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I.L. 40-385.5
A-8
imately 0.10 seconds, the “Relay In Service” LED
will be turned off, and the GS (AL3) contact
should be closed.
Step 34.
Increase I
A
to 1.5A. Depress the DIS-
PLAY SELECT pushbutton and change to the
metering (VOLTS/AMPS/ANGLE) mode. Press
FUNCTION RAISE pushbutton until the LOI dis-
play is shown. The value should indicate “YES”.
Suddenly turn OFF V
A
voltage; the relay should
not be tripped within 500 ms. It may operate after
500 ms if a delta I is detected by the relay.
Change the setting of LOIB from YES to NO.
1.1.13 Output Contact Test
Step 35. The purpose of this test is to check the
hardware connections and relay contacts. It is
designed for a bench test only. Remove JMP12
(spare on the Microprocessor PC Board) and
place it in the JMP5 position. Open the red-han-
dled FT switch (Trip and Breaker Failure Initiate)
in order to avoid the undesired trip.
NOTE: The red-handled FT switch (#13) con-
trols the dc supply of BFI, RI2 and the
optional RI1 relays. In order to test these
relays in the system, the external wiring
should be disconnected to avoid undes-
ired reclosing or trip. For relays without
FT switches,
do not perform the Output
Contact tests using the relay system.
Change the LED mode to “TEST” and select the
tripping function field and the desired contact in
the value field. Push the ENTER button; the EN-
TER LED should be “ON”. The corresponding re-
lay should operate when the ENTER button is
pressed. The following contacts can be tested:
• TRIP
• BFI
• RI1
(optional)
• RI2
• RB
• AL1 (with three balanced voltages applied)
• AL2
• GS
• SEND
• STOP
Remove JMP5 and replace it on JMP12.
Step 36. This completes the basic Acceptance
Test for the MDAR Non-Pilot system. (See sub-
sequent segment for optional Single Pole Trip
and Out-of-Step Block tests.)
1.2
PILOT PERFORMANCE TESTS
To prepare the MDAR relay assembly for Pilot Ac-
ceptance Tests, connect the MDAR per Figure A-1,
Configuration 1.
NOTE: For Power Supply module sub 13 or
higher, three Reed relays are used to re-
place the mercury relays for GS, Carrier
STOP and SEND. Check jumpers JMP1
(STOP) and JMP2 (SEND) for NO or NC
output contact selection.
1.2.1
Front Panel Check
Step 1.
Repeat steps 1 thru 6 in Non-Pilot Accep-
tance Tests.
Step 2.
Change the value settings, in Table A-1,
as follows:
• PLT
YES
•
PLTP
6.0
• Z3FR
REV
•
Z3P
6.0
• ZIP
OUT
•
Z3G
6.0
• ZIG
OUT
• T3P
BLK
• PLTG 6.0
• T3G
BLK
NOTE: When the dc voltage is applied to TB5
terminals, check jumper position on In-
terconnect module for the appropriate
selection.
Connect a rated dc voltage to PLT/ENA terminals
TB5/9(+) and TB5/10(-).
1.2.2
Blocking (BLK) Scheme
Step 3.
Change the STYP setting to BLK. Apply a
rated dc voltage to RCVR #1 terminals TB5/7(+)
and TB5/8(-). Check the metering mode for RX1
= YES. Apply an AG fault as shown in Step 10 of
the Non-Pilot Acceptance Test (i.e., V
a
= 30 volts
and I
a
= 4 Amps). The trip A contacts should not
be closed. The CARRY SEND should be “open”
and the CARRY STOP should be “closed”.
Step 4.
Remove the dc voltage from RCVR #1
and apply AG fault. Trip A contacts should be
“closed” and the target should show “PLTG AG”.
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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