ETSI EN 302 567-2012 Broadband Radio Access Networks (BRAN) 60 GHz Multiple-Gigabit WAS RLAN Systems Harmonized EN covering the essential requirements of article 3 2 of the R&TTE D.pdf
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1、 ETSI EN 302 567 V1.2.1 (2012-01) Broadband Radio Access Networks (BRAN); 60 GHz Multiple-Gigabit WAS/RLAN Systems; Harmonized EN covering the essential requirements of article 3.2 of the R Essential, or potentially Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available f
2、rom the ETSI Secretariat. Latest updates are available on the ETSI Web server (http:/ipr.etsi.org). Pursuant to the ETSI IPR Policy, no investigation, including IPR searches, has been carried out by ETSI. No guarantee can be given as to the existence of other IPRs not referenced in ETSI SR 000 314 (
3、or the updates on the ETSI Web server) which are, or may be, or may become, essential to the present document. Foreword This Harmonized European Standard (EN) has been produced by ETSI Technical Committee Broadband Radio Access Networks (BRAN). The present document has been produced by ETSI in respo
4、nse to a mandate from the European Commission issued under Directive 98/34/EC i.2 as amended by Directive 98/48/EC i.9. The title and reference to the present document are intended to be included in the publication in the Official Journal of the European Union of titles and references of Harmonized
5、Standard under the Directive 1999/5/EC 2. See article 5.1 of Directive 1999/5/EC 2 for information on presumption of conformity and Harmonised Standards or parts thereof the references of which have been published in the Official Journal of the European Union. The requirements relevant to Directive
6、1999/5/EC 2 are summarised in annex A. National transposition dates Date of adoption of this EN: 9 January 2012 Date of latest announcement of this EN (doa): 30 April 2012 Date of latest publication of new National Standard or endorsement of this EN (dop/e): 31 October 2012 Date of withdrawal of any
7、 conflicting National Standard (dow): 31 October 2013 Introduction The present document is part of a set of standards developed by ETSI and is designed to fit in a modular structure to cover all radio and telecommunications terminal equipment within the scope of the R Uncertainties in the measuremen
8、t of mobile radio equipment characteristics“. 4 ITU-R Recommendation SM.1539-1 (2002): “Variation of the boundary between the out-of-band and spurious domains required for the application of Recommendations ITU-R SM.1541 and ITU-R SM.329“. 2.2 Informative references The following referenced document
9、s are not necessary for the application of the present document but they assist the user with regard to a particular subject area. i.1 ETSI TR 102 555: “Electromagnetic compatibility and Radio spectrum Matters (ERM); Technical characteristics of multiple gigabit wireless systems in the 60 GHz range
10、System Reference Document“. i.2 Directive 98/34/EC of the European Parliament and of the Council of 22 June 1998 laying down a procedure for the provision of information in the field of technical standards and regulations. i.3 IEEE 802.15.3c: “IEEE Standard for Information Technology - Specific Requ
11、irements - Part 15: Wireless Personal Area Networks with Millimeter Wave Alternative Physical Task Group 3c (TG3c)“. i.4 ECMA TC48, High Rate Short Range Wireless Communications. i.5 ERC Recommendation 70-03 (Troms 1997 and subsequent amendments): “Related to the Use of Short Range Devices (SRD)“. i
12、.6 ETSI EG 201 399: “Electromagnetic compatibility and Radio spectrum Matters (ERM); A guide to the production of Harmonized Standards for application under the R the value of the measurement uncertainty for the measurement of each parameter shall be included in the test report; the recorded value o
13、f the measurement uncertainty shall be, for each measurement, equal to or lower than the figures in table 6. For the test methods, according to the present document, the measurement uncertainty figures shall be calculated and shall correspond to an expansion factor (coverage factor) k = 1,96 or k =
14、2 (which provide confidence levels of respectively 95 % and 95,45 % in the case where the distributions characterizing the actual measurement uncertainties are normal (Gaussian). Principles for the calculation of measurement uncertainty are contained in TR 100 028 3. ETSI ETSI EN 302 567 V1.2.1 (201
15、2-01) 12Table 6 is based on such expansion factors. Table 6: Maximum measurement uncertainty Parameter Uncertainty RF Frequency 1 10-5RF power, radiated 6 dB Spurious emissions, radiated 6 dB Humidity 5 %Temperature 1 CTime 10 %5.3 Essential radio test suites 5.3.1 Product Information The following
16、information shall be stated by the manufacturer in order to carry out the test suites and/or to declare compliance to technical requirements for which no conformance test is included in the present document. a) The channel plan(s), being the centre frequencies that the UUT is capable of tuning. If t
17、he equipment is capable of supporting multiple channel plans in the course of normal operation (e.g. offering different sizes of normal wideband operation), each distinct channel plan and its related occupied bandwidth for normal wideband operation must be stated. b) The test modulation(s) used by t
18、he UUT. c) The medium access protocol(s) used by the UUT. d) The integral antenna design used by the equipment and measures to prevent the user from connecting a different antenna. 5.3.2 Test modulation, frequency and configuration The test modulation used should be representative of normal use of t
19、he equipment. Where the equipment is not capable of continuous RF transmission, the test modulation shall be such that: a) The generated RF transmission is the same for each transmission. b) Transmissions occur regularly in time. c) Sequences of transmissions can be repeated accurately. If the equip
20、ment used multiple modulation methods with different RF characteristics, the modulation that produces the worst values for each essential radio test shall be used and this modulation shall be stated along with the rationale for why this modulation produces worse values than other modulation methods
21、used by the equipment. All tests shall be conducted at the following channels within the stated channel plan(s): a) The channel with the lowest operating frequency. b) The channel with the highest operating frequency. c) The channel with the frequency closest to the midpoint of the stated operating
22、frequency range. If the UUT is capable of supporting multiple occupied bandwidths for wideband normal operations, tests must be conducted for each one of them. When applicable, RF output power shall also be tested during narrowband activity operation. The Channel Separation (ChS) value shall be calc
23、ulated based on the minimum separation (in MHz) between any two centre channel frequencies in the channel plan. ETSI ETSI EN 302 567 V1.2.1 (2012-01) 13In the case that the RF power level is adjustable, all measurements shall be made with the highest power level available. In the case of smart anten
24、na systems, the UUT should be configured to deliver the highest RF output power to the measurement equipment, and the method to do this shall be documented in the test report. Radiated measurements shall be used in all cases given the use of integral antennas and the lack of suitable methods for con
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