TIA EIA-455-132A-2001 FOTP-132 Measurement of the Effective Area of Single-Mode Optical Fiber《FOTP-132 单模光纤有效面积的测量》.pdf
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1、 TIA/EIA STANDARD FOTP-132 Measurement of the Effective Area of Single-Mode Optical Fiber TIA/EIA-455-132A (Revision of TIA/EIA-455-132) JUNE 2001 TELECOMMUNICATIONS INDUSTRY ASSOCIATION The Telecommunications Industry Association represents the Communications Sector of ANSI/TIA/EIA-455-132A-2001 Ap
2、proved: May 16, 2001 TIA/EIA-455-132ANOTICE TIA/EIA Engineering Standards and Publications are designed to serve the public interest through eliminating misunderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in
3、 selecting and obtaining with minimum delay the proper product for his particular need. Existence of such Standards and Publications shall not in any respect preclude any member or nonmember of TIA/EIA from manufacturing or selling products not conforming to such Standards and Publications, nor shal
4、l the existence of such Standards and Publications preclude their voluntary use by those other than TIA/EIA members, whether the standard is to be used either domestically or internationally. Standards and Publications are adopted by TIA/EIA in accordance with the American National Standards Institu
5、te (ANSI) patent policy. By such action, TIA/EIA does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties adopting the Standard or Publication. This Standard does not purport to address all safety problems associated with its use or all applicable regu
6、latory 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 Standards Proposal No. 4835, formulated under the cognizance of the TIA FO-6.6 Subcommitt
7、ee on Fibers and Materials.) Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION 2001 Standards and Technology Department 2500 Wilson Boulevard Arlington, VA 22201 PRICE: Please refer to current Catalog of EIA ELECTRONIC INDUSTRIES ALLIANCE STANDARDS and ENGINEERING PUBLICATIONS or call Global Engi
8、neering Documents, USA and Canada (1-800-854-7179) International (303-397-7956) All rights reserved Printed in U.S.A. PLEASE! DONT VIOLATE THE LAW! This document is copyrighted by the TIA and may not be reproduced without permission. Organizations may obtain permission to reproduce a limited number
9、of copies through entering into a license agreement. For information, contact: Global Engineering Documents 15 Inverness Way East Englewood, CO 80112-5704 or call U.S.A. and Canada 1-800-854-7179, International (303) 397-7956 iFOTP-132Measurement of the effective area of single-mode optical fiberCon
10、tents Page1 Introduction .12 Normative references . 23 Apparatus .34 Sampling and specimens .45 Procedure .46 Calculations or interpretation of results . 47 Documentation .58 Specification information . 6Annex A Direct far-field method measurement specifics .7Annex B Variable aperture in the far-fie
11、ld measurement specifics . 12Annex C Near-field method measurement specifics 17Annex D Sample data and calculations .20Annex E Comparison between this method and IEC or ITU Standards 23Annex F Treatment of side lobes in Far-Field Data 24Annex G A Method for Computing Effective Area from VariableAper
12、ture Data. 25TIA/EIA-455-132AiiThis page left blank.TIA/EIA-455-132AiiiFOTP-132Measurement of the effective area of single-mode optical fiberForewordThis document comes from TIA Project No. 3631, and was formulated under thecognizance of TIA FO-6.6, Subcommittee on Optical Fibers and Materials.This
13、FOTP is part of the series of test procedures included within RecommendedStandard EIA/TIA-455.There are three normative annexes and two informative annexes.Key words: Nonlinear refractive index, effective areaTIA/EIA-455-132AivThis page left blank.1FOTP-132Measurement of effective area of single-mod
14、e optical fiber1 Introduction1.1 IntentThis is intended to document the methods for measuring the effective area (Aeff) ofsingle-mode fiber.1.2 ScopeThis document defines three methods of measuring Aeff. Information common to all themethods is found in the body of this document. Information specific
15、 to each method isfound in a normative annex. The three methods are:A Direct far-field (DFF)B Variable aperture in the far-field (VAMFF)C Near-field (NF)The reference method, used to resolve disputes, is Method A, direct far-field.1.3 BackgroundEffective area is an optical attribute that is specifie
16、d for single-mode fibers and used insystem designs that may be affected by the nonlinear refractive index coefficient, n2.There is agreement in both national and international Standards bodies for thedefinition used in this document. Methods A, B, and C have been recognized asproviding equivalent re
17、sults, provided that good engineering is used in implementation.The direct far-field is the reference method because it is the most direct method and isnamed as the reference method for mode field diameter in the ITU.1.4 MappingA mapping function is a formula by which the measured results of one att
18、ribute are used topredict the value of another attribute on a given fiber. For a given fiber type and design, themode field diameter (MFD) can be used to predict the effective area with a mappingfunction. A mapping function is specific to a particular fiber type and design. Mappingfunctions are gene
19、rated by doing an experiment in which a sample of fiber is chosen torepresent the spectrum of values of both MFD and for the fiber type and in which the fibersTIA/EIA-455-132A2in the sample are measured for both MFD and Aeff. Linear regression can be used todetermine the fitting coefficient, k, as d
20、efined by the following:AkMFDeff=Ge6Ge8Ge7Gf6Gf8Gf722(1)Note: Other mathematical models may be used if they are more generally accurate.2 Normative referencesFOTP-57 (TIA/EIA-455-57B) Preparation and Examination of Optical Fiber Endfacefor Testing PurposesFOTP-59 (TIA/EIA-455-59A), Measurement of Fi
21、ber Point Discontinuities using an OTDRFOTP-61 (TIA/EIA-455-61A), Measurement of Fiber or Cable Attenuation using an OTDRFOTP-77 (TIA/EIA-455-77), Procedures to Qualify a Higher-Order Mode Filter forMeasurements on Single-Mode FiberFOTP-80 (TIA/EIA-455-80), Measurement of Cutoff Wavelength of Uncabl
22、ed Single-Mode Fiber by Transmitted PowerFOTP-170 (TIA/EIA-455-170), Cable Cutoff Wavelength of Single-Mode Fiber by Transmitted PowerTIA/EIA-455-132A33. ApparatusAnnexes A, B, and C include schematics for each method.3.1 Light sourceUse a suitable coherent or noncoherent light source, such as a sem
23、iconductor laser ora sufficiently powerful filtered white light or LED source. The source shall be stable inintensity and wavelength over a time period sufficient to perform the measurement.The wavelength of the source shall be specified in the Detail Specification. Unlessotherwise specified in the
24、Detail Specification, the spectral line width shall be less thanor equal to 10 nm Full Width at Half-Maximum (FWHM).3.2 Input opticsUse an optical lens system or fiber pigtail to excite the test fiber. Couple the power intothe test fiber so it is insensitive to the position of the input end face. Th
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