TIA TSB-4979-2013 Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field.pdf
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1、 TSB-4979 August 2013Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field NOTICE TIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating inter
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5、 all applicable regulatory requirements. It is the responsibility of the user of this Standard to establish appropriate safety and health practices and to determine the applicability of regulatory limitations before its use. (From Project No. TIA-PN-4979, formulated under the cognizance of the TIA T
6、R-42 Telecommunications Cabling Systems, TR-42.11 Subcommittee on Optical Systems (568). . Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION Technology (b) there is no assurance that the Document will be approved by any Committee of TIA or any other body in its present or any other form; (c) the
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19、ITATIONS. TIA TSB-4979 iiTIA TSB-4979 Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field FOREWORD III 1 SCOPE. 1 2 BACKGROUND 1 3 METHOD 1- UNIVERSAL CONTROLLER 2 4 METHOD 2 MATCHED CONTROLLER 4 5 GUIDANCE FOR OTDRS 5 6 GENERAL CONSIDERATIONS AND BEST PRACTI
20、CES 6 7 REFERENCES 7 TIA TSB-4979 iiiTIA TSB-4979 Practical Considerations for Implementation of Encircled Flux Launch Conditions in the Field Foreword Several IEC, ISO and TIA standards such as TIA-526-14-B, IEC 61280-4-1 Ed. 2.0 and IEC/ISO 14763-3 define the desired launch condition using a metri
21、c called encircled flux (EF) when testing a multimode cable plant. While these standards provide guidelines for testing multimode fiber, there is no document to describe how EF compliance is achieved outside of a lab. A purpose of this document is to identify user-friendly, low complexity solutions
22、for implementing multimode launch conditions that meet EF-based requirements. To that end, this document describes two possible implementation methods. The first method can be used with any light source, be it overfilling or underfilling, from any test supplier considered a “universal controller”. T
23、he second method is a light source and launch cord combination (the launch cord could include a controlling device), perhaps from a specific test supplier, that together meet the EF requirements considered a “matched controller”. This document describes the advantages and disadvantages of each imple
24、mentation method. This document also provides uncertainty of measurements and best practices advice. It is not the intent of this TSB to provide users a prescriptive method for implementing EF compliance, nor is it required that they construct equipment to produce or verify the launch condition. Rat
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