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7SR242 Duobias
User Manuals: Siemens 7SR242 Duobias Protection
Manuals and User Guides for Siemens 7SR242 Duobias Protection. We have
3
Siemens 7SR242 Duobias Protection manuals available for free PDF download: Technical Manual, Commissioning And Maintenance Manual, Manual
Siemens 7SR242 Duobias Technical Manual (382 pages)
Transformer Protection Relay
Brand:
Siemens
| Category:
Protection Device
| Size: 7.22 MB
Table of Contents
Table of Contents
9
Description of Operation
7
Chapter 1 ) 7SR242 Duobias Description of Operation
13
Current Transformer Circuits
13
External Resistors
13
Fibre Optic Communication
13
Front Cover
13
Section 1: Introduction
13
Table 1-1: 7SR242 Ordering Options
14
Figure 1-1 Function Diagram: 7Sr242N-2Aann-0AA0 Relay
16
Figure 1-2 Function Diagram: 7Sr242N-2Aann-0BA0 Relay
17
Figure 1-3 Function Diagram: 7Sr242N-2Aann-0CA0 Relay
18
Figure 1-4 Connection Diagram: 7SR242 Relay
19
Section 2: Hardware Description
21
General
21
Case
21
Table 2-1 Summary of 7SR24 Relay Configurations
21
Installation
21
Front Cover
22
Power Supply Unit (PSU)
22
Operator Interface/ Fascia
22
Figure 2-1 7SR24 with 3 + 16 Leds in E8 Case
22
Current Inputs
25
Voltage Input
25
Binary Inputs
25
Figure 2-2 Binary Input Logic
25
Binary Outputs (Output Relays)
26
Virtual Input/Outputs
27
Figure 2-3 Binary Output Logic
27
Self Monitoring
28
Protection Healthy/Defective
28
Figure 2.11-1 Start-Up Counter Meter
28
Section 3: Protection Functions
29
Current Protection: Differential Protection
29
Ict
29
Applications Guide
29
Overall Biased Differential (87BD)
30
Figure 3-1 Biased Differential Characteristic
30
Figure 3-2 Functional Diagram for Biased Current Differential Protection
31
87Hs
32
Figure 3-3 Differential Highset Characteristic
32
Figure 3-4 Logic Diagram: High Set Current Differential Protection
33
Current Protection: Phase Overcurrent (51, 50)
34
Instantaneous Overcurrent Protection (50)
34
Figure 3-5 Logic Diagram: Instantaneous Over-Current Element
34
Time Delayed Overcurrent Protection (51)
35
Figure 3-6 Logic Diagram: Time Delayed Overcurrent Element
35
Performance Specification
35
Current Protection: Derived Earth Fault (50N, 51N)
36
Instantaneous Derived Earth Fault Protection (50N)
36
Figure 3-7 Logic Diagram: Instantaneous Derived Earth Fault Element
36
Time Delayed Derived Earth Fault Protection (51N)
37
Figure 3-8 Logic Diagram: Derived Time Delayed Earth Fault Protection
37
Current Protection: Measured Earth Fault (50G, 51G)
38
Instantaneous Measured Earth Fault Protection (50G)
38
Figure 3-9 Logic Diagram: Measured Instantaneous Earth-Fault Element
38
Time Delayed Measured Earth Fault Protection (51G)
39
Figure 3-10 Logic Diagram: Time Delayed Measured Earth Fault Element (51G)
39
Current Protection: High Impedance Restricted Earth Fault (64H)
40
Figure 3-11 Logic Diagram: High Impedance REF (64H)
40
Open Circuit (46BC)
41
Figure 3-12 Logic Diagram: Open Circuit Function (46BC)
41
Current Protection: Negative Phase Sequence Overcurrent (46NPS)
42
Figure 3-13 Logic Diagram: Negative Phase Sequence Overcurrent (46NPS)
42
Current Protection: Under-Current (37, 37G)
43
Figure 3-14 Logic Diagram: Undercurrent Detector (37, 37G)
43
Current Protection: Thermal Overload (49)
44
Figure 3-15 Logic Diagram: Thermal Overload Protection (49)
45
Voltage Protection: over Fluxing (24)
46
Figure 3-16 Inverse Over-Fluxing Characteristic (24IT)
46
Figure 3-17 Logic Diagram: Overfluxing Elements (24)
47
Voltage Protection: Under/Over Voltage (27/59)
48
Figure 3-18 Logic Diagram: Under/Over Voltage Elements (27/59)
48
Voltage Protection: Neutral Overvoltage (59N)
49
Figure 3-19 Logic Diagram: Neutral Overvoltage Element
49
Voltage Protection: Under/Over Frequency (81)
50
Figure 3-20 Logic Diagram: Under/Over Frequency Detector (81)
50
Section 4: Control & Logic Functions
51
Quick Logic
51
Figure 4-1 Sequence Diagram Showing PU/DO Timers in Quick Logic (Counter Reset Mode Off)
52
Section 5: Supervision Functions
53
Circuit Breaker Failure (50BF)
53
Figure 5-1 Logic Diagram: Circuit Breaker Fail Protection (50BF)
54
Trip/Close Circuit Supervision (74TCS/74CCS)
55
Figure 5-2 Logic Diagram: Trip Circuit Supervision Feature (74TCS)
55
Figure 5-3 Logic Diagram: Close Circuit Supervision Feature (74CCS)
55
Inrush Detector (81HBL2)
56
Figure 5-4 Logic Diagram: Inrush Detector Feature (81HBL2)
56
Over Fluxing Detector (81HBL5)
57
Demand
57
Figure 5-5 Logic Diagram: Overfluxing Detector Feature (81HBL5)
57
Section 6: Other Features
59
Data Communications
59
IEC 61850 Communications
59
Maintenance
60
Output Matrix Test
60
CB Counters
60
CB Wear
60
Data Storage
61
General
61
Event Records
61
Waveform Records
61
Fault Data Records
62
Demand/Data Log
62
Metering
62
Operating Mode
63
Control Mode
63
Table 6-1 Operating Mode
63
Real Time Clock
64
Time Synchronisation - Data Comms
64
Time Synchronisation - Binary Input
64
Time Synchronisation - IRIG-B (Optional)
64
Settings Groups
64
Password Feature
65
Section 1: Introduction/Section 2: Setting the Relay Using Reydisp
69
Section 1: Introduction
71
Relay Menus and Display
71
Operation Guide
72
Chapter 2 ) 7SR242 Duobias Settings, Configuration & Instruments Guide
72
User Interface Operation
72
Instruments Mode
74
Settings Display
74
Fault Data Mode
82
Section 2: Setting the Relay Using Reydisp
83
Physical Connection
83
Front USB Connection
83
Rear RS485 Connection
84
Optional Rear Fibre Optic Connection
84
Optional Rear RS485 + IRIG-B Connection
85
Optional Rear RS232 + IRIG-B Connection
85
Optional Rear EN100 Ethernet Module (COM3)
86
Configuring Relay Data Communication
87
Connecting to the Relay Via Reydisp
88
Section 1: Common Functions/Section 2: Protection Functions
91
CE Conformity
95
Chapter 3 ) 7SR242 Duobias Performance Specification
95
Dimensions and Weights
95
Reference
95
Section 1: Common Functions
95
General
95
Energising Quantities
96
Auxiliary Power Supply
96
AC Current
97
AC Voltage
98
Binary (Digital) Outputs
99
Binary (Digital) Inputs
99
Functional Performance
101
Instrumentation
101
Data Communication
101
Real Time Clock
102
Environmental Performance
103
General
103
Emissions
104
Immunity
104
Mechanical
106
Section 2: Protection Functions
107
Over Fluxing
107
Reference (24DT)
107
Operate and Reset Level (24DT)
107
Operate and Reset Time (24DT)
107
Reference (24IT)
107
Operate and Reset Level (24IT)
107
Operate and Reset Time (24IT)
108
27/59 Under/Over Voltage
109
Reference
109
Operate and Reset Level
109
Operate and Reset Time
109
37,37G Undercurrent
110
Reference
110
Operate and Reset Level
110
Operate and Reset Time
110
46BC Open Circuit
111
Reference
111
Operate and Reset Level
111
Operate and Reset Time
111
46NPS Negative Phase Sequence Overcurrent
112
Reference (46DT)
112
Operate and Reset Level (46DT)
112
Operate and Reset Time (46DT)
112
Reference (46IT)
112
Operate and Reset Level (46IT)
112
Operate and Reset Time (46IT)
113
Thermal Overload
114
Reference
114
Operate and Reset Level
114
Operate and Reset Time
114
Instantaneous Overcurrent
116
Reference
116
Operate and Reset Level
116
Operate and Reset Time
116
Instantaneous Derived Earth Fault
117
Reference
117
Operate and Reset Level
117
Operate and Reset Time
117
Instantaneous Measured Earth Fault
118
Reference
118
Operate and Reset Level
118
Operate and Reset Time
118
Time Delayed Overcurrent
119
Reference
119
Operate and Reset Level
119
Operate and Reset Time
120
Time Delayed Derived Earth Fault
121
Reference
121
Operate and Reset Level
121
Operate and Reset Time
122
Time Delayed Measured Earth Fault
123
Reference
123
Operate and Reset Level
123
Operate and Reset Time
124
Neutral Voltage Displacement
128
Reference (59NDT)
128
Operate and Reset Level (59NDT)
128
Operate and Reset Time (59NDT)
128
Reference (59NIT)
128
Operate and Reset Level (59NIT)
128
Operate and Reset Time (59NIT)
129
Restricted Earth Fault Protection
130
Reference
130
Operate and Reset Level
130
Operate and Reset Time
130
Harmonic Rejection
130
81Under/Over Frequency
131
Reference
131
Operate and Reset Level
131
Operate and Reset Time
131
Biased Differential
132
Reference
132
Operate and Reset Level
133
Operate Time
133
87HS High-Set Differential
134
Reference
134
Operate and Reset Level
134
Operate and Reset Time
134
Section 3: Supervision Functions
135
50BF Circuit Breaker Fail
135
Reference
135
Operate and Reset Level
135
Operate and Reset Time
135
74TCS/CCS Trip/Close Circuit Supervision
136
Reference
136
Operate and Reset Time
136
81HBL2 Inrush Detector
137
Reference
137
Operate and Reset Level
137
Operate and Reset Time
137
81HBL5 Overfluxing Detector
138
Reference
138
Operate and Reset Level
138
Operate and Reset Time
138
Table of Contents
141
Introduction
145
Physical Connection
145
Chapter 4 - 7SR242 Duobias · Data Communications Definitions
146
RS485 Interface (COM1)
146
USB Interface (COM2)
146
Serial Fibre Optic Interface (COM3 & COM4)
148
Optional Rear RS485 (COM3)
151
Optional Rear RS232 (COM3)
152
Optional Rear EN100 Ethernet Module (COM3)
154
IEC 60870-5-103 Definitions
157
Introduction
157
Cause of Transmission
158
Application Service Data Unit (ASDU) Type
159
Point List
160
Event Function (FUN) & Information (INF) Numbers
160
Measurands
168
Disturbance Recorder Actual Channel (ACC) Numbers
169
MODBUS Definitions
171
Introduction
171
MODBUS Register Data Types
172
Fp_32Bits_3Dp
173
Uint32
173
Uint16
173
Event
174
Eventcount
175
Str32 & Str64
175
Bitstring
175
Point List
177
Coils (Read Write Binary Values)
177
Inputs (Read Only Binary Values)
178
Input Registers (Read Only Registers)
185
Holding Registers (Read Write Registers)
187
DNP3 Definitions
191
Device Profile
191
Implementation Table
194
Point List
200
Binary Input Points
200
Counters
213
Analog Inputs
215
Additional Settings
217
Not Applicable
219
IEC61850 Protocol Support
221
Introduction
221
Serial Modems
223
Introduction
223
Connecting a Modem to the Relay(S)
223
Setting the Remote Modem
223
Connecting to the Remote Modem
223
Configuration
225
Glossary
227
Table of Contents
233
Ancillary Equipment
235
Chapter 5 ) 7SR242 Duobias Installation Guide
235
Earthing
235
Packaging
235
Recommended Mounting Position
235
Unpacking, Storage and Handling
235
Wiring
235
Disposal
236
Section 2: Equipment Operating Conditions
237
Current Transformer Circuits
237
External Resistors
237
Fibre Optic Communication
237
Front Cover
237
Disposal
237
Section 3: Dimensions and Panel Fixings
238
Relay Dimensions
238
Fixings
241
Crimps
241
Panel Fixings
241
Section 4: Rear Terminal Drawings
242
E8 Case
242
E10 Case
244
Section 5: Connection/Wiring/Diagrams
247
Wiring Diagram: 7SR242 Relay
247
Section 6: Data Comms Connections
249
RS485 Connection
249
IRIG-B Connections
249
Optional Fibre Optic Connections
250
Optional Additional RS485 Connections
251
Optional RS232 Connections
251
Additional (Optional) Ethernet Connection for IEC 61850
252
Section 7: Connection Diagrams
253
Typical AC Connections: 7SR242
253
Section 2: Protection Functions/Definite Time Overcurrent (50)
257
Before Testing
261
Safety
261
Sequence of Tests
261
Test Equipment
262
Precautions
262
Applying Settings
263
Chapter 6 ) 7SR242 Duobias Commissioning & Maintenance Guide
261
Overview
261
Tests
264
Inspection
264
Secondary Injection Tests
264
Primary Injection Tests
264
Putting into Service
264
AC Energising Quantities
265
Binary Inputs
266
Binary Outputs
267
Relay Case Shorting Contacts
267
Section 2: Protection Functions
269
Biased Differential (87BD, 87HS)
271
Secondary Injection Testing
271
Primary Injection Testing
274
Phase Overcurrent (50, 51)
275
Definite Time Overcurrent (50)
276
Inverse Time Overcurrent (51)
276
Derived Earth Fault (50N,51N)
278
Inverse Time Overcurrent (51N)
279
ANSI Reset
280
Measured Earth Fault (50G, 51G)
281
Inverse Time Overcurrent (51G)
282
ANSI Reset
283
Restricted Earth Fault (64H)
284
Open Circuit (46BC)
286
Negative Phase Sequence Overcurrent (46NPS)
288
Definite Time NPS Overcurrent (46DT)
289
Inverse Time NPS Overcurrent (46IT)
289
Undercurrent (37, 37G)
291
37-N Elements
291
Elements
292
Thermal Overload (49)
293
Under/Over Voltage (27/59)
295
Undervoltage Guard (27/59UVG)
297
Neutral over Voltage (59N)
298
Definite Time (59NDT)
299
Inverse Time (59NIT)
299
Under/Over Frequency (81)
300
Overfluxing (24)
302
Definite Time (24DT)
302
Section 3: Supervision Functions
305
CB Fail (50BF)
305
Trip/Close Circuit Supervision (74TCS, 74CCS)
307
Magnetising Inrush Detector (81HBL2)
308
Overfluxing Detector (81HBL5)
310
Section 4: Control & Logic Functions
311
Quick Logic
311
Section 5: Testing and Maintenance
313
Periodic Tests
313
Maintenance
313
Troubleshooting
314
Section 6: Relay Software Upgrade Instructions
315
General
315
Replacing Firmware on a Product Installed on Site
315
Identify Which Software Is Currently Loaded
315
Overall Software Information
315
Product Configuration Information
315
Things to Do before Loading New Firmware/Software
316
Loading Firmware Using Front USB Port
316
Solving Software Upload Problems
316
Table of Contents
319
Section 1: Introduction
323
Section 2: Protection Functions
325
Overall Differential Protection (87)
325
ICT Settings for Current Magnitude Balance
326
ICT Settings for Vector Group Correction
326
Interposing CT Selection Guide
327
Biased Differential (87BD) Settings
328
Differential Highset (87HS) Settings
330
Example 1 - New Installation (90MVA Yd11 Transformer)
331
Summary of Required Settings
333
Example 2 - Relay Replacement (Dyn1 Transformer) Using Existing Cts
338
Summary of Protection Settings
340
Instantaneous OC/EF (50/50G/50N)
341
Time Delayed OC/EF (51/51G/51N)
341
Selection of Over-Current Characteristics
341
Reset Delay
343
High Impedance Restricted Earth Fault (64H)
344
Establishing the Required Stabilising Resistor Value
346
Limiting Circuit Over-Voltages (Metrosils)
346
Open Circuit (46BC)
348
Negative Phase Sequence Overcurrent (46NPS)
348
Undercurrent (37)
348
Thermal Overload (49)
349
Settings Guidelines
349
Under/Over Voltage (27/59)
351
Neutral Overvoltage (59N)
352
Application with Capacitor Cone Units
352
Over Fluxing Protection (24)
354
Section 3: CT Requirements
355
CT Requirement for Differential Protection
355
CT Requirements for High Impedance Restricted Earth Fault (64H)
356
User Defined Logic
357
Auto-Changeover Scheme Example
357
Section 5: Supervision Functions
359
Inrush Detector (81HBL2)
359
Overfluxing Detector (81HBL5)
360
Circuit Breaker Fail (50BF)
361
Example of Required Settings (E.g. HV CB)
362
Trip Circuit Supervision (74TCS)
363
Trip Circuit Supervision Connections
363
Close Circuit Supervision Connections
365
Section 6: Application Considerations and Examples
367
The Effects of an in Zone Earthing Transformer
367
Protection of Star/Star Transformer with Tertiary Winding
369
Transformer with Primary Connections Crossed on both Windings
370
Transformer with Primary Connections Crossed on One Winding
372
Protection of Auto Transformers
373
Reactor, Motor and Connections Protection
374
Section 7: Common Functions
375
Multiple Settings Groups
375
Binary Inputs
376
Binary Outputs
379
Leds
379
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Siemens 7SR242 Duobias Manual (52 pages)
Brand:
Siemens
| Category:
Relays
| Size: 1.43 MB
Table of Contents
Table of Contents
2
Section 1: Introduction
6
Current Transformer Circuits
6
External Resistors
6
Fibre Optic Communication
6
Front Cover
6
Table 1-1: 7SR242 Ordering Options
7
Figure 1-1 Functional Diagram: 7Sr242N-2Aann-0AA0 Relay
9
Figure 1-2 Functional Diagram: 7Sr242N-2Aann-0BA0 Relay
10
Figure 1-3 Functional Diagram: 7Sr242N-2Aann-0CA0 Relay
11
Figure 1-4 Connection Diagram: 7SR242 Relay
12
Section 2: Hardware Description
13
General
13
Case
13
Front Cover
13
Table 2-1 Summary of 7SR24 Relay Configurations
13
Power Supply Unit (PSU)
14
Operator Interface/ Fascia
14
Figure 2-1 7SR24 with 3 + 16 Leds in E8 Case
14
Current Inputs
16
Voltage Input
16
Binary Inputs
17
Figure 2-2 Binary Input Logic
17
Binary Outputs (Output Relays)
18
Virtual Input/Outputs
19
Self Monitoring
19
Protection Healthy/Defective
19
Figure 2-3 Binary Output Logic
19
Section 3: Protection Functions
20
Current Protection: Differential Protection
20
Ict
20
Overall Biased Differential (87BD)
21
Figure 3-1 Biased Differential Characteristic
21
Figure 3-2 Functional Diagram for Biased Current Differential Protection
22
87Hs
23
Figure 3-3 Differential Highset Characteristic
23
Figure 3-4 Logic Diagram: High Set Current Differential Protection
24
Current Protection: Phase Overcurrent (51, 50)
25
Instantaneous Overcurrent Protection (50)
25
Figure 3-5 Logic Diagram: Instantaneous Over-Current Element
25
Time Delayed Overcurrent Protection (51)
26
Figure 3-6 Logic Diagram: Time Delayed Overcurrent Element
26
Current Protection: Derived Earth Fault (50N, 51N)
27
Instantaneous Derived Earth Fault Protection (50N)
27
Figure 3-7 Logic Diagram: Instantaneous Derived Earth Fault Element
27
Time Delayed Derived Earth Fault Protection (51N)
28
Figure 3-8 Logic Diagram: Derived Time Delayed Earth Fault Protection
28
Current Protection: Measured Earth Fault (50G, 51G)
29
Instantaneous Measured Earth Fault Protection (50G)
29
Figure 3-9 Logic Diagram: Measured Instantaneous Earth-Fault Element
29
Time Delayed Measured Earth Fault Protection (51G)
30
Figure 3-10 Logic Diagram: Time Delayed Measured Earth Fault Element (51G)
30
Current Protection: High Impedance Restricted Earth Fault (64H)
31
Figure 3-11 Logic Diagram: High Impedance REF (64H)
31
Open Circuit (46BC)
32
Figure 3-12 Logic Diagram: Open Circuit Function (46BC)
32
Current Protection: Negative Phase Sequence Overcurrent (46NPS)
33
Figure 3-13 Logic Diagram: Negative Phase Sequence Overcurrent (46NPS)
33
Current Protection: Under-Current (37, 37G)
34
Figure 3-14 Logic Diagram: Undercurrent Detector (37, 37G)
34
Current Protection: Thermal Overload (49)
35
Figure 3-15 Logic Diagram: Thermal Overload Protection (49)
36
Voltage Protection: over Fluxing (24)
37
Figure 3-16 Inverse Over-Fluxing Characteristic (24IT)
37
Figure 3-17 Logic Diagram: Overfluxing Elements (24)
38
Voltage Protection: Under/Over Voltage (27/59)
39
Figure 3-18 Logic Diagram: Under/Over Voltage Elements (27/59)
39
Voltage Protection: Neutral Overvoltage (59N)
40
Figure 3-19 Logic Diagram: Neutral Overvoltage Element
40
Voltage Protection: Under/Over Frequency (81)
41
Figure 3-20 Logic Diagram: Under/Over Frequency Detector (81)
41
Section 4: Control & Logic Functions
42
Quick Logic
42
Figure 4-1 Sequence Diagram Showing PU/DO Timers in Quick Logic (Counter Reset Mode Off)
43
Section 5: Supervision Functions
44
Circuit Breaker Failure (50BF)
44
Figure 5-1 Logic Diagram: Circuit Breaker Fail Protection (50BF)
44
Trip/Close Circuit Supervision (74TCS/74CCS)
45
Inrush Detector (81HBL2)
46
Overfluxing Detector (81HBL5)
46
Figure 5-4 Logic Diagram: Inrush Detector Feature (81HBL2)
46
Figure 5-5 Logic Diagram: Overfluxing Detector Feature (81HBL5)
46
Demand
47
Section 6: Other Features
48
Data Communications
48
Maintenance
48
Output Matrix Test
48
CB Counters
48
I 2 T CB Wear
48
Data Storage
49
General
49
Event Records
49
Waveform Records
49
Fault Records
50
Demand/Data Log
50
Metering
50
Operating Mode
51
Control Mode
51
Real Time Clock
51
Table 6-1 Operation Mode
51
Time Synchronisation - Binary Input
52
Time Synchronisation - Data Comms
52
Time Synchronisation - IRIG-B (Optional)
52
Settings Groups
52
Password Feature
52
Siemens 7SR242 Duobias Commissioning And Maintenance Manual (57 pages)
Brand:
Siemens
| Category:
Relays
| Size: 0.56 MB
Table of Contents
Document Release History
1
Software Revision History
1
Table of Contents
2
Contents
2
Section 1: Common Functions
5
Overview
5
Before Testing
5
Safety
5
Sequence of Tests
5
Test Equipment
6
Precautions
6
Applying Settings
7
Tests
8
Inspection
8
Secondary Injection Tests
8
Primary Injection Tests
8
Putting into Service
8
AC Energising Quantities
9
Binary Inputs
10
Binary Outputs
11
Relay Case Shorting Contacts
11
Section 2: Protection Functions
12
Biased Differential (87BD, 87HS)
14
Secondary Injection Testing
14
Figure 2-1 Biased Differential
14
Figure 2-2 Secondary Injection Using a Variac
15
Primary Injection Testing
17
Phase Overcurrent (50, 51)
18
Figure 2-3 Phase Overcurrent
18
Definite Time Overcurrent (50)
19
Inverse Time Overcurrent (51)
19
Derived Earth Fault (50N,51N)
21
Figure 2-4 Measured Earth Fault
21
Definite Time Overcurrent (50N)
22
Inverse Time Overcurrent (51N)
22
ANSI Reset
23
Measured Earth Fault (50G, 51G)
24
Figure 2-5 Measured Earth Fault
24
Definite Time Overcurrent (50G)
25
Inverse Time Overcurrent (51G)
25
ANSI Reset
26
Restricted Earth Fault (64H)
27
Figure 2-6 Restricted Earth Fault
27
Open Circuit (46BC)
29
Figure 2-7 Open Circuit
29
Negative Phase Sequence Overcurrent (46NPS)
31
Figure 2-8 Negative Phase Sequence Overcurrent
31
Definite Time NPS Overcurrent (46DT)
32
Inverse Time NPS Overcurrent (46IT)
32
Undercurrent (37, 37G)
34
37-N Elements
34
Figure 2-9 Undercurrent
34
Elements
35
Thermal Overload (49)
36
Figure 2-10 Thermal Overload
36
Under/Over Voltage (27/59)
38
Figure 2-11 Phase Under/Over Voltage
38
Undervoltage Guard (27/59UVG)
40
Neutral over Voltage (59N)
41
Figure 2-12 Neutral Overvoltage
41
Definite Time (59NDT)
42
Inverse Time (59NIT)
42
Under/Over Frequency (81)
43
Figure 2-13 Under/Over Frequency
43
Overfluxing (24)
45
Definite Time (24DT)
45
Figure 2-14 Under/Over Frequency
45
Inverse Time (24IT)
46
Section 3: Supervision Functions
47
CB Fail (50BF)
47
Figure 3-1 CB Fail
47
Trip/Close Circuit Supervision (74TCS, 74CCS)
49
Figure 3-2 Trip Circuit Supervision
49
Magnetising Inrush Detector (81HBL2)
50
Figure 3-3 Magnetising Inrush Detector
50
Overfluxing Detector (81HBL5)
52
Figure 3-4 Magnetising Inrush Detector
52
Section 4: Control & Logic Functions
53
Quick Logic
53
Section 5: Testing and Maintenance
54
Periodic Tests
54
Maintenance
54
Troubleshooting
54
Defect Report Form
56
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