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本文(ETSI TR 102 439-2006 Broadband Radio Access Networks (BRAN) Test Report Template for testing to EN 301 893 (V1 3 1) (R&TTE) (V1 1 1)《宽带无线接入网(BRAN)测试报告模板 EN 301 893(版本1 3 1)(R&TTE) .pdf)为本站会员(王申宇)主动上传,麦多课文库仅提供信息存储空间,仅对用户上传内容的表现方式做保护处理,对上载内容本身不做任何修改或编辑。 若此文所含内容侵犯了您的版权或隐私,请立即通知麦多课文库(发送邮件至master@mydoc123.com或直接QQ联系客服),我们立即给予删除!

ETSI TR 102 439-2006 Broadband Radio Access Networks (BRAN) Test Report Template for testing to EN 301 893 (V1 3 1) (R&TTE) (V1 1 1)《宽带无线接入网(BRAN)测试报告模板 EN 301 893(版本1 3 1)(R&TTE) .pdf

1、 ETSI TR 102 439 V1.1.1 (2006-08)Technical Report Broadband Radio Access Networks (BRAN)Test Report Templatefor testing to EN 301 893 (V1.3.1) (R Essential, or potentially Essential, IPRs notified to ETSI in respect of ETSI standards“, which is available from the ETSI Secretariat. Latest updates are

2、 available on the ETSI Web server (http:/webapp.etsi.org/IPR/home.asp). 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 (or the updates on the ETSI W

3、eb server) which are, or may be, or may become, essential to the present document. Foreword This Technical Report (TR) has been produced by ETSI Technical Committee Broadband Radio Access Networks (BRAN). ETSI ETSI TR 102 439 V1.1.1 (2006-08) 6 1 Scope It is expected that Test Report Templates from

4、ETSI would be useful for national conformity assessment bodies and market surveillance authorities in countries where the R - in countries where the R - in countries where the R - in countries where the R 5 GHz high performance RLAN; Harmonized EN covering essential requirements of article 3.2 of th

5、e R&TTE Directive“. 3 Definitions, symbols and abbreviations 3.1 Definitions For the purpose of the present document, the terms and definitions given in EN 301 893 2 and the following apply: submitter: manufacturer, company or person that is submitting a product to be tested against the harmonized s

6、tandard EN 301 893 2 3.2 Symbols For the purposes of the present document, the following symbols apply: dBi antenna gain in decibels relative to an isotropic antenna dBm dB relative to 1 milliwatt GHz GigaHertz Hz Hertz kHz kiloHertz MHz MegaHertz ETSI ETSI TR 102 439 V1.1.1 (2006-08) 7 3.3 Abbrevia

7、tions For the purposes of the present document, the following abbreviations apply: AC Alternating Current CE Communaut Europenne (European Community) DC Direct Current EIRP Equivalent Isotropically Radiated Power ITU International Telecommunications Union R&TTE Radio and Telecommunications Terminal

8、Equipment RF Radio Frequency Tx Transmitter UUT Unit Under Test 4 Cover page and notes The title page should include the following title: “Test Report to EN 301 893 (V1.3.1)“. In addition, the title page should contain the following information 1) Name of the laboratory performing the test. 2) Test

9、report reference number and revision number if applicable. 3) The name of the manufacturer. 4) The name of the submitter (if different from the manufacturer). 5) Equipment identification, including brand name, model number, etc. 6) Test Report date. Additional information to be provided in the repor

10、t: 7) Equipment serial number. 8) Test dates. 9) Hardware and/or software identification (including version numbers and modification state). 10) Authorization Signatures. 11) A list of the test equipment, ancillary equipment and supporting equipment used during the tests. 12) Deviations from the sta

11、ndard test procedures (e.g. test procedures defined by Notified Bodies). 5 Application form The information contained in this clause should be provided by the submitter prior to the testing. It contains product information as required by EN 301 893 2, clause 5.3.1 as well as other information which

12、will assist the test engineer in determining which tests have to be performed as well as the relevant test configurations and conditions. This application should form part of the final test report. ETSI ETSI TR 102 439 V1.1.1 (2006-08) 8 5.1 Information as required by EN 301 893 In accordance with E

13、N 301 893 2, clause 5.3.1, the following information was provided by the submitter: a) The occupied channel bandwidth(s): Channel Bandwidth 1: Channel Bandwidth 2: NOTE: Add more lines if the equipment has more channel Bandwidths. b) The DFS related operating mode(s) of the equipment: Master Slave w

14、ith radar detection Slave without radar detection NOTE: If the equipment has more than 1 operating mode, tick all that apply. c) The equipment can operate in ad-hoc mode: no ad-hoc operation ad-hoc operation in the frequency range 5 150 MHz to 5 250 MHz without DFS ad-hoc operation with DFS NOTE: If

15、 more than 1 is applicable, tick all that apply. d) Operating Frequency Range(s): Range 1: 5 150 MHz to 5 350 MHz and 5 470 MHz to 5 725 MHz Range 2: 5 470 MHz to 5 725 MHz Range 3: 5 150 MHz to 5 250 MHz (ad-hoc without DFS) Range 4: other, NOTE: If the equipment has more than 1 Operating Frequency

16、 Range, tick all that apply. e) TPC feature available: Yes No f) If the equipment has a TPC range, the lowest and highest power level (or lowest and highest EIRP level in case of integrated antenna equipment), intended antenna assemblies and corresponding operating frequency range for the TPC range

17、(or for each of the TPC ranges if more than one is implemented). NOTE: The current template assumes the UUT has 2 TPC ranges. Add more sections similar to the ones below if the equipment has more 2 TPC ranges. TPC range 1: Applicable Frequency Range: 5 150 MHz to 5 350 MHz and 5 470 MHz to 5 725 MHz

18、 (Indoor) 5 470 MHz to 5 725 MHz only (Outdoor only) ETSI ETSI TR 102 439 V1.1.1 (2006-08) 9 Applicable power levels (see note): Tx out / EIRP Lowest setting (Plow): dBm Highest setting (Phigh): dBm NOTE: Indicated whether the power levels specified are Transmitter Output Power levels or EIRP levels

19、 in case of integrated antenna equipment Intended Antenna Assemblies: Table 1: Intended Antenna Assemblies for this TPC range Antenna Assembly name Antenna Gain (dBi) EIRP for Plow (dBm) EIRP for Phigh (dBm) NOTE: Add more rows into the table If more antenna assemblies are intended for this TPC rang

20、e. DFS Threshold level: dBm at the antenna connector in front of the antenna NOTE: For equipment with a maximum EIRP below 200 mW, the DFS threshold level shall be -62 dBm or less, for equipment with an EIRP of 200 mW or above, the DFS threshold level shall be -64 dBm or less. These levels assume a

21、0 dBi antenna gain. To define the applicable threshold level at the (temporary) antenna connector, the gain of the antenna (in dBi) shall be added to the threshold level. If more than one antenna is intended for this TPC range or power setting, the antenna gain of the antenna with the lowest gain sh

22、all be used. TPC range 2: Applicable Frequency Range: 5 150 MHz to 5 350 MHz and 5 470 MHz to 5 725 MHz (Indoor) 5 470 MHz to 5 725 MHz only (Outdoor only) Applicable power levels: Tx out / EIRP Lowest setting (Plow): dBm Highest setting (Phigh): dBm Intended Antenna Assemblies: Table 2: Intended An

23、tenna Assemblies for this TPC range Antenna Assembly name Antenna Gain (dBi) EIRP for Plow (dBm) EIRP for Phigh (dBm) NOTE: Add more rows into the table If more antenna assemblies are intended for this TPC range. ETSI ETSI TR 102 439 V1.1.1 (2006-08) 10DFS Threshold level: dBm at the antenna connect

24、or in front of the antenna g) If the equipment has no TPC feature, the maximum transmitter output power level (or maximum EIRP level in case of integrated antenna equipment), the intended antenna assemblies, the corresponding operating frequency range and the corresponding DFS threshold level. If th

25、e equipment has multiple power levels and corresponding antenna assemblies, than this information should be provided for each of the stated power levels. NOTE 1: The manufacturer may decide to declare that his equipment can operate with and without a TPC feature in which case he may provide details

26、under both clause f) and g) NOTE 2: The current template assumes the UUT has 2 power settings. Add more sections similar to the ones below if the equipment has more power levels. Power Setting 1: Applicable Frequency Range: 5 150 MHz to 5 350 MHz and 5 470 MHz to 5 725 MHz (Indoor) 5 470 MHz to 5 72

27、5 MHz only (Outdoor only) Power level: dBm TX out / EIRP NOTE: Indicated whether the power levels specified are Transmitter Output Power levels or EIRP levels in case of integrated antenna equipment Intended Antenna Assemblies: Table 3: Intended Antenna Assemblies for this power setting Antenna Asse

28、mbly name Antenna Gain (dBi) EIRP (dBm) DFS Threshold level: dBm at the antenna connector in front of the antenna NOTE: For equipment with a maximum EIRP below 200 mW, the DFS threshold level shall be -62 dBm or less, for equipment with an EIRP of 200 mW or above, the DFS threshold level shall be -6

29、4 dBm or less. These levels assume a 0 dBi antenna gain. To define the applicable threshold level at the (temporary) antenna connector, the gain of the antenna (in dBi) shall be added to the threshold level. If more than one antenna is intended for this TPC range or power setting, the antenna gain o

30、f the antenna with the lowest gain shall be used. ETSI ETSI TR 102 439 V1.1.1 (2006-08) 11Power Setting 2: Applicable Frequency Range: 5 150 MHz to 5 350 MHz and 5 470 MHz to 5 725 MHz (Indoor) 5 470 MHz to 5 725 MHz only (Outdoor only) Power level: dBm TX out / EIRP Intended Antenna Assemblies: Tab

31、le 4: Intended Antenna Assemblies for this power setting Antenna Assembly name Antenna Gain (dBi) EIRP (dBm) DFS Threshold level: dBm at the antenna connector in front of the antenna h) The extreme operating temperature range that apply to the equipment: -20C to +55C (Outdoor and Indoor usage) 0C to

32、 +35C (Indoor usage only) Other: The nominal voltages of the stand-alone radio equipment or the nominal voltages of the combined (host) equipment or test jig in case of plug-in devices. Details provided are for the: stand-alone equipment combined (or host) equipment test jig Supply Voltage AC mains

33、State AC voltage DC State DC voltage State DC current In case of DC, indicate the type of power source: Internal Power Supply External Power Supply or AC/DC adapter Battery Nickel Cadmium Alkaline Nickel-Metal Hydride Lithium-Ion Lead acid (Vehicle regulated) Other ETSI ETSI TR 102 439 V1.1.1 (2006-

34、08) 12i) The test sequences used (see also EN 301 893 2, clause 5.1.2) j) Type of Equipment Stand-alone Combined Equipment (Equipment where the radio part is fully integrated within another type of equipment) Plug-in radio device (Equipment intended for a variety of host systems) Other 5.2 Additiona

35、l information provided by the submitter a) Modulation: ITU Class of emission: . Can the transmitter operate un-modulated? yes no b) Duty Cycle The transmitter is intended for: Continuous duty Intermittent duty Continuous operation possible for testing purposes c) About the UUT The equipment submitte

36、d are representative production models. If not, the equipment submitted are pre-production models ? If pre-production equipment is submitted, the final production equipment will be identical in all respects with the equipment tested. If not, supply full details: The equipment submitted is CE marked:

37、 The CE marking does include the Class-II identifier (Alert Sign). The CE marking does include a 4 digit number referring to the Notified Body involved. 5.3 List of ancillary and/or support equipment provided by the submitter Where possible, the information below should include a description, brand

38、name, model number etc. for each of the equipment provided: ETSI ETSI TR 102 439 V1.1.1 (2006-08) 136 List of technical requirements to be tested The list of technical requirements called for in EN 301 893 2 is given below. 6.1 Transmitter parameters Table 5: Transmitter parameters EN Clause Transmi

39、tter parameters EN 301 893 2 Page number 4.2 Carrier Frequencies 13 4.3 RF Output power, Transmit Power Control (TPC) and power density 13 4.4 Transmitter unwanted emissions 14 4.4.1 Transmitter unwanted emissions outside the 5 GHz RLAN bands 14 4.4.2 Transmitter unwanted emissions within the 5 GHz

40、RLAN bands 15 4.6 Dynamic Frequency Selection (DFS) 16 4.6.2.1 Channel Availability Check 17 4.6.2.2 In-Service Monitoring 18 4.6.2.3 Channel Shutdown 18 4.6.2.4 Non-Occupancy Period 18 4.6.2.5 Uniform Spreading 19 6.2 Receiver parameters Table 6: Receiver parameters EN Clause Receiver parameters Pa

41、ge number 4.5 Receiver spurious emissions 15 ETSI ETSI TR 102 439 V1.1.1 (2006-08) 147 List of conformance tests and related test frequencies Table 7 contains the test frequencies to be used for each of the conformance tests described in EN 301 893 2, clause 5. Table 7: Conformance tests and related

42、 test frequencies Frequencies for testing (MHz) (see EN 301 893 2, table 1) (see note) Lower Sub-band (5 150 MHz to 5 350 MHz) Test EN Clause 5 150 MHz to 5 250 MHz 5 250 MHz to 5 350 MHz Higher Sub-band 5 470 MHz to 5 725 MHz Carrier Frequencies Power, Power Density Transmitter unwanted emissions R

43、eceiver unwanted emissions 5.3.2 5.3.3 5.3.4 and 5.3.5 5.3.6 5 180 5 320 5 500, 5 700 Transmit Power Control 5.3.3 n.a. 5 320 5 500, 5 700 Dynamic Frequency Selection (DFS) 5.3.7 n.a. One channel within this frequency range. One channel within this sub-band. NOTE: For equipment which is not able to

44、operate on all channels, the test frequencies to be used shall be the lowest and highest frequencies for each of the sub-band(s) declared by the manufacturer. 8 Test results 8.1 Results summary The following table summarizes the technical requirements defined in EN 301 893 2 and the corresponding re

45、sults for the tested UUT. Full testing according to EN 301 893 2 may not be required. If partial testing was performed, this should be indicated as “NT“ in the relevant column of tables 8 and 9 below within the test report. ETSI ETSI TR 102 439 V1.1.1 (2006-08) 158.1.1 Transmitter Table 8: Transmitt

46、er results summary EN Clause Transmitter parameters P (Pass) F (Fail) NT (Not Tested) Report page number 4.2 Carrier Frequencies 4.3 RF Output power, Transmit Power Control (TPC) and power density 4.4 Transmitter unwanted emissions 4.4.1 Transmitter unwanted emissions outside the 5 GHz RLAN bands 4.

47、4.2 Transmitter unwanted emissions within the 5 GHz RLAN bands 4.6 Dynamic Frequency Selection (DFS) 4.6.2.1 Channel Availability Check 4.6.2.2 In-Service Monitoring 4.6.2.3 Channel Shutdown 4.6.2.4 Non-Occupancy Period 4.6.2.5 Uniform Spreading 8.1.2 Receiver Table 9: Receiver results summary EN Cl

48、ause Receiver parameters P F NT Report page number 4.5 Receiver spurious emissions ETSI ETSI TR 102 439 V1.1.1 (2006-08) 168.2 Test results 8.2.1 Carrier frequencies 8.2.1.1 Lower sub-band (5 150 MHz to 5 350 MHz) Table 10: Carrier frequencies in the Lower sub-band - Test results Test Conditions (se

49、e EN 301 893 2, clause 5.3.2.1): Power Setting : dBm EIRP Conducted Duty Cycle: % Test results Rel. Humidity: % Test Frequency: 5 180 MHz Measured Frequency (MHz) Delta Frequency (kHz) 20 ppm Limit (+/- kHz) Margin (kHz) TnomC VnomVac/dc TminC VminVac/dc VmaxVac/dc TmaxC VminVac/dc VmaxVac/dc Test Frequency: 5 320 MHz TnomC VnomVac/dc TminC VminVac/dc VmaxVac/dc TmaxC VminVac/dc VmaxVac/dc Measurement uncertainty: Hz 8.2.1.2 Higher Sub-band (5 470 MHz to 5 725 M

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