Attachment 7(b) OIT-InfrastrucStdTelecomSpaces_Part 2 of 3.pdf
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- Attached to
- EHRM Birmingham Infrastructure Upgrades Federal contract opportunity
- Solicitation number
- 36C77623B0026
About this file
This document summary contains details from an attachment to the federal contract opportunity and related federal contract opportunity file.
The attachment provides design templates for telecommunications spaces including main computer rooms, entrance rooms, and telecommunications rooms. It includes generic floor plans and specifications for constructing and outfitting these spaces according to standards for electrical distribution, cabling, airflow management, and other infrastructure requirements. Standard sizes are defined for different space classifications. The related federal contract opportunity is a solicitation from the Department of Veterans Affairs to provide Electronic Health Records Modernization infrastructure upgrades to the Veterans Affairs Medical Center in Birmingham, Alabama. The contractor shall furnish all labor, materials, project management and services to complete the upgrades according to the requirements.
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OFFICE OF INFORMATION AND TECHNOLOGY
INFRASTRUCTURE STANDARD FOR TELECOMMUNICATIONS SPACES| 114
Below are examples of acceptable cabling management implementations. No installation is ever optimal for all considerations, but these represent the level of workmanship expected in the VA computer room environment.
Figure 33: Acceptable Cable Management Results
INFRASTRUCTURE STANDARD FOR TELECOMMUNICATIONS SPACES| 115
Aesthetic requirements shall be implemented to the ‘reasonable person’ standard. Below are examples of unacceptable cabling management implementations that will require remediation.
Figure 34: Unacceptable Cable Management Results
5.2.1.1 Installation Guidance
· Cross-connects are only authorized at the MDAs, HDAs, TRs, and entrance rooms.
· No splicing or intermediate cross-connecting are authorized for intra-building or inter-building connectivity.
INFRASTRUCTURE STANDARD FOR TELECOMMUNICATIONS SPACES| 116
· All TRs shall be connected directly to the MDAs.
· All cabling shall be installed in a neat, workmanlike manner without twists, kinks, and unnecessary crossovers.
· Cables should not be in contact with the ground. Use cable management components and techniques to maintain a clean, clear, and safe work environment.
· Do not mount cabling in locations that block access to other equipment (e.g. power strip or fans) inside and outside the racks.
· Patch cords should follow the side of the IT equipment rack closest to the assigned NIC.
· Cables should not be looped around themselves or other objects.
· Route cables with gentle loops to avoid damage due to exceeding bend radius limitations. Glass fiber can be easily broken with rough handling or overly tight bends.
· Cables should be tight enough to maintain position but not tight enough to deform the jacket or put tension on the connectors.
· Based on heat exhaust (airflow), serviceability, and excess cable lengths, do not install folding/retractable cable management arms for IT equipment in VA computer spaces.
Arms currently installed on existing equipment may be used until the equipment is refreshed and removed.
· All cable slack should be concealed within the rack either vertically or within cable managers. Slack should not be looped. With use of the correct length cables, there should not be sufficient slack to enable looping.
· Use the correct length patch cords.
· Cables should not be twisted or wrapped around other cables, including when bundled.
5.2.1.2 Cable Bundling Guidance
· Bundle cables together in groups of relevance (for example, cables to a single equipment distributor or uplinks to core devices), as this will ease management and troubleshooting.
· Bundles of cables, when necessary, should be built from sub-bundles of no more than 6-8 individual cables. The larger bundles should not exceed four sub-bundles of like quantity.
· When bundling or securing cables, use Velcro-based ties not more than every 3 ft to 6 ft, and more frequently as needed to maintain a clean installation. Do not use zip ties or twist ties for cable bundling or securing, as these apply pressure on the cables.
· Only bundle like cable types. Do not bundle fiber, power, and UTP together.
· Cable labels shall be visually accessible to local personnel following installation, for future identification and troubleshooting purposes. Rather than bundling groups of cabling in a manner that prevents identification of individual cables, bundle in a different manner and/or relocate the cabling to locations where they will not be obscured.
Consider bundling so all cables are on the exterior of the bundle so they are visible, as shown in Figure 35 below. The exception to this is when factory pre-bundled cabling is used.
INFRASTRUCTURE STANDARD FOR TELECOMMUNICATIONS SPACES| 117
Figure 35: Cable Labels in Bundles
5.2.1.3 Unshielded Twisted Pair, Fiber, and Power Cabling Guidance
· Segregate power and telecommunications cabling in separate cable tray systems; use different conveyance systems located not less than 1 ft apart when these two systems are run in parallel.
· Where possible, run power and telecommunications in separate paths to reduce risks of Electromagnetic Interference (EMI)/Radio Frequency Interference (RFI) and data transmission losses.
· Do not install UTP cabling on top of fiber cabling to prevent damage to the fiber transmission medium.
· Segregate UTP and fiber telecommunications cabling, using different conveyances where possible. Where not possible or provided, ensure fiber cable is protected from damage.
Use fiber innerduct where necessary within the same cabling conveyance.
· Use properly-sized equipment power cords; use of 6 ft length power cords where 2 ft cords are needed is not considered a best practice.
· Separate A-side and B-side power and segregate equipment power cords (between vertical rack power distribution units and IT equipment) by color for identification of A/B power to each piece of IT equipment. Follow best practices for managing the power cords similarly to other cabling.
5.2.2 Management of Airflow
VA computing facilities shall utilize engineered, verified layout designs to optimize energy usage in the environmental control systems supporting the facilities. Proposed deviation from standard layout design requires verification and validation by DCIE and CFD analysis.
Evaluation Factors
· Designated hot and cold aisles are utilized in facilities with more than eight IT equipment rack/cabinet equivalents.
· Supply cooling air is not directly mixed with return air through placement of perforated floor tiles and similar vents.
· Blanking panels and air dams are deployed in all IT equipment cabinets to minimize bypass air across the surface area of the cabinets.
Implementation Guidance Unless otherwise designated through validated engineering design, utilize a hot/cold aisle arrangement for equipment located in VA data centers. This applies to both facilities that use a raised access floor plenum for cooling distribution and those that do not.
INFRASTRUCTURE STANDARDS FOR TELECOMMUNICATIONS SPACES| A-1
Request for Variance Infrastructure Standard for Telecommunications Spaces
Applicant Name:
Physical Facility / VA Organization Represented:
Email Address:
Contact Phone:
Location Where Variance is Requested:
Variance Requested:
Proposed Alternate Method:
Problem Statement:
Standard Section Text:
Standard Section Number/ Page Number:
INFRASTRUCTURE STANDARDS FOR TELECOMMUNICATIONS SPACES| A-2
Plan to Bring Project into Compliance:
Send variance applications to: OIT ITOPS SD Data Center and Infrastructure Engineering (DCIE) <VAITESEDatacenterEngineering2@va.gov>
Please attach: Diagrams, one-line drawings, photos, manufacturer’s brochures, and/or other supplemental information to support your application. Allow a minimum of two weeks for processing.
Date:Signature:
Request Type:
Timeline to Bring Project into Compliance:
mailto:VAITESEDatacenterEngineering2@va.gov
INFRASTRUCTURE STANDARDS FOR TELECOMMUNICATIONS SPACES| A-3
What is a variance?
A variance is an allowable deviation from specific requirements of a published standard where a proposed alternate method of installation or operation will provide equal or higher safety, reliability, redundancy, and sustainability objectives. Alternately, under emergency time-sensitive circumstances a temporary variance may be granted without meeting the criteria above with an actionable plan to bring the project into compliance within a reasonable time frame.
What will a variance not do?
A variance will not avoid compliance with the intention of a standard section or rule. A variance is not a method to recover from an installation or design error. A variance will not be granted if the alternate method would reduce the safety or effectiveness of the installation or equipment.
What does a variance cover?
If the variance is granted, it shall be limited to the particular site and installation covered in the application and will NOT be considered as a precedent for other installations.
Who may apply for a variance?
Those responsible for compliance with the standards may apply for a variance.
Who grants a variance?
A variance is granted only by Data Center and Infrastructure Engineering, Solution Delivery, upon written request.
B-1
Appendix B: OIT Design Guide Templates B.1 Design Narrative The Data Center and Infrastructure Engineering (DCIE) team has developed the OIT Design Guide Templates for Critical Infrastructure in Telecommunications Spaces, also located at this link in the Technical Information Library, for Architect/Engineer (A/E) partners to use in their data center design drawing development for new construction, restoration, and modernization projects across VA. These generic Main Computer Room (MCR), entrance room, and Telecommunications Rooms (TR) designs can be applied without significant modifications to future construction projects.
The existence of a standardized, standards-based design will prevent non-compliant, incorrectly sized, unbalanced, and unsustainable data center designs from being produced by VA mission partners, will reduce design project timelines and costs, and prevent unnecessary rework and change orders.
These designs utilize a standardized ANSI/TIA-942-B Telecommunications-Electrical- Architectural-Mechanical (TEAM) approach that will allow A/E designs to separate requirements by discipline. Disciplines not directly related to the telecommunications infrastructure (e.g. structural, plumbing, fire protection) are not addressed.
These templates provide a ninety percent solution for most designs; however, projects in the planning, design, or implementation phases shall contact DCIE for additional assistance in telecommunications space design and standards compliance.
Transmit all communications to DCIE via e-mail at VAITESEDatacenterEngineering2@va.gov.
B.2 Main Computer Rooms Main Computer Rooms (MCR) provide IT services to Campus Support Centers (CSC) for most typical VA Medical Center (VAMC) campuses.
Legacy MCRs typically support between 25k W and 75 kW of critical load, with significant additional loads anticipated as VA modernizes electronic health record systems and deploys additional medical systems increasingly dependent upon IT systems.
Analysis of projected IT trends and needs has led VA to standardize on a single CSC design appropriate for an estimated ninety percent of VAMCs needs for a twenty-year data center life cycle. Some smaller medical centers will only require a ‘small’ design to support their IT requirements (see sheet seven of the OIT Design Guide Templates). Only a small number will https://www.cfm.va.gov/til/dGuide/OIT-DGTemplates-CriticalTelecommSpaces.pdf https://www.cfm.va.gov/til/dGuide/OIT-DGTemplates-CriticalTelecommSpaces.pdf mailto:VAITESEDatacenterEngineering2@va.gov
B-2 require larger design sizes or capabilities. Unless otherwise indicated by DCIE, utilize a ‘medium’ design (see sheet ten) for computer rooms to support VAMCs.
For Network Support Centers (NSC), Health Care Centers (HCC), and Community Based Outpatient Centers (CBOC) that provide lower-level application and IT services distribution across the geographic breadth of the VA’s computing enterprise, an ‘extra small’ design (see sheet six) or ‘small’ design (see sheet seven) MCR is typically appropriate but may require larger depending on the number of subscribers they service.
For Core Data Centers (CDC) and Mission Support Centers (MSC), consult DCIE for the appropriate size and design during project scoping for these classifications.
B.3 Entrance Rooms Carrier circuits shall be terminated in entrance rooms located in the same building as the MCR.
There shall be a minimum of one entrance room per building. Entrance rooms shall be a minimum of 80 ft² for a one-rack entrance room and an additional 20 ft² for each additional rack required (see sheet four).
Two entrance rooms are required for the diverse providers for CDCs and CSCs with a minimum separation of 66 ft between entrance points and entrance rooms.
Health care facility entrance rooms shall be a minimum of 170 ft². See sheet four of the following OIT Design Guide Templates Design Package for construction and outfitting guidance for these redundant entrance rooms.
Follow guidance for the NSC telecommunications space classification (and entrance room specific exceptions) in The Standard for electrical distribution and environmental control requirements for these spaces.
B.4 Telecommunications Rooms Fiber backbone from the MCR terminates in Telecommunications Rooms (TR) distributed around the buildings on campus, which provide horizontal network distribution to end-user Work Area Outlets (WAO).
There shall be a minimum of one TR per floor. Telecommunications rooms shall be a minimum of 80 ft² for a one-rack TR and an additional 20 ft² for each additional rack required (see sheet five).
Health care facility TRs shall be a minimum of 170 ft².
Telecommunications Room construction and outfitting requirements are detailed in sheet five of the following OIT Design Guide Templates Design Package. Follow guidance for the NSC telecommunications space classification in The Standard for electrical distribution and environmental control requirements for these spaces.
DATE
ISSUE:
DESCRIPTIONMARK
DEVELOPED BY:
DATA CENTER AND INFRASTRUCTURE ENGINEERING
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
DRAWING No:
FILE: OIT_DESIGN_GUIDE_TEMPLATES-04
162021-V3.1.VSDX
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No: 3.1
ISSUE DATE: Apr 16, 2021
SHEET TITLE
COVER
SHEET: 1 OF 37
LEGEND NOTES
ELECTRICAL
AIR CONDITIONER THERMOSTAT
FLOOR TO CEILING HEIGHT:
1. TELECOMMUNICATION ROOMS INCLUDING NETWORK
SUPPORT CENTERS: MAXIMUM EXTENT POSSIBLE
2. DATA CENTERS EXCLUDING EXTRA SMALL NETWORK SUPPORT
CENTERS: MINIMUM 16 FT SLAB TO DECK ABOVE
MECHANICAL
FLOOR COMPOSITION:
1. STATIC DISSIPATING FLOOR TILE OR COATING
2. CONCRETE SLAB 5" THICKNESS AT GROUND
3. STEEL DECK AND FILL FOR FLOORS ABOVE GROUND
4. AVOID ACCESS FLOOR PLENUMS FOR AIR DISTRIBUTION
PURPOSES
WALLS: FULL HEIGHT TO DECK ABOVE FOR ALL TELECOMMUNICATION
SPACES
CEILINGS: NO SUSPENDED CEILINGS ALLOWED
DATA CENTER SIZE SQUARE FOOTAGE
EXTRA SMALL
SMALL
MEDIUM
LARGE
780 24' X 32'
1152 24' X 48'
1760 40' X 44'
2464 44' X 56'
FORM FACTOR
DATA CENTER SIZE ALLOCATION PER CHART BELOW:
CONTACT DATA CENTER AND INFRASTRUCTURE ENGINEERING
(VAITESEDATACENTERENGINEERING2@VA.GOV) TO DETERMINE WHAT
SIZE DATA CENTER IS REQUIRED FOR YOUR FACILITY.
SECONDARY BONDING BUSBAR PLACEMENT DETERMINED BY
OTHERS
PRIMARY BONDING BUSBAR PLACEMENT DETERMINED BY
OTHERS
MINIMUM QTY TWO 110 V 20 A CONVENIENCE POWER
OUTLETS PER WALL; PLACEMENT DETERMINED BY OTHERS 1
30 AMP 208 VOLT THREE-PHASE TWIST LOCK RECEPTACLE (L21-
30R); 8.5 FT AFF {WYE (5-WIRE)} COORDINATE INSTALLATION
LOCATION WITH TELECOMMUNICATIONS CONTRACTOR
20 AMP 208 VOLT THREE-PHASE TWIST LOCK RECEPTACLE (L21-
20R); 8.5 FT AFF {WYE (5-WIRE)} COORDINATE INSTALLATION
LOCATION WITH TELECOMMUNICATIONS CONTRACTOR
SERVICE PANEL FOR B-SIDE POWER, GENERATOR BACKED IF
POSSIBLE. SHALL BE EQUIPPED WITH POWER METER;
PLACEMENT PER OTHERS
SERVICE PANEL FOR A-SIDE POWER, GENERATOR BACKED IF
THE FACILITY HAS GENERATION CAPABILITIES. SHALL BE
EQUIPPED WITH POWER METER; PLACEMENT PER OTHERS
1. LED LIGHTING PLACED IN AISLES DIRECTLY IN FRONT OF
AND BEHIND CABINET ROWS
2. LIGHTING OPERATED BY MOTION SENSOR PER CABINET
ROW OR SECTION
3. 500 LUMENS IN THE HORIZONTAL PLANE AND 200
LUMENS IN THE VERTICAL PLANE REQUIRED MEASURED AT
3 FT AFF IN FRONT OF AND BEHIND EQUIPMENT CABINETS
POWER BUS BAR (VOLTAGE AND AMPERAGE TO SUPPORT
ADEQUATE SINGLE & DOUBLE BREAKER 208V, 20 AMP, L21-20R
BUSWAY TAPS PER SERVER ROW) FED FROM A-SIDE SOURCE
POWER BUS BAR (VOLTAGE AND AMPERAGE TO SUPPORT
ADEQUATE SINGLE & DOUBLE BREAKER 208V, 20 AMP, L21-20R
BUSWAY TAPS PER SERVER ROW) FED FROM B-SIDE SOURCE
POWER BUS BAR (VOLTAGE AND AMPERAGE SUFFICIENT TO
SUPPORT ADEQUATE SINGLE BREAKER 208V, 20 AMP, L21-20R
BUSWAY TAPS PER NETWORK ROW) FED FROM A-SIDE SOURCE
POWER BUS BAR (VOLTAGE AND AMPERAGE SUFFICIENT TO
SUPPORT ADEQUATE SINGLE BREAKER 208V, 20 AMP, L21-20R
BUSWAY TAPS PER NETWORK ROW) FED FROM B-SIDE SOURCE
BLUE CABLE PATH FOR A-SIDE UPS 12
YELLOW CABLE PATH FOR B-SIDE UPS 13
LIGHTING:
TELECOMMUNICATIONS
40" NETWORK CABINET WITH HORIZONTAL CABLE CUTOUTS
AND APPROPRIATE CABLE MANAGEMENT ACCESSORIES,
SUPPORTING 5KW REDUNDANT
1 SERVICE PROVIDER ENTRANCE POINT
SERVICE BACKBONE - ENTRANCE ROOM-MAIN COMPUTER
ROOM (MCR) WITH DUAL REDUNDANT PATHWAYS
MAIN CROSS CONNECT (CAMPUS/BUILDING DISTRIBUTOR) –
BACKBONE CABLING (MCR-TELECOMMUNCIATIONS ROOMS)
ENTRANCE ROOM INTERCONNECT
HORIZONTAL DISTRIBUTION TO WORK AREA OUTLETS
(WAO)
ADDITIONAL CABINETS OR TELECOMMUNICATIONS RACKS
TO MEET REQUIREMENTS.
7 HORIZONTAL DISTRIBUTION AREA (HDA) – SIDE A
8 HORIZONTAL DISTRIBUTION AREA – SIDE B
9 MAIN DISTRIBUTION AREA (MDA) – SIDE A
10 MAIN DISTRIBUTION AREA – SIDE B
STANDARD-DENSITY (SD) CABINET SUPPORTING 5KW
REDUNDANT
12 HIGH-DENSITY (HD) CABINET SUPPORTING 10KW
REDUNDANT
WIRE MESH CABLE TRAY MINIMUM OF 4" X 12" WITH SECOND
LEVEL OF FIBER CHANNEL PATHWAY (4" X 4")
15 BLUE CABLE TRAY PATH FOR CABLES TO THE A-SIDE MDA/HDA
YELLOW CABLE TRAY PATH FOR CABLES TO THE B-SIDE MDA/
HDA
17 NETWORK CHANNEL RACK
ELECTRICAL
TYP
DETAIL NUMBER
TYPICAL THROUGHOUT THIS
SHEET
BONDING BUSBAR
ARCHITECTURAL
TELECOMMUNICATIONS
DETAIL NUMBER #
TYP
DETAIL NUMBER
DETAIL NUMBER
TYPICAL THROUGHOUT THIS SHEET
MECHANICAL
COLD AISLE CONTAINMENT (ex. PVC CURTAIN)
WIRE MESH CABLE TRAY SIZE COMMENSURATE
WITH REQUIREMENTS
SLEEVE WITH BUSHING FIRESTOP AND INNERDUCT FOR
FIBER
CONDUIT WITH BUSHING FIRESTOP AND INNERDUCT FOR
FIBER
SLEEVE OR CONDUIT WITH BUSHING FIRESTOP AND
INNERDUCT FOR FIBER
TELECOMMUNICATIONS CHANNEL RACK, 19" RAILS, #12-24
TAPPED EIA HOLE PATTERN, 30" DEEP CHANNEL MINIMUM,
7' HIGH, 45RU, WHITE
VERTICAL CABLE MANAGER WITH DOOR, 6" WIDE
MINIMUM (SIZED TO MEET REQUIREMENT)
SERVER CABINET, 45U, 24" X 48" (NOMINAL), SQUARE
PUNCHED RAIL, SINGLE PERFORATED FRONT DOOR, SOLID
REAR DOOR (VERTICAL EXHAUST DUCT [VED]
IMPLEMENTATION), DOUBLE PERFORATED REAR DOOR (NO
VED), TWO-POINT KEYED LOCKS, WHITE, SOLID SIDE PANELS
OR
TELECOMMUNICATIONS CABINET, 7' HIGH, 45U, 40" X
48" (NOMINAL), SQUARE PUNCHED RAIL, SINGLE
PERFORATED FRONT DOOR, SOLID REAR DOOR
(VERTICAL EXHAUST DUCT [VED] IMPLEMENTATION),
DOUBLE PERFORATED REAR DOOR (NO VED), TWO-
POINT KEYED LOCKS, WHITE, SOLID SIDE PANELS
OR WIRE MESH CABLE TRAY SIZE COMMENSURATE WITH
REQUIREMENTS
RETURN AIR DUCT
COMPUTER ROOM AIR CONDITIONER (CRAC) (SEE
COMPUTATIONAL FLUID DYNAMICS REQUIRED FOR SIZING)
REQUIRED CLEARANCE AROUND CRACS (SIZE VARIES
DEPENDING UPON CRAC MANUFACTURER)
ELECTRICAL SERVICE PANEL
OVERHEAD POWER DROP CORD WITH L21-20 RECEPTACLE
POWER BUSWAY TAP WITH SINGLE BREAKER 3' DROP
CORD WITH L21-20R FOR STANDARD-DENSITY CABINETS
POWER BUSWAY TAP WITH DUAL BREAKERS AND QTY
TWO 3' DROP CORDS WITH L21-20R FOR HIGH-DENSITY
CABINETS
TYPICAL UNSWITCHED 110 VOLT, 20 AMP DUPLEX
CONVENIENCE OUTLET
AC
SPLIT PACKAGE AIR CONDITIONER OR EQUIVALENT 24/7
SUPPLY AIR TO REJECT 17,000 BTU/H (5 K W) PER
TELECOMMUNICATIONS RACK
AC ADDITIONAL SPLIT PACKAGE AIR CONDITIONER AS
REQUIRED
4' BY 8' AC GRADE ¾” TRADE SIZE PLYWOOD BACKBOARD
PAINTED HIGH-GLOSS WHITE WITH TWO COATS OF FIRE
RESISTANT PAINT FOR SERVICE PROVIDER / SECURITY /
VIDEO / ET CETERA
STANDARD 25% OPEN PERFORATED FLOOR TILE
CR
AC
MODULAR UPS CABINET (POWER MODULES, BATTERIES,
POWER PANELS)
LED LIGHTING
POWER BUSWAY WITH METERED HEADEND FOR B SIDE
POWER DISTRIBUTION
POWER BUSWAY WITH METERED HEADEND FOR A SIDE
POWER DISTRIBUTION
C FIXED CAMERA, PAN/TILT/ZOOM, PASSIVE INFRARED
CAMERA - DUAL TECHNOLOGY
PIV ENABLED TWO-FACTOR AUTHENTICATION KEYPAD
M
CEILING MOUNTED MOTION SENSOR (LOCATIONS AS
REQUIRED FOR FULL ROOM COVERAGE)
MOTION SENSOR LIGHT SWITCH
POWER JUNCTION BOX FOR 60A CONNECTION J
T
CHANGES TO DESIGN WILL REQUIRE A NEW COMPUTATIONAL
FLUID DYNAMICS (CFD) ANALYSIS TO BE PERFORMED
FLOORPLANS ARE NOT TO SCALE
DOCUMENTS ARE NOT TO BE USED FOR CONSTRUCTION
ARCHITECTURAL
3 FT WIDE, 8 FT HIGH DOOR, FIRE RESISTANT TO ¾ HOUR
OR MORE PER AUTHORITY HAVING JURISDICTION (AHJ)
6 FT WIDE, 8 FT HIGH DOOR, NO CENTER MULLION, FIRE
RESISTANT TO ¾ HOUR OR MORE PER AHJ
OVERHEAD POWER DROP CORD WITH L21-30 RECEPTACLE
PROJECT:
DRAWING No:
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
DATE
ISSUE:
DESCRIPTION MARK
FILE: OIT_DESIGN_GUIDE_TEMPLATE
S-04162021-V3.1.VSDX
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY:
DOC VERSION No:
PROJECT NO:
SHEET TITLE
ISSUE DATE:
SHEET: 2 OF 37
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
3.1
OIT DESIGN GUIDE TEMPLATES
N/A
LEGEND
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
Apr 16, 2021
MARK
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
DATE
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No: 3.1
ISSUE DATE:
SHEET TITLE
SPECIFICATIONS
SHEET: 3 OF 37
OIT_DESIGN_GUIDE_TEMPLATE
S-04162021-V3.1.VSDX
T
TYP
AC
J J
M
C
T
AC
TYP
TYP
GENERIC FLOOR PLAN FOR ENTRANCE ROOM (TWO SERVICE PROVIDERS)
NOTE:
M
C
T
AC
TYP
TYP
NOTE:
THERE SHALL BE A MINIMUM OF ONE ENTRANCE ROOM PER BUILDING.
GENERIC FLOOR PLAN FOR ENTRANCE ROOM (ONE SERVICE PROVIDER)
GENERIC FLOOR PLAN FOR HEALTHCARE ENTRANCE ROOM TELECOMMUNICATION ENTRANCE ROOM NOTES
HEALTH CARE FACILITIES
REQUIRE TWO DISTINCT
ENTRANCE ROOMS
SEPARATED BY A MINIMUM
OF 66 FT.
M
C
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
DATE
ISSUE:
DESCRIPTION MARK
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY:
DOC VERSION No:
PROJECT NO:
SHEET TITLE
ISSUE DATE:
SHEET: 4 OF 37
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
3.1
OIT DESIGN GUIDE TEMPLATES
N/A
TELECOMMUNICATION ENTRANCE
ROOMS
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
GROSS FLOOR SPACE
SERVED (FT2)
WALL LENGTH FOR
ENTRANCE FACILITY
TERMINATION
<10,000 FT2
<20,000 FT2
<40,000 FT2
<50,000 FT2
<60,000 FT2
<80,000 FT2
<100,000 FT2
39"
42"
68"
90"
96"
120"
144"
WALL SPACE REQUIREMENT
REQUIRED TERMINATION WALL SPACE FOR AN ENTRANCE
ROOM IN A TR OR ENTRANCE ROOM PER THE CHART
BELOW:
GROSS FLOOR SPACE
SERVED (FT2)
ENTRANCE FACILITY SIZE
ALLOCATION
<200,000 FT2
<400,000 FT2
<500,000 FT2
<600,000 FT2
<800,000 FT2
<1,000,000 FT2
10'X10'
12'X13'
12'X15.5'
12'X18.5'
12'X22.5'
12'X27.5'
FLOOR SPACE REQUIREMENT
FLOOR SPACE SHOULD BE PROVIDED FOR FACILITIES
WITH GROSS SQUARE FOOTAGE PER THE CHART BELOW
FOR SHARED ENTRANCE ROOMS:
HEALTH CARE FACILITY ENTRANCE ROOMS SHALL BE
170 SQ FT MINIMUM
2 1
'-0
'-0
'-0
8'-0" 10'-0"
14'-0"
OIT_DESIGN_GUIDE_TEMPLATE
S-04162021-V3.1.VSDX
J J
DEPARTMENT OF VETERANS 1 1
AFFAIRS TYPTYP
3 3
T T
4 4
7 6
TYP TYP
3 IT OPERATIONS AND SERVICES 33 3
SOLUTION DELIVERY 55 10
'-0
5 5 10 '-0
C C
5 5 M
M
AC AC
ENTERPRISE DATA CENTER AND 10'-0" 8'-0"
INFRASTRUCTURE ENGINEERING
PROJECT: GENERIC FLOOR PLAN FOR TELECOMMUNICATIONS ROOMS (ONE RACK REQUIREMENT) GENERIC FLOOR PLAN FOR TELECOMMUNICATIONS ROOMS (TWO RACK REQUIREMENT) (TELECOMMUNICATIONS SPACE SUPPORTING NETWORK DISTRIBUTION TO WORK AREA (TELECOMMUNICATIONS SPACE SUPPORTING NETWORK DISTRIBUTION TO WORK AREA OIT DESIGN GUIDE TEMPLATES
OUTLETS ) OUTLETS) 3 4
PROJECT NO:
N/A
13 5 4 TYP
T
NOTE:
THERE SHALL BE A MINIMUM OF ONE TELECOMMUNICATIONS ROOM (TR) PER FLOOR. TYP
ADDITIONAL ROOMS SHOULD BE PROVIDED WHEN:
J J
MARK DATE DESCRIPTION A) THE FLOOR AREA TO BE SERVED EXCEEDS 1000 M2 (10,000 FT2);
3 3 OR ISSUE:
'-0
5 B) THE HORIZONTAL DISTRIBUTION DISTANCE TO THE WORK AREA EXCEEDS 90 M (295 FT).
DRAWING No:
FLOOR SPACE REQUIREMENT:
FILE:
1. MINIMUM OF 80 SQ FT FOR A ONE RACK TR
DESIGN BY: KEVIN GRZELKA, CTDC 2. ADD AN ADDITIONAL 20 SQ FT PER ADDITIONAL RACK
MICHAEL JULIAN, RCDD VERIFIED BY: 3. MINIMUM OF 170 SQ FT FOR A HEALTH CARE FACILITY TR KELLY BATES, DCIE
DOC VERSION No:
ISSUE DATE:
SHEET TITLE
C
M
AC AC
TELECOMMUNICATIONS ROOMS
15'-5 7/16"
GENERIC FLOOR PLAN FOR HEALTH CARE FACILITY TELECOMMUNICATIONS ROOMS 1 TELECOMMUNICATION ROOM NOTES
SHEET: 5 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
GENERIC FLOOR PLAN FOR NETWORK SUPPORT CENTERS GENERIC FLOOR PLAN FOR HEALTH CARE FACILITY EQUIPMENT ROOM
AC AC
TYP45
TYP
T
M
C
TYP
J J
'-0
14'-0"
AC AC
TYP45
T
M
C
J J
TYP
'-0
15'-5 7/16"
PROJECT:
DRAWING No:
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
DATE
ISSUE:
DESCRIPTION MARK
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY:
DOC VERSION No:
PROJECT NO:
SHEET TITLE
ISSUE DATE:
SHEET: 6 OF 37
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
3.1
OIT DESIGN GUIDE TEMPLATES
N/A
EXTRA SMALL DATA CENTER
(NETWORK SUPPORT CENTER)
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
OIT_DESIGN_GUIDE_TEMPLATE
DEPARTMENT OF VETERANS
AFFAIRS
48'-0"
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
6' -0
6'
-0
4' -0
MAIN DISTRIBUTION MAIN DISTRIBUTION
AREA (MDA) AREA (MDA)
UPS A A SIDE B SIDE UPS B
6'-0" 6'-0" 13
TYP
'-0
" CRAC CR
AC
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
HDA A HDA B
13 11
TYP TYP N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No:
ISSUE DATE:
SHEET TITLE
SMALL DATA CENTER
1 GENERIC FLOOR PLAN FOR SMALL DATA CENTERS (1,152 FT2)
SHEET: 7 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
MAIN DISTRIBUTION MAIN DISTRIBUTION
AREA (MDA) AREA (MDA)
UPS A A SIDE B SIDE UPS B
TYP
ENTERPRISE DATA CENTER AND
15 INFRASTRUCTURE ENGINEERING 16
HDA A HDA B PROJECT:
OIT DESIGN GUIDE TEMPLATES
16 15
PROJECT NO:
N/A
CRAC CR
NOTE: SEE THE GENERIC SMALL CAMPUS MARK DATE DESCRIPTION
SUPPORT CENTER (DATA CENTER)
DESIGN PORTFOLIO PACKAGE FOR
ISSUE:
DETAILED IMPLEMENTATION DRAWING No:
INSTRUCTIONS FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY: MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
DOC VERSION No: 3.1
ISSUE DATE:
SHEET TITLE
SMALL DATA CENTER - DATA CABLE TRAY LAYOUT
SMALL DATA CENTER - PATHWAY
DETAILS
SHEET: 8 OF 37
OIT_DESIGN_GUIDE_TEMPLATE
C
UPS A 10 UPS BM
M
M
C
CRAC CR
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No:
ISSUE DATE:
SHEET TITLE
SMALL DATA CENTER - POWER
1 GENERIC FLOOR PLAN FOR SMALL DATA CENTERS – POWER PLAN (72.9 W/FT2)
SHEET: 9 OF
3.1
OIT_DESIGN_GUIDE_TEMPLATE
DEPARTMENT OF VETERANS 40'-0"
CRAC CRAC
6' -0
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
'-0
TYP
HDA A 13
TYP
11 11
TYP TYP
MAIN
DISTRIBUTION
AREA (MDA)
A SIDE
UPS A
12 12
6'-0" 4'-0" 4'-0" 4'-0" 13
TYP
6'-0"
12 12
UPS B
MAIN
DISTRIBUTION
AREA (MDA)
B SIDE
HDA B
6' -0
" FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE 2'
-1
0"
2'-0" DOC VERSION No:
ISSUE DATE:
CRAC SHEET TITLE CRAC
MEDIUM DATA CENTER
1 GENERIC FLOOR PLAN FOR MEDIUM DATA CENTERS (1,760 FT2)
SHEET: 10 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
HDA A
HDA B
3 2
CRAC CRAC
HDA A
NOTE: SEE THE GENERIC MEDIUM
CAMPUS SUPPORT CENTER
(DATA CENTER) DESIGN
PORTFOLIO PACKAGE FOR
DETAILED IMPLEMENTATION
INSTRUCTIONS
HDA B
CRAC CRAC
2 3
MEDIUM DATA CENTER - DATA CABLE TRAY LAYOUT
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDDVERIFIED BY: KELLY BATES, DCIE
DOC VERSION No:
ISSUE DATE:
SHEET TITLE
MEDIUM DATA CENTER -
PATHWAY DETAILS
SHEET: 11 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
CRACCRAC
C
M
8 10TYP
UPS A
12 M 12
TYP
12 12
UPS B
TYP 11
CRAC CRAC
1 GENERIC FLOOR PLAN FOR MEDIUM DATA CENTERS – POWER PLAN (85.2 W/FT2)
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
M MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
C DOC VERSION No:
ISSUE DATE:
SHEET TITLE
MEDIUM DATA CENTER - POWER
SHEET: 12 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
DEPARTMENT OF VETERANS 56'-0"
CRAC CRAC CRAC
6' -0
'-0
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
TYP
HDA A 13
TYP
TYP
HDA A 13
TYP
UPS A
TYP
TYP
TYP
TYP
12 12 12 12
MAIN
DISTRIBUTION
AREA (MDA)
B SIDE ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
6'-0"
MAIN
DISTRIBUTION
AREA (MDA)
A SIDE
4'-0"
4'-0"
4'-0"
4'-0"
4'-0" 13
TYP
6'-0" OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
UPS B
HDA B HDA B
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
2' -1
0" 6'
-0
" FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
CRAC CRAC
2'-0" DOC VERSION No:
ISSUE DATE:
CRAC SHEET TITLE
LARGE DATA CENTER
1 GENERIC FLOOR PLAN FOR LARGE DATA CENTERS (2,464 FT2)
SHEET: 13 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
HDA A HDA A
HDA B HDA B
2 3
CRAC CRAC CRAC
HDA A
15 15
HDA A
MAIN
DISTRIBUTION
AREA (MDA)
A SIDE
NOTE: CONTACT DATA CENTER
AND INFRASTRUCTURE
ENGINEERING FOR TAILORED
IMPLEMENTATION
INSTRUCTIONS FOR LARGE
DATA CENTERS
(VAITESEDATACENTERENGIN
EERING2@VA.GOV)
HDA B
16 16
HDA B
MAIN
DISTRIBUTION
AREA (MDA)
B SIDE
CRAC CRAC CRAC
3 2
1 LARGE DATA CENTER - DATA CABLE TRAY LAYOUT
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDDVERIFIED BY: KELLY BATES, DCIE
DOC VERSION No:
ISSUE DATE:
SHEET TITLE
LARGE DATA CENTER - PATHWAY
DETAILS
SHEET: 14 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
CRAC CRACCRAC
C
M
8 8 8 8 IT OPERATIONS AND SERVICES
10 SOLUTION DELIVERY
UPS A
ENTERPRISE DATA CENTER AND
12 12M12 12 M INFRASTRUCTURE ENGINEERING
PROJECT:
11 OIT DESIGN GUIDE TEMPLATES
TYP
PROJECT NO:
N/A 12 1212 12
UPS B
11 MARK DATE DESCRIPTION
ISSUE:
9 9 9 9
DRAWING No:
FILE:
DESIGN BY:
M
VERIFIED BY:
C DOC VERSION No:
ISSUE DATE:
CRAC CRAC CRAC SHEET TITLE
KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
LARGE DATA CENTER - POWER
GENERIC FLOOR PLAN FOR LARGE DATA CENTERS – POWER PLAN
SHEET: 15 OF 37
3.1
OIT_DESIGN_GUIDE_TEMPLATE
FIBER PATHWAY CHANNEL CORNERS (PANDUIT FR4X4/FRHC4/FRSHC4 OR EQUIVALENT):
RIGHT ANGLE CORNER
TEE CONER
FOUR WAY CROSSING
SPLIT OR SOLID COVERS
FIBER PATHWAY BEND RADIUS SPILLWAYS (PANDUIT FRVT4X4/FRTR4X4 OR EQUIVALENT):
VERTICAL TEE
TRUMPET SPILLWAY
BEND RADIUS SPILLWAYS REQUIRED AT EVERY RACK LOCATION
FIBER PATHWAY CHANNEL AND COVERS (PANDUIT FR4X4/FRHC4/FRSHC4 OR EQUIVALENT):
4" X 4" CHANNEL RUNNER
SOLID COVER
SPLIT HINGED COVER
FIBER PATHWAY MOUNTING BRACKET (PANDUIT FR6TRBE/FR6TRBN OR EQUIVALENT):
BRACKET TO MOUNT TO EXISTING THREADED ROD OR
BRACKET TO MOUNT TO NEW THREADED ROD
PROPOSED FIBER PATHWAY AND DETAILS
PROPOSED CABLE TRAY:
CABLOFIL
4" DEEP X 12" WIDE MINIMUM (SIZE COMMENSURATE WITH
DISTRIBUTION REQUIREMENT)
WHITE POWERCOAT
TRAY INSERT
CAT. NO
DEPTH
(IN)
WIDTH
(IN)
CAT 6a 4-pr
PLENUM (0.35")
CF105/300 4 12 248
CF105/450 4 18 373
CF105/500 4 20 414
CF105/600 4 24 497
CF150/150 6 6 186
CF150/200 6 8 238
CF150/300 6 12 357
CF150/450 6 18 536
CF150/500 6 20 596
CF150/600 6 24 715
CF150/900 6 36 1078
CABLE TRAY CAPACITY PLANNING1
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
MARK DATE DESCRIPTION
ISSUE:
DRAWING No:
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No: 3.1
ISSUE DATE:
SHEET TITLE
PATHWAY DETAILS
SHEET: 16 OF 37
OIT_DESIGN_GUIDE_TEMPLATE
CHATSWORTH
P R O D U C T
Temp/Humidity Out
In / IOIOIO10/100
Reset
Warning
OK
Critical
OFF
O
ON
I
OFF
O
ON
I
OFF
O
ON
I
Y
20A 120/ 208V
POWER FEED UNIT
WITH CURRENT MONITOR TO SUPPORT EACH
ROW (30% OVERSIZED ON AMPERAGE).
POWER CALCULATIONS TO BE PERFORMED BY
OTHERS. 208V 3 PHASE POWER BUS BAR
DEPARTMENT OF VETERANS
AFFAIRS
CHANNEL
ALARM
1 2 3 4 CTRL RS-232
RS-485
R
BLK
GN D
R
BLK
GN D
R
BL K
GND
R
BL K
GND
R
BL K
GND
R
BLK
GN D
R
BLK
GN D
R
BLK
GN D
R
BLK
GN D
R
BLK
GN D
R
BL K
GND
R
BL K
GND
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
POWER BUSWAY TAP WITH DUAL
BREAKER WITH TWO 3' DROP CORDS
(WITH STRAIN RELIEF) WITH L21-
20R FOR HIGH-DENSITY CABINETS.
POWER BUSWAY TAP WITH SINGLE BREAKER
3' DROP CORD (WITH STRAIN RELIEF)
WITH L21-20R FOR STANDARD-DENSITY
CABINETS.
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
3 TYPICAL POWER BUSWAY COMPONENTS FOR SERVER ROWS
PROJECT:
OIT DESIGN GUIDE TEMPLATES
PROJECT NO:
N/A
THIS DESIGN PROVIDES DIVERSE POWER INPUTS FOR ACTIVE EQUIPMENT BY SPLITTING
THE SOURCE POWER ACROSS TWO BUSWAYS. EACH SERVER CABINET WILL CONTAIN A
CB1 CB2 CB3
C B1
C B1 C
B2 C
B2 C B3
C B3 C
B1 C
B1 C B2
C B2 C
B3 C
B3 MINIMUM OF TWO EQUIPMENT-FACING ZERO U VERTICAL RACK PDUS – EACH WILL BE
ENERGIZED BY SEPARATE BUSWAY TAP INPUTS ON DISPARATE BUSWAYS.
BUS A BUS B BUS A BUS B
CHATSWORTH ECONNECT PDU; VERTICAL; MONITORED; L21-20 PLUG; THREE PHASE; 120/208V INPUT;
20A; (30) C13 (6) C19 OUTLETS; 208V OUTPUT; 3 X 2P 20A HYDRAULIC MAGNETIC BREAKERS; LCD;
ETHERNET, USB, AND ENVIRONMENTAL SENSOR PORTS; IP AND SERIAL MONITORING; IP CONSOLIDATION RACK/ENCLOSURE RACK/ENCLOSURE MARK DATE DESCRIPTION
(PDU LINKING); TOOL-LESS MOUNTING; 70.5"H (1791 MM) X 2.2"W (56 MM) X 2.2"D (56 MM) RACKED RACKED
ISSUE:
EQUIPMENT EQUIPMENT
PDU PDU PDU PDU PDU PDU DRAWING No: PS1 PS2 PS1 PS2A1 A2 B1 B2 A B
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
MICHAEL JULIAN, RCDD VERIFIED BY: KELLY BATES, DCIE
DOC VERSION No: 3.1
ISSUE DATE:
REQUIRES ONE
L21-20R
SHEET TITLE
HIGH DENSITY –
TWO L21-20 DROPS
PER BUSWAY
STANDARD DENSITY –
ONE L21-20 DROP PER
BUSWAY BUSWAY POWER DISTRIBUTION
POWER SCHEMATIC FOR POWER RACK- LEVEL REDUNDANCY208 VOLT RACK PDU FOR EQUIPMENT POWER – TO BE ENERGIZED BY BUSWAY TAP 12
SHEET: 17 OF 37
OIT_DESIGN_GUIDE_TEMPLATE
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
DATE
ISSUE:
DESCRIPTIONMARK
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY:
DOC VERSION No:
PROJECT NO:
SHEET TITLE
ISSUE DATE:
SHEET: 18 OF 37
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
3.1
OIT DESIGN GUIDE TEMPLATES
N/A
30A ZONE PDU POWER
DISTRIBUTION
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
1 1
2 2
3 3
4 4
5 5
6 6
7 7
8 8
9 9
10 10
11 11
12 12
13 13
14 14
15 15
16 16
17 17
18 18
19 19
20 20
21 21
22 22
23 23
24 24
25 25
26 26
27 27
28 28
29 29
30 30
31 31
32 32
33 33
34 34
35 35
36 36
37 37
38 38
39 39
40 40
41 41
42 42
43 43
44 44
45 45
1 1
2 2
3 3
4 4
5 5
6 6
7 7
8 8
9 9
10 10
11 11
12 12
13 13
14 14
15 15
16 16
17 17
18 18
19 19
20 20
21 21
22 22
23 23
24 24
25 25
26 26
27 27
28 28
29 29
30 30
31 31
32 32
33 33
34 34
35 35
36 36
37 37
38 38
39 39
40 40
41 41
42 42
43 43
44 44
45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
1 1 2 2 3 3 4 4 5 5 6 6 7 7 8 8 9 9 10 10 11 11 12 12 13 13 14 14 15 15 16 16 17 17 18 18 19 19 20 20 21 21 22 22 23 23 24 24 25 25 26 26 27 27 28 28 29 29 30 30 31 31 32 32 33 33 34 34 35 35 36 36 37 37 38 38 39 39 40 40 41 41 42 42 43 43 44 44 45 45
SEVEN ZONE PDUs PER SERVER ROW
(MEDIUM AND LARGE)
A B A B
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
HIGH
DENSITY
A B
SUBZONE TO 30A ZONE PDU CONNECTION MAP FOR TYPICAL (12 RACK) SERVER ROWS (MEDIUM AND LARGE)1
A B A B A B A
TYPICAL ZONE PDU UNIT WITH REAR DETAIL 2
ZONE PDU
INPUTS REQUIRE
TWO L21-30Rs
THE CORRECT SPECIFICATION FOR THE ZONE PDU IS TO ENERGIZE IT
FROM TWO INDEPENDENT POWER SOURCES. EACH INPUT WILL USE
IDENTICAL SPECS: WYE (5-WIRE), 208V, 30A, THREE-PHASE,
TERMINATING IN A NEMA L21-30R LOCKING RECEPTACLE. THE NEUTRAL
CONDUCTOR SHOULD BE UPSIZED ONE GAUGE TO MATCH THE UPSIZED
NEUTRAL CONDUCTORS IN THE ZONE PDU UNITS. THE NEUTRAL
"UPSIZING" SHOULD IDEALLY BE CONTINUED IN THE POWER
DISTRIBUTION SYSTEM BACK TO THE UPS OR TRANSFORMER WINDING
POLE. THIS INCREASES THE EFFICIENCY OF THE POWER DISTRIBUTION
SYSTEM AND SUPPRESSES HARMONICS IN THE SYSTEM.
NOTE:
208 VOLT RACK PDU FOR EQUIPMENT POWER – TO BE
ENERGIZED BY ZONE PDU3
CHATSWORTH ECONNECT PDU; VERTICAL; MONITORED; L21-20
PLUG; THREE PHASE; 120/208V INPUT; 20A; (30) C13 (6) C19
OUTLETS; 208V OUTPUT; 3 X 2P 20A HYDRAULIC MAGNETIC
BREAKERS; LCD; ETHERNET, USB, AND ENVIRONMENTAL
SENSOR PORTS; IP AND SERIAL MONITORING; IP
CONSOLIDATION (PDU LINKING); TOOL-LESS MOUNTING; 70.5"H
(1791 MM) X 2.2"W (56 MM) X 2.2"D (56 MM)
C H
A
TS
W O
R T
H P
R O
D U
C T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
POWER SCHEMATIC FOR POWER RACK- LEVEL REDUNDANCY4
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
HIGH
DENSITY
A B A B A B
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
A B A B
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
B
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
CH
AT
SW
O
RT
H
P R
O D
U C
T
Te m p/ H um id ity O ut
In
IO
IO
IO
/1
Re se t
W ar ni ng
O K
C rit ic al
CB2
CB2
CB1
CB1
CB1
CB1
CB3
CB3
CB3
CB3
CB2
CB2
O
FF O
O N I
C B2 20
O
FF O
O N I
C B1 20
O
FF O
O N I
C B3 20
30 AMP 3-PHASE ZONE PDU BASE UNIT – REAR
CIRCUITS WITH FOUR L21-20R AND SIX NEMA 5-20 OUTLETS AND TWO 10'
POWER CORDS TERMINATING IN L21-30P
ZONIT ZPDS-208V30A-L21-4L21-20R-CR OR EQUIVALENT
CHATSWORTH
P R O D U C T
Te mp/Humidity Ou t
In / IOIOIO10 /100
Reset
Warning
OK
Crit ical
C B2C
B2
C B1C
B1
C B
1C B1
C B3C
B3
C B3C
B3
C B2C
B2
OFF
O
ON
I
CB2
OFF
O
ON
I
CB1
OFF
O
ON
I
CB3
REQUIRES ONE
L21-20R20A 120/208V
Y
HIGH DENSITY –
ONE ZONE PDU PER
RACK
THIS DESIGN PROVIDES DIVERSE POWER INPUTS FOR
ACTIVE EQUIPMENT BY SPLITTING THE SOURCE POWER
ACROSS TWO BUSWAYS. EACH SERVER CABINET WILL
CONTAIN A MINIMUM OF TWO EQUIPMENT-FACING ZERO
U VERTICAL RACK PDUS – EACH WILL BE ENERGIZED BY
SEPARATE BUSWAY TAP INPUTS ON DISPARATE
BUSWAYS.
STANDARD DENSITY –
ONE ZONE PDU PER TWO
RACKS
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2
RACK/ENCLOSURE
ZONE PDU
PDU
B
PDU
A
LEG1 LEG2
BUS
A
BUS
B
RACK/ENCLOSURE
RACKED
EQUIPMENT
PDU
B1
PDU
A2 PS1 PS2
RACKED
EQUIPMENT
PS1 PS2
RACK/ENCLOSURE
RACKED
EQUIPMENT
PDU
B
PDU
A PS1 PS2
ZONE PDU
LEG1 LEG2
BUS
A
BUS
B
PDU
A1
PDU
B2
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
PHASE Z PHASE Y PHASE X
G RP A
G RP B LEG 1
LEG 2 GRP A
GRP B LEG 1
LEG 2 GRP A
GRP B L EG 1
L EG 2
SMALL SERVER ROWS AND ALL MDA
ROWS FOLLOW THE SAME SCHEMA WITH
ONE ZONE PDU PER TWO STANDARD
RACKS/CABINETS AND ONE FOR EACH
HIGH DENSITY CABINET
NOTE:
OIT_DESIGN_GUIDE_TEMPLATE
DEPARTMENT OF VETERANS
AFFAIRS
IT OPERATIONS AND SERVICES
SOLUTION DELIVERY
DATE
ISSUE:
DESCRIPTIONMARK
FILE:
DESIGN BY: KEVIN GRZELKA, CTDC
VERIFIED BY:
DOC VERSION No:
PROJECT NO:
SHEET TITLE
ISSUE DATE:
SHEET: 19 OF 37
MICHAEL JULIAN, RCDD
KELLY BATES, DCIE
3.1
OIT DESIGN GUIDE TEMPLATES
N/A
60A ZONE PDU POWER
DISTRIBUTION
ENTERPRISE DATA CENTER AND
INFRASTRUCTURE ENGINEERING
SUBZONE TO 60A ZONE PDU CONNECTION MAP FOR TYPICAL (12 RACK) SERVER ROWS (MEDIUM AND LARGE)1
TYPICAL ZONE PDU UNIT WITH REAR DETAIL AND ADAPTORS REQUIRED
FOR VERTICAL PDU2
208 VOLT RACK PDU FOR EQUIPMENT POWER – TO BE ENERGIZED BY ZONE PDU4
REQUIRES ONE (1)
L21-20R
CHATSWORTH ECONNECT PDU; VERTICAL; MONITORED; L21-20
PLUG; THREE PHASE; 120/208V INPUT; 20A; (30) C13 (6) C19
OUTLETS; 208V OUTPUT; 3 X 2P 20A HYDRAULIC MAGNETIC
BREAKERS; LCD; ETHERNET, USB, AND ENVIRONMENTAL SENSOR
PORTS; IP AND SERIAL MONITORING; IP CONSOLIDATION (PDU
LINKING); TOOL-LESS MOUNTING; 70.5"H (1791 MM) X 2.2"W (56
MM) X 2.2"D (56 MM)
20A 120/208V
Y
POWER SCHEMATIC FOR POWER RACK- LEVEL REDUNDANCY3
RACK/ENCLOSURE
ZONE PDU
PDU
B
PDU
A
LEG1 LEG2
BUS
A
BUS
B
RACK/ENCLOSURE
RACKED
EQUIPMENT
PDU
B
PDU
A PS1 PS2
ONE ZONE PDU FOR THREE STANDARD DENSITY
SERVER CABINETS/NETWORK RACKS
NOTE:
THIS DESIGN PROVIDES DIVERSE
POWER INPUTS FOR ACTIVE
EQUIPMENT BY SPLITTING THE
SOURCE POWER ACROSS TWO
INPUTS ON THE ZONE PDU.
EACH INPUT WILL SUPPORT
THREE EQUIPMENT-FACING
RACK PDUS. EACH SERVER
CABINET WILL CONTAIN A
MINIMUM OF TWO EQUIPMENT-
FACING PDUS – EACH WILL BE
ENERGIZED BY SEPARATE ZONE
PDU INPUTS.
RACKED
EQUIPMENT
PS1 PS2
RACK/ENCLOSURE
RACKED
EQUIPMENT
PDU
B
PDU
A PS1 PS2
NOTE: THE CORRECT SPECIFICATION FOR THE ZONE PDU IS TO ENERGIZE IT
FROM TWO INDEPENDENT POWER SOURCES. EACH INPUT WILL USE
IDENTICAL SPECS: WYE (5-WIRE), 208V, 60A, THREE-PHASE,
TERMINATING IN A JUNCTION BOX TO BE HARDWIRED INTO THE ZONE
PDU. THE NEUTRAL CONDUCTOR SHOULD BE UPSIZED ONE GAUGE TO
MATCH THE UPSIZED NEUTRAL CONDUCTORS IN THE ZONE PDU UNITS.
THE NEUTRAL "UPSIZING" SHOULD IDEALLY BE CONTINUED IN THE POWER
DISTRIBUTION SYSTEM BACK TO THE UPS OR TRANSFORMER WINDING
POLE. THIS INCREASES THE EFFICIENCY OF THE POWER DISTRIBUTION
SYSTEM AND SUPPRESSES HARMONICS IN THE SYSTEM.
60A 3-PHASE ZONE PDU BASE UNIT – REAR SIX L21-20R OUTPUT RECEPTACLES
WITH 10' POWER CORDS TERMINATING IN HARDWIRE BOX
ZONIT ZPDS-208V60A-HW-6L21-20R OR EQUIVALENT
SPECIFICATIONS: RATED INPUT VOLTAGE: 208V 3Φ; AMPERAGE: 60A
INPUT CORD TERMINATION: HARDWIRE BOX
OUTPUT RECEPTACLES: SIX L21-20R
OUTPUT BRANCH CIRCUIT PROTECTION:
INDIVIDUAL 20A CIRCUIT BREAKERS PROTECT EACH
OUTPUT PHASE OF EACH OUTPUT RECEPTACLE
CHATSWORTH
P R O D U C T
Temp/Humidi ty Out
In / IOIOIO10/100
Res et
Warning
OK
Critical
C B2C
B2
C B1C
B1
C B1C
B1
C B3C
B3
C B3C
B3
C B2C
B2
O FF
O
ON
I
CB2
OFF
O
ON
I
CB1
OFF
O
ON
I
CB3
A
B
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
OY
GROUP B
OZ OX
OZ
GROUP A
OX OY
LEG 1 LEG 2 LEG 2LEG 1
OZ
GROUP B
OX OY
OX
GROUP A
OY OZ
LEG 2LEG 1
RACK/ENCLOSURE
ZONE PDU
PDU
B1
PDU
A2
LEG1 LEG2
BUS
A
BUS
B
RACKED
EQUIPMENT
PS1 PS2
RACK/ENCLOSURE
RACKED
EQUIPMENT
PDU
B
PDU
A PS1 PS2
PDU
A1
PDU
B2
ONE ZONE PDU FOR ONE STANDARD
DENSITY SERVER CABINET AND ONE HIGH
DENSITY SERVER CABINET
A
B
BABA
LEG 1 LEG 2 LEG 2LEG 1
BA
LEG 2LEG 1
GROUPGROUPGROUPGROUP GROUPGROUP
1 1
2 2
3 3
4 4
5 5
6 6
7 7
8 8
9 9
10 10
11 11
12 12
13 13
14 14
15 15
16 16
17 17
18 18
19 19
20 20
21 21
22 22
23 23
24 24
25 25
26 26
27 27
28 28
29 29
30 30
31 31
32 32
33 33
34 34
35 35
36 36
37 37
38 38
39 39
40 40
41 41
42 42
43 43
44 44
45 45
1 1
2 2
3 3
4 4
5 5
6 6
7 7
8 8
9 9
10 10
11 11
12 12
13 13
14 14
15 15
16 16
17 17
18 18
19 19
20 20
21 21
22 22
23 23
24 24
25 25
26 26
27 27
28 28
29 29
30 30
31 31
32 32
33 33
34 34
35 35
36 36
37 37
38 38
39 39
40 40
41 41
42 42
43 43
44 44
45 45
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