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本文(ICEA P-61-694-1999 Coding Guide for Copper Outside Plant and Riser Telecommunications Cables《铜编码指南 外部线路设备及商用级通信电缆》.pdf)为本站会员(lawfemale396)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ICEA P-61-694-1999 Coding Guide for Copper Outside Plant and Riser Telecommunications Cables《铜编码指南 外部线路设备及商用级通信电缆》.pdf

1、ICEA P-61-694-1999 CODING GUIDE FOR COPPER, OUTSIDE PLANT AND RISER TELECOMMUNICATIONS CABLES ICEA PUBLICATION # P-6 1 -694- 1999 March 1999 1999 by INSULATED CABLE ENGINEERS ASSOCIATION, Inc. -)-FA Copyrighted by the ICEA Contents may not be reproduced in any form without permission of the INSULATE

2、D CABLE ENGINEERS ASSOCIATION, INC. ICEA P-61-694-1999 CODING GUIDE FOR COPPER, OUTSIDE PLANT AND RISER TELECOMMUNICATIONS CABLES Prepared and Published by INSULATED CABLE ENGINEERS ASSOCIATION, Inc. Post Office Box 440 South Yarmouth, Massachusetts 02664, U.S.A. Approved March 10, 1999 by Insulated

3、 Cable Engineers Association I- i FOREWORD ,. X i ICEA publications are adopted in the public interest and are intended to promote product uniformity and quality throughout the industry. They are designed to eliminate misunderstanding between the manufacturer and user and to assist the user in selec

4、ting and obtaining proper products for the particular application. Existence of an ICEA publication does - not in any respect preclude the manufacture or use of products not in conformance with this Guide. Suggestions for improvements in this publication are welcome and should be sent to ICEA, This

5、Guide was developed by the Telecommunications Wire and Cable Standards Technical Advisory Committee whose membership consisted of technical exDerts from the manufacturing, user, and general interest segments of the industry. The members of the ICEA Communications Cable Section, Working Group 647, wh

6、o participated in this project were: J. S. Tyler - Chairman G. L. Doma T. McLaughlin D. K. Baker A. G. Dwyer M. Silva R. Westrick R. Cuprak T. Hardin J.-H. Walling i . . . . I TELECOMMUNICATIONS WIRE AND CABLE STANDARDS TECHNICAL ADVISORY COMMITTEE .I 1998-1 999 Committee Chairperson: E. Gurney Comm

7、ittee Vice-Chairperson: A. Dwyer Individuals who participated in the development of this Guide (manufacturer and user representatives): Adarnson, J. Southwestern Bell Baer, J. Essex Group Baker, D. K. Superior Telecommunications Baker, D. W. Belden Intech Division Cuprak, R. Dettrnann, R. Dondero, P

8、. C. Dwyer, A. Fearing, M. G ra bowski, J. Gurney, E. Hardin, T. Hessler, G. Hore, L. Knight, P. McLaughlin, T. Oriol, G. Owens, K. Pope, B. Silva, M. Tyler, J. Walling, J.-H. Cable Systems International Ameritech Bell Atlantic, NSI Cable Systems International U.S. West Prestolite Wire Corp. GTE Luc

9、ent Technologies - USDNRUS Bellcore NYNEX General Cable General Cable CommScope Belden Wire if this is possible, then the existing codes can be sequenced to match the cable. The coding format given in Section 3.1 of this document should be used to relate cable specifications to the proper cable code

10、. When a manufacturer requires a new code and no existing code can be identified, a written code request, with detailed cable information, should be submitted to the Insulated Cable Engineers Association, P.O. 440, South Yarmouth, Massachusetts 02664, Telephone (508) 394-4424. 3. CODING FORMAT 3.1 C

11、OPPER CABLE IDENTIFICATION CODING SEQUENCE A four-letter coding sequence designates copper telecommunications cables. Use of this coding simplifies cable identification in ordering, manufacturing, identifying, and record- keeping. After these four letters, if required, is a two-letter code known as

12、the outer- protection-covering designation. The numeric pair count of the cablewould normally follow. An example of the coding format typically used for metallic cable is shown below for a 200 pair, 24 gauge solid insulated filled cable utilizing an 80C filling compound with a bonded ASP sheath and

13、unsoldered mechanical outer protection. I Insulation Type Design I The code displayed above would typically be printed on a cable jacket as AMMY UM 200. 2 3.1 .I First Cable Code Letter-Design The first letter in the 4-letter coding sequence identifies generic design criteria or special properties o

14、f cables. 3.1.2 Second Cable Code Letter-Insulation type The second letter in the 4-letter coding sequence indicates the type of conductor insulation used and, if applicable, the filling compound. 3.1.3 Third Cable Code Letter-Conductor Gauge The third letter in the 4-letter coding sequence identifi

15、es the gauge and the type of conductor material. Conductors are solid wires of commercially pure annealed copper. Conductor sizes may be 16,19,22,24,26 or 28 American Wire Gauge (AWG). 3.1.4 Fourth Cable Code LetterCheath Designation The fourth letter in the 4-letter coding sequence identifies the t

16、ype of sheath materials used. Plastic-jacketed cables often have an acronym that describes the sheath constniction. 3.1.5 Outer Protection Code The standard types of outer protection are designated by a two-letter code that follows the four-letter coding sequence. 3.1.6 Pair Count The numerical desi

17、gnation indicates the nominal pair count (the number of spare pairs is not included in the stated pair count). It typically follows the four letter code unless there is an outer protection code. (See Paragraph 3.1) 3.2 CURRENT CODE DESIGNATIONS FOR CABLE DESIGN, CONDUCTOR INSULATION, CONDUCTORS, AND

18、 PROTECTIVE COVERING This section contains tables that list the code letters and abbreviations currently used to make up the 4-letter coding sequence and the 2-letter outer-protection code. 3 3.2.1 Cable Design Codes (First Letter) E3 C* D K L pic fir core9.10.11.12.,13 High Potential Fiiled14 Air C

19、ore Fam-Skin* or Steam Tunnel Cable“ Compartmented Screened Cable1.g.“9.20.45.6 Low Capacitance* M N Q T I Terminating Cable (TIP), Tinned Conductorsa I Low Capacitance Screened Cablez PIC Limited-Color-Codedz3 Broad These letters will also appear in Section 4 indicating that Pulp Air Core and Pulp

20、insulated MUP are no longer being manufactured. E H K *Superscripts indicate the appropriate specifications which may be applicable to the specific cable design. See Annex A. Foam - Air Core Solid Polyolefin - Air Core (16 - 22 AWG) Solid Polyolefin - Air Core (24 - 28 AWG) 3.2.2 Conductor Insulatio

21、n Codes (Second Letter) M N R S Code I Conductor Ins,ulation Type I I Solid Polyolefin with 80C Filling Compound Foam-Skin with 80C Filling Compound Foam PE-PVC Skin Foam with 80C Filling Compound I 8 I Solid Polyolefin-PVC Skin I I I C I Foam-Skin -Air Core I c 4 4 3.2.3 Conductor Gauge Codes (Thir

22、d Letter) Code A B H M T Gauge 22 19 16 24 26 r- P S N W Y z I I w 28 Reinforced Self-Supported Self-supported ASP, Bonded, Medium Density Jacket ASP, Bare Metallic Tapes (Filled) ASP, Bonded (Filled) ASP, Bonded (Air Core) Code UM SA . DA 3.2.5 Outer Protection Codes Outer Protection Type - Unsolde

23、red Mechanical Protection (6-mil Steel and Jacket)27 Submarine - Single Wire Armo? Submarine - Double Wire Arrnop 5 4. 4.1 4.2 4.3 OBSOLETE AND SUPERSEDED CODES Items shown in this section have become obsolete due to the lack of use for several years or have been superseded by new designs. CABLE DESIGN CODES (FIRST LETTER) CONDUCTOR INSULATION CODES (SECOND LETTER) .- CONDUCTOR GAUGE AND METAL CODES (THIRD LETTER) I Code I Gauge I Metal I 6 4.4 SHEATH DESIGNATION CODES (FOURTH LETTER) r Code I Sheath Designation I , _- . 13

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