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Westinghouse C0-2 Installation, Operation & Maintenance Instructions Manual

Westinghouse C0-2 Installation, Operation & Maintenance Instructions Manual

Circuit opening overcurrent relay

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Before putting relays into service, remove all
CAUTION
blocking which may have been inserted for the
purpose of securing the parts during shipment,
make sure that all moving parts operate freely,
inspect the contacts to see that they are clean
and close properly, and operate the relay to check
the settings and electrical connections.
APPLICATIOI'\1
These induction overcurrent relays are used to
disconnect circuits or apparatus when the current
in them exceeds a given value. When no suitable
station battery is available, the circuit opening
type relay in conjunction with a-c series trip coil
is used to trip the circuit breaker.
CONTENTS
This instruction leaflet applies to the following
types of circuit opening relays:
C0-6
Type C0-2 Short Time Relay
Type C0-5 Long Time Relay
Type
Definite Minimum Time Relay
Type C0-7 Moderately Inverse Time Relay
Type C0-8 Inverse Time Relay
Type C0-9 Very Inverse Time Relay
Type C0-11 Extremely Inverse Time Relay
CONSTRUCTION AND OPERATION
The type CO relays consist of an overcurrent
unit (CO), a de-ion contactor switch (CS), an op­
eration indicator (01) and an indicating instan­
taneous trip (liT) when required.
All possible contingencies which may arise during installation, operation, or maintenance, and all
details and variations of this equipment do not purport to be covered by these instructions. !/further
information is desired by purchaser regarding his particular ins lallation, operation or maintenance of
his equipment, the local Westinghouse Electric Corporation representative should be contacted.
I.L.
SUPERSEDES
41-103G DATED JUNE 1976
ODENOTES CHANGED SINCE PREVIOUS ISSUE
TYPE CO CIRCUIT OPENING
OVERCURRENT RELAY
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Westinghouse
ELECTROMAGNET
The electromagnets for the types C0-5, C0-6,
CO-7, C0-8 and C0-9 relays have a main tapped
coil located on the center leg of an "E" type
laminated structure that produces a flux which
divides and returns through the outer legs. A
shading coil causes the flux through the left leg
to lag the main pole flux. The out-of-phase fluxes
thus produced in the air gap cause a contact
closing torque.
The electromagnets for the types C0-2 and
CO-Il
relays have a main coil consisting of a
tapped primary winding and a secondary winding.
Two identical coils on the outer legs of the lami­
nation structure are connected to the main coil
secondary in a manner so that the combination
of all the fluxes produced by the electromagnet
result in out-of-phase fluxes in the air gap. The
out-of-phase air gap fluxes produced cause a con­
tact closing torque.
DE-ION CONTACTOR SWITCH (CS)
This switch is a small a-c solenoid switch
whose coil is energized from a small transformer
connected in the main current circuit. A cylin­
drical plunger operates a spring leaf arm with a
silver contact surface on one end and rigidly fixed
to the frame at the other end.
The overcurrent unit contacts are in the con­
tactor switch coil circuit and when they close, the
solenoid plunger moves upward to open the de­
ion contacts which normally short circuit the trip
coil. These contacts are able to transfer the heavy
current due to a short circuit and permit this cur­
rent to energize the breaker trip coil.
I.L. 41-103H
EFFECTIVE MAY 1984

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Summary of Contents for Westinghouse C0-2

  • Page 1 !/further information is desired by purchaser regarding his particular ins lallation, operation or maintenance of his equipment, the local Westinghouse Electric Corporation representative should be contacted. I.L.
  • Page 2 I.L. 41-103H I NTUUL SCHENA Tl C INTERNAL SCHENAT IC ---- -- -- -- -- OE·IOII DE-ION CONTACTOR SWITCH COHTACTOR SWITCH OPEUTIOII IIIOICATOR AUX. CURREIH OPEUTIQII UIOICATOR TRAMSF. PRht. AUX. CURRENT TUIISF. f'IIMAU AUX. CURII:EIIT AUX. CUUEJIT TilUSF. SECOJIDARY IMOICATIII<i TRAIISF.
  • Page 3 41-103H I.L. ENERGY REQUIREMENTS TYPE C0-2 RELAY HERTZ VOLT AMPERES** (Xll FOR TIMES TIMES TIMES CONTINUOUS ONE SECOND POWER TAP VALUE TAP VALUE TAP VALUE TAP VALUE RATING* FACTOR CURRENT CURRENT CURRENT CURRENT 0AMPERE RATING (Ll = (Ll = (Ll =...
  • Page 4 41-103H I.L. ENERGY REQUIREMENTS C0-5 LONG TIME AND C0-6 DEFINITE MINIMUM TIME RELAYS 60 HERTZ VOLT AMPERES** (XL; FOR 50 HZ) TIMES AT lOTIMES AT 20 TIMES ONE SECOND POWER TAP VALUE TAP VALUE TAP VALUE TAP VALUE CONTINUOUS 0 AMPERE RATING RATING* FACTOR...
  • Page 5 I.L. 41-103H ENERGY REQUIREMENTS CO-S INVERSE TIME AND C0-9 VERY INVERSE TIME RELAYS 60 HERTZ VOLT AMPERES** (XLI FOR 50 HZ) AT 20 TIMES TIMES AT 10 TIMES TAP VALUE TAP VALUE TAP VALUE CONTINUOUS ONE SECOND POWER TAP VALUE 0AMPERE RATING RATING*...
  • Page 6 ; -j_ ��_r:=-==�- -· cc - lc �- � � i i i -r 1 · MULTIPLES OF TAP VALUE CURRENT 9 10 14 16 1 8 Curve 619584 Typical Time Curve of the Type C0-2 Relay F ig . 3.
  • Page 7 41-103H I.L. 1li0 TYPICAL TIME CURVES TYPE C0-5 OVERCURRENT RELAY 50-60 HERTZ . 1111 ' I 1 I ' I • I • ' : I · I , , II ' . · · ! � � • I t-.
  • Page 8 I.L. 41-103H TYPICAL TIME CURVES TYPE C0-6 OVERCURRENT RELAY 50-60 HERTZ Tl ME I AL S ETT MULTIPLES 12 114 16 18 20 TAP VALU E CU R RENT Curve 418246 Fig. 5. Typical Time Curve of the Type C0-6 Relay...
  • Page 9: D I Al Sett I N G

    41-103H I.L. TYPICAL TIME CURVES TYPE C0-7 OVERCURRENT RELAY 50-60 HERTZ T I ME D I AL SETT I N G I i! ' ·- -· � lB 20 12 1� 16 8 9 10 MULT I P LES T AP VALUE C U R RENT Curve 418247 Fig.
  • Page 10 I.L. 41-103H TYPICAL TIME CURVES TYPE C0-8 OVERCURRENT RELAY 50-60 HERTZ TIM E DIAL S E T TING 1.41 ·-t . -+-+ - -- _:+ 1-:\ - 1/2 �.+ 9 10 16 18 20 MULTIPLES TAP VALU E CU RR ENT Curve 418248 Fig.
  • Page 11 41-103H I.L. TYPICAL TIME CURVES TYPE C0-9 OVERCURRENT RELAY 50-60 HERTZ •- .._ _ 9 10 1� 16 18 20 CURRENT MU L T I P L ES T AP VALUE Curve 418249 Fig. 8. Typical Time Curve of the Type C0-9 Relay...
  • Page 12 WESTINGHOUSE ELECTRIC CORPORATION RELAY-INSTR U M E N T DIVISION CORAL SPRINGS, FL 33065 Printed in U.S.A.
  • Page 14 T Y P E CO C I RCU I T O P E N I N G R E LAY INTfRNAL SCHEMATIC INTERNAL SCHEMATIC DE·IOH OE-JOH CONTACTOII SWITCH COHTACTOR SW I TCH OPERATION IND ICATOR AUX. CURRENT OPERAT IOM IMOICATOR TRAHSF.
  • Page 15 T Y P E CO CIRC U I T O P E N I N G R E LAY E NE R GY R E Q U I R EMENTS T Y P E C 0 - 2 R E L A Y VOLT AMPERES* * ONE SECOND POWER...
  • Page 16 T Y P E CO CI RCU I T OP E N I NG R E L AY E NE RGY R EQ U I R EME N TS C O · S L O N G T I M E A N D C 0 -6 D E F I N IT E M I N IM U M T I M E R E LA Y S VOLT AMPERES* •...
  • Page 17 T Y P E CO C I R C U I T O P E N I NG R E LAY E NE RGY R EQ U I R EMEN TS C 0 -8 I NV E R S E T I M E A N D C 0· 9 V E R Y I N V E R S E T I M E R E L A Y S...
  • Page 19 I.L. 4 1 - 1 03G T Y P E CO CIRC U I T OP E N I N G R E L AY i TYP I CA L T I M E C U R V E S �...
  • Page 22 T Y P E CO CIRCUI T O P E N I NG R ELAY co-a TYP I CAL T I ME CU RVES TYPE HERT Z O V E R C U R R EN T R E L A Y 5 0_ &0 .., 16 18 20...
  • Page 23 TY P E CO C IRCUI T OP E N I NG R E L Ay lUB��g C U R V E T Y P I CAL T I ME C U R V ES T Y P E C0-9 HERT Z O V E R C U R R E N T R E L AY 5 0 �...
  • Page 24 TYP E CO C I RC U I T O P E N I N G R E LAY 5 6 7 8 9 10 � �0 �0 288 8655 T Y P I CAL T I ME C U R V E S T Y P E C0- 1 1 5 0 _ &0 HERT Z O V E R C U R R E N T R E L A Y...
  • Page 25 T Y P E CO C I RC U I T O P E N I NG R E LAY CO RELAY (FRONT 'f l EW) 5 1 - 1 TIMER STOPS (:��:Y ��Hacr l (OPENS P H . (TIMER SlARTS ) START CLOSES ( "S "...
  • Page 26: Installation

    T Y P E CO C I R C U I T O P E N I NG R E LAY INDICATING INSTANTANEOUS TRIP (liT one-half of its normal defl ection. Therefore , with t h e stationary c ontact resting against t he The core screw must be adjusted to the va lue of backstop , the index mark is offs et to the r ight of Pick-up c urrent desired.
  • Page 27: Routine Maintenance

    T Y P E CO CI R C U I T O P EN I N G R E LAY 1/32" s tationary contact s houl d have a m1mmum of the minimum trip current value of the relay is most convenientlY made with the damping magnet removed.
  • Page 28 T Y P E CO CIRCU I T OP E N I N G R E LAY (liT) 4 . DE-ION CONTACTOR SWITCH (CS) 6. INDICATING INSTANTANEOUS TRIP UNIT Adjust the core stop on the top as high as pos­ Tl1e making of the c ontacts and target indication sible without allowing the insulating bushing at the shoul d occ ur at approXImately the same mstant.
  • Page 29 RELAY DIAL ( MULTIPLES OF TIME (MULTIPLES OF TIME POSITION TAP VALUE ) TAP VALUE ) SECOND S TYPE SECONDS C0-2 0.57 0.22 37. 8 0 co-s 14.30 C0-6 1 . 19 2.46 C0-7 1 . 1 1 4.27 C0-8 1 .
  • Page 30 . 250 ( 6 , 35 ) , 190-32 DIA. HOLES FOR MTG. SCREWS 5.219 ( 1 32 . 56) 10. 438 (265. 13) . 1 25 ( 161.93 ) PA N E L L O C AT I O N S E M I - F L U S H M T G , PAN E L C U TO U T...
  • Page 32 R E LAY- I N S T R U M E N T D I V I S I O N W E S T I N G H O U S E E L E C T R I C C O R P O R A T I O N N EWA R K , N .
  • Page 33 Westinghouse I . L . 4 1 - 1 03 E I N STA L L A TI O N • O P E R A T I O N • M A I N T E N A N CE...
  • Page 34 TYP E CO CIRCUIT O P E N I N G R E LAY INTERNAL SCMEMATIC INTERNAL SCHEMAT IC DE-lOll DE-1011 COIITACTOR SIITCII ---- -- COIITACTOR SWITCH ---- -- - AUX. CURIEIIT OPERAT!OM I N D I CATOR " TRAIISF. PRIM. AUX.
  • Page 35: E N E Rgy R Equi R Ements

    T Y P E CO CIRCU I T O P E N I N G R E LAY E N E RGY R EQUI R EMENTS T Y P E C 0 - 2 R E L A Y VOLT AMPERES * * ONE SECOND POWER TIMES...
  • Page 36 TYPE CO CIRCUIT O P E N I NG R ELAY E N E RGY REQ U I R EMENTS C O · S L O N G T I M E A ND C 0 ·6 D E F I N IT E M I N I M U M T I ME R E LA Y S VOLT AMPERE S * * CONTINUOUS...
  • Page 37 T Y P E CO C I R CUIT O P E N I NG R E LA Y --- ----- ----- ----- --�- L L _ ._ 4 _ 1 -_ J o _ 3 E E N E R GY R EQ U I R EMENTS C 0 -8 I NV E R S E T I M E A N D C 0 -9 V E R Y I NV E R S E T I M E R E L A Y S VOLT AMPER E S •...
  • Page 38 T I ME D I AL >­ 9 10 11.+ 1 6 18 20 MU L T I PL ES O F TAP VALU E C U RREN T Fig. Typical Time Curves of the Type C0-2 R e lay.
  • Page 39 I . L . 4 1 · 1 03 E T Y P E C O C I R C U I T OP EN I N G R E LAY CU RV E 4 1 8 245 T Y P I C A L T I M E cu R V ES 1 40 o v E R CU R R EN T R E l A Y T Y P E C0-5...
  • Page 41 TY P E CO CIRCUIT O P E NI N G R E LAY CU RV E 11 1 8 247 T I ME CU fl.V E S C0 -7 T Y P I C A L T Y P E 50 -60 O VE R CU R R E N T R E L AY C Y C L ES...
  • Page 42 T Y P E CO C I RCU I T O P E N I NG R EL AY CURVE l H82148 co-a TYP I CAL T I ME CU RVES T Y P E 50 - 60 O V E R C U R R E N T R EL A Y CYCL ES ' ' I •...
  • Page 43 TY P E CO C I RCUIT O P E N I NG R E LAY C U R V E 4 1 8249 T Y P I C A L T I ME C U R V E S T Y P E C0-9 O V E R C U R R EN T R E L AY 50-60...
  • Page 44 TY P E CO CIRCUIT O P E N I N G R E LAY li 6 7 8 9 10 �0 �0 288 8655 T Y P I CAL T I NE C U R V E S TYP E C0- 1 1 eo-eo O V E R CU R R E N T R E L AY CYCLrs...
  • Page 45 T Y P E CO C I RCU I T O P E N I NG R E LAY CO RELAY (FRONT i i EW ) i� 51-1 A��Nucr l PH. 1 STOP (OPENS ( T I M E R STARTS T I MER (WHEH SWifCH ( "...
  • Page 46 T Y P E CO C I R C U I T O P E N I NG R E LAY INDICATING INSTANTANEOUS TRIP (liT one-half of its normal deflection. Therefor e , with the stationary contact resting against the The core screw must be adj usted to the value of backstop , the index mark i s offset to the r ight of Plck-up current desired.
  • Page 47 I . L . 4 1 · 1 03 E T Y P E CO CIRCUIT O P EN I NG R E LAY s tationary contact s houl d have a mimmum of 1 / 3 2" the minimum trip current value of the relay i s most wip e .
  • Page 48 T Y P E CO C I R C U I T OP E N I N G R E LAY DE-ION CONTACTOR SWITCH (CS) 6 . INDICATING INSTANTANEOUS TRIP UNIT (liT) Tl1e making of the contacts and target indication Adjust the core stop on the top as high pos­...
  • Page 49 DIAL ( MULTIPLES OF TIME (MULTIPLES OF TIME RELAY POSITION TAP VALUE ) TAP VALUE ) SECOND S TYPE SECONDS C0-2 0.57 0.22 3 7. 8 0 co-5 14.30 C0-6 1 . 19 2.46 1 . 1 1 4.27 CO-B 1 .
  • Page 52 W E S T I N G H O U S E E L E C T R I C C O R P O R A T I O N R E LAY- I N STR U M E N T D I V I S I O N N EWA R K, N .

This manual is also suitable for:

C0-5C0-6C0-7C0-8C0-9C0-11