ITU-T Q 553-2001 Transmission Characteristics at 4-Wire Analogue Interfaces of Digital Exchanges - Series Q Switching and Signalling Digital Exchanges - Transmission Characteristic.pdf
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1、INTERNATIONAL TELECOMMUNICATION UNION ITU-T TELECOM M UN I CAT I ON STANDARDIZATION SECTOR OF ITU SERIES Q: SWITCHING AND SIGNALLING Digital exchanges - Transmission characteristics Q.553 (1 1/2001) - Transmission characteristics at 4-wire analogue interfaces of digital exchanges ITU-T Recommendatio
2、n Q.553 ITU-T Q-SERES RECOMMENDATIONS SWITCHING AND SIGNALLING SIGNALLING IN THE INTERNATIONAL MANUAL SERVICE INTERNATIONAL AUTOMATIC AND SEMI-AUTOMATIC WORKING FUNCTIONS AND INFORMATION FLOWS FOR SERVICES IN THE ISDN SPECIFICATIONS OF SIGNALLING SYSTEMS No. 4 AND No. 5 SPECIFICATIONS OF SIGNALLING
3、SYSTEM No. 6 SPECIFICATIONS OF SIGNALLING SYSTEM R1 SPECIFICATIONS OF SIGNALLING SYSTEM R2 DIGITAL EXCHANGES CLAUSES APPLICABLE TO ITU-T STANDARD SYSTEMS Introduction and field of application Exchange interfaces, functions and connections Design objectives and measurement Transmission characteristic
4、s INTERWORKING OF SIGNALLING SYSTEMS SPECIFICATIONS OF SIGNALLING SYSTEM No. 7 Q3 INTERFACE DIGITAL SUBSCRIBER SIGNALLING SYSTEM No. 1 PUBLIC LAND MOBILE NETWORK INTERWORKING WITH SATELLITE MOBILE SYSTEMS INTELLIGENT NETWORK SPECIFICATIONS OF SIGNALLING RELATED TO BEARER INDEPENDENT CALL CONTROL (BI
5、CC) SIGNALLING REQUIREMENTS AND PROTOCOLS FOR IMT-2000 Q. 1-4.3 Q.4Q.59 Q.60-Q.99 Q. 126-4.249 Q.250-Q.309 Q ,400-Q .499 Q.500-Q.599 Q.500-Q.509 Q. 100-Q. 1 19 Q.3 10-Q.399 Q.5 10-4.539 4.540-4.549 4.550-4.599 Q. 60 - input and output connections with 4-wire analogue interfaces; and - half connectio
6、ns with 4-wire analogue interfaces in digital transit and combined local and transit exchanges, in accordance with the definitions given in ITU-T Rec. Q.551, particularly in Figures UQ.551 and 214.551. The characteristics of the input and output connections of a given interface are not necessarily t
7、he same. The characteristics of half connections are not necessarily identical for different types of interfaces. This Recommendation is intended for switched connections that may be part of an international long-distance connection via 4-wire line circuits interconnected by 4-wire exchanges. Since
8、4-wire analogue interfaces of digital exchanges may connect with circuits which are used for both international and national traffic, the same values recommended for international connections may also be used for connections entirely within the national network. 2 Characteristics of interfaces 2.1 C
9、haracteristics common to all 4-wire analogue interfaces 2.1.1 Exchange impedance 2.1.1.1 Nominal value The nominal impedance at the analogue input and output interfaces should be 600 ohms, balanced. 2.1.1.2 Return loss The return loss at the equipment ports, measured against the nominal impedance, s
10、hould not be less than 20 dE3 over the frequency range 300 Hz to 3400 Hz. NOTE - For output measurement, the exchange test point Ti must be driven by a PCM signal corresponding to the decoder output value number O for the plaw or decoder output value number 1 for the A-law. (See 1.2.3.1/Q.551.) 2.1.
11、2 Impedance unbalance about earth The value for the Longitudinal Conversion Loss (LCL) at the equipment ports as defined in 4.1.3/G.117, with the circuit under test in the normal talking state, should exceed the minimum values of Figure 1, in accordance with ITU-T Rec. K. 1 O. NOTE 1 -A network oper
12、ator may adopt other values and, in some cases, a wider bandwidth, depending upon actual conditions in its telephone network. NOTE 2 - A limit may also be required for the Transverse Conversion Loss (TCL) as defined in 4.1.2/G. 1 17, if the exchange termination is not reciprocal with respect to the
13、transverse and longitudinal connections. A suitable limit would be 40 dB to ensure an adequate near-end crosstalk attenuation between interfaces. ITU-T Rec. 4.553 (11/2001) 1 Figure UQ.553 - Minimum values of LCL measured in the arrangement shown in Figure 2 Test method LCL should be measured in acc
14、ordance with the principles given in 4.V0.9. Figure 2 shows the basic measuring arrangement. Arrangements containing two resistors each of value R/2 may also be used (see clause Y0.9). Measurements of the longitudinal and transverse voltages should be performed by means of a frequency-selective leve
15、l meter. ! Item under test ! i ! ,“.“., Sinusoidal oscillator I i i ! , -i+- ! iTI ill i ii i i i ._._._.-._.-._. -.-.-J T151-94 R = 600 ohms Longitudinal convertion loss (LCL) = 2010g, Figure 2/Q.553 - Arrangement for measuring LCL 2.1.3 Relative levels In assigning the relative levels to the inter
16、faces, the limiting of “difference in transmission loss between the two directions of transmission“ in Annex NG. 12 1 has been taken into account. For the national extension, this is the value “loss (t-b)-loss (a-t)“. (See the text in the cited 2 ITU-T Rec. Q.553 (11/2001) Recommendation for guidanc
17、e.) This difference is limited to +_4 dB. However, to allow for additional asymmetry of loss in the rest of the national network, only part of this difference can be used by the digital exchange. 2.1.3.1 Nominal levels The nominal relative levels at the analogue input and output interfaces of the di
18、gital exchange depend on the type of equipment which is connected to the exchange. (See Figure UQ.55 1 .) In practice, it may be necessary to compensate for the loss between the output interfaces of the digital exchange and the input ports of the connected equipment to fulfil transmission plan condi
19、tions. The definition of adjustable steps for and the location of this compensation (digital exchange or connected equipment) is within national competence. Nominal values of relative levels are given in 2.2.1, 2.3.1 and 2.4.1 for the different types of half connections. 2.1.3.2 Tolerances of relati
20、ve levels The difference between the actual relative level and the nominal relative level should lie within the following ranges: - input relative level: -0.3 to M.7 dE3; - output relative level: -0.7 to M.3 a. These differences may arise, for example, from design tolerances, cabling (between analog
21、ue equipment ports and the DF) and adjustment increments. NOTE - Adjustment of the relative level should be made in accordance with clause 3/G.712. 2.2 Characteristics of interface Cl1 According to Figure lIQ.55 1, the interface Cl1 of a digital exchange is intended to interwork with the channel tra
22、nslating equipment of an FDM system. 2.2.1 Values of nominal levels The nominal values of relative levels at the channel translating equipment are specified in Table 2/G.232 for the two recommended cases. With the pads in the channel translating equipment set to zero, these values are: I I I I 1 1 +
23、4.OdBr I -+7.OdBr - 14.0 dBr - 16.0 dBr The nominal values of relative levels at the digital exchange must be adjusted to compensate for the total loss between the interface of the digital exchange and the channel translating equipment. Therefore: Li = R - AR where: AR is the total loss in the recei
24、ve path, e.g. direction of trammission from channel translating equipment to digital exchange. ITU-T Rec. Q.553 (11/2001) 3 AS is the total loss in the send path, e.g. direction of transmission from digital exchange to channel translating equipment. 2.3 Characteristics of interface C12 According to
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