IEC 60489-1-1983 Methods of measurement for radio equipment used in the mobile services Part 1 General definitions and standard conditions of measurement《移动业务中用的无线电设备的测量方法 第1部分 通用定义和测量的标准条件》.pdf
《IEC 60489-1-1983 Methods of measurement for radio equipment used in the mobile services Part 1 General definitions and standard conditions of measurement《移动业务中用的无线电设备的测量方法 第1部分 通用定义和测量的标准条件》.pdf》由会员分享,可在线阅读,更多相关《IEC 60489-1-1983 Methods of measurement for radio equipment used in the mobile services Part 1 General definitions and standard conditions of measurement《移动业务中用的无线电设备的测量方法 第1部分 通用定义和测量的标准条件》.pdf(124页珍藏版)》请在麦多课文档分享上搜索。
1、INTERNATIONAL STANDARD IEC 60489-1 1983 AMENDMENT 2 1999-05 Amendment 2 Methods of measurement for radio equipment used in the mobile services - Part 1 : General definitions and standard conditions of measurement Amendement 2 Mthodes de mesure applicables au matriel de radiocommunication utilis dans
2、 les services mobiles - Partie I: Dfinitions gnrales et conditions normales de mesure O IEC 1999 - Copyright - all rights reserved International Electrotechnical Commission Telefax: +41 22 919 0300 3, rue de Varemb Geneva, Switzerland IEC web site http:/www.iec.ch e-mail: inrnail iec.ch Commission E
3、lectrotechnique Internationale PRICECODE u International Electrotechnical Commission MemAyHapOpHa!4 3nenpoextiueca KOMHCCHR O For price. see current catalogue STD-IEC bq87-L-ENGL 1983 M 98qi191 0703951 32b D -2- 60489-1 Amend. 2 O IEC:1999(E) FOREWORD This amendment has been prepared by IEC technica
4、l committee 102: Equipment used in radio communications for mobile services and for satellite communication systems. The text of this amendment is based on I FDIS I Report on voting I I I 102/41/FDIS 102/49/RVD Full information on the voting for the approval of this amendment can be found in the rep
5、ort on voting indicated in the above table. A bilingual version of this amendment may be issued at a later date. Add the following reference to the list of “Other IEC publications quoted in this standard“: IEC 60489-8: 1984, Methods of measurement for radio equipment used in the mobile services - Pa
6、rt 8: Antennas Page 54 Add the following Annex A after figure 3. Annex A (normative) Guide for the use of test sites and radio-frequency coupling devices (RFCDs) A.l General Test sites are basic means to perform radiation measurements. Radio-frequency coupling devices (RFCDs) are means generally des
7、igned to perform many equipment radiation measurements economically, using the same measuring method as equipment with antenna terminals. This annex describes low reflection test sites (LRTS) and anechoic chambers (AC) for upper frequency limit extension and interference-free measurements, as well a
8、s random field measurement sites for measurements similar in the real field and for measurement equipment with a diversity antenna. TEM cells and GTEM cells are also described for wideband upper- frequency limit extension and interference-free measurements. The evaluation measurement of a test site
9、is the method to judge whether a test site construction satisfies the required conditions and is introduced for LRTS, AC and RFM sites in this annex. The evaluation measurement for OATS was studied, but not introduced because the available evaluation measurement required important measurement condit
10、ion changes. 60489-1 Amend. 2 O IEC:1999(E) -3- Test sites OATS: Open area test site The calibration method for a test site is the process for determining the numerical relationship between equipment radiation power and the observed output of a radio-frequency signal generator which replaces the EUT
11、 during the substitution measurement, or the numerical relationship between the field strength where the EUT is placed and the indication of the selective measuring device with the calibration antenna. Advantages Disadvantages Low construction cost Available for large size EUT Includes ground reflec
12、tion effects Needs a lot of space Interference from others Weather dependency Measurement fluctuation is relatively high at frequencies higher than 1 GHz RFCDs were originally used only for ratio measurement of equipment. receiving radio-frequency electromagnetic energy. The radiation sensitivity me
13、asured in the RFCD was called “the reference sensitivity (RFCD)“ and defined as the level of RFCD input signal in microvolts (pV). This annex also describes calibration methods. Calibration is the procedure for determining the numerical relationship between RFCD input or output voltage and the equiv
14、alent field strength where the EUT is placed, or the radiated power of the EUT. RFCDs should be principally calibrated. Therefore, RFCDs need no evaluation measurement. Test site overview and overview of RFCDs are shown in tables A.l and A.2 respectively. Table A.l - Test site overview LRTS: Low ref
15、lection test site AC: Anechoic chamber RFM: Random field measurement site Clear and flexible evaluation criterion Possible to reduce error Wide frequency range Available for large size EUT No influence of ground reflections No interference No weather dependency No influence of ground reflections Few
16、 construction site requirements (anywhere) Evaluation of real world antenna efficiency Clear and flexible evaluation criterion Available for the evaluation of diversity antenna Does not reflect reality Is affected by absorber size Interference from others Limited lower frequency Limited EUT size Exp
17、ensive, especially for low frequency Needs many measurement values and their calculation STD-IEC b0489-1-ENGL L983 4A4487L U703953 LT9 m RFCDs Maximum size of EUT mm -4- 60489-1 Amend. 2 O IEC:1999(E) Features Test fixture Wideband RFCDs Stripline arrangement I Narrowband RFCD (Only for specific EUT
18、) Not expensive Only for specific EUT Only for specific or approximate frequency More than twice frequency range Can be constructed with detailed Influence of surroundings Limited frequency range 200 I x 200 b x 250 h for maximum frequency of 200 MHz information 400 I x 400 b x 500 h for maximum fre
19、quency of i00 MHz I Available in small size I - TEM cell i00 I x 150 b x 50 h for maximum frequency of 500 MHz 200 I x 300 b x 100 h for maximum frequency of 250 MHz No influence from surroundings Limited frequency range t 300 I x 300 b x 200 h to greater than 5 GHz or 1 O00 I x 1 O00 b x 500 h to N
20、o influence from surroundings Wide frequency range GTEM cell greater than 5 GHz NOTE - A certain manufacturer specifies d.c. to 17 GHz for the frequency range of a GTEM cell. A.l.l Abbreviations: AC ETSI EUT GTEM LRTS OATS RFCD RFM TEM Anechoic chamber European Telecommunication Standards Institute
21、Equipment under test GHz TEM Low reflection test site Open area test site Radio-frequency coupling device Random field measurement Transverse electromagnetic mode A.2 Test sites A.2.1 Introduction, outline and selection of test sites The radiation characteristics of equipment are measured at test si
22、tes. Both equipment emitting radio-frequency electromagnetic energy and equipment receiving it can be measured. Emission measurements can be made for all radio-frequency parameters pertaining to radiated radio- frequency electromagnetic energy, for example, transmitter radiated power, transmitter ra
23、diated spurious power, receiver radiated spurious power. Receiver measurements can be made for all radio-frequency parameters pertaining to received radio-frequency electro- magnetic energy, for example, receiver radiation sensitivity. OAT% are the classic test sites and have been left as before. AC
24、s are already widely used, and the new evaluation measurement has been introduced. LRTS and RFM site are newly introduced test sites. Both LRTS and RFM sites have clear and flexible evaluation criteria which allow for easy appraisal of conformity to construction requirements. 60489-1 Amend. 2 O IEC:
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