ITU-T G 613-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS USABLE WHOLLY FOR THE TRANSMISSION OF DIGITAL SYSTEMS WITH A BIT RATE OF UP TO 2 Mbits《可全部用于传输最高到2Mbit s数字系统的对称电缆线对的特性》.pdf
《ITU-T G 613-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS USABLE WHOLLY FOR THE TRANSMISSION OF DIGITAL SYSTEMS WITH A BIT RATE OF UP TO 2 Mbits《可全部用于传输最高到2Mbit s数字系统的对称电缆线对的特性》.pdf》由会员分享,可在线阅读,更多相关《ITU-T G 613-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS USABLE WHOLLY FOR THE TRANSMISSION OF DIGITAL SYSTEMS WITH A BIT RATE OF UP TO 2 Mbits《可全部用于传输最高到2Mbit s数字系统的对称电缆线对的特性》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU42!.3-)33)/.G0G0-%$)!G0G0#(!2!#4%2)34)#3?#(!2!#4%2)34)#3G0G0/&G0G039-%42)#G0G0#!“,%0!)23G0G053!“,%G0G07(/,9G0G0&/2G0G04(%42!.3-)33)/.G0G0/&G0G0$)4!,G0G03934%-3G0G07)4(!G0G0“)4G0G02!4%G0G0/&G0G050G0G04/G0G0 G0-B
2、ITS)45G134G0G0RecommendationG0G0 (Extract from the “LUEG0“OOK)NOTES1 ITU-T Recommendation G.613 was published in Fascicle III.3 of the Blue Book. This file is an extract fromthe Blue Book. While the presentation and layout of the text might be slightly different from the Blue Book version, theconten
3、ts of the file are identical to the Blue Book version and copyright conditions remain unchanged (see below).2 In this Recommendation, the expression “Administration” is used for conciseness to indicate both atelecommunication administration and a recognized operating agency. ITU 1988, 1993All rights
4、 reserved. No part of this publication may be reproduced or utilized in any form or by any means, electronic ormechanical, including photocopying and microfilm, without permission in writing from the ITU.Fascicle III.3 - Rec. G.613 1Recommendation G.613Fascicle III.3 - Rec. G.613CHARACTERISTICS OF S
5、YMMETRIC CABLE PAIRSUSABLE WHOLLY FOR THE TRANSMISSION OF DIGITAL SYSTEMSWITH A BIT RATE OF UP TO 2 Mbits(Malaga-Torremolinos, 1984)1 PreambleThis Recommendation deals with cables designed for the transmission of standard digital systems(Recommendations of the G.900 series), although these cables ca
6、n also be used to transmit digital signals with a lowerbit rate and voice frequency signals. The cables described carry signals in both transmission directions simultaneously.The provisions of this Recommendation apply to cables designed to allow for digital operation of all the cable circuits.Howev
7、er, some of the provisions may be used to assess the possibility of (partial or full) digital operation of existingcables.2 Parameters to be measured2.1 Direct current resistanceThe following formula is used to correct the value Rtof direct current resistance measured at tC for 20 C:R20= Rt /(l + 0.
8、004 (t - 20)2.2 Capacitance per unit lengthThis is measured at 800 Hz or 1000Hz.2.3 Attenuation coefficientThe value of the attenuation coefficient is obtained either by direct measurement of the attenuation or bycalculation on the basis of the mutual capacitance and direct current resistance of the
9、 pair. The attenuation coefficient ismeasured at one frequency only, f0, near the timing half-frequency.System Recommendation f01544 kbit/s G.951 772 kHz2048 kbit/s G.952 1 MHzFor cables with polyolefin insulation, the value of the attenuation coefficient at frequency f (for values of fabove with a
10、few hundred kHz) can be related to0by the equation The value of the attenuation coefficient measured at tC is corrected for 20 C by the equation:20= t /(1 + 0.002 (t - 20)2 Fascicle III.3 - Rec. G.6132.4 Characteristic impedance2.4.1 Echometric measurementWhen a pulse echometer is used, the impedanc
11、e of the pair measured must be compensated by a calibratedbalancing network which can be set in steps of about 0.5 . Pulse duration will be equal to or less than 500 ns. With thismethod, which is both fast and simple, the value of the end impedance of the pair measured is read off directly on thesca
12、le of the balancing network.2.4.2 Sinusoidal measurementIn this case, the pair tested will be terminated across an impedance, which is constantly equal to that measuredby the bridge, unless it is long enough for the result of the measurement to be independent of end impedance (as forelementary cable
13、 sections).2.5 CrosstalkCrosstalk can be measured sinusoidally or digitally. The assignment of pairs to the direction of transmissiondepends on the structure and type of manufacture of the cable.2.5.1 Sinusoidal measurement2.5.1.1 Far-end crosstalkThe measurements are made between pairs assigned to
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