ITU-T G 623-1993 CHARACTERISTICS OF 2 6 9 5 mm COAXIAL CABLE PAIRS《2 6 9 5mm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)1 Pair characteristicsIt is necessary to have throughout the international network types of coaxial pairs having the same electricalc
2、haracteristics, in order to enable transmission systems to operate on any cable meeting the specifications of thisRecommendation. The use of these pairs is defined by Tables 1/G.623 and 2/G.623 given in the introduction to 6.2.1.1 Electrical characteristics of the coaxial pair1.1.1 Characteristic im
3、pedanceThe characteristic impedance of the coaxial pair follows a well-defined law depending on frequency given by:where f is the frequency measured in MHz1). There is therefore no point in specifying values at all frequencies.The figure of 74.4 (impedance at infinite frequency) is subject to a tole
4、rance of 1 .1.1.2 Attenuation coefficientThe nominal attenuation coefficient of the coaxial pair at a frequency of 60 MHz and a temperature of 10 Cshould be within the limits of 18.00 0.3 dB/km2).The rate of the variation of the attenuation with frequency, for a nominal value of 18.00 dB/km at 60 MH
5、z, isindicated in Table 1/G.623.TABLE 1/G.623Nominal attenuation coefficient at various frequenciesFrequency (MHz) 0.06 0.3 1 4 12 20 40 60 150 300Attenuation (dB/km) 0.59 1.27 2.32 4.62 8.01 10.35 14.67 18.00 28.6 40.7_1)This formula is equivalent to Zfj=+ 74 4 0 92 1.(./ )( ). If this latter formu
6、la is used, a correcting factorshould be applied to the tolerance indicated in the text.2)For internal reasons, some Administrations considered it advantageous to use pairs of larger dimensions, withsmaller attenuation, making it possible to use longer repeater sections (2 km). Cables manufactured b
7、y assembly of thesepairs may be regarded as meeting the requirements of this Recommendation for 60-MHz systems provided the electricalcharacteristics of the repeater sections built up with these cables comply with this Recommendation and provided theline equipments are exactly the same as those used
8、 with the cables referred to in this Recommendation. The FrenchAdministrations 3.7/13.5-mm pairs described in 1 fall within this category.2 Fascicle III.3 - Rec. G.623The following equation, in which is expressed in dB/km and f in MHz, gives an approximation of theattenuation coefficient from 1 MHz
9、onwards:= + +0 01 2 3 0 003 .ffNote - In designing amplifiers, the values measured on the cable to be used must be taken as reference.1.1.3 Attenuation coefficient tolerances - Attenuation distortionTo guarantee proper adaptation between the coaxial pair and the transmission equipment, in addition t
10、o thetolerances at frequency 60 MHz, set at 0.3 dB/km, it is also necessary to establish the limits of attenuation distortionaccording to frequency.Table 2/G.623 gives the nominal values and tolerances of the quantity f(in mB km-1 MHz-1/2)at various frequencies (f in MHz).TABLE 2/G.623Nominal values
11、 and tolerances of the quantity fcharacterizing attenuation distortion at various frequenciesFrequency (MHz) 4 12 20 40 60Nominal value 1.1 1 0.8 0.4 0Tolerances 1.5 1.1 0.8 0.4 0To check the attenuation distortion beyond 60 MHz, which is necessary in particular for digital transmission, itis necess
12、ary to calculate the ratio between the attenuation values measured at the frequencies of 240 MHz and 60 MHz(after eliminating any peaks). The limit to be observed is:The attenuation distortion is checked in the factory on a small percentage of factory lengths.1.2 Mechanical construction of coaxial p
13、airsa) The inner conductor is a solid copper wire 2.6 mm in diameter.b) The insulation is such that the permittivity of the combination of gas and low-loss solid dielectric materialis low enough to meet the requirements of this specification.c) The outer conductor consists of a copper tape 0.25-mm t
14、hick formed into a cylinder of internal diameter9.5 mm around the insulation.d) For reasons of crosstalk, the outer conductor should be surrounded by soft steel tapes.Another form of construction having the same electrical characteristics but with an inner copper conductor of2.8-mm diameter and an a
15、luminium outer conductor of 10.2-mm internal diameter is used by some Administrations. Thistype of construction is described in detail in Annex A.Fascicle III.3 - Rec. G.623 32 Cable specification2.1 Characteristic impedanceTo check that the value given in 1.1.1 above is met, either sine-wave signal
16、 measurements or pulsemeasurements can be made.For sine-wave signal measurements, the check is often made in terms of the smooth impedance/frequencycurve.For pulse measurements, a sine-squared pulse having a half-amplitude duration of less than 100 ns should beused. One may either balance the impeda
17、nce against a variable reference impedance or measure the reflection coefficientagainst a fixed reference standard.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 sho
18、uld be plotted with correction in amplitude and if possible inamplitude and phase. If the equivalent error is measured, it must be corrected. However, for routine measurements,correction may be dispensed with if the test length is so short that the correction is small.Table 3/G.623 shows the various
19、 values to be obtained, according to the purpose for which the cable isintended.Note 1 - For 0.06-6 MHz analogue systems, the provisions are the same as for 0.3-20 MHz analogue systems.Note 2 - To detect systematic irregularities, return wave attenuation measurements should be carried out on asmall
20、proportion of fabricator lengths. The limits to be observed are given in Table 4/G.623.Note 3 - The percentage figures given in the tables relate to all the pairs of a batch of cables submitted forcontrol or delivered at the same time.TABLE 3/G.623Echometric measurement of factory lengthsType of sys
21、tem Analogue DigitalFrequency range or bit rate 0.3-20 MHz 4-70 MHzHigh bit rate(140 Mbit/s)Very high bitrate(565 Mbit/s)Maximum pulse duration 50 ns 10 ns 10 ns 10 ns a)General Maximum100% 50 dB 48 dB 48 dBprovisions peak95% 56 dB 54 dB b)54 dB b)AdditionalA Mean of 3 maximum peaks 53 dB 51 dB 51 d
22、Boptionalprovisionsc)B EquivalentresistanceerrorL 500m0.6 0.8 0.81 1.2 1.6 1 1.2 1.6 4 Fascicle III.3 - Rec. G.623TABLE 4/G.623Measurement of factory lengths using sine-wave signalsType of system Analogue DigitalFrequency range or bite rate 0.3-20 MHz 4-70 MHz High d)Very highReturn wave attenuation
23、 on irregularitiesPercentage of lengths concerned none about5%about5%about5%Frequency band explored 4-62 MHz 20-100 MHz 62-500 MHzMinimum measured value100% 35 dB 30 dB 20 dB95% 38 dBMean return power in a 10-MHz band(Transmission of television signals in the 60-MHz system)Frequency band concerned N
24、one 52-62 MHzMean power return coefficientL 250 m 41 dB 35 dB 28 dBL 500m 40 dBNotes to Tables 3/G.623 and 4/G.623a)If investigations or definition studies show that measurements with shorter pulse durations are required, the duration of 2 nswill be adopted.b)Provided that no more than one value bet
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