MRK 514 024 UUS Co...

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Page 137: ...act us ABB AB Substation Automation Products SE 721 59 V ster s Sweden Phone 46 0 21 32 50 00 Fax 46 0 21 14 69 18 www abb com substationautomation 1MRK 505 346 BEN Copyright 2015 ABB All rights reser...

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