EN 60835-3-6-1996 en Methods of Measurement for Equipment Used in Digital Microwave Radio Transmission Systems Part 3 Measurements on Satellite Earth Stations Section 6 High Power .pdf
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1、 STDmBSI BS EN b0835- 3-b-ENGL 1777 LbZlrbbS 05757b3 LT7 BRITISH STANDARD Methods of measurement for equipment used in digital microwave radio transmission systems Part 3. Measurements on satellite earth stations Section 3.6 High-power amplifiers The European Standard EN 6OS53-6: 1996 has the status
2、 of a British Standard ICs 33.060.30 NO COPYING WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGHT LAW BS EN BS 7573 : Section 3.6 : 1997 1996 60835-3-6 : 1997 IEC 8353-6 BS EN 608363-6 : 1997 Amd. No. Date Committees responsible for this British Standard Text affected The preparation of this B
3、ritish Siamlard was entrusted by Technical Committee EPW12, Radio communication, to Subcommittee EPII12/5, Radio comunicaion systems, upon which the foliowing bodies were represented: British Broadcasting Cowration British Radio and Electronic Equipment Manufacturers Association British Telecommunid
4、ons pic ERATechnology Ltd. Institution of Electrical Engineers Radio, Electrical and Television Retailers Association Radiocommunicalions Agency This British Standard, having been prepared under the direction of the Eiectrotechnicai sector Board, was published under the authority of the Standards Bo
5、ard and comes inb effect on 15 January 1997 Q BSI 1997 I I The foiiowing BSI references relate to the work on this standard: Committee reference EPUlU5 Draft for comment 96/210490 DC IGBN O 680 26393 2 BS EN 6083634 : 1997 Contents Committees responsible Nalionai foreword page Inside front cover ii
6、Foreword Text of EN 6083536 2 3 Q BSI 1997 i STD-BSI BS EN b0835- 3-b-ENGL 1777 Lb24bbS 05757bll 70b BS EN 608353-6 : 1997 National foreword This British Standard has been prepared by Subcommittee EPU12/5 and is the English ianguage version of EN 6083536 : 1996 Methods of measurement for equipment u
7、sed in digital m.imnoaVe radio t?-ansrnhwn systems Part 3: M-vments on saWite ear semiconductor amplif iers normally include field-effect transistors (FET). Travelling-wave tubes (TWT) and GaAs-field-effect transistors (FET) are most frequently used in satellite earth stations. Power amplifiers shou
8、ld have a flat gain over the specified bandwidth to avoid altering the overall transfer characteristics of a system. They should also be as linear as possible to avoid generation of sidelobes in the power spectrum and to limit adjacent channel interference. Finally, low AM to PM conversion and low i
9、ntermodulation products are necessary to limit the degradation caused by non-linearities. . - STD-BSI BS EN b0835- 3-b-ENGL 1777 D lb24bb9 05757bA 551 Page 4 EN 60835-3-6 : 1996 METHODS OF MEASUREMENT FOR EQUIPMENT USED IN DIGITAL MICROWAVE RADIO TRANSMISSION SYSTEMS - Part 3: Measurements on satell
10、ite earth stations - Section 6: High-power amplifiers 1 Scope This section of IEC 835-3 defines and describes the measurements normally carried out on high-power amplifiers used in satellite earth station transmitters. 2 Normative references The following normative documents contain provisions which
11、, through reference in this text, constitute provisions of this section of IEC 835-3. At the time of publication, the editions indicated were valid. All normative documents are subject to revision, and parties to agreements based on this section of IEC 835-3 are encouraged to investigate the possibi
12、lity of applying the most recent editions of the normative documents indicated below. Members of IEC and IS0 maintain registers of currently valid International Standards. IEC 835-1 -2: 1992, Methods of measurement for equipment used in digital microwave radio transmission systems - Part 7 : Measure
13、ments common to terrestrial radio-relay systems and satellite earth stations - Section 2: Basic characteristics IEC 835-1 -3: 1992, Methods of measurement for equipment used in digital microwave radio transmission systems - Part I: Measurements common to terrestrial radio-relay systems and satellite
14、 earth stations - Section 3: Transmission characteristics 3 Power gain and efficiency 3.1 Input and output power See IEC 835-1-2. Special care shall be taken to exclude from the measurement non-useful signals such as harmonics of the desired frequency. A low-pass filter of known insertion loss at th
15、e measurement frequency shall be connected between the power meter and the measurement point if not already included in the amplifier under test. NOTE - Some amplifiers are subject to damage if driven to excessive output power, therefore it may be necessary to limit the drive level during this measu
16、rement. * * v, STD-BSI BS EN b0835- 3-b-ENGL 1777 1b24bb7 05757b7 498 m Page 6 EN 60836-3-6 : 1996 3.2 Power gain See IEC 835-1-2. High-power amplifiers are usually operated in a non-linear power transfer characteristic region. For this reason, power gain values are given under at least two conditio
17、ns: - small-signal output power; - rated output power, or saturated output power, where rated output power is not specified. In the case of TWT amplifiers, saturated output power is often defined as that level for which a 1 dB increase in input power results in a 0.1 dB increase in output power. For
18、 solid-state amplifiers, frequently the 1 dB compression point is used. The small-signal gain is the gain which is obtained when the amplifier operates in the lin- ear portion of the input power/output power characteristic. The transfer characteristic is considered to be linear when the input power
19、is sufficiently lower than that required to saturate the amplifier. If the high-power amplifier under test has gain control or level control the power gain shall be measured at specified control settings 3.3 Efficiency The efficiency of an amplifier is given by the rated output power divided by the
20、total primary power, including the power for heat exchangers or air-cooling equipment, if required, and is expressed as a percentage. 3.4 Gain stability 3.4.1 Definition The power gain stability of an amplifier is the variation in gain at a specified output power level and frequency over a specified
21、 period of time. It is convenient to distinguish between short-term stability (hours) and long-term stability (months). Gain stability is expressed in decibels. 3.4.2 Method of measurement A suitable measuring arrangement is sh wn in figure 1. After the amplifier under test has attained thermal stab
22、ility, a signal of specified level and frequency is applied to the input port and the output power is adjusted to the specified level. The parameters to be measured are recorded on a multi-track recorder for a speci- fied period of time. This helps to reveal possible correlations between gain change
23、s and parameter changes. STD.BSI BS EN b0835- 3-6-ENGL 1777 Lb2LibbS 0575770 LOT Page 6 EN 60835-3-6 : 1996 These parameters are: - RF output power level; - RF input power level; - primary power supply voltage(s); - ambient temperature or amplifier coolant temperature (whichever is applicable). 3.4.
24、3 Presentation of results The parameters given in the preceding subclause shall be continuously recorded during the specified time interval(s) and the results presented as multi-track XY recordings. 3.4.4 Details to be SpeCf8d The following items should be included, as required, in the detailed equi
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