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    ETSI ES 201 263-1999 Transmission and Multiplexing (TM) Passive Optical Components Fibre Optic Mechanical Splices for Single-Mode Optical Fibre Communications Systems Common Requir.pdf

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    ETSI ES 201 263-1999 Transmission and Multiplexing (TM) Passive Optical Components Fibre Optic Mechanical Splices for Single-Mode Optical Fibre Communications Systems Common Requir.pdf

    1、ES 201 263 1.1.1 (WQQ-O ETSI Standard Transmission and Multiplexing (TM); Passive optical components; Fibre optic mechanical splices for single-mode optical fibre communications systems; Common requirements and conformance testing STD-ETSI ES 201 tb3-ENGL 1999 3400855 Oir1591b 465 2 ETSI ES 201 263

    2、V1.l.l (1 9sS-06) Reference DESfTM-O1048 (bpOO0icp.PDF) Keywords fibre, monmode, optical, testing, transmission, transport - ETSI Postal address F-O6921 Sophia Antipolis Cedex - FRANCE Office address 650 Route des Lucioles - Sophia Antipolis Valbonne - FRANCE Siret N“ 348 623 562 O0017 - NAF 742 C A

    3、ssociation k but non lucratif enregistre la Cous-Prfecture de Grasse (06) No 7803/88 Tel.: 43 4 92 94 42 O0 Fax: +33 4 93 65 47 16 internet secretariat et.s.fr Individual copies of this ETSI deliverable can be downloaded from htp:/w.etsi.org If you find errors in the present document, send your comm

    4、ent to: edtorOetsi.fr Copyright Notification No part may be reproduced except as authorized by written permission. The copyright and the foregoing restriction extend to reproduction in all media. Q European Telecommunications Standards Institute 1999. Ail rights reserved. ETSI STD=ETSI ES 201 263-EN

    5、GL 1999 3400855 0415917 3Tl 3 ETSI ES 201 263 V1.l.l (1999-06) Contents Intellectual Property Rights . 4 Foreword 4 Introduction 4 1 2 3 3.1 3.2 4 4.1 4.2 4.3 4.4 4.5 4.6 4.7 4.8 4.9 4.10 4.1 1 4.12 4.13 4.14 4.15 5 5.1 5.1.1 Scope 5 References . 5 Definitions and abbreviations 6 Definitions . 6 Abb

    6、reviations . 6 Details, measurements and performance requirements . 6 Visual inspection 6 Attenuation 6 Return loss . 7 Vibration (sinusoidal) 7 Pulling 8 Torsion . 8 Drop test (Impact method A) . 8 Cold . 9 Dry heat . 9 Damp heat (steady state) 9 Damp heat (cyclic) . 10 Change of tempera ture . 10

    7、Dust 11 Condensation . 11 Water immersion 12 Acceptance criteria 12 Minimum sample size for qualification 13 Qualification to minimum uniform requirements . 13 5.1.2 Qualification for ETS 300 019 environment subclasses 3.3, 3.4 and 3.5 . 13 5.1.3 Qualification for ETS 300 O19 environment subclass 4.

    8、1 13 5.2 Passlfail criteria . 13 History 14 STD-ETSI ES 201 2b3-ENGL 1999 3400855 0415918 538 4 ETSI ES 201 263 V1.l.l (1999-06) Intellectual Property Rights IPRs essential or potentially essential to the present document may have been declared to ETSI. The information pertaining to these assential

    9、IPRs, if any, is publicly available for ETSI members and nonmembers, and can be found in SR O00 3 14: “Intellectual Propers, Rights (IPRs); Essential, or potentially Essential, IPRs notified to ETSI in respect ofETsI standards“, which is available free of charge from the ETSI Secretariat. Latest upd

    10、ates are available on the ETSI Web server (http:/www.etsi.org/ipr). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in SR O00 314 (or the updates on the ETSI Web server

    11、) which are, or may be, or may become, essential to the present document. Foreword This ETSI Standard (ES) has been produced by ETSI Technical Committee Transmission and Multiplexing (TM). I n t rod u ct i o n The present document covers mechanical splices for single mode optical fibres and cables.

    12、The optical fibres are those described in EN 188100 9 (sectional specification) and EN 188101 101 (family specification). To minimize reflection loss caused by an air gap between the fibre ends, index-matching material can be used. Mechanical splices can be used both as temporary or permanent splice

    13、s. The considered splices are between single fibres, between ribbon fibres and between ribbon and multiple single fibres. Mechanical splices are field-mountable passive optical components; therefore they will be assembled by users. The manufacturer should give instructions for assembly. In order to

    14、obtain the required functional behaviour of mechanical splices it is necessary to follow a number of procedures for fibre preparation, fibre alignment, jointing and protection as described in FU-T Recommendation L. 12 8. All the following requirements are referred to protected splices measured in la

    15、boratory. ETSI STD.ETS1 ES 201 2b3-ENGL 3999 D 3400855 0435919 i174 5 ETSI ES 201 263 V1.l.l (1999-06) 1 Scope The present document specifies requirements for mechanical splices to be used in single-mode optical fibre telecommunication land based (not submarine) systems. The scope covers the establi

    16、shment of minimum uniform requirements for the following aspects: - - test conditions; optical, environmental and mechanical properties; - acceptance criteria. Some users may have additional specific requirements, such as a need to verify performance at lower temperatures. These users should specify

    17、 mechanical splices conforming to the basic ETSI performance standard, plus additional tests or more severe test conditions. Two grades of mechanical splices have been established in the present document regarding their performance in environmental tests. These are referred to as grades V and T. 2 R

    18、eferences The following documents contain provisions which, through reference in this text, constitute provisions of the present document. References are either specific (identified by date of publication, edition number, version number, etc.) or non-specific. For a specific reference, subsequent re

    19、visions do not apply. For a non-specific reference, the latest version applies. A non-specific reference to an ETS shall also be taken to refer to later versions published as an EN with the same number. il IEC 61073-1 (1994): “Splices for optical fibres and cables; Part 1: Generic specification; Har

    20、dware and accessories“. ETS 300 019: “Equipment Engineering E); Environmental conditions and environmental tests for telecommunications equipment“. IEC 61300-3-6: “Fibre optic interconnecting devices and passive components; Basic test and measurement procedures; Part 3-6: Examinations and measuremen

    21、ts; Return loss“. IEC 61300-2-12: “Fibre optic interconnecting devices and passive components; Basic test and measurement procedures; Part 2-12: Tests; Impact“. IEC 61300-2-21: “Fibre optic interconnecting devices and passive components; Basic test and measurement procedures; Part 2-2 1 : Tests; Con

    22、densation“. IEC 61300-2-45: “Fibre optic interconnecting devices and passive components; Basic test and measurement procedures; Part 2-45: Test; Durability by water immersion“. IEC 60068-2-30: “Environmental testing; Part 2: Tests. Test Db and guidance: Damp heat, cyclic (12 + 12-hour cycle)“. ITU-T

    23、 Recommendation L. 12: “Optical fibre joints“. EN 188100: “Sectional Specification: SingleMode (SM) Optical Fibre“. EN 188 101: “Family Specification: Single-Mode Dispersion Unshifted (B1 .i) Optical Fibre“. 121 i31 141 Pl 61 71 Pl t 91 lo1 6 ETSI ES 201 263 V1.l.l (1 999-06) 3 D ef i n it ions and

    24、abbreviations 3.1 Def i n it ions For the purposes of the present document, the following terms and definitions apply: mechanical splices: splices that carry out the alignment and fixing of fibres by mechanical means splice: mechanical spliced fibres, properly protected, with fibre tails of at least

    25、 1,5 m on each side of the splice protector 3.2 Ab b rev at i ons For the purposes of the present document, the following abbreviation applies: OTDR: Optical Time Domain Reflectometer 4 Details, measurements and performance req u i remen ts All tests shall be carried out in accordance with the presc

    26、ribed IEC standard tests. A minimum length of 1,5 m on each side of the splice protector shall be exposed to the test conditions of all climatic and environmental tests. In most cases mechanical splice assemblies will contain both the alignment and the protection features. All optical tests shall be

    27、 carried out in both the 1 310 nm window and the 1 550 nm window unless otherwise stated. Light sources with peak wavelengths of 1 3 10 nm * 30 nm and 1 550 nm f 30 nm shali be used. 4.1 Visual inspection Each mechanical splice shall be properly packed. The package shall be marked with the name of t

    28、he manufacturer and the production date. The mechanical splice itself shall be legibly and durably marked with the identity mark of the manufacturer and the manufacturing date code. 4.2 Attenuation NOTE: Attenuation is referred to as “insertion loss“ in IEC 61073-1 i. For the purpose of this test th

    29、e two terms may be considered to have the same meaning. Details: In accordance with IEC 61073-1 i subclause 4.4.4, method 1 or 2.2. - - Fibre lengths Method 1 (L, L1, L2): Fibre lengths Method 2.2 (Ll, L2): 4m, 2m, 2m. lkm, lkm. ETSI STD.ETS1 ES 201 263-ENGL 1999 3400855 04L592L 822 7 ETSI ES 201 26

    30、3 V1.l.l (1999-06) Requirements: - Allowable attenuation: 5 0,20 dB (average value); I0,50 dB (maximum value for 95 %) single fibres splices; I OJO dB (maximum value for 95 %) multiple fibres splices. 4.3 Return loss Details: In accordance with IEC 61073-1 i subclause4.5.5, method 1. - Launch fibre

    31、length for IEC 61073-1 i Method 1: between 2 m and 3 m. Alternatively, the return loss may be measured using an OTDR in accordance with IEC 61300-3-6 3 Method 2. If this method is used, the OTDR pulse length shall be selected to give a return loss measurement equivalent to that which would be given

    32、by the coupler based technique. - Launch fibre length for IEC 61300-3-6 3 Method 2: Ikm. Requirements: - Allowable return loss: Grade V 2 55 dB; Grade T 1 35 dB. 4.4 Vibration (sinusoidal) Details: In accordance with IEC 61073-1 i subclause 4.5.1 - Frequency range: 10 Hz to 55 Hz. - Endurance durati

    33、on per axis: 0,5 hour. - Number of axes: three, orthogonal. - Number of cycles (10-55-10): 15. - Vibration amplitude: 0,75 nun. Requirements: During the test the attenuation variation shall be 2 0,20 dB. On completion of the test the difference between the final and the initial attenuation shall be

    34、I 0.10 dB. The return loss during and on completion of the test shall not fall below the minimum for the grade. The attenuation and the return loss shall be measured at 1 550 nm f 30 nm before, during and after the test. The maximum sampling interval during the tests shall be 2 seconds. ETSI 4.5 Pul

    35、ling Details: In accordance with IEC 61073-1 11 subclause 4.5.2. - - Duration of the test (maintaining the load): 60 s. - Magnitude and rate of application of the tensile load 5 N f 0,5 N applied at 0.5 N/s. Point of application of the tensile load: 0,3 m from the fibrefibre interface. Requirements:

    36、 During the test the attenuation variation shall be 5 0,20 dB. On completion of the test the difference between the final and the initial attenuation shall be I0,lO dB. The return loss during and on completion of the test shall not fall below the minimum for the grade. The attenuation and the return

    37、 loss shall be measured at 1 550 nm f 30 nm before, during and after the test. During the test the attenuation and return loss shall be measured at least once while the load is at the maximum level. 4.6 Torsion Details: In accordance with IEC 61073-1 I subclause 4.5.31. This test shall only be carri

    38、ed out for single fibre splices. - Tensile load 2 N. - Point of application: - Maximum torsion angle: i: 180“. - Number of cycles: 50. 0,3 m from the end face of the splice. Requirements: During the test the attenuation variation shall be 5 0,20 dB. On completion of the test the difference between t

    39、he final and the initial attenuation shall be 5 0,lO dB. The return loss during and on completion of the test shall not fall below the minimum for the grade. The attenuation and the return loss shall be measured at 1 550 nm f 30 nm before, during and after the test. During the test the attenuation a

    40、nd return loss shall be measured at least once every time when the torsion angle is at the maximum value. 4.7 Drop test (Impact method A) Details: In accordance with IEC 61300-2-12 4 method A (drop test). - Number of drops: 5. - Drop height: 1,5 m. Requirements: On completion of the test the differe

    41、nce between the initial and the final attenuation shall be S 0.10 dB and the return loss shall not fall below the minimum for the grade. The measurements shall be carried out at 1 550 nm f 30 nm. ETSI STD=ETSI ES 201 2b3-ENGL 1999 H 3400855 0435923 bT5 ETSI ES 201 263 v1.1.1 (199946) 9 4.8 Cold Deta

    42、ils: In accordance with IEC 61073-1 11 subclause 4.5.1 1. - Temperature: -25 “C. - Duration of exposure: 16 hours. - Re-conditioning procedure: 2 hours at normal ambient conditions. - Recovery procedure: 2 hours at normal ambient conditions. Requirements: During the test the attenuation variation sh

    43、all be 5 0,20 dB. On completion of the test the difference between the find and the initial attenuation shall be S O, 10 dB The return loss during and on completion of the test shali not fall below the minimum for the grade. The attenuation and return loss shall be measured at 1 550 nm f 30 urn befo

    44、re, during and after the test. During the test the attenuation shall be measured at a maximum interval of 1 hour. 4.9 Dry heat Details: In accordance with EC 61073-1 i subclause 4.5.12. - Temperature: 70 “C. - Duration of exposure: 96 hours. - Re-conditioning procedure: 2 hours at normal ambient con

    45、ditions. - Recovery procedure: 2 hours at normal ambient conditions. Requirements: During the test the attenuation variation shall be 5 0.20 dB. On completion of the test the difference between the final and the initial attenuation shall be 5 0,lO dB The return loss during and on completion of the t

    46、est shall not fall below the minimum for the grade. The attenuation and return loss shall be measured at 1 550 nm f 30 nm before, during and after the test. During the test the attenuation shall be measured at a maximum interval of 1 hour. 4.1 O Damp heat (steady state) Details: In accordance with E

    47、C 61073-1 11 subclause4.5.13. - Temperature: 40 OC. - Relative humidity: 93 %f2%. - Duration of exposure: 96 hours. - Pre-conditioning procedure: 2 hours at normal ambient conditions. - Recovery procedure: 2 hours at normal ambient conditions. ETSI STD-ETSI ES 203 263-ENGL 3999 3400855 0435924 533 W

    48、 ETSI ES 201 263 V1.1.1 (1999-06) 10 Requirements: During the test the attenuation variation shall be 5 0,20 dB. On completion of the test the difference between the final and the initial attenuation shall be I 0,lO dB. The return loss during and on completion of the test shall not fall below the mi

    49、nimum for the grade. The attenuation and return loss shall be measured at 1 550 nm f 30 nm before, during and afta the test. During the test the attenuation shall be measured at a maximum interval of 1 hour. 4.1 1 Damp heat (cyclic) This test shall be carried out on splices which are to be used in weather protected environments corresponding to ETS 300 O19 2 subclasses 3.3, 3.4 or 3.5. Details: In accordance with IEC 60068-2-30 7. - High temperature: 55 “C. - Low temperature: 25 “C. - Duration of one cycle: 24 hours. - Number of cycles:


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