ITU-T G 232-1993 12-Channel Terminal Equipments - International Analogue Carrier Systems - General Characteristics Common to All Analogue Carrier-Transmission Systems《12 路终端设备 所有模拟.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION ITU=T G.232 TELECOMMUNICATION STANDARDIZATION SECTOR OF ITU INTERNATIONAL ANALOGUE CARRIER SYSTEMS GENERAL CHARACTERISTICS COMMON TO ALL ANALOGUE CARRIER-TRANSMISSION SYSTEMS 12 - CHANNEL TERMINAL EQUIPMENTS ITU-T Recommendation G.232 (Extract from the Blue Book
2、) COPYRIGHT International Telecommunications Union/ITU TelecommunicationsLicensed by Information Handling ServicesNOTES 1 ITU-T Recommendation G.232 was published in Fascicle 111.2 of the Blue Book. This file is an extract from the Blue Book. While the presentation and layout of the text might be sl
3、ightly different from the Blue Book version, the contents of the file are identical to the Blue Book version and copyright conditions remain unchanged (see below). 2 telecommunication administration and a recognized operating agency. In this Recommendation, the expression “Administration” is used fo
4、r conciseness to indicate both a O ITU 1988,1993 All rights reserved. No part of this publication 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 ITU. COPYRIGHT International Telecommuni
5、cations Union/ITU TelecommunicationsLicensed by Information Handling ServicesRecommendation G.232 12-CHANNEL TERMINAL EQUIPMENTS (amended at Geneva, 1964; further amended) The CCITT recommends that, except in the particular cases cited in Recommendations G.234 and G.235, channel terminal equipment s
6、hould provide 12 channels in a basic group, with 4-kI-i spaced carrier frequencies, in conformity with the present Recommendation. 1 Attenuation distortion The following three conditions should be satisfied simultaneously: The variation with frequency of the mean of the overall losses of the 12 pair
7、s of channel transmitting and receiving equipments of one terminal equipment should not exceed the limits shown in Graph A of Figure K1.232. For each pair of channel transmitting and receiving equipments of one terminai equipment, the variation of overall loss with frequency should not exceed the li
8、mits shown in Graph B of Figure UG.232. For the transmitting equipment of any channel, the attenuatiodfrequency distortion should not exceed the limits in Graph C of Figure 2/G.232 where: - the fiequencies shown as abscissae are audio frequencies, before modulation, - the ordinates give the limits o
9、f relative power level measured at carrier frequency. Graph A -Limits for the average variation of overall loss of 12 pairs of equipment of one 12-channel terminal equipment CCiR. 4SZW Graph B -Limits for any pair of channel transmitting and receiving equipments FIGURE 1lG.232 Permissible limits for
10、 the variation with frequency of the overall loss of transmittingand receiving equipments of one 12-channel terminal equipment Fascicle 111.2 - G.232 1 COPYRIGHT International Telecommunications Union/ITU TelecommunicationsLicensed by Information Handling ServicesGraph C -Allowable limits for the va
11、riation, as a function of frequency, of the relative power level al the output of the sending equipment of any channel or of the receiving equipment of any channel of a 12-channel terminal For the receiving equipment of any channel, the attenuation/fiequency distortion should not exceed the limits o
12、f this same Graph C where, this time: - the frequencies shown as abscissae are audio frequencies, afier demodulation, the ordinates give the limits of relative power level measured at each frequency, at the audio output terminals. - This last recommendation (under 3) above) is based on the assumptio
13、n that the transmitting and receiving equipments will be treated on an equal footing, and that the overall tolerances will be equally shared between the transmitting and receiving sides. Note - Some Administrations use, for circuits interconnecting international centres of the higher orders, .e. CTl
14、 s and CT2s (international transit centres), channel-translating equipment that gives an improved losdfrequency response by comparison with equipment meeting the above recommendation. (See i.) Such equipment does not incorporate outband signalling. 2 Limits for the response outside the band 300 to 3
15、400 Hz The CCITT recommends that in order to secure the values referred to in Table UG.122 of Recommendation G.122 2, these terminal equipments should show a loss (and not a gain) in relation to the value for 800 Hz at all frequencies below a value fand all frequencies above a value F. For Graph B o
16、f Figure 116.232 the recommended values are the following: y= 200 Hz and F = 3600 Hz The values recommended for Graphs A and C are: Graph A: f = 250 Hz and F = 3600 Hz; Graph C:J= 200 Hz and F = 3600 Hz. 2 Fascicle 111.2 - G.232 COPYRIGHT International Telecommunications Union/ITU Telecommunications
17、Licensed by Information Handling ServicesSTDmITU-T RECMN G.232-ENGL 1993 4862591i 066775b 5T7 Frequency band 400- 500 HZ 500- 600 HZ 600- 1000 HZ 1000- 2600 HZ 2600-3000 HZ 3 Group-delay distortion Group-delay distortion 5 ms 3 ms 1.5 ms 0.5 ms 2.5 ms The group-delay distortion produced by all types
18、 of 4-kHz channel terminal equipment is normally found to be quite acceptable so that no special equalization is needed. To ensure that this remains true for the future, it is recommended that the limits in Table ilG.232 for the groupdelay distortion (relative to the minimum delay) should not be exc
19、eeded by a pair of channel transmitting and receiving equipments of one 12-channel terminal equipment. Group-delay distortion values which are encountered in practice and which are unlikely to be exceeded are 5 ms at 300 Hz and 2.5 ms at 3300 Hz. (This information may be of interest to network desig
20、ners.) TABLE UG.232 4 5 5.1 Stability of virtual camer frequencies See Recommendation G.225. Carrier leak Carrier leakr within the basic group band 60-108 kHz The carrier leaks are measured at the group distribution frame (or an equivalent point). The absolute power level of these leaks, referred to
21、 a point of zero relative level, should be lower than the following values: - - However, if the group is transmitted via open-wire lines over the whole or part of its length, and if it is desired to guard against the risk of conversations over the open-wire line being picked up by an ordinary wirele
22、ss receiver, the carrier leak must be furiher reduced. carrier leak measured on one channel: -26 dBmO; sum of carrier leak powers of the various channels, measured within a group: -20 dBmO. The place and method to be used for the supplementary suppression of carrier leak, when a group on a cable is
23、transferred to an open-wire line, should be agreed to by the Administrations concerned. Fascicle 111.2 - G.232 3 COPYRIGHT International Telecommunications Union/ITU TelecommunicationsLicensed by Information Handling ServicesSTD-ITU-T RECMN G.232-ENGL L993 YBb259L 0667757 433 5.2 Carrier leaks outsi
24、de the basic group band 60-108 wiz Carrier leaks resulting from different methods of modulation (premodulation, pregroup modulation, etc.) may fall outside the frequency band 60-108 kHz and, after group and supergroup modulation, affect adjacent groups and interfere with wideband services. In order
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