ITU-T V 10-1993 Electrical Characteristics for Unbalanced Double-Current Interchange Circuits Operating at Data Signalling Rates Nominally up to 100 kbit s - Data Communication ove pp《.pdf
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1、ITU-T RECUN*V.LO 93 4862591 058q528 T4b H INTERNATIONAL TELECOMMUNICATION UNION ITU=T TELECOM MUN I CATION STANDARDIZATION SECTOR OF ITU DATA COMMUNICATION OVER THE TELEPHONE NETWORK v.l o (03193) ELECTRICAL CHARACTERISTICS INTERCHANGE CIRCUITS OPERATING AT DATA SIGNALLING RATES NOMINALLY UP TO 100
2、kbits FOR UNBALANCED DOUBLE-CURRENT ITU-T Recommendation V.1 O (Previously “CCIlT Recommendation”) ITU-T RECMN+V-LO 93 m 4862593 0584529 982 m FOREWORD The ITU Telecommunication Standardization Sector (ITU-T) is a permanent organ of the Intemational Telecom- munication Union. The ITU-T is responsibl
3、e for studying technical, operating and tariff questions and issuing Recommendations on them with a view to standardizing telecommunications on a worldwide basis. The World Telecommunication Standardization Conference (WTSC), which meets every four years, established the topics for study by the ITU-
4、T Study Groups which, in their turn, produce Recommendations on these topics. ITU-T Recommendation V.10 was revised by the ITU-T Study Group XVII (1988-1993) and was approved by the WTSC (Helsinki, March 1-12, 1993). NOTES 1 As a consequence of a reform process within the International Telecommunica
5、tion Union (ITU), the CCIT ceased to exist as of 28 February 1993, In its place, the ITU Telecommunication Standardization Sector (ITU-T) was created as of 1 March 1993. Similarly, in this reform process, the CCIR and the IFRB have been replaced by the Radiocommunication Sector. In order not to dela
6、y publication of this Recommendation, no change has been made in the text to references containing the acronyms “CCITT, CCIR or IFRE!” or their associated entities such as Plenary Assembly, Secretariat, etc. Future editions of this Recommendation will contain the proper terminology related to the ne
7、w ITU structure. 2 telecommunication administration and a recognized operating agency. In this Recommendation, the expression “Administration” is used for conciseness to indicate both a O ITU 1994 All rights reserved. No part of this publication may be reproduced or utilized in any form or by any me
8、ans, electronic or mechanical, including photocopying and microfilm, without permission in writing from the ITU. ITU-T RECNNaV-LO 73 48b259L 0584530 bT4 1 2 3 4 5 6 7 8 9 10 11 12 CONTENTS Introduction Field of application Symbolic representation of an interchange circuit . Generator polarities and
9、receiver significant levels . 4.1 Generator 4.2 Receiver Generator 5.1 Output impedance . 5.2 Static reference measurements 5.3 Generator output rise-time measurement Load . 6.1 Characteristics . 6.2 Receiver input voltage - Current measurements 6.3 DC input sensitivity measurements 6.4 Input balanc
10、e test Environmental constraints Circuit protection . Category i and category 2 receivers Signal common return Detection of generator power-off or circuit failure Measurements at the physical interchange point 12.1 Listing of essential measurements 12.2 Listing of optional measurements . Annex A . C
11、ompatibility with other interfaces . Compatibility of Recommendation V . 10 and Recommendation V . 1 1 interchange circuits in the same interface . Recommendation V . 10 interworking with Recommendation V . 11 Recommendation V.10 interworking with Recommendation V.28 Annex B - Considerations for coa
12、xial cable applications - V.10 COAXIAL Appendix I - Waveshaping . Appendix II - Cable Guidelines Reference . A . i A.2 A.3 Page 1 1 2 2 2 2 3 3 4 6 7 7 7 7 8 9 9 10 11 12 12 12 13 13 13 13 13 15 16 17 18 Recommendation V.10 (03/93) i ITU-T RECMN*V.LO 93 I 4862591 0584533 530 I Recommendation V.10 EL
13、ECTRICAL CHARACTERISTICS FOR UNBALANCED DOUBLE- CURRENT INTERCHANGE CIRCUITS OPERATING AT DATA SIGNALLING RATES NOMINALLY UP TO 100 kbit/sl) 2) (Geneva, 1976; amended at Geneva, 1980, at Melbourne, 1988 and Helsinki, 1993) 1 Introduction This Recommendation deals with the electrical characteristics
14、of the generator, receiver and interconnecting leads of an unbalanced interchange circuit employing a differential receiver. In the context of this Recommendation an unbalanced interchange circuit is defined as consisting of an unbalanced generator connected to a receiver by an interconnecting lead
15、and a common return lead. Annexes and appendices are provided to give guidance on a number of application aspects as follows: Annex A Annex B Appendix I Waveshaping Appendix II Cable guidelines NOTE - Generator and load devices meeting the electrical characteristics of this Recommendation need not o
16、perate over the entire data signalling rate range specified. They may be designed to operate over narrower ranges to satisfy specific requirements more economically, particularly at lower data signalling rates. The interconnecting cable is normally not terminated, but the matter of terminating coaxi
17、al interconnecting cable is dealt with in Annex B. Where the interchange circuit incorporates the special provisions for coaxial applications with cable termination this shall be referred to as “complying with Recommendation V. 10 (COAXIAL)”. Reference measurements are described which may be used to
18、 verify certain of the recommended parameters but it is a matter for individual manufacturers to decide what tests are necessary to ensure compliance with this Recommendation. Compatibility with other interfaces Considerations for coaxial cable applications - V. 10 COAXIAL 2 Field of application The
19、 electrical characteristics specified in this Recommendation apply to interchange circuits operating with data signalling rates up to 100 kbit/s. This Recommendation is not intended to apply to equipment implemented in discrete component technology, for which the electrical characteristics covered b
20、y Recommendation V.28 are more appropriate. Typical points of application are illustrated in Figure 1. Whilst the unbalanced interchange circuit is primarily intended for use at the lower data signalling rates, its use should be avoided in the following cases: 1) 2) 3) where the interconnecting cabl
21、e is too long for proper unbalanced circuit operation; where extraneous noise sources make unbalanced circuit operation impossible; where it is necessary to minimize interference with other signals. Whilst a restriction on maximum cable length is not specified, guidelines are given with respect to c
22、onservative operating distance as a function of data signalling rates (see Appendix II). *) This Recommendation is also designated as X.26 in the X-Series Recommendations. 2, Signalling rates above the suggested 100 kbit/s may also be employed, but the maximum suggested operating distances should be
23、 shortened accordingly (see Figure 11-1). Recommendation V.10 (03/93) 1 T1400040-93/dOl FiGRE lN.10 Typical applications of unbalanced interchange circuits 3 Symbolic representation of an interchange circuit See Figure 2. For data transmission applications, it is commonly accepted that the interface
24、 cabling is provided by the DE. This introduces the line of demarcation between the DTE plus cable and the DCE. This line is also called the interchange point and physically implemented in the form of a connector. The applications also require interchange circuits in both directions. This leads to a
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