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Text version
TABK
01 August 2011
Supersedes previous editions
75 ABW/SC
Communications & Information
Directorate Hill Air Force Base, Utah
Telecommunications Installation Criteria For
Facility Design and Renovation
OPR: Mr. Robert Richardson
75 ABW/SCXPP
7879 Ward leigh Rd Hill AFB, UT 84056
FOR OFFICIAL USE ONLY
TABLE OF CONTENTS:
HEADING
Purpose
1.0 Technical References
2.0 General Scope
3.0 Personnel Certification Requirements
4.0 Local Minimum Standards
4.1 Fiber
4.2 Copper
4.3 VoicelData Jacks
5.0 Building Communications Distribution Systems
5.1 General
5.2 Conduits (EXTERIOR)
5.3 Interior Conduits/Cable Trays (INTERIOR)
5.4 Manholes/Man holds
6.0 Telephone Entrance Cable
7.0 Communication Rooms
7.1 Communication Equipment Room (CER)
7.2 Telecommunication Rooms (TR)
8.0 Security
9.0 Operational Environment
10.0 Power
11.0 Building Entrance Terminals
12.0 Wiring
13.0 Telecommunications Outlets
FOR OFFICIAL USE ONLY
PAGE
4-5
5-6
,6
7-8
9-10
1 1
11-12
12-13
14.0 Periodic, Final Inspections, Testing and
Documentation
Attachment 1 - Materials List
Figure 1 - Manhole Details
Figure 2 - CER Room Layout
Figure 3 - Comm Jack Layout & Labeling
Figure 4 - Voice/data frequency wiring
Figure 5 - Standard Comm Rm Wiring Diagram
FOR OFFICIAL USE ONLY
13-15
PURPOSE
This document supplements UFC-3-580-1 and the Air Force Civil Engineer Support Agency (AFCESA) Engineering Technical Letter (ETL) 02-12, which identifies the minimum telecommunication requirements, and to provide design criteria for telecommunications cabling and distribution system requirements unique to Hill Air Force Base. The AFCESA ETL 02-12 states pre-wiring shall be included in all military facility construction projects accomplished with 3300 series funding . lAW AFI 33-101, COMMUNICATIONS AND INFORMATION MANAGEMENT GUIDANCE AND RESPONSIBILITIES, the Communications-Computer Systems Officer (CSO) has mandated that all pre-wiring must comply with ETL 02-12, BISCI Telecommunications Distribution Methods Manual and this document. Compliance with this document improves maintenance by establishing a standard for comrimnication systems.
Department of Defense (DOD) publications direct the use of commercial standards whenever they meet DOD needs.
The guidance in this document will be followed by all base and tenant agencies and their contractors.
To minimize the long-term cost of the infrastructure, ensure interoperability and interface capability, local standards are established and may only be changed when approved in writing by the CSO. These standards are intended to promote common skills among maintenance personnel throughout the base and to minimize the necessity for excessive spare parts and variations in telecommunications equipment.
Revisions to this document will be prepared and distributed by 75 ABW/SC when higher headquarters guidance, USAF communications standards, or other contributing agency standards warrant changes. Additionally, 75 ABW/SC recognizes the inherent need to maintain close interaction with Base Civil Engineering (BCE) and the Army Corp of Engineers on all project issues and we invite comments or recommendations for changes to this document.
1.0 TECHNICAL REFERENCES
The following documents are referenced within this document and are hereby recognized as the standards of good practice to be followed during the performance of the work.
National Fire Protection Association NFPA 70 National Electrical Code Underwriters Laboratories UL Standards for Cat 5 UTP Wire Rural Utility Service PE-39 Specifications for Filled Telephone Cable
PE-80 Specifications for Gas Tube Surge Arrestors PE-89 Specifications for Filled Telephone Cable with Expanded Insulation
National Electrical Manufacturer's Association (NEMA) Air Force Documents AFR 88-15 Criteria for AF Construction
FOR OFFICIAL USE ONLY 4
ANSI/EIA/TIA Standards
International Electrical and
FOR OFFICIAL USE ONLY
BICSI Telecommunications Distribution Methods Manual AFSSI 7010 Emission Security Assessment AFSSM 7011 Emission Security Countermeasures Review ETL 02-12 Communications and Information System Criteria for Air Force Facilities Criteria and Standards for Construction TO 31-W -3-10-22 Telecommunications Engineering OPT TO 31-W-3-10-12 Outside Plant Cable Placement TIA 472EOOO Standard for Indoor-Outdoor Optical Fiber Cable EIAITIA 568 Commercial Building Wiring EIAITIA 569 Pathways and Spaces EIA/TIA 570 Light Commercial/Residential Wiring EIA/TIA 606 Documentation Standards EIA/TIA 607 Grounding & Bonding Digital Systems TSB 36 Cable Requirements for Digital Systems TSB 40 Termination Components TSB 67 Cable Testing SP2840 Category 5 Component Specifications
Electronics Engineers Association IEEE 802.6 MAN System requirements IEEE 802.8 Fiber Optic Advisory Board Standards IEEE 802.9 Integration of Voice and Data Systems IEEE 802.10 LAN Security Measures IEEE 802.3U 100BaseT and 100BaseX Standards
Additional information may be obtained from 75 ABW/SC or the applicable Engineering and Installation activity.
2.0 GENERAL SCOPE
a. Project design packages will comply with criteria documented herein for:
(1) Concealment of wiring and cabling.
(2) Space for installation and maintenance.
(3) Flexibility of office layout in administrative areas.
(4) Standardization of user requirements.
b. The base CSO or designated authority should be contacted for approval/disapproval for any deviations to the criteria defined in this document.
c. The design package OPR shall :
(1) Submit all required Communication Service Requirement Documents (CSRD) needed in support of the project.
(2) Present all communications requirements to 75 ABW/SC prior to the 10% level of design review.
FOR OFFICIAL USE ONLY 5
(3) Present 75 ABW ISC a complete design package for review to include a draft Requirements and Maintenance Plan (RAMP), draft drawings, DD FORM 1391 , MILITARY PROJECT CONSTRUCTION DATA, and a list of any deviations from the 75 ABW/SC criteria, which must be approved by the base CSO.
(4) Allow 10 business days for the Communications & Information Directorate personnel to review all design packages.
(5) Provide a project support agreement (PSA) identifying all requirements and the dates when support will be required.
d. 75 CS/SCX Project Manager(s) will:
(1) Coordinate design packages/PSA's with all appropriate communications agencies.
(2) Receive and maintain comments on design packages. Ensure design packages comply with DOD and local standards and support the current base blueprint document.
(3) Forward comments to the OPR and attend design meetings as required.
(4) Ensure the most efficient wire or cable distribution system is in the design package.
(5) Check design packages to ensure current and projected communication requirements are considered for flexibility to accommodate future additions or changes.
(6) Ensure appropriate 75 ABW/SC personnel are involved in all phases of the project.
3.0 PERSONNEL CERTIFICATION REQUIREMENTS
Personnel involved in design and construction shall be certified in engineering and installation of telecommunications, cabling and distribution systems. Contract personnel and affiliated organizations shall provide adequate proof of skills upon CSO request.
4.0 LOCAL MINIMUM STANDARDS
4.1. FIBER
4.1.1. For Base Fiber Optic Backbone Building Connections (Information Transfer Nodes ITN's), use 36 Strand Single Mode (SM) Fiber 91100 micron -Consistent with long distance transport via A TM or Gigabit Ethernet protocol transmission equipment.
4.1.2. For Base Fiber Optic Satellite Building Connection (End Building Node-EBN's), 12 Strand SM Fiber 9/100 micron - Consistent with Switched Ethernet, Gigabit Ethernet, or Switched Gigabit Ethernet protocol transmission equipment.
4.1.3. For Horizontal cable connections between the main communications equipment rooms (CER) and other telecommunications rooms (TR) within the same building, a minimum of 6 Strand Single Mode (SM) Fiber will be used.
4.1.4. All interior fiber connections will use ST (Straight Tip) type connectors.
4.2. COPPER
FOR OFFICIAL USE ONLY 6
4.2.1. The number of copper cable pairs needed for new installations will be determined during design reviews or when a requirement has been identified. .
4.2.2. All cable used for telecommunications outlets shall be four pair, 24 A WG, solid copper conductor, Category 5E, UL tested and certified. Each Data cable shall be dedicated to one device or outlet only.
4.2.3. Only plenum rated cable may be used whenever cable is installed and exposed within air circulation areas. Contact CSO for any deviations.
4.2.4. All outside cable splices for 26 A WG copper wire shall be spliced using modular splicing methods.
4.2.5. All outdoor metallic Twisted Pair (TP) Cable will be gel filled core type, and meet Rural Utility Service (RUS) PE-39 or PE-89 specifications.
4.2.6. Pedestals used to provide service shall have protected terminal blocks. (See Atch 1).
4.3. COMMUNICATION JACKS
4.3.1. All telecommunications outlets shall contain 3 RJ45 type jacks utilizing TIA 568B wiring configuration. (See Figure 3 and Attachment 1)
4.3.2. Place phone/data/LAN outlet jacks every 12 LF along every wall space or one for each 50 square foot of floor space; whichever provides a higher outlet density. All other locations will be provided with an outlet density as determined by the CSO. (See also Para. 10)
5.0. BUILDING COMMUNICATIONS DISTRIBUTION SYSTEM
5.1. For new construction or remodeling, the design, installation, and related costs necessary to extend the conduit and manhole system to the new location shall be included in the project package in accordance with ETL 02-12. Multiple service entrance locations will be required for all facilities housing command and control systems to provide redundant, survivable service.
5.2. CONDUITS (EXTERIOR)
5.2.1. All outside plant communications cable installation shall adhere to the technical specifications set forth in AFTO 31 W3-1 0-3 thru 31 W3-1 0-22, the TIA/EIA, the ETL, and the NEC
5.3. CONDUITS/CABLE TRAYS (INTERIOR)
5.3.1. For new installations, and renovations, circuit connectivity from the telecommunications outlet jacks to the TR or the CER will be routed through conduit sufficient in size as not to exceed the 40% rule as stipulated in the National Electrical Code (NFP A 70). Conduits will be installed 12" above the finished ceiling, using the most direct route. Cable trays when used shall be installed no higher than 14 feet in industrial areas. In administrative areas, the cable
FOR OFFICIAL USE ONLY 7
tray/raceway will run no higher than 6 inches above the ceiling tile grid, using an independent support structure, and using the most direct route between the TR and the CER. Ground on each end (one end to telecommunications main ground bus bar/telecommunications ground bar (TMGB/TGB) and at intervals not to exceed 18m (60 feet). Use a #6 A WG cable with green/yellow stripe to jumper between discontinuous segments on both side rails. The jumper shall be made with 2-hole compression lugs terminated on both ends. (TMGB/TGB: Minimum dimensions of 0.25 inch thick by 4 inches wide by 10 inches long for TMGB and TGB. Perform and provide TMGB/TGB ground bus resistance test results (5 ohms or less) in accordance with ETL 02-12, paragraph 8.3.3.2.4; NEC art 501-510; MIL-STD-188-124B, paragraph 5.1.1.1.7.
Telecommunications grounding bus bars shall be installed to maintain clearances as required by NEPA 70 and shall be insulated from its support. A minimum of 50 mm (2 inches), using non conductive standoffs, separation from the wall to allow access to the rear of the bus bar and the mounting height shall be adjusted to accommodate overhead and under floor cable routing.
Label near point of connection at panel board and each TMGB and TGB in accordance with TrA J-STD-607-A; "If this connector or cable is loose or must be removed, please call the building telecommunications manager." "J" hooks may also be used for distribution of wiring. In existing buildings, plenum jacketed cables may be used, where allowed by national building codes, without the noted conduits, if properly supported.
5.4. MANHOLESIHANDHOLDS
5.4.1. All manholes shall be designed and constructed to meet the requirements ofT.O. 31-W-3- 10-22, and provide a clear floor space of 8'x 10' measured inside the manhole. An alternate size of 6'x 8' may be used when no primary backbone cable passes through the manhole (lateral or dead end service only). All manholes shall provide a clearance height of not less than 7 feet.
Mandatory items include a grounding bus bar and rod and related conductors and wiring, a ladder or steps, cable rack supports (galvanized), a sump (French drain), pull in irons, frame and a manhole cover cast with the word "COMMUNICA TrONS" exposed to the surface. Manhole covers will be a minimum of 36" in diameter. The manhole ring/collar shall be labeled with the MH#. CONTACT 75 ABW/SCOIVC for proper MH designation. Conduits shall enter the manholes 4 to 5 feet from floor on the end and be perpendicular to the wall in approximate location as shown on attached sketch (Figure 1).
5.4.2. A manhole with a minimum of 2 four inch conduit/duct bank lateral system with tracer and pull rope will be used for required service and distribution cables, plus 100 percent spare ducts (not less than 1 spare) for expansion and maintenance in all primary duct banks.
5.4.3. Manholes shall be installed for all connections to the existing cable plant as required to maintain a maximum manhole spacing of 500 feet, center to center. Additional manholes may be required 'to provide adequate control of connection and distribution of the cable plant. See Figure 1 for specific manhole construction criteria.
5.4.4. Handholds, when needed, will have a nominal inner dimension of 4' x 4' x 4' and have a grounding rod, cable rack supports, sump drain and pulling irons installed.
FOR OFFICIAL USE ONLY 8
6.0 TELEPHONE ENTRANCE CABLE
6.1. The contractor will provide underground exterior service gel filled cable, lAW Rural Electrical Association (REA) standard PE-39 or PE-89, from main communications Building Entrance Terminal (BET) to the nearest manhole tie in point or splice case, which can provide sufficient vacant pairs to accommodate each facility with required circuits, plus 100 percent spare pairs, as determined by the CSO or designated authority.
6.2. From the nearest manhole, stub up 2 continuous, 4" lateral conduits 6" above the finished floor level to a location in the CER, and adjacent to the telephone punch down board.
7.0 COMMUNICATION ROOMS
7.1. COMMUNICATION EQUIPMENT ROOM (CER)
7.1.1. A CER will be provided to house all necessary communications equipment needed to terminate the building's interior wiring with the exterior base cable system. The quantity and size of the building CER shall comply with the standards and guidelines set forth in ETL-02-12, paragraph 8.3.3.3. Adequate installation and maintenance space (see Figure 3), shall be included to support this equipment and any necessary cable entry requirements. If equipment racks/cabinets will be installed, they must be seismically braced, and have a minimum of 3 feet of clearance along all sides to facilitate equipment installation and maintenance. Cabinetslracks that are placed side by side must maintain the clearance as outlined above, around the row of cabinets/racks. Type 630B-8 wall jacks will be provided for wall mounted telephones in the CER, electrical/mechanical rooms and communications closets and mounted 60" above the finished floor. Ceilings will be either opened air or installed with a hard-lid ceiling. Ifhard-lid ceiling is installed, a minimum of 12" must be maintained between the top of the cable tray or ladder rack and the lowest point of the ceiling. All incoming cable trays shall be installed below the hard-lid ceiling.
NOTE: Special attention will be given to the space allocation required for placement of classified systems lAW AFSSI 7010 and AFSSM 7011 to ensure security countermeasures are met.
7.1.2. Backboards: All required BET or block terminations shall be mounted on an 8' x 4' x %" AC plywood backboard. The backboard will be installed vertically, 9 inches above the finished floor, and use 4 inch standouts between the wall and the backboard with smooth side out in the TRandCER.
7.1.3. No other equipment, such as mechanical and plumbing equipment and electrical panels, will be placed in the CER unless pre-approved by the 75 ABW/SC designated approving authority. Exception: electrical panels may be installed in the CER if they directly affect the power outlets in the room and no others. The CER will be free and clear of all obstructions to a height of 8'0" to provide adequate ventilation and cooling. General purpose storage is prohibited in the CER and Telecommunications Rooms (TR).
FOR OFFICIAL USE ONLY 9
7.1.4. Category 5E Data wiring (see Atch 1 and Figure 4) will be terminated in a 11 0 style, 48 port, 19 inch, rack mounted, category 5E patch panel, located in the CER and situated in a centralized location within the building, unless the cable distance exceeds 300 ft. (90M) from the CER to the desktop/wall jacks. If the cable distance exceeds 300ft (90M), the LAN cable will terminate in a TR patch panel and provisions will be made to interconnect each TR to the primary CER via 4" steel conduit, cable tray or inner-duct.
7.1.5. Outside Plant cables feeding from the nearest manhole will not have a maintenance coil on the backboard in the Communication Equipment Room (CER). These cables will exit the conduit and run directly to the Building Entrance Terminal (BET) or the Fiber Termination Tray.
7.2. TELECOMMUNICATION ROOMS (TR)
7.2.1. TR's will be provided with space as required for CER rooms (See Figure 2) and will be located so that the distance, measured along the routing path of the cable, will not exceed 300' (90M), including vertical distances to wall telecommunications/data outlets. This will maintain the integrity of the digital data signal as stipulated by Category 5E wiring requirements. Where multiple TR rooms are required, attention must be given to their strategic placement to support interconnection via 4" conduits or 6"x 2" cable trays between each room as well as to the primary CER, where the cable head/fiber connections are to be located. If it is necessary to interconnect more than one remote CER or TR to the primary CER, a minimum of 6 strands of single mode fiber optical cable will be used. A smooth walled 1" plenum inner-duct will be provided inside a 4" conduit or conduit raceway, with pull cord, as a direct path between each TR and the primary CER. For telephone interconnection, a 24 A WG or better copper wire cable between the TR and the CER (of adequate quantity to provide 125% connectivity for all voice circuits located within the CER or TR) to accommodate data grade services (fax and modems) and phone connections.
7.2.2. All doors for TR and CER must be installed so the door will open out, must be solid core, and directly accessible.
8.0. SECURITY
8.1. Secured interior or exterior access to the CERlTR will be provided to allow 24-hour access.
Locking door knobs shall be utilized with ASSA key to match the 75 CE Master Key System.
Only personnel with authorization from the CSO may possess CERlTR keys.
8.2. Classified requirements may vary and shall be taken on a case-by-case basis. Customers must identify classified message traffic or telephone requirements, and coordinate all requirements with the 75 ABW/SCXPP Plans & Program Branch and 75 ABW/ SCOOI Information Assurance Branch to ensure proper compliance measures are attained.
8.3. All CERITR's will be as CER and or TR (TR1, TR2, etc).
9.0 OPERATIONAL ENVIRONMENT
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9.1. Temperature/Humidity. A temperature controlled environment is required lAW ETL 02-12, Para. 8.3 .3.2.3 in the CER and TR areas. Provide heating, cooling, and fresh air appropriate for the equipment housed. Maintain a positive pressure inside the room to reduce the entry of dust.
Normal operating ranges should be as locally established for employee comfort (typically between 68 to 78°F [20 to 26°C]). There are no special relative humidity requirements. However, in order to minimize static discharge and condensation it is recommended that the relative humidity be between 20 to 60%.
9.2. Lighting: Switched lighting will be provided in all CER areas, adequate to promote work with small fiber items and miniature lettering devices. Maintain a minimum of 12" clearance between fluorescent (ballasted) light fixtures and all cable runs and cable devices. Provide a minimum of 538 lux (50 foot-candles) of illumination measured 1 meter (39 inches) above the finished floor.
lO.O.POWER
10.1. A dedicated four-gang 115 V, 60Hz power outlets on a separate 20 Amp circuit with isolated ground, shall be installed on each wall for use to power telecommunications devices.
An additional duplex convenience outlet will be located away from the telecommunications outlets to provide power to operate service and maintenance equipment.
10.2. CER's will require, 208V, 60Hz, 1ph, 20A service with isolated ground for each rack or cabinet that will house the uninterruptible power supplies (UPS). Outlets will be a NEMA L6- 20R.
10.3. Grounding of all devices, cable sheaths, protectors and other equipment shall be in accordance with T.O. 31-W-3-10-22, ANSIIEIA/TIA 607, MIL -STD-188-124B and the National Electrical Code.
11.0. BUILDING ENTRANCE TERMINALS (BET)
11.1. Terminations and cables shall be numbered according to room and jack number. Pairing and color":coding shall be in accordance with EIA 568B standards.
11.2. All BET's shall be installed using Emerson gas tube protected, 710/66B terminals or equivalent, in accordance with manufacturer's instructions and the NEC. (See Atch 1)
11.3. All Building Entrance Terminals will be provided with 5-pin element plug in gas tube protective modules and will provide equal protection to REA-PE-80 specifications.
11.4. BET's used for the termination of outside twisted pair cables shall have a built in splice chamber with 710 type splice modules. Equipment side (House) of the BET shall use 25 pair Telco type connections to station equipment.
11.5. House cables will be installed between BET and 48 port patch panels.
FOR OFFICIAL USE ONLY II
12.0. WIRING
12.1. All data lines in administrative areas will be terminated on CAT 5E patch panels. See Figure 4.
12.2. Distribution frames and interior conduits/cable trays shall be of sufficient size to allow for 100% growth and shall not exceed the 40% fill rule stipulated in the National Electrical Code
(NFPA 70).
12.3. Installation of all interior pre-wiring to include the CER and TR closets shall be performed to ensure termination as required back to the CER.
12.4. Each cable shall be marked with an adhesive type strip marker at both ends. Affix a permanent label to the outlet jack cover to clearly identify the outlet with the correspoI).ding termination jack on the patch panel or termination block. Hand written or manual embossing labels are NOT permitted. Automated embossed labels are preferred, such as Brothers P-touch systems utilizing 1I4-inch labels, with 1/8-inch lettering.
12.5. Wiring for administrative telephones, office automation equipment and high speed networking (DATA), will be unshielded twisted pair, category 5E cable, 24 A WG, and compatible with Integrated Services Digital Network (ISDN) and installed by a category 5E certified technician/team. All installations require compliance with the Institute of Electrical and Electronic Engineers (IEEE) standard 802.3 for base band systems. DATA cable jacket shall be blue in color. Single mode fiber optic cable shall be provided between all TR and CER locations to support high speed mUltiplexing of all signals and be terminated in a properly sized Fiber Optic Distribution Panel (FODP) that allows room for 100% growth.
12.6. 75 ABW/SC personnel shall cross connect the interior blocks or patch panels. A minimum of five working days will be needed to complete the cross connects, install equipment and verify the system prior to occupancy by the tenant.
12.7. Areas with equipment items which can be easily moved, such as pre-wired workstations, systems furniture and modular walls/offices, shall be pre-wired during facility construction and shall provide sufficient flexibility and connectivity to enable rearrangement without modifications to the permanent TR or CER wiring system in the facility. The installer shall provide adequate quantities of suitable connectors and extension cables. Permanent splices/connections shall not be made.
13.0. TELECOMMUNICATIONS OUTLETS
13.1. In general office areas, use a modular telecommunications outlet, with three (3) 8-pin/8 position CAT 5E or better modular USOC RJ-45 Hubbell type jacks mounted in a single face plate (one for voice/two for data use) in a factory made assembly. Voice cable will be placed in
FOR OFFICIAL USE ONLY 12
jack 3, data cables will be installed on jacks 1 & 2. All wall outlet components shall have a removable outer bezel with molded labeling to identify the outlet usage. (See Figure 3 and Atch 1). Communication jacks installed (in the floor for conference rooms) will have dust covers installed on the individual jacks and coaxial cable ends. Enclosure covers with seals will be used to prevent moisture and debris from entering the enclosure.
13.2. Where systems furniture and communications poles need to be installed, modular outlet jacks shall be installed in each work area and identified by the tenant unit for administrative use requiring automation equipment or telephone equipment, in such a way as to maintain the UL listing of the modular furniture . Each of the three outlet jacks shall be numbered by room and jack number and wired with four pairs (eight conductors) according to the wiring diagram located on the side of the jack. (See Figure 3 and Atch 1). lacks will be wired and placed at desk top level of systems furniture to facilitate ease of installation, maintenance and repair; and to allow proper accessibility for connection to communication devices.
13.3. Telecommunication wall outlets shall be mounted 18" above the finished floor or same as power outlets to the centerline of the cover plate, unless noted otherwise.
14.0 PERIODIC, FINAL INSPECTIONS, TESTING AND DOCUMENTATION
14.1. All telecommunications cable shall be certified and tested in accordance with EIA/TIA standards with written test results provided to 75 ABW/SC. Where deficiencies of any type are discovered, the responsible installing organization shall make all necessary repairs, including replacement, at no additional cost to the government. All test results will be provided on electronic media (cd disc) in .PDF format.
14.2. Revised drawings, which reflect the actual "AS BUILT" conditions, shall be maintained by the installing activity throughout the construction phases. A copy of the "AS BUILT" drawings and cable certification records will be given to and reviewed by the designated 75 ABW/SCXP Project Manager upon project completion, but prior to project acceptance.
14.3. For conduit and direct bury installations, the contractor will also provide GPS plotted locations of any new manholes, handholds, posts, stubs, comm. closets, connecting manholes and any other information that is beneficial to aid in updating and maintaining the communication GEO-Base component. A GPS measurement must be taken every 100 feet or at every directional change.
14.4. The contractor shall provide geospatial data deliverables. All geospatial deliverables shall be submitted no later than 30 days after project completion date. All geospatial data shall conform to the following requirements.
14.5. All maps and associated data shall comply with the latest version of Spatial Data Standards for Facilities, Infrastructure, and Environment (SDSFIE) available from the CADD/GIS Technology Center at http: //tsc.wes.army.mil/products/TSSDS-TSFMS/tssds/html/ .This data shall be organized using SDSFIE 2.20 specifications or the latest available specification for file, class and attribute nomenclature. Information shall be collected at no less than 1: 1200 scale for
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base cantonment areas and 1 :4800 for large undeveloped base areas. This data shall meet or exceed National Map Accuracy Standards at those scales and metadata using Federal Geographic Data Committee (FGDC) Content Standards for Digital Geospatial Metadata (CSDGM) for organization.
14.6. Geospatial data shall be delivered in a geo-referenced GIS (Geographic Information System) format (feature-based file structures including one-to-one cardinality between spatial records and attribute records) including attribute data and as specifically outlined in the specific task order contract. All geospatial data shall be delivered in the North American Datum 1983 (NAD83) projection, State Plane Coordinate System, using metric coordinate units.
14.7. Survey Grade Global Position Systems (GPS) or comparable traditional survey methods shall be used to collect geospatial data (e.g., northing, easting, and elevation above or below the Earth's surface) for all contract activities where geospatial data is involved. This data shall be obtained at the time of construction and prior to burial in the case of underground utilities. This data shall be delivered to the installation in an open Relational Database Management System (RDBMS) with the associated attribute data.
14.8. Electronic As-built Drawings. Drawings will be delivered in electronic format, via compact disc. Electronic drawings will be compatible with ArcGIS version 9.3.X or higher and delivered to 75 ABW/SCXP project manager within 30 days of completion of the installation.
Electronic drawings will be obtained via GPS coordinates for MH location and conduit runs.
Interior photos of installed manholes will also be provided in electronic format to include racking diagrams.
14.9. Paper Drawings. Not required when drawings are submitted in electronic .pdf format.
14.10. Test Results. Test results will be provided to 75 ABW/SCXP project manager no later than 10 days after completion of the installation. Test results will be submitted in electronic .pdf format. Acceptance of the installation will be dependent upon all installed cable testing at levels determined acceptable by the government.
14.11. All test results, documentation and records produced by the contractor under this PWS shall become the property of the u.S. Government, which shall have unlimited rights to all materials and determine the scope of publication and distribution.
14.4. In-progress inspections by 75 ABW/SC personnel are required during the construction phase. For example, trenches will not be covered prior to being inspected. This will ease verification of conduit size, quantity, cable type, earth cover compliance and the accuracy of "red line" cable records or contract drawings. The installation activity/contractor is solely responsible for requesting an inspection.
14.5. Installed cable (fiber and copper) shall be tested by the installer. Fiber and copper cable sample fllte will be at the discretion of the 75 ABW/SC cable maintenance personnel. Baseline test records shall be provided for signed acceptance to the HAFB CSO in printed and digital format. All category 5E cable shall be tested and certified to 155 Mbps (100 MHz). UL
FOR OFFICIAL USE ONLY 14
standards for new cable, including fiber optic testing of single-mode and multi-mode cable shall be followed.
Attachment I - Materials List Figure I - Manhole Details Figure 2 - CER Room Layout Figure 3 - Comm Jack Layout & Labeling
Approved:
BARTON C. CLEMENTS, GS-15, DAF
Director, Communications & Information
Figure 4 - Wiring Configuration for data cables Figure 5 - Standard Comm Room Wiring Diagram
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p
Interior Wiring:
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ATTACHMENT 1
MATERIALS LIST
I . Jacks. Manufacturer: Hubbell, 3 port jack with face plate.
2. Wire. Manufacturer: Beldin (or equivalent), CAT 5E, 3 BLUE cables for data at each jack location.
3. Patch Panels. Manufacturer: Hubbell, 48 port, PIN: P5E48BI9E or equivalent or Panduit, 48 Port, (PIN: ITPAN-D485E88 I IOU or equivalent).
4. Jack Enclosures. Manufacturer: Wire Mold, PIN: 2348 or equivalent.
5. Wire Management. Manufacturer: Chatsworth GVCS-Double Sided Wire Management.
Exterior Wiring:
1. Manufacturer: Pre-formed (or equivalent), stainless steel splice case.
2. Manufacturer: Coming (or equivalent), fiber enclosure for inside of building.
3. Manufacturer: Emerson (or equivalent), gas tube protected, 710/66B.
4. Handhole size: minimum 4' X 4' X 4'.
5. Conduit buried a minimum of24". Slurry or steel pipe must be used in areas of vehicle traffic.
6. Open or unused conduits must have pull string installed and plugged.
7. Connectors shall be 710 modular.
8. Pedestal terminal blocks: DT2-PTP; protected with factory-sealed circuit protectors and 3 element gas tubes.
FOR OFFICIAL USE ONLY 16
MANHOLE
BUlL DING LATERALS
HEAVY DUTY MANHOLE RING AND COVE R rOR STREEl LOADINGS - MANLJU,CTURED BY
WESTE.RN IRON WORKS IN SAN ANGELO, TEX AS
MODEL B-30 W/COVE R MARKED: "COMMUNICATIONS"
COVER WILL BE PROVIDED WiTH 2 LIFT HANDLES
30" CLE.AR OPENING, AND S[CURITY FAST[N ER SYSTEM
l°"l 8 ' ---'::---='n I--==;-;--~ , . ___ -- PROVIDE 42" 1. 0 MANHQLE RISERS
1==1 II=- /; FiXED TOP -=1/ 1- ~ __ ------- AS REOUIRED FOR ADDIIIONAL HEIGHTH
RUNG ~--
DUAl 4"DIA . . -:. .. . ..1\ :. ' .- ... ... . : .. ' ,, ' . . :_...., i
~ONDlJITS (MIN)! : :. -'~:-:-. - , ;, r /\~"-.. REMOV~B~E ' ~~D~~R: "' ..
~ . 2 DI.A" ACCr..SS GALVANIZED
~- '. CONDUIT WINDOWS (RECESSED N N RE INFORCED WALL I
T _ SECIION) , AS RE.OUI RI: D 10 ALL f PERSONN eL TO EASilY B G. - - - t~PLACE DUCT - COMM SOUADRON TO SPECI FY SIZE A~JO LOCATION ~
JOIN SEAL < L~ NOTE. PULLI NG IN IRoN-0 -:.: ===-==-C;)"--'-"'" TER MINAT e PVC CON 11 1 PE R WALL OPPOSITf
I C---':J IN BELL ENDS SET DUCT3ANK ,---" 0"
- FLUSH W/INSICE SUR ~:E (lYlBOLl TYPC) I /-
0 1- MH CROoJT INTO P 'CE LOCATE D APPX. I (BY SEDCO OR CARL ON~ 6 12 iNCHES I ~
BELOW OPPOSiTE '. c. "
FLOOR TO SI.OPE SUMP- 12 X12 12 10 '.'
10 SUMP 3/4 " (+- ) W/CAST IRON, RAME AND GRATE '
8 ' 2" 4' -0"-5'-0"
MAX
" . "DUCT8ANK J' 0
______ ' iN I W 14"X1 4" NGlE SET :11 1 - ._---- "" , I' I , "I I
6" F IOO( Fi ll I' '. '1." " -, -- -L-I~_~_-=_';:'-,- • " """ .' . "." , ,, ",,:." ,,''' : i ," 0'; HO~e GROUND 6" Select - r
I
I 3b . DIAMETER X ROD PER N;:-P,~ 70 I I ---- 36' DEEP GRAvel I ..---- FRENCH DRAIN
1- 8' X 10' CLEAR ii\JSIDE DIM NOTE. WALLS AND FLOOR 6" THiCK
REIN FORCED CONCRETE
s: » z ' Z-nI ~G'lO oCM:;
)<' ~ 0 I!:. .... m It> ~ r
VI
1~ [ I N FORCiNG TO SAllSFY H- 20 HIGHWAY lOADINGS TOP SECTiON ACROSS 8 FOOT WIDTH - #6 @ 6" EXTENDING
INTO SIDEWALLS, OTHE'RWAY #4 @ 12" O.C
vEI~T ICALLY- #5 @ 12" O.C
2 CABl£ RACKS C~O~O[D PER
LONG WALL , JOSLYN 5 125
INSIDE DIAMETER OF CONDUIT WI LL BE MINIMUM or 4 INCHES
HORIZON1ALLY- #4 @1 2" O.C
80TTOM SCCnON #4 @ 12 " O.C.E.W. TH ROUGHOUT
SuMP SHAL L BE MONOLITHIC
~UCT BANK TOP WILL BE A MIN OF 36 INCHES BELOW FINI SHED GRADE
COMMUNICATIONS EQUIPMENT ROOM CRITERIA (CER)
1 Provide a duplex 1 10V service outlet on the unuseo wo ll .
2. Prov ide fou r p le. 110V out lets wi th iso lated (Computer) groun d on all we ll s adjace nt to ins ta lled equipment. .
.3 . Room sholl be provide d witn environmentally controlled temperatures and lighting as re quired for office spo.c.e.
.4. , Room occess sholl be lockable wi.lh occe ss lim ited to the building custodian and comm perscn"el 5 . Wi r ing Sholl De iterminateo to EIA 5688 Slandords. All insta llations sholl comply wiV1 EIA/TiA 568, 569, 570
6. Grounding and bonoing shall comply with EIA 607/NrPA 70 tested to 10 Ohms.
7 Documentation of installa t ions sholl comply wi t h EIA 606 8 . Provide 1 EA-4 'x8'x3/4" ACX Plywood sheeting, I;re retardan t t rea ted ,long d imer)sion vertica l, a t taChed to the woll for each 100 connections.
9. Provide one EIA/TiA stondo rd 19" LAN/MAN Rock wi th 12/24 threaded fasteners se t at 5/8,5/8,1/2 pitch, fl oor rnour)ted diretly adjacent to existing rock locations t-or each 100 nodes.
10. Extend 2 Ea - 4" Diameter PVC/NMT entra nce conau its 6" a bov e the f inis"hed floor ir'l the corner oCljacent to the p lywooo pone Is, ana e)(tend each conduit 'to the n e arest cOrT"munications manhole system. Install new manholes at 4 75' maximum spacing to connect lo the exis ting comrnunicotio("lS systerns.
11 Floor shall be ha rd surface d and be .moistu,..e resistant.
12 Broce all racKs from the top to t he n earest wall, wit" 12" "ide .2" IO'dder type coble r unway, bra ced to adjacent we 'I
2 eo - 4" PVC/NMI Conduit • "
I " R - 0 -----]-----
I " 4'-0" -,-- 4' - 0 '-'-
4 ' x8'AC Plywood (Mounted Vertical) Full height ,Fire Retard ant
Coated ( Flame spread < 15) __________ No ve rtical conduits in this area t t
7' - 0"
36" Min imum Access Space j' -0'".6' -8" Door
Required , Dedicated workspace (moy over lap other worKspace, 12" Ladder troy /Rac k brace
VI
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0 m 0 N r-
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C rl'
24" SO. AVERAGE' attaChed to top oi T - 0" raCk ond W JII I IIV ,~( , - "
I
24"(MIN)
Access Space rutu""€, LAN ,..o.ck (HIdden)
--- R~qu i red dedicoted access space
L ___ ,--- ~ '>, '>, I' '>, Ij.JJ 'i- '>, '>, 1 '>, 'I ________ MAN/LAN Rocks (Typical)
24 "AVG.
--_ -'-.--'-.. ot-- .. t ..
1'-6' (MIN
6" CLEAR Access Sooce
Label with Comm. Room/Equipment Cabinet Information
SIPRNET
Administrative/Office Area
DATA
Red Jack Red CatS E
NIPRNET
Administrative/Office Area
G Data
Black Jack Blue CatSe
° 3 c :;j
. o· "T1 rru ru~G') croe CD :;j s·c.... ::::0 (Qrum
7\W r ru
° C
Qo
Figure 4
Voice Frequency (VF) patch panels shall consist of RJ-45 8-pin modular jacks (front of patch panel), with rear-installation type 110 insulation displacement terminations. Install 24AWG Tie Cable from the back of VF patch panels to the Building Entrance Terminal (BET) on the telecommunications room plywood backboard. One pair of the Tie Cable shall be terminated to each RJ-45 8-pin modular jack on the VF patch panel. Patch panel termination shall follow the following color-to- jack scheme:
Jack# First wire Second wire
1 Blue
2 Orange
3 White Green
4 Brown
5 Slate
6 Blue
7 Orange
8 Red Green
9 Brown
10 Slate 11 Blue 12 Orange
13 Black Green
14 Brown 15 Slate 16 Blue 17 Orange
18 Yellow Green 19 Brown
20 Slate 21 Blue
Violet Orange
23 Green 24 Brown
The 25th pair, Violet-Slate, shall be coiled up behind the patch panel and not terminated, or cut/shortened. Provide patch panel density to terminate number of telephone and other analog services identified in drawings plus 15 percent for expansion. All wiring and components shall be
TIA/EIA-568-B compliant, wired to T568B wiring configuration. Label patch panels lAW TIA/EIA-606
CAT 5E, Terminated to T568B with RJ-45 jacks on each end
CAT 5E RJ-45
Three Receptables
CAT 5E Jumper (installed by others)
(Telephones and computers installed by others)
CAT 5E
Common Patch
Panel(s) (terminates all premise wiring)
CAT 5E Voice Patch Panel(s)
Provide a 120V 20A duplex receptacle
Wall
UNCLASS - Standard Comm Room Wiring Diagram
Figure 5
Tie Cable/ Distribution
Copper Cable
Bonded to building grounding system
Protected Terminal
Block
Plywood backboard , Single Mode Outside Plant Fiber Cable
Provide innerduct with pull strings in (W
4 inch Entrance Conduits
File details come from the government source that posted it. Updated .