36C25522Q0070_JB.pdf
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PAGE 1 OF 1. REQUISITION NO.
2. CONTRACT NO. 3. AWARD/EFFECTIVE DATE 4. ORDER NO. 5. SOLICITATION NUMBER 6. SOLICITATION ISSUE DATE
a. NAME b. TELEPHONE NO. (No Collect Calls) 8. OFFER DUE DATE/LOCAL
TIME
9. ISSUED BY CODE 10. THIS ACQUISITION IS UNRESTRICTED OR SET ASIDE: % FOR:
SMALL BUSINESS
HUBZONE SMALL
BUSINESS
SERVICE-DISABLED
VETERAN-OWNED
SMALL BUSINESS
WOMEN-OWNED SMALL BUSINESS
(WOSB) ELIGIBLE UNDER THE WOMEN-OWNED
SMALL BUSINESS PROGRAM
EDWOSB
8(A)
NAICS:
SIZE STANDARD:
11. DELIVERY FOR FOB DESTINA-
TION UNLESS BLOCK IS
MARKED
SEE SCHEDULE
12. DISCOUNT TERMS
13a. THIS CONTRACT IS A
RATED ORDER UNDER
DPAS (15 CFR 700)
13b. RATING
14. METHOD OF SOLICITATION
RFQ IFB RFP
15. DELIVER TO CODE 16. ADMINISTERED BY CODE
17a. CONTRACTOR/OFFEROR CODE FACILITY CODE 18a. PAYMENT WILL BE MADE BY CODE
TELEPHONE NO. DUNS: DUNS+4:
PHONE: FAX:
17b. CHECK IF REMITTANCE IS DIFFERENT AND PUT SUCH ADDRESS IN OFFER
18b. SUBMIT INVOICES TO ADDRESS SHOWN IN BLOCK 18a UNLESS BLOCK BELOW IS CHECKED
SEE ADDENDUM
19. 20. 21. 22. 23. 24.
ITEM NO. SCHEDULE OF SUPPLIES/SERVICES QUANTITY UNIT UNIT PRICE AMOUNT
(Use Reverse and/or Attach Additional Sheets as Necessary)
25. ACCOUNTING AND APPROPRIATION DATA 26. TOTAL AWARD AMOUNT (For Govt. Use Only)
27a. SOLICITATION INCORPORATES BY REFERENCE FAR 52.212-1, 52.212-4. FAR 52.212-3 AND 52.212-5 ARE ATTACHED. ADDENDA ARE ARE NOT ATTACHED.
27b. CONTRACT/PURCHASE ORDER INCORPORATES BY REFERENCE FAR 52.212-4. FAR 52.212-5 IS ATTACHED. ADDENDA ARE ARE NOT ATTACHED
28. CONTRACTOR IS REQUIRED TO SIGN THIS DOCUMENT AND RETURN _______________ 29. AWARD OF CONTRACT: REF. ___________________________________ OFFER COPIES TO ISSUING OFFICE. CONTRACTOR AGREES TO FURNISH AND DATED ________________________________. YOUR OFFER ON SOLICITATION DELIVER ALL ITEMS SET FORTH OR OTHERWISE IDENTIFIED ABOVE AND ON ANY (BLOCK 5), INCLUDING ANY ADDITIONS OR CHANGES WHICH ARE ADDITIONAL SHEETS SUBJECT TO THE TERMS AND CONDITIONS SPECIFIED SET FORTH HEREIN IS ACCEPTED AS TO ITEMS:
30a. SIGNATURE OF OFFEROR/CONTRACTOR 31a. UNITED STATES OF AMERICA (SIGNATURE OF CONTRACTING OFFICER)
30b. NAME AND TITLE OF SIGNER (TYPE OR PRINT) 30c. DATE SIGNED 31b. NAME OF CONTRACTING OFFICER (TYPE OR PRINT) 31c. DATE SIGNED
AUTHORIZED FOR LOCAL REPRODUCTION (REV. 2/2012)
PREVIOUS EDITION IS NOT USABLE Prescribed by GSA - FAR (48 CFR) 53.212
7. FOR SOLICITATION
INFORMATION CALL:
STANDARD FORM 1449
OFFEROR TO COMPLETE BLOCKS 12, 17, 23, 24, & 30
SOLICITATION/CONTRACT/ORDER FOR COMMERCIAL ITEMS
589-22-1-2944-0005
12/03/2021 36C25522Q0070 12-03-2021
Jessica Barton jessica.barton1@va.gov 913-946-1987 12-13-2021
4:00 PM CST
36C255 Department of Veterans Affairs Network Contracting Office (NCO) 15 3450 S 4th Street Trafficway
Leavenworth KS 66048
X 100
X
238210
$16.5 Million
N/A
X
Eastern Kansas Healthcare System Dwight D. Eisenhower VAMC 4101 S. 4th Street
Leavenworth KS 66048
36C255
Department of Veterans Affairs Network Contracting Office (NCO) 15 3450 S 4th Street Trafficway
Leavenworth KS 66048
36C255
Department of Veterans Affairs Financial Services Center http://www.fsc.va.gov/einvoice.asp
Austin TX
877-353-9791 512-460-5429
See CONTINUATION Page
Electrical Distribution System - Three Year Inspection at the Leavenworth VAMC, per the attached SOW.
Inspection shall begin NLT 31 December 2021.
Evaluation Criteria: LPTA
See CONTINUATION Page
X X
X 1
Jessica Barton Contracting Officer
36C25522Q0070
Table of Contents
SECTION A
A.1 SF 1449 SOLICITATION/CONTRACT/ORDER FOR COMMERCIAL ITEMS
SECTION B - CONTINUATION OF SF 1449 BLOCKS
B.1 CONTRACT ADMINISTRATION DATA
B.2 STATEMENT OF WORK
B.3 PRICE/COST SCHEDULE
ITEM INFORMATION
B.4 DELIVERY SCHEDULE
SECTION C - CONTRACT CLAUSES
C.1 52.212-4 CONTRACT TERMS AND CONDITIONS—COMMERCIAL ITEMS (OCT
2018)
C.2 VAAR 852.212-70 PROVISIONS AND CLAUSES APPLICABLE TO VA
ACQUISITION OF COMMERCIAL ITEMS (APR 2020)
C.3 VAAR 852.219-74 LIMITATIONS ON SUBCONTRACTING—MONITORING AND
COMPLIANCE (JUL 2018)
C.4 52.252-2 CLAUSES INCORPORATED BY REFERENCE (FEB 1998)
C.5 52.212-5 CONTRACT TERMS AND CONDITIONS REQUIRED TO IMPLEMENT
STATUTES OR EXECUTIVE ORDERS—COMMERCIAL ITEMS (JAN 2021) (JUL 2020)
(DEVIATION)
SECTION E - SOLICITATION PROVISIONS
E.1 52.212-1 INSTRUCTIONS TO OFFERORS—COMMERCIAL ITEMS (SEP 2021)85
E.2 52.204-24 REPRESENTATION REGARDING CERTAIN TELECOMMUNICATIONS
AND VIDEO SURVEILLANCE SERVICES OR EQUIPMENT (OCT 2020)
E.3 52.252-1 SOLICITATION PROVISIONS INCORPORATED BY REFERENCE (FEB
1998)
E.4 52.212-2 EVALUATION—COMMERCIAL ITEMS (OCT 2014)
36C25522Q0070
SECTION B - CONTINUATION OF SF 1449 BLOCKS
B.1 CONTRACT ADMINISTRATION DATA
1. Contract Administration: All contract administration matters will be handled by the following individuals:
a. CONTRACTOR:
b. GOVERNMENT: Contracting Officer 36C255 Department of Veterans Affairs Network Contracting Office (NCO) 15 3450 S 4th Street Trafficway Leavenworth KS 66048
2. CONTRACTOR REMITTANCE ADDRESS: All payments by the Government to the contractor will be made in accordance with:
[X] 52.232-33, Payment by Electronic Funds Transfer—System For Award Management, or
[] 52.232-36, Payment by Third Party
3. INVOICES: Invoices shall be submitted in arrears:
a. Quarterly []
b. Semi-Annually []
c. Other [X] Upon Completion and Acceptance of Services
4. GOVERNMENT INVOICE ADDRESS: All Invoices from the contractor shall be submitted electronically in accordance with VAAR Clause 852.232-72 Electronic Submission of Payment Requests.
Department of Veterans Affairs Financial Services Center http://www.fsc.va.gov/einvoice.asp Austin TX
ACKNOWLEDGMENT OF AMENDMENTS: The offeror acknowledges receipt of amendments to the Solicitation numbered and dated as follows:
AMENDMENT NO DATE
B.2 STATEMENT OF WORK
TRI ANNUAL ELECTRICAL INSPECTION
and MAINTENANCE PROJECT
Provide all necessary labor, material, and equipment to perform Electrical System Three Year Test 2021 for the Dwight D. Eisenhower VA Medical Center, 4101 South 4th Street Trafficway, Leavenworth, KS 66048.
CLIN DESCRIPTION QTY UNIT AMOUNT
Perform Electrical System Three Year Test for the VAMC, Leavenworth, KS
1 JB TBD
Contractor must provide all-inclusive price. Any costs not incorporated into the contractor’s price will not be reimbursed by the Government.
Site Visit: Contact Engineering Department Representative (Electric Shop Supervisor) to schedule date and time for site inspection.
Please include this purchase order number on all invoices: Project Number 589A6-22-900
The Contracting Officer Technical Representative (COR) is Robert Armstrong and Trevor Huhn
SECTION 01 00 00
GENERAL REQUIREMENTS
1.1 GENERAL INTENTION
A. Contractor shall completely prepare to perform work for
Conduct 3-Year Electrical Test as required by drawings and specifications.
B. Visits to the site by Bidders may be made only by appointment with the COR at
913-682-2000, Ext. 52950.
C. Prior to commencing work, general contractor shall provide proof that an OSHA certified “competent person” (29 CFR 1926.20(b)(2) will maintain a presence at the work site whenever the general or subcontractors are present.
D. All employees of general contractor and subcontractors shall comply with VA security management program and obtain permission of the VA police, be identified by project and employer, and restricted from unauthorized access.
E. Prior to commencing work, general contractor shall provide proof that an OSHA certified “competent person” (CP) (29 CFR 1926.20(b)(2) will maintain a presence at the work site whenever the general or subcontractors are present.
F. Training:
1. All employees of general contractor or subcontractors shall have the 10-hour
OSHA certified Construction Safety course and /or other relevant competency training, as determined by VA. OSHA certified “competent person” shall have the 30-hour OSHA certified Construction Safety course.
2. Submit training records of all such employees for approval before the start of work.
1.1 A General
Contractor shall conduct testing of the Electrical distribution system in accordance with the National Fire Protection Association (NFPA) 70E, Standard for Electrical safety in the Workplace. The testing shall include all significant locations in the electrical distribution system (switchboards, switchgear, motor control centers, panelboards, busways and all supporting panels, etc..) from the incoming utility equipment or cabling down to 208V systems fed from transformers equal to or greater than 125 KVA where work could be performed on energized circuits. Data collection and documentation shall include the entire 208V systems. The study shall be performed using software programs specifically designed to standards governing short-circuit, protective coordination and arc flash hazard calculations. Final submittals shall include a formal reporting of findings, collection of data and study calculations in a comprehensive report.
Requirements: Scope of work will consist of the following phases.
#1. Data Gathering and Field Verification
Contractor shall:
A. Field verify and mark up existing single line drawings needed to perform an accurate study. In the event single line drawings are not available the contractor shall develop single line drawings to reflect the "as built" configuration of the facility electrical distribution system.
B. Compile and document the necessary system data required to complete an accurate and thorough study. Data shall include but is not limited to (as applicable)
i. Location (building and room) to include but not limited to the following buildings: 21, 33, 36, 39, 41, 42, 54, 66, 71, 77, 81, Hospital A B C (88,89,90,91N&S), 94, 95, 97, 110, 117, 122, 129, 143, T150, 153, 155, 157, 158, 160, 161, 161A and 162.
ii. Equipment Identification to include proper labeling
iii. Equipment Information to following.
1) Manufacturer, Model, Catalog Number and Type
2) Equipment Rating (Voltage, Ampacity, Interrupting Rating, etc)
3. Configuration (Main Lug, Main Breaker, Number of Breakers, Panels etc)
iv. Overcurrent Protection
1) Relaying Type, Manufacturer, Function (s), CT and PT ratios, etc.
2) Fuse Type, Manufacturer, Rating, etc.
3) Existing Settings
V. Cable Type, Size and Length to be field confirmed.
Vi. Cable Busway: Type, Manufacturer, Rating and Length.
Vii. Motor lead and Contactor Data (record data and application for motors 25 HP and above)
Viii. Install labels required per arc flash regulations and update all legends in panels throughout Campus buildings.
Viiii. Contractor must coordinate with engineering designated staff to obtain necessary power.
X. Contractor must compile all data required for proper completion of all testing and include this documentation in final submittal.
Xi. Data collection requires observing each piece of equipment covered by this study, includes removal and/or opening of equipment to field verify data and equipment to be infrared scanned at the time for both thermal and visual images.
Xii. Contractor shall record and report any deficiencies, such as missing labels, warning labels, non-functioning latches or locks, missing hardware (covers, screws, breaker blank fillers etc..) and resolve deficiencies prior to project being completed.
Xiiii. Contractor shall provide a Protective Device Coordination study to determine satisfactory setting and rating for the facility’s protective devices in accordance with applicable industrial standards such as ANSI/IEEE 399 and ANSI/IEEE 242.
Coordination study results must include time-current curves (TCC) and provided with project submittals. Deficiencies in device settings or rated equipment are to be noted in report. Protective device settings are to be tabulated separately and included min report. Contractor shall set adjustable protective devices to reflect proposed settings identified in the Protection Coordination study. This must be coordinated with facility engineering staff as certain device settings can only be performed during a power outage.
XVii. Contractor shall provide a minimum 4-hour arc flash awareness training class on site for identified personnel to include discussion of personal protective equipment
XViii. Upon completion of 3-year testing, contractor shall submit three (3) bound copies including electronic version on CD or DVD of the final report containing the following:
Executive summary: Descriptions, purpose ,basis and scope of the studies: Tabulation of circuit breaker, fuse, and other protective device ratings versus calculated short-circuit duties: Protective device time versus current coordination curves, tabulations of relay and circuit breaker trip unit settings and fuse selection: Recommendations for system improvements, where needed: Electrical system one-line diagram in printed and electronic version, electronic version must be AutoCad and PDF formats. NOTE:
Recommendations for system improvement must be clearly identified in report.
XViiii. Exit Briefing will be conducted by contractor for engineering staff upon completion of study but prior to issuing study submittals. It will consist of overview of each study phase and related issues. Identifying any deficiencies to include defective equipment, dangerous arc flash hazard areas, National Electric Code violations and recommendations to resolve identified concerns.
C. Contractor shall start inspection NLT 31 Dec 2021, and complete with all reports submitted, prior to 30 Jan 2022.
1.2 STATEMENT OF BID ITEM(S)
A. ITEM I, GENERAL CONSTRUCTION: The contractor shall perform electrical systems testing, documentation, and equipment preventive maintenance, including primary feeders, primary and secondary breakers, switches, transformers, etc., for buildings throughout the facility as listed.
1. Power disruption during business hours shall be minimized as much as possible requiring work to be performed evenings and weekends. All scheduling of work shall be coordinated with and approved by Project
Engineer.
2. VA personnel will monitor and assist contractor while performing all switch operations to de-energize and energize the equipment to be tested.
3. The contractor will disconnect all cables, lightning arresters, capacitors, potential transformers, etc., required to perform the tests described.
4. NOTE: All molded case circuit breaker mechanical tests shall include infrared scan surveys.
B. Drawings No. EOOD, 4160 Volt Distribution One Line Diagrams:
5. Test identified medium voltage cable segments, sectionalizers, 15 KV metal clad switchgears, switches, oil filled transformers, air switches, power factor capacitors, meters, protective relays, and dry type transformers. (Note 1:
the transformers and the switches within the Evergy substation shown on drawing 3A will not be tested.)
(Note 2: All air switches are 15KV gear but are switching a 5KV power distribution voltage.)
6. The Main 15KV metal clad switchgear near the Evergy substation and the
5KV switchgear near Building 90 will be de-energized. Therefore, the 5KV main buses will be cleaned. Note: The main and feeder breakers will be de-energized, and a spare breaker installed in order to test and maintain and adjust the main and feeder breakers. (Note: Metal Clad Main Distribution
System is 15KV gear but is supplying a 5KV power distribution voltage.)
C. Drawing E122,157, T23 Building 122 One Line Diagram.
7. Mechanically test all 208-volt breakers in the main switchboard 122-MB1 and electrically test the main breaker.
8. Test two banks of 15 kvar capacitors.
9. Mechanically test the main breaker in the dining north panel.
10. Mechanically test LS-MB 70A 3—pole and life safety 70A 3-pole breakers.
11. Mechanically test critical 600A 3-pole breaker.
12. Mechanically test all 208-volt breakers in emergency distribution panel 122-
EDP.
D. Drawing No.122,157 T41 – Building 122, 157 One Line Diagram.
13. Mechanically test all 480-volt breakers located in main switchboard 157 and electrically test switchboard 157 main breakers and CH1, CH2.
14. Mechanically test all 480-volt breakers located in main switchboard 122-MB2 and electrically test switchboard 122-MB2 main breaker.
15. Test the current transformers, potential transformers and metering located in main switchboard 122-MB2.
E. Drawing No. E153 T40 – Building 153 One Line Diagram.
16. Mechanically test all 480-volt breakers located in main switchboard 153-MB1 and electrically test the main circuit breaker.
17. Mechanically test all 480-volt breakers and starters in Motor Control Centers
153-MCC-1 and 153-MCC-1A.
F. Drawing No. E37,39,95,129 T37 – Building 39, 37, 95 and 129 One Line
Diagrams.
18. Mechanically test all 208-volt breakers in main switchboard 39-MB1 and the main breaker in the boiler room motor control center.
19. Test current transformers, potential transformers and metering.
G. Drawing No. E156,161,161A – Chiller Plant Power Single Line Diagram.
20. Mechanically test all 480-volt circuit breakers in the motor control center
MCC-1C and electrically test MCC-1C main breaker.
21. Test all current transformers and metering located in MCC-1C.
H. Drawing E160 – Domiciliary Power Single Line Diagram.
22. Mechanically test all 480-volt breakers in the distribution switchboard, panel board EDP1, and motor control centers MCC and EMCC and electrically test the main breaker in panel board EDP1.
23. Mechanically test 480 main breakers in panel boards HAU, HAU1, HK, EH1, EHK and EHK1.
24. Mechanically test all 208-volt breakers in distribution panel board LDP1.
25. Mechanically test all 208-volt main breakers in panels LAU, LAIU, LAL, LAIL, LBU, LCU, CU1, LK and LKI.
26. Test all current transformers and metering in the 480 volt and 120-volt distribution switchboards and in the motor control centers.
I. Drawing No. E88,89 T27 –Building 88a and 89 One Line Diagram.
27. Electrically test the main breaker and mechanically test all 208-volt breakers in main switchboard 88/89 MB1 and distribution panels 89-LC01, 89-LC02, 89-LC11 and 89-LC21.
28. Mechanically test the 208 main breakers in distribution panel 89-MCC and in panels 88-BA, 88-GB, 88-1A, 88-1B, 88-2A, 88-2B, 88-3A, 88-3B, 88-4A, 88-4B, 89-3A, 89-3B and 89-3C.
29. Test all current transformers, potential transformers and metering in main switchboard 88/89-MB1.
J. Drawing E90 T28 – Building 90 One Line Diagram.
30. Electrically test the main breaker and mechanically test all 208-volt breakers in main switchboard 90-MB1 and distribution panels 90 LC31, 90-LCB1, 90-
DA, 90-DB, and 90-LC01.
31. Mechanically test the 208 volt main breakers in panels 90-1A, 90-1B, 90-2A, 90-2B, 90-4A, 90-4B, 90-5A, 90-5B, 90-1C, 90-1D, 90-2C, 90-2D, 90-4C, 90-
4D, 90-5C, 90-5D and Building 150.
32. Test all current transformers, potential transformers and metering in main switchboard 90-MB1.
K. Drawing E91 – Building 91 One Line Diagram.
33. Electrically test the main breaker and mechanically test all 208-volt breakers which are used in main switchboard 91-MB1, 91-LC01, 91-LC11, 91-LC31 and 91-LC51.
34. Mechanically test the 208-volt main breakers in panels 91-2A, 91-2B, 91-2C, 91-2D, 91-4A, 91-4B, 91-4C and 91-4D.
35. Test all current transformers, potential transformers and metering in main switchboard 91-MB1.
L. Drawing E88,89,90,91– Hospital Emergency System One Line Diagram.
36. Mechanically test all 208-volt breakers in distribution panels 89-EDPG, 89-
EDPG1, 90-LCR1, 88-ELC1 and 90-DX.
37. Mechanically test main breakers in motor control center 91-MCC and in panels 89-GI, 90-BDE, 88-Main telephone room (3 panels), 88-4E, 89-
EDP1, 90-1X, 91X-A, 90-2X, 90-4X, 90-5X, 91-PA and the fire pump controller.
M. Drawing E-91 – Hospital Emergency system One Line Diagram.
38. Mechanically test all breakers in distribution panels 91-ACDP, 91-EMDP and
89-EDGPZ, and panel 89-EDGP2.
39. Mechanically test transformer T17 and secondary breaker.
N. Drawing 91C- Building 91 Annex.
40. Electrically test main breaker and mechanically test all 480-volt breakers in
Building 91 Extension main switchgear MSC-1, (15 ea.) and mechanically test all breakers in distribution panel 91-1, (2 ea.).
41. Mechanically test transformer T16
O. Women’s Clinic.
42. Mechanically test the 208 main breakers in 4 distribution panels.
P. Deviations from Drawings- Some updates to Electrical Distribution System have occurred since and some drawings have not been updated and may not reflect total accuracy of equipment listed. The equipment listings in this document have been reviewed and verified and any questions on equipment and locations can be resolved during an appointment walk through.
1.3 TEST PROCEDURES
A. Switchgear and Switchboard Assemblies – General
1. Visual and Mechanical Inspection
a. Inspect for physical damage, electrical, and mechanical condition.
b. Inspect for proper alignment, anchorage and grounding.
c. Inspect for proper identification of protective devices and switches.
d. Physically test all electrical or mechanical interlocks to assure proper function.
e. Check tightness of accessible bolted bus joints.
f. Clean interior and insulator surfaces.
2. Electrical Tests
g. Measure insulation resistance of each bus section phase-to-phase and phase-to-ground.
h. Perform an over potential test on each bus section phase-to-ground for one minute.
B. Control Power Transformers
1. Visual and Mechanical Inspection
a. Inspect for physical damage, cracked insulation, broken leads, defective wiring, connection tightness, and overall general condition.
b. Check transformer nameplate data, primary and secondary fuses with single-line diagram.
2. Electrical Tests
c. Measure insulation resistance primary to ground, secondary to ground and primary to secondary.
C. Transformers – Dry Type
1. Visual and Mechanical Inspection
a. Inspect for physical damage, proper installation, anchorage and case and core grounding.
b. Clean interior and all bushing and insulator surfaces.
c. Check tightness of accessible bolted electrical joints.
1. Electrical Tests
a. Perform insulation resistance tests winding-to-winding and winding-to-ground.
b. Perform turns ratio test between windings for all tap positions.
c. Perform insulation power factor tests on all high and low voltage windings in accordance with Doble Engineering test procedures.
d. Measure resistance of windings.
e. Perform excitation current test on each phase.
C. Transformers – Liquid Filled
1. Visual and Mechanical Inspection
a. Inspect for physical damage, proper installation, anchorage and grounding.
b. Clean all bushing and insulator surfaces.
c. Check dielectric liquid in tank and bushings for proper level and leaks.
d. Check for positive pressure on tanks.
e. Check tightness of external bolted electrical joints.
f. Verify proper auxiliary device operations such as fans, pumps, sudden pressure device, indicators, tap changer and gas pressurization system.
g. Top off liquid levels.
2. Electrical Tests
a. Perform insulation resistance tests winding-to-winding and winding-to-ground.
b. Perform turns ratio test between windings for all tap positions.
c. Sample insulation oil in accordance with ASTM D923. Samples shall be laboratory tested for:
• Dielectric strength
• Acid neutralization number
• Interfacial tension
• Color
• PPM water
• Power factor
d. Perform insulation power factor test on all high and low voltage windings and bushings. Overall dielectric-loss and power factor shall be determined.
Ungrounded specimen tests (UST) shall be made on any bushings equipped with power factor or capacitance taps.
e. Perform dissolved gas analysis on liquid dielectric.
f. Perform winding resistance tests.
h. Individual exciting current tests shall be performed on each phase in accordance with Doble Engineering test procedures.
D. Cables – Medium Voltage
1. Only test Station Feeder from S-2 to S-3 and North East Feeder.
2. Visual and Mechanical Inspection
a. Inspect exposed cable section for tracking, corona and physical damage.
b. Inspect shield grounding, cable support and termination.
c. Clean all creepage surfaces of termination.
3. Electrical Tests
a. Perform insulation resistance test.
b. Perform DC hypotential test using Step Voltage Method:
• Each conductor shall be individually tested with all other conductors grounded. All shields shall be grounded.
• Corona at terminations shall be suppressed by guard ring, field reduction sphere, or other suitable methods.
• A DC hypotential shall be applied in five equal increments until maximum test voltage of five kv dc is reached. DC leakage current shall be recorded at each step after a constant stabilization time, consistent with system charging current decay. A graphic plot shall be made of leakage current
(Y axis) versus voltage (X axis) at each increment.
• Maximum test voltage shall be held for a total of five minutes. Readings of leakage current (Y axis) versus time (X axis) shall be recorded and plotted on thirty-second intervals for the first two minutes and every minute thereafter.
c. Perform retest of insulation resistance.
d. Perform voltage decrement test by reducing the applied voltage to zero and monitoring voltage decay versus time.
e. Apply grounds for a time period adequate to drain all insulation stored potential.
f. Perform shield continuity test by ohmmeter method. Resistance shall be recorded.
E. Air Switches – Medium Voltage
1. Visual and Mechanical Inspection
a. Inspect for physical damage, proper installation, anchorage and grounding. Clean interior, insulators, air chutes and interphase barriers.
b. Perform mechanical operator tests in accordance with manufacturer’s instructions. Clean and lubricate contacts and mechanism as applicable.
c. Check contact alignment contact wipe and contact pressure.
d. Check fuse linkage and element for proper holder and current rating.
Record fuse data.
e. Check key interlock for safe operation and proper key distribution.
f. Verify arc interrupter operation.
2. Electrical Tests
a. Perform contact resistance test across each switch blade and fuse link.
b. Perform insulation resistance test phase-to-phase and each phase-to-ground.
G. Low Voltage Air Circuit Breakers
1. Visual and Mechanical Inspection
a. Inspect complete breaker including operating mechanism and arc chutes for physical damage.
b. Mechanical operational test shall be made in accordance with manufacturer’s instructions.
c. Check tightness of all hardware connections.
c. Check cell fit and element alignment.
d. Verified compliance with single-line diagrams.
2. Electrical Tests
a. Measure contact resistance.
b. Check the following functions by primary current injection:
• Measure long-time pickup when possible.
• Measure long-time delay at three times long-time pickup current.
• Measure short-time pickup.
• Measure short-time delay at one and one-half times short-time pickup current.
• Measure instantaneous pickup.
• Check trip unit reset operation.
• Measure ground fault pickup
• Measure ground fault delay at one and one-half times ground fault pickup.
c. Perform insulation resistance test phase-to-ground, phase-to-phase and across open contacts.
d. Verify proper electrical closing/tripping operation by activation of all auxiliary devices.
H. Molded Case Circuit Breakers
1. Visual and Mechanical Inspection
e. Check circuit breaker for proper mounting and physical damage.
f. Check mechanical operation.
g. Check tightness of electrical connections.
h. Remove cover on unsealed breakers for internal inspection and cleaning.
1. Electrical Tests
a. Measure contact resistance.
b. Measure long-time delay by primary current injection at three times long-time pickup current.
c. Measure instantaneous pickup current by primary current injection.
d. Check trip unit reset operation.
e. Perform insulation resistance test phase-to-ground, phase-to-phase and across open contacts.
f. Measure short-time pickup by primary current injection.
g. Measure short-time delay at one and one-half times short-time pickup.
h. Measure ground fault pickup by primary current injection.
i. Measure ground fault time delay at two points above pickup.
I. Medium Voltage Air Circuit Breakers
1. Visual and Mechanical Inspection
a. Inspect complete breaker including operating mechanism, arc chutes, puffer assembly and blowout coils for physical condition and proper operation.
b. Inspect breaker to cell alignment and grounding.
c. Perform mechanical operator and contact alignment tests on the breaker and its operating mechanism in accordance with manufacturer’s instructions.
d. Check tightness of accessible hardware connections.
e. Clean mechanism, insulating surfaces and contacts.
f. Verify proper operation of safety interlocks.
2. Electrical Tests
a. Measure contact resistance.
b. Trip circuit breaker by operation of each protective device.
c. Perform an insulation resistance test phase-to-ground, phase-to-phase and across open contacts.
d. Perform insulation resistance test on control wiring.
J. Protective Relays
1. Visual and Mechanical Inspection
a. Inspect relays for physical damage, presence of foreign material, moisture, corrosion, condition of spiral spring and disc clearance on electro-mechanical relays.
b. Clean cover glass and relay components as required.
• Pickup parameters on each operating element.
• Timing at three points on time characteristic curve.
• Pickup target and seal in units.
• Special tests as required to check operation of restraint, directional and other elements per manufacturer’s instructions.
2. Perform functional test to ensure relay trips the associated breakers or auxiliary device.
K. Instrument Transformers
1. Visual and Mechanical Inspection
a. Inspect for physical damage and connection tightness.
b. Check transformer nameplate data with single-line diagram.
c. Check proper operation of grounding or shorting devices.
2. Electrical Tests
a. Measure current transformer ration by primary current injection and/or secondary voltage method.
b. Verify secondary wiring connections by secondary injection.
c. Verify transformer polarity markings.
d. Measure potential transformer ratio.
1. Perform dielectric withstand test on the primary windings of all potential transformers
2. Metering and Instrumentation
3. Visual and Mechanical Inspection
4. Check all devices for physical damage and connection tightness.
5. Verify meter nameplate designation.
6. Verify all instrument multipliers and scale factors.
7. Electrical Tests
8. Check calibration of all panel meters at zero, midscale and full-scale deflections by transfer standard.
9. Check calibration of watt hour meters for proper registration by use of rotating standard at light, heavy and 50% power factor conditions.
10. Ground Fault Systems
11. Visual and Mechanical Inspection
12. Inspect for physical damage.
13. Inspect neutral main bonding connection to assure:
• Proper size.
• Zero sequence shall be grounded upstream of sensor.
• Ground connection shall be made ahead of neutral disconnect link.
14. Verify ground electrode conductor(s) for proper size and connection.
15. Check proper operation of ground fault panel (if present).
L. Verify pickup and time delay settings with customer’s data.
1. Electrical Tests
a. Measure system neutral insulation resistance.
b. Measure pickup current by primary injection at sensor.
c. Measure time delay at two points above pickup current level by injecting current into the sensor. Total trip time shall be electrically monitored.
1. Capacitors
2. Visual and Mechanical Inspections
3. Inspect for physical damage, proper mounting, and required clearances.
4. Compare nameplate information with single line diagram.
5. Verify proper electrical connection.
6. Check tightness of connections.
7. Electrical Tests
8. Perform insulation resistance tests phase to case.
9. Verify internal discharge resistor operation.
10. Infrared Inspection, Visual and Mechanical
11. Remove all equipment covers to allow visual access to current carrying devices and conductors.
12. Visually inspect physical, electrical and mechanical conditions of all components for potentially dangerous conditions.
13. Perform infrared scan of each load current carrying device and line and load connections and record readings.
14. Document problems found with a still photograph to identify the problem and location.
15. Reinstall covers on all equipment.
16. NOTE: All molded case circuit breaker mechanical tests shall include infrared scan surveys.
M. Automatic Transfer Switches (ATS)
Inspection:
1. Inspect the visually accessible portions of the ATS for evidence of heat, water, and mechanical damage. Such evidence guides the technician’s further investigation and assessment of the internal portions of the ATS and its gear.
2. After de-energizing upstream switchgear or placing the ATS in bypass mode, inspect the interior to verify that transfer switch mechanisms are intact together with their control circuit wiring, relays, and contacts.
3. Inspect insulating parts, mechanism covers, and arc chutes for evidence of heat, discoloration and/or mechanical damage, and replace any that are excessively worn or damaged.
4. Check the alignment, deflection, gap, and wiping action of the main and arcing contacts.
5. Inspect main and arcing contacts for wear, pitting, erosion, and discoloration, which indicate arcing or heat- related deterioration.
6. Inspect the transfer mechanisms, coils, and contacts for evidence of damage or malfunction.
7. Check the tightness of all de-energized cable, wire, and bus connections, and re-secure any loose connections that are found.
8. Record and verify all settings for voltage and frequency sensing, pickup, and dropout parameters for both normal and emergency power, as well as settings for all timing functions. If the settings are inadvertently changed, then the recorded information will facilitate the recovery of normal operation.
Testing:
Service personnel should undertake the following tasks during each periodic maintenance event.
1. Measure the pre-inspection voltage and current at the Phase A, B, and C connections to verify that these values are within corresponding operating specifications.
2. Measure and record the millivolt drop across each energized stationary and main contact while the switch is placed in each source position.
3. Measure the contact resistance across the main and arcing contacts.
Service:
Following thorough inspection and cleaning, the ATS should be serviced according to the technician’s observations and measurements. In the course of the work, service personnel should perform the following tasks to assure optimal function.
1. Replace eroded arcing contacts, if necessary.
2. Adjust main and arcing contacts for simultaneous breaking in accordance with the manufacturer’s procedure.
3. Remove old lubricant residues, then lubricate the transfer switch mechanisms and their associated devices and linkages as specified by the manufacturer.
4. Operate the ATS manually to verify proper function.
5. Check for the proper settings for voltage and frequency sensing, pickup, and dropout features for both normal and emergency power, as well as settings for all timing functions.
6. Clean the top, bottom, and doors of the ATS enclosure.
7. If authorized and coordinated by the facility manager, test the re-energized
ATS by switching from the normal source to the emergency source and back to verify proper function under load.
1.4 EQUIPMENT LISTING
A. Main Outdoor Substation Switchgear
1. One (1) Square D Power Logic PM8000 Meter
2. One (1) Voltmeter, 5000-volt full scale.
3. Six (6) Medium voltage air circuit breakers, Eaton, type 150VCP-T25, 1200 amp.
B. Medium Voltage Air Switches
1. Six (7) G&W, Medium voltage air switches, type SPRAM 33-376F-20RP, 15.5kV, 630 amp/12500T.
2. Two (2) G&W, Medium voltage air filled switches, type SPRAM 32-376F-
20RP, 15.5kV, 600 amp/12500T.
3. Six (6) G&W, Medium voltage air filled switches, type PV121-376-12-9F, 15.5kV, 600 amp/12500T.
4. One (3) G&W, Medium voltage air filled switch, type PV 132-376-12-6F
15.5Kv, 600 amp/12500T.
5. One (1) G&S, Medium voltage air filled switches, type PV 142-376f-9F, 15.5kV, 600 amp/12500T.
ATS # DESIGNATION MANUFACTURER MODEL/CAT # SERIAL # BOM
AMPERAGE,
VOLTAGE
NOTES
ATS 1 NONE ASCO 940 E9403100097XC 668349004 1,000A, 480V OBSOLETE CP
ATS 2 ATS-1-EC1A ZENITH ZTS2L15EC-7 1402847-2 150A, 480V
ATS 3 ATS-2-EC21 ZENITH ZTS2L15EC-7 1402847-1 150A, 480V
ATS 4 ATS-3-GE-XRAY ZENITH ZTS2L15FC 1402776-2 150A, 480V
ATS 5 ATS-4-EHC1A ZENITH ZTS2L15FC 1402776-1 150A, 480V
ATS 6 ATS-5-EHM1A ZENITH ZTS000B00060E 151048000-10-1 600A, 480V
ATS 7 89 ATS2 ASCO 7000 BYP/ISO G07ATBB31600C5XC 582026-WE 1600A, 208V
ATS 8 89 ATS1 ASCO 7000 BYP/ISO H07A8BB21300C5XC 581676 FP 1200A, 208V
ATS 9 91 ATS 1 ASCO 7000 BYP/ISO H07ATBA30800C5XC 581679 FP 800A,208V
ATS 10 "ATS 4" ASCO 7000 BYP/ISO H07ATBB31200N5XM 1329719 1200A, 480V
ATS 11 "ATS 3" ASCO 7000 BYP/ISO G7AUBB31600C5XM 1457708 WE 600A, 208V
ATS 12 "ATS 1" ASCO 7000 BYP/ISO J07ATBB30600C5XC 1329726 WE 600A, 208V
ATS 13 "ATS 2" ASCO 7000 BYP/ISO J07ATBB30150C5XC 1329727 WE 150A, 208V
ATS 14 "LIFT STATION" CUMMINS BYP/ISO BTPCB-1500816 B15M800254 225A, 208V
ATS 15 NONE ASCO 7000 BYP/ISO J07ATBB30600C5XC 581678 WE 600A, 208V
ATS 16 "BOILER ROOM" ZENITH BYP/ISO ZBTS00B10260F 150163519-10-1 2,600A, 208V
6. One (1) General Electric, Medium voltage air switch, type SE, 4.8 kV, 600 amp.
7.One (1) S&C, Medium voltage pad mount air switch, type CP, 14.4 kV, 200 amp.
8. One (1) S&C, Medium voltage pad mount air switch, 17 kV, 600 amp.
9. Two (2) Square D cabinet air switches, 15kV, 200 amp.
C. Liquid Filled Transformers
1. T-1, General Electric, S/N L449222T74AA, 112.5 kVA
2. T-3, ABB, S/N 13JC674520001, 500kVA
3. T-4, ABB, S/N 13JC674520002, 500kVA
4. T-5, General Electric, S/N L449221T74AA, 112.5 KVA.
5. T-6, General Electric, S/N M314032TCPA, 112.5kVA
6. T-7, Westinghouse, S/N 77B413210, 75 kVA.
7. T-8, Westinghouse, S/N 90J573016, 100kVA
8. T-9, General Electric, S/N 1785A78Y7AAA, 100kVA
9. T-11, OVERGROWN WITH VEGETATION
10. T-16 Cutler Hammer S/N PGL-1271, 1000 kVA.
11. T-17, Square D, S/N T690028, 500 kVA.
12. T-18, General Electric, S/N N398130YLTA, 100 kVA, single phase.
13. T-19, H.K. Porter, S/N U490019, 500kVA.
14. T-22, Westinghouse, S/N, 90J574190, 500kVA.
15. T-23, Square D, S/N34179308-001-01, 1000kVA
16. T-24, ABB, S/N 18JC069870001, 300kVA
17. T-25, ABB, S/N 18JC069860001, 500kVA
18. T25A, ABB, S/N 18JC069860002, 500kVA
19. T-26, Westinghouse, S/N 82JF735041, 75kVA.
20. T-27, Solomon Electric, S/N 199135, 500kVA
21. T-28, Solomon Electric, S/N 199136, 750kVA
22. T-29, Solomon Electric, S/N 199134, 500kVA
23. T-32, Cooper, S/N115C000026, 500kVA
24. T-34, General Electric, S/N0117019-TXH, 300kVA
25. T-41, Square D, 1000 kVA.
26. T-42, Howard Industries, S/N 1239100992, 167 kVA, single phase.
27. T-45, Chiller Plant, General Electric, S/N Q118596-TYH, 2000 kVA.
28. T-46 480-volt, General Electric, S/N Q118848-TYH, 1000 kVA.
29. T-47 208-volt, General Electric, S/N Q118848-TYH, 300 kVA.
30. T-48, Sunbelt, S/NST0421-340800, kVA500
D. Dry Type Transformers
1. T-35, Matra Electric, S/N 23087-1, 112.5 kVA.
2. T-36, Matra Electric, S/N 22844-1, 50 kVA, single phase.
3.T-37, General Electric, 225 kVA.
4.T-43, Catalog #T18H75, 75 kVA 3-phase.
5. Laundry Basement, Square D Power Dry II, S/N42134820-002, 1500kVA, 3-phase
E. Medium Voltage Cables
1. Main Substation to Hospital Metal Clad Switchgear (Hospital Feeder #1), Perelli, 5 kV, EPR, 750 MCM.
3. S1A to Hospital Metal Clad Switchgear and T-17, (Hospital Feeder #2 Alt), Hi-
Tech, 5 kV, XLP, 500 & 750 MCM.
4. Hospital Metal Clad Switchgear to T-1 and T-19, Perelli, 5 kV, EP, 1/0 AWG.
5. Hospital Metal Clad Switchgear to T-27, Perelli, 5 kV, EPR, #2 AWG.
6. Hospital Metal Clad Switchgear to T-28, Perelli, 5 kV, EPR, #2 AWG.
7. Hospital Metal Clad Switchgear to T-29, Perelli, 5 kV, EPR, #2 AWG.
8. 5 kV Sectionalizer to Building 160, 5 kV, 500 MCM.
9. Main Feed Sub Station to Main Breaker
F. Building 39 Circuit Breaker Mechanical Checks
1. One (1) Cutler Hammer, Molded Case Circuit Breaker, type EA, 70 amp.
2.One (1) Square D, Molded Case Circuit Breaker, 100 amp.
3. One (1) General Electric, Molded Case Circuit Breaker, type TKS, 800 amp.
4. One (1) General electric, Molded Case Circuit Breaker, type TJS, 400 amp.
5. One (1) General Electric, Molded Case Circuit Breaker, 200 amp.
6. Two (2) General Electric, Molded Case Circuit Breakers, type TJS, 150 amp.
G. Building 39 Boiler Room MCC Circuit Breaker Infrared Survey and Mechanical Checks.
1. One (1) Square D 600 amp main
2. One (1) Square D AL 150-amp HD
3. Five (5) Square D AL 100-amp HD
4. Three (3) Square D AL 50-amp HD
5. One (1) Square D AL 60-amp HD
6. Four (4) Square D AL 30-amp HD
7. One (1) Square D AL 25-amp HD
8. One (1) Square D AL 125-amp HD
9. Two (2) Square D AL 200-amp JD
10. Two (2) subpanels, LP1/LP2 Square D 225 amp
H. Building 39 Main Switchboard
1. One (1) Low Voltage Switchboard, 208 volts, 800 amp.
2. One (1) Voltmeter, 300 volts full scale.
3. One (1) Ammeter, 800-amp full scale.
4. Three (3) Current Transformers, General Electric, 600:5 ratio.
I. Building 88/89 Main Switchgear
2. One (1) Low voltage Switchboard, Square D, 208/120 volts, 1200 amp.
3. One Square D Power Logic Meter
4. Three (3) Current Transformers, Square D, 2000:5 ratio.
5. One (2) Square D, Low voltage Insulated Case Circuit Breaker, type PEF, 2000-amp frame, 2000-amp rating plug, Micro-Logic LSIG trip unit.
6. One (1) Square D, Draw-out Molded Case Circuit Breaker, type LAF, 400 amp.
7. Two (2) Square D, Draw-out Molded Case Circuit Breakers, type MAF, 300 amp.
8. One (1) Square D, Draw-out Molded Case Circuit Breaker, type LHL, 300 amp.
9. One (1) Square D, Draw-out Molded Case Circuit Breaker, type LAL, 200 amp.
10. One (1) Square D, Draw-out Molded Case Circuit Breaker, type MAF, 1000 amp.
11. Two (2) Square D, Draw-out Molded Case Circuit Breakers, type MAF, 800 amp.
12. Two (2) Square D, Draw-out Molded Case Circuit Breakers, type MHF, 800 amp.
J. Distribution Panel 89-LC01.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. Three (3) Square D, Molded Case Circuit Breakers, type Q23, 225 amp.
3. Two (2) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
K. Distribution Panel 89-LC02.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. Two (2) Square D, Molded Case Circuit Breakers, type LA, 400 amp.
L. Distribution Panel 89-LC11
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type Q23, 225 amp.
3. Three (3) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
M. Distribution Panel 89-LC21.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. Six (6) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
N. Building 88/89 Circuit Breaker Mechanical Checks.
1. Ten (10) General Electric, Molded Case Circuit Breakers, type THQD, 225 amp.
2.Three (3) Square D, Molded Case Circuit Breakers, type Q2MT, 150 amp.
O. Building 90 Main Switchgear
1. One (1) Low Voltage Switchboard, Square D, 208/120 volts, 2000 amp.
2. One (1) Square D Power Logic Meter
3. Three (3) Current Transformers, Square D, 2000:5 ratio.
4. One (1) Square D, Low Voltage Insulated Case Circuit Breaker, type PEF, 2000-amp frame, 2000-amp rating plug, Micro-Logic LSIG trip unit.
5. Three (3) Square D, Draw-out Molded Case Circuit Breakers, type LAF, 400 amp.
6. One (1) Square D, Draw-out Molded Case Circuit Breaker, type MAF, 1000 amp.
7. One (1) Square D, Draw-out Molded Case Circuit Breaker, type MAF, 800 amp.
8. Two (2) Square D, Draw-out Molded Case Circuit Breakers, type LAL, 600 amp.
9. One (1) Square D, Draw-out Molded Case Circuit Breaker, type MHF, 800 amp.
P. Distribution Panel 90-LCB1.
1. One (1) Square D, Molded Case Circuit Breaker, type MAL, 600 amp.
2. Three (3) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
3. One (1) Square D, Molded Case Circuit Breaker, type FA3, 100 amp.
Q. Distribution Panel 90-LC01.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. Two (2) Square D, Molded Case Circuit Breakers, type Q23, 200 amp.
3. Three (3) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
4. One (1) Square D, Molded Case Circuit Breakers, type QB, 150 amp
R. Distribution Panel 90-LC31.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. Two (2) Square D, Molded Case Circuit Breakers, type Q23, 225 amp.
3. Two (2) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
S. Distribution Panel 90-DA.
1. One (1) General Electric, Molded Case Circuit Breaker, type TJD, 400 amp.
2. One (1) General Electric, Molded Case Circuit Breaker, type THQD, 225 amp
3. One (1) General Electric, Molded Case Circuit Breaker, type THQD, 150 amp.
T. Distribution Panel 90-DX.
1. One (1) General Electric, Molded Case Circuit Breaker, type TJD, 400 amp.
2. Three (3) General Electric, Molded Case Circuit Breakers, type THQD, 225 amp.
3. Two (2) General Electric, Molded Case Circuit Breakers, type THQD, 150 amp.
U. Building 90 Circuit Breaker Mechanical Checks.
1. Twelve (12) General Electric, Molded Case Circuit Breakers, type THQD, 225 amp.
2. Four (4) General Electric, Molded Case Circuit Breakers, type THQD, 150 amp.
V. Building 91 Main Switchgear.
1. One (1) Low Voltage Switchboard, Square D, 208/120 volts, 2000 amp.
2. Square D Power Logic Meter
3. Three (3) Current Transformers, Square D, 2000:5 ratio.
4. One (1) Square D, Low Voltage Insulated Case Circuit Breaker, type PEF, 2000-amp frame, 2000-amp rating plug, Micro-Logic LSIG trip unit.
5. Three (3) Square D, Draw-out Molded Case Circuit Breakers, type MAF, 800 amp.
6. One (1) Square D, Draw-out Molded Case Circuit Breaker, type MAL, 800 amp.
W. Distribution Panel 91-LCO1.
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type Q23, 225 amp.
3. Five (5) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
4. One (1) Square D, Molded Case Circuit Breaker, type Q23, 100 amp.
5. One (1) Square D, Molded Case Circuit Breaker, type FA3, 30 amp.
6. One (1)
X. Distribution Panel 91-LC11. (2nd floor)
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type Q23, 225 amp.
3. Six (6) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
Y. Distribution Panel 91-LC31. (4th floor)
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type Q23, 225 amp.
3. Five (5) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
AA. Distribution Panel 91-LC51. (6th floor)
1. One (1) Square D, Molded Case Circuit Breaker, type MAP, 800 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type LA, 225 amp.
3. One (1) Square D, Molded Case Circuit Breaker, type Q23, 225 amp.
4. Three (3) Square D, Molded Case Circuit Breakers, type Q23, 150 amp.
BB. Building 91 Circuit Breaker Mechanical Checks.
1. Seven (7) Square D, Molded Case Circuit Breakers, type Q2MT, 150 amp.
CC. Hospital Emergency System Infrared Survey and Mechanical Checks.
1. Building 88.
a. Panel 88 ELC1.
• Two (2) SQ D, type LA, 400 amp.
• One (1) SQ D, type KA, 200 amp.
• One (1) SQ D, type Q2, 150 amp.
• One (1) SQ D, type FA, 100 amp.
• One (1) SQ D, type FA, 15 amp.
b. Panel 88 LP-CR-1.
• One (1) SQ D, type QJH, 225 amp.
c. Panel 88 LP CR-2.
• One (1) SQ D, type QJH, 225 amp.
2. Building 89.
a. Emergency Generator System.
• Two (2) GE, Power Break, 1600 amp.
• Two (2) Asco 7000 Power Transfer Switch
b. Emergency Panel 89 EDPG.
• One (1) GE, type THJ, 400 amp.
c. Emergency Panel 89 EDPG-1.
• One (1) GE, type TJK, 600 amp.
• One (1) GE, type TJH, 400 amp.
• Two (2) GE, type THUK, 225 amp.
• One (1) GE, type TJJ, 200 amp.
• One (1) GE, type THED, 150 amp.
d. Emergency Panel 89 EDPG-2.
• One (1) SQ D, 1000 amp.
• Three (3) Sq D, type LA, 400 amp.
• One (1) SQ D, type KA, 225 amp.
• Four (4) SQ D, type Q2, 225 amp.
• One (1) SQ D, type Q2, 200 amp.
• One (1) SQ D, type Q2, 100 amp.
• One (1) SQ D, type Q2, 70 amp.
e. Panel 89-GJE. (B129)
• One (1) SQ D, type LA, 400 amp.
3. Building 90.
a. Panel 90 DX.
• One (1) GE, type TJD, 400 amp.
• Three (3) GE, type THD, 225 amp.
• Two (2) GE, type THD, 150 amp.
b. Panel 90-LCR1.
• One (1) SQ D, type MAP, 600 amp.
• Two (2) SQ D, type LA, 250 amp.
• One (1) SQ D, type KA, 225 amp.
• One (1) SQ D, type FA, 100 amp.
c. Panel 90-1X.
• One (1) GE, type THQD, 150 amp.
d. Panel 90-2X.
• One (1) GE, type THQD, 150 amp.
e. Panel 90-4X.
• One (1) GE, type THQD, 225 amp.
f. Panel 90-5X.
• One (1) GE, type THQD, 225 amp.
g. Panel 90-BDE.
• One (1) SQ D, type Q2, 225 amp.
4. Building 91.
a. Panel 91-EMDP.
• Three (3) FPE, type NFJ, 225 amp.
• Two (2) FPE, type NE, 70 amp.
• One (1) FPE, type SE, 40 amp.
• One (1) FPE, type NE, 30 amp.
• One (1) FPE, type NE, 20 amp.
b. Panel 91-ACDP
• One (1) FPE, type NM, 600 amp.
• One (1) FPE, type NFJ, 225 amp.
• One (1) FPE, type NFJ, 125 amp.
• One (1) FPE, type NFJ, 300 amp.
c. Panel 91-PA.
• One (1) Cutler-Hammer, type CC, 150 amp.
d. Transformer T-17.
• One (1) ITE, type KM, 225 amp.
e. ATS
- One (1) Square D Power Logic Meter
5. Building 91 Annex.
a. MSC-1 Mechanical Checks of Circuit Breakers
• Main, CH-RES16T – 1600 amp.
• One (1) CH-MDL 3800F – 800 amp.
• One CH-HDL 3600F – 600 amp.
• Two (2) CH-HKD-ES400T.
• Two (2) CH-HKD-ES200T.
• Two (2) CH-HKD-2KEST175T.
• Two (2) CH-HKD-2KEST150.
• Three (3) CH-HKD-1KEST125.
• One (1) CH-HKD-1KE8070T.
DD. Emergency System ATS’s Building 91 Annex
1. Four (4) Zenith ZTS2L15EC-7, 277/480V, 150 amp
EE. Building 91 Annex Panel 91-1 Mechanical Checks of Circuit Breakers
1. One (1) Square D, Molded Case Circuit Breaker, type KA, 225 amp.
2. One (1) Square D, Molded Case Circuit Breaker, type KA, 150 amp.
FF. Building 122, 480 Volt Main Switchboard.
1. One (1) Voltmeter, 600 volts full scale.
2. One (1) Ammeter, 800-amp full scale.
3. Three (3) Current Transformers, Westinghouse, 600:5 ratio.
4. Three (3) Instrument Transformers, Westinghouse, 4:1 ratio.
5. One (1) Westinghouse, Low Voltage Air Frame Circuit Breaker, type DS-206, 800-amp frame, 600-amp rating plug with Digitrip RMS 600 LSIG trip unit.
6. One (1) Westinghouse, Molded Case Circuit Breaker, type KD, 400 amp.
7. Two (2) Westinghouse, Molded Case Circuit Breakers, type JD, 250 amp.
GG. Building 122, 480 volts Circuit Breaker Mechanical Checks.
1. One (1) Westinghouse, Molded Case Circuit Breaker, type EHD, 100 amp.
2. Two (2) Westinghouse, Molded Case Circuit Breakers, type EHD, 80 amp.
3. One (1) Westinghouse, Molded case Circuit Breaker, type EHD, 60 amp.
4. Two (2) Westinghouse, Molded Case Circuit Breakers, type EHD, 40 amp.
5.
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