External_Attachment_Special_System_Design_Guide.pdf

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Information Technology Network Outfitting (ITNO) Federal contract opportunity
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HE1254-18-R-3000
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Department of Defense Education Activity

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i INTRODUCTION

INTRODUCTION

DEPARTMENT OF DEFENSE EDUCATION ACTIVITY

DOMESTIC DEPENDENT ELEMENTARY AND SECONDARY SCHOOLS (DDESS)

US ARMY CORPS OF ENGINEERS

NORFOLK DISTRICT

DODEA DESIGN CENTER

GUIDE DEVELOPMENT FIRMS

PARKHILL SMITH & COOPER, INC.

NSYNC SERVICES, INC.

FANNING, FANNING & ASSOCIATES

CONTRIBUTORS

MICHAEL CHANEY, DDESS, CHIEF, FACILITIES ENGINEERING BRANCH

LENNY DOBSON, DDESS, ASSOCIATIVE DIRECTOR OF INFRASTRUCTURE SYSTEMS

ROBERT ROLLO, PSC, FIRM PRINCIPAL

TROY SWINNEY, PSC, FIRM PRINCIPAL

CHRIS POWITZKY, ASSOC. AIA

RANDALL STEWART, RCDD, NSYNC, DIRECTOR OF OPERATIONS

JOHN FANNING, FFA, FIRM PRINCIPAL

MARCUS KESLIN, FFA, CONSULTANT

ABOUT THIS GUIDE

THIS DESIGN GUIDE HAS BEEN PREPARED TO PROVIDE THE A/E COMMUNITY WITH THE NECESSARY CRITERIA TO ASSIST IN THE

DESIGN OF THE SPECIAL SYSTEMS THAT ARE TYPICALLY FOUND IN AN EDUCATIONAL FACILITY. WHILE CERTAIN FEATURES OF THE

SYSTEM DESIGN WILL VARY FROM PROJECT TO PROJECT, THE REQUIREMENTS REFLECTED IN THIS GUIDE ARE INTENDED TO PROVIDE

THE MINIMUM REQUIREMENTS REQUIRED BY DODEA/DDESS.

ii TABLE OF CONTENTS

[1] DATA/TELECOMMUNICATION SYSTEM

[1.1] SUMMARY

[1.1.A] OUTSIDE CABLE PLANT

[1.2] SYSTEM REQUIREMENTS

[1.2.A] MAIN TELECOMMUNICATION ROOM (TR1)

[1.2.B] ADDITIONAL TELECOMMUNICATION ROOM (TR2)

[1.2.C] VIDEO DISTRIBUTION

[1.2.D] WIRELESS CONNECTIVITY

[1.2.E] TELEPHONE SYSTEMS

[1.2.F] EQUIPMENT RACKS

[1.2.G] PATCH PANELS

[1.2.H] CAT 6 COPPER CABLES

[1.2.I] FIBER OPTIC CABLES

[1.2.J] PATCH CORDS

[1.2.K] CABLE PATHWAYS

[1.2.L] CABLE TRAYS

[1.2.M] CONDUITS

[1.2.N] OPEN CABLES

[1.2.O] OUTLETS

[1.2.P] TESTING - CAT 6 CABLES

[1.2.Q] TESTING - FIBER OPTIC CABLES

TABLE OF CONTENTS

1 PHASE[1]

[1] DATA/TELECOMMUNICATION SYSTEMS

[1.1] SUMMARY

This chapter describes the Data/Telecommunication system design and installation/testing requirements.

The design requirements are intended to provide uniformity between design firms of symbols, equipment layouts, cabling methods, pathways, drawing submittal requirements, and specification requirements.

Every facility shall have wired and wireless data system installed and tested by a qualified firm experienced in network installations.

The network system shall be designed by a registered communication distribution designer (RCDD) and installed in accordance with the Telecommunications Industry Association (TIA) and Electronic Industry Alliance (EIA) General Guidelines, and the National Electrical Code (NEC). The design professional shall include in the design analysis of all projects a list of active components to be furnished to appropriate DDESS staff to facilitate planning. This active equipment will be furnished and installed by the Government, however, the schedule will be developed by the design team. Government furnished and installed equipment is noted in the Design Guide.

The system shall consist of the following:

[1] Incoming fiber optic cables from the installation telecommunication demarcation system to the main telecommunication room (TR1)

[2] Main Telecommunication room (TR1) housing the main network equipment rack

[3] Additional telecommunication rooms (TR2, TR3,) housing network distribution equipment racks as needed

[4] Fiber optic distribution cables from TR1 room to each additional telecommunication room

[5] Cable trays, conduits, and supporting devices for fiber optic and copper data cables

[6] CAT 6 copper cables from the distribution rack patch panels to individual data outlets

[7] Data outlets consisting of data jacks, faceplates, and identification denoting the room, patch panel, and port serving each jack

Standards:

The design and installation of the network shall comply with the following Standards unless modified by this document:

PHASE[1]1

• ANSI/TIA/EIA-568-B, Commercial Building

Telecommunications Cabling Standard

• ANSI/TIA/EIA-569-A, Commercial Building Standards for

Telecommunications Pathways and Spaces

• ANSI/TIA/EIA-569-B, Commercial Building Standard for telecommunications Pathways and Spaces

• ANSI/TIA/EIA-606, Administration Standard for the

Telecommunications Infrastructure of Commercial Buildings

• ANSI/TIA/EIA-607, Commercial Building Grounding and

Bonding Requirements for Telecommunications

• ANSI/TIA/EIA 526-7, Measurement of Optical Power Loss of

Installed Single-Mode Fiber Cable Plant

• ANSI/TIA/EIA 526-14, Optical Power Loss Measurements of

Installed Multimode Fiber Cable Plant

• NFPA 70, National Electrical Code

• NFPA 101, Life Safety Code

• ANSI/IEEE C2-2007, National Electrical Safety Code

• ANSI-J-STD-607-A-2002, Commercial Building

Grounding (Earthing) and Bonding Requirements for Telecommunications

• ANSI/NECA/BICSI 568-2006, Standard for Installing Commercial Building Telecommunication Cabling

• TIA Technical CommitteeTR-42, Technical Service Bulletin 162, Telecommunications Cabling Guidelines for Wireless Access Points

(A) Outside Cable Plant:

At the onset of the project, the telecommunications design team needs to communicate with installation personnel responsible for the infrastructure of the installation telecommunication facilities and distribution system. In particular, this discussion needs to identify the location of the existing available fiber optic lines and copper lines in the proximity of the project. The design intent is to provide a dedicated 12 strands of single mode fiber optic cable and a 100 pair copper cable from the installation’s demarcation point to the new school. The connection points and rooting need to be clearly identified in the facility construction documents.

The designer needs to determine what specific requirements may be needed from raceways, ductbanks, manholes, and similar requirements to ensure that all such requirements are included in the project in accordance with the installation requirements.

The Outside Plant Cable (OSP) including both fiber and copper lines will enter underground into the main telecommunication room, Telecommunications Room 1 (TR1).

Refer to the floor plan drawing of Room TR1 (Diagram 2) for the configuration of the room and entrance cable locations.

The incoming copper lines will be terminated in a network protector enclosure and routed in cable tray to punch down blocks located on the wall as indicated. The copper cables will then be routed in overhead cable tray to the equipment racks located in TR1.

2 PHASE[1]

NEIGHBORHOOD PLAN (DIAGRAM 1)

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I N T O

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P R I N T I N G

D E V I C E

3 PHASE[1]

[1.2] SYSTEM REQUIREMENTS

(A) Main Telecommunication Room (TR1):

The designer should provide plan layout drawings of TR spaces that indicate proposed layout and key clearances.

Each facility shall contain one main Telecommunication Room (TR1) for network equipment. The main telecommunications room shall meet the following requirements:

[1] The room shall be a minimum of approximately 200 SF with dimensions in each orientation of 10’ x 16’ with a 9’ minimum ceiling height. The room shall have one door, minimum of 36” wide. The door shall have a key-pad lock to control access. The room shall have no windows if located on exterior walls. All walls will be covered with 3/4” painted, plywood from 6” AFF. The plywood will be mounted in a vertical position, adjoined to minimize seams and have “B” grade exposed face.

Refer to Diagrams 2-6 for additional information.

[2] The room shall not be located within a 20’ radius of the main electrical rooms to limit RF interference.

[3] The room shall have a dedicated cooling system independent from the mechanical system serving the rest of the building. This room shall have its own thermostat. The room shall be provided with positive pressure to minimize dust intrusion. The size the cooling system is determined by the heat load produced by the communications equipment.

[4] Any equipment unrelated to TR1 shall not be routed through this room.

[5] This room shall be dedicated to systems described herein.

[6] The room shall contain a minimum of four, two-post equipment racks with planned expansion of at least one rack. Refer to Diagrams 2-7 for additional information.

[7] Rack-1 will be dedicated to data cabling for data drops located in the proximity of TR1. No other equipment will be permitted on Rack-1. Switches and patch panels as described below will be installed in Rack-1 to a maximum of 240 cables. Refer to Diagram 7 for additional information.

[8] Rack-2 will be used for termination of all voice cabling. Refer to Diagram 7 for additional information.

[9] Rack-3 will be used to support video distribution and any requirements for public address and clock systems.

Refer to Diagram 7 for additional information.

[10] Rack-4 shall contain the fiber optic termination and distribution equipment in the top-most part of the rack.

The site incoming fiber shall terminate in this rack. The outgoing fiber to each additional Telecommunication Room and/or adjacent racks shall originate in the top of this rack. Refer to Diagram 7 for additional information.

[11] The rack configuration for TR1 shall include physical parameters to mount a fifth rack to accommodate any future expansion. All racks shall have a minimum clearance of 3’-0” from either face of the equipment to any wall or wall-mounted equipment.

[12] Provide an equipment ground bar in TR1 for grounding the equipment racks and cable trays. The bar shall be a minimum of 12” long, 1/4” thick copper.

Attach to the wall with two insulators at 7’-0” above the floor. The ground bar shall be connected to the electrical system main grounding bar with #2/0 insulated conductor. Design the electrode grounding system to provide a maximum resistance to earth of 5 ohms or less.

[13] TR1 shall be illuminated to 50 foot-candles at 36” AFF using fluorescent fixtures. Locate fixtures in front and back of the racks to avoid shadows on rack surface planes.

[14] Install 20A, 120V duplex receptacles on the perimeter walls approximately 6 feet apart. Provide three dedicated 120 volt circuits feeding the receptacles. In addition, provide a dedicated 20A, 120 volt circuit that terminates in a twistlock receptacle mounted on the top of each rack for connection to power distribution units (PDU’s) mounted within the racks (one per rack).

(B) Additional Telecommunication Rooms (TR2, TR3, .......):

Additional Telecommunication Rooms (TR2, TR3, ……..)

shall be located where required to limit the total length of the cable from the patch panel to the furthest outlet to 275’ or less as measured through the cable tray pathways and in-room routing to include vertical rises and drops. The 275’ limit provides for some sag and unexpected downturns of pathway as well as path cables at the very end. Every level of a multi-story facility will contain a minimum of one TR. These telecommunication room(s) shall meet the same requirements as TR1 except when trumped by the following requirements:

[1] The room shall be a minimum size of 10’ x 10’ with a 9’ minimum ceiling height. The room shall have one door, minimum of 36” wide. The door shall have a key-pad lock to control access. The room shall have no windows if located on exterior walls. All walls will be covered with 3/4” painted, plywood from 6” AFF. The plywood will be mounted in a vertical position, adjoined to minimize seams and have “B” grade exposed face.

[1] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY FLOOR TO CEILING - TYPICAL FOR ALL WALLS

[2] INCOMING OUTSIDE PLANT CABLE (FIBER OPTIC CABLE) - TRANSITION FROM UNDERGROUND CONDUITS TO BASKET CABLE TRAY SYSTEM

[3] NETWORK PROTECTORS FOR INCOMING COPPER LINES

[4] TYPE 110 PUNCH DOWN BLOCKS FOR TERMINATION OF COPPER LINES

[5] PUBLIC ADDRESS/PROGRAM SYSTEM CABINET

[6] VERTICAL CABLE TRAY TRANSITION

TR1 FLOOR PLAN

'-0

" M

IN

3' -0

" M

IN

3' -0

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IN

16'-0" MIN

6"6" 6" 6"

[1]

[1]

[5] [4]

[7] [3]

[6] [2]

Rack-1 Rack-2 Rack-3

To School Connection Points

Rack-4 Future Rack-5

E1

E2 E3E4

[1] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY

[2] INCOMING OUTSIDE PLANT CABLE (FIBER OPTIC CABLE) - TRANSITION FROM UNDERGROUND CONDUITS TO BASKET CABLE TRAY SYSTEM

[3] NETWORK PROTECTORS FOR INCOMING COPPER LINES

[4] TYPE 110 PUNCH DOWN PROTECTORS FOR INCOMING COPPER LINES

[5] PUBLIC ADDRESS / PROGRAM SYSTEM CABINET

[6] VERTICAL CABLE TRAY TRANSITION

[7] 18” LADDER TRAY SYSTEM

NOTES:

(A) LAYOUT IS INTENDED TO BE CONCPTUAL AND DEMONSTRATE INTENT. ROOM NEED NOT BE EXACTLY THESE DIMENSIONS, PROPORTIONS OR ORIENTATIONS. DESIGN SHALL DEMPONSTRATE, OR “PROVE” DESIGNER’S SPECIFIC LAYOUT THROUGH USE OF A

SIMILAR DRAWING OR DRAWINGS IN THE SPECIAL SYSTEMS SHEETS.

4 PHASE[1]

TR1 - FLOOR PLAN (DIAGRAM 2)

TR1 ELEVATION [E1]

[1] PUBLIC ADDRESS/PROGRAM SYSTEM CABINET

[2] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY FLOOR TO CEILING - TYPICAL FOR ALL WALLS

LAY-IN

CEILING

6"

9' -0

" M

IN

[2]

[1]

BASE OF PLYWOOD

[1] PUBLIC ADDRESS / PROGRAM SYSTEM CABINET

[2] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY - TYPICAL FOR ALL WALLS

5 PHASE[1]

TR1 - ELEVATION [E1] (DIAGRAM 3)

6 PHASE[1]

[2] Conditioned air shall be supplied to the room, but a separate air conditioning system is not required.

Provide cooling for the heat load produced by the LAN equipment.

[3] This room shall be dedicated to LAN equipment.

No telephone or communication equipment or drops shall be installed in this room. Refer to Diagram 8 for additional information.

[4] The room shall contain at least one free-standing equipment rack and associated cable management system. The room layout should indicate planned space for a future Rack. Refer to Diagram 8 for additional

[5] The incoming fiber optic cable from the TR1 room shall terminate in the upper-most part of the rack.

[6] Cable patch panels for the drop cables shall be located in the lower part of the rack.

[7] Install additional data racks (and cable management system) as needed for the quantity of drops to be terminated.

[8] Provide space in the data racks for the active equipment that will be furnished and installed by DDESS.

[9] The rack configuration for TR2, TR3,....... shall include physical parameters to mount an additional rack to accommodate any future expansion. All racks shall have a minimum clearance of 3’-0” from the face of the equipment to any wall or wall-mounted equipment.

Refer to Diagram 8 for additional information.

(C) Video Distribution:

[1] As noted above, the video distribution will originate in Rack-2 located in TR1 and will be routed through the respective secondary TR if needed.

[2] In the teaching spaces the video distribution is preferred to be through the Interactive White Board (IWB). Each IWB will have a cart-mounted unit that will connect to the wall outlet through the use of an attachment umbilical with strain relief provided. Refer to Diagram 9 for additional information.

[3] The IWB cart assembly will connect to a wall outlet that has a network connection to the TR and three additional CAT 6 cables that extend to the wall mounted IWB/projector.

[4] The location of the IWB’s shall be coordinated with the entire design team and user group to ensure that it is located in the optimum locations. IWBs may also be portable and connected with an umbilical.

(D) Wireless Connectivity:

[1] Wireless outlets shall be located in all learning environments and the number and spacing shall be arranged to provide capacity and coverage for all users within the space. All wireless devices will be powered-over-ethernet (POE).

[2] Each primary teaching space will have a ceiling mounted wireless outlet.

[3] The wireless controller will be powered-over-ethernet (POE) and will be centrally located for optimum coverage.

Facility mapping of connectivity coverage should be considered.

(E) Telephone Systems:

[1] The telephone system requirements will be coordinated with the Installations telecommunications staff to ensure that all new equipment is compatible.

The intent is to design a voice system that is compatible for use with VoIP systems. All cabling, routing and limitations as indicated in this Design Guide will apply to the voice cabling.

[2] Telephone handsets will be distributed throughout the building for use by teaching and Administration staff.

(F) Equipment Racks:

Equipment racks shall meet the following requirements:

[1] Equipment racks shall be free-standing standard EIA 19”racks with 84” overall height (48 units). Racks shall be furnished with 6” vertical cable management system mounted on both sides of each rack or between adjacent racks. Racks shall contain the cable patch panels, neat-patch organizers, switches, fiber optic patch panels and other owner-furnished equipment.

[2] The data cabling that terminates on the racks shall start at the first port and shall be filled sequentially across all ports. The spare capacity indicated will be left at the bottom of the rack. Additional patch panels shall be installed in the rack to achieve the number of spare ports needed to achieve the 25% spare allocation.

[3] Position the racks near the center of the room to ensure full perimeter access.

[4] Provide rack elevation drawings for TR1 and for each TR room. The elevation shall clearly show the number and configuration of each rack. Detailed information including the number of switches, patch panels neat panels, wire management, and PDU’s will be included in the drawings. The number of terminated cables and the total number of available ports will be shown. Refer to Diagrams 7-8 for additional information.

TR1 ELEVATION [E2]

[1] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY - TYPICAL FOR ALL WALLS

[2] OVERHEAD CABLE TRAY FOR COPPER CABLES

9' -0

" M

IN

6"

RACK 1 RACK 2 RACK 3 RACK 4

LAY-IN

CEILING

[1]

[2]

BASE OF

PLYWOOD

[1] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY - TYPICAL FOR ALL WALLS

[2] OVERHEAD CABLE TRAY FOR COPPER CABLES

7 PHASE[1]

TR1 - ELEVATION [E2] (DIAGRAM 4)

8 PHASE[1]

[5] Plan TR spaces for an additional future rack location.

Refer to Diagrams 7-8 for additional information.

(G) Patch Panels:

Patch panels shall be 48-port CAT 6.

[1] The 24” and 48-port panels shall be installed horizontal wire manager. Each port shall be sequentially numbered from left to right 1 through 24 on top and 25 through 48 on the bottom. Install a Neat Patch horizontal wire manager below the 24-port (single-unit, single-row) or below the 48-port (double-unit, double-row) panels then leave a 2U open space below for customer provided switches. Triple-row panels are not allowed. Below the switch install an additional Neat Patch horizontal wire manager. Repeat this step for the quantity of patch panels provided Refer to Diagrams 7-8 for additional information.

[2] Terminate cables by color and function using T568B configuration in the following order:

• Blue - Data leaving a minimum of 10% of open ports for future use

• Red - Video Distribution leaving 4-6 open ports for future use

• Orange - Wireless leaving 4-6 ports open for future use

• Yellow - Voice leaving 10% open ports for future use

• Green - Network printing devices leaving 4-6 open ports for future use

(H) CAT 6 Copper Cables (Refer to Diagrams 10-11):

[1] Cables shall be CAT 6, UTP. The outer jacket shall be:

• BLUE for Data

• RED for Video

• ORANGE for Wireless

• YELLOW for Voice

• GREEN for Network printing device

[2] No cable shall exceed 295 feet in length. In addition, any cable length in excess of 275 feet shall be specifically identified in the design documents. The telecommunications designer shall evaluate each cable run along its intended path of travel, including vertical legs, to verify the length restrictions are in compliance.

All cables shall have passed the UL LAN certification program and be labeled with the UL marking. In above ceiling applications, utilize plenum-rated cable for air plenums.

[3] Cables shall not be installed within 12” of fluorescent lighting fixtures, motors, or other sources of interference.

[4] Splices within cable runs are not allowed. Cables in horizontal runs shall be bundled together neatly and untangled with hook-and-loop Velcro fastener straps. The installer must adhere to the manufacturer’s requirements for bend radius and pulling tensions for all data runs.

[5] Label all cables on both ends with computer generated, self-laminating, adhesive, wraparound labels with the room number (TR1, TR2…), rack number, patch panel identifier, and port number. Place label 4-6” from the termination point. Workstation faceplate label shall be behind a protective clear identifying window.

[6] Patch panel label shall also be behind a protective clear identifying window.

Example:

[7] Provide cable pull charts as indicated in the attachment to identify all cables.

(I) Fiber Optic Cables (Refer to Diagrams 10-11):

[1] Terminate all fiber strands unless otherwise directed with SC type connectors.

[2] Install (1) each interlocking armored Single mode (SM) 12-strand and 50-Micron Multimode (MM) 12-strand cables to each telecommunication room from TR1.

Manufacturer’s recommended bend radius must be adhered to at all times. Terminate the SM in ports 1-12 of the bulkhead and the MM in ports 13-24 in the 1U fiber shelf installed at the top of Rack-3.

[3] Terminating points shall be clearly marked on the exterior of the fiber shelf indicating where each strand pair terminates at the opposite end (source and destination). A legend shall be provided at each fiber patch panel indicating the terminating end points.

(J) Patch cords (Refer to Diagrams 10-11):

Specify that contractor provides the following CAT 6 patch cords to support the LAN connectivity:

• Blue - 10’ for the workstation. Quantity to equal 85% of all ports plus 10%

• Blue - 15’ for workstation. Quantity to equal 15% of all ports plus 10%

TR1 - 1 A - 01

PortRoom Rack Patch Panel

TR1 ELEVATION [E4]

[2] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY FLOOR TO CEILING - TYPICAL FOR ALL WALLS

7' -0

6"

9' -0

" M

IN

[2]

BASE OF

PLYWOOD

TR1 ELEVATION [E3]

[1] NETWORK PROTECTORS FOR INCOMING COPPER LINES

[2] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY FLOOR TO CEILING - TYPICAL FOR ALL WALLS

[3] OVERHEAD CABLE TRAY FOR COPPER CABLES

[4] TYPE 110 PUNCH DOWN BLOCKS FOR TERMINATION OF COPPER LINES

[5] VERTICAL CABLE TRAY TO SUPPORT VOICE CABLES

6"

9' -0

" M

IN

[3]

[1]

[4]

[2]

[5]

BASE OF

PLYWOOD

INCOMING

CONDUITS

LAY-IN

CEILING

[1] NETWORK PROTECTORS FOR INCOMING COPPER LINES

[2] 4’X8’X3/4” PAINTED PLYWOOD SHEETS MOUNTED VERTICALLY FLOOR TO CEILING - TYPICAL FOR ALL WALLS

[3] OVERHEAD CABLE TRAY FOR COPPER CABLES

[4] TYPE 110 PUNCH DOWN BLOCKS FOR TERMINATION OF COPPER LINES

[5] VERTICAL CABLE TRAY TO SUPPORT VOICE CABLES

9 PHASE[1]

TR1 - ELEVATION [E3] (DIAGRAM 5)

TR1 - ELEVATION [E4] (DIAGRAM 6)

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(2 U

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TA

(2 U

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TA

(1 U

)2 po rt pa tc h pa ne l-

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(2 U

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D A

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(2 U

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10 PHASE[1]

TR1 - RACK ELEVATION (DIAGRAM 7)

11 PHASE[1]

• Blue - 2’ for the patch panels. Quantity to equal total blue ports, minus printers plus 10%

• Green - 2’ for patch panels. Quantity to equal total printer ports plus 10%.

• Red - 2’ for patch panels. Quantity to equal total red ports plus 10%

• Orange - 2’ for patch panels. Quantity to equal total orange ports plus 10%

(K) Cable Pathways:

[1] All cables shall be adequately supported and protected with materials specifically designed for this purpose. Cables shall not lie on top of ceilings, piping, or mechanical equipment.

[2] Pathways for CAT6 copper cables shall not be installed immediately adjacent to electrical distribution busduct or feeder conduits. Where the cables run parallel to such services, maintain a minimum of 6” separation. 90 degree crossings are allowed with a minimum of 12” of separation.

(L) Cable Trays:

[1] The following services are permitted to be installed in cable trays. No other wiring shall be installed in the trays:

• LAN cables

• Telephone cables

• Video cables

• Projector and Smart Board data cables

• Intercom cables

• Fiber optic cables

• Wireless access point data cable

[2] Cable trays shall be installed above accessible ceilings to serve as the primary pathway between telecommunication rooms, and for the horizontal cables.

Designer is responsible for defining and drawing the pathway desired.

[3] Cable trays shall be wire mesh type tray 2” or 3” in depth and width as required for the quantity of cables to be supported. Trays shall be filled to max of 40%.

The wire mesh shall be hot-dipped galvanized unless a special coating is required. Each section of tray shall be furnished with a grounding lug attached to the tray.

[4] Cable trays shall be continuous the entire length.

Horizontal or vertically changes in direction shall be made of components by the same tray manufacturer to function as an integrated complete system.

[5] Cable trays shall be installed according to NEMA Standard VE2-2006. Position the trays below any piping or ductwork above the ceiling to provide ease of future access. Maintain a minimum of 12” clear above the top of the tray for installation of the cables, and maintain a minimum of 6” clear below the bottom on the tray and ceiling to allow removal of the ceiling tiles. Position the trays to allow access to items above the ceiling requiring routine maintenance such as filters, valves, VAV boxes, etc.

[6] Cable trays shall be supported from the structure according to the methods described in NEMA Standard V2 using wall brackets or trapeze hangers. Select all supporting hardware for the weight of the tray and cables contained therein.

[7] Where cable trays pass through walls that extend to the deck, install a framed opening in the wall the same dimensions as the outside dimensions of the tray and penetrate the wall through the framed opening. Where cable trays are shown to pass through fire-rated walls, install a minimum of two 4” conduits with fire caulk on the outside and fire caulk in the inside once the cables are pulled.

[8] Install number 2AWG bare copper grounding conductor inside each tray connected to the ground lug on each tray section. Terminate this grounding conductor to the equipment ground bar in the telecommunication room where the LAN cables terminate.

(M) Conduits:

[1] Conduits shall be installed in walls for the vertical drops from the ceiling to the outlet box containing the LAN jack. Minimum size of the conduit shall be 3/4”.

Where the conduit contains more than two cables the conduit shall be a minimum of 1”. Install a bushing on the conduit at the termination above the ceiling to protect the cable during installation. Every conduit installed for LAN cables shall contain a nylon pull string.

[2] Where hard ceilings are encountered, extend the conduits completely across the hard ceiling area and terminate at the cable tray or above an accessible ceiling.

[3] Floor outlets are not DDESS preference. However, where LAN jacks are installed in floor boxes, install conduits underfloor from the box to the nearest wall, run vertically up the wall and terminate above the ceiling.

The minimum quantity and size conduits to a floor box shall be two 1” conduits for LAN cables.

[4] Where LAN jacks are installed in modular furniture partitions having internal raceways for LAN cables, install a furniture connection box at the location recommended by the partition supplier. Install a minimum of 1.25” conduit from the box to above the accessible ceiling.

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12 PHASE[1]

TYPICAL TR ELEVATION LAYOUT (DIAGRAM 8)

13 PHASE[1]

(N) Open Cables:

[1] Cables may be run without conduit above accessible ceilings from the LAN outlet stub-up to the cable tray.

A pathway for such cables shall be established during design and indicated on the design drawings. Bundle cables above the ceiling and support with J-hook hardware specifically designed for this purpose.

[2] All cables supplying LAN jacks in a room shall enter the room at one location. Where the wall extends to deck, install a conduit sleeve in the wall for installation of the cables. At firewall penetrations, seal around the outside of the sleeve with approved fire caulk. After installation of the cables, seal the interior of the sleeve with approved fire caulk material.

[3] All cables not in trays shall be properly supported with j-hooks installed at a minimum of every 5’. Position the supports such that the sag at the mid-point between supports is no more than 12”. Use additional supports if necessary. Cables cannot lie on the structural steel or “red-iron” of the facility. J-hooks should be installed at all conduit entrances and above all workstation locations to allow for a 3’ service loop in the cable.

[4] Neatly bundle conductors into logical bundles and secure with Velcro straps between J-hooks and in all telecommunication rooms.

(O) Outlets:

[1] LAN outlets shall consist of an outlet box with faceplate containing the LAN jacks Refer to the Diagrams to the right for additional information.

[2] Recessed wall outlet boxes shall be galvanized steel boxes, 4” square with a minimum depth of 2.125” where 1” and 3/4” conduits are attached. Where 1.25” conduits are attached use 4-11/16 square boxes with minimum depth of 2.125”. Install a single-gang adapter ring on the box.

[3] Box faceplate shall contain the LAN jacks. Faceplates may contain 1 to 6 jacks on a single gang plate. LAN jacks shall be TIA/EIA Cat 6, 8-pin, RJ45 terminated using a T568B configuration. Refer to the Diagrams to the right for additional information.

(P) Testing - CAT 6 Cables:

[1] All cable runs shall be certified. Each cable run shall contain a data report with the following information:

• Circuit ID as labeled at the patch panel and jack.

• Length of cable run

• Date of test

• Cable Type

• Type of scanner used

• Overall test result of cable (i.e. PASS). NOTE: Marginal tests are not acceptable.

[2] Wiring shall be tested and reported as complying to the following individual tests:

• Wire Map - Show the wiring is straight through with no open, crossed, reversed, or split pairs.

• Resistance - Measured in ohms, limit, and PASS/FAIL

• Length - Measured length of each cable pair

• Propagation Delay - Measured in nanoseconds, each pair

• Impedance - Determine if anomalies exist on cables longer than 16 feet, measured for each pair.

• Attenuation - Measure the loss of signal over the length of the cable. Attenuation for each pair (dB), frequency for 100 Mhz.

• Next - Measure the near-end crosstalk of a cable and verify the cable has adequate immunity from the next pairs.

[3] Submit the test results in spreadsheet format as directed by the contract specifications. Specifications shall be edited such that DDESS receives a copy.

(4) DATA (1) DATA

DoDEA/DDESS- WORKSTATION WALLPLATE CONFIGURATIONS:

Typical Classroom

(1) WIRELESS & (1) VOICE(4) DATA

NOTES: Jacks to be placed in below order on any given faceplate so it matches the panels on the racks (left to right/top to bottom):

DATA/BLUE- VIDEO/RED- WIRELESS/ORANGE- VOICE/YELLOW

TERMINATION CONFIGURATION: T568B

N S Y NC S E R V IC E S , INC .

C R AF T S MANS HIP B Y :

2004 N. HWY 360

G R AND P R AIR IE , T X 75050

www.nsyncservices .com 1-866-706-7962

F ILE NAME :

UP DAT E D B Y :

DE S IG NE D B Y :

R E V IE WE D B Y :

OF

B UILDING NUMB E R :

DAT E D:

08/15/2011

S HE E T NO.

R R S

DDE S S T Y P IC AL C LAS S R OOM

WOR K S T AT ION F AC E P LAT E

C ONF IG UR AT ION

R R S

LD

DDE S S - T Y P IC AL C R F AC E P LAT E

T E LE C OMM R OOM/

ZONE :

R andell S tewart, R C DD

R C DD:

1 1

ALL

DOMESTIC DEPENDENT ELEMENTARY AND SECONDARY SCHOOLS

U.S DEPARTMENT OF DEFENSE EDUCATION ACTIVITY

ALL

(1) VIDEO DISTRIBUTION &

TR1-1A-01 TR1-1A-02

TR1-1A-03 TR1-1A-04

TR1-1A-05 TR1-1A-06

TR1-1A-07 TR1-1A-08

TR1-2A-01

TR1-1B-01

TR1-3A-01

TR1-3B-01

(4) DATA (1) DATA

DoDEA/DDESS- WORKSTATION WALLPLATE CONFIGURATIONS:

Typical Classroom

(1) WIRELESS & (1) VOICE(4) DATA

NOTES: Jacks to be placed in below order on any given faceplate so it matches the panels on the racks (left to right/top to bottom):

DATA/BLUE- VIDEO/RED- WIRELESS/ORANGE- VOICE/YELLOW

TERMINATION CONFIGURATION: T568B

N S Y NC S E R V IC E S , INC .

C R AF T S MANS HIP B Y :

2004 N. HWY 360

G R AND P R AIR IE , T X 75050

www.nsyncservices .com 1-866-706-7962

F ILE NAME :

UP DAT E D B Y :

DE S IG NE D B Y :

R E V IE WE D B Y :

OF

B UILDING NUMB E R :

DAT E D:

08/15/2011

S HE E T NO.

R R S

DDE S S T Y P IC AL C LAS S R OOM

WOR K S T AT ION F AC E P LAT E

C ONF IG UR AT ION

R R S

LD

DDE S S - T Y P IC AL C R F AC E P LAT E

T E LE C OMM R OOM/

ZONE :

R andell S tewart, R C DD

R C DD:

1 1

ALL

DOMESTIC DEPENDENT ELEMENTARY AND SECONDARY SCHOOLS

U.S DEPARTMENT OF DEFENSE EDUCATION ACTIVITY

ALL

(1) VIDEO DISTRIBUTION &

TR1-1A-01 TR1-1A-02

TR1-1A-03 TR1-1A-04

TR1-1A-05 TR1-1A-06

TR1-1A-07 TR1-1A-08

TR1-2A-01

TR1-1B-01

TR1-3A-01

TR1-3B-01

(4) DATA (1) DATA

DoDEA/DDESS- WORKSTATION WALLPLATE CONFIGURATIONS:

Typical Classroom

(1) WIRELESS & (1) VOICE(4) DATA

NOTES: Jacks to be placed in below order on any given faceplate so it matches the panels on the racks (left to right/top to bottom):

DATA/BLUE- VIDEO/RED- WIRELESS/ORANGE- VOICE/YELLOW

TERMINATION CONFIGURATION: T568B

N S Y NC S E R V IC E S , INC .

C R AF T S MANS HIP B Y :

2004 N. HWY 360

G R AND P R AIR IE , T X 75050

www.nsyncservices .com 1-866-706-7962

F ILE NAME :

UP DAT E D B Y :

DE S IG NE D B Y :

R E V IE WE D B Y :

OF

B UILDING NUMB E R :

DAT E D:

08/15/2011

S HE E T NO.

R R S

DDE S S T Y P IC AL C LAS S R OOM

WOR K S T AT ION F AC E P LAT E

C ONF IG UR AT ION

R R S

LD

DDE S S - T Y P IC AL C R F AC E P LAT E

T E LE C OMM R OOM/

ZONE :

R andell S tewart, R C DD

R C DD:

1 1

ALL

DOMESTIC DEPENDENT ELEMENTARY AND SECONDARY SCHOOLS

U.S DEPARTMENT OF DEFENSE EDUCATION ACTIVITY

ALL

(1) VIDEO DISTRIBUTION &

TR1-1A-01 TR1-1A-02

TR1-1A-03 TR1-1A-04

TR1-1A-05 TR1-1A-06

TR1-1A-07 TR1-1A-08

TR1-2A-01

TR1-1B-01

TR1-3A-01

TR1-3B-01

(4) DATA (1) DATA

DoDEA/DDESS- WORKSTATION WALLPLATE CONFIGURATIONS:

Typical Classroom

(1) WIRELESS & (1) VOICE(4) DATA

NOTES: Jacks to be placed in below order on any given faceplate so it matches the panels on the racks (left to right/top to bottom):

DATA/BLUE- VIDEO/RED- WIRELESS/ORANGE- VOICE/YELLOW

TERMINATION CONFIGURATION: T568B

N S Y NC S E R V IC E S , INC .

C R AF T S MANS HIP B Y :

2004 N. HWY 360

G R AND P R AIR IE , T X 75050

www.nsyncservices .com 1-866-706-7962

F ILE NAME :

UP DAT E D B Y :

DE S IG NE D B Y :

R E V IE WE D B Y :

OF

B UILDING NUMB E R :

DAT E D:

08/15/2011

S HE E T NO.

R R S

DDE S S T Y P IC AL C LAS S R OOM

WOR K S T AT ION F AC E P LAT E

C ONF IG UR AT ION

R R S

LD

DDE S S - T Y P IC AL C R F AC E P LAT E

T E LE C OMM R OOM/

ZONE :

R andell S tewart, R C DD

R C DD:

1 1

ALL

DOMESTIC DEPENDENT ELEMENTARY AND SECONDARY SCHOOLS

U.S DEPARTMENT OF DEFENSE EDUCATION ACTIVITY

ALL

(1) VIDEO DISTRIBUTION &

TR1-1A-01 TR1-1A-02

TR1-1A-03 TR1-1A-04

TR1-1A-05 TR1-1A-06

TR1-1A-07 TR1-1A-08

TR1-2A-01

TR1-1B-01

TR1-3A-01

TR1-3B-01

14 PHASE[1]

(Q) Testing - Fiber Optic Cables:

[1] Perform continuity test on all fiber and connections.

[2] All installed fibers shall be certified via the use of an

OTDR.

[3] Certification of fiber shall report the loss ratio of each fiber.

[4] A printed report of each fiber segment tested shall be supplied.

[5] A summary of all fiber tests, including dB loss for each fiber segment shall be supplied in printed and spreadsheet format.

[6] Provide approximate length of each cable run.

CAT6

VDS

IWB

To TR

To TR

INTERNET/VIDEO

STRAIN RELIEF HOOK

INTERCONNECTING CABLES

BETWEEN PORTABLE LECTURN AND IWB

(COMMAND, VIDEO AND AUDIO)

INTERNET/VIDEO

TR1

Rack 4

DDESS

Fiber/Copper Distribution System

TR2-Rack 2

TR3-Rack 2

TR4-Rack 2

OSP 12 Strand SM Fiber Homerun to BCO Terminated with SC at top of Rack 4 in TR1.

Base Communications

Office

WAN

(1) 12 Strand 50 micron MMF

Backbone Fiber

Learning (4) 2 Strand 50 micron

MMF

Learning

(4) 2 Strand 50 micron

MMF

Learning(4) 2 Strand 50 micron

MMF

TR1

Rack 2

(1) 12 Strand 50 micron MMF

Backbone Fiber

Neighborhood

Neighborhood

50 pair minimum

Neighborhood

15 PHASE[1]

INTERACTIVE WHITE BOARD (DIAGRAM 9)

DDESS FIBER/COPPER DISTRIBUTION SYSTEM (DIAGRAM 10)

16 PHASE[1]

CABLE PULL SCHEDULE

Telecom

Room Rack

Designation Patch Panel

Port Number

Room Application Type

Cable Color Cable

Length POE (<295 Ft)

TR1 1 A 1 CR 101 Data Blue TR1 1 A 2 CR101 Data Blue TR1 1 A 3 CR101 Data Blue TR1 1 A 4 CR 102 Data Blue TR1 1 A 5 CR 102 Data Blue TR1 1 A 6 CR102 Data Blue TR1 1 A 7 CR 103 Data Blue TR1 1 A 8 CR 103 Data Blue TR1 1 A 9 CR 103 Data Blue TR1 1 A 10 Offices 104 Data Blue TR1 1 A 11 Offices 104 Data Blue TR1 1 A 12 Offices 104 Data Blue TR1 1 A 13 Offices 104 Data Blue TR1 1 A 14 Offices 104 Data Blue TR1 1 A 15 Offices 104 Data Blue TR1 1 A 16 Workrm 105 Data Blue TR1 1 A 17 CR 106 Data Blue TR1 1 A 18 CR 106 Data Blue TR1 1 A 19 CR 106 Data Blue TR1 1 A 20 CR 107 Data Blue TR1 1 A 21 CR 107 Data Blue TR1 1 A 22 CR 107 Data Blue TR1 1 A 23 Commons 108 Data Blue TR1 1 A 24 Commons 108 Data Blue

TR1 1 B 1 Commons 108 Data Blue TR1 1 B 2 Breakout 109 Data Blue TR1 1 B 3 CR 110 Data Blue TR1 1 B 4 CR 110 Data Blue TR1 1 B 5 CR 110 Data Blue

TR1 2 A 1 CR 101 Video Red TR1 2 A 2 CR 102 Video Red TR1 2 A 3 CR 103 Video Red TR1 2 A 4 CR106 Vidoe Red TR1 2 A 5 CR 107 Video Red TR1 2 A 6 Commons 108 Video Red TR1 2 A 7 Commons 108 Video Red TR1 2 A 8 CR 110 Video Red

TR1 2 B 1 CR 101 Phone Yellow TR1 2 B 2 CR 102 Phone Yellow TR1 2 B 3 CR 103 Phone Yellow TR1 2 B 4 Offices 104 Phone Yellow TR1 2 B 5 Offices 104 Phone Yellow TR1 2 B 6 Offices 104 Phone Yellow TR1 2 B 7 Offices 104 Phone Yellow TR1 2 B 8 Offices 104 Phone Yellow TR1 2 B 9 Offices 104 Phone Yellow TR1 2 B 10 Workrm 105 Phone Yellow TR1 2 B 11 CR 106 Phone Yellow TR1 2 B 12 CR 107 Phone Yellow TR1 2 B 13 Commons 108 Phone Yellow TR1 2 B 14 CR 110 Phone Yellow

TR1 2 C 1 CR 101 Wireless Orange TR1 2 C 2 CR 102 Wireless Orange TR1 2 C 3 CR 103 Wireless Orange TR1 2 C 4 Offices 104 Wireless Orange TR1 2 C 5 CR 106 Wireless Orange TR1 2 C 6 CR 107 Wireless Orange TR1 2 C 7 Commons 108 Wireless Orange TR1 2 C 8 CR 110 Wireless Orange

Remarks

White Board

White Board

White Board

White Board White Board

White Board

White Board

White Board White Board White Board White Board White Board White Board White Board Wall mounted flat screen

CABLE PULL SCHEDULE (DIAGRAM 11)

File details come from the government source that posted it.