100 Electrical Study to VA BDB.pdf
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- Attached to
- J059--Electrical Maintenance Contract Indianapolis, IN Federal contract opportunity
- Solicitation number
- 36C25024Q0123
About this file
This file describes a federal contract opportunity for electrical maintenance services. The Department of Veterans Affairs Veterans Health Administration Veterans Integrated Service Network 10 is soliciting proposals under solicitation number 36C25024Q0123 for electrical maintenance at VA medical centers in Indianapolis, Indiana. The services required include general electrical repair and installation work. The period of performance is one base year with four one-year options. Proposals are due by April 15, 2023 and the contract is expected to be awarded by June 1, 2023. The contract has a small business set-aside designation.
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| 36C25024Q0123 0001.docx | DOCX document | |
| 8 D WING RISER DIA EMER NOR Sht 8.pdf | ||
| 7 C WING RISER DIA NOR Sht 7.pdf | ||
| 4 A WING RISER DIA NORM Sht 4.pdf | ||
| 3 A WING RISER DIA EMER FEED Sht 3.pdf | ||
| 9 IU Substation VA Switchgear sht 9.pdf | ||
| 5 B Wing Emer Nor Sht 5.pdf | ||
| 2 Build 23 - Single Line Diagram Sht 2.pdf | ||
| 1 Distribution System Schematic Layout1.pdf | ||
| 36C25024Q0123.docx | DOCX document |
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Text version
Department of Veterans Affairs
Contract Number: VA250-17-D-0135
Arc Flash Survey Indianapolis VAMC
1481 West 10th Street Indianapolis, IN 46202
100% Final Report
REPORT BY:
Josh VandenEnde, P.E.
Beau Browning
ENGINEER OF RECORD: Josh VandenEnde, P.E.
1000 Centre Avenue Fort Collins, CO 80526
17 December 2020
DocuSign Envelope ID: 3DB0FA86-B625-4FB6-8DDC-C837DAD94737
12/16/2020
TABLE OF CONTENTS
1.0 INTRODUCTION
2.0 MODEL PREPARATION
3.0 SHORT CIRCUIT ANALYSIS AND ARC-FLASH HAZARD
3.1 SKM Power*Tools Analyses:
3.2 Utility Information:
3.3 Short Circuit Analysis:
3.4 Arc-Flash Hazard:
3.5 Arc-Flash Hazard Labels:
4.0 COORDINATION STUDY
APPENDIX A – References APPENDIX B – Single Line Diagrams APPENDIX C – System Data Model Inputs APPENDIX D – Short-Circuit Reports APPENDIX E – Arc-Flash Hazard Report APPENDIX F – Arc-Flash Hazard Labels APPENDIX G – Coordination Study Time Current Curves APPENDIX H – Issues Log APPENDIX I – Detailed Electrical Systems Analysis
1.0 INTRODUCTION
The Department of Veterans Affairs Division contracted with Apogee Consulting Group P.A. to provide evaluation and reporting of electrical services and distribution that have been surveyed as agreed upon and modeled by Apogee Consulting Group P.A. Due to the size and scope of this study, reporting may be divided by Department of Veterans Affairs Facilities number.
Objectives included identifying electrical system deficiencies, generating arc flash hazard labels for equipment, and providing system coordination of overcurrent devices as agreed upon for each Department of Veterans Affairs Facility number.
This report outlines the methodology employed for the electrical study and provides the theoretical foundation for analyses. Further discussion can be found in the appendices; Detailed Electrical Systems Analysis.
Study methodologies are based upon industry standard best practices including use of computerized power analysis modeling software distributed by SKM Power*Tools. The technical publication titled, “Complete Guide to Arc Flash Hazard Calculation Studies- A step-by-step approach packed with examples, tips, and calculation worksheets,” by Jim Phillips, provides a basis for many of the recommendations included in this report. Additional references can be found in the appendices; References.
Analyses are conducted within the scope of the overall study. They include, but are not limited to short circuit studies, arc flash incident energy (AFIE) calculation studies, coordination studies, and existing equipment assessment.
Short circuit studies verify equipment is properly sized for the calculated available fault current (AFC). AFIE calculation studies facilitate arc flash hazard risk assessment and equipment labeling in compliance with applicable standards, including the NFPA 70 National Electrical Code (NEC), NFPA 70E Standard for Electrical Safety in the Workplace, and OSHA. Coordination studies verify equipment settings incur fault clearance at the overcurrent protective device closest to the source of a fault. Existing equipment studies analyze and record the visible conditions of equipment and the immediate surrounding area that may affect the equipment or access to it. Standards-compliant labels indicating calculated arc flash hazard values are to be provided in conjunction with the issuance of the overall study and are to be affixed to corresponding equipment.
The body of this report is intended to specify analysis methodology. Detailed results can be found in the appendices.
2.0 MODEL PREPARATION
Survey data was compiled as agreed and system models were created and edited by Apogee Consulting Group P.A. for each Department of Veterans Affairs Facility number. Models were created and/or updated using recent survey data as well as representative drawings for each facility in an effort to accurately depict the actual system components and their means of attachment. Single line diagrams displaying input data for each facility can be found in the appendices;
Single-Line Diagrams.
Where system information was unattainable or omitted from the model and did not prevent system analysis, the client was notified and reasonable efforts were taken to locate missing information. Necessary data assumptions were made in accordance with IEEE 1584.1-2013.
3.0 SHORT CIRCUIT ANALYSIS AND ARC-FLASH HAZARD
3.1 SKM Power*Tools Analyses:
Upon completing model creation and updating, the models were evaluated using SKM Power*Tools power analysis software. Per industry standard IEEE 1584, the software was used to derive AFC at specified points within each model. Additional explanation of this calculation process can be found in the appendices; Detailed Electrical Systems Analysis.
3.2 Utility Information:
Utility source specifics were requested from the respective utility provider.
While source specifics were used when provided, it is recommended that they be used with caution as they are subject to changes without notification by the utility provider that may affect source AFC and impedance.
3.3 Short Circuit Analysis:
The short circuit study indicates the maximum AFC at specified points throughout the system.
Tabulated short circuit values can be found in the appendices; Short-Circuit Reports.
AFC values are calculated and used to verify that equipment ampere interrupting capacity (AIC) ratings, where provided, are higher than the calculated AFC values to which equipment will be exposed, referred to as equipment duty (EQD). It is indicated by the calculation 𝐸𝑄𝐷 =
AFC ‒ AIC
AIC
and represented as a percentage. A positive percentage indicates overdutied equipment and a violation of the equipment AIC rating. A negative percentage indicates the equipment AIC rating is above the calculated AFC.
EQD calculations can be found in the appendices; Single-Line Diagrams, EQD.
An EQD representative single line diagram with no percentages indicated implies that all equipment is within the AIC ratings.
Values were reported when EQD was within 10% of the rating of the equipment. If equipment was identified as overdutied, ‘VIOLATION’ has been reported in the comments section of the EQD report.
Equipment identified as overdutied was reported in the Issues Log and can be found in the appendices; Issues Log. Equipment identified to be overdutied by more than 20% have been listed as Priority 1.
Short-circuit withstand ratings of low voltage disconnect switches, such as equipment local disconnects, were not evaluated in this study. Care should be taken to ensure that these devices are applied within their UL-listed short-circuit withstand ratings. The typical withstand ratings for disconnect switches (safety switches) range from 10kA to 200kA.
Where information was available, inductive loads (i.e. motor loads) were included within the models. In the event of a fault, they may contribute to the sub-transient fault current.
Further discussion of the calculations and theory involved in the short circuit analysis can be found in appendices; Detailed Electrical Systems Analysis.
3.4 Arc-Flash Hazard:
Arc-flash hazard and device coordination are closely related and, unfortunately, suffer from competing interests with regards to utility AFC values as noted in the previous section regarding the ‘infinite bus’ method.
Achieving complete system coordination often involves extending trip settings to OCPD maximums for upstream devices. This allows the most downstream devices to clear faults. Allowing the device nearest the fault to trip minimizes the total system outage experienced. Unfortunately, maximizing settings for upstream OCPDs increases the activation time and duration of a mid-system faults, where AFC is much greater. AFC and time are directly proportional to AFIE exposure.
IEEE 1584 recommends evaluating AFIE values at both 100% of the anticipated AFC, as well as 85%, in an effort to analyze the effect of lower AFC on the trip time of OCPD’s and the corresponding changes to the
AFIE.
All equipment and nodes modeled were evaluated at both recommended evaluation percentages for AFC. The AFC percentage inducing the greater AFIE value was considered to be the worst-case and thus the only value reported.
AFIE values can be found in the appendices; Single-Line Diagrams, AFIE.
Note: Incident energy values listed in the Arc Flash Hazard Report are valid only for protective devices configured according to the OCPD coordination study. Changes to upstream OCPD’s will void the provided arc flash labels and will require the affected portion of the system to reevaluated.
3.5 Arc-Flash Hazard Labels:
Information to be included on Arc-Flash Hazard labels is the subject of debate in the industry. Jim Phillips, the author of “Complete Guide to Arc Flash Hazard Calculation Studies” and a contributor to many arc flash related standards, recommends providing as much information as possible to inform qualified persons of the hazard level to which they may be exposed and how to best prepare themselves if it is not possible to de-energize the equipment as emphasized in NFPA 70E. Additionally, Phillips advises that care be taken to comply with the standards defined by ANSI Z535 for safety hazard labeling which is also referenced by NFPA 70 (NEC) Article 110.16.
The ANSI 7535 standard defines the following signal word choice, background and text coloration as it correlates to risk severity:
CAUTION: Indicates a hazardous situation which, if not avoided, could result in minor or moderate injury. (Black letters on safety yellow background)
WARNING: Indicates a hazardous situation that, if not avoided, could result in death or serious injury. (Black letters on safety orange background)
DANGER: Indicates a hazardous situation that, if not avoided, will result in death or serious injury. (White letters on safety red background) The Industry standard for arc flash labels is consistent with ANSI 7535.
Labels should have “WARNING” in black letters on orange background where AFIE is below 40 cal/cm2 and “DANGER” in white letters with red background where AFIE is at or above 40 cal/cm2.
NEC 110.16 requires electrical equipment in non-dwelling units which are likely to require examination, adjustment, servicing, or maintenance while energized are to be field marked in such a way that it is clearly visible to qualified persons before working on the equipment. Per NFPA 70E Article 130.5(C), labels must at minimum include the following information:
Nominal system voltage
Arc flash boundary
At least one of, o AFIE and corresponding working distance o Minimum required arc rating of clothing o Required level of PPE o Highest Hazard/Risk Category (HRC) for the equipment
The following are examples of labels that Apogee Consulting Group P.A.
has provided in cooperation with this study for equipment as required per NEC 110.16. Labels were created using 4” x 6” die-cut UV, chemical and scratch resistant indoor/outdoor vinyl with thermal transfer technology.
Where device information required for OCPD coordination/arc-flash hazard study was unavailable due to extenuating circumstances, a label was issued stating:
“DANGER – DO NOT WORK ON EQUIPMENT WHILE
ENERGIZED!”
Labels have been provided in an organized manner and are to be affixed to equipment in accordance with NEC 110.16. Equipment ID and location information have been included on all labels where it was deemed to be advantageous.
Some labels may have been identified as optional. While these labels are not required, they may contribute to a safer work environment. These labels are to be installed at the discretion of the site supervisor.
Further discussion about calculations and theories surrounding an arc-flash calculation hazard study, as well as the physiological implications of an Arc-Flash hazard can be found in the appendices; Detailed Electrical Systems Analysis.
PDF versions of all arc-flash hazard equipment labels can be found in the appendices; Arc Flash Hazard Labels.
4.0 COORDINATION STUDY
A coordination study is an effort to identify OCPD settings that will cause systems to be coordinated in a manner such that the nearest upstream OCPD will trip in the event of a fault condition in order to clear the fault.
Many subsystems in existing facilities are not designed expressly for coordination. It is inherent to outdated equipment and designs that full coordination is unachievable. Many OCPD’s have fixed settings that are unable to be changed. OCPD’s may be identified to exist that provide the availability to better coordinate a subsystem. Time current curve plots can be found in the appendices; Coordination Study Time Current Curves.
If full OCPD coordination is desired, new equipment as well as prolonged scheduled outages will be necessary.
The findings and recommendations herein are dependent upon site survey, probable assumptions of equipment specifics and parameters affecting the arc-flash study and coordination, and data provided by the client and/or representatives of the client. Verification of existing settings as well as potential settings should be conducted prior to any work being completed. Existing settings can be found in the appendices; System Data Model Inputs.
It is recommended to notify the site supervisor if contrasting device settings or equipment is found. System models should be updated with any new information and reevaluated when necessary.
While it is possible to adjust OCPD settings while the system is energized, scheduled outages should be arranged prior to any adjustment. It is recommended that OCPD’s be adjusted only while the system is deenergized.
Neither Apogee Consulting Group P.A. nor any of its personnel nor subcontractor can assume any liability for the occurrence of an unscheduled outage in conjunction with adjustment of trip devices. It is recommended to schedule outages before adjusting settings on trip devices.
Reducing trip settings on a breaker can increase the likelihood that an OCPD may trip due to overload in the future. Future circuit loading was not considered with this study, but is an important factor when choosing to implement the recommended settings.
Further discussions of calculations and theory involved in the coordination study can be found in the appendices; Detailed Electrical Systems Analysis.
APPENDIX A – References
1. IEEE Standard 1584-2002 – Guide for Performing Arc Flash Hazard Calculations
2. NFPA 70E (2018) – Standard for Electrical Safety in the Workplace
3. OSHA CFR Title 29, Part 1910, Subpart S
4. NFPA 70 (2017) – National Electrical Code
5. IEEE 551-2006 – Recommended Practice for Calculating AC Short-Circuit Currents in Industrial and Commercial Power Systems [The Violet Book]
6. ANSI/IEEE C37.10-2011 – IEEE Guide for Investigation, Analysis, and Reporting of Power Circuit Breaker Failures
7. ANSI/IEEE C37.5-1979 – IEEE Guide for calculation of Fault Currents for Application of AC High-Voltage Circuit Breakers Rated on a Total Current Basis
8. ANSI/IEEE C37.13-1981 – IEEE Standard for Low-Voltage AC Power Circuit Breakers Used in Enclosures
10. ANSI/NETA MTS – Standard for Maintenance Testing Specifications for Electrical Power Equipment and Systems
11. ANSI/NETA ATS – Standard for Maintenance Testing Specifications for Electrical Power Equipment and Systems
12. ANSI Z535.4 – American Standard for Product Signs and Labels.
INTENTIONALLY BLANK
APPENDIX B – Single Line Diagrams Single line diagrams with component names, incident energy, 3ph bolted fault current and other notable data points.
INTENTIONALLY BLANK
Sheet Index
SHEET NO. SHEET NAME BUILDING
DRAWING
NUMBER
E-601-1 BLDG1-AMS 1 1 OF 10
E-601-2 BLDG1-AMS 1 2 OF 10
E-601-3 BLDG1-AMS 1 3 OF 10
E-601-4 BLDG1-AMS 1 4 OF 10
E-601-5 BLDG1-AMS 1 5 OF 10
E-601-6 BLDG1-AMS 1 6 OF 10
E-601-7 BLDG1-AMS 1 7 OF 10
E-601-8 BLDG1-AMS 1 8 OF 10
E-601-9 BLDG1-AMS 1 9 OF 10
E-601-10 BLDG1-AMS 1 10 OF 10
E-602-1 BLDG1-CNE 1 1 OF 12
E-602-2 BLDG1-CNE 1 2 OF 12
E-602-3 BLDG1-CNE 1 3 OF 12
E-602-4 BLDG1-CNE 1 4 OF 12
E-602-5 BLDG1-CNE 1 5 OF 12
E-602-6 BLDG1-CNE 1 6 OF 12
E-602-7 BLDG1-CNE 1 7 OF 12
E-602-8 BLDG1-CNE 1 8 OF 12
E-602-9 BLDG1-CNE 1 9 OF 12
E-602-10 BLDG1-CNE 1 10 OF 12
E-602-11 BLDG1-CNE 1 11 OF 12
E-602-12 BLDG1-CNE 1 12 OF 12
E-603-1 BLDG1-CS 1 1 OF 2
E-603-2 BLDG1-CS 1 2 OF 2
E-604-1 BLDG1-25D 1 1 OF 1
E-605-1 BLDG1-SS1D 1 1 OF 6
E-605-2 BLDG1-SS1D 1 2 OF 6
E-605-3 BLDG1-SS1D 1 3 OF 6
E-605-4 BLDG1-SS1D 1 4 OF 6
E-605-5 BLDG1-SS1D 1 5 OF 6
E-605-6 BLDG1-SS1D 1 6 OF 6
E-606-1 BLDG19 19 1 OF 1
E-607-1 BLDG21 21 1 OF 1
E-608-1 BLDG22 22 1 OF 3
E-608-2 BLDG22 22 2 OF 3
E-608-3 BLDG22 22 3 OF 3
E-609-1 MVLOOP 1 OF 3
E-609-2 MVLOOP 2 OF 3
E-609-3 MVLOOP 3 OF 3
E-610-1 PRKG GRG 20 1 OF 1
ELECTRICAL
CB-400A AATSCR2 (E)
CB-800A AATSEQ7 (E)
CB-800A AATSEQ6 (E)
NOTE NOTE
CB-400A A1SMT1
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 1 (400A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 9 (3600A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 10 (4000A)
250 kcmil
260.0 ft
MCB-500A A1SMLT1
GE
Frame/Model THJK
Sensor/Trip 500.0 A
Plug 500.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (5000A)
A1SMLT1
Rm D-1355
480.0 V
AFIE 0.75 Cal/cm^2
Bolted Fault 16.873 kA
Voltage Drop 4.57 %
CB-400A AATSCR2 (N)
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 0.5 (200A)
LTD (1-4) 2
STPU (1.5-9 x LTPU) 3.5 (700A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (6000A)
500 kcmil
40.0 ft
E N
AATSCR2
Position - Normal On
AATSCR2 (N)
Rm A-B140
480.0 V
AFIE 2.51 Cal/cm^2
Bolted Fault 28.163 kA
Voltage Drop 4.57 %
500 kcmil
260.0 ft
MCB-400A A5HCRDP1
EATON/CUTLER-HAMMER
Frame/Model HKD
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (5-10 x Trip) 10 (4000A)
CB-800A AATSEQ7 (N)
GE
Frame/Model AKR-30L
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 0.95 (380A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 5 (1900A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (6000A)
500 kcmil
45.0 ft
AATSEQ7 (N)
Rm A-B140
480.0 V
AFIE 2.79 Cal/cm^2
Bolted Fault 31.563 kA
Voltage Drop 4.75 % E N
AATSEQ7
Position - Normal On
500 kcmil
300.0 ft
MCB-800A A8HEQDP1
GE
Frame/Model SKHA
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
MAX
A8HEQDP1
Rm A-8086
480.0 V
AFIE 1.06 Cal/cm^2
Bolted Fault 18.172 kA
Voltage Drop 5.93 %
CB-200A A8EMCC1
GE
Frame/Model SFHA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX
3/0 AWG
20.0 ft
A8EMCC1
Rm A-8086
480.0 V
AFIE 0.74 Cal/cm^2
Bolted Fault 16.581 kA
Voltage Drop 6.01 %
CB-200A SF50
GE
Frame/Model SFHA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX
4/0 AWG
40.0 ft
SF50
Rm
480.0 V
AFIE 0.69 Cal/cm^2
Bolted Fault 15.478 kA
Voltage Drop 6.05 %
MTR-SF50
80 hp
CB-200A SF49
GE
Frame/Model SFHA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX
4/0 AWG
40.0 ft
SF49
Rm
480.0 V
AFIE 0.69 Cal/cm^2
Bolted Fault 15.478 kA
Voltage Drop 6.05 %
MTR-SF49
80 hp
CB-80A RF49
GE
Frame/Model FCS
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
2 AWG
40.0 ft
RF49
Rm
480.0 V
AFIE 0.28 Cal/cm^2
Bolted Fault 13.115 kA
Voltage Drop 6.08 %
MTR-RF49
40 hp
CB-80A RF50
GE
Frame/Model FCS
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
2 AWG
40.0 ft
RF50
Rm
480.0 V
AFIE 0.28 Cal/cm^2
Bolted Fault 13.115 kA
Voltage Drop 6.08 %
MTR-RF50
40 hp
CB-60A EF2
GE
Frame/Model SELA
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
MAX
8 AWG
40.0 ft
EF2
Rm
480.0 V
AFIE 0.27 Cal/cm^2
Bolted Fault 6.515 kA
Voltage Drop 6.40 %
MTR-EF2
30 hp
CB-60A PRE-HEAT PUMP 1A
GE
Frame/Model SELA
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
MAX
8 AWG
40.0 ft
PRE-HEAT PUMP 1A
Rm
480.0 V
AFIE 0.27 Cal/cm^2
Bolted Fault 6.515 kA
Voltage Drop 6.40 %
MTR-PHP 1A
30 hp
CB-60A PRE-HEAT PUMP 1B
GE
Frame/Model SELA
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
MAX
8 AWG
40.0 ft
PRE-HEAT PUMP 1B
Rm
480.0 V
AFIE 0.27 Cal/cm^2
Bolted Fault 6.515 kA
Voltage Drop 6.40 %
MTR-PHP 1B
30 hp
CB-800A AATSEQ6 (N)
GE
Frame/Model AKR-30L
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.1 x P) 0.95 (760A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 5 (3800A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (12000A)
500 kcmil
50.0 ft
AATSEQ6 (N)
Rm
480.0 V
AFIE 2.73 Cal/cm^2
Bolted Fault 30.810 kA
Voltage Drop 4.65 %E N
AATSEQ6
Position - Normal On
AATSEQ6 (L)
Rm
480.0 V
AFIE 2.73 Cal/cm^2
Bolted Fault 30.810 kA
Voltage Drop 4.65 %
500 kcmil
110.0 ft
MCB-400A A2HEQDP1
EATON/CUTLER-HAMMER
Frame/Model KD
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (5-10 x Trip) 10 (4000A)
A2HEQDP1
Rm A-2117
480.0 V
AFIE 0.37 Cal/cm^2
Bolted Fault 18.686 kA
Voltage Drop 4.65 %
CB-125A TRANS A2LEQ1
CUTLER-HAMMER
Frame/Model FD
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
Fixed
350 kcmil
150.0 ft
1 AWG
6.0 ft
S
P
TRANS A2LEQ1
75 kVA
Impedance 5.1100 %
Primary 480 V
Secondary 208 V
TRANS A2LEQ1 SEC
Rm A-2117
208.0 V
AFIE 1.67 Cal/cm^2
Bolted Fault 3.718 kA
Voltage Drop 4.65 %
3/0 AWG
8.0 ft
MCB-200A A2LEQ1
EATON/CUTLER-HAMMER
Frame/Model EDB
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Fixed
A2LEQ1
Rm A-2117
208.0 V
AFIE 1.64 Cal/cm^2
Bolted Fault 3.650 kA
Voltage Drop 4.65 %
CB-125A TRANS A2LEQ2
CUTLER-HAMMER
Frame/Model FD
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
Fixed
1 AWG
6.0 ft
S
P
TRANS A2LEQ2
75 kVA
Impedance 5.1100 %
Primary 480 V
Secondary 208 V
TRANS A2LEQ2 SEC
Rm A-2117
208.0 V
AFIE 1.67 Cal/cm^2
Bolted Fault 3.718 kA
Voltage Drop 4.65 %
3/0 AWG
120.0 ft
MCB-200A A2LEQ2
EATON/CUTLER-HAMMER
Frame/Model EDB
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Fixed
A2LEQ2
Rm A-2132
208.0 V
AFIE 1.25 Cal/cm^2
Bolted Fault 2.871 kA
Voltage Drop 4.65 %
CB-125A TRANS A2LEQ3
CUTLER-HAMMER
Frame/Model FD
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
Fixed
1 AWG
90.0 ft
S
P
TRANS A2LEQ3
75 kVA
Impedance 5.1100 %
Primary 480 V
Secondary 208 V
TRANS A2LEQ3 SEC
Rm A-2056
208.0 V
AFIE 1.57 Cal/cm^2
Bolted Fault 3.514 kA
Voltage Drop 4.65 %
3/0 AWG
9.0 ft
MCB-200A A2LEQ3
EATON/CUTLER-HAMMER
Frame/Model EDB
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Fixed
A2LEQ3
Rm A-2056
208.0 V
AFIE 1.53 Cal/cm^2
Bolted Fault 3.443 kA
Voltage Drop 4.65 %
UNFUSED DS 200A
EATON/CUTLER-HAMMER
Frame/Model DH
DS TRANS A2LEQ3 PRI
Rm A-2056
480.0 V
AFIE 0.25 Cal/cm^2
Bolted Fault 10.159 kA
Voltage Drop 4.65 %1 AWG
8.0 ft
MCB-500A A3EMCC1
GE
Frame/Model THJK
Sensor/Trip 500.0 A
Plug 500.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (5000A)
A3EMCC1
Rm MECH
480.0 V
AFIE 0.96 Cal/cm^2
Bolted Fault 21.209 kA
Voltage Drop 4.89 %
CB-100A SF33
GE
Frame/Model TED
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed4 AWG
40.0 ft
SF33
Rm
480.0 V
AFIE 0.4 Cal/cm^2
Bolted Fault 12.298 kA
Voltage Drop 5.16 %
MTR-SF33
50 hp
CB-40A CCP33
GE
Frame/Model TED
Sensor/Trip 40.0 A
Plug 40.0 A
Settings
Fixed10 AWG
40.0 ft
CCP33
Rm
480.0 V
AFIE 0.15 Cal/cm^2
Bolted Fault 5.184 kA
Voltage Drop 5.26 %
MTR-CCP33
20 hp
CB-50A SF35
GE
Frame/Model TED
Sensor/Trip 50.0 A
Plug 50.0 A
Settings
Fixed6 AWG
60.0 ft
SF35
Rm
480.0 V
AFIE 0.22 Cal/cm^2
Bolted Fault 7.233 kA
Voltage Drop 5.20 %
MTR-SF35
25 hp
CB-50A SF36
GE
Frame/Model TED
Sensor/Trip 50.0 A
Plug 50.0 A
Settings
Fixed6 AWG
60.0 ft
SF36
Rm
480.0 V
AFIE 0.22 Cal/cm^2
Bolted Fault 7.233 kA
Voltage Drop 5.20 %
MTR-SF36
25 hp
CB-225A TRANS A5T2
GE
Frame/Model AKR-30L
Sensor/Trip 400.0 A
Plug 225.0 A
Settings
LTPU (0.5-1.1 x P) 0.95 (213.75A)
LTD (1-4) 4
STPU (1.5-9 x LTPU) 9 (1923.75A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (3375A)
500 kcmil
220.0 ft
CB-200A TRANS A5T2 PRI
GE
Frame/Model SGLA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX
ECB CB-3 TRANS A5T2 PRI
Rm
480.0 V
AFIE 1.26 Cal/cm^2
Bolted Fault 14.214 kA
Voltage Drop 4.57 %
500 kcmil
6.0 ft
S
P
TRANS A5T2
150 kVA
Impedance 5.0400 %
Primary 480 V
Secondary 208 V
TRANS A5T2 SEC
Rm A-5001
208.0 V
AFIE 3.21 Cal/cm^2
Bolted Fault 6.600 kA
Voltage Drop 4.57 %
350 kcmil
12.0 ft
MCB-500A A5LNDP1
GE
Frame/Model SGHA
Sensor/Trip 500.0 A
Plug 500.0 A
Settings
MAX
A5LNDP1
Rm A-5001
208.0 V
AFIE 3.14 Cal/cm^2
Bolted Fault 6.476 kA
Voltage Drop 4.57 %
CB-225A A7LN1,A8LN1
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
220.0 ft
MCB-225A A7LN1
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
4.0 ft
A7LN1
Rm A-7122
208.0 V
AFIE 1.53 Cal/cm^2
Bolted Fault 3.432 kA
Voltage Drop 4.57 %
CB-100A A7LN2
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
6.0 ft
A7LN2
Rm A-7122
208.0 V
AFIE 1.48 Cal/cm^2
Bolted Fault 3.338 kA
Voltage Drop 4.57 %
MCB-225A A8LN1
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
20.0 ft
A8LN1
Rm A-8122
208.0 V
AFIE 1.47 Cal/cm^2
Bolted Fault 3.315 kA
Voltage Drop 4.57 %
CB-100A A8LN2
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
8.0 ft
A8LN2
Rm A-8122
208.0 V
AFIE 1.41 Cal/cm^2
Bolted Fault 3.197 kA
Voltage Drop 4.57 %
CB-225A A7LN6,A8LN6
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
40.0 ft
MCB-225A A7LN6
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
2.0 ft
A7LN6
Rm A-7139
208.0 V
AFIE 1.81 Cal/cm^2
Bolted Fault 5.605 kA
Voltage Drop 4.57 %
MCB-225A A8LN6
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
20.0 ft
A8LN6
Rm A-8129
208.0 V
AFIE 1.88 Cal/cm^2
Bolted Fault 5.289 kA
Voltage Drop 4.57 %
CB-225A A7LN4,A8LN4
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
40.0 ft
MCB-225A A7LN4
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
1.0 ft
A7LN4
Rm A-7139
208.0 V
AFIE 1.81 Cal/cm^2
Bolted Fault 5.623 kA
Voltage Drop 4.57 %
CB-100A A7LN5
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
5.0 ft
A7LN5
Rm A-7139
208.0 V
AFIE 0.13 Cal/cm^2
Bolted Fault 5.452 kA
Voltage Drop 4.57 %
MCB-225A A8LN4
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
20.0 ft
A8LN4
Rm A-8129
208.0 V
AFIE 1.88 Cal/cm^2
Bolted Fault 5.289 kA
Voltage Drop 4.57 %
CB-100A A8LN5
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed2 AWG
8.0 ft
A8LN5
Rm A-8129
208.0 V
AFIE 1.94 Cal/cm^2
Bolted Fault 5.039 kA
Voltage Drop 4.57 %
CB-60A A-2117
EATON/CUTLER-HAMMER
Frame/Model HFD
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
S
P
XF2-0019
45 kVA
Impedance 5.1900 %
Primary 480 V
Secondary 208 V
TRANS A-2117 SEC
Rm A-2117
208.0 V
AFIE 0.95 Cal/cm^2
Bolted Fault 2.266 kA
Voltage Drop 4.65 %
CBL-0426
6 AWG
10.0 ft
A5LEQ2
Rm A-5003
208.0 V
AFIE 0.79 Cal/cm^2
Bolted Fault 3.517 kA
Voltage Drop 4.65 %
MCB-100A A5LEQ2
EATON/CUTLER-HAMMER
Frame/Model EDB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
CBL-0429
2 AWG
10.0 ft
CB- A5LEQ2
Frame/Model
Sensor/Trip 0.0 A
Plug 0.0 A
Settings
M A
TC
H
LI
N
E S
H E
E T
E -6
-2
M A
TC
H
LI
N
E S
H E
E T
E -6
-1
MATCHLINE SHEET E-601-1
MATCHLINE SHEET E-601-7
VA PROJECT NUMBER
Building Number
Drawing Number
Project Title
Date Checked Drawn
Drawing Title
Approved:
VA FORM 08-6231
A
B C
D E
21 4 5 6 7
321 4 5 6 7
A B
C D
E
Dwg. of
LocationLocation
Office of Construction and Facilities Management
PROJECT MANAGER: ACG Project Number
N
O
T
F
R
C
O
N
S
T
R
U
C
T
I
O
N
N
R
C
O
N
S
T
R
U
C
T
I
O
N
CONSULTANTS:
Headquarters:
Apogee Consulting Group, P.A.
1151 Kildaire Farm Road, Suite 120 Cary, North Carolina 27511 www.acg-pa.com 919-858-7420 NC License #: C-1848
U.S. Department of Veterans Affairs
© COPYRIGHT Apogee Consulting Group, P.A.Revisions: Date#
Arc Flash Survey 583-19-206
Richard L. Roudebush VAMC 1481 W. 10th, St.
Indianapolis, IN 46202
19-303
Structural Engineer:
12/17/2020 40
E-601-1
BLDG 1 - AMS
1 BLDG 1 - AMS
SCALE: NTS
JAV ABT
CB-800A AATSEQ1 (E)
NOTE
MV LOOP
E N
AATSEQ1
Position - Normal On
S
P
TRANS AMS3
1500 kVA
Impedance 5.7499 %
Primary 13200 V
Secondary 480 V
TRANS AMS3 SEC
Rm A-B140
480.0 V
AFIE 71.46 Cal/cm^2
Bolted Fault 35.667 kA
Voltage Drop 4.57 %
750 kcmil
5.0 ft
MCB-1600A AMS3
GE
Frame/Model AKR-50
Sensor/Trip 1600.0 A
Plug 1600.0 A
Settings
LTPU (0.5-1.1 x P) 1 (1600A)
LTD (1-4) 1
STPU (1.5-9 x LTPU) 4 (6400A)
STD (Min-Max) Max (I^s T Off)
INST (1 x ST Rating) Fixed (50000A)
AMS3
Rm A-B140
480.0 V
AFIE 26.59 Cal/cm^2
Bolted Fault 35.640 kA
Voltage Drop 4.57 %
CB-400A A6HNDP1
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 1 (400A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 9 (3600A)
STD (Min-Max) Int (I^s T Off)
INST (1.5-15 x P) 15 (6000A)
500 kcmil
300.0 ft
MCB-400A A6HNDP1
EATON/CUTLER-HAMMER
Frame/Model HKD
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (5-10 x Trip) 10 (4000A)
A6HNDP1
Rm A-6173
480.0 V
AFIE 0.27 Cal/cm^2
Bolted Fault 11.619 kA
Voltage Drop 4.57 %
CB-100A A6HN1
EATON/CUTLER-HAMMER
Frame/Model HFD
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
100.0 ft
MCB-100A A6HN1
CUTLER-HAMMER
Frame/Model GHB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Thermal Curve
INST (Fixed) Fixed (1000A)
A6HN1
Rm A-6004
480.0 V
AFIE 0.1 Cal/cm^2
Bolted Fault 6.786 kA
Voltage Drop 4.57 %
CB-70A A7HN1,A8HN1
CUTLER-HAMMER
Frame/Model GHB
Sensor/Trip 70.0 A
Plug 70.0 A
Settings
Thermal Curve
INST (Fixed) Fixed (1000A)
2 AWG
20.0 ft
MCB-60A A7HN1
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A7HN1
Rm A-7122
480.0 V
AFIE 0.09 Cal/cm^2
Bolted Fault 6.102 kA
Voltage Drop 4.57 %
CB-100A A6HN3
EATON/CUTLER-HAMMER
Frame/Model HFD
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
220.0 ft
MCB-100A A6HN3
GE
Frame/Model THED
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
A6HN3
Rm A-6075
480.0 V
AFIE 0.11 Cal/cm^2
Bolted Fault 4.303 kA
Voltage Drop 4.57 %
CB-60A A7HN2
GE
Frame/Model TED
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
4 AWG
20.0 ft
MCB-60A A7HN2
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A7HN2
Rm A-7139
480.0 V
AFIE 0.1 Cal/cm^2
Bolted Fault 3.929 kA
Voltage Drop 4.57 %
CB-100A A6HN2
EATON/CUTLER-HAMMER
Frame/Model HFD
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
130.0 ft
MCB-100A A6HN2
CUTLER-HAMMER
Frame/Model GHB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Thermal Curve
INST (Fixed) Fixed (1000A)
A6HN2
Rm A-6145
480.0 V
AFIE 0.08 Cal/cm^2
Bolted Fault 5.951 kA
Voltage Drop 4.57 %
CB-60A A8HN2
CUTLER-HAMMER
Frame/Model GHB
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Thermal Curve
INST (Fixed) Fixed (800A)
6 AWG
100.0 ft
MCB-60A A8HN2
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A8HN2
Rm A-8129
480.0 V
AFIE 0.04 Cal/cm^2
Bolted Fault 2.938 kA
Voltage Drop 4.57 %
CB-175A TRANS A6T1
EATON/CUTLER-HAMMER
Frame/Model HJD
Sensor/Trip 175.0 A
Plug 175.0 A
Settings
Thermal Curve (Fixed)
INST (5-10 x Trip) 10 (1750A)
4/0 AWG
6.0 ft
S
P
TRANS A6T1
112.5 kVA
Impedance 5.6000 %
Primary 480 V
Secondary 208 V
TRANS A6T1 SEC
Rm A-6173
208.0 V
AFIE 2.14 Cal/cm^2
Bolted Fault 4.620 kA
Voltage Drop 4.57 %
350 kcmil
8.0 ft
CB-400A A6LNDP1
EATON/CUTLER-HAMMER
Frame/Model DK
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (5-10 x Trip) 10 (4000A)
A6LNDP1
Rm A-6173
208.0 V
AFIE 2.1 Cal/cm^2
Bolted Fault 4.538 kA
Voltage Drop 4.57 %
CB-100A A6LN1
EATON/CUTLER-HAMMER
Frame/Model HFD
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed2 AWG
8.0 ft
MCB-100A A6LN1
EATON/CUTLER-HAMMER
Frame/Model QBHW
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
A6LN1
Rm A-6173
208.0 V
AFIE 0.03 Cal/cm^2
Bolted Fault 4.375 kA
Voltage Drop 4.57 %
CB-225A A6LN2
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
110.0 ft
MCB-225A A6LN2
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN2
Rm A-6004
208.0 V
AFIE 1.57 Cal/cm^2
Bolted Fault 3.510 kA
Voltage Drop 4.57 %
CB-225A A6LN3
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
110.0 ft
MCB-225A A6LN3
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN3
Rm A-6004
208.0 V
AFIE 1.57 Cal/cm^2
Bolted Fault 3.510 kA
Voltage Drop 4.57 %
CB-225A A6LN4
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
140.0 ft
MCB-225A A6LN4
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN4
Rm A-6145
208.0 V
AFIE 1.46 Cal/cm^2
Bolted Fault 3.298 kA
Voltage Drop 4.57 %
CB-225A A6LN5
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
140.0 ft
MCB-225A A6LN5
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN5
Rm A-6145
208.0 V
AFIE 1.46 Cal/cm^2
Bolted Fault 3.298 kA
Voltage Drop 4.57 %
CB-225A A6LN6
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
200.0 ft
MCB-225A A6LN6
GE
Frame/Model THQD
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN6
Rm A-6075
208.0 V
AFIE 1.28 Cal/cm^2
Bolted Fault 2.936 kA
Voltage Drop 4.57 %
CB-225A A6LN7
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed4/0 AWG
200.0 ft
MCB-225A A6LN7
GE
Frame/Model THQD
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
A6LN7
Rm A-6075
208.0 V
AFIE 1.28 Cal/cm^2
Bolted Fault 2.936 kA
Voltage Drop 4.57 %
CB-150A A7LN3,A8LN3
EATON/CUTLER-HAMMER
Frame/Model ED
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Fixed
4/0 AWG
20.0 ft
MCB-150A A7LN3
GE
Frame/Model SFHA
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
MAX
A7LN3
Rm A-7098B
208.0 V
AFIE 1.12 Cal/cm^2
Bolted Fault 4.274 kA
Voltage Drop 4.57 %
4/0 AWG
4.0 ft
MCB-150A A8LN3
GE
Frame/Model SFHA
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
MAX
A8LN3
Rm A-8098B
208.0 V
AFIE 1.14 Cal/cm^2
Bolted Fault 4.112 kA
Voltage Drop 4.57 %
4/0 AWG
20.0 ft
CB-800A AATSEQ1 (N)
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.1 x P) 1 (800A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 4 (3200A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (12000A)
500 kcmil
20.0 ft
AATSEQ1 (E)0
Rm A-B140
480.0 V
AFIE 2.96 Cal/cm^2
Bolted Fault 33.877 kA
Voltage Drop 4.71 %
500 kcmil
10.0 ft
CB-400A A1SMT1
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 1 (400A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 9 (3600A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 10 (4000A)
250 kcmil
260.0 ft
MCB-500A A1SMLT1
GE
Frame/Model THJK
Sensor/Trip 500.0 A
Plug 500.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (5000A)
A1SMLT1
Rm D-1355
480.0 V
AFIE 0.75 Cal/cm^2
Bolted Fault 16.873 kA
Voltage Drop 4.57 %
STPU (1.5-9 x LTPU) 3.5 (700A)
STD (Min-Max) Min (I^s T Off)
2 AWG
4.0 ft
MCB-80A A8HN1
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A8HN1
Rm A-8122
480.0 V
AFIE 0.08 Cal/cm^2
Bolted Fault 5.712 kA
Voltage Drop 4.57 %
2 AWG
20.0 ft
CB-100A A6LN4A
EATON/CUTLER-HAMMER
Frame/Model EDB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
CBL-0431
2 AWG
10.0 ft
A6LN4A
Rm A-6145
208.0 V
AFIE 1.21 Cal/cm^2
Bolted Fault 3.167 kA
Voltage Drop 4.57 %
M A
TC
H
LI
N
E S
H E
E T
E -6
-2
M A
TC
H
LI
N
E S
H E
E T
E -6
-1
MATCHLINE SHEET E-601-2
MATCHLINE SHEET E-601-8
VA PROJECT NUMBER
Building Number
Drawing Number
Project Title
Date Checked Drawn
Drawing Title
Approved:
VA FORM 08-6231
A
B C
D E
21 4 5 6 7
321 4 5 6 7
A B
C D
E
Dwg. of
LocationLocation
Office of Construction and Facilities Management
PROJECT MANAGER: ACG Project Number
N
R
C
O
N
S
T
R
U
C
T
I
O
N
N
R
C
O
N
S
T
R
U
C
T
I
O
N
CONSULTANTS:
Headquarters:
Apogee Consulting Group, P.A.
1151 Kildaire Farm Road, Suite 120 Cary, North Carolina 27511 www.acg-pa.com 919-858-7420 NC License #: C-1848
U.S. Department of Veterans Affairs
© COPYRIGHT Apogee Consulting Group, P.A.Revisions: Date#
Arc Flash Survey 583-19-206
Richard L. Roudebush VAMC 1481 W. 10th, St.
Indianapolis, IN 46202
19-303
Structural Engineer:
12/17/2020 40
E-601-2
BLDG 1 - AMS
JAV ABT
1 BLDG 1 - AMS
SCALE: NTS
bbrowning Text Box
CB-400A AATSCR1 (E)
MV LOOP
S
P
TRANS AMS1
1000 kVA
Impedance 5.7499 %
Primary 13200 V
Secondary 480 V
TRANS AMS1 SEC
Rm A-B140
480.0 V
AFIE 71.29 Cal/cm^2
Bolted Fault 19.889 kA
Voltage Drop 1.48 %
750 kcmil
5.0 ft
MCB-1600A AMS1
GE
Frame/Model AKR-50
Sensor/Trip 1600.0 A
Plug 1600.0 A
Settings
LTPU (0.5-1.1 x P) 1 (1600A)
LTD (1-4) 1
STPU (1.5-9 x LTPU) 4 (6400A)
STD (Min-Max) Int (I^s T Off)
INST (1 x ST Rating) Fixed (50000A)
CB-400A A6HNDP2
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.1 x P) 1.1 (440A)
LTD (1-4) 1
STPU (1.5-9 x LTPU) 9 (3960A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 10 (4000A)
600 kcmil
220.0 ft
CB-500A AATSCR1 (N)
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 500.0 A
Settings
LTPU (0.5-1.1 x P) 0.9 (450A)
LTD (1-4) 3
STPU (1.5-9 x LTPU) 9 (4050A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 7 (3500A)
500 kcmil
30.0 ft
E N
AATSCR1
Position - Normal On
AATSCR1 (N)
Rm A-B140
480.0 V
AFIE 1.61 Cal/cm^2
Bolted Fault 17.902 kA
Voltage Drop 1.48 %
500 kcmil
10.0 ft
ABHCRDP1
Rm A-B140
480.0 V
AFIE 1.55 Cal/cm^2
Bolted Fault 17.323 kACB-100A ABHCR1-A4HCR3
CB-100A ABHCR3-A2HCR2 CB-200A ABT5
CB-800A TRANS ABT4
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.1 x P) 1 (800A)
LTD (1-4) 1
STPU (1.5-9 x LTPU) 3 (2400A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 15 (12000A)
500 kcmil
30.0 ft
S
P
TRANS ABT4
500 kVA
Impedance 5.8000 %
Primary 480 V
Secondary 208 V
TRANS ABT4 SEC
Rm A-B140
208.0 V
AFIE 3.22 Cal/cm^2
Bolted Fault 15.459 kA
Voltage Drop 1.48 %
500 kcmil
10.0 ft
MCB-2000A ABLNDP3
GE
Frame/Model TPS
Sensor/Trip 2000.0 A
Plug 2000.0 A
Settings
LTPU (Fixed) Fixed (2000A); Fixed
INST (LO-HI) HI (13400A)
MATCHLINE SHEET E-601-3
M A
TC
H
LI
N
E M
A
TC
H
LI
N E
MATCHLINE SHEET E-601-4
CB-ATS-1AB1(E)
NOTE
AMS1
Rm A-B140
480.0 V
AFIE 11.41 Cal/cm^2
Bolted Fault 19.876 kA
Voltage Drop 1.48 %
CB-800A ABHNDP1
GE
Frame/Model AKR-30H
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.1 x P) 1 (800A)
LTD (1-4) 1
STPU (1.5-9 x LTPU) 5 (4000A)
STD (Min-Max) Min (I^s T Off)
INST (1.5-15 x P) 7 (5600A)
500 kcmil
15.0 ft
CB-ATS-1AB1
GE
Frame/Model AKR-30S
Sensor/Trip 600.0 A
Plug 600.0 A
Settings
LTPU/Current Setting 0.8; 0.5 (240A)
LTD (1-4) 1
INST (1.5-10 x S) 1.5 (900A)
600 kcmil
220.0 ft
EN
ATS-1AB1
Position - Normal On
ATS-1AB1 (N)
Rm A-B140
480.0 V
AFIE 0.95 Cal/cm^2
Bolted Fault 10.992 kA
Voltage Drop 1.48 %
CBL-0412
600 kcmil
220.0 ft
CB-PNL-ABHEQ5
GE
MATCHLINE SHEET E-601-3
MATCHLINE SHEET E-601-5
M A
TC
H
LI
N
E M
A
TC
H
LI
N E
ATS-1AB1 (E) AATSEQ4 (E)AATSCR1 (E)AATSEQ5 (E)AATSLS1 (E)AATSEQ2 (E)AATSEQ3 (E)AATSCR2 (E)AATSEQ7 (E)AATSEQ6 (E)AATSEQ1 (E)
GEN 1A
680 kW
480 V
GEN 2A
680 kW
480 V
500 kcmil
60.0 ft
GEN 1 A-WING
Rm
480.0 V
AFIE 29.24 Cal/cm^2
Bolted Fault 21.020 kA
Voltage Drop 0.00 %
GEN 2 A-WING
Rm
480.0 V
AFIE 29.53 Cal/cm^2
Bolted Fault 21.488 kA
Voltage Drop 0.00 %
500 kcmil
20.0 ft
CB-1200A GEN 1A
SIEMENS
Frame/Model RL-1600
Sensor/Trip 1200.0 A
Plug 1200.0 A
Settings
LTPU (0.5-1.0 x S) 0.95 (1140A)
LTD (3.5-30 Sec.) 17
STPU (2-12 x LTPU) 6 (6840A)
STD (0.08-0.4 Sec.) 0.22 (I^s T Off)
INST (2-15 x S) 15 (18000A)
CB-1200A GEN 2A
SIEMENS
Frame/Model RL-1600
Sensor/Trip 1200.0 A
Plug 1200.0 A
Settings
LTPU (0.5-1.0 x S) 0.95 (1140A)
LTD (3.5-30 Sec.) 17
STPU (2-12 x LTPU) 6 (6840A)
STD (0.08-0.4 Sec.) 0.22 (I^s T Off)
INST (2-15 x S) 15 (18000A)
ABHEDP1
Rm A-B138
480.0 V
AFIE 55.29 Cal/cm^2
Bolted Fault 21.730 kA
Voltage Drop 0.00 %
CB-400A AATSCR1 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.0 x S) 0.75 (300A)
LTD (3.5-30 Sec.) 30
STPU (2-12 x LTPU) 8 (2400A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (6000A)
CB-400A AATSLS1 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.0 x S) 0.75 (300A)
LTD (3.5-30 Sec.) 30
STPU (2-12 x LTPU) 8 (2400A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (6000A)
CB-800A AATSEQ1 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.0 x S) 1 (800A)
LTD (3.5-30 Sec.) 3.5
STPU (2-12 x LTPU) 2 (1600A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (12000A)
CB-400A AATSEQ5 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.0 x S) 0.75 (300A)
LTD (3.5-30 Sec.) 17
STPU (2-12 x LTPU) 5 (1500A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (6000A)
CB-600A AATSEQ2 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 600.0 A
Plug 600.0 A
Settings
LTPU (0.5-1.0 x S) 1 (600A)
LTD (3.5-30 Sec.) 6
STPU (2-12 x LTPU) 3 (1800A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (9000A)
CB-600A AATSEQ3 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 600.0 A
Plug 600.0 A
Settings
LTPU (0.5-1.0 x S) 1 (600A)
LTD (3.5-30 Sec.) 6
STPU (2-12 x LTPU) 3 (1800A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (9000A)
CB-600A AATSEQ4 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 600.0 A
Plug 600.0 A
Settings
LTPU (0.5-1.0 x S) 1 (600A)
LTD (3.5-30 Sec.) 6
STPU (2-12 x LTPU) 4 (2400A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (9000A)
CB-400A AATSCR2 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
LTPU (0.5-1.0 x S) 1 (400A)
LTD (3.5-30 Sec.) 10
STPU (2-12 x LTPU) 4 (1600A)
STD (0.08-0.4 Sec.) 0.08 (I^s T Off)
INST (2-15 x S) 15 (6000A)
CB-800A AATSEQ7 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.0 x S) 0.5 (400A)
LTD (3.5-30 Sec.) 3.5
STPU (2-12 x LTPU) 2 (800A)
STD (0.08-0.4 Sec.) 0.22 (I^s T Off)
INST (2-15 x S) 2 (1600A)
CB-800A AATSEQ6 (E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.0 x S) 0.5 (400A)
LTD (3.5-30 Sec.) 3.5
STPU (2-12 x LTPU) 2 (800A)
STD (0.08-0.4 Sec.) 0.22 (I^s T Off)
INST (2-15 x S) 2 (1600A)
CB-1600A
SQUARE D
Frame/Model NW16-LF
Sensor/Trip 1600.0 A
Plug 1600.0 A
Settings
LTPU/LTD (A 0.4-1.0 x S) 1 (1600A); 0.5
STPU (1.5-10 x LTPU) 3 (4800A)
STD (INST-0.4) 0.1 (I^s T On)
INST OR Fixed (24000A)
CBL-0415
400 kcmil
60.0 ft
GEN 3A-WING
Rm
480.0 V
AFIE 46.17 Cal/cm^2
Bolted Fault 21.637 kA
Voltage Drop 0.00 %
GEN 3A
1000 kW
480 V
CB-ATS-1AB1(E)
SIEMENS
Frame/Model RL-800
Sensor/Trip 800.0 A
Plug 800.0 A
Settings
LTPU (0.5-1.0 x S) 1 (800A)
LTD (3.5-30 Sec.) 3.5
STPU (2-12 x LTPU) 2 (1600A)
STD (0.08-0.4 Sec.) 0.4 (I^s T Off)
INST (2-15 x S) 4 (3200A)
VA PROJECT NUMBER
Building Number
Drawing Number
Project Title
Date Checked Drawn
Drawing Title
Approved:
VA FORM 08-6231
A
B C
D E
21 4 5 6 7
321 4 5 6 7
A B
C D
E
Dwg. of
LocationLocation
Office of Construction and Facilities Management
PROJECT MANAGER: ACG Project Number
N
R
C
O
N
S
T
R
U
C
T
I
O
N
N
R
C
O
N
S
T
R
U
C
T
I
O
N
CONSULTANTS:
Headquarters:
Apogee Consulting Group, P.A.
1151 Kildaire Farm Road, Suite 120 Cary, North Carolina 27511 www.acg-pa.com 919-858-7420 NC License #: C-1848
U.S. Department of Veterans Affairs
© COPYRIGHT Apogee Consulting Group, P.A.Revisions: Date#
Arc Flash Survey 583-19-206
Richard L. Roudebush VAMC 1481 W. 10th, St.
Indianapolis, IN 46202
19-303
Structural Engineer:
12/17/2020 40
E-601-3
BLDG 1 - AMS
1 BLDG 1 - AMS
SCALE: NTS
JAV ABT
bbrowning Text Box bbrowning Text Box
CB-50A AATSCR4
CB-50A AATSCR3
MCB-400A A6HNDP2
GE
Frame/Model TJJ
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (4000A)
A6HNDP2
Rm A-6075
480.0 V
AFIE 0.52 Cal/cm^2
Bolted Fault 10.992 kA
Voltage Drop 1.48 %
CB-150A AATSCR4 (N)
GE
Frame/Model TED
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Fixed
4/0 AWG
50.0 ft
E N
AATSCR4
Position - Normal On
AATSCR4 (N)
Rm A-6120
480.0 V
AFIE 0.31 Cal/cm^2
Bolted Fault 9.668 kA
Voltage Drop 1.48 %
CB-125A AATSCR3 (N)
GE
Frame/Model TED
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
Fixed
4/0 AWG
120.0 ft
E N
AATSCR3
Position - Normal On
AATSCR3 (N)
Rm A-6125
480.0 V
AFIE 0.26 Cal/cm^2
Bolted Fault 8.218 kA
Voltage Drop 1.48 %
1 AWG
5.0 ft
CB-125A CB1
GE
Frame/Model SEHA
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
MAX
ECB-125A CB1
Rm A-6120
480.0 V
AFIE 0.31 Cal/cm^2
Bolted Fault 9.476 kA
Voltage Drop 1.48 %
1 AWG
5.0 ft
CB-125A CB
GE
Frame/Model SEHA
Sensor/Trip 125.0 A
Plug 125.0 A
Settings
MAX
ECB-125A CB
Rm A-6125
480.0 V
AFIE 0.26 Cal/cm^2
Bolted Fault 8.068 kA
Voltage Drop 1.48 %
500 kcmil
10.0 ft
ABHCRDP1
Rm A-B140
480.0 V
AFIE 1.55 Cal/cm^2
Bolted Fault 17.323 kA
Voltage Drop 1.48 %
CB-100A ABHCR1-A4HCR3
GE
Frame/Model THED
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
160.0 ft
2 AWG
4.0 ft
MCB-80A ABHCR1
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
ABHCR1
Rm A-B153
480.0 V
AFIE 0.16 Cal/cm^2
Bolted Fault 6.238 kA
Voltage Drop 1.48 %
2 AWG
20.0 ft
2 AWG
4.0 ft
MCB-80A A1HCR1
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A1HCR1
Rm A-1486
480.0 V
AFIE 0.15 Cal/cm^2
Bolted Fault 5.723 kA
Voltage Drop 1.48 %
2 AWG
20.0 ft
2 AWG
4.0 ft
MCB-80A A2HCR1
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A2HCR1
Rm A-2148
480.0 V
AFIE 0.14 Cal/cm^2
Bolted Fault 5.283 kA
Voltage Drop 1.48 %
2 AWG
40.0 ft
2 AWG
4.0 ft
MCB-60A A4HCR1
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A4HCR1
Rm A-4173
480.0 V
AFIE 0.12 Cal/cm^2
Bolted Fault 4.574 kA
Voltage Drop 1.48 %
2 AWG
160.0 ft
MCB-60A A4HCR3
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A4HCR3
Rm A-4064
480.0 V
AFIE 0.8 Cal/cm^2
Bolted Fault 2.988 kA
Voltage Drop 1.48 %
CB-100A ABHCR3-A2HCR2
GE
Frame/Model SFHA
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
MAX
2 AWG
40.0 ft
2 AWG
4.0 ft
MCB-80A ABHCR3
GE
Frame/Model TEY
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
ABHCR3
Rm A-B147
480.0 V
AFIE 0.35 Cal/cm^2
Bolted Fault 12.591 kA
Voltage Drop 1.48 %
2 AWG
120.0 ft
2 AWG
5.0 ft
MCB-60A A1HCR2
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A1HCR2
Rm A-1275
480.0 V
AFIE 0.16 Cal/cm^2
Bolted Fault 6.210 kA
Voltage Drop 1.48 %
2 AWG
180.0 ft
MCB-60A A2HCR2
GE
Frame/Model TEY
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
A2HCR2
Rm A-2057
480.0 V
AFIE 0.1 Cal/cm^2
Bolted Fault 3.450 kA
Voltage Drop 1.48 %
CB-200A ABT5
GE
Frame/Model SFHA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX3/0 AWG
10.0 ft
S
P
TRANS ABT5
112.5 kVA
Impedance 4.9000 %
Primary 480 V
Secondary 208 V
TRANS ABT5 SEC
Rm A-B140
208.0 V
AFIE 2.63 Cal/cm^2
Bolted Fault 5.475 kA
Voltage Drop 1.48 %
500 kcmil
10.0 ft
MCB-400A ABLCRDP1
GE
Frame/Model TJJ
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (4000A)
ABLCRDP1
Rm A-B140
208.0 V
AFIE 2.56 Cal/cm^2
Bolted Fault 5.347 kA
Voltage Drop 1.48 %
CB-225A A4LCR1-5
GE
Frame/Model TQD
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Fixed
4/0 AWG
240.0 ft
4/0 AWG
6.0 ft
MCB-150A A4LCR1
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A4LCR1
Rm A-4173
208.0 V
AFIE 1.31 Cal/cm^2
Bolted Fault 2.977 kA
Voltage Drop 1.48 %
4/0 AWG
160.0 ft
4/0 AWG
6.0 ft
MCB-150A A4LCR3
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A4LCR3
Rm A-4064
208.0 V
AFIE 0.96 Cal/cm^2
Bolted Fault 2.277 kA
Voltage Drop 1.48 %
4/0 AWG
1.0 ft
4/0 AWG
6.0 ft
MCB-150A A4LCR4
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A4LCR4
Rm A-4064
208.0 V
AFIE 0.96 Cal/cm^2
Bolted Fault 2.274 kA
Voltage Drop 1.48 %
4/0 AWG
6.0 ft
MCB-200A A4LCR5
GE
Frame/Model TFJ
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (2000A)
A4LCR5
Rm A-4064
208.0 V
AFIE 1.31 Cal/cm^2
Bolted Fault 2.977 kA
Voltage Drop 1.48 %
CB-100A A1LCR2-A4LCR2
GE
Frame/Model THED
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
140.0 ft
2 AWG
4.0 ft
MCB-80A A1LCR2
GE
Frame/Model THHQB
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A1LCR2
Rm A-1275
208.0 V
AFIE 1.12 Cal/cm^2
Bolted Fault 2.589 kA
Voltage Drop 1.48 %
2 AWG
120.0 ft
2 AWG
4.0 ft
MCB-80A A1LCR5
GE
Frame/Model THHQB
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A1LCR5
Rm A-1250
208.0 V
AFIE 0.7 Cal/cm^2
Bolted Fault 1.712 kA
Voltage Drop 1.48 %
2 AWG
20.0 ft
2 AWG
4.0 ft
MCB-100A A2LCR2
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
A2LCR2
Rm A-2057
208.0 V
AFIE 0.65 Cal/cm^2
Bolted Fault 1.619 kA
Voltage Drop 1.48 %
2 AWG
40.0 ft
MCB-80A A4LCR2
GE
Frame/Model THHQB
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
A4LCR2
Rm A-4097
208.0 V
AFIE 0.59 Cal/cm^2
Bolted Fault 1.473 kA
Voltage Drop 1.48 %
CB-200A ABLCR2-A2LCR4
GE
Frame/Model THQD
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Fixed
4/0 AWG
40.0 ft
4/0 AWG
4.0 ft
MCB-150A ABLCR2
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
ABLCR2
Rm A-B147
208.0 V
AFIE 0.13 Cal/cm^2
Bolted Fault 4.721 kA
Voltage Drop 1.48 %
4/0 AWG
20.0 ft
4/0 AWG
20.0 ft
4/0 AWG
4.0 ft
MCB-150A A2LCR3
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A2LCR3
Rm A-2117
208.0 V
AFIE 1.71 Cal/cm^2
Bolted Fault 4.249 kA
Voltage Drop 1.48 %
4/0 AWG
6.0 ft
MCB-150A A2LCR4
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A2LCR4
Rm A-2117
208.0 V
AFIE 1.7 Cal/cm^2
Bolted Fault 4.228 kA
Voltage Drop 1.48 %
A1LCR6
Rm A-1450
208.0 V
AFIE 1.81 Cal/cm^2
Bolted Fault 4.474 kA
Voltage Drop 1.48 %
MCB-150A A1LCR6
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
4/0 AWG
4.0 ft
CB-200A ABLCR1-A2LCR1
GE
Frame/Model THQD
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Fixed
4/0 AWG
160.0 ft
4/0 AWG
4.0 ft
MCB-150A ABLCR1
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
ABLCR1
Rm A-B153
208.0 V
AFIE 1.59 Cal/cm^2
Bolted Fault 3.519 kA
Voltage Drop 1.48 %
4/0 AWG
20.0 ft
2 AWG
120.0 ft
4/0 AWG
20.0 ft
MCB-150A A2LCR1
GE
Frame/Model TFJ
Sensor/Trip 150.0 A
Plug 150.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1500A)
A2LCR1
Rm A-2148
208.0 V
AFIE 1.45 Cal/cm^2
Bolted Fault 3.260 kA
Voltage Drop 1.48 %
A1LCR1
Rm A-1486
208.0 V
AFIE 1.5 Cal/cm^2
Bolted Fault 3.356 kA
Voltage Drop 1.48 %
MCB-100A A1LCR1
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
3.0 ft
A1LCR3
Rm D-1355
208.0 V
AFIE 0.88 Cal/cm^2
Bolted Fault 2.110 kA
Voltage Drop 1.48 %
MCB-80A A1LCR3
GE
Frame/Model THHQB
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Fixed
2 AWG
3.0 ft
A1LCR4
Rm A-1124
208.0 V
AFIE 0.6 Cal/cm^2
Bolted Fault 1.505 kA
Voltage Drop 1.48 %
MCB-100A A1LCR4
GE
Frame/Model THHQB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
2 AWG
120.0 ft
CB-225A A4HCR2
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
160.0 ft
MCB-200A A4HCR2
GE
Frame/Model TFJ
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (2000A)
A4HCR2
Rm A-4097
480.0 V
AFIE 0.39 Cal/cm^2
Bolted Fault 10.164 kA
Voltage Drop 1.48 %
MCB-2000A ABLNDP3
GE
Frame/Model TPS
Sensor/Trip 2000.0 A
Plug 2000.0 A
Settings
LTPU (Fixed) Fixed (2000A); Fixed
INST (LO-HI) HI (13400A)
CB-225A ABLN8,9
GE
Frame/Model SFHA
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
MAX
4/0 AWG
120.0 ft
4/0 AWG
5.0 ft
MCB-225A ABLN9
GE
Frame/Model TFJ
Sensor/Trip 225.0 A
Plug 225.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (2250A)
ABLN9
Rm A-B104
208.0 V
AFIE 0.19 Cal/cm^2
Bolted Fault 7.106 kA
Voltage Drop 1.48 %
4/0 AWG
10.0 ft
MCB-200A ABLN8
GE
Frame/Model TFJ
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (2000A)
ABLN8
Rm A-B103
208.0 V
AFIE 0.17 Cal/cm^2
Bolted Fault 6.948 kA
Voltage Drop 1.48 %
CB-200A ABLN11, 10
GE
Frame/Model SFHA
Sensor/Trip 200.0 A
Plug 200.0 A
Settings
MAX
3/0 AWG
180.0 ft
3/0 AWG
4.0 ft
MCB-175A ABLN10
GE
Frame/Model TFJ
Sensor/Trip 175.0 A
Plug 175.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1750A)
ABLN10
Rm CORR. CB25
208.0 V
AFIE 1.62 Cal/cm^2
Bolted Fault 5.048 kA
Voltage Drop 1.48 %
3/0 AWG
6.0 ft
MCB-175A ABLN11
GE
Frame/Model TFJ
Sensor/Trip 175.0 A
Plug 175.0 A
Settings
Thermal Curve (Fixed)
INST (4.5-10 x Trip) HI (1750A)
ABLN11
Rm CORR. CB25
208.0 V
AFIE 1.63 Cal/cm^2
Bolted Fault 5.009 kA
Voltage Drop 1.48 %
CB-400A ABLNDP1
GE
Frame/Model TJK
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (4000A)
500 kcmil
160.0 ft
MCB-400A ABLNDP1
GE
Frame/Model TJJ
Sensor/Trip 400.0 A
Plug 400.0 A
Settings
Thermal Curve (Fixed)
INST (3-10 x Trip) HI (4000A)
2 AWG
20.0 ft
CB-50A ABLCR2-A
GE
Frame/Model THHQB
Sensor/Trip 50.0 A
Plug 50.0 A
Settings
Fixed
8 AWG
50.0 ft
MCB-100A ABLCR2-A
CUTLER-HAMMER
Frame/Model FB
Sensor/Trip 100.0 A
Plug 100.0 A
Settings
Fixed
ABLCR2-A
Rm B-B034
208.0 V
AFIE 0.89 Cal/cm^2
Bolted Fault 2.115 kA
Voltage Drop 1.48 %
CB-60A UPS
GE
Frame/Model THHQB
Sensor/Trip 60.0 A
Plug 60.0 A
Settings
Fixed
UPSA2
20.0000
6 AWG
4.0 ft
CBL-0424
6 AWG
2.0 ft
UPSA2 SEC
Rm
208.0 V
AFIE 0 Cal/cm^2
Bolted Fault 0.001 kA
Voltage Drop 1.48 %
UPSBA2
Rm A-1450
208.0 V
AFIE 0 Cal/cm^2
Bolted Fault 0.001 kA
Voltage Drop 1.48 %
MCB-80A
GE
Frame/Model TFJ
Sensor/Trip 80.0 A
Plug 80.0 A
Settings
Thermal Curve (Fixed)
Therma…
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