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Design and Construction Handbook - Los Angeles World Airports

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Guide Specification<br />

6. Record Samples<br />

7. Field records for variable <strong>and</strong> concealed conditions<br />

8. Record information on Work that is recorded only schematically<br />

9. As-built drawings<br />

10. Record drawings<br />

11. Electronic as-built <strong>and</strong> LAWA LUSAD requirements<br />

P. Post changes <strong>and</strong> modifications to the Documents as they occur. Drawings will be updated<br />

electronically <strong>and</strong> submitted to LAWA in accordance with the schedule provided for this by<br />

LAWA. Do not wait until the end of the Project. <strong>Design</strong> Consultant will periodically review<br />

Project Record Documents to assure compliance with this requirement.<br />

Q. At every quarter, submit Project Record Documents to <strong>Design</strong> Consultant for LAWA's records.<br />

1. Upon completion of the as built drawings, the <strong>Design</strong> Consultant will review the as built<br />

work with the Contractor.<br />

2. If the as built work is not complete, the Contractor will be so advised <strong>and</strong> shall complete<br />

the work as required.<br />

R. Project Record Drawings shall also be submitted in electronic format. Electronic drawing<br />

format shall be AutoCAD® Release 2008 or later. LAWA shall have the right <strong>and</strong> capability to<br />

manipulate all electronic file drawings <strong>and</strong> documentation.<br />

1.4 CODES, STANDARDS AND REFERENCES<br />

A. All work <strong>and</strong> materials shall conform to <strong>and</strong> be installed, inspected <strong>and</strong> tested in accordance<br />

with the governing rules <strong>and</strong> regulations of the telecommunications industry, as well as federal,<br />

state <strong>and</strong> local governmental agencies, including, but not limited to the following:<br />

B.<br />

1. ANSI C80.1 Rigid Steel Conduit, Zinc-Coated<br />

2. ANSI C80-3 Electrical Metallic Tubing, Zinc-Coated<br />

3. ICEA S-83-596 Optical Fiber Premises Distribution Cable<br />

4. TIA-455-107 FOTP-107 Determination Of Component Reflectance Or Link/System<br />

Return <strong>Los</strong>s Using A <strong>Los</strong>s Test Set<br />

5. ANSI/TIA/EIA-455 Test Procedures For Fiber Optic Fibers, Cables, TR<br />

6. ANSI/TIA/EIA 455-57 Optical Fiber End Preparation <strong>and</strong> Examination<br />

7. ANSI/TIA/EIA 455-59 Optical Time Domain Reflectometry<br />

8. ANSI/TIA/EIA 455-60 OTDR Measurement Of Fiber Optic Cable Length<br />

9. ANSI/TIA/EIA -526-7 Measurement of Optical Power <strong>Los</strong>s of Installed Single-Mode<br />

Fiber Cable Plant<br />

10. ANSI/TIA/EIA 526-14 OFSTP-14 Optical Power <strong>Los</strong>s Measurements Of Installed<br />

Multimode Fiber Cable Plant<br />

11. ANSI/TIA/EIA-568-C.1 Commercial Building Telecommunications Cabling<br />

St<strong>and</strong>ard Part 1: General Requirements, 02/02/09<br />

12. ANSI/TIA/EIA-568-C.2 Balanced Twisted-Pair Telecommunications Cabling<br />

Components <strong>and</strong> St<strong>and</strong>ards, April, 2010<br />

13. ANSI/TIA/EIA-568-C.3 Optical Fiber Cabling Components St<strong>and</strong>ard, June, 2008<br />

BASIC TELECOMMUNICATIONS REQUIREMENTS<br />

27 05 00 - 4<br />

Communication Systems

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