ITU-T V 31-1988 ELECTRICAL CHARACTERISTICS FOR SINGLE-CURRENT INTERCHANGE CIRCUITS CONTROLLED BY CONTACT CLOSURE《使用接点闭合控制的单流接口电路的电特性-电话网络上的数据交流 第XVII研究组 第3页》.pdf
《ITU-T V 31-1988 ELECTRICAL CHARACTERISTICS FOR SINGLE-CURRENT INTERCHANGE CIRCUITS CONTROLLED BY CONTACT CLOSURE《使用接点闭合控制的单流接口电路的电特性-电话网络上的数据交流 第XVII研究组 第3页》.pdf》由会员分享,可在线阅读,更多相关《ITU-T V 31-1988 ELECTRICAL CHARACTERISTICS FOR SINGLE-CURRENT INTERCHANGE CIRCUITS CONTROLLED BY CONTACT CLOSURE《使用接点闭合控制的单流接口电路的电特性-电话网络上的数据交流 第XVII研究组 第3页》.pdf(6页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 6 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU$!4!G0G0#/-5.)#!4)/./6%2G0G04(%G0G04%,%0(/.%G0G0.%47/2+%,%#42)#!,G0G0#(!2!#4%2)34)#3G0G0&/23).,%G13#522%.4G0G0).4%2#(!.%G0G0#)2#5)43#/.42/,%$G0G0“9G0G0#/.4!#4G0G0#,/352%)45G134G0G0RecommendationG0G06 (Extract
2、 from the “LUEG0“OOK)NOTES1 ITU-T Recommendation V.31 was published in Fascicle VIII.1 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, thecontents of the file are identical to the Blue
3、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 reserved. No part of this publication ma
4、y 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 VIII.1 - Rec. V.31 1Recommendation V.31Fascicle VIII.1 - Rec. V.31ELECTRICAL CHARACTERISTICS FOR SINGLE-CURRENT INTERCHANGECIRCU
5、ITS CONTROLLED BY CONTACT CLOSURE(Geneva, 1972)1 GeneralIn general, the electrical characteristics specified in this Recommendation apply to interchange circuitsoperating at data signalling rates up to 75 bit/s.Each interchange circuit consists of two conductors (go and return leads) which are elect
6、rically insulated fromeach other and from all other interchange circuits. A common return lead can be assigned to several interchange circuitsof a group.2 Equivalent circuit of interfaceFigure 1/V.31 shows the equivalent interchange circuit, together with the electrical characteristics laid down int
7、his Recommendation. Some electrical characteristics vary depending upon whether the signal receive side is located inthe data circuit-terminating equipment or in the data side is located in the data circuit-terminating equipment or in thedata terminal equipment. This fact is specially referred to be
8、low.3 Signal sourceThe signal source must be isolated from ground or earth irrespective of whether it is located within the datacircuit-terminating equipment or within the data terminal equipment.If the signal receive side is in the data circuit-terminating equipment, the open-contact insulation res
9、istancemeasured from either leg to ground or to any other interchange circuit shall not fall below 5 megohms and thecapacitance measured between the same points shall not exceed 1000 picofarads.Irrespective of the above, the following specifications apply to the signal source.3.1 Internal resistance
10、 of signal source R1, R0The d.c. resistance of the closed contact R1, including the resistance of the interface cable, measured at theinterface (see Figure 1/V.31), should not exceed 10 ohms within the current and voltage ranges of the signal receiveside.The d.c. resistance of the open contact R0inc
11、luding the insulation resistance of the interface cable should notfall below 250 kilohms when measured at the interface (see Figure 1/V.31) within the voltage range of the signal receiveside.3.2 Capacitance of signal source CgThe capacitance of the signal source Cgincluding that of the interface cab
12、le, measured at the interface (seeFigure 1/V.31), should not exceed 2500 picofarads.2 Fascicle VIII.1 - Rec. V.31R1= internal resistance of the signal source in the closed contact conditionR0= internal resistance of the signal source in the open contact conditionCg= capacitance of signal sourceCr= c
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