Attachment 5 SOW FOC from ITB 405 to B120 V5.docx

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Fiber Optic Cable Install - Qty 6 Federal contract opportunity
Solicitation number
FA671223Q0014
Issued by
Department of the Air Force Reserve Command

About this file

This statement of work describes a fiber optic cable installation project at Pittsburgh Air Reserve Station in Pennsylvania. The contractor will engineer, furnish, install, and test 12 strands of single-mode fiber optic cable running from Infrastructure Building 405 to Building 120 on the base. The contractor must provide all necessary equipment, materials, labor, and management to complete the project. Specific requirements include installing conduit, innerduct, fiber distribution panels, backboards, cable racks, and terminating the fiber optic cable at each building. The contractor must test and ensure the installed system meets all technical specifications. The performance period is 90 days from award. The statement of work provides extensive details on safety, security, environmental, testing, and documentation requirements the contractor must follow to complete this fiber optic cable installation project at Pittsburgh Air Reserve Station in Pennsylvania.

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Other files for this federal contract opportunity

Other files attached to Fiber Optic Cable Install - Qty 6, newest first.
File Type Posted
Attachment 32 Additional Questions and answers.docx DOCX document
Attachment 31 Davis Bacon Act WD PA20230001 Rev 7 Building 07 28 2023.pdf PDF
Attachment 29 Site Visit Questions and answers.docx DOCX document
Attachment 30 Wage Determination 2015-4235 Rev 24 6 30 2023.pdf PDF
Attachment 6 Offer Pricing Template r1.pdf PDF
Attachment 26 SOW FOC from B202 to Marquee.docx DOCX document
Attachment 27 GD11014od01CG (107 HH).pdf PDF
Attachment 25 List of Attachments r1.xlsx XLSX spreadsheet
Attachment 28 EB 00202.pdf PDF
Attachment 2 SOW FOC from ITB 221 to B317 V5.docx DOCX document
Attachment 4 SOW FOC from ITB 405 to ITB 221 v3.docx DOCX document
Attachment 7 AF1024 Confined Space Entry Permit.pdf PDF
Attachment 17 GD13014od01 (MH14 208 208A 210 HH21 220).pdf PDF
Attachment 20 ITB 00405.pdf PDF
Attachment 22 GD12014od02CG (MH 125).pdf PDF
Attachment 3 SOW FOC from ITB 221 to B419 V2.docx DOCX document
Attachment 6 Offer Pricing Template.pdf PDF
Attachment 11 ITB 00221.pdf PDF
Attachment 25 List of Attachments.xlsx XLSX spreadsheet
Attachment 15 GD13013od01(MH1A 2 4 5 6 HH20).pdf PDF
Attachment 1 SOW FOC from ITB 221 to B209 V6.docx DOCX document
Attachment 9 GD13014od01 (MH14 208 208A 210 HH21 220).pdf PDF
Attachment 10 GD13014od02CG (MH213 218 221 221A HH300).pdf PDF
Attachment 14 GD13013dd01 (419 411 306 316 316a 333).pdf PDF
Attachment 16 GD13013od03CG (MH316 316A 411 418 419A419B).pdf PDF
Attachment 18 GD13014od02CG (MH213 218 221 221A HH300).pdf PDF
Attachment 19 GD14014od01CG (MH4A 221 B324).pdf PDF
Attachment 24 AF FORM 103 Work Clearance.pdf PDF
Attachment 8 Silica Control Plan.pdf PDF
Attachment 12 GD13013od02CG (HH304A 306 306A 306B 403 MH301).pdf PDF
Attachment 21 GD12014od01CG (HH2-6 MH 121).pdf PDF
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Text version

STATEMENT OF WORK (SOW)

For Fiber Installation from ITB 405 to B120 at Pittsburgh ARS PA

30 Mar 2023

Prepared By

38 ES/ENII

4064 Hilltop Road Tinker AFB OK 73145-2713

CONTROLLED UNCLASSIFIED INFORMATION

SOW – Fiber Installation from ITB 405 to B120 Page | 11

1. SCOPE.

This SOW defines the requirement for the Contractor shall engineer, furnish, install and test (EFI&T) 12-strand single mode (SM) fiber optic cable (FOC) from Infrastructure Building (ITB) 405 to Building (B) 120 at Pittsburgh ARS PA.

The Contractor shall provide all equipment, tools, materials, supplies, transportation, labor, supervision, management, and other incidentals necessary to meet the requirements as stated in this SOW. The Contractor shall comply with the current TIA telecommunication installation and testing commercial standard and base installation standards. All equipment, supplies, and materials provided shall be new and not refurbished

2.0 REQUIREMENTS.

GENERAL REQUIREMENTS.

2.1.1 Safety Requirements.

The contractor shall comply with all Federal, State, county, and base security and safety laws, regulations, policies, and requirements.

2.1.2 Site Coordination.

The Contractor shall meet with the base safety officer upon arrival on site for review of the specific safety requirements prior to installation.

2.1.2.1 Confined Space.

The Contractors and Sub-contractors entering confined spaces on Pittsburgh ARS PA are responsible for the safety of their personnel and for their own permit space program as outlined in AFMAN 91-203. The 911th Airlift Wing is a tenant of the host; Allegheny County Airport and it is their policy for all confined spaces be permit required. The confined spaces are not maintained, not opened for years at a time, and thus present potential hazards making them permit required before entry. Each day confined spaces are to be entered, the contractor will complete and present to the Base Safety Office an AF 1024 “Confined Space Entry Permit”. No confined space will be entered without prior coordination with the Base Safety Office. All confined space operations must be coordinated with the Base Safety Office prior to start of work. The primary Contractor is responsible for all Sub-contractor confined space operations.

2.1.2.2 Accident/Incident Reporting and Investigation.

The Contractor shall record and report all facts relating to each instance of injury to either Contractor or Government personnel. Notification shall be provided to the 911 CS/SCXP Project Manager and the Base Safety Office unless otherwise stated in the SOW. The Contractor shall secure the scene of any accident and wreckage until released by the accident investigative authority through the Base POC. If the Government elects to conduct an investigation of the incident, the Contractor shall cooperate fully and assist the Government personnel until the investigation is completed.

2.1.2.3 Work Area(s).

At day’s end, the Contractor shall remove all debris and surplus materials from the work place. Safety barriers shall be in place to protect unfinished work site at the end of the day. All open holes shall be completely enclosed with flexible orange construction safety fencing, or other safety barriers, at the end of the work day. Equipment and materials required to complete the work effort may remain on site as long as they are organized/stored in a manner that does not cause a safety hazard. The contractor shall co-ordinate with the 911 CS/SCXP to ensure that any locking manhole covers are put back in place at the end of each workday.

2.1.2.4 Traffic Control.

In the event base vehicular traffic is disrupted by trenching or horizontal directional boring, the Contractor shall notify the 911 CS/SCXP PM NLT 10 calendar days in advance to inform base Security Forces and Emergency Services personnel of the planned disruptions.

2.1.3 Security Requirements.

The Contractor shall process and provide a Site Visit Request Letter to 911 CS/SCXP within 5 calendar days after contract award. This letter shall identify the names (as shown on the driver’s license), driver’s license numbers and state of issue, and birth date of the personnel who will be performing work under this SOW. This information is required to grant access to the base. If required by the base, the Contractor shall provide identification badges for their employees. All Contractor personnel shall wear these badges while on duty on the Government site. The badges shall identify the individual, company name, and be clearly and distinctly marked as Contractor and be in accordance with base regulations.

2.1.3.1 Security Clearances.

Stated work and associated products shall be performed at the UNCLASSIFIED level. However, some of this work may take place in secure areas where Contractor employees must be escorted at all times. The Contractor must coordinate access to secure areas at least five (5) calendar days ahead of time. It is the Government’s responsibility to provide escorts.

2.1.3.2 Operational Security (OPSEC).

Network infrastructure Drawings (MHDS, MH/HH locations, fiber paths, etc.) are on the 911 CS/SCXP Critical Information List and must be protected. The Contractor shall take appropriate measures to protect detailed information pertaining to the EFI&T effort, to include appropriate marking of documents as “Controlled Unclassified Information (CUI),” and ensuring limited distribution of documents and schematics/Drawings to only those individuals with a valid need to know. IAW AFI 10-701, OPSEC Considerations, the contractor shall follow the OPSEC guidance/plan (AFI10-701) to ensure the protection of CUI data either furnished by the government or produced by the contractor.

2.1.4 Environmental Compliance.

The Contractor shall comply with the most stringent environmental federal, state, and local laws and regulations; and Air Force policies, instructions, and plans. The federal Government is not exempt from compliance with environmental regulations. The Contractors are responsible to know and follow all applicable Federal, State, Local and Air Force regulations for environmental protection, including waste disposal, sewer discharge, air emissions, and storm water requirements. The contractor shall maintain an awareness of changing environmental regulatory requirements to avoid environmental deficiencies for activities on Pittsburgh ARS PA. The Prime Contractor shall ensure that their subcontractors (if any) comply with these specifications.

2.1.5 Quality Assurance.

The Contractor shall provide Quality Assurance Support for the entire duration of the project. The Contractor’s quality assurance evaluator shall assist the Government representative in performing random spot checks and system acceptance tests.

2.1.6 Contractor Personnel.

2.1.6.1 Site Point of Contact (POC).

The Contractor shall designate the Contractor's on-site team leader and alternate(s) as the Site POC for individual projects in their Site Visit Request Letter. The Site POC or alternate(s) shall be on site during duty hours for the duration of the project, up to and until final acceptance by the Government PM and shall oversee all facets of the installation tasks. The Site POC shall be the interface for all work site communications with the Government, including quality, safety, and discrepancy matters.

2.1.6.2 Personnel Requirements.

Site POC, and respective alternate(s) shall be able to read, write, speak, and understand English and shall be on site to coordinate permits, clearances, and receive shipments/material related to the task order.

2.1.6.3 Minimum Contractor Qualifications.

All work shall be performed by an experienced Telecommunications Contractor. The Contractor shall have a minimum of 3 years of experience in Telecommunications Systems installations.

2.1.7 Warranty

The Contractor shall provide a one year warranty or manufacturer’s standard commercial warranty, whichever is longer. The warranty shall be, at a minimum, IAW the NETCENTS standard or equivalent. This warranty shall include a one year workmanship warranty. The warranty period shall start from the date of system and/or project acceptance. The Contractor shall provide written procedures and required information for warranty services at or prior to site acceptance.

2.1.8 Manuals and Practices.

The Contractor shall provide the latest version of operation, installation, and maintenance manuals and practices/users guide for each system installed as provided by the original manufacturer with all new equipment.

SPECIFIC REQUIREMENTS.

As indicated in this SOW and attached Project Drawing, the Contractor shall EFI&T 12-strand SM FOC from ITB 405 to B120 at Pittsburgh ARS PA. All associated fiber distribution panel (FODP), splicing and termination shall be included with the installation.

2.1.9 Outside Plant Requirements.

2.1.9.1 Existing Maintenance Holes.

The Contractor shall be responsible for pumping out maintenance holes/handholes. Water from maintenance holes/handholes shall be drain onto grass when possible to act as a natural filter; then it may be pumped out onto the surrounding ground, as long as there is no impact to roads, driveways, or vehicle traffic. Mud and debris shall be disposed of IAW base requirements. If Contractor comes across a manhole with contaminated water, the Contractor shall coordinate with the environmental office in Base CE.

2.1.9.2 Measurements.

Any distances provided in this SOW are approximations and should NOT be used for ordering materials or determining duct lengths.

2.1.9.3 Underground Utilities Markings.

The Contractor is responsible for repair of any damage caused during installation when the infrastructure is clearly marked.

2.1.9.4 Closures for Cable Splicing in Maintenance Holes. N/A

2.1.9.5 Splice Connectors.

All splicing shall be performed in accordance with RUS Bulletin 1735F-401, Standards for Splicing Copper and Fiber Cable. The contractor shall use pic-a-bonds, 3M 710 splice connectors, or equivalent, for all copper splices.

2.1.9.6 Labeling.

The Contractor shall label all equipment and cables they install and cables identified for re-use in accordance with TIA-606-D and as directed by the 911 CS/SCXP.

2.1.9.6.1 New Ducts.

(MH)/Handhole (HH) indicating the connecting building/Maintenance hole/Handhole at the other end of the duct (for example, “To MH-306H”). The same information shall appear on the Contractor’s completed as-built-Drawings.

2.1.9.6.2 Fiber Optic Distribution Panel (FODP) Marking.

Each FODP shall be stenciled/marked with black ink or paint or adhesive backed decals in letters and numbers. The cover of all new fiber optic distributions (FODPs) shall be labeled to conform to the system used by local maintenance personnel to identify FODPs that terminate fiber. If the manufacturer has not identified the sequence in which ports on FODPs (pigtail modules) are counted, the Contractor shall provide designation labels/strips to identify the sequence in which they are counted. Each splice tray shall be marked to identify the fiber count contained in the splice tray. The marking shall identify the FODP by number (building number), cable number, and count.

Example (FODP): FODP 405 - 120, 1-12

2.1.9.6.3 FOC Tags.

All tags shall be permanently labeled, easily visible and corrosion resistant. Install cable tags in all maintenance holes/hand-holes, cable vaults, pull boxes and building entrance terminal locations. When cables pass through a maintenance-hole, put a tag on the cable, approximately 2 feet from each duct entrance. Information on the cable tag shall identify cable by size, type, cable number and count. Tagging and labeling of new cables shall be IAW the following:

Example (Fiber Optic Tag):12L8.3F
FO 405 - 120, 1-12

First line: “12” stands for Fiber Count. “L” stands for Loose Tube Buffer or (“T”) for Tight Tube Buffer. “8.3” stands for Single Mode. “F” stands for Filled Core (otherwise leave blank).

Second line and following: “FO” stands for Fiber Optic cable. “405 - 419” stands for From Building Number 405 to 120. “1-12” stands for Cable/Strand Count.

2.1.9.7 FOC Terminations.

Fiber optic cable shall be terminated on new FODP in Building 120. The cable shall be terminated on the existing 144-port FODP in Building 405. Cable will be terminated using fusion spliced factory pigtails with SC connectors at both buildings.

2.1.9.8 FOC Maintenance Loop.

The Contractor shall install a minimum of a 50 foot fiber optic cable maintenance loop at the first MH from the building, at each splice point MH location and at every third manhole. The maintenance loop shall be properly labeled and securely supported by two cable hooks. Cable hooks are to be positioned so the highest one supports the underside of the top of the coil and the bottom hook supports the underside of the bottom of the coil. The maintenance loop shall have a cable tag. The same information shall appear on the Contractor’s completed as-built-Drawings.

2.1.9.9 New Maintenance Holes/Hand holes. N/A

2.1.9.10 Lockable Manhole Covers. N/A

2.1.9.11 Cable Racks and Cable Rack Supports.

Cable racks shall be installed in maintenance holes and hand holes as required - this includes new and existing MHs/HHs. Splices shall not be supported by the cables that enter each end of the splice case. The splices shall be supported by cable hooks under the splice case. Telecommunications industry standard cable hooks of the appropriate length shall be provided to support cables and splice cases. The cable hooks shall be secured using cable rack locking clips. All cables shall be supported using racking clips, cable racks, and cable hooks.

2.1.9.12 Underground Conduit System.

The Contractor shall be responsible for any required trenching and/or boring necessary to lay the duct system. Contractor is also responsible for backfilling ditch lines and compaction of fill materials with appropriate compaction tools. Provide a minimum of 12" cover of clean fill above the conduit. Backfill material shall be clean and free from all organic material, clay, marl or unstable materials, debris, lumps, or broken paving. No rocks or stones larger than 3 inches in diameter shall be allowed in backfill. Material for backfill may be material resulting from excavation, if it meets the above requirements. Directional drilling will be used for major road crossings. Otherwise, crossing of paved surfaces may be performed by pavement cuts and resurfacing with appropriate matching road material. This does not prevent the Contractor from using directional drilling if it is more cost effective. Ducts will be appropriately protected when placed under paved surfaces. Contractor shall complete Attachment #24, “AF Form 103 Work Clearance” prior to trenching/boring. See the Engineering Section in Building 333 for Utility Drawings and Approval Signatures for each Utility listed on the AF Form 103.

2.1.9.12.1 Composition.

The ducts shall be corrosion resistant and 4-inch inside diameter (I.D.) round or metric equivalent. The ducts shall be made of EPC-40 Polyvinyl Chloride (PVC) (Schedule 40) IAW NEMA TC-2. For unique situations the ducts shall be EPC-80-PVC (Schedule 80) IAW NEMA TC-2, high density polyethylene (HDPE) SDR 11.5, Galvanized Iron Pipe (GIP) or “thickwall” stainless steel. Schedule 80 PVC shall be limited to risers. High density polyethylene (HDPE) SDR 11.5 shall be used when directional boring is used. GIP or stainless steel shall be used under taxiways and runways. The ducts shall be appropriately labeled indicating the composition material. Ducts shall have a sleeve or bell end type coupling and shall be watertight when assembled. In addition, the Contractor shall adhere to any additional Host Base/site specific requirements.

2.1.9.12.2 Installation.

Installation of underground conduits/ducts shall be IAW RUS Bulletin 1751F-643 and RUS Bulletin 1753F-151. Ducts installed beneath roads, sidewalks, parking areas, other paved surfaces or areas to be paved, etc. shall be installed a minimum of 36" below grade. Ducts installed beneath roads and parking areas shall be protected. It is understood that in some locations, especially at paved surface crossings, the Contractor may bore and substitute 4-inch I.D. HDPE conduit (Roll pipe, suitable for the application) for 4-inch PVC conduit. Also, if HDPE is used, it shall be SIDR 11.5 so that the inside diameter of the HDPE will match the inside diameter of the PVC. HDPE shall not be placed directly into a MH. The Contractor shall transition to PVC from HDPE prior to terminating conduit into these structures.

All ducts not installed across roads, sidewalks, parking areas, or areas to be paved, etc. shall have a minimum of 36 inches ground cover, where possible. The Contractor shall provide other protective measures, concrete cap, etc., in those areas where the minimum ground cover cannot be achieved. Grading of ducts and drain slope of ducts shall be accomplished IAW BICSI Outside Plant Design Reference Manual (OSPDRM) and RUS Bulletin 1751F-643.

2.1.9.12.3 Paved Surface Crossings.

The Contractor shall cut and restore, and/or horizontal directional drilling (HDD) in order to cross paved surfaces. Paved surfaces may be asphalt, concrete, brick, or some type of paving stone. Paved surfaces include roads, driveways, sidewalks and parking lots. Paved surface crossings shall be IAW guidelines set forth by the base civil engineer (BCE). At a minimum, grade of PVC conduit at open trench paved surface crossings, or crossings which are planned for paving in the future, shall be Schedule 40 and shall be concrete encased. If horizontal directional drilling (HDD) is used, then it will be in compliance with commonly accepted telecommunications industry standards and practices relative to the installation, stabilization, and protection of conduits through a bore under a paved surface. The decision whether to trench (cut and patch) across or horizontal directionally drill under paved surfaces is at the discretion of the BCE and will be made on a case-by-case basis

2.1.9.12.4 Bends and Sealing.

All bends between MHs/HHs shall be a minimum of ten times (10X) the diameter of the duct size (i.e., 4 inch duct = 40 inches) with the sum of bends in all directions not exceeding a total of 90 degrees where practical. Coordinate with 509 CS/SCX if runs have bends that total more than 90 degrees is required. Ducts shall have bell ends and enter a MH/HH perpendicular to the surface of the wall through which it is entering. All ducts/inner-ducts entering MH/HH shall be sealed. Universal duct plugs or removable putty sealants may be used. Upon completion of conduit sections, a rigid test mandrel ¼” (6.4mm) smaller than the inside diameter of the conduit shall be pulled through two diagonally opposite ducts to ensure proper alignment. In addition, all ducts shall be cleared of loose materials such as concrete, mud, dirt, stones, etc.

2.1.9.12.5 Utility Separation.

When communications ducts cross either power duct or buried power cable, maintain a minimum separation of 3 inches of concrete or 12 inches of well-tamped earth between the two or 12 inches of well tamped earth when parallel; for pipes (e.g., gas, water, oil) maintain 6 inches when crossing or 12 inches when parallel.

2.1.9.12.6 Spacers and Tracer Wire.

Along the length of the duct run, if the ducts are installed by trenching, spacers shall be placed at five (5) foot intervals. At least one duct or roll pipe shall have tracer wire or be otherwise locatable from the surface. All new tracer wire installed for this project needs to have a wire nut and label installed at all wire ends, and those wire ends secured but not connected to grounds. The tracer wire shall be exposed; free from the conduit and capped (insulated). The tracer shall be secured and routed to the maintenance hole or hand-hole neck to a point where maintenance personnel may access the wire without having to enter the maintenance hole/hand-hole, and tagged with a label so indicating it as a “Duct Tracer Wire to xxx – Do Not Remove (where xxx is the other end of the wire).” Tracer wires shall not be connected to any grounding system. Tracer wire shall be pulled back from building entrances until it is underground to prevent lightning damage.

2.1.9.12.7 Warning Tape.

Cable warning tape shall be buried one (1) foot below the surface and shall follow the duct route. The tape shall be a minimum of three inches wide and orange in color with the appropriate warning message.

2.1.9.12.8 Entrance Conduits into Existing Maintenance Holes.

When new entrance conduits/ducts or sleeves are required, the Contractor shall bore and install the necessary holes and install the ducts or sleeves, if knockout doesn’t exist. Penetration shall not be in such a location through the wall as to block use of existing ducts in the maintenance hole. New ducts will be a minimum of 18 inches from either the floor or ceiling of the maintenance hole if practical. Ducts shall have bell ends and enter the maintenance hole perpendicular to the surface of the wall through which it is entering and shall be installed flush with the interior wall of the maintenance hole. Ducts and openings around ducts shall be sealed to prevent moisture from entering the maintenance holes.

2.1.9.12.9 Conduit Protection.

The Contactor shall install the appropriate physical protection required [(concrete encasement, steel tube (casing)] for buried PVC conduits or HDPE Roll pipe, consistent with commonly accepted telecommunications industry practices relative to the task and to the environment in which they are installed and the loads (H-5, H-10, H-20, railroads, flight line, etc.) to which they are expected to be exposed. Type of protection may be dependent upon the specific application and shall be IAW applicable federal, state or local (Pittsburgh ARB Civil Engineering construction requirements) procedures. However, at a minimum, nonmetallic conduits shall be encased in concrete of minimum 3000 lb. /in2 compressive strength where vehicular traffic is above the pathway. The encasement shall be concrete of a wet type mix and shall be placed in such a manner as to ensure the concrete completely surrounds all conduits and no air voids are trapped in the mix a bend or sweep is placed in PVC nonmetallic duct bank between maintenance holes, the duct bank must be encased in concrete with a minimum compressive strength of 3000 pounds per square inch (psi).

2.1.9.12.10 Pull Tape

All newly installed ducts left vacant shall be provided with a pull tape with a waterproof, corrosion resistant, pre-lubricated flat woven polyester pull tape with sequential footage markings, (1250 lb. pulling strength) for future cable installations. The pull tape shall extend into the maintenance holes/hand-holes and be secured to a cable rack or pulling iron, etc

2.1.9.13 Excavation/Building Penetrations.

All wall penetrations, including inside buildings, shall be restored to meet the required base fire ratings.

2.1.10 Requirement Installation.

This section describes the underground maintenance hole/conduit system, flexible geotextile multiple cell fabric inner-duct and fiber optic cable installation requirements. The Contractor shall design and install Customer-Owned Outside Plant Telecommunications Infrastructure in according with TIA-758-B. Each cable installation shall be coordinated with the 911 CS/SCXP so that the impact on the building users is properly coordinated. The sequence of installation is at the Contractor’s discretion.

See Project Drawing below for reference and estimated distances of existing and proposed infrastructure and cables routes. This is only a proposed solution. The Contractor may make any recommendations pertaining to the accomplishment of this requirement in their proposal.

2.1.10.1 Infrastructure Installation.

The contractor shall install the following new infrastructure. All new locations and distances are approximations.

2.1.10.1.1 New 4” LB Type Building Entrance.

The Contractor shall install one each 4” LB Type or equivalent for new conduit entrance on the exterior wall of B120 from new HH 206A. The location of LB Type shall be provided by 911 CS/SCXP.

2.1.10.1.2 New Backboard.

The Contractor shall install the new backboards in B120. The location of new backboard will provide by 911 CS/SCXP.

2.1.10.1.3 New Fiber Optic Distribution Panel (FODP).

The Contractor shall provide and install 12-port SC FODP in B120 wall-mounted. We are recommending Corning Closet Connector Housing Panels (CCH-CP-12-3C) SC connector into CCH Cassette Termination and Slack Storage, empty, for one CCH adapter panel (CCH-CF). In B405 the existing Corning (CCH-01U) Closet Connector Housing Four Rack Unit shall be utilized. The Contractor shall provide and install Corning Closet Connector Housing Panels (CCH-CP-12-3C) SC connector into CCH Cassette Termination and Slack Storage, empty, for one CCH adapter panel (CCH-CF), placed into an existing Corning (CCH-04U) Closet Connector Housing Four Rack Unit. The slot and the location of FODP shall be provided by 911 CS/SCXP & SCOI.

2.1.10.1.4 Duct bank Infrastructure.

Install the following Duct banks

From
To
Quantity
Size

(Inch)

Approx. Distance (Feet)
NOTES
MH-121
B120
1
4
150
Directional Bore

2.1.10.1.5 Geotextile Innerduct.

Install 3”x3 Geotextile Innerduct as shown in the table below. Each three cell shall have a separate thread color and one of the three cells shall be detectable.

Install the following 3” 3-cell Geotextile Innerduct

From
To
Quantity
Approx. Distance (Feet)
Notes
MH 121
B120
1
150
In new conduit

2.1.10.2 Fiber Optic Cable Installation.

The Contractor shall install SM, loose buffer tube, water blocked, outside plant FOC suitable for underground applications. The intent is to install the cable in one continuous length, to the extent that it is practical. The cable shall meet RUS 7 CFR 1755.900 criteria; shall comply with industry standards with regard to manufacturers’ cable marking, jacket, rip cords, water blocking, fiber color coding, jacketing materials, etc. In addition, the FOC shall comply with industry standards with regard to mode field diameter, core cladding concentricity, attenuation, and dispersion characteristics at 1310 nm and 1550nm.All fiber optic cables shall be installed in new or existing geotextile innerduct/innerduct. All in building fiber cables will be in conduit.

2.1.10.2.1 From ITB 405 to B120

The Contractor shall install 12-port FODP in B120, on the new backboard if required. The location of FODP shall be provided by 911 CS/SCXP & SCOI. The Contractor shall install Corning Closet Connector Housing Panels (CCH-CP-12-3C) SC connector into the existing Corning (CCH-04U) Closet Connector Housing Four Rack Unit in B405. MH125 and MH121 are near spring seeps and will contain water. Extra preparation time will be needed prior to entry. Ensure the pits are pumped out, examined and ventilated.

FROM
TO
Approx. Distance (Feet)
Notes
ITB 405
MH 1A
20
Existing Cable Tray
MH 1A
MH 5
50
In available Geotextile Innerduct
MH 5
MH 6
165
In available Geotextile Innerduct
MH 6
MH 125
320
In available Geotextile Innerduct
MH 125
MH 121
275
In available Geotextile Innerduct
MH 121
B120
150
In new Geotextile Innerduct
B120 Mech rm.
Mech rm. Ceiling
16
In Conduit (pic 4)
Mech rm ceiling
Ceiling entry point
13
In Conduit (pic5)
Ceiling entry point
Weight Room ceiling
8
In Conduit (pic 6+7)
Weight room ceiling
Weight room inner wall
4
In Conduit (pic 8)
Weight room inner wall
Main gym wall
6
In Conduit (pic 9)
Main Gym
Lobby wall
56
In Conduit (pic 10)
Lobby wall
Office ceiling
26
In Conduit
Office ceiling
End point
6
In existing molding

2.1.11 Project Residue.

All residue from this project shall be disposed of off base and in accordance with Federal, State, local and base environmental laws and regulations. All residue produced by horizontal directional boring operations (i.e., slurry) shall be disposed of off base on the same day the residue is produced, at an appropriate disposal facility at the contractor’s expense, IAW federal and state environmental laws and regulations. Under no circumstances will the contractor stage or store boring residue in slurry ponds or other containment areas on Pittsburgh ARS PA. Attachment #8, “Silica Management Plan”, shall be completed and submitted as part of proposal package.

2.1.12 Site Restoration.

The Contractor shall restore all disturbed grounds to the “as found” condition or better after installation. The Contractor shall comply with all base grounds restoration requirements. Common use areas shall be restored with sod.

2.1.13 Service Outages.

The Contractor shall be responsible for preventing any unscheduled (i.e. cutting or disabling any in-service cables or equipment.), Contractor-caused, interruptions of communications capabilities that are properly identified. The Contractor shall coordinate planned outages with the site POC at least 10 calendar days in advance of the outage if the implementation necessitates disruption of service, (e.g., communications, electrical, or other utilities).

2.1.14 Identification/Marking.

The Contractor shall clearly mark all Contractor-Furnished Property and Equipment (CFP/CFE) with their company's name. The Contractor shall place an easily read, very visible, sign (minimum 8.5" x 11") on large containers, construction equipment, or un-manned rental vehicles while on the Government installation indicating the company name and both the Contractor and Site POC's names and local telephone numbers.

2.1.15 Drawings.

2.1.15.1 As-Built Drawings.

The 911 CS/SCXP shall supply existing system Drawings, and the Contractor shall provide updated Drawings in Visio for building and rack elevation; Visio and .pdf for OSP. These Drawings shall depict the entire pathway and details of the installation, including but not limited to: labeling, cables, innerducts and maintenance holes/handholes, conduits, maintenance loops, distances, bores, trenches, building entrances. Detailed butterfly Drawings will also be required. If the existing cable diagram or butterfly Drawings are not available; the contractor shall create the missing cable diagram/ butterfly Drawings to include all the components used in this project. The Contractor shall record/deliver geospatial data of new outside plant distribution system.

2.1.15.2 Butterfly Drawings.

The Contractor shall record and submit butterfly, cable path and building penetration Drawings information for all new installations including butterfly Drawings for all maintenance holes and pull boxes that contain new or reused FOC. Drawings shall record the path and arrangement of new and reused fiber optic cables, splices, and the arrangement duct banks, ducts, inner-duct and shall show maintenance hole orientation with respect to geodetic north. Drawings shall be submitted in an easily read electronic format such as pdf. Scanned data sheets or legible Drawings are acceptable.

2.1.15.3 Geospatial Deliverables.

The Contractor shall collect and record geospatial data and provide as-built documentation (shape files) of all new installed maintenance hole/duct system components and new cable components (including metadata) compatible with the Cyberspace Infrastructure Planning System (CIPS) Visualization Component (CVC) Drawings system. Data points shall be recorded at the center of each manhole/hand-hole lid and at intervals not to exceed 25 feet along cable routes. Sufficient data points shall be recorded to capture any change in direction along the route. All GPS coordinates shall have +/- 3 feet accuracy for all readings. The government will review the shape files and transcribe the information to the CVC system. Provide geospatial data via CD as Environmental Systems Research Institute (ESRI) Shape files. Shape files shall be delivered within 30 days of project completion.

2.1.16 Test and Acceptance/Installation Test Plan.

The Contractor shall provide a test plan as to how the system shall be pre-tested, in-progress-tested and post-tested. Draft Cut-over Test Plan shall be submitted NLT 10 calendar days after contract award. Government comments will be provided after review of the draft. A final plan will be submitted 30 calendar days before the actual cut-over date. The Contractor shall test the system to demonstrate to the Government quality assurance representative that the system is fully operational and meets or exceeds the specified requirements and that the system is fully ready to be placed into service. These tests shall be accomplished prior to the system being placed into service.

2.1.16.1 Testing.

The Contractor shall conduct on-site testing IAW OEM’s installation manuals, practices and the appropriate vendor’s test procedures. The Contractor shall furnish all test equipment and personnel required to conduct all required testing. During any testing phase, the Government reserves the right to perform any of the contractor performed inspections and tests to assure solutions conform to prescribed requirements. The Contractor shall provide on-site support during the acceptance testing. The Contractor shall participate with the Government in testing the complete communications system. When any system, subsystem, component or requirement test fails to meet the requirements of the test, Government acceptance and payment will be withheld until such time as the cause of the failure is corrected to the Government’s satisfaction. After appropriate corrective action has been taken, all tests including those previously completed, related to the failed test and the corrective action shall be repeated and successfully completed prior to Government acceptance.

2.1.16.2 In-progress Testing.

2.1.16.2.1 Fiber Optic Tests.

All strands of all fiber optic cables shall be tested in accordance with TIA 526-7, Measurement of Optical Power Loss of Installed Single-mode Fiber Cable Plant, or equivalent. As a minimum, the following tests shall be performed. Both Optical Time Domain Reflectometer (OTDR) and Optical Power Meter tests will be used for all end-to-end circuits. Between FODPs, bi-directional testing at 1310 nm and 1550 nm is required. For incomplete circuits that end in Maintenance Holes, only one way OTDR testing is required.

2.1.16.2.2 Optical Attenuation.

End to end attenuation tests shall be conducted on all fiber optic cable strands. Tests shall be accomplished to ensure the installed cable is within the specified parameters.

2.1.16.2.3 Distance.

Test to determine the installed cable length between optical patch panels. All strands of all fiber optic cables shall be tested.

2.1.17 Acceptance/Installation Test Report.

The Contractor shall provide an installation test report of the results of the testing accomplished under the installation test plan NLT 10 business days after Government Witness Testing is complete.

2.1.18 Final Acceptance.

The Contractor shall schedule a final project walk-through with the Base POC, including Quality Assurance Officer and Subject Matter Expert. The walk-through should be scheduled 5 calendar days prior to acceptance. The contractor shall route the AFTO 747 after the base has signed the test report and the walk-through has been completed.

2.1.19 Deliverable Summary.

All deliverables are subject to Government acceptance and approval. They shall meet professional standards and the requirements set forth in this SOW. All deliverables shall be produced using recommended software tools/versions as accepted by the Government.

3.0 GENERAL INFORMATION.

Period of Performance.

The period of performance for the project shall be 90 days or less post contract award date.

Place of Performance.

The place of performance is Pittsburgh ARS PA.

Hours of Operation.

The Contractor shall routinely work during normal duty hours of the site. However, mission requirements may necessitate work outside normal hours (nights and/or weekends), especially if existing service must be interrupted. Any site work requested by the Contractor to be performed outside of normal duty hours shall be coordinated with the 911 CS/SCXP and approved by the Contracting Officer at least 10 calendar days in advance.

Holidays/Down Days.

The Contractor shall not perform under this contract on federal holidays or site-unique down-days unless expressly authorized by the CO and coordinated with the base POC.

Base Support.

CONTROLLED UNCLASSIFIED INFORMATION

The Contractor shall identify any base support requirements (for example, laydown and storage areas) necessary to complete this project in their proposal. The contractor shall return all government furnished lay-down and storage areas to their original condition upon completion of the project.

4.0 APPENDICES.

Appendix A: APPLICABLE STANDARDS.

The following list is not all-exclusive. The Contractor shall comply with applicable commercial code and standards AFMAN 91-203 – Air Force Consolidated Occupational Safety Instruction OSHA CFR 29 Part 1910-268 – Telecommunications NEMA TC 2- Electrical Polyvinyl Chloride (PVC) Tubing and Conduit TIA-606-D Administration Standard for Telecommunications Infrastructure TIA-568-E Commercial Building Telecommunications (568C.1, 568C.2, 568C.3) Cabling Standard TIA-607-D Commercial Building Grounding (Earthing) and Bonding Requirements for Telecommunications TIA-526-7- Measurement of Optical Power Loss of Installed Single-mode Fiber Cable Plant TIA-569-E - Commercial Building Standard for Telecommunications Pathways and Spaces TIA-570-D –Residential Telecommunications Infrastructure Standard TIA-758B Customer-owned Outside Plant Telecommunication Infrastructure Standard BICSI TDM Manual - Building Industries Consulting Services International Telecommunications Distribution Methods (TDM) Manual BICSI – Outside Plan Design Reference Manual RUS Bulletin 345-65 (PE-33) – Specification for Shield Bonding Connectors RUS Bulletin 1735F-401, Standards for Splicing Copper and Fiber Cable RUS Bulletin 1751F-643 - Underground Plant Design RUS Bulletin 1751F-644 - Underground Plant Construction Telecommunications Engineering Shield Continuity and Construction Manual (TE&CM) 451.2 RUS Bulletin 1751F-801 – Electrical Protection Fundamentals RUS Bulletin 1753F-151 (515b) - Specifications and Drawings for Underground Cable Installation RUS Bulletin 1753F-201 (PC-4) – RUS Standard for Acceptance Tests and Measurements of Telecommunications Plant RUS Bulletin 1753F-207 (PE-87) – REA Specification for Terminating Cables NFPA 70 - National Electric Code Unified Facilities Criteria 3-260-01 Unified Facilities Criteria 3-580 FGDC-STD-007.3-1998 - Geospatial Positioning Accuracy Standards Part 3: National Standard for Spatial Data Accuracy

5.0 Project Drawing

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File details come from the government source that posted it. Updated .