ISO IEC 9549-1990 Information technology galvanic isolation of balanced interchange circuits《信息技术 平衡互换电路的电隔离》.pdf
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1、INTERNATIONAL STANDARD ISO/IEC 9549 First edition 1990-10-15 Information technology - Galvanic isolation of balanced interchange circuits SystPmes de traitement de /information - isolation galvanique des circuits dhchange kquilibrh Reference number ISWIEC 9549:1990(E) ISOliEC 9549:1990(E) Foreword I
2、S0 (the International Organization for Standardization) and IEC (the International Electrotechnical Commission) form the specialized system for worldwide standardization. National bodies that are members of IS0 or IEC participate in the development of International Standards through technical commit
3、tees established by the respective organization to deal with particular fields of technical activity. IS0 and IEC technical com- mittees collaborate in fields of mutual interest. Other international or- ganizations, governmental and non-governmental, in liaison with IS0 and IEC, also take part in th
4、e work. In the field of information technology, IS0 and IEC have established a joint technical committee, ISO/IEC JTC 1. Draft International Standards adopted by the joint technical committee are circulated to national bod- ies for voting. Publication as an International Standard requires ap- proval
5、 by at least 75 % of the national bodies casting a vote. International Standard ISO/IEC 9549 was prepared by Joint Technical Committee ISO/IEC JTC 1, Information technology. Annex A of this International Standard is for information only 8 ISOllEC 1990 All tights reserved. No part of this publicanon
6、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 l Case Postale 56 l CH-1211 Genkve 20 l Switzerland Printed in Switzerland ISOllEC 9549:1990(E) Introd
7、uction This international Standard specifies a method of galvanically isolating signal exchanges on balanced interchange circuits using optocoupler integrated circuit technology. It may be applied for data transmission in a two-condition code (e.g. NRZ). Galvanic isolation of interchange circuits is
8、 required whenever the intercommunicating devices are connected t0 different mains supplies. In this case, the ground potential difference between the earthing systems frequently iS higher than the common mode voltage specified for the interchange circuit receiver. Transmission errors and even damag
9、e to the receiver may be the result. The optocoupler type of galvanic isolation may also be used when high external signal interferences have to be minimized. This situation may exist with iong interchange circuits and operation at higher data signalling rates. The specifications of this Internation
10、al Standard are compatible with both IS0 8482 (multipoint connection) and CCITT Recommendation V.11 (point-to-point connection) because of appiication flexibility and the fact that there is not much difference in the parameters for the component design. Bidirectional data transmission is provided an
11、d requires the implementation of an isdated generator and an isolated receiver. Their unbalanced interfaces are not specified in order to provide flexibility for implementations and device manufacturers. iii INTERNATIONAL STANDARD ISOllEC 9549:1990(E) Information technology - Galvanic isolation of b
12、alanced interchange circuits 1 Scope 1 .l This International Standard specifies galvanic isolation of balanced interchange circuits using optocoupler integrated circuit technology and is provided for data transmission in the two-condition code (e.g. NRZ). The electrical characteristics are compatibl
13、e with both IS0 8482 and CCITT Recommendation V.11 NOTE - Compatible means to allow interoperation with devices having interchange circuits conforming to the electrical characteristics specified in the referenced standards. Annex A shows interoperation with CCITT Recommendation V. 11 interchange cir
14、cuits in a point-to-point environment. 1.2 The specifications are given in terms of parameters and measurements for an isolated generator and an isolated receiver. These components may be used in twisted pair 2-wire or 4-wire point-to-point connections up to 1 000 m or multipoint connections up to 5
15、00 m for speeds up to 2 Mbit/s for point-to-point connections and 1 Mbit/s for multipoint connections. For data signalling rates up to 20 kbit/s, device manufacturers may optimize their component design. 1.3 Options are provided to meet special application requirements, such as - isolated generator
16、high impedance control; - isolated receiver circuit failure detection capability; - line termination in point-to-point configuration 1.4 This International Standard does not describe a complete equipment interface in terms of mechanical, electrical and functional /procedural specifications. 2 Normat
17、ive references The following standards contain provisions which, through reference in this text, constitute provisions Of this International Standard. At the time of publication, the editions indicated were valid. All standards are subject to revision, and parties to agreements based on this Interna
18、tional Standard are encouraged to investigate the possibility of applying the most recent editions of the standards listed below. Members of IEC and IS0 maintain registers of currently valid International Standards. IS0 8482 : 1987, Information processing systems - Data communication - Twisted pair
19、multipoint interconnections. CCITT Recommendation V. 11 : 1988, Electrical characteristics for balanced double-current interchange circuits for general use with integrated circuit equipment in the field of data communications. ISOllEC 95493 990(E) 3 Symbolic representation of optocoupler components
20、3.1 Isolated generator E 0 0 AB Balanced signal output C Zero volt reference interchange point D,D Floating power supply E Unbalanced station power supply F Unbalanced signal input Unbalanced high impedance control Isolated generator Figure 1 - Symbolic representation of isolated generator 3.2 Isola
21、ted receiver r - _- - I 7 1 , Unced Interface A 8 C-L-J / it 1 - I t -Ggnal grounds- 7 -i D D E A,B Balanced signal input A,B + B” Balanced terminated signal input option C Zero volt reference interchange point D,D Floating power supply E Unbalanced station power supply F Unbalanced signal output R
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