I.B. 17555C
Effective November 1999
Page B6
5.0
WIRING AND SETUP
WARNING
ENSURE THAT THE INCOMING AC POWER
SOURCES ARE DISCONNECTED BEFORE PER-
FORMING ANY WORK ON THE DIGITRIP 3000
PROTECTIVE RELAY OR ITS ASSOCIATED EQUIP-
MENT. FAILURE TO OBSERVE THIS PRACTICE
COULD RESULT IN SERIOUS INJURY, DEATH AND/
OR EQUIPMENT DAMAGE.
NOTE: The following material replaces sections 5-4,
on page 35.
Refer to Figures B-3, B-4, B-5, and B-6 for the DT3010/
DT3020 typical wiring diagrams. Note the following:
4.1 Direct wire connections to the terminal blocks must
not be larger than No. 14 AWG wire. However, larger
size wires can be used for the CT connections, with
the appropriate ring terminal.
4.2 All contacts are shown in the de-energized position.
NOTE: The Protection Off Alarm Relay is energized
when ac control power is applied and the DT3000 is
operating properly. To obtain a contact that closes
when protection is lost, use terminals 9 & 11 of TB2.
For a contact that opens when protection is lost, use
terminals 9 & 10 of TB2.
3. The Digitrip 3000 comes with the zone interlocking
jumpers installed (TB1 terminals 11 to 12 and 13 to
14). Leave these jumpers installed if zone selective
interlocking is not used. See Section 4 for more infor-
mation on zone interlocking.
NOTE: All wiring must conform to applicable federal,
state, and local codes.
6.0
APPLICATION CONSIDERATIONS
NOTE: The following material is an addition to
Section 4, on page 31.
6.1
SENSITIVITY AND CT RATIOS
For scenarios where the relay must trip with loss of ac
power, the main-ct secondary current must be greater
than 9 amperes for a single-phase-to-ground fault or 6
amperes for a three-phase fault.
For best coverage of faults, the ct ratio should be chosen
so that normal full loading of the protected feeder corre-
sponds to a secondary current of approximately one per
unit or 5A secondary.
CAUTION
BEWARE OF MISAPPLICATION OF MAIN-CT
RATIOS. CONSIDER A CIRCUIT WITH A 400A LOAD
THAT NORMALLY REQUIRES A 400:5 CT RATIO,
BUT THE CT IS CONNECTED FOR 1200:5. NORMAL
LOADS WILL APPEAR AS SMALL CURRENTS, AND
EVEN SOME FAULTS MAY HAVE SECONDARY CUR-
RENTS BELOW 1 PER UNIT. THE DSPS WILL NOT
BE ABLE TO POWER THE RELAY FOR THESE
FAULTS.
6.2
TRIPPING ON FACILITY ENERGIZATION
Normally, the Digitrip 3000 with DSPS will be powered
from the auxiliary ac voltage.
If no auxiliary ac control power is present when the
breaker closes into a fault or if power is restored to a facil-
ity and a fault is present, the relay will power-up and trip
provided the current levels are above the minimum oper-
ating level. In this case, trip times will be approximately
100 ms longer than the case of having normal ac control
voltage prior to the fault.
This will also be true if the ac auxiliary power transformer
fails or the supply fuses have blown at any time prior to
the fault.
Visible front-panel metering displays, and/or network
data communications of the relay, comprise a good check
on the integrity of the ac supply. In addition, the Protec-
tion Off alarm will provide alarm indication if the power is
lost or if the relay has failed.
Содержание Cutler-Hammer Digitrip 3000
Страница 18: ...I B 17555C Effective November 1999 Page 12 Fig 2 1 Typical Communications Wiring Diagram...
Страница 27: ...I B 17555C Effective November 1999 Page 21 Fig 3 1 Digitrip 3000 Typical Wiring Diagram...
Страница 36: ...I B 17555C Effective November 1999 Page 30 Fig 3 11 Local Programming Sequence Flow Chart...
Страница 37: ...I B 17555C Effective November 1999 Page 31...
Страница 48: ...I B 17555C Effective November 1999 Page 42 Fig 7 1 Inverse Time Overcurrent Phase I4T Curves SC 5390 92B...
Страница 49: ...I B 17555C Effective November 1999 Page 43 Fig 7 2 Inverse Time Overcurrent Phase I2T Curves SC 5391 92B...
Страница 50: ...I B 17555C Effective November 1999 Page 44 Fig 7 3 Inverse Time Overcurrent Phase IT Curves SC 5392 92B...
Страница 51: ...I B 17555C Effective November 1999 Page 45 Fig 7 4 Inverse Time Overcurrent Phase Flat Curves SC 5393 92B...
Страница 52: ...I B 17555C Effective November 1999 Page 46 Fig 7 5 Short Delay Phase Curves SC 5394 92B...
Страница 53: ...I B 17555C Effective November 1999 Page 47 Fig 7 6 Inverse Time Overcurrent Short Delay Curves SC 5395 92B...
Страница 54: ...I B 17555C Effective November 1999 Page 48 Fig 7 7 Instantaneous Curves SC 5396 92B...
Страница 55: ...I B 17555C Effective November 1999 Page 49 Fig 7 8 Inverse Time Overcurrent Ground I4T Curves SC 5399 92B...
Страница 56: ...I B 17555C Effective November 1999 Page 50 Fig 7 9 Inverse Time Overcurrent Ground I2T Curves SC 5400 92B...
Страница 57: ...I B 17555C Effective November 1999 Page 51 Fig 7 10 Inverse Time Overcurrent Ground IT Curves SC 5401 92B...
Страница 58: ...I B 17555C Effective November 1999 Page 52 Fig 7 11 Inverse Time Overcurrent Ground Flat Curves SC 5402 92B...
Страница 59: ...I B 17555C Effective November 1999 Page 53 Fig 7 12 Short Delay Ground Curves SC 5403 92B...
Страница 60: ...I B 17555C Effective November 1999 Page 54 Fig 7 13 ANSI Moderately Inverse Curves SC 6685 96...
Страница 61: ...I B 17555C Effective November 1999 Page 55 Fig 7 14 ANSI Very Inverse Curves SC 6686 96...
Страница 62: ...I B 17555C Effective November 1999 Page 56 Fig 7 15 ANSI Extremely Inverse Curves SC 6687 96...
Страница 63: ...I B 17555C Effective November 1999 Page 57 Fig 7 16 IEC A Moderately Inverse Curves SC 6688 96...
Страница 64: ...I B 17555C Effective November 1999 Page 58 Fig 7 17 IEC B Very Inverse Curves SC 6689 96...
Страница 65: ...I B 17555C Effective November 1999 Page 59 Fig 7 18 IEC C Extremely Inverse Curves SC 6690 96...
Страница 66: ...I B 17555C Effective November 1999 Page 60 Fig 7 19 IEC D Flat Curves SC 6691 96...
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Страница 73: ...I B 17555C Effective November 1999 Page A5 Fig A 7 DT3001 Typical Wiring Diagram...
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Страница 81: ...I B 17555C Effective November 1999 Page B5 Fig B 2 Digitrip 3010 3020 Dimensions Inches...
Страница 83: ...I B 17555C Effective November 1999 Page B7 Fig B 3 Digitrip 3010 3020 Typical Wiring Diagram...
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