ITU-T G 612-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS DESIGNED FOR THE TRANSMISSION OF SYSTEMS WITH BIT RATES OF THE ORDER OF 6 TO 34 Mbit s《用于传输6~34Mbit s系统的对称电缆线对的特性》.pdf
《ITU-T G 612-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS DESIGNED FOR THE TRANSMISSION OF SYSTEMS WITH BIT RATES OF THE ORDER OF 6 TO 34 Mbit s《用于传输6~34Mbit s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 612-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS DESIGNED FOR THE TRANSMISSION OF SYSTEMS WITH BIT RATES OF THE ORDER OF 6 TO 34 Mbit s《用于传输6~34Mbit s系统的对称电缆线对的特性》.pdf(7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/ amended at Geneva, 1980)1 PreambleThis Recommendation relates to symmetric pair cables which have been developed for the transmission ofsignals with
2、bit rates of the order of 6 to 34 Mbit/s, but they are not ruled out for the transmission of lower or higher bitrates, subject to the use of an appropriate regeneration section; in most cases they can also be used for basebandtransmission of videophone or television signals.These cables fall into tw
3、o categories, according to whether or not the cable is intended for use in both directionsof transmission in the same cable.2 Parameters to be measuredThose parameters which, for digital system transmission, have to be measured by a particular method or atfrequencies different from those defined in
4、Recommendation G.611, are: characteristic impedance, attenuationcoefficient, and far-end crosstalk between pairs on the same direction of transmission. If the cable is intended for usewith both directions of transmission within the same cable, it is also necessary to measure the near-end crosstalk b
5、etweenpairs intended for different directions of transmission.2.1 Characteristic impedanceThe characteristic impedance may be measured:- either in the sinusoidal mode, when the measured pair will be terminated by an impedance constantlyequal to that measured by the bridge, except when the length is
6、sufficient for the measurement result to beindependent of the termination impedance;- or by a pulse echo meter1), when the impedance of the pair being measured is compensated by anadjustable balancing network graduated to show the impedance value. The pair being measured isterminated by an identical
7、 network.2.2 Attenuation coefficientThe attenuation per km of the pairs is derived from that value to be obtained on an elementary cable section,allowance being made for the tolerance accepted on the length of these sections.Note - In the case of looped measurement, a check should be carried out to
8、ensure that the near-end crosstalkattenuation between the ends of the circuit being measured is sufficient.2.3 CrosstalkCrosstalk may be specified either in sinusoidal mode, at a frequency near the timing half-frequency of thesystem concerned, or in digital mode2)._1)This method is similar to the on
9、e used for coaxial pairs, but with a symmetrical measuring head andnetworks. The pulse duration is equal to 100 ns; the echo is not corrected.2)An example of a digital technique is given in Supplement No. 19.2 Fascicle III.3 - Rec. G.6122.3.1 Far-end crosstalk measurementThe far-end crosstalk measur
10、ements are carried out on pairs used in the same direction of transmission at afrequency above about 100 kHz; if this frequency is not the timing half-frequency of the system, the value to bespecified will be corrected to the factor 20 log10f 3).2.3.2 Near-end crosstalk measurementsIf it is intended
11、 to transmit in both directions on the same cable, these measurements are conducted on aprototype length, either in sinusoidal mode or digital mode, between pairs used for opposite directions of transmission.3 Description of pairs and cablesAdministrations which decide to use symmetrical pairs to tr
12、ansmit digital signals with a bit rate of the order of 6to 34 Mbit/s should, wherever possible, choose one of the types of cable described in 3.1 and 3.2 below.3.1 Cable designed for use with one cable for each direction of transmission3.1.1 The basic characteristics of the pairs are given in Table
13、1/G.612.3.1.2 The characteristics of cables constructed with these pairs are given in Table 2/G.612.3.2 Cables designed for transmission in both directions in the same cableTables 3/G.612 and 4/G.612 indicate the characteristics of the pairs which make up cable pairs and quad cablesrespectively.All
14、these cables consist of bundles protected by one or more copper or aluminium screens, the pairs in eachbundle being used for the same direction of transmission. For this reason, near-end crosstalk values relate only to pairs indifferent bundles.Note 1 - To make the presentation of Tables 3/G.612 and
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