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ABB REM615 B Motor Protection Relay Manuals
Manuals and User Guides for ABB REM615 B Motor Protection Relay. We have
1
ABB REM615 B Motor Protection Relay manual available for free PDF download: Technical Manual
ABB REM615 B Technical Manual (896 pages)
615 series
Brand:
ABB
| Category:
Relays
| Size: 31.1 MB
Table of Contents
Table of Contents
7
Table of Contents
22
Section 1 Introduction
31
This Manual
31
Intended Audience
31
Product Documentation
32
Document Revision History
32
Product Documentation Set
32
Related Documentation
33
Symbols and Conventions
33
Document Conventions
33
Symbols
33
Functions, Codes and Symbols
34
Section 2 615 Series Overview
39
Overview
39
Product Series Version History
39
PCM600 and IED Connectivity Package Version
41
Local HMI
41
Display
42
Keypad
43
Leds
43
Web HMI
44
Authorization
45
Audit Trail
46
Communication
48
Section 3 Basic Functions
51
General Parameters
51
Self-Supervision
65
Internal Faults
65
Warnings
67
LED Indication Control
69
Programmable Leds
69
Function Block
69
Functionality
69
Signals
72
Settings
73
Monitored Data
75
Time Synchronization
76
Parameter Setting Groups
77
Function Block
77
Functionality
77
Fault Records
79
Non-Volatile Memory
83
Binary Input
84
Binary Input Filter Time
84
Binary Input Inversion
85
Oscillation Suppression
85
Binary Outputs
85
Dual Single-Pole Power Outputs PO1 and PO2
86
Power Output Contacts
86
Double-Pole Power Outputs PO3 and PO4 with Trip Circuit Supervision
87
Dual Single-Pole High-Speed Power Outputs HSO1, HSO2 and HSO3
88
Internal Fault Signal Output IRF
89
Signal Output Contacts
89
Signal Outputs SO1 and SO2 in Power Supply Module
90
Signal Outputs SO1, SO2, SO3 and SO4 in BIO0005
90
Signal Outputs SO1, SO2 and SO3 in BIO0006
91
Rtd/Ma Inputs
92
Functionality
92
Operation Principle
92
Selection of Input Signal Type
92
Input Linear Scaling
93
Selection of Output Value Format
93
Measurement Chain Supervision
94
Selfsupervision
94
Calibration
95
Limit Value Supervision
95
Deadband Supervision
96
RTD Temperature Vs. Resistance
97
Rtd/Ma Input Connection
98
Settings
100
Signals
100
GOOSE Function Blocks
103
Function Block
103
GOOSERCV_BIN Function Block
103
Function Block
104
Functionality
104
GOOSERCV_DP Function Block
104
Signals
104
Function Block
105
Functionality
105
GOOSERCV_INT8 Function Block
105
GOOSERCV_MV Function Block
105
Signals
105
Function Block
106
Functionality
106
GOOSERCV_INTL Function Block
106
Signals
106
Function Block
107
Functionality
107
GOOSERCV_CMV Function Block
107
Signals
107
Function Block
108
Functionality
108
GOOSERCV_ENUM Function Block
108
GOOSERCV_INT32 Function Block
108
Signals
108
Signals
109
Type Conversion Function Blocks
109
Function Block
109
Functionality
109
QTY_GOOD Function Block
109
Fucntion Block
110
Functionality
110
QTY_BAD Function Block
110
Signals
110
Function Block
111
Functionality
111
QTY_GOOSE_COMM Function Block
111
Signals
111
T_HEALTH Function Block
111
Function Block
112
Functionality
112
Signals
112
T_F32_INT8 Function Block
112
Functionality
113
Settings
113
Signals
113
T_DIR Function Block
113
Configurable Logic Blocks
114
OR Function Block
114
Standard Configurable Logic Blocks
114
AND Function Block
115
XOR Function Block
116
NOT Function Block
117
MAX3 Function Block
118
MIN3 Function Block
118
R_TRIG Function Block
119
F_TRIG Function Block
120
T_POS_XX Function Blocks
121
SWITCHR Function Block
122
SR Function Block
123
Minimum Pulse Timer
124
Minimum Pulse Timer TPGAPC
124
Minimum Pulse Timer TPSGAPC
125
Minimum Pulse Timer TPMGAPC
126
Function Block
127
Functionality
127
Pulse Timer Function Block PTGAPC
127
Signals
127
Settings
128
Technical Data
128
Function Block
129
Functionality
129
Signals
129
Time-Delay-Off Function Block TOFGAPC
129
Settings
130
Technical Data
130
Function Block
131
Functionality
131
Signals
131
Time-Delay-On Function Block TONGAPC
131
Settings
132
Technical Data
132
Function Block
133
Functionality
133
Set-Reset Function Block SRGAPC
133
Signals
134
Function Block
135
Functionality
135
Move Function Block MVGAPC
135
Settings
135
Function Block
136
Functionality
136
Local/Remote Control Function Block CONTROL
136
Signals
136
Signals
137
Settings
138
Monitored Data
139
Function Block
140
Functionality
140
Generic Control Points Function Block SPCGGIO
140
Signals
141
Settings
142
Factory Settings Restoration
144
Section 4 Protection Functions
145
Three-Phase Current Protection
145
Function Block
145
Functionality
145
Identification
145
Three-Phase Non-Directional Overcurrent Protection Phxptoc
145
Operation Principle
146
Measurement Modes
148
Timer Characteristics
149
Application
150
Signals
157
Settings
158
Monitored Data
161
Technical Data
162
Technical Revision History
162
Function Block
163
Functionality
163
Identification
163
Three-Phase Non-Directional Overcurrent Protection Ph3Xptoc
163
Operation Principle
164
Timer Characteristics
169
Application
170
Signals
177
Settings
178
Monitored Data
181
Technical Data
182
Three-Phase Directional Overcurrent Protection Dphxpdoc
182
Identification
182
Function Block
183
Functionality
183
Operation Principle
183
Measurement Modes
188
Directional Overcurrent Characteristics
189
Application
197
Signals
199
Settings
201
Monitored Data
204
Technical Data
205
Technical Revision History
206
Three-Phase Directional Overcurrent Protection Dph3Xpdoc
206
Identification
206
Function Block
207
Functionality
207
Operation Principle
207
Timer Characteristics
214
Directional Overcurrent Characteristics
215
Application
223
Signals
225
Settings
226
Monitored Data
229
Technical Data
231
Three-Phase Thermal Protection for Feeders, Cables and Distribution Transformers T1PTTR
231
Identification
231
Function Block
232
Functionality
232
Operation Principle
232
Application
235
Settings
236
Signals
236
Monitored Data
237
Technical Data
237
Technical Revision History
238
Three-Phase Thermal Overload Protection for Power Transformers, Two Time Constants T2PTTR
238
Identification
238
Function Block
238
Functionality
238
Operation Principle
239
Application
242
Signals
244
Settings
245
Monitored Data
245
Technical Data
246
Identification
246
Function Block
246
Functionality
246
Operation Principle
247
Application
248
Signals
248
Settings
249
Monitored Data
249
Technical Data
249
Identification
250
Function Block
250
Operation Principle
250
Application
251
Signals
252
Settings
252
Monitored Data
252
Technical Data
253
Identification
253
Function Block
253
Operation Principle
254
Application
262
Signals
266
Settings
267
Monitored Data
268
Technical Data
268
Identification
269
Function Block
269
Functionality
269
Operation Principle
270
Measurement Modes
271
Timer Characteristics
272
Application
273
Signals
274
Settings
275
Monitored Data
277
Technical Data
278
Identification
279
Functionality
280
Measurement Modes
291
Timer Characteristics
292
Application
301
Signals
303
Settings
304
Monitored Data
307
Technical Data
308
Technical Revision History
309
Operation Principle
311
Application
313
Signals
315
Monitored Data
316
Technical Revision History
317
Operation Principle
318
Neutral Admittance Characteristics
330
Application
336
Signals
340
Settings
341
Monitored Data
342
Function Block
343
Application
347
Signals
348
Settings
349
Monitored Data
350
Operation Principle
352
Application
379
Signals
385
Settings
386
Monitored Data
388
Technical Data
389
Function Block
390
Application
403
Signals
423
Settings
424
Monitored Data
426
Technical Data
428
Function Block
429
Application
433
Signals
436
Monitored Data
437
Function Block
438
Application
439
The Measuring Configuration
442
Recommendations for Current Transformers
443
Setting Examples
447
Signals
450
Settings
451
Unbalance Protection
452
Operation Principle
453
Application
455
Settings
456
Monitored Data
457
Phase Discontinuity Protection PDNSPTOC
458
Application
460
Signals
461
Monitored Data
462
Function Block
463
Application
464
Monitored Data
465
Function Block
466
Timer Characteristics
467
Application
469
Signals
470
Monitored Data
471
Voltage Protection
472
Timer Characteristics
476
Signals
477
Settings
478
Monitored Data
479
Three-Phase Undervoltage Protection PHPTUV
480
Timer Characteristics
484
Signals
485
Monitored Data
486
Technical Data
487
Functionality
488
Application
489
Settings
490
Technical Revision History
491
Operation Principle
492
Application
493
Settings
494
Technical Revision History
495
Operation Principle
496
Application
497
Signals
498
Monitored Data
499
Frequency Protection
500
Application
506
Signals
507
Monitored Data
508
Function Block
509
Application
514
Signals
518
Monitored Data
519
Arc Protection ARCSARC
520
Application
522
Signals
525
Settings
526
Motor Startup Supervision STTPMSU
527
Operation Principle
528
Application
533
Signals
536
Settings
537
Technical Data
538
Function Block
539
Application
541
Monitored Data
542
Three-Phase Inrush Detector INRPHAR
543
Application
545
Signals
546
Monitored Data
547
Functionality
548
Application
554
Signals
556
Monitored Data
557
Function Block
558
Application
559
Signals
560
Settings
561
Function Block
562
Application
563
Signals
565
Technical Data
566
Function Block
567
Application
568
Settings
569
Function Block
570
Application
571
Settings
572
Functionality
573
Application
574
Settings
575
Trip Circuit Supervision TCSSCBR
577
Application
578
Signals
585
Monitored Data
586
Operation Principle
587
Application
589
Signals
593
Settings
594
Function Block
595
Operation Principle
596
Application
597
Signals
598
Technical Revision History
599
Operation Principle
600
Application
603
Signals
604
Monitored Data
605
Function Block
606
Application
607
Signals
608
Technical Data
609
Application
611
Circuit Breaker Condition Monitoring SSCBR
613
Operation Principle
614
Circuit Breaker Status
615
Breaker Contact Travel Time
616
Operation Counter
617
Remaining Life of Circuit Breaker
619
Circuit Breaker Spring-Charged Indication
621
Application
622
Signals
625
Settings
626
Monitored Data
628
Technical Revision History
629
Basic Measurements
631
Measurement Functionality
632
Measurement Function Applications
639
Function Block
640
Monitored Data
641
Technical Revision History
642
Settings
643
Residual Current Measurement RESCMMXU
644
Monitored Data
645
Function Block
646
Technical Data
647
Settings
648
Signals
649
Monitored Data
650
Function Block
651
Monitored Data
652
Three-Phase Power and Energy Measurement PEMMXU MPEMMXU
653
Settings
654
Technical Data
655
Recorded Analog Inputs
656
Length of Recordings
657
Sampling Frequencies
658
Deletion of Recordings
659
Pre-Trigger and Post-Trigger Data
660
Exclusion Mode
661
Application
662
Settings
663
Monitored Data
666
Function Block
667
Application
670
Signals
671
Circuit Breaker Control CBXCBR, Disconnector Control DCXSWI and Earthing Switch Control ESXSWI
673
Functionality
674
Application
677
Signals
678
Settings
680
Monitored Data
681
Technical Revision History
682
Functionality
683
Settings
684
Synchronism and Energizing Check SECRSYN
685
Operation Principle
686
Application
693
Signals
695
Settings
696
Monitored Data
697
Autoreclosing DARREC
698
Protection Signal Definition
699
Master and Slave Scheme
700
Operation Principle
701
Shot Initiation
705
Shot Pointer Controller
708
Reclose Controller
709
Sequence Controller
711
Protection Coordination Controller
712
Circuit Breaker Controller
713
Counters
714
Application
715
Shot Initiation
716
Sequence
720
Configuration Examples
721
Delayed Initiation Lines
724
Shot Initiation from Protection Start Signal
726
Signals
727
Settings
728
Monitored Data
730
Technical Data
731
Technical Revision History
732
Operation Principle
733
Voltage and Current Measurements
734
Tap Changer Position Inputs
735
Operation Mode Selection
736
Manual Voltage Regulation
737
Automatic Voltage Regulation of Single Transformer
738
Automatic Voltage Regulation of Parallel Transformers
742
Master/Follower Principle M/F
743
Negative Reactance Principle NRP
745
Minimizing Circulating Current Principle MCC
747
Timer Characteristics
749
Pulse Control
751
Blocking Scheme
752
Alarm Indication
756
Application
757
Signals
764
Settings
765
Monitored Data
766
Technical Data
768
Technical Revision History
769
Current Total Demand Distortion Monitoring CMHAI
771
Application
772
Signals
773
Settings
774
Voltage Total Harmonic Distortion Monitoring VMHAI
775
Application
776
Settings
777
Voltage Variation PHQVVR
778
Operation Principle
779
Variation Detection
780
Variation Validation
781
Duration Measurement
784
Three/Single-Phase Selection Variation Examples
785
Recorded Data
787
Application
789
Signals
791
Settings
792
Monitored Data
793
Definite Time Characteristics
797
Current Based Inverse Definite Minimum Time Characteristics
800
Standard Inverse-Time Characteristics
804
User-Programmable Inverse-Time Characteristics
819
Reset in Inverse-Time Modes
823
Inverse-Timer Freezing
832
Voltage Based Inverse Definite Minimum Time Characteristics
833
Standard Inverse-Time Characteristics for Overvoltage Protection
835
User Programmable Inverse-Time Characteristics for Overvoltage Protection
839
IDMT Curve Saturation of Overvoltage Protection
840
Standard Inverse-Time Characteristics for Undervoltage Protection
841
User-Programmable Inverse-Time Characteristics for Undervoltage Protection
843
IDMT Curve Saturation of Undervoltage Protection
844
Measurement Modes
845
Calculated Measurements
847
Section 12 Requirements for Measurement Transformers
849
Non-Directional Overcurrent Protection
850
Example for Non-Directional Overcurrent Protection
851
Section 13 IED Physical Connections
853
Communication Connections
854
Ethernet Rear Connections
855
Line Differential Protection Communication Connection
856
Rear Communication Modules
857
COM0001-COM0014 Jumper Locations and Connections
861
COM0023 Jumper Locations and Connections
864
COM0008 and COM0010 Jumper Locations and Connections
869
COM0032-COM0034 Jumper Locations and Connections
872
Recommended Third-Party Industrial Ethernet Switches
875
Section 14 Technical Data
877
Section 15 IED and Functionality Tests
883
Section 16 Applicable Standards and Regulations
887
Section 17 Glossary
889
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