ISO IEC 11801-2002 Information technology - Generic cabling for customer premises《信息技术 用户建筑群的通用布缆》.pdf
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1、INTERNATIONAL STANDARD ISO/IEC 11801 Second edition 2002-09 Information technology Generic cabling for customer premises Reference number ISO/IEC 11801:2002(E)INTERNATIONAL STANDARD ISO/IEC 11801 Second edition 2002-09 Information technology Generic cabling for customer premises PRICE CODE ISO/IEC 2
2、002 All rights reserved. Unless otherwise specified, no part of this publication may be reproduced or utilized in any form or by any means, electronic or mechanical, including photocopying and microfilm, without permission in writing from the publisher. ISO/IEC Copyright Office Case postale 56 CH-12
3、11 Genve 20 Switzerland For price, see current catalogueXB 2 11801 ISO/IEC:2002(E) CONTENTS FOREWORD .10 INTRODUCTION .11 1 Scope .13 2 Normative references13 3 Definitions, abbreviations and symbols .17 3.1 Definitions .17 3.2 Abbreviations.23 3.3 Symbols 24 3.3.1 Variables .24 3.3.2 Indices.25 4 C
4、onformance 25 5 Structure of the generic cabling system 26 5.1 General .26 5.2 Functional elements.26 5.3 Cabling subsystems.27 5.3.1 General27 5.3.2 Campus backbone cabling subsystem27 5.3.3 Building backbone cabling subsystem28 5.3.4 Horizontal cabling subsystem.28 5.3.5 Design objectives.28 5.4 I
5、nterconnection of subsystems.29 5.4.1 General29 5.4.2 Centralised cabling architecture.30 5.5 Accommodation of functional elements30 5.6 Interfaces 30 5.6.1 Equipment interfaces and test interfaces30 5.6.2 Channel and permanent link 32 5.6.3 External network interface32 5.7 Dimensioning and configur
6、ing32 5.7.1 Distributors 32 5.7.2 Cables .34 5.7.3 Work area cords and equipment cords .34 5.7.4 Patch cords and jumpers .34 5.7.5 Telecommunications outlet (TO) 35 5.7.6 Consolidation point 36 5.7.7 Telecommunications rooms and equipment rooms .36 5.7.8 Building entrance facilities .36 5.7.9 Extern
7、al services cabling .36 6 Performance of balanced cabling37 6.1 General .37 6.2 Layout .38 6.3 Classification of balanced cabling39 6.4 Balanced cabling performance.39 6.4.1 General3911801 ISO/IEC:2002(E) 3 6.4.2 Return loss 39 6.4.3 Insertion loss/attenuation.40 6.4.4 NEXT.41 6.4.5 Attenuation to c
8、rosstalk ratio (ACR) .44 6.4.6 ELFEXT.45 6.4.7 Direct current (d.c.) loop resistance .47 6.4.8 Direct current (d.c.) resistance unbalance48 6.4.9 Current carrying capacity.48 6.4.10 Operating voltage 48 6.4.11 Power capacity 48 6.4.12 Propagation delay48 6.4.13 Delay skew 49 6.4.14 Unbalance attenua
9、tion .49 6.4.15 Coupling attenuation50 7 Reference implementations for balanced cabling 50 7.1 General .50 7.2 Balanced cabling .50 7.2.1 General50 7.2.2 Horizontal cabling 50 7.2.3 Backbone cabling.54 8 Performance of optical fibre cabling55 8.1 General .55 8.2 Component choice.55 8.3 Channel atten
10、uation.56 8.4 Channel topology.56 8.5 Propagation delay58 9 Cable requirements.58 9.1 General .58 9.2 Balanced cables 58 9.2.1 Basic performance requirements58 9.2.2 Additional requirements .59 9.2.3 Additional performance requirements for flexible cables.60 9.3 Additional crosstalk considerations f
11、or cable sharing in balanced cables .60 9.3.1 General60 9.3.2 Power summation in backbone cables60 9.3.3 Hybrid, multi-unit and cables connected to more than one TO60 9.4 Optical fibre cables61 9.4.1 Optical fibre types61 9.4.2 Generic performance requirements 61 9.4.3 Multimode optical fibre cable6
12、1 9.4.4 Single-mode optical fibre cables 62 10 Connecting hardware requirements.62 10.1 General requirements 62 10.1.1 Applicability .62 10.1.2 Location.63 10.1.3 Design .63 10.1.4 Operating environment.63 10.1.5 Mounting63 4 11801 ISO/IEC:2002(E) 10.1.6 Installation practices 63 10.1.7 Marking and
13、colour coding .64 10.2 Connecting hardware for balanced cabling 64 10.2.1 General requirements 64 10.2.2 Performance marking.64 10.2.3 Mechanical characteristics.64 10.2.4 Electrical characteristics 66 10.2.5 Telecommunications outlet requirements .72 10.2.6 Design considerations for installation.73
14、 10.3 Optical fibre connecting hardware74 10.3.1 General requirements 74 10.3.2 Marking and colour coding .74 10.3.3 Mechanical and optical characteristics .74 10.3.4 Telecommunications outlet requirements .75 10.3.5 Connection schemes for optical fibre cabling .75 11 Screening practices 77 11.1 Gen
15、eral .77 11.2 Electromagnetic performance 77 11.3 Earthing.78 12 Administration.78 13 Balanced cords.78 13.1 Introduction .78 13.2 Insertion loss.78 13.3 Return loss 79 13.4 NEXT.79 Annex A (normative) Balanced permanent link and CP link performance82 A.1 General 82 A.2 Performance.82 A.2.1 General8
16、2 A.2.2 Return loss 83 A.2.3 Insertion loss/attenuation.84 A.2.4 NEXT.85 A.2.5 Attenuation to crosstalk ratio (ACR) .88 A.2.6 ELFEXT.89 A.2.7 Direct current (d.c.) loop resistance .92 A.2.8 Direct current (d.c.) resistance unbalance93 A.2.9 Propagation delay93 A.2.10 Delay skew 94 Annex B (normative
17、) Test procedures 96 B.1 General 96 B.2 Channel and link performance testing .96 B.2.1 Testing balanced cabling channels, permanent links and CP links .96 B.2.2 Testing optical fibre cabling channels 96 B.2.3 Channel and link test schedules.96 B.3 Transmission testing of cords for balanced cabling .
18、97 B.4 Transmission testing of components for cabling98 B.4.1 Transmission testing of copper cables for balanced cabling.9811801 ISO/IEC:2002(E) 5 B.4.2 Transmission testing of connecting hardware for balanced cabling 98 B.4.3 Transmission testing of cables for optical cabling.98 B.4.4 Transmission
19、testing of connectors for optical cabling98 Annex C (normative) Mechanical and environmental performance testing of connecting hardware for balanced cabling 99 C.1 Introduction.99 C.2 Test requirements.99 C.2.1 General99 C.2.2 Initial test measurements .99 C.2.3 Environmental and mechanical performa
20、nce100 Annex D (informative) Electromagnetic characteristics 104 Annex E (informative) Acronyms for balanced cables 105 Annex F (informative) Supported applications 107 F.1 Supported applications for balanced cabling .107 F.2 Supported applications for optical fibre cabling .109 Annex G (informative
21、) Channel and permanent link models for balanced cabling .113 G.1 General 113 G.2 Insertion loss 113 G.2.1 Insertion loss of the channel configuration .113 G.2.2 Insertion loss of the permanent link configurations.114 G.2.3 Assumptions for insertion loss .114 G.3 NEXT115 G.3.1 NEXT of the channel co
22、nfiguration.115 G.3.2 NEXT of the permanent link configurations 115 G.3.3 Assumptions for NEXT.116 G.4 ELFEXT119 G.4.1 ELFEXT of the channel configuration.119 G.4.2 ELFEXT for the permanent link configurations .119 G.4.3 Assumptions for ELFEXT .120 G.5 Return loss .120 G.5.1 Return loss of the chann
23、el and permanent link configurations120 G.5.2 Assumptions for the return loss circuit analysis method .121 Annex H (informative) Class F channel and permanent link with two connections.124 Annex I (informative) Significant changes to balanced cabling requirements with respect to earlier editions of
24、this International Standard125 I.1 General 125 I.2 References .125 I.3 Structural elements.125 I.4 Product designation125 I.5 Component requirements125 I.6 Installed cabling requirements 126 Bibliography132 6 11801 ISO/IEC:2002(E) Figure 1 Structure of generic cabling27 Figure 2 Hierarchical structu
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