ITU-T G 611-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS FOR ANALOGUE TRANSMISSION《用于模拟传输的对称电缆线对的特性》.pdf
《ITU-T G 611-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS FOR ANALOGUE TRANSMISSION《用于模拟传输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 611-1993 CHARACTERISTICS OF SYMMETRIC CABLE PAIRS FOR ANALOGUE TRANSMISSION《用于模拟传输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 Cable specification - Examples of the electric characteristics of a star-quad cable designed to provide 12,24, 36, 48, 60
2、or 120 carrier telephone channels on each quad pair1.1 Types of cableAdministrations which decide to equip their symmetric pair cable network should, wherever possible, choosethose which conform to the types of cable defined below.New cables laid in the European and North-African international telep
3、hone network include unloadedsymmetric pairs, designed to be used for 12, 24, 36, 48, 60 or 120 carrier telephone channels on each pair. These pairsare laid up in star quads and all unloaded pairs of the same cable are one of the types whose nominal characteristics areshown in Table 1/G.611.It is es
4、sential that a repeater section crossing a frontier should be of a uniform type throughout its length. Whena frontier section is between a large and a small country, the Administration of the larger country should do everythingpossible to use whichever of the three types has been adopted by the smal
5、ler country, so as not to oblige theAdministrations of small countries to use sections of international cable of a different type from that of their nationalcables.Note 1 - Some Administrations, by paying special attention to crosstalk balance and adopting appropriaterepeater spacing, have been able
6、 to set up systems with 2 supergroups, in accordance with Recommendation G.322, onpaper-insulated symmetric pairs conforming with this present specification.Note 2 - It is also possible to set up 2 supergroup systems that conform with Recommendation G.322 on pairs oftype II bis and type III bis. Typ
7、e II bis pairs are insulated by polythene and type III bis pairs by styroflex.TABLE 1/G.611Type I Type II Type IIbisType III Type III bisDiameter of conductors (mm)Effective capacity (nF/km)Characteristic impedance ()to 60 kHzto 120 kHzto 240 kHzto 550 kHzAttenuation per unit length at 10 C in dB/km
8、to 60 kHzto 120 kHzto 240 kHzto 552 kHz0.9331531482.33.11.226.51781741722.02.94.81.2212062032001981.52.13.11.3281701651631.82.74.41.3221961931901881.42.03.02 Fascicle III.3 - Rec. G.6111.2 Regularity of factory lengthsThe regularity may be characterized by one or other of the equivalent methods belo
9、w, the choice of which is leftto the Administrations concerned.1.2.1 Effective capacityThe “effective capacity“ is measured between the two conductors of the pair, all other cable conductors beingconnected together and to the sheath.Ratios of the effective capacityType I cable - The average of the e
10、ffective capacities of all the pairs in any factory length should not differ fromthe nominal value by more than 5%.In any factory length, the difference between any individual value of effective capacity and the average valueobtained for this factory length should not exceed 7.5%; the arithmetic mea
11、n of the magnitudes of these differencesshould not exceed 2.5%.Types II, II bis, III and III bis cables - The average effective capacity of any length should not differ by morethan 3% from the nominal value.In any length, the difference between the effective capacity of any pair and the average capa
12、city for the cablelength should not exceed 5%.1.2.2 Impedance (types II, II bis, III and III bis cables)The real part of the characteristic impedance of any circuit, measured with a frequency of 120 kHz, should notdepart by more than 5% from the mean value of all the pairs of the first manufacturing
13、 batch of each type. This meanvalue should not depart by more than 5% from the nominal value at 120 kHz.The impedance will be measured on the factory lengths using a bridge, the circuits being terminated by animpedance equal to that which is measured by the bridge.1.3 CrosstalkThe quality of the cab
14、le from the point of view of crosstalk may be characterized by one or other of the twoequivalent methods below, the choice of which is left to the Administrations concerned.1.3.1 Direct measurements of crosstalkFor a factory length of 230 metres the crosstalk between any two side circuits should sat
15、isfy the followingconditions:- far-end crosstalk ratio should be greater than 68 dB;- near-end crosstalk attenuation should be greater than 56 dB.For cables to be used with 5 groups or 2 supergroups these values should hold up to 240 kHz; and for cableswith two groups, up to 120 kHz.During these mea
16、surements, the circuits will be terminated by the real part of the nominal impedance for thefrequency considered.For factory lengths greater than 230 metres, the above limits will be reduced byL being the length in metres. Lengths shorter than 230 metres should satisfy the same conditions as a lengt
17、h of230 metres.Fascicle III.3 - Rec. G.611 31.3.2 Capacity unbalance and mutual inductancesAll the capacity unbalance measurements should be made with an alternating current of 800 Hz. The mutualimpedance measurements should be made with an alternating current of 5000 Hz. All the measurements should
18、 be madeat the ambient temperature, without applying corrections; but in case of dispute, the results obtained at 10 C will beconsidered as final. All the conductors, other than those under test, should be connected to the cable sheath.For a factory length of 230 metres the capacity unbalance should
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