17-
8
750/760 Feeder Management Relay
GE Power Management
17.4 LOGIC/VIRTUAL INPUTS
17 COMMISSIONING
17
7.
Set the monitored contact to the closed state and the virtual input to the on state. Check that the diagnostic
message is removed from the display with the 3 auxiliary LED and relay deactivated.
8.
Repeat steps 3 through 7 for all functions programmed to be asserted by a
Open & V
off
input.
For
INPUT ASSERTED LOGIC
setpoints set to
Closed | V
on
:
1.
2.
3.
Check that there is no logic input diagnostic message on the display.
4.
Set the monitored contact for the logic input programmed in setpoint message
USER INPUT A SOURCE
to the
closed state and the virtual input to the off state. Check that the diagnostic message, either
User Input A
or
the name programmed in setpoint
USER INPUT A NAME
, appears on the display with the 3 auxiliary LED and
relay activated. Check in the Event Recorder that the selected function has been invoked.
5.
Leave the monitored contact in the closed state and put the virtual input in the on state. Check that the
diagnostic message, the 3 auxiliary LED and relay remain activated.
6.
Set the monitored contact to the open state and leave the virtual input in the on state. Check that the diag-
nostic message, the 3 auxiliary LED and relay remain activated.
7.
Leave the monitored contact in the open state and put the virtual input in the off state. Check that the diag-
nostic message is removed from the display with the 3 auxiliary LED and relay deactivated.
8.
Repeat steps 3 through 7 for all functions programmed to be asserted by a
Closed | V
on
input.
For
INPUT ASSERTED LOGIC
setpoints set to
Closed | V
off
:
1.
2.
3.
Check that there is no logic input diagnostic message on the display.
4.
Set the monitored contact for the logic input programmed in setpoint message
USER INPUT A SOURCE
to the
closed state and the virtual input to the on state. Check that the diagnostic message, either
User Input A
or
the name programmed in setpoint
USER INPUT A NAME
, appears on the display with the 3 auxiliary LED and
relay activated. Check in the Event Recorder that the selected function has been invoked.
5.
Leave the monitored contact in the closed state and put the virtual input in the off state. Check that the
diagnostic message, the 3 auxiliary LED and relay remain activated.
6.
Set the monitored contact to the open state and leave the virtual input in the off state. Check that the diag-
nostic message, the 3 auxiliary LED and relay remain activated.
7.
Leave the monitored contact in the open state and put the virtual input in the on state. Check that the diag-
nostic message is removed from the display with the 3 auxiliary LED and relay deactivated.
8.
Repeat steps 3 through 7 for all functions programmed to be asserted by a
Closed | V
off
input.
For
INPUT ASSERTED LOGIC
setpoints set to
Open | V
on
:
1.
2.
3.
Set the monitored contact for the logic input programmed in setpoint message
USER INPUT A SOURCE
to the
open state and the virtual input to the off state. Check that the diagnostic message, either
User Input A
or
the name programmed in setpoint
USER INPUT A NAME
, appears on the display with the 3 auxiliary LED and
relay activated. Check in the Event Recorder that the selected function has been invoked.
4.
Leave the monitored contact in the open state and put the virtual input in the on state. Check that the diag-
nostic message, the 3 auxiliary LED and relay remain activated.
5.
Set the monitored contact to the closed state and leave the virtual input in the on state. Check that the
diagnostic message, the 3 auxiliary LED and relay remain activated.
6.
Leave the monitored contact in the closed state and put the virtual input in the off state. Check that the
diagnostic message is removed from the display with the 3 auxiliary LED and relay deactivated.
7.
Repeat steps 3 through 7 for all functions programmed to be asserted by a
Open | V
on
input.
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Страница 124: ...8 14 750 760 Feeder Management Relay GE Power Management 8 12 INSTALLATION 8 S1 RELAY SETUP 8 ...
Страница 144: ...10 14 750 760 Feeder Management Relay GE Power Management 10 10 MISCELLANEOUS FUNCTIONS 10 S3 LOGIC INPUTS 10 ...
Страница 152: ...11 8 750 760 Feeder Management Relay GE Power Management 11 3 OUTPUT RELAYS 3 7 AUXILIARY 11 S4 OUTPUT RELAYS 11 ...
Страница 216: ...12 64 750 760 Feeder Management Relay GE Power Management 12 9 BREAKER FAILURE 12 S5 PROTECTION 12 ...
Страница 484: ...17 78 750 760 Feeder Management Relay GE Power Management 17 10 PLACING THE RELAY IN SERVICE 17 COMMISSIONING 17 ...
Страница 488: ...A 4 750 760 Feeder Management Relay GE Power Management A 1 FIGURES AND TABLES APPENDIXA A ...
Страница 490: ...B 2 750 760 Feeder Management Relay GE Power Management B 1 EU DECLARATION OF CONFORMITY APPENDIXB B ...
Страница 492: ...C 2 750 760 Feeder Management Relay GE Power Management C 1 WARRANTY INFORMATION APPENDIXC C ...
Страница 502: ...x 750 760 Feeder Management Relay GE Power Management INDEX ...
Страница 503: ...GE Power Management 750 760 Feeder Management Relay NOTES ...