ANSI EIA TIA 455-69A-1991 Test Procedure for Minimum and Maximum Exposure Temperature Evaluation of Optical Fibers《评定最高和最低照射温度对光纤性能影响的试验程序》.pdf
《ANSI EIA TIA 455-69A-1991 Test Procedure for Minimum and Maximum Exposure Temperature Evaluation of Optical Fibers《评定最高和最低照射温度对光纤性能影响的试验程序》.pdf》由会员分享,可在线阅读,更多相关《ANSI EIA TIA 455-69A-1991 Test Procedure for Minimum and Maximum Exposure Temperature Evaluation of Optical Fibers《评定最高和最低照射温度对光纤性能影响的试验程序》.pdf(19页珍藏版)》请在麦多课文档分享上搜索。
1、TINEIA STANDARD ANSI/TIA/EIA-455-69A-1991 Approved: July 2, 1991 Reaffirmed: September 14, 2000 FOTP-69 Test Procedure for Evaluating the Effect of Minimum and Maximum Exposure Temperatures on the Optical Performance of Optical Fibers TINEIA-455-69A (Revision of EIA-455-69) NOVEMBER 1991 TELECOMMUNI
2、CATIONS INDUSTRY ASSOCIATION Repmeiiing ibe tekcommuoiutionr induan 18 associauon wiih the Elecironic lndurtner 4Uiancr Elactronie industria Aiiialrcc Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license
3、from IHS-,-,-NOTICE TINEIA 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 selecting and obtaining
4、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 shall the existence of such S
5、tandards 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 Institute (ANSI) patent policy.
6、By such action, TINEIA 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 regulatory requirements. It is
7、 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. 2418-RF1, formulated under the cognizance of the TIA FO-6.6 Subcommittee on Fibers and Mater
8、ials.) This Document was reaffirmed by the American National Standards Institute (ANSI) on September 14,2000, and by the TIA. Published by TELECOMMUNICATIONS INDUSTRY ASSOCIATION 1991 Standards and Technology Department 2500 Wilson Boulevard Arlington, VA 2220 1 PRICE: Please refer to current Catalo
9、g of PUBLICATIONS or call Global Engineering Documents, USA and Canada (1-800-854-7179) International (303-397-7956) EIA ELECTRONIC INDUSTRIES ALLIANCE STANDARDS and ENGINEERING All rights reserved Printed in U.S.A. Copyright Electronic Industries Alliance Provided by IHS under license with EIANot f
10、or ResaleNo reproduction or networking permitted without license from IHS-,-,-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 of copies through entering into a licens
11、e agreement. For information, contact: Global Engneering Documents 15 Inverness Way East Englewood, CO 80 1 12-5704 or call U.S.A. and Canada 1-800-354-7179, international (303) 397-7956 Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or n
12、etworking permitted without license from IHS-,-,-FOTP-69 TEST PROCEDURE FOR EVALUATING THE EFFECT OF MINIMUM AND MAXIMUM EXPOSURE TEMPERATURES ON THE OPTICAL PERFORMANCE OF OPTICAL FIBERS CONTENTS Section Page 1. INTRODUCTION. 1 2. APPLICABLE DOCUMENTS . 1 3. APPARATUS 2 4. SAMPLING AND SPECIMENS 3
13、5. PROCEDURE 4 6. CALCULATIONS AND INTERPRETATION OF RESULTS 7 7. DOCUMENTATION 7 . 8. SPECIFICATION INFORMATION 8 FIGURE 1 - SUGGESTED PLOT FORMAT FOR REPORTING TEMPERATURE DEPENDENCE OF ATTENUATION 9 FIGURE 2 - SUGGESTED PLOT FORMAT FOR REPORTING CHANGE IN ATTENUATION COEFFICIENT OVER TIME AFTER E
14、XPOSURE TO HIGH TEMPERATURE . 10 ANNEX - SPECIFICATION GUIDELINES AND DISCUSSION REGARDING CHOICE OF MINIMUM AND MAXIMUM TEST TEMPERATURES 11 APPENDIX - COMPARISON BETWEEN THIS FOTP AND IEC AND CCITT REQUIREMENTS 13 Copyright Electronic Industries Alliance Provided by IHS under license with EIANot f
15、or ResaleNo reproduction or networking permitted without license from IHS-,-,-EIA/TIA-455-69A Page 1 FOTP-69 TEST PROCEDURE FOR EVALUATING THE EFFECT OF MINIMUM AND MAXIMUM EXPOSURE TEMPERATURES ON THE OPTICAL PERFORMANCE OF OPTICAL FIBERS (From EIA Standards Proposal No. 2418, formulated under the
16、cognizance of the TIA FO-6.6, Subcommittee on Optical Fibers and Materials.) This FOTP is part of the series of test procedures included within Recommended Standard EIA/TIA-455. NOTE: This FOTP was originally published in EIA-455-69 as FOTP-69. 1. INTRODUCTION This test is intended to determine the
17、ability of an optical fiber to maintain optical performance (attenuation and temperature dependence of attenuation) over an extended period of time after having been exposed to a specified range of high and low temperatures. This procedure is one of several FOTPs that, when selected on the basis of
18、a proposed application, assist in establishing a particular specification for minimum and maximum use temperature. This procedure has been shown to be applicable to all-glass optical fibers. Later this procedure may be shown to apply also to other classes of fibers. 2, APPLICABLE DOCUMENTS Test or i
19、nspection requirements may include, but are not limited to, the following references: FOTP-3 (EIA/TIA-455-3A) “Standard Test Procedures for Fiber Optic Fibers, Cables, Transducers, Sensors, Connecting and Terminating Devices, and Other Fiber Optic Components It “Procedure to Measure Temperature Cycl
20、ing Effects on Optical Fibers, Optical Cable, and Other Passive Fiber Optic Components“ Copyright Electronic Industries Alliance Provided by IHS under license with EIANot for ResaleNo reproduction or networking permitted without license from IHS-,-,-EIA/TIA-455-69A Page 2 FOTP-13 (RS-455-13) FOTP-46
21、 (EIA/TIA-455-46A) FOTP-53 (EIA/TIA-455-53A) FOTP-57 (EIA/TIA-455-57A) FOTP-61 (EIA/TIA-455-61) FOTP-70 (EIA/TIA-4S5-701) FOTP-75 (EIA-455-75) FOTP-78 (EIA/TIA-455-78A) “Visual and Mechanical Inspection of Fibers, Cables, Connectors, and/or Other Fiber Optic Devices“ “Spectral Attenuation Measuremen
22、t for Long-Length, Graded-Index Optical F i be r s “At tenua t i on by Substitution Measurement for Multimode Graded- Index Optical Fibers or Fiber Assemblies Used in Long-Length Communications Systems“ “Optical Fiber End Preparation and Evaluation“ “Measurement of Fiber or Cable Attenuation Using a
23、n OTDR“ “Advanced Aging Temperature for Optical Fibers“ “Fluid Immersion Test for Optical Waveguide Fibe r s “ I S pe c t r a 1 -At te nua t i on Cutback Measurement for Single-Mode Optical F i be r s I 3. APPARATUS 3.1 Sample Preparation Device This device prepares the test specimen in the desired
24、configuration and at zero tension. See also the considerations given in 4.2. Either of the following devices will work: 3.1.1 A coil-winding machine to fabricate loose coils with a minimum inside diameter of 200 mm (8 in). FOTP-75 illustrates a concept for the winding portion of such a machine. when
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