EN 60315-4-1998 en Methods of Measurement on Radio Receivers for Various Classes of Emission Part 4 Receivers for Frequency-Modulated Sound Broadcasting Emissions《各种发射等级用无线电接收机的测量方.pdf
《EN 60315-4-1998 en Methods of Measurement on Radio Receivers for Various Classes of Emission Part 4 Receivers for Frequency-Modulated Sound Broadcasting Emissions《各种发射等级用无线电接收机的测量方.pdf》由会员分享,可在线阅读,更多相关《EN 60315-4-1998 en Methods of Measurement on Radio Receivers for Various Classes of Emission Part 4 Receivers for Frequency-Modulated Sound Broadcasting Emissions《各种发射等级用无线电接收机的测量方.pdf(78页珍藏版)》请在麦多课文档分享上搜索。
1、BRITISH STANDARD Methods of measurement on radio receivers for various classes of emission Part 4. Receivers for frequency-modulated sound broadcasting emissions IS EN iO315-4 : 1998 EC 60315-4 : .997 The European %dard EN 60315-4 : 1998 has the status of a British Standard ICs 33.160.20 NO COPYING
2、WITHOUT BSI PERMISSION EXCEPT AS PERMITTED BY COPYRIGH LAW STD.BS1 BS EN b0315-4-ENGL 1998 m bb24bb9 Ob94205 b2b m BS EN 60316-4 : 1998 This British Standard, having been prepared under the direction of the Electrotchnicai Sector Board, was pubiished under the authorim of the Standards Board and com
3、es into effect on 15 Apd 1998 National foreword “his British Standard is the English language version of EN 60315-4 : 1998. It is identical with IEC 60315-4 : 1997. The UK participation in its preparation was entsusted by Technid Committee EPU10, Audio, video and multimedia systems and equipment, to
4、 Subcommittee EPUlWl, Receiving equipment, which has the responsibility to: - aid enquirers to undeistand the text; - present to the responsible intedonai/Empean committee any enquiries on the interpretation, or proposals for change, and keep the UK inter- informed; - monitor related international a
5、nd European developments and promulgate them in the UK. A list of organkations represented on this subcommittee can be obtained on request to its secrehy. From 1 January 1997, ali IEC publications have the number 60000 added to the old number. For instance, IEC 27-1 has been renumbered as IEC 60027-
6、1. For a period of time during the change over fiom one numbering system to the other, publications may contain identifers from both systems. Cross-references Attention is dram to the fad that CEN and CENELEC standars nody include an annex which lists nonnative references to international publicatio
7、ns with their corresponding European publications. “he British Stank this is especially true for the unwanted transmitter. The line-up procedure therefore should be carried out very carefully. The deviation of the signal shall be adjusted by means of the arrangement shown in figure 6. The meter V1 s
8、hall be a quasi-peak voltmeter (see annex A of IEC 60315-1). To obtain the required deviation conditions, the switch S4 is placed in position 1 and the modulation at 500 Hz from the audio-frequency generator adjusted to 132 kHz (121,3 kHz) deviation. The meter reading is noted. The switch S4 is then
9、 placed in position 2 and the noise modulation adjusted to give the same reading on the quasi-peak meter. NOTE - The deviation with 500 Hz modulation should be checked with a deviation meter unless the deviation meter, if any, included in the signal generator is known to be accurate. 1.4.2.4 Standar
10、d modulating signal This is the base-band signal with standard modulating frequency (see 1.4.2.2) and standard value of deviation (see 1.4.2.1). In case of stereophonic mode measurements, a pilot tone signal with the standard deviation shall be included. - STD.BSI BS EN 60315-4-ENGL 1998 W 1624669 0
11、694236 407 = Page 11 EN 60315-4 : 1998 Band coverage MHz 1.4.2.5 Standard carrier frequencies The standard carrier frequency depends on the frequency allocation(s) for f .m. broadcasting in the region where the receiver is to be used. Receivers within the scope of this standard usually cover the ban
12、ds given in table 3. For these bands, the standard measuring frequencies are shown in the table. Standard measuring frequency M Hz 65, to 73,O 76,O to 90,O 873 to 104.0 69 03 94 I 87,5 to 108,O -1 98 1.4.2.6 Standard radio-frequency test signal The standard radio-frequency test signal is a signal at
13、 the appropriate standard carrier frequency (see 1.4.2.5), modulated with the standard modulating signal (see 1.4.2.4). The available power from the source, at the receiver antenna terminais, shall be 70 dB(fW) (equal to 40 dB(pW). 1.4.2.7 Standard radio-frequency input arrangements a) Antenna simul
14、ation networks (artificial antennas) Whereas the rated source impedances of signal sources for measurement purposes (signal generators, etc.) are usually resistive and well-defined, the source impedances of antennas have a wide range of values and are neither resistive nor independent of frequency.
15、It is often necessary, therefore, to insert between the signal source and the receiver input an antenna simulation network which matches the signal source correctly and presents to the receiver a source impedance simulating that of the appropriate antenna. Requirements for antenna simulation network
16、s and examples are detailed in IEC 6031 5-1. Measurements on receivers with external antenna terminals should be made using a signal generator whose rated output impedance is the same as the rated input impedance of the receiver. Antenna substitution networks, and combining networks for the injectio
17、n of more than one signal, should match the appropriate impedance at both ends, so as to allow insertion loss to be defined accurately. Networks with minimum insertion loss should be used while minimizing intermodulation between multiple signal sources. Figure 7 gives simple and practical examples w
18、hich are suitable for use with signal generators that have a 50 Q output impedance. b) Balanced inputs Certain f.m. broadcast receivers are equipped with a balanced antenna input circuit, usually with a rated characteristic impedance of 240 a or 300 0. Such receivers shall be measured with an impeda
19、nce-matched, balanced signal source. Where a balanced source is not available, a balun transformer may be used, allowing for its insertion loss. Care shall be taken that impedance matching is preserved throughout the circuit between the signal source and the antenna terminals of the receiver. STD.BS
20、I ES EN b0315-4-ENGL 1998 Lb24bb9 0694237 343 = Page 12 EN 60315-4 : 1998 1.4.2.8 Standard measuring conditions A rebeiver is operating under standard measuring conditions when: a) the power supply voltage and frequency are equal to, or within the range of, the rated b) the standard radio-frequency
21、test signal is applied via the appropriate artificial antenna to c) the audio-frequency output terminals for connection to loudspeakers, if any, are connected d) the receiver is tuned to the applied signal according to 1.4.4.2; e) the volume control, if any, is adjusted so that the output voltage at
22、 the main audio-frequency output terminals is 1 O dB below the rated distortion-limited output voltage. Measurements may also be made at other stated values of output voltage or power; NOTE - If, during the course of measurement, the a.f. output voltage rises to approach the rated output voltage, it
23、 is essential to adjust the volume control so that the a.f. amplifier is not driven into overload distortion. Such adjustments should be reported with the results. f) the environmental conditions are within the rated ranges; g) for stereo receivers, the balance control or its equivalent, if any, is
24、adjusted so that the output voltages of the two channels are equal; h) the tone controls, if any, are adjusted for the flattest possible audio-frequency response (e.g. for equal response at 100 Hz, 1 kHz and 10 kHz); i) the automatic frequency control (AFC) is inoperative, if this can be achieved by
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