ETSI PRI-ETS 300 227-1993 Transmission and Multiplexing (TM) CCITT Recommendation G 652-Type Single-Mode Optical Fibre《传输和多路转换(TM) CCITT建议G 652-单模光纤类型》.pdf
《ETSI PRI-ETS 300 227-1993 Transmission and Multiplexing (TM) CCITT Recommendation G 652-Type Single-Mode Optical Fibre《传输和多路转换(TM) CCITT建议G 652-单模光纤类型》.pdf》由会员分享,可在线阅读,更多相关《ETSI PRI-ETS 300 227-1993 Transmission and Multiplexing (TM) CCITT Recommendation G 652-Type Single-Mode Optical Fibre《传输和多路转换(TM) CCITT建议G 652-单模光纤类型》.pdf(14页珍藏版)》请在麦多课文档分享上搜索。
1、ELECOMMUNICATION STANDARD FINAL DRAFT prl-ETS 300 227 January 1993 Source: ETSI TC-TM Reference: DITTM-1008 UDC: 621.39 Transmission and Multiplexing (TM); CCITT Recommendation G.652-type single-mode optical fibre ETSI European Telecommunications Standards Institute erst swmmiat Postai address: 0692
2、1 Sophia Antipolis Cedex - FRANCE Office address: Route des Lucioles - Sophia Antipolis - Valbonne - fRANCE Tel.: + 33 92 94 42 O0 - Fax: + 33 93 65 47 16 - Tlx: 470 040 F 4 s / !L 3 4 d i . European Telecommunications Standards Institute 1 993. All rights reserved. No part may be reproduced except
3、as authorised by written permission. The copyright and the foregoing restriction on reproduction extend to all media in which the information may be embodied, /3./47,36 14 3404583 0054bL2 T52 Page 2 Final draft prl-ETS 300 227:1993 Whilst every care has been taken in the preparation and publication
4、of this document, errors in content, typographical or otherwise, may occur. If you have comments concerning its accuracy, please write to “ETSI Standards Management Dept.“ at the address shown on the title page. 3404583 0054bL3 999 Page 3 Final draft prl-ETS 300 227:1993 Contents Foreword . 5 1 Scop
5、e . 7 2 Normative references . 7 3 Definitions and symbols . 7 3.1 Definitions 7 3.2 Symbols 8 4 General . 8 5 Reference Test Methods and Alternative Test Methods 9 6 Material characteristics 10 6.1 Material composition . 10 6.2 Hydrogen susceptibility . 10 6.4 Stress corrosion susceptibility . 11 6
6、.5 State of primary coating surface . 11 6.6 Accelerated ageing 11 6.7 Temperature performance . 11 6.8 Stripping force . 12 6.3 Prooftest . 11 7 Geometrical characteristics . 12 7.1 Glass 12 7.1.1 Cladding diameter 12 7.1.2 Cladding non-circularity . 12 7.1.3 Mode field concentricity error 12 7.2 P
7、rimary coating (excluding an additional coloured layer) . 13 7.2.1 Primary coating diameter . 13 7.2.2 Primary coating non-circularity 13 7.2.3 Cladding/Primary coating concentricity error 13 8 Transmission characteristics 13 8.2 Primary coating transmissivity . 13 8.3 Mode field diameter 13 8.4 Cut
8、-off wavelength (A“) . 13 8.5 Chromatic dispersion . 14 8.6 Attenuation coefficient . 14 8.7 Longitudinal uniformity 14 8.7.1 Attenuation uniformity . 14 8.7.2 Backscatter uniformity . 14 8.7.3 Unidirectional uniformity 14 8.8 Macrobending attenuation . 15 8.1 Groupindex . 13 History . 16 93163961 4
9、 = 3404583 0054614 825 - Page 5 Final draft prl-ETS 300 227:1993 Foreword This final draft Interim European Telecommunication Standard (I-ETS) has been produced by the Transmission and Multiplexing (TMI Technical Committee of the European Telecommunications Standards Institute (ETSI), and, following
10、 a review of the comments received from Public Enquiry, is now submitted for the voting phase of the ETSI standards approval procedure. An ETSI standard may be given I-ETS status as it is regarded either as a provisional solution ahead of a more advanced standard, or because it is immature and requi
11、res a “trial period“. The life of an LETS is limited, at first, to three years after which it can be converted into a European Telecommunication Standard (ETS), have its life extended for a further two years, be replaced by a new version of the I-ETC or, finally, be withdrawn. This final draft I-ETS
12、 concerns the functional requirements for single-mode optical fibre to be used in cables for duct, directly buried and aerial cable applications. References are made to test methods and acceptance criteria in EN 188 O00 i21 and CCITT documents which are normative to this final draft LETS (see Clause
13、 2, “Normative references“). This final draft I-ETS has been produced in accordance with a specialised agreement on “Work Repartition and Co-operation for Standardisation concerning fibre optics“ and is part of the CEN/CENELEC/ETSI co-operation agreement. Previous page is blank 3404583 0054635 763 W
14、 Page 7 Final draft prl-ETS 300 227:1993 1 Scope This I-ETS specifies the functional requirements of silica, primary coated, dispersion non-shifted single- mode optical fibre to be used in cables for duct, directly buried or aerial applications. The requirements take into account CCITT Recommendatio
15、n G. 652 l I, “Characteristics of single-mode optical fibre cable“. The functional requirements specified in this I-ETS refer to uncabled fibre. 2 Normative references This I-ETS incorporates by dated or undated references provisions from other publications. These normative references are cited at t
16、he appropriate places in the text and the publications are listed hereafter. For dated references, subsequent amendments to or revisions of any of these publications apply to this I-ETS only when incorporated in it by amendment or revision. For undated references the latest edition of the publicatio
17、n referred to applies. r11 121 CCITT Recommendation G.652: “Characteristics of single-mode optical fibre cable (COM XV-R89)“. CCITT Recommendation G.650: “Definition and test methods for the relevant parameters of single-mode fibre (COM XV-R89)“. E31 IEC 86(Secretariat)33: “Fibre optic terminology“.
18、 41 EN 188 000: “Generic Specification: Optical Fibres“. 3 Definitions and symbols 3.1 Definitions For the purposes of this I-ETS, the following definitions apply. Attenuation coefficient: see CCIlT Recommendation G.650 21, paragraph 1.6.2. Attenuation uniformity: uniformity of attenuation coefficie
19、nt along the length of the fibre. Chromatic dispersion: see IEC 866ecretariat133 31, subclause 4.54. Cladding diameter: see CCITT Recommendation G.650 21, paragraph 1.4.3. Cladding non-circularity: see CCITT Recommendation G.650 121, paragraph 1.4.6. Cladding/Primary coating concentricity error: “un
20、der study“. Cut-off wavelength: see CCITT Recommendation G.650 i21, paragraph 1.6.1. Group index: see IEC 86(Secretariat)33 t31, subclause 2.1 O. Hydrogen susceptibility: the permanent increase in attenuation of the fibre due to hydrogen penetration. Longitudinal uniformity: uniformity of some fibre
21、 characteristics along its length. Macrobending attenuaon: the attenuation due to the bending of the fibre with a constant radius. Material composition: the substances of which the fibres consist. Mode field concentricity error: see CCITT Recommendation G.650 121, paragraph 1.3.4. 931639614 Previous
22、 page is blank Page 8 Final draft prl-ETS 300 227:1993 Mode field diameter: see CCITT Recommendation G.650 121, paragraph 1.2. Primary coating: see CCITT Recommendation G.650 I21, paragraph 1.2.1. Primary coating non-circularity: “under study“. Primary coating transmissivity: “under study“. Proof te
23、st: the action of stressing an optical fibre to a minimum value. This has the effect of causing breaks to occur at all flaws which have a strength lower than this value. State of primary coating surface: “under study“. Stress corrosion susceptibility: see CClTT Recommendation G.650 t21, paragraph 1.
24、2.4. Stripping force: force necessary to remove the primary coating from the fibre. Temperature performance: change in attenuation due to temperature cycling of the fibre. 3.2 Symbols For the purposes of this I-ETS, the following symbols apply. Ac Cut-off wavelength n Stress corrosion susceptibility
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