ITU-T G 622-1993 CHARACTERISTICS OF 1 2 4 4 mm COAXIAL CABLE PAIRS《1 2 4 4mm同轴电缆线对的特性》.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION)45G134 TELECOMMUNICATIONSTANDARDIZATION SECTOROF ITU42!.3-)33)/.G0G0-%$)!G0G0#(!2!#4%2)34)#3#(!2!#4%2)34)#3G0G0/ further amended)The following Recommendation describes the 1.2/4.4 mm coaxial pair recommended by the CCITT for theinternational service. The use of
2、this pair is defined in Tables 1 and 2 given in the introduction to Subsection 6.2. Whenthe possibility of television or digital transmission has been envisaged, it is expressly mentioned in each provision.1 Characteristics of the pair1.1 Electrical characteristics of the coaxial pair1.1.1 Character
3、istic impedanceThe nominal real part of the characteristic impedance is 75 at 1 MHz.The tolerance is 1.5 for telephony or 1 for pairs that may be used for television transmissions.For information, the impedance values in Table 1/G.622 were obtained at various frequencies on coaxial pairsmanufactured
4、 by different processes.TABLE 1/G.622Means real part of the characteristic impedance measured at various frequenciesFrequency (MHz) 0.06 0.1 0.2 0.5 1 1.3 4.5 12 18Impedance () 79.8 78.9 77.4 75.8 75 74.8 74 73.6 73.51.1.2 Attenuation coefficientThe nominal value of the attenuation coefficient of th
5、e pair, at 12 MHz and at 10C, is 18.0 0.4 dB/km.Table 2/G.622 shows the general trend of the variation of the attenuation coefficient as a function of frequencyfor all pairs which conform to the present Recommendation.TABLE 2/G.622Nominal values of the attenuation coefficient at various frequenciesF
6、requency (MHz) 0.06 0.1 0.3 0.5 1 1.3 4.5 12 18Attenuation coefficient (dB/km) 1.5 1.8 2.9 3.7 5.3 6.0 11 18 22The following equation, in which is expressed in dB/km and f in MHz, gives an approximation of theattenuation coefficient from 2 MHz onwards:= + +0 07 5 15 0 005 .ff.2 Fascicle III.3 - Rec.
7、 G.622Note - By way of information, Annex A shows the values measured or specified in various countries, with thecorresponding deviations or tolerances. In any case, amplifier design must be based on the values measured on the typeof cable which will actually be used.1.1.3 Attenuation distortionThe
8、attenuation distortion required in particular for digital transmission is checked by calculating the ratioff12between attenuation values f 1and f 2measured at two frequencies f1and f2.One of the following three limits should be observed:1)The attenuation distortion is checked in the factory on a sma
9、ll percentage of factory lengths.1.2 Mechanical construction of the coaxial pairThe nominal dimensions are the following:- diameter of solid copper centre conductor: 1.2 mm;- inner diameter of outer conductor: 4.4 mm.The cylindrical outer conductor is obtained using a copper tape with a thickness of
10、 0.15 or 0.18 mm.2 Cable specification2.1 Characteristic impedanceTo check that the value given in 1.1.1 above is met, pulse measurements can be made. The real part ofimpedance at 1 MHz is to be taken as meaning the resistive component of the impedance at 1 MHz of the network withthe best balance ag
11、ainst the coaxial pair measured.2.2 Impedance regularityRoutine control measurements of impedance regularity are carried out by means of pulse echometers from oneor both ends of the factory lengths. The echo curve should be plotted with correction in amplitude and if possible inamplitude and phase.
12、If the equivalent resistance error is measured, it must be corrected. However, for routinemeasurements, correction may be dispensed with if the test length is so short that the correction is small.Table 3/G.622 shows the various values to be obtained according to the purpose for which the cable is i
13、ntended._1)These three conditions are equivalent. Accordingly, only one of them is to be used for checking attenuationdistortion.Fascicle III.3 - Rec. G.622 3TABLE 3/G.622Echometric measurement of factory lengthsType of system Analogue DigitalFrequency range or bit rate 0.06-6 MHz 0.3-20 MHzMedium b
14、itrate(6-34 Mbit/s)High bit rate(140 Mbit/s)Maximum pulse duration 100 ns 50 ns 50 ns 10 nsGeneral Maximum100% 45 dB 48 dB 48 dB 48 dBprovisions peak95% 50 dB 50dB 50dB 49dBAdditionalAMean of3 maximum peaks48dB 51dB 51dB 47 dBoptionalprovisionsa)B Equivalentresistance error1.2 1.6 1.6 2.5 a)It is en
15、ough to check that one of the two conditions A or B is fulfilled.Note 1 - For 0.06-1.3 MHz analogue systems, the provisions are the same as for 0.06-6 MHz analogue systems.Note 2 - To detect systematic irregularities, return wave attenuation measurements should be carried out on a small proportion o
16、ffactory lengths. The limits to be observed are set out in Table 4/G.622.Note 3 - The percentage figures given in the table relate to all the pairs of a batch of cables submitted for control or delivered atthe same time.4 Fascicle III.3 - Rec. G.622TABLE 4/G.622Return wave attenuation on irregularit
17、iesType of system DigitalFrequency range or bit rateMedium bit rate(6-34 Mbit/s)High bit rate(140 Mbit/s)Percentage of lengths concerned about 5% about 5%Frequency band explored 1-40 MHz 20-100 MHzMinimum measured value100% 20 dB 20 dB95% 23 dB 23 dB2.3 Attenuation coefficientThe attenuation of pair
18、s should be such as to allow compliance with the provision of 3.3 below2).If reference is made to the length measured along a generatrix of the cable sheath, the attenuation coefficientshould be multiplied by the take-up factor, the values of which for different numbers of pairs contained in the cab
19、le aregiven as an indication in Table 5/G.622.TABLE 5/G.622Take-up factor valuesNumber of pairsin cableTake-up factorlast layerWeighted take-up factor,entire cable4 or 6812-1824481.0041.0051.0081.0021.0031.0031.0041.0062.4 CrosstalkThe crosstalk between pairs should be such as to allow compliance wi
20、th the provisions of 3.4 below2)._2)At this stage of manufacture, attenuation and crosstalk measurements are merely prototype measurements.Fascicle III.3 - Rec. G.622 52.5 Dielectric strengthThe pair should withstand an a.c. voltage of 1000 V r.m.s. at 50 Hz (or a d.c. voltage of 1500 V) applied for
21、 atleast one minute between the centre and outer conductors.If, in normal use, the outer conductors of the coaxial pair are not earthed, a dielectric strength test is madebetween the outer conductors and the earthed metallic sheath. The conductors of the auxiliary quads or pairs areconnected to the
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