Instructions for VCP-W Simple Electrical Ground & Test Device (SEG&TD) with simplified interlock scheme - bottom terminal set version

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IB131018EN Instructions for VCP-W Simple Electrical Ground & Test Device (SEG&TD) with simplified interlock scheme - bottom terminal set version Contents Description Page 1. Introduction...2 2. Description...2 3. Operation...4 Appendix A - Front view...8 Appendix B - Side view...9 Appendix C - Control scheme... 10 Appendix D - Outline drawing... 11 Appendix E - Breaker code plate reference... 12 Appendix F - How to make breaker plates...16 Appendix G - How to make cell plates...17 SEG&TD For use in type VCP-W switchgear rated up to 15 kv, 40 ka bottom terminal set version

IB131018EN CAUTION BECAUSE OF THE UNIQUE APPLICATION AND VAST VARIETY OF SYSTEM/ USER REQUIREMENTS, SPECIFIC SAFE OPERATING PROCEDURES FOR THE USE OF THIS DEVICE MUST BE DEVELOPED BY THE USER. 1. Introduction Type Vac Clad-W switchgear assemblies are designed with all the bus work completely insulated for safety. Since the current carrying parts are not readily accessible, the type VCP-W Simple Ectrical Ground & Test Device (SEG&TD) is designed for insertion into the breaker compartment to gain access to the primary stationary contacts. It provides a convenient means to ground the circuit for maintenance work. Instructions for VCP-W Simple Electrical Ground 2. Description The SEG&TD is a drawout element that can be inserted into a lower circuit breaker compartment in the same manner as a VCP-W circuit breaker. This device is equipped with a set of three bottom terminals (see Figures 1, 2, and 3). In the lower compartment, the terminals of the SEG&TD typically connect to switchgear terminals connected to cables. It is important that the user review the switchgear compartment configuration, to confirm the circuit that he/she intends to ground, prior to using this device. Non roll-on-floor option available There is an equivalent style number available to order this SEG&TD as a non roll-on-floor device. Please contact your Eaton representative for information. Figure 1. SEG&TD (front view). Figure 2. Bottom stabs of the SEG&TD (as provided). 2

Instructions for VCP-W Simple Electrical Ground IB131018EN WARNING IMPROPER USE CAN RESULT IN DEATH, SERIOUS PERSONAL INJURY, OR PROPERTY DAMAGE. 2.3 Basic elements description Selector Switch - The selector switch has the OPEN, OFF and CLOSE positions and operates in association with the remote operating station's OPEN / CLOSE pushbuttons (see Figure 4). Figure 3. Bottom stabs of the SEG&TD (rear view). This device is deeper than the standard VCP-W breaker. The stored energy closing mechanism for the SEG&TD is the same as used in type VCP-W breakers. It is capable of applying the ground against a Live circuit if operational errors have not cleared the circuit. However, in such a case, the relaying at the source of power is expected to cause the source interrupter to clear the circuit. WARNING THIS MANUAL DESCRIBES A SPECIFIC SEG&TD FOR USE AT A SPECIFIC LOCATION. IT SHOULD NOT BE REFERENCED FOR ANY OTHER PURPOSE OR INSTALLATION. Figure 4. Selector switch. NNote: In this design, the selector switch functions as described below. In the OFF position, the SEG&TD is electrically disabled. The selector switch is padlockable in the OFF position. This provides the padlockable function. The selector switch in the CLOSE position allows the execution of a remote CLOSE command. The OPEN function is disabled. Conversely, the selector switch in the OPEN position allows the execution of a remote OPEN command. The CLOSE function is disabled. 2.1 VCP-W interlocks and safety features The SEG&TD is designed to provide as many interlocks and safety features as practical for the personnel performing any of the operations described earlier. The device cannot be levered into or out of the Connected position unless the SEG&TD is open. When working with a "Closed" SEG&TD, the cam on the floor of the compartment will trip the breaker when the device is levered into or out of the Test position. In the Connected position, engaging the levering crank will trip the SEG&TD open. An indicator on the front panel shows the status of the SEG&TD contacts, Open-Ungrounded or Closed-Grounded (see Appendix A). The SEG&TD cannot be manually closed. The spring charging socket and manual close button are both covered by the device front panel (see Appendix A). The SEG&TD can be closed only electrically by a remote operating station at the end of a 50 ft. (15.2 m) cable supplied with the device. The power to operate the SEG&TD in this device is obtained through the secondary disconnect in the breaker compartment. The control switch cable is connected to the device with a twist lock connector. 3

IB131018EN 3.0 Operation 3.1 Safe practices The SEG&TD is a safety-related device. It must be recognized that improper use can result in death, serious personal injury, or property damage. That is why it is important that the user develop specific and safe operating procedures for its use. The following general safe practices are recommended. Instructions for VCP-W Simple Electrical Ground 2. Move the test probe shutter handles to the left then insert the test probes into the test ports for all three phases. Test probes CAUTION THE DEVICE CANNOT BE STORED IN VAC CLAD-W BREAKER COMPART- MENT. IT CAN ONLY BE STORED IN ITS STORAGE COMPARTMENT. 1. Store the device in a clean, dry area free from dust, dirt, moisture, etc. 2. Keep all insulating surfaces, which include primary support insulation and insulation barriers, clean and dry. 3. Check all primary circuit connections to make certain that they are clean and tight. 4. Permit only authorized trained personnel to use this device. 5. Take extreme care while using this device to avoid contacting Live or Hot (energized) terminals. 6. Do not remove the device's front panel while using this device. 7. Always CLOSE the SEG&TD electrically from the farthest distance with the remote control switch. 9. Check for dielectric integrity at 15 kv AC across the terminals to ground with the SEG&TD OPEN. 10. Always install the "test probes" when the SEG&TD is in the "DISCONNECT" position in the breaker cubicle. DANGER IT IS NOT RECOMMENDED THAT YOU INSTALL THE "TEST PROBES" WHEN THE SEG&TD IS IN THE "CONNECTED" POSITION. THE VOLTAGES IN ENERGIZED EQUIPMENT CAN CAUSE DEATH OR SEVERE PERSONAL INJURY. IF ATTEMPTING TO INSERT TEST PROBES WHILE THE SEG&TD IS IN THE "CONNECTED" POSITION USE 20 KV GLOVES. Test probe shutter handles Figure 6. Test probes inserted into the test ports. 3. Once the three test probes are fully inserted, slide the test probe shutter handles to the right to lock the test probes in place. The test port shutter is fully closed when the hole in the left test probe shutter handle aligns with the hole in the test probe shutter locking plate. NNote: The test probe shutter can be locked in place by inserting a padlock through the holes in the left test probe shutter handle and the hole in the test probe shutter locking plate. Left shutter handle 3.2 Ground and test device operation sequence 1. With the SEG&TD control switch in the "OFF" position, insert the SEG&TD into the breaker cubicle in the "DISCONNECT" position. Locking plate Figure 7. Test port shutter locking the test probes in the test ports. Figure 5. SEG&TD inserted into the breaker cubicle. 4. Lift up on the release tabs on the retaining straps and remove the 6 ft. (1.8 m) extension cord from its storage location. Align then insert the male plug of the extension cord into the SEG&TD's remote control female twist-lock receptacle. Turn the male plug clockwise to lock it in place. 4

Instructions for VCP-W Simple Electrical Ground IB131018EN 5. Insert the levering mechanism and rack the SEG&TD into the "CONNECTED" position. Reference the switchgear manufacturer's instruction book for instructions on bypassing the mechanical interlock to permit open door racking so that the SEG&TD can be racked in while the door remains open. Release tab Figure 8. Location of the release tabs on the retaining straps. Figure 11. Levering mechanism used to move the SEG&TD into the "CONNECTED" position. Figure 9. Male plug of the 6 ft. extension cord. 6. Check for the presence of voltage on all three phases using a hot stick mounted test instrument.. Figure 10. Male twist-lock plug locked into the twist-lock receptacle on the SEG&TD. 5

IB131018EN Instructions for VCP-W Simple Electrical Ground 7. If no voltage is detected, insert the remote operating station male twist-lock plug into the 6 ft. twist lock extension cord's female receptacle. Turn the plug and receptacle to lock them together. NNote: The male plug and female receptacle are fully locked when the square tabs are aligned. Alignment tabs Figure 14. Buttons on the remote operating station. 11. Disconnect the remote station cord from the 6 ft. twist-lock extension and turn the SEG&TD control switch to the "OFF" position. Roll the remote station cord up for storage outside of the cubicle. Figure 12. Correct orientation of the alignment tabs on the twist-lock plug and receptacle. 8. Turn the SEG&TD's control switch to the "CLOSE" position. Figure 15. Control switch in the "OFF" position. 12. Remove the male twist-lock plug from the SEG&TD's female receptacle. Store the 6 ft. twist-lock extension in its storage location on the SEG&TD and secure it using the retaining straps. Close the switchgear cubicle door. Figure 13. Control switch in the "CLOSE" position. 9. Unroll the remote operating station cord and step outside the switchgear enclosure. 10. Push and hold the "CLOSE" button on the remote operating station to charge the motor circuit which in turn charges the closing springs and grounds the circuit. Once the SEG&TD is closed, release the "CLOSE" button. Figure 16. Twist-lock extension stored and secured in its storage location. 6

Instructions for VCP-W Simple Electrical Ground IB131018EN 13. Upon completion of the work, open the switchgear cubicle door and locate the 6 ft. twist-lock extension cord. Release it from its storage location. 14. Insert the 6 ft. extension cord's male twist-lock plug into the SEG&TD's remote control twist-lock receptacle and turn the SEG&TD control switch to the "Open" position. Figure 17. Control switch in the "OPEN" position. 15. Remove the remote operating station cord from storage and connect it to the 6 ft. twist-lock extension cord. 16. Unroll the remote operating station cord and step outside the switchgear enclosure. 17. Push the "OPEN" button on the remote operating station to unground the circuit. Figure 19. Levering mechanism used to move the SEG&TD into the "DISCONNECT" position. Figure 18. "OPEN" button on the remote operating station. 18. Insert the levering mechanism and rack the SEG&TD to the "DISCONNECT" position. 19. Disconnect the remote operating station cord from the 6 ft. extension cord. 20. Remove the 6 ft. extension cord, with twist-lock connectors, from the SEG&TD. Secure the 6 ft. extension cord in its storage location usseing the retaining straps. 21. Move the test port shutter to the left to unlock the probes in the test ports. 22. Remove the test probes from the test ports for all three phases. Move the test port shutter to the right to close the test post shutter. 23. Remove the SEG&TD from the cubicle. 7

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix A - Front view 1 10 11 12 2 4 5 3 8 9 7 6 13 1. Probe inserted in the test port 2. Test port padlock (probes inserted) 3. Manual trip button 4. Operations counter 5. Grounding switch position indicator 6. Remote operating station with 50 foot cord 7 Ground Contact 8. Remote operating station receptacle 9. Floor tripper 10. Test port shutter handles 11. Selector switch 12. Selector switch padlock 13. 6 ft. extension cord 8

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix B - Side view 1 2 4 3 1. Selector switch padlock 2. Selector switch 3. Levering latch handle 4. Lower terminal primary contacts 9

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix C - Control scheme 10

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix D - Outline drawing 6.63 [168.47] 40.87 [1038.1] 34.06 [865.0] 20.88 [530.2] 24.63 [625.6] Outline drawing applies to 40 ka rated version only. 11

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix E - Breaker code plate reference The chart below shows a summary of the code plates that are on our Eaton breakers. In order to avoid an interference issue on this particular ground and test device you may need to change the code plates. We apologize for any inconvenience when you encounter code plate interference. The best solution for resolving the interference is to obtain code plates that match the breakers being used. Cross reference this list to find the correct code plates to use. See appendices F & G for information on making code plates. Breaker model Current rating Cycle Class Breaker LH code Breaker LH style code plate Breaker RH code Breaker RH style code plate 150VCP-W 25 1200 3 K=1 12000 8061A47H06 21011 8061A40H07 150VCP-W 25 1200 5 K=1 12000 8061A47H06 21012 8061A41H01 150VCP-W 25 2000 3 K=1 11000 8061A38H06 21011 8061A40H07 150VCP-W 25 2000 5 K=1 11000 8061A38H06 21012 8061A41H01 150VCP-W 25 3000 3 K=1 20000 8061A40H06 21011 8061A40H07 150VCP-W 25 3000 5 K=1 20000 8061A40H06 21012 8061A41H01 150VCP-W 25 C 1200 C C 21010 8061A38H01 21102 8061A44H02 150VCP-W 25 C 2000 C C 21010 8061A38H01 21101 8061A48H03 150VCP-W 25 C 3000 C C 21010 8061A38H01 21110 8061A38H03 150VCP-W 40 1200 3 K=1 12000 8061A47H06 11011 8061A38H05 150VCP-W 40 1200 5 K=1 12000 8061A47H06 11012 8061A38H04 150VCP-W 40 2000 3 K=1 11000 8061A38H06 11011 8061A38H05 150VCP-W 40 2000 5 K=1 11000 8061A38H06 11012 8061A38H04 150VCP-W 40 3000 3 K=1 20000 8061A40H06 11011 8061A38H05 150VCP-W 40 3000 5 K=1 20000 8061A40H06 11012 8061A38H04 150VCP-W 40 C 1200 C C 00010 8061A39H04 10102 8061A46H02 150VCP-W 40 C 2000 C C 00010 8061A39H04 10101 8061A50H02 150VCP-W 40 C 3000 C C 00010 8061A39H04 10110 8061A39H05 150VCP-W 50 1200 3 K=1 12000 8061A47H06 10011 8061A40H02 150VCP-W 50 1200 5 K=1 12000 8061A47H06 10012 8061A42H01 150VCP-W 50 2000 3 K=1 11000 8061A38H06 10011 8061A40H02 150VCP-W 50 2000 5 K=1 11000 8061A38H06 10012 8061A42H01 150VCP-W 50 3000 3 K=1 20000 8061A40H06 10011 8061A40H02 150VCP-W 50 3000 5 K=1 20000 8061A40H06 10012 8061A42H01 150VCP-W 50 C 1200 C C 00010 8061A39H04 00102 8061A39H06 150VCP-W 50 C 2000 C C 00010 8061A39H04 00101 8061A39H07 150VCP-W 50 C 3000 C C 00010 8061A39H04 00110 8061A39H08 150VCP-W 63 1200 3 K=1 10010 8061A39H01 00002 8061A39H02 150VCP-W 63 1200 3 K=1 10010 8061A39H01 00002 8061A39H02 150VCP-W 63 1200 5 K=1 10020 8061A33H01 00002 8061A39H02 150VCP-W 63 1200 5 K=1 10020 8061A33H01 00002 8061A39H02 150VCP-W 63 2000 3 K=1 10010 8061A39H01 00001 8061A39H03 150VCP-W 63 2000 3 K=1 10010 8061A39H01 00001 8061A39H03 150VCP-W 63 2000 5 K=1 10020 8061A33H01 00001 8061A39H03 150VCP-W 63 2000 5 K=1 10020 8061A33H01 00001 8061A39H03 150VCP-W 63 3000 3 K=1 10010 8061A39H01 00010 8061A39H04 150VCP-W 63 3000 3 K=1 10010 8061A39H01 00010 8061A39H04 150VCP-W 63 3000 5 K=1 10020 8061A33H01 00010 8061A39H04 150VCP-W 63 3000 5 K=1 10020 8061A33H01 00010 8061A39H04 150VCP-W 63 C 1200 C C 10000 8061A50H03 00002 8061A39H02 150VCP-W 63 C 2000 C C 10000 8061A50H03 00001 8061A39H03 150VCP-W 63 C 3000 C C 10000 8061A50H03 00010 8061A39H04 150VCP-W1000 1200 3 K>1 10010 8061A39H01 10002 8061A46H01 150VCP-W1000 1200 5 K>1 10020 8061A33H01 10002 8061A46H01 150VCP-W1000 2000 3 K>1 10010 8061A39H01 10001 8061A50H01 12

Instructions for VCP-W Simple Electrical Ground IB131018EN Breaker model Current rating Cycle Class Breaker LH code Breaker LH style code plate Breaker RH code Breaker RH style code plate 150VCP-W1000 2000 5 K>1 10020 8061A33H01 10001 8061A50H01 150VCP-W1000 3000 3 K>1 10010 8061A39H01 10010 8061A39H01 150VCP-W1000 3000 5 K>1 10020 8061A33H01 10010 8061A39H01 150VCP-W500 1200 3 K>1 22010 8061A37H01 22002 8061A43H01 150VCP-W500 1200 5 K>1 22020 8061A31H01 22002 8061A43H01 150VCP-W500 2000 3 K>1 22010 8061A37H01 22001 8061A47H01 150VCP-W500 2000 5 K>1 22020 8061A31H01 22001 8061A47H01 150VCP-W500 3000 3 K>1 22010 8061A37H01 22010 8061A37H01 150VCP-W500 3000 5 K>1 22020 8061A31H01 22010 8061A37H01 150VCP-W500 H 1200 3 K>1 22010 8061A37H01 21002 8061A44H01 150VCP-W500 H 1200 5 K>1 22020 8061A31H01 21002 8061A44H01 150VCP-W500 H 2000 3 K>1 22010 8061A37H01 21001 8061A48H01 150VCP-W500 H 2000 5 K>1 22020 8061A31H01 21001 8061A48H01 150VCP-W500 H 3000 3 K>1 22010 8061A37H01 21010 8061A38H01 150VCP-W500 H 3000 5 K>1 22020 8061A31H01 21010 8061A38H01 150VCP-W750 1200 3 K>1 21010 8061A38H01 21002 8061A44H01 150VCP-W750 1200 5 K>1 21020 8061A32H01 21002 8061A44H01 150VCP-W750 2000 3 K>1 21010 8061A38H01 21001 8061A48H01 150VCP-W750 2000 5 K>1 21020 8061A32H01 21001 8061A48H01 150VCP-W750 3000 3 K>1 21010 8061A38H01 21010 8061A38H01 150VCP-W750 3000 5 K>1 21020 8061A32H01 21010 8061A38H01 150VCP-W750 H 1200 3 K>1 21010 8061A38H01 10002 8061A46H01 150VCP-W750 H 1200 5 K>1 21020 8061A32H01 10002 8061A46H01 150VCP-W750 H 2000 3 K>1 21010 8061A38H01 10001 8061A50H01 150VCP-W750 H 2000 5 K>1 21020 8061A32H01 10001 8061A50H01 150VCP-W750 H 3000 3 K>1 21010 8061A38H01 10010 8061A39H01 150VCP-W750 H 3000 5 K>1 21020 8061A32H01 10010 8061A39H01 150VCP-WG 50 1200 3 K=1 10020 8061A33H01 00002 8061A39H02 150VCP-WG 50 2000 3 K=1 10020 8061A33H01 00001 8061A39H03 150VCP-WG 50 3000 3 K=1 10020 8061A33H01 00010 8061A39H04 150VCP-WG 63 1200 3 K=1 10020 8061A33H01 00002 8061A39H02 150VCP-WG 63 2000 3 K=1 10020 8061A33H01 00001 8061A39H03 150VCP-WG 63 3000 3 K=1 10020 8061A33H01 00010 8061A39H04 50VCP-W 25 1200 3 K=1 12002 8061A47H05 21011 8061A40H07 50VCP-W 25 1200 5 K=1 12002 8061A47H05 21012 8061A41H01 50VCP-W 25 2000 3 K=1 11002 3A74923H01 21011 8061A40H07 50VCP-W 25 2000 5 K=1 11002 3A74923H01 21012 8061A41H01 50VCP-W 25 3000 3 K=1 20002 8061A45H01 21011 8061A40H07 50VCP-W 25 3000 5 K=1 20002 8061A45H01 21012 8061A41H01 50VCP-W 25 C 1200 C C 21012 8061A41H01 21102 8061A44H02 50VCP-W 25 C 2000 C C 21012 8061A41H01 21101 8061A48H03 50VCP-W 25 C 3000 C C 21012 8061A41H01 21110 8061A38H03 50VCP-W 40 1200 3 K=1 12002 8061A47H05 11011 8061A38H05 50VCP-W 40 1200 5 K=1 12002 8061A47H05 11012 8061A38H04 50VCP-W 40 2000 3 K=1 11002 3A74923H01 11011 8061A38H05 50VCP-W 40 2000 5 K=1 11002 3A74923H01 11012 8061A38H04 50VCP-W 40 3000 3 K=1 20002 8061A45H01 11011 8061A38H05 50VCP-W 40 3000 5 K=1 20002 8061A45H01 11012 8061A38H04 50VCP-W 40 C 1200 C C 00012 8061A42H02 10102 8061A46H02 50VCP-W 40 C 2000 C C 00012 8061A42H02 10101 8061A50H02 13

IB131018EN Instructions for VCP-W Simple Electrical Ground Breaker model Current rating Cycle Class Breaker LH code Breaker LH style code plate Breaker RH code Breaker RH style code plate 50VCP-W 40 C 3000 C C 00012 8061A42H02 10110 8061A39H05 50VCP-W 50 1200 3 K=1 12002 8061A47H05 10011 8061A40H02 50VCP-W 50 1200 5 K=1 12002 8061A47H05 10012 8061A42H01 50VCP-W 50 2000 3 K=1 11002 3A74923H01 10011 8061A40H02 50VCP-W 50 2000 5 K=1 11002 3A74923H01 10012 8061A42H01 50VCP-W 50 3000 3 K=1 20002 8061A45H01 10011 8061A40H02 50VCP-W 50 3000 5 K=1 20002 8061A45H01 10012 8061A42H01 50VCP-W 50 C 1200 C C 00012 8061A42H02 00102 8061A39H06 50VCP-W 50 C 2000 C C 00012 8061A42H02 00101 8061A39H07 50VCP-W 50 C 3000 C C 00012 8061A42H02 00110 8061A39H08 50VCP-W 63 1200 3 K=1 10012 8061A42H01 00002 8061A39H02 50VCP-W 63 1200 3 K=1 10012 8061A42H01 00002 8061A39H02 50VCP-W 63 1200 5 K=1 10022 8061A36H01 00002 8061A39H02 50VCP-W 63 1200 5 K=1 10022 8061A36H01 00002 8061A39H02 50VCP-W 63 2000 3 K=1 10012 8061A42H01 00001 8061A39H03 50VCP-W 63 2000 3 K=1 10012 8061A42H01 00001 8061A39H03 50VCP-W 63 2000 5 K=1 10022 8061A36H01 00001 8061A39H03 50VCP-W 63 2000 5 K=1 10022 8061A36H01 00001 8061A39H03 50VCP-W 63 3000 3 K=1 10012 8061A42H01 00010 8061A39H04 50VCP-W 63 3000 3 K=1 10012 8061A42H01 00010 8061A39H04 50VCP-W 63 3000 5 K=1 10022 8061A36H01 00010 8061A39H04 50VCP-W 63 3000 5 K=1 10022 8061A36H01 00010 8061A39H04 50VCP-W 63 C 1200 C C 00012 8061A42H02 00002 8061A39H02 50VCP-W 63 C 2000 C C 00012 8061A42H02 00001 8061A39H01 50VCP-W 63 C 3000 C C 00012 8061A42H02 00010 8061A39H04 50VCP-W ND 250 1200 3 K>1 21212 8061A61H01 None None 50VCP-W ND 250 1200 5 K>1 21222 8061A60H01 None None 50VCP-W250 1200 3 K>1 21012 8061A41H01 21002 8061A44H01 50VCP-W250 1200 5 K>1 21022 8061A35H01 21002 8061A44H01 50VCP-W250 2000 3 K>1 21012 8061A41H01 21001 8061A48H01 50VCP-W250 2000 5 K>1 21022 8061A35H01 21001 8061A48H01 50VCP-W250 3000 3 K>1 21012 8061A41H01 21010 8061A38H01 50VCP-W250 3000 5 K>1 21022 8061A35H01 21010 8061A38H01 50VCP-W250 H 1200 3 K>1 21012 8061A41H01 10002 8061A46H01 50VCP-W250 H 1200 5 K>1 21022 8061A35H01 10002 8061A46H01 50VCP-W250 H 2000 3 K>1 21012 8061A41H01 10001 8061A50H01 50VCP-W250 H 2000 5 K>1 21022 8061A35H01 10001 8061A50H01 50VCP-W250 H 3000 3 K>1 21012 8061A41H01 10010 8061A39H01 50VCP-W250 H 3000 5 K>1 21022 8061A35H01 10010 8061A39H01 50VCP-W350 1200 3 K>1 10012 8061A42H01 10002 8061A46H01 50VCP-W350 1200 5 K>1 10022 8061A36H01 10002 8061A46H01 50VCP-W350 2000 3 K>1 10012 8061A42H01 10001 8061A50H01 50VCP-W350 2000 5 K>1 10022 8061A36H01 10001 8061A50H01 50VCP-W350 3000 3 K>1 10012 8061A42H01 10010 8061A39H01 50VCP-W350 3000 5 K>1 10022 8061A36H01 10010 8061A39H01 50VCP-WG 50 1200 3 K=1 10022 8061A36H01 00002 8061A39H02 50VCP-WG 50 2000 3 K=1 10022 8061A36H01 00001 8061A39H03 50VCP-WG 50 3000 3 K=1 10022 8061A36H01 00010 8061A39H04 50VCP-WG 63 1200 3 K=1 10022 8061A36H01 00002 8061A39H02 50VCP-WG 63 2000 3 K=1 10022 8061A36H01 00001 8061A39H03 14

Instructions for VCP-W Simple Electrical Ground IB131018EN Breaker model Current rating Cycle Class Breaker LH code Breaker LH style code plate Breaker RH code Breaker RH style code plate 50VCP-WG 63 3000 3 K=1 10022 8061A36H01 00010 8061A39H04 75VCP-W 40 1200 3 K=1 12001 8061A47H02 11011 8061A38H05 75VCP-W 40 1200 5 K=1 12001 8061A47H02 11012 8061A38H04 75VCP-W 40 2000 3 K=1 11001 8061A48H02 11011 8061A38H05 75VCP-W 40 2000 5 K=1 11001 8061A48H02 11012 8061A38H04 75VCP-W 40 3000 3 K=1 20001 8061A49H01 11011 8061A38H05 75VCP-W 40 3000 5 K=1 20001 8061A49H01 11012 8061A38H04 75VCP-W 50 1200 3 K=1 12001 8061A47H02 10011 8061A40H02 75VCP-W 50 1200 5 K=1 12001 8061A47H02 10012 8061A42H01 75VCP-W 50 2000 3 K=1 11001 8061A48H02 10011 8061A40H02 75VCP-W 50 2000 5 K=1 11001 8061A48H02 10012 8061A42H01 75VCP-W 50 3000 3 K=1 20001 8061A49H01 10011 8061A40H02 75VCP-W 50 3000 5 K=1 20001 8061A49H01 10012 8061A42H01 75VCP-W 50 C 1200 C C 10011 8061A40H02 00102 8061A46H02 75VCP-W 50 C 2000 C C 10011 8061A40H02 00101 8061A50H02 75VCP-W 50 C 3000 C C 10011 8061A40H02 00110 8061A39H05 75VCP-W500 1200 3 K>1 20011 8061A40H01 20002 8061A45H01 75VCP-W500 1200 5 K>1 20021 8061A34H01 20002 8061A45H01 75VCP-W500 2000 3 K>1 20011 8061A40H01 20001 8061A49H01 75VCP-W500 2000 5 K>1 20021 8061A34H01 20001 8061A49H01 75VCP-W500 3000 3 K>1 20011 8061A40H01 20010 8061A51H01 75VCP-W500 3000 5 K>1 20021 8061A34H01 20010 8061A51H01 15

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix F - How to make breaker plates 16

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix G - How to make cell plates 17

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix G - How to make cell plates (cont.) 18

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix G - How to make cell plates (cont.) 19

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix G - How to make cell plates (cont.) 20

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix G - How to make cell plates (cont.) 21

IB131018EN Instructions for VCP-W Simple Electrical Ground Appendix G - How to make cell plates (cont.) 22

Instructions for VCP-W Simple Electrical Ground IB131018EN Appendix G - How to make cell plates (cont.) 23

IB131018EN Instructions for VCP-W Simple Electrical Ground The instructions for installation, testing, maintenance, or repair herein are provided for the use of the product in general commercial applications and may not be appropriate for use in nuclear applications. Additional instructions may be available upon specific request to replace, amend, or supplement these instructions to qualify them for use with the product in safety-related applications in a nuclear facility. The information, recommendations, descriptions, and safety notations in this document are based on Eaton s experience and judgment with respect to Retrofitting of Power Breakers. This instructional literature is published solely for information purposes and should not be considered all-inclusive. If further information is required, you should consult an authorized Eaton sales representative. The sale of the product shown in this literature is subject to the terms and conditions outlined in appropriate Eaton selling policies or other contractual agreement between the parties. This literature is not intended to and does not enlarge or add to any such contract. The sole source governing the rights and remedies of any purchaser of this equipment is the contract between the purchaser and Eaton. NO WARRANTIES, EXPRESSED OR IMPLIED, INCLUDING WARRANTIES OF FITNESS FOR A PARTICULAR PURPOSE OR MERCHANTABILITY, OR WARRANTIES ARISING FROM COURSE OF DEALING OR USAGE OF TRADE, ARE MADE REGARDING THE INFORMATION, RECOMMENDATIONS, AND DESCRIPTIONS CONTAINED HEREIN. In no event will Eaton be responsible to the purchaser or user in contract, in tort (including negligence), strict liability or otherwise for any special, indirect, incidental or consequential damage or loss whatsoever, including but not limited to damage or loss of use of equipment, plant or power system, cost of capital, loss of power, additional expenses in the use of existing power facilities, or claims against the purchaser or user by its customers resulting from the use of the information, recommendations and description contained herein. Eaton Electrical Sector 1000 Eaton Boulevard Cleveland, OH 44122 United States 877-ETN-CARE (877-386-2273) Eaton.com 2017 Eaton All Rights Reserved Printed in USA Publication No. IL131018EN / TBG1265 January 2017 Eaton is a registered trademark. All other trademarks are property of their respective owners.