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I.L. 40-385.5
ii
1.
Standard precautions of static voltage discharges should be observed such as using a
grounded wrist strap when handling Integrated Circuits.
2.
Remove chips U103 and U104 from the Microprocessor module.
3.
Replace chips U103 (G13) and U104 (G14) into the sockets.
4.
Reprogram MDAR password through INCOM
remote communication.
5.
It is recommended to verify the relay’s operation per Section 2 of Appendix A2 (Acceptance/
Maintenance Tests).
IMPORTANT APPLICATION NOTES
1.
PILOT SYSTEM
a) The setting of Z3FR must be set to “REV” for system transient block and unequal pole external fault
clearing.
b) The minimum setting of FDGT should be 3 cycles unless for some special application.
c) The carrier equipment for the use of the Blocking System should have a sending/self-receiving feature
in order to block both ends for 3 cycles if a reverse fault is detected.
2.
LOAD LOSS TRIP (LLT)
For a system if its maximum tapped load may exceed minimum through-load in the protected line, the
setting of LLT should be set to “NO”. Refer to section 9.12 for the detailed information.
3.
RECLOSE APPLICATION
The signals from MDAR to Recloser are Reclose Initiate RI2 (3-pole), RI1 (Single-pole) and Reclose
Block (RB). The Reclose relay should have the following feature: if the Recloser receives RI and RB, the
RB should have the preference and reset/lockout the reclose timer.
SINGLE-POLE TRIP APPLICATION
For a single-pole and high-speed trip application (TTYP=SRI/SR3R), the FDOG trip path for the high resis-
tance ground fault detection may not work for the phase-phase-ground fault condition because the phase
selector shows a fault type of phase-phase fault and it expects the Z1P or PLTP trip only. The purpose of
FDOG is for the detection of single phase with high resistance to ground fault only.
Содержание MDAR
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Страница 88: ...I L 40 385 5 A 16 Figure A 1 Test Connection for Single Phase to Ground Faults Sheet 1 of 4 1502B51 Sub 1 ...
Страница 89: ...I L 40 385 5 A 17 Figure A 2 Test Connection for Three Phase Faults 1502B51 Sub 1 Sheet 2 of 4 ...
Страница 90: ...I L 40 385 5 A 18 Figure A 3 Test Connection for Phase to Phase Faults 1502B51 Sub 1 Sheet 3 of 4 ...
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Страница 98: ...I L 40 385 5 A 26 I L 40 385 5 A 26 I L 40 385 5 A 26 Figure 5 MDAR REL 300 Relay Assembly sub 3 1502B21 ...
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Страница 105: ...I L 40 385 5 A 33 I L 40 385 5 A 33 I L 40 385 5 A 33 Figure 15 MDAR REL 300 Zone 1 Trip Logic sub 1 9659A66 ...
Страница 106: ...I L 40 385 5 A 34 I L 40 385 5 A 34 I L 40 385 5 A 34 Figure 16 MDAR REL 300 Zone 2 Trip Logic sub 1 9659A67 ...
Страница 107: ...I L 40 385 5 A 35 I L 40 385 5 A 35 I L 40 385 5 A 35 Figure 17 MDAR REL 300 Zone 3 Trip Logic sub 1 1504B04 ...
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Страница 112: ...I L 40 385 5 A 40 I L 40 385 5 A 40 I L 40 385 5 A 40 Figure 25 Load Loss Accelerated Trip Logic sub 2 1504B29 ...
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Страница 118: ...I L 40 385 5 A 46 I L 40 385 5 A 46 I L 40 385 5 A 46 Figure 35 Power Reversal sub 1 9654A17 ...
Страница 119: ...I L 40 385 5 A 47 I L 40 385 5 A 47 I L 40 385 5 A 47 Figure 36 Reverse Block Logic sub 1 9659A73 ...
Страница 120: ...I L 40 385 5 A 48 I L 40 385 5 A 48 I L 40 385 5 A 48 Figure 37 Unequal Pole Closing on Fault sub 1 9654A29 ...
Страница 121: ...I L 40 385 5 A 49 I L 40 385 5 A 49 I L 40 385 5 A 49 Figure 38 Simplified MDAR Version 2 60 SPT Logic sub 4 1504B32 ...
Страница 122: ...I L 40 385 5 A 50 I L 40 385 5 A 50 I L 40 385 5 A 50 Figure 39 MDAR Block Diagram sub 1 1611C12 ...
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