36C24621Q1276.docx
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- Attached to
- J061--36 Months Breaker Testing Federal contract opportunity
- Solicitation number
- 36C24621Q1276
About this file
This sources sought notice provides information for a 36-month electrical breaker testing services contract for the Durham VA Medical Center. Interested vendors should respond with company details, socio-economic status, FSS contract information if applicable, and a capabilities statement by August 27, 2021. The contract is set aside for SDVOSBs and VOSBs. Testing will include breakers, transformers, switchgear, and other equipment detailed in an attachment. The selected contractor must have five years of relevant experience and technicians certified by NICET or NETA. Testing is to begin within 60 days of award and be completed according to an approved schedule. Work will take place after hours to avoid impacts to facility operations.
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SUBJECT*
36 Months Breaker Testing
GENERAL INFORMATION
| CONTRACTING OFFICE’S ZIP CODE* |
| 23667 |
| SOLICITATION NUMBER* |
| 36C24621Q1276 |
| RESPONSE DATE/TIME/ZONE |
| 08-27-2021 10 AM EASTERN TIME, NEW YORK, USA |
| ARCHIVE |
| 90 DAYS AFTER THE RESPONSE DATE |
| RECOVERY ACT FUNDS |
| N |
SET-ASIDE
| PRODUCT SERVICE CODE* |
| J061 |
| NAICS CODE* |
| 238210 |
CONTRACTING OFFICE ADDRESS
Department of Veterans Affairs Network Contracting Office 6 100 Emancipation Drive Hampton VA 23667
POINT OF CONTACT*
Contracting Officer Rodney Wilson rodney.wilson2@va.gov
PLACE OF PERFORMANCE
| ADDRESS |
| Department of Veterans Affairs |
Durham VA Medical Center
508 Fulton Street
Durham NC
| POSTAL CODE |
| 27705 |
COUNTRY
ADDITIONAL INFORMATION
AGENCY’S URL
URL DESCRIPTION
| AGENCY CONTACT’S EMAIL ADDRESS |
| rodney.wilson2@va.gov |
EMAIL DESCRIPTION
DESCRIPTION
SOURCES SOUGHT NOTICE ONLY
This notice does NOT constitute a request for proposal, request for quote, or invitation for bid. No formal solicitation document exists at this time. We are seeking information for market research purposes only. The Government will not pay for any information solicited
The VHA Network Contracting Office 6 (NCO 6) is conducting a market survey to find qualified vendors who can provide Breaker Testing Services for the Department of Veterans Affairs, Durham VA Medical Center (VAMC), 508 Fulton Street, Durham, NC 27705:
DESCRIPTION OF SERVICE
Performance Work Statement: (Please See Attachment)
All interested parties should respond, in writing via email to rodney.wilson2@va.gov. No telephone inquiries will be accepted. In response, please include the following:
· Company/individual name
· Address
· Point of contact with phone number
· Company Socio-Economic SIZE (example…large, small, SDVOSB, VOSB, WOSB etc.)
· Information describing your interest
· Indicate FSS/GSA contract number
· FSS Category you qualify for
· Tax ID number
· DUNS number
· NAICS code (if different than below)
· Capabilities statement
If your firm is a Service-Disabled Veteran Owned or Veteran Owned Small Business, you must be CERTIFIED in VetBiz (see internet site: http://vip.vetbiz.gov) to be recognize as such.
The NAICS 238210 is applicable to this acquisition; with a size standard of $16.5.
Interested firms are reminded that in accordance with FAR 4.1201(a) Prospective contractors shall complete electronic annual representations and certifications at the System for Award Management (SAM) as a part of required registration in conjunction with FAR 4.1102(a) that states, Prospective contractors shall be registered in the (SAM) database prior to award of a contract or agreement. Therefore, due to time constraints, vendors will be required to be registered in System for Award Management (SAM) at http://www.sam.gov to be considered for an award.
Your response is required by 10:00 AM, Friday August 27, 2021.
3-Year Electrical Testing and Repair Contract Performance Work Statement General Requirements:
Contractor shall furnish all supplies, materials, equipment, personnel/labor and technical supervision required to perform inspections, repairs, testing, cleaning, calibrations and adjustments on the electrical power distribution system and associated equipment at the Durham Veterans Affairs Medical Center within the allotted time frame of this contract. This is a 4160-volt primary system that includes various secondary voltages and both emergency and normal power sources. A comprehensive list of equipment is included in this contract
All inspections and testing procedures must meet the criteria of the original equipment manufacturer along with the latest editions of the following codes, standards and specifications listed: ANSI, IEEE, ICEA, NETA, NEMA, NFPA, The Joint Commission (TJC), VHA Directive 1028 and other VA regulations.
The contractor shall be responsible for supplying all portable power required to power up any and all test equipment necessary throughout these tests. The use of normal or emergency building power will not be allowed, unless specified by the COR.
The contractor shall be responsible for securing all manufacturers’ information, curves, data, procedures and any other information necessary to conduct specific tests on equipment and systems.
Prior to beginning field-testing, the testing organization shall submit test procedures and a detailed test schedule to the COR for each item of equipment to be field-tested. No testing is to be performed until after the test procedures and schedules have been approved. The test schedule shall be submitted within 3 days of the NTP for review and approval.
The contractor shall be responsible for all coordination between COR and test personnel for scheduling shut-downs, system tests and tests on system components. The V.A HCS Electrical Staff will be responsible for conducting the actual scheduled outages and reenergizing of circuits and components on V.A. premises and V.A. owned equipment only. Lockout/Tagout of this equipment will be performed jointly between the V. A. HCS Electricians and the Contractor. The contractor will be responsible for removal and replacement of any and all breakers needing to be tested. All breakers being removed will be properly reinstalled. Any and all conductors removed from a breaker will be properly tagged and terminated back to that breaker and any and all lugs will be properly torqued to manufacturers’ specifications. Manufacture’s specifications shall be on-site at all times during testing and installation procedures.
Testing shall commence and be completed within sixty (60) days of the NTP. The specific dates shall be coordinated with the COR. All outages shall be scheduled with the COR two weeks in advance of testing start date. Testing dates may change due to inclement weather or Facility Medical operations, however, the COR shall first be notified and approve any changes necessary. Contractor shall anticipate all work to be done after normal working hours. Outages will be scheduled at night between the hours of 7:00 p.m. and 5:00 a.m. and between the hours of 7:00 am and 5:00 p.m. on weekends. However, the Contractor should be prepared to work longer hours should problems develop to assure restoration of power is completed before the start of the next shift. Daytime hours, during the week, may be approved under certain circumstances if there is no impact to building occupants or Medical Facility operations. This would be a rare instance; thus, Contractor should anticipate overtime hours for all contract requirements.
Equipment Repairs:
Minor repairs shall include but not be limited to such items as loose bolts, loose or broken lugs, wiring terminals, heaters, malfunctioning targets, dirty/high resistance connections, etc and shall be corrected on site by the contractor prior to testing period.
Minimum Equipment Test Requirements:
13 KV AIR and VACUUM CIRCUIT BREAKERS
1. The breakers will be removed from their compartments. The compartments shall be cleaned and inspected. Shutters shall be cleaned, inspected, and tested for proper operation. The racking mechanisms shall also be cleaned, lubricated, and tested for proper operation.
2. All cable termination’s, both primary and secondary, shall be checked for signs of overheating, proper tightness and support.
3. All exposed bus connections shall be checked for signs of overheating and for proper tightness.
4. The arc chutes will be removed, cleaned and inspected.
5. The entire breaker and the mechanism will be inspected.
6. The entire operating mechanism will be thoroughly cleaned, lubricated and exercised.
7. All of the interior components of the circuit breaker will be thoroughly cleaned.
8. The contacts and current carrying assemblies will be inspected for burning, pitting, arcing, worn fingers, garter springs etc.
9. The contacts will be cleaned, and antioxidant grease will be applied to the breaker’s main contacts.
10. The breaker contact resistance will be measured and recorded.
11. An insulation resistance test will be performed, and results recorded.
12. The breaker will then be closed manually to ensure proper closing and trip operations.
13. Any and all interlocks will be checked, and proper operation will be verified.
14. The breaker will be electrically operated when test stands are available, or the breaker will be operated from its cubicle, if the system allows.
15. All indicating devices such as lights, flags, switches etc. shall be tested for proper operation. Any that are not operating properly shall be repaired at that time if possible.
16. All heat strips throughout the enclosure shall be made operational, by repair or replacement, prior to completion of inspection.
ENCLOSED AIR BREAK SWITCHES (MEDIUM VOLTAGE)
1. After shutdown, the entire switch mechanism will be cleaned and inspected.
2. The switch contacts will be checked for proper alignment. Antioxidant grease will be applied to the main contacts.
3. The switch’s arcing contacts will be checked for the proper opening sequence relative to the main contacts.
4. The switch’s operating mechanism will be inspected for wear and proper operation. The entire mechanism will be cleaned and lubricated. All interlocks will be tested, and proper operation will be verified.
5. Fuses will be inspected; size and type will be recorded.
6. All phase isolation barriers will be cleaned, and the barriers will be checked for contamination and corona damage.
7. All insulators will be cleaned and visually inspected for cracks and chips.
8. All exposed bus and cable connections will be checked for proper tightness and for evidence of overheating, burning or tracking.
9. All lightning arrestors will be cleaned and inspected for broken or damaged porcelain and subjected to an insulation resistance test. Results shall be recorded.
10. All ground connections will be inspected and repaired if found to be inadequate.
11. Contact resistance and insulation resistance tests will be performed, where possible, and the results recorded.
12. All heat strips throughout the enclosure shall be made operational, by repair or replacement, prior to completion of inspection.
OIL-FILLED TRANSFORMERS
1. The transformers will be inspected for leaks, poor seals and or gaskets, and for proper oil levels.
2. The transformer tank and its cooling fins will be inspected for rust, chipped paint, dents, and proper connection to ground.
3. All of the bushings will be cleaned, inspected for cracks and or chips. proper tightness. and evidence of overheating.
4. All gauges and alarm devices will he inspected, recorded and reset where applicable.
5. Insulation resistance tests of each transformer winding will he performed, where possible and the results recorded.
6. Turns ratio test shall be performed and recordings documented.
7. The oil will be sampled and tested in accordance with ASTM procedures. All sampling devices used will be new, clean and sealed with thread sealant. Drip pans shall be installed under all the valves prior to any oil removal. The contractor will clean up any and all oil lost during sampling.
DRY-TYPE TRANSFORMERS
1. Check enclosure for dents, loose bolts, proper ventilation, anchoring and grounding.
2. The inside of the transformer shall be cleaned, and all electrical terminations will be checked for signs of overheating and proper tightness.
3. Insulation resistance tests of each transformer winding will be performed, where possible and the results recorded.
4. Turns ratio test shall be performed and recordings documented.
SWITCHGEAR AND STRUCTURE
1. After power shutdown, the entire switchgear interior will be thoroughly cleaned.
2. Exposed bus connections will be checked for proper tightness.
3. All of the bus insulators will be thoroughly cleaned and visually inspected for cracks and chips.
4. All control switches, auxiliary relays, and devices will be cleaned, lubricated (if applicable), and checked for proper operation.
5. All disconnect switches will be cleaned, lubricated, adjusted and an antioxidant grease applied to the contacts.
6. The lightning arrestors will be cleaned and subjected to an insulation resistance test. Results will be recorded.
7. An insulating resistance test of the bus will be performed. Results will be recorded.
LOW VOLTAGE AIR CIRCUIT BREAKERS
1. Each breaker will have its inspection covers removed and the breaker will be thoroughly cleaned.
2. All contact surfaces will be cleaned to assure maximum conductance.
3. Antioxidant grease will be applied to the breaker’s main contacts.
4. Mechanisms will be checked and lubricated. The mechanical operation will be verified.
5. A current equal to 90 and 110 percent of the breaker’s trip coil setting will be applied to verify proper pick-up of the tripping mechanism.
6. Primary injection testing shall be performed in order to verify that all long-time, short time, instantaneous and ground fault set points are properly set. Those that are not shall be properly adjusted and retested. Units will be tested by passing multiples of their ratings through each phase of the breaker. The resultant trip-times will be recorded.
7. Contact resistance will be measured, and contacts will be adjusted, where possible, for maximum surface contact and pressure. Value of contact resistance tests will be recorded.
8. An insulation resistance test will be performed from each pole to the other two poles and to ground, and the values recorded.
9. On draw out breakers, the breaker carriage and racking mechanism will be cleaned and lubricated.
OIL DISCONNECT SWITCHES
1. The switch mechanism will be opened where applicable.
2. The switch contacts will he inspected and cleaned where applicable.
3. The switch’s operating mechanism will he visually and manually inspected for wear, operation, binding and then cleaned and lubricated.
4. The switch’s insulating fluid will be sampled. tested and fluid levels returned to normal.
5. The complete unit will then be reassembled and tested for proper operation.
6. The contractor will clean up any and all oil lost during sampling.
7. Insulation resistance tests will be performed where accessible and results recorded.
MOLDED CASE CIRCUIT BREAKERS (ELECTRICAL TEST)
1. Each molded case circuit breaker will be inspected in its enclosure for proper installation.
2. The covers of breakers, which are removable, will be removed.
3. The interior and exterior of the breaker will then be thoroughly cleaned.
4. The breaker will be inspected for burning, overheating, wear, proper alignment and general condition.
5. Primary injection testing shall be performed in order to verify that all of the manufacturer’s curve characteristics, such as long time pick-up and delay, short time pick-up and delay, ground fault pickup and delay and instantaneous pick-up points, are all properly set. Those that are not shall be properly adjusted and retested.
6. Contact resistance will be measured, and the results recorded.
7. An insulation resistance test will be performed, and the results recorded.
8. The breakers with instantaneous trip units, with a cable connection capability, will be tested.
9. The breaker’s trip time will then be compared to the manufacturer’s characteristic curve.
MOLDED CASE CIRCUIT BREAKERS (MECHANICAL TESTS)
1. The molded case circuit breakers will be inspected in their enclosures for proper installation.
2. The covers of breakers, which are removable, will be removed.
3. The interior and exterior of the breaker will then be thoroughly cleaned. The breaker will be inspected for burning, overheating, wear, proper alignment and general condition.
4. The breaker will be mechanically exercised and lubricated.
5. Mechanically trip all circuit breakers equipped with “push to test” capabilities
6. Where possible, contact and insulation resistance will be measured. Results will be recorded.
PROTECTIVE RELAYS
1. Relays in draw-out cases will be removed from the case and thoroughly inspected, cleaned and tested.
2. The disks, target rockers and similar moving parts will be inspected.
3. The interiors of draw-out cases will be cleaned, the covers cleaned, and the gaskets inspected.
4. The relays will then be electrically tested with current, or voltage as required in accordance with the manufacturer’s procedures. Relays with characteristic curves will be tested at three tap or pick-up multiples (of found settings).
5. The targets and seal-in units of all relays will be tested to assure proper operation.
6. The relay circuit will be tested to assure that the relay will respond to primary voltages or currents as appropriate.
7. Test tripping of circuit breakers will be performed where an outage can be arranged.
INSTRUMENTATION CALIBRATION
1. Examine all devices for damage and wire connection tightness.
2. Perform a calibration test on all meters using a standard and power supply to determine accuracy at each cardinal point.
3. On meters supplied with transducers, the calibration will be performed from the transducer.
4. All instrument multipliers will be verified.
5. Meter selector switches will be inspected for proper application and operation.
WATT HOUR METER CALIBRATION
1. Visual and mechanical inspection:
a. Examine all devices for mechanical or electrical damage and wire connection tightness.
b. Check conditions of meter face and face gaskets.
2. Electrical tests:
a. Check calibration of all meters at five points using full scale test instruments.
b. Calibrate watt-hour meters to one-half percent (0.5%).
c. Verify all instrument multipliers.
d. Meter selector switches will be inspected for proper application and operation.
TRANSFORMER & CIRCUIT BREAKER INSULATING OIL
The insulating fluids will be sampled and tested from each oil-filled device. Sample containers will be new, sealed and opened only immediately prior to filling. Sampling of oils will be accomplished in accordance with ASTM D-923 and sampling of askarels will be done in accordance with D-1809. The oil samples will be returned to the laboratory and tested for the following:
| TEST DESIGNATION | TEST METHOD | |||
| 1. | Color/Visual | ASTM Dl 500-D2 1 29/D 1524 | ||
| 2. | Dielectric Breakdown | ASTM D877 | ||
| 3. | Neutralization Number | ASTM D974 | ||
| 4. | Specific Gravity | ASTM D1298 | ||
| 5. | Moisture Content | ASTM D1533 | ||
| 6. | Dissolved Gas in Oil | |||
| Analysis (500k VA and up) |
The testing organization that is employed under this contract shall have been regularly engaged in the testing of electrical materials, devices, installations, and systems for a minimum of five years. Proof of this experience is to be included with the proposal package.
All work under this contract shall be performed under the supervision of the testing organization’s Professional Engineer who will be available to discuss any, and all procedures used to test, survey, report and service the equipment required under this contract.
Testing, inspection, calibration and adjustments shall be performed by Field Engineers/Technicians certified by the National Institue for Certification in Engineering Technologies (NICET) and/or the International Electrical Testing Association (NETA) and have a minimum of five years of experience inspecting, testing and calibrating electrical distribution equipment, systems and devices. Proof of experience is to be included with the proposal package.
The testing organization shall only utilize field engineers and technicians who are regularly employed by the firm or testing service. The testing organization shall submit the names, certification numbers and resumes of the Registered Professional Engineer, the lead Field Engineer/Technician and all other Field Engineers/Technicians who will be performing tests and inspections under this contract. This information is to be included with the proposal package.
Test assistants and apprentices may be assigned to the project as assistants to certified Engineers/Technicians at a ratio not to exceed one certified Engineer/Technician to one non-certified assistant or apprentice.
The testing organization shall have a calibration program, which assures that all test instruments are calibrated in accordance with the International Electrical Testing Association (NETA). The accuracy shall be directly traceable to the National Institute of Standards and Technology (NIST). Up to date calibration labels shall be visible on all the test equipment or that equipment will not be allowed to be used under this contract.
Equipment List:
(See attachment A, One line diagram)
Formal Reports:
The testing organization shall submit three copies of the Comprehensive Inspection and Testing report (through the Prime Contractor if applicable) to the COR within 30 calendar days following the conclusion of testing. The report shall be itemized by building and shall include, at a minimum, complete nameplate data, age, maximum loading in amperes (where applicable), and the condition as found and as modified for each piece of equipment and device tested.
Notification in writing shall be submitted immediately to the COR upon completion of testing for any equipment or component deemed to be in a critical state including recommendations for corrective action. A Registered Professional Engineer shall make certification.
Sources Sought Notice Sources Sought Notice
| *= Required Field |
| Sources Sought Notice |
Sources Sought Notice
Attachment A – Equipment List Please note, due to the ongoing construction and changes to the facility, there might be field differences with what is shown in this attachment. Notify COR of any discrepancies in the field.
Building 1
· Basement – Motor Control Centers
· MCC – Square D, Model 4 Control Center, type VMG-2, 120/208v, 2000A (11 Controllers).
· MCC – Square D, Model 4 Control Center, type VMG-2, 120/208V, 600A, (10 Controllers).
· Basement – Fire Pump
· MCC – Electric fire pump controller, Master Controls System, 480V, 3 Phase
· 300 KVA transformer
· 15 KV Disconnect
· Basement – Additional Panels
Panel UP - Siemens, 225A. (Powered by DD)
· Panel LAA - Siemens, 225A. (Powered by DD)
· Panel UPS D – Siemens, 600A, 300A, 225A, 150A
· 3rd Floor
· Panel 3AP2 – G.E., 225A. (Fed by 3AL2)
· Panel 3ECD1 – Siemens, 200A
· Panel ISO3A-1 – ITE, 50A (isolation panel)
· Panel ISO3A-2 – ITE, 50A (isolation panel)
· Panel ISO3A-3 – ITE, 50A (isolation panel)
· 4th Floor
- Panel IP1 – Square D, 30A (isolation panel). (Fed by EDC)
· Panel IP2 – Square D, 30A (isolation panel). (Fed by EED)
| - | Panel IP3 – Square D, 30A (isolation panel). (Fed by EDC) |
| - | Panel IP4 – Square D, 30A (isolation panel). (Fed by EED) |
| - | Panel IP5 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP6 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP7 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP8 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP9 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP10 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP11 – Post Glover, 50A (isolation panel). (Fed by EDC) |
| - | Panel IP12 – Post Glover, 50A (isolation panel). (Fed by EDC) |
| - | Panel IP13 – Post Glover, 50A (isolation panel). (Fed by EDC) |
| - | Panel IP14 – Post Glover, 50A (isolation panel). (Fed by EDC) |
| - | Panel IP15 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP16 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel IP17 – Post Glover, 50A (isolation panel). (Fed by EED) |
| - | Panel E4A – Post Glover, 50A (isolation panel). |
| - | Panel E4CA –G.E., 225A. (Fed by EED) |
| - | Panel P2 – Siemens, 100A. (Fed by DD) |
| - | Panel REA – Siemens, 100A. (Fed by EDC) |
· 6th Floor Roof
· MCC – GE, 480V, 1600A Main, 600A, 350A (28 Controllers). (Fed by Square D Powerzone III)
· ATS #7 Cummins ATS, 277 / 480V, 600A
· MCC E6CC– Siemens 480V/ 277-208V, 3 Phase, 600A, 15 Controllers.
· Transformer 6CT1 – 500KVA, 480/ 208-277V, 60HZ, 3 Phase, 6.5% imp, Siemens cat. 3B5S500C.
· 10th Floor Penthouse (Outside Roof Enclosure)
· CC4 – Square D, Model 4 Control Center, type PXL, 480V, 2000A (17 Controllers). (Fed by Square D Powerzone III)
· 0th Floor Penthouse (Green Elevator Tower)
· Panel EDG – ITE, 100A (for panel EP). (Fed by ATS#6)
· Outside at West end of D-Wing
| - | Transformer – (#T-37 on drawing) 1000 KVA, 12470-delta –480 wye, silicone filled, by G.E. |
| - | Feederline – (#T-37 on drawings) High voltage gear, 12470 v, feeder size, 1-1/0-15 KV per phase, dual feed, GE Breakmaster Switchgear. |
| - | Switchgear – Square D Power Zone III (1600A, (2) 800A, 600A) |
| - | Selector Switch – Square D, 600A – 15kv |
| - | Switchgear – GE, type AKD-5, 480 volts (1600A, (2) 600A, 250A, (4) 200A) |
| - | Outside Bus Duct |
Building 1 – F-Wing
· Transformers for Building 1 (#T-34 on drawing)
· T1 -2000 KVA, 3 phase, 12470-delta –480-wye, 5.75% imp
· T2 -2000 KVA, 3 phase, 12470-delta –480-wye, 5.75% imp.
· T3 -750 KVA, 3 phase, 12470-delta –480-wye, 5.8% imp.
· Switchgear (#T-34 on drawing)
· Primary switchgear (for T1) – GE Tp 303055, 3000 AF, RMS-9, 3000 AX.
· Primary switchgear (for T2) – GE Tp 303055, 3000 AF, RMS-9, 3000 AX.
· Primary switchgear (for T3) – Square D HVL switchgear, main bus ampacity 600A.
· GE, TK4V, 1200 AS.
· Transformers for F-Wing
· XFMR 2FT1- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· XFMR 2FT2- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· XFMR 2FT3- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· Ground Floor:
· Panel MRIP1 – G.E., 225A
· 2Nd Floor:
· Panel 2FDP1 - G.E., 1600A, 480/277v, type 2D (13-400A, 2-100A circuit breakers).
· Panel 2FDP2 - G.E., 1000A, 208/120v, type CCB (8-225A, 200A, 125A, 100A circuit breakers).
· Panel 2FDP3 - G.E., 1200A, 480/277v, type CCB (6-225A, 100A circuit breakers).
· Panel 2FDP4 - G.E., 1000A, 208/120v, type CCB (400A, 300A, 3-225A, 200A, 100A circuit breakers).
· Panel EC2FDP1 - G.E., 1200A, 208/120v, type CCB (12-225A circuit breakers). (Fed by TS-4/GFT-5)
· Panel ELS2FDP1 - G.E., 400A, 208/120v, type AF64S (7-100A, 3-30A, 6-20A, 1-15A circuit breakers). (TS-3/GFT-2)
· Panel 2FAC3 - G.E., 400A, 480/277v, type CCB
· Panel 2FAC5 - G.E., 400A, 480/277v, type CCB
· Panel EXR2F1 – G.E., 800A, 480/277V, type CCG (6-100A, 3-20A, 3-150A, 30A, 40A, 2-15A circuit breakers)
· Panel XR2F1 - G.E., 800A, 480/277v, type CCB ((4)150A, (2)125A, (5)100A, 40A, (3)20A, 15A).
· Panel EC2FDP2 - G.E., 1200A, 120/208v, type CCB (2-30A, 8-225A circuit breakers). (Fed by TS-2/GFT-3)
· Panel 2FAC2 - G.E., 225A, 480/277v, type CCB (14-15A circuit breakers)
· ATS 8 Cummins, 480 / 277-208V, 400A
· Panel EC2F2 – G.E., 100A, 120/208V, type P1 ((6) 20A).
· Panel EC2F3 – G.E., 400A, 120/208V, type P2 (125A,80A, 50A, 45A, (3) 20A, (3) 15A)
· Transformer 2FT4 – 30KVA, 60HZ, 3 Phase, 480/208V, 4.3% imp, Siemens cat.# 3B3Y030FC.
· Transformer TFT3 – 300KVA, 60HZ, 3 Phase, 480/208V, 5.6% imp, Siemens cat. # 3B5S300C.
· 3rd Floor:
· Panel ISO3A-1 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel ISO3A-2 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel ISO3A-3 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel 3ECD1 – Siemens, 200A. (Fed by EC2FDP1)
Electrical Room at end of E-Wing (F-Wing Switchgear) – (#T-35 on drawing)
· Transformer GFT1 – 75 KVA, 480-208 v, 3 phase, 5.1% imp., dry type GE.
· Transformer GFT2 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE
· Transformer GFT3 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE.
· Transformer GFT4 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE.
· Transformer GFT5 – 75 KVA, 480-208 v, 3 phase, 5.3% imp., dry type GE
· Transformer GFT6 – Emergency 300 KVA, 208-480V 3 phase, 5.8% imp., dry type GE
· Transformer GFT7 – 30 KVA, 480-208 v, 3 phase, 4.9% imp., dry type GE
· Safety Switch Gear – 400A (2 Each), Square D
· Safety Switch Gear – 600A, Square D
· Safety Switch Gear – 1200A, (4 Each), Square D
· G.E. A_V Line Switchboard – 3000A, 480/277V, 2-3000A main, 1-3000A tie breaker, 1600A, 2-1200A, 1000A, 6-800A, 400A, 2-300A, 2-150A breakers.
· Panel MXRF – G.E., type CCB, 1200A main, 480/277v, (800A, 5-100A circuit breakers).
Building 18
· Siemens Distribution Panels – Type S5 (2 ea. 800 Amp, 1 ea. 1200 Amp)
· Panel EE – 800A main, 208/120v, (6-225A, 250A, 300A, 6-150A, 125A circuit breakers)
· Panel EDC – 800A main, 208/120v, (7-200A, 2-125A circuit breakers).
· Panel EED – 1200A main, 208/120v, (4-225A, 6-200A, 4-150A, 100A circuit breakers).
· Panel EE-1 – Siemens, 1200A, 208/120V, ((2) 15A, 90A, 40A, (2) 20A)
· Emergency Generator – 450 KW, 562KVA, 3 Phase, 60 Hz, .8 P.F., Model 3412 Caterpillar Diesel Generator, labeled as Gen Set #1
· Emergency Generator – 450 KW, 562KVA, 3 Phase, 60 Hz, .8 P.F., Gen Model LC6 Caterpillar Diesel Generator, labeled as Gen Set #2
· Emergency Generator – 500 KW, 625KVA, 3 Phase, 60 Hz, .8 P.F., Gen Model LC7 Caterpillar Diesel Generator, labeled as Gen Set #3.
· Circuit Breaker EK3 - Cutler Hammer 300A, Stand Alone
· Transformer A – Siemens-Allis, 1000 KVA, 12470-delta –208-wye, oil filled, 5.4% imp.
· Transformer B – Siemens-Allis, 1000 KVA, 12470-delta –208-wye, oil filled, 5.5% imp.
· Main circuit breakers (2) –Siemens-Allis, type LA-4000A, 4000 AF.
· Interrupter switch (2) – Siemens-Allis, type LBS-SE2, 600 A, 15 KV
· Tie Breaker – Siemens-Allis, type LA-1600A, 1600A
· Panel DA-3 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DB Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DJA Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DG Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DC Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DD Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel RS Line Breaker – Siemens-Allis, type LA-1600B, 1000A
· Panel Dental Line Breaker – Siemens-Allis, type LA-1600A, 500A
· Panel 1DD1 Line Breaker – Siemens-Allis, type LA-1600A, 800A
· ATS-1 Line Breaker – Siemens-Allis, type LA-1600A, 1600A
· ATS-2 Line Breaker – Siemens-Allis, type LA-1600B, 1600A
· ATS-3 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· ATS-4 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· ATS-5 Line Breaker – Siemens-Allis, type LA-1600B, 1000A
· ATS-6 Line Breaker – Siemens-Allis, type LA-1600B, 1000A
Building 5
· Main Panel – Cutler Hammer, 800A Building 6
· Motor Control Center – G.E. 8000 Line, service: 208 v, 3 phase, main bus: 600 A, fused switch. Type: NEMA 1, class 1 type B. Braced for 22000 A RMS SYM (5 controllers).
Building 7 – Boiler Plant
· Emergency Generator – (#19 on drawing) Detroit Diesel with Marathon generator, 3 phase, 120/208 volt, 250 KVA, 800A breaker.
· Automatic transfer switch #7 from emergency generators (Russelectric).
· Panel PP – Square D with 8 circuit breakers (70A, (2) 225A, 250A, 200A, (2) 100A)
· Transformer - (#21 on drawing) 500 KVA, 3 phase, mineral oil, 12470-delta –208wye, by RTE, 4.7% imp.
· Square D exterior bus from transformer to switchboard.
· Square D switchboard type FA/1-1 (1200A, 800A, 400A, 225A, 200A, 125A, (3) 100A, 70A, 60A)
· Square D switchboard type QLD-I/L with 5 molded case circuit breakers (250A, 300A, 200A, 175A, 125A).
· Stand Alone Breaker, Square D, 350A
· Stand Alone Breaker, Square D, 700A Building 8
· Square D – 208/120V, 3Phase, (4) 600A main feeders.
· Transformer – (#27 on drawing) – 225 KVA, 3 phase, 4.4% imp., 12470-delta – 208 wye, manufactured by Square D Building 9 – Chiller Plant
· Transformer – 2000 KVA, 3 phase, 12470-delta –480wye, 5.9% imp., silicon fluid filled.
· Transformer – 2000 KVA, 3 phase, 12470-delta –480wye, 5.83% imp., silicon fluid filled.
· MSA-1: 3000 amp bus, 3200 amp frame, 277/480 volt, 3 phase. Services chillers 1, 2, 3 with 1 spare.
· MSA-2: (Same as MSA-1). Services chiller 4, MCC, with 2 spares.
· MSA-B: Tie Breaker, 3 phase, 3000 amp bus, 3200 amp frame.
· Interrupter switch – (2 each) G.E., 600A, 13.8kv
· MCC-chiller building – 480 volt, 1200 amp, 3 phase with 27 misc. controls.
Building 14
· 14-ATS-1
· 14-MDP
· 14-EMDP
· 14-EDP
· Pad mounted transformer
· Transformer 14-FMR Building 15
· MSB1 – 277/480 Volt, 3ph 4W, 1000A main trip
· Panel MDP 277/480 3ph 4W fed from MSB2
· Transformer – 2000kVA (12.47kV to 480/277V 3ph 4W)
· ATS2-C 277/480
· Panel 3CH1 277/480 3ph 4W fed from MDP via ATS2-C
· Panel MDP – 277/480 3ph 4W fed from MSB2
· Panel 1MH1 – 480/277 3ph 4W
· Transformer T3N1 3ph 4W
· Transformer T3C1 3ph 4W
· ATS-S 277/480 fed from MSB 1
· Enclosed circuit breakers 150A, 40A and 400A
· Transformer T1C1 3ph 4W fed from 1HC1
· Transformer T1S1 3ph 4W fed from 1HS1
· ATS-C 277/480 3ph 4W fed from MSB1 Building 23 – CLC
· Transformer (#25 on drawings) – 750 KVA, 3 phase, 12470-delta 208 wye/120, G.E., 5.75% imp.
· Switchgear, pad mounted, S&C Electrical Co. (Manual PMH-19).
· Switchboard – 3000A main with 12 breakers. Breakers rated between 225 and 2500 main, 208 wye/120 volts, 3 phase, 4 wire + ground. By G.E. (ground floor).
· Panel EC1 – G.E., 100A
· Panel EC2 – G.E., 100A
· Panel EDP – G.E., 500A, 208/120V, 3 Phase, type CCB ((5)100A)
· MCC-AG: service: (Ground Floor) 208 v, 3 phase, main bus: 600 A. Type: NEMA 1, class 1, type B. Braced for: 22000 A. RMS SYM. For 2 fans, 1 pump and 2 misc.
· MCC-A3: service: (Third Floor) 208 v, 3 phase, main bus: 1200 A. Type: NEMA 1, class 1, type B. Braced for: 42000 A. RMS SYM. For 5 pumps and 10 misc.
· EMCC-A3: service: (Third Floor) 208 v, 3 phase, main bus: 600 A. Type: NEMA 1, class 1, type B. Braced for: 22000 A. RMS SYM. For 2 compressors and 5 misc.
Substation – (#20 on drawing)
· Check all circuit breakers, relays, automatic transfer switchgear, and the alternate and preferred power sources. Thoroughly check ventilation of substation enclosure. If inadequate, recommend corrective measures. Recalibrate and verify correct operation of automatic transfer switchgear. Please see the attached Building 20 Switchgear Operation and Protection Report dated January 7, 2016 for additional information.
· System Confirmation
· Source Transfer Operation
· Overcurrent Protection and Coordination
· Main Breakers
· Feeders Line 1 and Line 2
· Feeders PRI AC/ ALT AC
· Arc Flash Protection
· Battery Backup System
· HVAC Split Unit System image1.emf
Microsoft_Word_Document.docx Attachment A – Equipment List
Please note, due to the ongoing construction and changes to the facility, there might be field differences with what is shown in this attachment. Notify COR of any discrepancies in the field.
Building 1
· Basement – Motor Control Centers
· MCC – Square D, Model 4 Control Center, type VMG-2, 120/208v, 2000A (11 Controllers).
· MCC – Square D, Model 4 Control Center, type VMG-2, 120/208V, 600A, (10 Controllers).
· Basement – Fire Pump
· MCC – Electric fire pump controller, Master Controls System, 480V, 3 Phase
· 300 KVA transformer
· 15 KV Disconnect
· Basement – Additional Panels
· Panel UP - Siemens, 225A. (Powered by DD)
· Panel LAA - Siemens, 225A. (Powered by DD)
· Panel UPS D – Siemens, 600A, 300A, 225A, 150A
· 3rd Floor
· Panel 3AP2 – G.E., 225A. (Fed by 3AL2)
· Panel 3ECD1 – Siemens, 200A
· Panel ISO3A-1 – ITE, 50A (isolation panel)
· Panel ISO3A-2 – ITE, 50A (isolation panel)
· Panel ISO3A-3 – ITE, 50A (isolation panel)
· 4th Floor
- Panel IP1 – Square D, 30A (isolation panel). (Fed by EDC)
· Panel IP2 – Square D, 30A (isolation panel). (Fed by EED)
- Panel IP3 – Square D, 30A (isolation panel). (Fed by EDC)
- Panel IP4 – Square D, 30A (isolation panel). (Fed by EED)
- Panel IP5 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP6 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP7 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP8 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP9 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP10 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP11 – Post Glover, 50A (isolation panel). (Fed by EDC)
- Panel IP12 – Post Glover, 50A (isolation panel). (Fed by EDC)
- Panel IP13 – Post Glover, 50A (isolation panel). (Fed by EDC)
- Panel IP14 – Post Glover, 50A (isolation panel). (Fed by EDC)
- Panel IP15 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP16 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel IP17 – Post Glover, 50A (isolation panel). (Fed by EED)
- Panel E4A – Post Glover, 50A (isolation panel).
- Panel E4CA –G.E., 225A. (Fed by EED)
- Panel P2 – Siemens, 100A. (Fed by DD)
- Panel REA – Siemens, 100A. (Fed by EDC)
· 6th Floor Roof
· MCC – GE, 480V, 1600A Main, 600A, 350A (28 Controllers). (Fed by Square D Powerzone III)
· ATS #7 Cummins ATS, 277 / 480V, 600A
· MCC E6CC– Siemens 480V/ 277-208V, 3 Phase, 600A, 15 Controllers.
· Transformer 6CT1 – 500KVA, 480/ 208-277V, 60HZ, 3 Phase, 6.5% imp, Siemens cat. 3B5S500C.
· 10th Floor Penthouse (Outside Roof Enclosure)
· MCC4 – Square D, Model 4 Control Center, type PXL, 480V, 2000A (17 Controllers). (Fed by Square D Powerzone III)
· 10th Floor Penthouse (Green Elevator Tower)
· Panel EDG – ITE, 100A (for panel EP). (Fed by ATS#6)
· Outside at West end of D-Wing
- Transformer – (#T-37 on drawing) 1000 KVA, 12470-delta –480 wye, silicone filled, by G.E.
- Feederline – (#T-37 on drawings) High voltage gear, 12470 v, feeder size, 1-1/0-15 KV per phase, dual feed, GE Breakmaster Switchgear.
- Switchgear – Square D Power Zone III (1600A, (2) 800A, 600A)
- Selector Switch – Square D, 600A – 15kv
- Switchgear – GE, type AKD-5, 480 volts (1600A, (2) 600A, 250A, (4) 200A)
- Outside Bus Duct
Building 1 – F-Wing
· Transformers for Building 1 (#T-34 on drawing)
· T1 -2000 KVA, 3 phase, 12470-delta –480-wye, 5.75% imp
· T2 -2000 KVA, 3 phase, 12470-delta –480-wye, 5.75% imp.
· T3 -750 KVA, 3 phase, 12470-delta –480-wye, 5.8% imp.
· Switchgear (#T-34 on drawing)
· Primary switchgear (for T1) – GE Tp 303055, 3000 AF, RMS-9, 3000 AX.
· Primary switchgear (for T2) – GE Tp 303055, 3000 AF, RMS-9, 3000 AX.
· Primary switchgear (for T3) – Square D HVL switchgear, main bus ampacity 600A.
· GE, TK4V, 1200 AS.
· Transformers for F-Wing
· XFMR 2FT1- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· XFMR 2FT2- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· XFMR 2FT3- G.E., Model 9T23B3878, 300 KVA, 5.6% imp., Delta 480—Wye 208/120 volt.
· Ground Floor:
· Panel MRIP1 – G.E., 225A
· 2Nd Floor:
· Panel 2FDP1 - G.E., 1600A, 480/277v, type 2D (13-400A, 2-100A circuit breakers).
· Panel 2FDP2 - G.E., 1000A, 208/120v, type CCB (8-225A, 200A, 125A, 100A circuit breakers).
· Panel 2FDP3 - G.E., 1200A, 480/277v, type CCB (6-225A, 100A circuit breakers).
· Panel 2FDP4 - G.E., 1000A, 208/120v, type CCB (400A, 300A, 3-225A, 200A, 100A circuit breakers).
· Panel EC2FDP1 - G.E., 1200A, 208/120v, type CCB (12-225A circuit breakers). (Fed by TS-4/GFT-5)
· Panel ELS2FDP1 - G.E., 400A, 208/120v, type AF64S (7-100A, 3-30A, 6-20A, 1-15A circuit breakers). (TS-3/GFT-2)
· Panel 2FAC3 - G.E., 400A, 480/277v, type CCB
· Panel 2FAC5 - G.E., 400A, 480/277v, type CCB
· Panel EXR2F1 – G.E., 800A, 480/277V, type CCG (6-100A, 3-20A, 3-150A, 30A, 40A, 2-15A circuit breakers)
· Panel XR2F1 - G.E., 800A, 480/277v, type CCB ((4)150A, (2)125A, (5)100A, 40A, (3)20A, 15A).
· Panel EC2FDP2 - G.E., 1200A, 120/208v, type CCB (2-30A, 8-225A circuit breakers). (Fed by TS-2/GFT-3)
· Panel 2FAC2 - G.E., 225A, 480/277v, type CCB (14-15A circuit breakers)
· ATS 8 Cummins, 480 / 277-208V, 400A
· Panel EC2F2 – G.E., 100A, 120/208V, type P1 ((6) 20A).
· Panel EC2F3 – G.E., 400A, 120/208V, type P2 (125A,80A, 50A, 45A, (3) 20A, (3) 15A)
· Transformer 2FT4 – 30KVA, 60HZ, 3 Phase, 480/208V, 4.3% imp, Siemens cat.# 3B3Y030FC.
· Transformer TFT3 – 300KVA, 60HZ, 3 Phase, 480/208V, 5.6% imp, Siemens cat. # 3B5S300C.
· 3rd Floor:
· Panel ISO3A-1 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel ISO3A-2 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel ISO3A-3 –ITE, 50A (isolation panel). (Fed by EC2FDP1)
· Panel 3ECD1 – Siemens, 200A. (Fed by EC2FDP1)
Electrical Room at end of E-Wing (F-Wing Switchgear) – (#T-35 on drawing)
· Transformer GFT1 – 75 KVA, 480-208 v, 3 phase, 5.1% imp., dry type GE.
· Transformer GFT2 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE
· Transformer GFT3 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE.
· Transformer GFT4 – 300 KVA, 480-208 v, 3 phase, 5.6% imp., dry type GE.
· Transformer GFT5 – 75 KVA, 480-208 v, 3 phase, 5.3% imp., dry type GE
· Transformer GFT6 – Emergency 300 KVA, 208-480V 3 phase, 5.8% imp., dry type GE
· Transformer GFT7 – 30 KVA, 480-208 v, 3 phase, 4.9% imp., dry type GE
· Safety Switch Gear – 400A (2 Each), Square D
· Safety Switch Gear – 600A, Square D
· Safety Switch Gear – 1200A, (4 Each), Square D
· G.E. A_V Line Switchboard – 3000A, 480/277V, 2-3000A main, 1-3000A tie breaker, 1600A, 2-1200A, 1000A, 6-800A, 400A, 2-300A, 2-150A breakers.
· Panel MXRF – G.E., type CCB, 1200A main, 480/277v, (800A, 5-100A circuit breakers).
Building 18
· Siemens Distribution Panels – Type S5 (2 ea. 800 Amp, 1 ea. 1200 Amp)
· Panel EE – 800A main, 208/120v, (6-225A, 250A, 300A, 6-150A, 125A circuit breakers)
· Panel EDC – 800A main, 208/120v, (7-200A, 2-125A circuit breakers).
· Panel EED – 1200A main, 208/120v, (4-225A, 6-200A, 4-150A, 100A circuit breakers).
· Panel EE-1 – Siemens, 1200A, 208/120V, ((2) 15A, 90A, 40A, (2) 20A)
· Emergency Generator – 450 KW, 562KVA, 3 Phase, 60 Hz, .8 P.F., Model 3412 Caterpillar Diesel Generator, labeled as Gen Set #1
· Emergency Generator – 450 KW, 562KVA, 3 Phase, 60 Hz, .8 P.F., Gen Model LC6 Caterpillar Diesel Generator, labeled as Gen Set #2
· Emergency Generator – 500 KW, 625KVA, 3 Phase, 60 Hz, .8 P.F., Gen Model LC7 Caterpillar Diesel Generator, labeled as Gen Set #3.
· Circuit Breaker EK3 - Cutler Hammer 300A, Stand Alone
· Transformer A – Siemens-Allis, 1000 KVA, 12470-delta –208-wye, oil filled, 5.4% imp.
· Transformer B – Siemens-Allis, 1000 KVA, 12470-delta –208-wye, oil filled, 5.5% imp.
· Main circuit breakers (2) –Siemens-Allis, type LA-4000A, 4000 AF.
· Interrupter switch (2) – Siemens-Allis, type LBS-SE2, 600 A, 15 KV
· Tie Breaker – Siemens-Allis, type LA-1600A, 1600A
· Panel DA-3 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DB Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DJA Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DG Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DC Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel DD Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· Panel RS Line Breaker – Siemens-Allis, type LA-1600B, 1000A
· Panel Dental Line Breaker – Siemens-Allis, type LA-1600A, 500A
· Panel 1DD1 Line Breaker – Siemens-Allis, type LA-1600A, 800A
· ATS-1 Line Breaker – Siemens-Allis, type LA-1600A, 1600A
· ATS-2 Line Breaker – Siemens-Allis, type LA-1600B, 1600A
· ATS-3 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· ATS-4 Line Breaker – Siemens-Allis, type LA-1600A, 1000A
· ATS-5 Line Breaker – Siemens-Allis, type LA-1600B, 1000A
· ATS-6 Line Breaker – Siemens-Allis, type LA-1600B, 1000A
Building 5
· Main Panel – Cutler Hammer, 800A
Building 6
· Motor Control Center – G.E. 8000 Line, service: 208 v, 3 phase, main bus: 600 A, fused switch. Type: NEMA 1, class 1 type B. Braced for 22000 A RMS SYM (5 controllers).
Building 7 – Boiler Plant
· Emergency Generator – (#19 on drawing) Detroit Diesel with Marathon generator, 3 phase, 120/208 volt, 250 KVA, 800A breaker.
· Automatic transfer switch #7 from emergency generators (Russelectric).
· Panel PP – Square D with 8 circuit breakers (70A, (2) 225A, 250A, 200A, (2) 100A)
· Transformer - (#21 on drawing) 500 KVA, 3 phase, mineral oil, 12470-delta –208wye, by RTE, 4.7% imp.
· Square D exterior bus from transformer to switchboard.
· Square D switchboard type FA/1-1 (1200A, 800A, 400A, 225A, 200A, 125A, (3) 100A, 70A, 60A)
· Square D switchboard type QLD-I/L with 5 molded case circuit breakers (250A, 300A, 200A, 175A, 125A).
· Stand Alone Breaker, Square D, 350A
· Stand Alone Breaker, Square D, 700A
Building 8
· Square D – 208/120V, 3Phase, (4) 600A main feeders.
· Transformer – (#27 on drawing) – 225 KVA, 3 phase, 4.4% imp., 12470-delta – 208 wye, manufactured by Square D
Building 9 – Chiller Plant
· Transformer – 2000 KVA, 3 phase, 12470-delta –480wye, 5.9% imp., silicon fluid filled.
· Transformer – 2000 KVA, 3 phase, 12470-delta –480wye, 5.83% imp., silicon fluid filled.
· MSA-1: 3000 amp bus, 3200 amp frame, 277/480 volt, 3 phase. Services chillers 1, 2, 3 with 1 spare.
· MSA-2: (Same as MSA-1). Services chiller 4, MCC, with 2 spares.
· MSA-B: Tie Breaker, 3 phase, 3000 amp bus, 3200 amp frame.
· Interrupter switch – (2 each) G.E., 600A, 13.8kv
· MCC-chiller building – 480 volt, 1200 amp, 3 phase with 27 misc. controls.
Building 14
· 14-ATS-1
· 14-MDP
· 14-EMDP
· 14-EDP
· Pad mounted transformer
· Transformer 14-FMR
Building 15
· MSB1 – 277/480 Volt, 3ph 4W, 1000A main trip
· Panel MDP 277/480 3ph 4W fed from MSB2
· Transformer – 2000kVA (12.47kV to 480/277V 3ph 4W)
· ATS2-C 277/480
· Panel 3CH1 277/480 3ph 4W fed from MDP via ATS2-C
· Panel MDP – 277/480 3ph 4W fed from MSB2
· Panel 1MH1 – 480/277 3ph 4W
· Transformer T3N1 3ph 4W
· Transformer T3C1 3ph 4W
· ATS-S 277/480 fed from MSB 1
· Enclosed circuit breakers 150A, 40A and 400A
· Transformer T1C1 3ph 4W fed from 1HC1
· Transformer T1S1 3ph 4W fed from 1HS1
· ATS-C 277/480 3ph 4W fed from MSB1
Building 23 – CLC
· Transformer (#25 on drawings) – 750 KVA, 3 phase, 12470-delta 208 wye/120, G.E., 5.75% imp.
· Switchgear, pad mounted, S&C Electrical Co. (Manual PMH-19).
· Switchboard – 3000A main with 12 breakers. Breakers rated between 225 and 2500 main, 208 wye/120 volts, 3 phase, 4 wire + ground. By G.E. (ground floor).
· Panel EC1 – G.E., 100A
· Panel EC2 – G.E., 100A
· Panel EDP – G.E., 500A, 208/120V, 3 Phase, type CCB ((5)100A)
· MCC-AG: service: (Ground Floor) 208 v, 3 phase, main bus: 600 A. Type: NEMA 1, class 1, type B. Braced for: 22000 A. RMS SYM. For 2 fans, 1 pump and 2 misc.
· MCC-A3: service: (Third Floor) 208 v, 3 phase, main bus: 1200 A. Type: NEMA 1, class 1, type B. Braced for: 42000 A. RMS SYM. For 5 pumps and 10 misc.
· EMCC-A3: service: (Third Floor) 208 v, 3 phase, main bus: 600 A. Type: NEMA 1, class 1, type B. Braced for: 22000 A. RMS SYM. For 2 compressors and 5 misc.
Substation – (#20 on drawing)
· Check all circuit breakers, relays, automatic transfer switchgear, and the alternate and preferred power sources. Thoroughly check ventilation of substation enclosure. If inadequate, recommend corrective measures. Recalibrate and verify correct operation of automatic transfer switchgear. Please see the attached Building 20 Switchgear Operation and Protection Report dated January 7, 2016 for additional information.
· System Confirmation
· Source Transfer Operation
· Overcurrent Protection and Coordination
· Main Breakers
· Feeders Line 1 and Line 2
· Feeders PRI AC/ ALT AC
· Arc Flash Protection
· Battery Backup System
· HVAC Split Unit System
File details come from the government source that posted it. Updated .