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JBMDL Base Telecommunications Systems Services Federal contract opportunity
Solicitation number
FA448421R0004
Issued by
Department of the Air Force Air Mobility Command

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Q 38EIG/EITS

EPS-97-38EITS-004

4017 Hilltop Road, Suite 203 Tinker AFB, OK 73145-2713 DATE \@ "dd MMM yyyy" 004 Aug 2008 Version 4.6

26 June 2020

EQUIPMENT AND INSTALLATION PERFORMANCE

SPECIFICATION

FOR

OPERATIONS AND MAINTENANCE SERVICES

OF THEBASE TELECOMMUNICATIONS SYSTEM

AT

JOINT BASE MCGUIRE-DIX-LAKEHURST (JB MDL)

Table of Contents

1.0 PURPOSE……………………………………………………………………………………..2

2.0 APPLICABLE DOCUMENTS……………………………………………………………….2

2.1 Government Documents2
2.2 Federal Specifications and Standards2
2.3 National Standards3
2.4 Other Government Documents4
2.5 Other Documents6

3.0 REQUIREMENTS…………………………………………………………………………….7

3.1 Customer Premise Equipment (CPE)7
3.2 Inside Plant (ISP)16
3.3 Building Wire and Cable20
3.4 OUTSIDE PLANT (OSP) Cable and Distribution24
3.5 Fiber Optic Terminal Equipment26
3.6 Distribution Frame/Equipment Racks27
3.7 Closures28
3.8 Splicing.29
3.9 Pedestals and Housings.30
3.10 Construction31
3.11 Bonding/Grounding.34
3.12 Cable Marking/Staking35
3.13 Testing35

4.0 GLOSSARY…………………………………………………………………………………38

5.0 ACRONYMS………………………………………………………………………………...39

1.0 PURPOSE

This Equipment and Installation Performance Specification (EIPS) identifies procedures to support operation and maintenance (O&M) of the Voice Transport System (BTS).

2.0 APPLICABLE DOCUMENTS

2.1 Government Documents

DOCUMENT

TITLE

DODI 5000.2, Part 6

System Safety, Health Hazards, and Environmental Impact

DODI 8100.3

Department of Defense (DOD) Voice Networks

DODI 8100.04

DoD Unified Capabilities

DOD Telecommunications and DSN STIG V2R2

DISA Field Security Operations Developed by DISA for the DOD

FGDC-STD-001-1998

Federal Geographic Data Committee (FGDC) Content Standard for Digital Geospatial Metadata http://www.fgdc.gov/standards

FGDC-STD-007.3-1998

Federal Geographic Data Committee (FGDC) Geospatial Positioning Accuracy Standards. Part 3: National Standard for Spatial Data Accuracy http://www.fgdc.gov/standards

FGDC-STD-007.4-2002

Federal Geographic Data Committee (FGDC) Geospatial Positioning Accuracy Standards. PART 4: Standards for Architecture, Engineering, Construction (A/E/C) and Facility Management http://www.fgdc.gov/standards

DoDI 4630.8

Procedures for Interoperability and Supportability of Information Technology (IT) and National Security Systems (NSS) 30 JUN 2004

DoDI 8500.01

Cybersecurity 14 MAR 2014

DoDI 8500.2

Information Assurance (IA) Implementation

DoDI 8510.01

DoD Information Assurance Certification and Accreditation Process (DIACAP)

DoD 8570.01-M

Information Assurance Workforce Improvement Program

(DoDI) 2000.16

DoD Antiterrorism (AT) Standards, 02 OCT 2006, paragraph E3.18, DoD Standard 18

Defense Federal Acquisition Regulation Supplement (DFARS)

(Reference (r)) reflects current DoD AT security requirements for defense contractors

Joint Publication 3-07.2

Antiterrorism

Copies of the above documents may be obtained from http://www.dtic.mil/.

Military Standard (MIL-STD)-188-124 BGrounding, Bonding, and Shielding for
1 Feb 1992Common/Long Haul/Tactical Systems
Including Ground Based Communications-
Electronics Facilities and Equipment

(Copies of MIL-STD may be obtained from the Document Automation & Production Service, Building 4/D, 700 Robbins Avenue, Philadelphia PA 19111, Ph. 1-877-327-7226; or from http://assist.daps.dla.mil/quicksearch/ )

2.2 Federal Specifications and Standards

The following safety references (Code of Federal Regulations (CFR)) are not intended to exclude any other references, but are intended to identify those safety references, which are most common to the efforts required by the PWS. The Contractor is required to abide by any and all applicable Federal, State, and local codes and safety requirements.

CFR Title 47Telecommunications Federal Communications
Part 68Commission (FCC) Connection of Terminal
Equipment to the Telephone Network

7 CFR 1755.370 Rural Utility Service (RUS) Specification for Seven Wire Galvanized Steel Strand

EPA CFR 40 Hazardous Waste Management System Parts 260, 261, 262, 263, 264, 265

(Copies of the above documents may be obtained from the GPO Regional Printing Procurement Office, 928 Jaymore Rd, Suite A-190, Southampton, PA 18966-3820, Phone (215) 364-6465;

FAX (215) 364-6479 or http://www.gpoaccess.gov/cfr/retrieve.html.)

OSHA CFR 29 Occupational Safety and Health Standards Part 1910

OSHA CFR 29 Telecommunications Part 1910.268

OSHA CFR 29 Asbestos Part 1910.1101

OSHA CFR 29 Excavation Part 1926.650, 651, and 652

OSHA CFR 29Hazardous Waste Operation and Emergency
Part 1910.120Response

OSHA CFR 29 Permit-required Confined Spaces 1910.146

OSHA CFR 29The Control of Hazardous Energy
Part 1910.147(Lockout/Tagout)

OSHA CFR 29 Hazard Communications Part 1910.1200

(Occupational Safety and Health Administration (OSHA) documents may be obtained at www.osha.gov .)

2.3 National Standards

NFPA 70-08 National Electrical Code (NEC)

(Copies of the above document may be obtained from the National Fire Protection Association (NFPA), 11 Tracy Drive, Avon, MA 02322, Phone 1-800-344-3555, Fax 1-800-593-6372.)

Telecommunications Industry AssociationInterface between Data Terminating
(TIA)/Electronic Industry AllianceEquipment and Employing Serial Binary
(EIA)-232-EData Interchange

Jan 91

(Copies of the above document may be obtained from the Global Engineering Document, 15 Inverness Way East, Englewood, CO 80112, Phone 1-800-854-7179 or at http://global.ihs.com/index.cfm.)

ANSI-ICEA-83-596 Fiber Optic Premises Distribution Cable

(Copies of the ICEA standard may be obtained Global Engineering Documents, 15 Inverness Way East, Englewood CO 80112; Tel: (800) 854-7179; FAX: (303) 397-2740; or Email:

global@ihs.com Website: http://global.ihs.com

ANSI C2-1997 National Electrical Safety Code (NESC)

ANSI/TIA/EIA -470-BTelephone Instruments with Loop
Nov 1997Signaling
ANSI/TIA/EIA-568-B.1/B.2Commercial Building Telecommunications
May 2001Cabling Standard—Part 1: General Requirements

& Part 2: Balanced Twisted Pair Cabling Components

ANSI/TIA/EIA-568-B.3 Optical Fiber Cabling Components Standard Apr 2000

ANSI/TIA/EIA-569-ACommercial Building Standard for Pathway
Feb 1998and Spaces

(Copies of the above ANSI/TIA/EIA documents may be obtained from the American National Standards Institute, 25 W 43rd Street, 4th Floor, New York City, NY 10036, Phone (212) 642-4900, Fax (212) 398-0023.)

National Electronic Manufacturers’ Electrical Polyvinyl Chloride Conduit Association (NEMA) TC-2

(Copies of the NEMA documents may be obtained from National Electrical Manufacturers' Association, 1300 N. 17th Street, Ste 1847, Rosslyn, VA 22209, Phone (703) 841-3200, Fax

(703) 841-3300 or at www.nema.org NFPA 70 – 2008 National Electrical Code (NEC)

(Copies of the above documents may be obtained from the NFPA, 11 Tracy Drive, Avon, MA 02322, Phone 1-800-344-3555, Fax 1-800-593-6372.)

2.4 Other Government Documents

REA TE&CM Section 451.2 Shield Continuity Apr 1984

REA TE & CM Section 823Electrical Protection by Use of
Aug 1980Gas Tube Arresters

REA TE & CM, Sect 825 Situations Requiring Special Protection Issue No. 3, Sep 1973

REA Specification PE-33 Shield Bonding Connectors Mar 1985

REA Specification PE-52 Telephone Cable Splicing Connectors Bulletin 345-54 Aug 1972

REA Specification PE-74 REA Specification for Filled Splice Closures Bulletin 345-72 Oct 1985

REA Specification PE-80REA Specification for Gas Tube Surge
Bulletin 345-83Arresters

Jul 1979/Pen & Ink Revision Oct 1982

RUS 1751F-630 Design of Aerial Plant Jan 1996

RUS 1751F-635 Aerial Plant Construction Jun 1996

RUS 1751F-640Design of Buried Plant-Physical
Mar 1995Considerations

RUS 1751F-641 Construction of Buried Plant Jun 1995

RUS 1751F-642 Construction Route Planning of Buried Plant Jun 1995

RUS 1751F-643 Underground Plant Design Aug 2002

RUS 1751F-644 Underground Plant Construction Aug 2002

RUS 1751F-650 Aerial Plant Guying and Anchoring Jul 1996

RUS 1751F-805 Electrical Protection at Customer Locations Undated

RUS 1751F-815 Electrical Protection of Outside Plant Undated

RUS 1753F-150Specifications and Drawings for
Sep 2001Construction of Direct Buried Plant
RUS 1753F-151Specifications and Drawings for
Sep 2001Construction of Underground Plant
RUS 1753F-152Specifications and Drawings for
Sep 2001Construction of Aerial Plant
RUS 1753F-153Specifications and Drawings for Service
Sep 2001Installation at Customer Access Locations

RUS 1753F-205 (PE-39) REA Specification for Filled Telephone Cable Jun 1993

RUS 1753F-207 (PE-87) REA Specification for Terminating Cables Jul 1994

RUS 1753F-208 (PE-89)REA Specification for Filled Telephone
Jun 1993Cables With Expanded Insulation
RUS 1753F-302 (PE-91)RUS Specification for Outside Plant
Nov 1994Housings and Serving Area Interface Systems
RUS 1753F-401 (PC-2)RUS Standard for Splicing Copper and
Feb 1995Fiber Optic Cables

RUS 1753F-601 (PE-90) REA Specification for Filled Fiber Optic Cables Aug 1994

REA Standard (PC-5A)Specifications and Drawings for Service
RUS 1753F-153Installation at Customer Access Locations

Sep 2001

(Copies of the REA and RUS documents may be obtained from the Telephone Operations and Standard Division, Rural Electrification Administration, U.S. Department of Agriculture, Washington D.C., 20250, Phone (202) 720-8674.)

2.5 Other Documents

Bell CommunicationsIntra-Building Fiber Optic Cable
May 1994Research Technical Reference GR409

(Copies of Bell Communications Research Technical Reference may be obtained from Bell Communications Research Documentation Coordinates, 8 Corporate Place, Room 3A184, Piscataway NJ 08854, Phone 1-800-521-2673, Fax (908) 336-2559.)

AFI 63-124 Performance-Based Services Acquisition (PBSA) 1 Aug 2005

AFI 21-404 Developing and Maintaining Communications 30 Jan 2007 and Information Systems Installation Records (CSIRs)

AFI 31-501 Personnel Security Program Management 27 Jan 2007

AFI 33-104 Base-Level Planning and Implementation 10 May 2001

AFMAN 33-145 Communications and Information 6 Sept 2012

AFI 32-7086 Hazardous Material Management

T.O. 00-20-2-WA-1 MAINTENANCE DATA DOCUMENTATION

T.O. 00-20-14-WA-1 AIR FORCE METROLOGY AND CALIBRATION PROGRAM

T.O. 00-25-234-WA-1 GENERAL SHOP PRACTICE REQUIREMENTS FOR THE REPAIR MAINT AND TEST OF ELECTRICAL EQUIP

T.O. 00-33A-1001-WA-1 METHODS AND PROCEDURES – GENERAL COMMUNICATIONS ACTIVITIES MANAGEMENT PROCEDURES AND PRACTICE REQUIREMENTS

TO 00-33D-3003-WA-1 Managing the Cyberspace Infrastructure with the Cyberspace Infrastructure Planning System

T.O. 1-1-700-WA-1 CORROSION PREVENTION AND CONTROL, GROUND

UNCATIONS -ELECTRONIC EQUIPMENT (C-E)

T.O. 31-1-75-WA-1 MAINT ENGINEERING STANDARD -- GEN MAINT PRACTICES

T.O. 31-1-141-3-WA-1 BASIC ELECTRONICS TECHNOLOGY AND TESTING PRACTICES BASIC ELECTRONIC CIRCUIT THEORY

T.O. 31-1-141-10-WA-1 BASIC ELECTRONICS TECHNOLOGY AND TESTING PRACTICES MERIT MEASUREMENTS

T.O. 31-1-141-11-WA-1 BASIC ELECTRONICS TECHNOLOGY AND TESTING PRACTICES TRANSMISSION LINE AND WAVEGUIDE PRINCIPLES AND MEASUREMENTS

T.O. 31-10-2-WA-1 AIR FORCE COMMUNICATIONS COMMAND (E-I STANDARD) STANDARD INSTALLATION PRACTICES FANNING AND FORMING CONDUCTORS FOR GROUND C-E EQUIPMENT

T.O. 31-10-3-WA-1 AIR FORCE COMMUNICATIONS COMMAND (E-I STANDARD) -- STANDARD INSTL PRACTICES -- OUTSIDE PLANT INSTL

T.O. 31-10-7-WA-1 AIR FORCE COMMUNICATIONS SERVICE (E-I STANDARDS INSTALLATION PRACTICES, TERMINATING AND SOLDERING ELECTRICAL CONNECTIONS

T.O. 31-10-9-WA-1 TECHNICAL MANUAL AIR FORCE COMMUNICATIONS SERVICE (E-I STANDARD) STANDARD INSTALLATION PRACTICES MARKING SITE LAYOUT

T.O. 31-10-11-WA-1 AIR FORCE COMMUNICATIONS SERVICE (E-1 STANDARD) STANDARD INSTALLATION PRACTICES, CROSS CONNECTIONS AND STRAPPING OF FIXED GROUND C-E COMPONENTS

T.O. 31-10-14-WA-1 AF COMMUNICATIONS COMMAND (E-I STANDARD) – STANDARD INSTL PRACTICES RF CONNECTORS AND CABLES

T.O. 31-10-24-WA-1 INSTALLATION PRACTICES: COMMUNICATIONS SYSTEMS GROUNDING, BONDING, AND SHIELDING

T.O. 31-10-28-WA-1 STANDARD INSTL PRACTICES -- ERECTION OF STEEL TOWERS AF COMMUNICATIONS SVC (E-I STANDARD)

T.O. 31Z-10-37-WA-1 CORROSION PREVENTION AND PROTECTION AFI33-150 Management of Communications Activities AFI33-152 User Responsibilities and Guidance for Information Systems AFI33-332 Privacy Act Program AFI33-360 Publications and Forms Management AFI33-363 Management of Records

AFI91-203 AF Consolidated Occupational Safety Instruction

ANSI-J-STD-607-A, Commercial Building Grounding and Bonding Requirements for Telecommunications

TIA/EIA-TSB-72, Centralized Optical Fiber Cabling Guidelines TIA/EIA-TSB-72, Centralized Optical Fiber Cabling Guidelines TIA/EIA-568-C, Commercial Building Telecommunications Cabling Standard

TIA/EIA-569-1990, Commercial Building Standard for Telecommunications Pathways and Spaces

TIA/EIA-606-A-ERTA, 2007, Administration Standard for the Telecommunications Infrastructure of Commercial Building

Federal Telecommunications Recommendation 1090-1997, Commercial Building Telecommunications Cabling Standard

Copies of AFIs/T.O.s can be obtained at: www.e-publishing.af.mil

FGDC-STD-007.3-1998 Federal Geographic Data Committee (FGDC) Geospatial Positioning Accuracy Standards Part 3: National Standard for Spatial Data Accuracy http://www.fgdc.gov/standards

Copies of the above document may be obtained from www.gpoaccess.gov.

(Remainder of page intentionally left blank)

3.0 REQUIREMENTS

All electronic and information technology (EIT) procured through this EIPS and any resulting contract, must meet the applicable accessibility standards IAW Section 508, unless an agency exception to this requirement exists. 36 CFR 1194, Title 36: Parks, Forests, and Public Property, PART 1194—Electronic and Information Technology Accessibility Standards, Subpart B—Technical Standards, section 1194.23, Telecommunications Products implements Section 508 of the Rehabilitation Act of 1973, as amended. The contractor shall ensure applicable Product Identification Items (PID) proposed and provided to the Government under this contract are compliant with the accessibility standards. Section 508 is viewable at http://www.section508.gov/.

3.1 Customer Premise Equipment (CPE)

Installation of CPE shall be in accordance with (IAW) the commercial installation instructions or technical instructions furnished or provided by the original equipment manufacturer (OEM) for the equipment. All IP phones shall be provisioned as AS-SIP End Instruments (AEIs), be Country of Origin (COO) and Trade Agreement Act (TAA) compliant and be from an authorized Avaya distributor. Refurbished phone instruments will not be accepted. When installation site conditions are unique, the installer shall coordinate with the user to determine the configuration for installation. Telephone instruments and key systems installed in secure areas shall incorporate a line-hold feature which when operated, shall both physically and electrically break the tip and ring from the instrument. No components with microphone characteristics shall be active or have power applied when an instrument is in the on-hook condition. Memory circuits associated with the equipment shall not have power applied and thus shall not function when Automatic Disconnect Devices (ADD) are interfaced to the equipment and in a disconnect mode. Instruments and equipment provided shall be government approved.

3.1.1 Telephone Instruments. All telephone instruments provided for this BTS shall be registered IAW FCC Rules and Regulations, 47 CFR Part 68. Telephone instruments for use in secure areas must be government approved. Approval of other devices may be obtained from the Defense Intelligence Agency, Attn: OS-2, Washington, DC 20331-6111; or the Telephone Security Panel of the National Foreign Security Committee recognized by HQ AFOSI/IVS. The base TEMPEST officer will provide information concerning other devices that have been approved. Instruments shall be fully operational and compatible with the switching equipment to which they are connected. All IP phones shall be provisioned as AS-SIP End Instruments (AEIs), be Country of Origin (COO) and Trade Agreement Act (TAA) compliant and be from an authorized Avaya distributor. Refurbished phone instruments will not be accepted. All TDM Telephone instruments purchased, if not new, shall represent the best possible appearance on the user’s desk (i.e., not scratched, dirty, torn or ripped labels). All telephone instruments shall include the batteries, power supply modules, and patch cables required to support the unit. The color of the handset, handset cord, and base unit, including the dial blank or keypad, shall be standard and uniform throughout. Distinctive colored phones shall be provided for special categories, as identified by the Quality Assurance Personnel (QAP). Telephone keys or buttons shall be relabeled on all changes or relocates. Labels shall be printed, not hand written, permanently affixed and not easily detached or smeared. The label shall indicate information relevant to the device installed. Installation shall include data administration activation of all required features of equipment, mounting and placement of the telephone instrument, all cross-connects, and connecting the line cord and power supply if needed to the wall outlet at the customer premise as well as labeling or relabeling the phone instrument with the correct phone numbers on the phone or lines (if multiple line phone). This does not include programmable or speed-dial type buttons.

3.1.1.1 Basic Telephone. Basic telephone is an analog instrument which shall meet the specifications as stated in ANSI/TIA/EIA 470-B. The telephone shall be a fully modular telephone equipped with a standard modular handset, modular retractile-coiled handset cord, and base unit. The handset shall have a flush mounted modular jack located on the transmitter end, and be accessible without removal of the handset housing. The base unit shall house the 12-button Dual-Tone, Multi-Frequency (DTMF) keypad, switch-hook assembly, ringer, and auxiliary hardware necessary for telephone operation. In addition, the base unit shall be equipped with a ringer number identification label and the base unit shall be equipped with a ringer level control (loud and soft). The base unit shall provide a plastic covered insert for directory number identification label or labels for multi-line units. The base unit shall provide sufficient adhesion to the surface on which it is placed to prevent movement during dialing or normal stretching of the handset cord. The objective of the types of analog telephone instruments listed below is to identify additional capabilities and functions of the analog telephones instruments required by the BTS.

3.1.1.1.1 Wall mounted Telephone Instrument. The wall-mounted instrument shall mount to a standard modular wall plate jack without the need for a telephone line cord. Instruments not designed to mount on a wall plate jack, shall be connected to wall jack with a line cord. The handset shall be securely held on the handset rest to prevent an accidental off-hook condition. Mounting components shall be provided with the telephone stations.

3.1.1.1.2 Telephone with Message Waiting Lamp. This telephone instrument functions with a Private Automatic Branch Exchange (PABX) or key system unit feature that provides voice mail or a message desk function by providing an illuminated indication of a pending message. The message-waiting lamp is located on the face of the telephone instrument.

3.1.1.1.3 Telephone with Data Jack. The jack port supports an RJ-11 connector to interface a laptop personal computer. This jack permits the user to access the jack port in lieu of the telephone instrument.

3.1.1.1.4 Autodial Telephone. This instrument has an integrated electronic autodialer capable of 10 user programmable memory registers with one button for last number redial and the remaining buttons for autodialing. Each memory register shall store a phone number up to 15 digits in length including a pause into the digit string accessing second dial tone circuits. The user shall implement autodialing by pressing no more than two buttons. The instrument shall provide a minimum of 30 minutes memory retention during an AC power failure or removal of the telephone line cord. The basic instrument shall be telephone line DC powered. External DC powering may be employed to support additional functions.

3.1.1.1.5 Telephone with Integrated Speakerphone. This instrument allows full duplex operation. Operation of the instrument in the hands-free mode, at full volume, shall not produce audible feedback. The instrument shall be equipped with a button to select either handset or hands-free operation. Separate hold and mute buttons and speaker level adjustment shall be provided. The basic instrument shall be telephone line DC powered. External DC powering may be employed to support additional functions.

3.1.1.1.6 Basic Telephone Instrument Non-dial. This instrument shall be designed to terminate a single 2-wire voice switched or non-switched line that has a blank faceplate, i.e., no dial pad or rotary dial.

3.1.1.1.7 Elevator Mount. This telephone instrument shall be suitable for mounting in an elevator emergency telephone inset. The Contractor may be required to contact elevator provider to obtain a compatible telephone instrument.

3.1.1.1.8 Outdoor Telephone. This instrument shall be a sealed outdoor weatherproof telephone designed to terminate a single switched or non-switched line. The enclosure shall be externally labeled, and/or provided with a mechanical door lock.

3.1.1.1.9 Hazardous Area/Explosion Proof Telephone. This instrument shall be an explosion-proof phone enclosed in a sealed metal housing containing all electrical components except for the handset and cord. The housing shall provide protection against an internal spark or flame from reaching the surrounding atmosphere. This telephone shall be designed for both indoor and outdoor hazardous areas, and shall operate in hazardous locations Class I (Groups B, C, D), Class II (Groups E, F, G), and Class III for both Divisions I and II as defined in the ANSI C2 NESC, Article 500.

3.1.1.1.10 Two-Line Telephone. This instrument shall be an electronic fully modular telephone. This phone shall be designed to terminate a minimum of two switched or non-switched lines, or any combination thereof. When required for a two-line instrument, a separate distinct audible ringing tone shall be provided for each line. The basic instrument shall be telephone line DC powered. External DC powering may be employed to support additional functions.

3.1.1.2 Proprietary Telephone. Electronic/digital/VOIP telephone instruments (Proprietary Telephone Sets (P-Sets)) shall be compatible with the switching equipment to which they are connected. Installation services shall include installation of line card or firmware installation, provisioning, programming of line card, service activation for the Proprietary Telephone (P-Phone) instrument, the station features, the line appearances, power supply installation, taking the phone out of the box, recording database record updates and the faceplate details.

3.1.1.2.1 Multi-Button Instrument with Integrated Speakerphone. These telephone instruments shall provide an integrated speakerphone and allow full duplex operation. Operation of the instrument in hands-free mode, at full volume, shall not produce audible feedback. The instrument shall be equipped with a button to select either handset or hands-free operation. Separate hold and mute buttons and speaker level adjustment shall be provided. The instrument shall be telephone line DC powered. External DC powering may be employed via the telephone line cord.

3.1.1.2.2 Multi-Button Instrument with Display. A 16-character Liquid Crystal Display (LCD) shall be available for 10, 20, and 30-button key system telephones. An alphanumeric display shall be available for 40-button or larger key system telephone. An alphanumeric display shall have the following capabilities: internal calling party identification, number dial display, code display, clock, calendar, etc. These multi-button telephones with display shall be designed and constructed as a single integrated instrument.

3.1.1.2.3 Add-on Button Modules. When a P-Phone telephone instrument can accept add-on modules to support additional buttons for lines and features, installation and service shall include the appropriate electrical and mechanical connections to the base instrument. Installation and service activation for the add-on modules includes the supported station features, line appearances, and face plate details.

3.1.1.3 PABX Telephone Instruments. For operational key systems using PABX telephone line port appearance connectivity, installation service is treated the same as required for a basic telephone. It includes the data administration of the key system and the PABX to activate the telephone line connection.

3.1.1.4 Voice over Internet Protocol (VoIP) Phones. The contractor shall install VoIP telephones via the work order process. The VoIP phone is connected directly to the LAN. The battery for these phones is provided by the ethernet switch to which these phones are connected. This battery will not be constant unless an Uninterrupted Power Source is powering the switch.

3.1.2 Ancillary Equipment.

3.1.2.1 Ringer Isolator. This unit shall operate as an electronic switch controlled by ringing voltage. When the ringing voltage is present, this unit shall provide a connection and allow current to pass through to the ringer coil. When ringing voltage is absent, this unit shall prevent current from passing through to the ringer coil. Installation of this device provides the necessary ringer security without removing the ringer normally supplied with the instrument.

3.1.2.2 External Ringer. This unit shall provide audible ringing when a signal is generated. This device shall operate with the telephone low-pass line-filter identified below. Where the ringer isolator is not used, the internal ringer normally supplied with the instrument shall be removed, or the ringer signal leads electrically disconnected and isolated or shorted. The ringer shall be provided in two audio level configurations: normal (for office areas) and loud (for noisy environments). External ringers shall be provided for both single line instruments and key systems located with the secure area. Key systems shall accomplish ringing by a local ringing generator.

3.1.2.3 Low Pass Line Filter. This filter shall connect to a telephone line to prevent the passing of out-of-band frequencies generated internally or radiated from external devices. This device provides a minimum attenuation of 80 dB from 14 kHz to at least 1 GHZ. Filters shall be provided. The Contractor shall provide a radio-frequency (RF) tight enclosure to house the filters, grounded to a single point within the secured area. Filters shall be separated and shielded from one another. This metal enclosure must be approved by the Base TEMPEST Officer.

3.1.2.4 Handset Equipment. All handsets within the same system shall be modular and designed to operate with, and be placed in, the cradle of any and all telephone instruments of the same type (i.e; 2500 or electronic key). The handsets shall have a flush mounted modular jack located on the transmitter end, and be accessible without removal of the handset housing. Both transmitter and receiver modules shall be replaceable. The handsets shall be provided in the colors necessary to maintain color uniformity of the instruments. The following handset equipment shall be compatible with other equipment specified in this EIPS, and shall include any interface hardware required to connect the equipment. If different model numbers are required due to the proprietary nature of the equipment they shall be provided.

3.1.2.4.1 Push-To-Talk and Push-To-Listen Handsets. This device is a tamper-proof factory sealed push-to-talk/push-to-listen handset equipped with non-removable receiver and transmitter caps. The handset is equipped with a single button, which activates a miniature switch providing a high reverse isolation simultaneously between and among the receiver unit and transmitting unit and the line. This handset shall be provided for each telephone instrument within the secure area (single and two-line desk and wall mount, key system instruments).

3.1.2.4.2 Amplified Handset. This handset shall be equipped with volume control on handset to boot the volume of the incoming call and be hearing aid compatible. This unit enables the user to hear better when the telephone signal is weak, when line voltage is low, or under high noise conditions.

3.1.2.4.3 Speech Amplified Handset. This handset shall be equipped with volume control on handset to boot the user’s voice and be hearing aid compatible.

3.1.2.4.4 Confidencer Mouthpiece. The confidencer shall be able to eliminate the interfering back ground noise. This confidencer mouthpiece shall be compatible with any “G” style handset.

3.1.2.5 Automatic Disconnect Device (ADD). This sealed device shall be designed to be installed to a telephone line to provide a positive means of automatically disconnecting and electrically isolating the telephone line (both tip and ring) from the telephone instrument when the handset is placed on the cradle. The unit shall be equipped with a visual indicator signaling an off-hook condition. Connection shall not be reestablished during power failures. ADD shall be provided for both single line instruments as well as key systems located within the secure area.

3.1.2.6 Indicator Lamps. The indicator lamp shall be wall mounted with concealed wiring. The lamp shall provide a visual indication of a ring condition on a telephone line. The lamp shall be equipped with lenses in four distinct colors, two of which shall be red or yellow. Lamp assemblies shall be provided containing single, dual, triple, or quadruple lamps.

3.1.2.7 Strobe Lamp. The high intensity flashing strobe light shall be designed to signal/flash for incoming calls on a single telephone line. The strobe shall incorporate a solid-state design using a xenon flash tube designed for a minimum 65000 peak candlepower at one or two flashes per second. The unit shall be contained in a tamperproof housing w/lens, and designed for both indoor and outdoor use. This unit shall be clearly labeled as a telephone strobe lamp either on or near the housing. An external AC power source may be used.

3.1.2.8 Headsets. The following headsets shall operate with any of the telephone instruments specified herein, and shall be designed to directly plug into the handset’s modular jack located on the telephone base unit. The following equipment shall be compatible with other equipment specified herein, and shall include any interface hardware (adapter, amplifier, modular/plug prong base unit, etc.) required to connect the equipment. If different model numbers are required due to the proprietary nature of the equipment, they shall be provided.

3.1.2.8.1 Single/Dual Muff Headset. This lightweight, hands-free unit shall include a headband equipped with a single/dual ear receiver and omni-directional microphone, minimum eight-foot coiled cord, and amplifier assembly. The headset, including the microphone boom, ear receiver, and headband shall be comfortable and fully adjustable and allow the user to swivel the headband away from the head and be used as a headset. The ear receiver shall not extend into the ear, and shall be surrounded with replaceable foam padding or other similar soft cushioned material providing the user comfortable extended wear. The headset assembly shall be equipped with a quick-disconnect plug and jack arrangement to allow the user to disconnect the headband assembly from the coiled cord for free movement. The amplifier unit shall contain a volume control (accessible to the user) and modular jack, and designed to provide protection against unexpected loud noises.

3.1.2.8.2 Headset Cords. These modular retractile headset cords shall be equipped with the connectors necessary for mating with the headsets specified herein. Headset cords shall be equipped with a quick-disconnect capability. These cords shall be provided in lengths specified in the contract line item numbers (CLINs/SLINs/PIDs).

3.1.2.8.3 Headset/Handset Adapter. This unit plugs directly into the telephone base unit’s handset jack and connects both the handset and headset to the telephone. The adapter provides the user the option of selecting either headset or handset operation by means of a switch. The Headset/Handset adapter shall be equipped with a quick disconnect capability.

3.1.2.8.4 Cords, Lines, and Adapters. Telephone line and headset cords provided shall be Underwriters Laboratory (UL) approved. Modular plugs and jacks utilized on the following equipment shall be IAW FCC Part 68 to include 8-position standard modular plugs and jacks. The Contractor shall provide these cords, lines and adapters as well as additional hardware adapters necessary to interface with various equipments as specified in Performance Work Statement (PWS), Appendix 5.2.

3.1.2.8.5 Straight Telephone Line/Mounting Cords. These straight telephone line/mounting cords shall be designed to operate with any of the terminal equipment. At a minimum, the line cord shall be silver satin or transparent and provided in any combination/configuration of length.

3.1.2.9 Internal Speakers. This unit shall provide one-way communication (receive only). This adjunct desktop and wall-mount speaker shall connect to an external two-wire audible source. If connected to a telephone, the unit shall allow the user to hear both sides of the conversation. The unit shall be equipped with a self-contained speaker, internal amplifier with Automatic Gain Control (AGC) circuitry, and on/off switch. The speaker shall be equipped with wattage selectable tap settings or volume control, if specified. A means to select different line impedance (i.e., 300, 600, and 900 ohm) shall be provided. The unit shall be powered by 120 VAC. The Contractor may use AC to DC or AC to AC adapters/transformers.

3.1.2.10 Door-phone Speakers. The door-phone speaker, equipped with volume control, shall provide 2-way voice communication between telephone system and the door-phone speaker. A door-phone controller or adapter shall also be provided with the door-phone speaker if required.

3.1.2.11 Signaling Devices. The following devices shall be controlled and powered by the analog telephone instrument line ringing voltage without the need of an external power source unless specified otherwise. The following equipment shall be compatible with other equipment and shall include any interface hardware required to connect the equipment. If different model numbers are required due to the proprietary nature of the equipment they shall be provided.

3.1.2.11.1 Indoor Bell Ringer. This wall-mounted, indoor electromechanical ringer shall consist of a single or dual bell and be equipped with a volume control.

3.1.2.11.2 Indoor Electronic Tone Ringer. This wall-mounted indoor electronic tone ringer (chirper) shall be equipped with a volume control.

3.1.2.11.3 Indoor Bell Chime Ringer. This wall-mounted indoor telephone bell chime shall be equipped with dual gongs tuned to approximately 700 Hz +/- 200 Hz.

3.1.2.11.4 Indoor Buzzer. This indoor buzzer shall be equipped for wall mounting.

3.1.2.11.5 Loud Indoor Bell/Ringer. This loud bell/ringer shall be equipped with dual gongs. This ringer shall produce an audible output up to 95 dB at 10 ft. External AC powering may be employed.

3.1.2.11.6 Indoor Horn/Howler. This wall-mounted, loud indoor telephone signaling horn may use an external AC power source. Audible output shall be up to 95 dB at 10 ft.

3.1.2.11.7 Loud Outdoor Bell Ringer. The loud bell ringer shall be equipped with dual gongs. This ringer shall produce an audible output up to 95 dB at 10 ft. The ringer, including any adapters, shall be designed for wall and pole mountings, and shall be sealed in a weather- proof corrosion resistant housing. The unit may use an external AC power source.

3.1.2.11.8 Outdoor Horn/Howler. This loud outdoor telephone signaling horn shall be designed for both wall and pole mountings, and may use an external AC power source. The horn and any necessary adapters shall be sealed in a weatherproof corrosion resistant housing. Audible output shall be up to 95 dB at 10 ft. A horn shall be equipped with wattage selectable tap settings for volume control, if required. The explosion-proof horn shall be provided if required. The explosion-proof horn shall be UL listed for areas where explosive, flammable and/or corrosive substances are present.

3.1.2.12 Modem. This comprises equipment that converts digital signals to analog signals and vice versa. Each job includes installation and service activation for the required equipment; installing the cross-connects, cable connectors and cords required to complete the circuit path to the modem; testing associated with service activation; and assisting the customer with operational setup. The customer is responsible to complete final operational configuration for the modem.

3.1.2.13 Multiplexer. This electronic equipment allows two or more signals to pass over one communications circuit devices. The circuit may be either analog or digital modes of data transfer. Equipment is installed at the Dial Central Office (DCO); however, equipment could be installed at the customer premise. The units are rack-mounted, but some equipment is stand-alone and located near the customer premise workstation.

3.1.2.14 Channel Service Unit (CSU) and Mounting Shelf. Each installation includes activity to install, place, and mount the required equipment; install the cable connectors and cords required for CSU operation; and install the power supplies required for CSU operation. The shelf shall be fully wired and cabled to the distribution frame. The power supply to the shelf shall be supported by a local -48Vdc power supply.

3.1.3 Integrated Services Digital Network (ISDN) Basic Rate Interface (BRI).

ISDN telephone instruments shall be compatible with the switching equipment to which they are connected. The NT1 rack-mounted unit is typically powered from the shelf. The shelf is powered as a unit, with power supply backup as required. As a result, the ISDN telephone unit can be powered via the line cord, and no additional power module is required at the workstation location. Each installation includes the mounting shelf, power supplies, backplane wiring, and cable connectivity to the distribution frame terminal block. All available shelf slots that support NT1 units shall be functionally wired and powered to accept an NT1 card. Rack mounted units shall include NT1 rack-mounted unit and associated support hardware. Terminations to the distribution frame are made at the mounting shelf. Any other connectivity is provided by the installation of the ISDN telephone instrument. Most ISDN telephone instruments are S/T interface and accept 8-wire connections. There are some types that include the NT1 interface and will accept a 2-wire interface. This includes the data administration activation programming of multi-line proprietary or key system telephone instruments.

3.1.4 Electronic Key Telephone Systems.

Electromechanical systems (e.g., 1A, 1A1, or 1A2 type key systems) are not acceptable. However, existing key systems still in use shall be maintained. Expansion of an existing key system provides for the continued use of customer-invested equipment to meet a user’s growth needs. Installation and service includes data administration to activate and assign the lines and trunks, activation of key system station instruments, station features, line appearances and faceplate details. In addition, the installation includes distribution wiring, connector terminal blocks (for the initial system installation), and cross-connection for the central office main lines.

3.1.4.1 Key System Circuit Pack Provisioning. User provisioned circuit packs are those necessary circuit cards needed to interface with the PABX and CPE. The expansion of an existing operational key system provides a modular expansion growth requiring only line/trunk port cards or station port cards to provide the needed stations and lines. Expansion of an operational key system unit shall be engineered to minimize service interruption. The system shall be installed with the speech-link paths and power to connect expansion line/trunk and station modules to their full capacity. The installation includes required key system station terminal blocks and line/trunk terminal blocks.

3.1.4.2 Key System Power Requirements. The key system control unit’s power supply module shall be externally powered by conventional 120 VAC, +/10% at 60 Hz, +/- 3 Hz. The key telephone instruments shall be telephone line DC powered. External DC powering may be employed so long as it is done via the telephone line cord.

3.1.4.3 Key System Backup Power Supply. The power supply provides for continued operation of key systems under conditions when primary power has failed. This includes the power supply, cable, and wiring necessary to complete the installation and provide connectivity to the key system. The power supply shall provide at least one hour of backup power.

3.1.4.4 Key System Environmental Operating Range. The key system shall be designed to operate continually within a temperature range of 40 - 104 degrees F, and within a relative humidity range of 20 - 80 percent (non-condensing) without degrading operation or service.

3.1.4.5 Key System Size. The key system shall be provided in 4 sizes equipped and expandable to support the quantities of station lines and stations specified below:

Size I8 station lines16 stations
Size II12 station lines24 stations
Size III24 station lines48 stations
Size IV60 station lines120 stations

A talk path communication link is defined as a duplex circuit between two key system instruments, or between a key system instrument and a non-key system instrument). Size I, II, and III shall require no more than one key system control unit. Size IV may, at the option of the Contractor, have one or two control units provided each unit can be connected in tandem and operate as single integrated system. Key system instruments terminated on one control unit shall be allowed line appearances of those station lines which are terminated on the other control unit.

3.1.4.6 Key System Station Lines. The peripheral module unit shall support switched and non-switched mainline (2-wire loop start), and/or optional 4-wire E&M tie trunks. Wiring from the station instrument to the peripheral unit for supporting communications, signaling, and power shall not exceed four pairs. Transmission between the control unit and the station instruments may be either digital or analog as specified on individual work orders. The data administration for the PABX and the key system are included in the activity required to support a new line or trunk assignment to key system telephone stations, updating face plates, and assigning appropriate PABX and key system features.

3.1.4.7 Key System Features. Key system instruments shall access any PABX feature assigned the central office main line. In addition, the key system shall be equipped with call hold; call waiting; call pickup; call transfer; individual speed dialing; system speed dialing; last number redial; conference calling; station intercom; hotlines; distinctive ringing; and music on-hold/in queue. The key system shall be initially equipped with memory and software necessary to provide features for the key system size. The Contractor shall identify which features the user can assign and change, and which features must be assigned and changed at the system administration level. Users shall not require tools to make station feature changes. Any equipment or tools required to assign and change system level features shall be provided by the Contractor. The Contractor shall describe the method used to assign/change station software features and provide user cards and documents for the key system telephones. Operation, maintenance, and installation manuals shall remain with the key system. Additional copies of the station manuals shall be provided to telephone control officers and QAP.

3.1.4.8 Key System Multi-Button Telephone Instruments. See paragraph 3.1.1 for multi-button telephone description. Combination of both DCO main lines (switched or non-switched) and key system stations shall be permitted to the maximum allowed by the key size. Each button assigned as a line (or intercom) shall have visual as well as audible indication of any incoming calls. Buttons not assigned as lines may be assigned as features at the option of the users. The buttons shall be programmed IAW the users’ requirements. These instruments shall meet the following criteria:

6-Button: Designed to be assigned up to a minimum of 4 lines.

10-Button: Designed to be assigned up to a minimum of 8 lines.

20-Button: Designed to be assigned up to a minimum of 16 lines.

30-Button: Designed to be assigned up to a minimum of 24 lines.

40-Button: Designed to be assigned up to a minimum of 32 lines.

3.1.4.9 Key System Single Line Instrument Interface. The key system shall allow connection and operation for the basic 2500 type analog telephone instrument.

3.1.4.10 Hotlines. The multi-line users shall be allowed to initiate a hotline call by going off-hook and pressing no more than one button. For two-way operation, one and the same button or single line instrument(s) shall be used for both initiating and receiving a hotline call. The key system shall provide direct hotlines between key system stations that are terminated on the same system controller; direct hotlines between key system stations that are terminated on different key system controllers; and/or access to switched and non-switched hotlines connecting non-key system stations.

3.2 Inside Plant (ISP)

Inside plant equipment is typically equipment used at the telephone DCO, transmission equipment used to provide circuit termination to CPE, transmission systems to connect one node site to another node site, or hardware required to support mounting of equipment or routing of cables and wiring. Installation for the devices include cross-connects and end-to-end channel tests to assure operational parameters are met for the connected equipment. Equipment varies in two modes of installation: customer premise with a transmission channel to the DCO with the channel/circuit continuing off-site or customer premise with a transmission channel to the DCO with another leg to another customer premise location on the site.

3.2.1 Channel Activation. When equipment (single channel, DS1, Synchronous Optical Network (SONET), etc.) is installed at the customer location, the channel path (circuit leg) will follow through to the DCO. Cross-connects at the DCO shall be included and be provided for the channel activation. Each job includes activation of the channel path, adjustments for the transmission characteristics, network build-out balancing, cross-connects, and patch cable assembly. The entire path shall be tested end-to-end consistent with the type of channel medium, which includes assisting the customer with initial operational setup.

3.2.2 Switch Expansion Equipment. The expansion of an operational switching system provides modular expansion growth requiring only station line or trunk port cards to provide the needed lines and trunks. Any major expansion will be accomplished through NETCENTS.

3.2.3 Voice Mail Interface. When the customer requires voice mail functionality, the requirement shall be provided consistent with the equipment listed in appendix 5.2 (PABX, key system, etc). The effort shall include appropriate equipment software and interface ports. When identified by the CLIN/SLIN/PID, the Contractor shall propose and provide a voice mail system compatible with the listed equipment.

3.2.4 Uninterruptible Power Supply for Inside Plant Locations. Uninterruptible power supplies provide backup power during power outages. This includes uninterruptible power supply equipment and wiring to provide input AC power and output backup power. Signal and alarm wiring shall be included to provide system status to external monitoring system. Each installation includes mounting and securing the power system, installation and termination of the power cables, and termination of the wiring for signal and alarm to a designated monitoring system. The back-up capacity shall be specified in the work order(s). The power supply shall be composed of chargers and batteries, and other equipment required to provide backup power for a system. The power output shall provide -48 to -52 volts DC (VDC).

3.2.5 Digital Signal Cross-Connecting Panels. Digital signal cross-connecting (DSX-1) panels are used to provide equipment connection (demarcation) and cross-connecting to another DS1 system. The panel shall provide a monitor jack, an IN jack, and an OUT jack to permit DS1 circuit monitoring and testing. For planning and provisioning, the DSX-1 panel shall be equipped with light emitting diodes (LED) indicators for monitor jacks. The quantity of DS1 systems per jack panel will be specified in the work order(s). When DS1s are required at a location, shelf mountable DS1 jack ports shall be provided. The shelf shall support the addition of modular groupings (i.e. grouping of 5) of these DS1 jack ports. Cross-connects shall be installed on the face (front) of the panels. The panel shall mount into a 24-inch relay rack and includes mounting the cross-connect panel.

3.2.6 Terminal Block. Rack mounting, distribution frame, or wall board mounting terminal blocks for voice and data for distribution required for equipment connection are specified in the CLINs/SLINs/PIDs.

3.2.6.1 Voice/Data Distribution Frame Terminal Block. The horizontal distribution frame or wall mounted distribution frame terminal block shall be connectorized using 50 pin connectors or wire-wrap as…

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