ISO IEC 8482-1993 Information technology telecommunications and information exchange between systems twisted pair multipoint interconnections《信息技术 系统间远程通信和信息交换 .pdf
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1、INTERNATIONAL STANDARD ISO/IEC 8482 Second edition 1993-l 2-l 5 Information technology - Telecommunications and information exchange between systems - Twisted pair multipoint interconnections Technologies de /information - TcUcommunications et - a binary and bi-directional signal transfer of the int
2、erconnected endpoint systems; - the electrical and mechanical design of the endpoint system branch cables and the common trunk cable, which may be up to 1 200 m in length; - the component measurements of the integrated circuit type generators and receivers within the endpoint systems; - the applicab
3、le data signalling rate up to 12,5 Mbit/s. 1.2 The defined electrical component charac- teristics and measurements are in close conformance with the twisted pair point-to-point characteristics given in ITU-T Recommendation V.11. 1.3 This International Standard does not de- scribe a complete physical
4、 interface and has no functional interface characteristics, such as - number of interchange data and control circuits; - type, size and pin allocation of the endpoint system and branch trunk cable connectors: - data and control signal encoding; - time relations between signals on the interchange cir
5、cuits; - mode of synchronous or asynchronous trans- mission; - signal quality for transmission and reception. 1.4 This International Standard does not specify special environmental conditions, such as galvanic isolation, electromagnetic interference (EMI), radio frequency interference (RFI), and hum
6、an safety. This may form the subject of a future amendment. 1.5 This International Standard is primarily a component specification. It is not sufficiently specified for satisfactory interoperation in all possible configurations. It is the responsibility of implementors to ensure that their intended
7、configuration will allow satisfactory interoperation. 1.6 This International Standard may be com- bined with any appropriate set of functional and additional environmental characteristics so as to meet the practical data transmission requirements in the field of local or wide area networks. 2 Normat
8、ive reference The following ITU-T Recommendation contains certain provisions which, through reference in this text, constitutes provisions of this International Standard. At the time of publication, the edition indicated was valid. All CCITT Recommendations and International Standards are subject to
9、 revision, and parties to agreements based on this International Standard are encouraged to investigate the possibility of applying the most recent edition of the recommendation indicated below. Members of IEC and IS0 maintain registers of currently valid International Standards. The ITU-T Secretari
10、at maintains a list of currently valid ITU-T Recommendations. 1 ITU-T Recommendation V.ll :1988, Electrical characteristics for balanced double-current inter- change circuits for general use with integrated circuit equipment in the field of data communications. 3.6 differential mode voltage: The vec
11、tor difference of the voltages between each conductor of a balanced interchange circuit and ground or other stated voltage reference. NOTE - The differential mode voltage is commonly referred to as the transverse mode voltage. 3 Definitions For the purposes of this International Standard the followi
12、ng definitions apply: 3.1 balanced interchange circuit: An interchange circuit which uses two conductors and the differential mode voltage for transmitting signals. 3.2 common mode ejection ratio (CMRR ): For balanced interchange circuits, the ratio of an applied common mode voltage, V, to the resul
13、ting transverse voltage V, (same as the differential mode voltage). The ratio is normally expressed in decibels as V CM RR = 20 log F tr NOTE - The rejection ratio depends upon the circuit termination and should be measured while terminated in normal use. 3.3 common mode voltage: One half the vector
14、 sum of the voltages between each conductor of a balanced interchange circuit and ground or other stated voltage reference. NOTE This voltage may be a transmitted (or received) signal or noise intereference. In the latter case, this voltage is generally not the same as the voltage, which is sometime
15、s referred to as common mode voltage, that may exist (in a common mode) between the ends of an interchange circuit pair as a result of induction or ground- reference potential difference. 3.4 cross-talk loss (near end): For two interchange circuits used for transmission in opposite directions, the r
16、atio, expressed in decibels, of the voltage transmitted on one interchange circuit to the resulting voltage (cross-talk) at the receive end of the other interchange circuit. 3.5 cross-talk loss (far end): For two interchange circuits used for transmission in the same direction, the ratio, expressed
17、in decibels, of the voltage transmitted on one interchange circuit to the resulting voltage (cross-talk) at the receive end on the other interchange circuit. 3.7 environmental conditions: Those charac- teristics of the electrical or physical environment, for example EMI, ground potential difference
18、magnetic fields, altitude, temperature, etc., which may affect the operation, with respect to interchange circuits, of a DTE or DCE. 3.8 galvanic isolation: The existence of a element that is non-conductive with respect to the conductivity of common mode voltage, between the equipment containing a g
19、enerator and the equipment containing a receiver of an interchange circuit. 3.9 generator: The component of an interchange circuit that is the source of the transmitted signal. NOTE - The term generator is used interchangeably with the term driver. 3.10 generator offset voltage: The d.c. component o
20、f half the vector sum of the voltages between each conductor of a balanced interchange circuit generator and its signal ground reference NOTE - The d.c. component of half the vector sum of the voltages is the same as the arithmetic mean of the d.c. voltages in the above. 3.11 ground signal: The gene
21、rator/receiver signal voltage reference. 3.12 ground earth: The voltage reference established by conductive components having a conductive path to earth in the vicinity of the equipment including the generator/receiver. NOTE - Earth ground is generally synonymous with, and the same as, frame or buil
22、ding ground or protective ground. 3.13 ground potential difference: The difference between the signal ground potentials of the generator and the receiver of an interchange circuit. The potential is the same as the difference in the earth ground potential difference only if the signal ground is conne
23、cted to earth ground at both the generator and the receiver. 2 ISO/IEC 8482:1993(E) 3.14 induced noise: An interfering voltage that is in- troduced into an interchange circuit by electromagnetic induction from currents in other conductors. For balanced interchange circuits induced voltages generally
24、 appear in the common mode. 3.15 interchange circuit: The circuit, including a generator, a receiver and interconnecting media, that provides for the interchange of signals across an interface, for example DTE/DTE, DTUDCE, DCE/DCE. 3.16 interchange point: The point in an interchange circuit at which
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