Report No.: R-RFCEP14V01. Test Report
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1 Report No.: R-RFCEP14V01 Test Report Product Name WLAN b/g/n 1T1R+BT2.1 EDR Combo Slim Module Model No. MS-3871 Transmitter Module msi / MS-3871 Applicant Address MICRO-STAR INT'L Co., LTD. No. 69, Li-De St., Jung-He City, Taipei Hsien, Taiwan, R.O.C. Date of Receipt March 04, 2010 Issued Date April 27, 2010 Report No R-RFCEP14V01 Report Version V1.0 The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. Page: 1 of 97
2 Report No.: R-RFCEP14V01 Test Report Certification Issued Date : April 27, 2010 Report No. : R-RFCEP14V01 Product Name WLAN b/g/n 1T1R+BT2.1 EDR Combo Slim Module Applicant MICRO-STAR INT'L Co., LTD. Address No. 69, Li-De St., Jung-He City, Taipei Hsien, Taiwan, R.O.C. Manufacturer MICRO-STAR INT'L Co., LTD. Model No. MS-3871 EUT Rated Voltage DC 3.3V EUT Test Voltage AC 230V/50Hz Trade Name msi Applicable Standard ETSI EN :V1.7.1 ( ) Test Result Complied The test results relate only to the samples tested. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation. Documented By : Tested By : ( Senior Adm. Specialist / Rita Huang ) Approved By : ( Engineer / Molin Huang ) ( Manager / Vincent Lin) Page: 2 of 97
3 Report No.: R-RFCEP14V01 TABLE OF CONTENTS Description Page 1. GENERAL INFORMATION EUT Description Tested System Details Configuration of tested System EUT Exercise Software Test Facility Effective radiated Power Test Equipment Test Setup Test Condition Limits Test Procedure Uncertainty Test Specification Test Result Peak Power Density Test Equipment Test Setup Test Condition Limits Test Procedure Uncertainty Test Specification Test Result Frequency Range Test Equipment Test Setup Test Condition Limits Test Procedure Uncertainty Test Specification Test Result Spurious Emission Test Equipment Test Setup Test Condition Limits Test Procedure Uncertainty Test Specification Test Result...18 Page: 3 of 97
4 Report No.: R-RFCEP14V Medium access protocol Test Equipment Test Setup Test Condition Requirement Test Specification Test Result Measurement Uncertainty Values EMC Reduction Method During Compliance Testing Test Result Test Data of Effective Radiated Power Test Data of Peak Power Density Test Data of Frequency Range Test Data of Spurious Emission Test Data of Medium access protocol...95 Attachment 1: EUT Test Photographs Attachment 2: EUT Detailed Photographs Page: 4 of 97
5 Report No.: R-RFCEP14V01 1. GENERAL INFORMATION 1.1. EUT Description Product Name WLAN b/g/n 1T1R+BT2.1 EDR Combo Slim Module Trade Name msi Model No. MS-3871 Frequency Range MHz for b/g/n-20BW, MHz for n-40BW Number of Channels b/g/n-20MHz: 13, n-40mhz: 7 Data Rate b: 1-11Mbps, g: 6-54Mbps, n: up to 150Mbps Channel Separation b/g/n: 5 MHz Type of Modulation b:DSSS, DBPSK, DQPSK, CCK g/n:OFDM, BPSK, QPSK, 16QAM, 64QAM Antenna type Printed on PCB Antenna Gain Refer to the table Antenna List Channel Control Auto Antenna List No. Manufacturer Part No. Antenna Type Peak Gain 1 MSI N/A Printed on PCB 1.93dBi for 2.5 GHz Page: 5 of 97
6 Report No.: R-RFCEP14V b/g/n-20MHz Center Frequency of Each Channel: Channel Frequency Channel Frequency Channel Frequency Channel Frequency Channel 01: 2412 MHz Channel 02: 2417 MHz Channel 03: 2422 MHz Channel 04: 2427 MHz Channel 05: 2432 MHz Channel 06: 2437 MHz Channel 07: 2442 MHz Channel 08: 2447 MHz Channel 09: 2452 MHz Channel 10: 2457 MHz Channel 11: 2462 MHz Channel 12: 2467 MHz Channel 13: 2472 MHz n-40MHz Center Frequency of Each Channel: Channel Frequency Channel Frequency Channel Frequency Channel Frequency Channel 01: 2422 MHz Channel 02: 2427 MHz Channel 03: 2432 MHz Channel 04: 2437 MHz Channel 05: 2442 MHz Channel 06: 2447 MHz Channel 07: 2452 MHz 1. The EUT is a WLAN b/g/n 1T1R+BT2.1 EDR Combo Slim Module, Contains functions and so on WiFi Bluetooth, this report for WiFi. 2. The radiation measurements are performed in X, Y, Z axis positioning. Only the worst case is shown in the report. 3. This Module has different conditions of aluminum foil when sell to OEM. 4. The Device is combo card have WLAN and Bluetooth function. The WLAN antenna distance form Bluetooth antenna is 6cm. 5. QuieTek is verified all construction and function in typical operation. All the test modes were carried out with the EUT in normal operation, which was shown in this test report and defined as: Mode 1: Transmit (802.11b 1Mbps) Mode 2: Transmit (802.11g 6Mbps) Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) Test Mode Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) NOTE: The Module has different conditions of aluminum foil when sell to OEM. In test item of radiation emission is evaluate three condition of aluminum foil. Three condition are list in below: Shielding A: EUT without aluminum foil. Shielding B: EUT with middle size of aluminum foil. Shielding C: EUT with larger size of aluminum foil. Other test item are use shielding C. Page: 6 of 97
7 Report No.: R-RFCEP14V Tested System Details The types for all equipment, plus descriptions of all cables used in the tested system (including inserted cards) are: Product Manufacturer Model No. Serial No. Power Cord 1 Notebook PC DELL PPT N/A Non-Shielded, 0.8m 2 Test Fixture N/A N/A N/A N/A Signal Cable Type Signal cable Description A USB Cable Non-Shielded, 1.5m B Signal Cable Non-Shielded, 1.0m 1.3. Configuration of tested System 1.4. EUT Exercise Software (1) Setup the EUT as shown in Section 1.3 (2) Execute Test Software on the EUT. (3) Configure the test mode, the test channel, and the data rate. (4) Press OK to start the continuous transmission. (5) Verify that the EUT works properly. Page: 7 of 97
8 Report No.: R-RFCEP14V Test Facility Ambient conditions in the laboratory: Items Test Item Required Actual Temperature ( C) ETSI EN Humidity (%RH) The related certificate for our laboratories about the test site and management system can be downloaded from QuieTek Corporation s Web Site : The address and introduction of QuieTek Corporation s laboratories can be founded in our Web site : Site Description: Accreditation on NVLAP NVLAP Lab Code: Accreditation on DNV Statement No. : LAB11 Accreditation on Nemko Certificate No.: ELA 165 Accreditation on TUV Rheinland Certificate No.: Accredited by TAF Accredited Number: 0914 Site Name: Site Address: Quietek Corporation No. 5-22, Ruei-Shu Valley, Ruei-Ping Tsuen, Lin-Kou Shiang, Taipei, Taiwan, R.O.C. TEL : / FAX : service@quietek.com Page: 8 of 97
9 Report No.: R-RFCEP14V01 2. Effective radiated Power 2.1. Test Equipment The following test equipments are used during the radiated emission tests: Equipment Manufacturer Model No./Serial No. Last Cal. X Power Meter Anritsu ML2495A/6K May, 2009 X Power Sensor Anritsu MA2411B/ Jun, 2009 X 8-WAY Power Divider JFW 50PD-647 / Apr., 2010 X Temperature Chamber TDE CHM 150CT March, All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. 2. The test instruments marked with X are used to measure the final test results. 3. The power combiner is used for measure 11n mode Test Setup Conduction Power Measurement Power Meter 12dBuV Temperature Chamber Power Supply 2.3. Test Condition Standard Temperature and Humidity, Standard Test Voltage 2.4. Limits The effective radiated power is defined as the total power of the transmitter. The effective radiated power shall be equal to or less than -10 dbw (100 mw) e.i.r.p. This limit shall apply for any combination of power level and intended antenna assembly. Page: 9 of 97
10 Report No.: R-RFCEP14V Test Procedure The following method of measurement shall apply to both conducted and radiated measurements. The measurement shall be performed using normal operation of the equipment with modulation, using the test data sequence, applied. Using a suitable means, the output of the transmitter shall be coupled to a diode detector; the output of the diode detector shall be connected to the vertical channel of an oscilloscope; the combination of the diode detector and the oscilloscope shall be capable of faithfully reproducing the envelope peaks and the duty cycle of the transmitter output signal. The measurement shall be repeated at the lowest, the middle, and highest frequency of the stated frequency range. FHSS equipment shall be made to hop continuously to each of these three frequencies separately Uncertainty The measurement uncertainty is defined as ± 1.27dB 2.7. Test Specification According to ETSI EN :V1.7.1 ( ) 2.8. Test Result The emission from the EUT was below the specified limits. The worst-case emissions are shown in section 8. The acceptance criterion was met and the EUT passed the test. Page: 10 of 97
11 Report No.: R-RFCEP14V01 3. Peak Power Density 3.1. Test Equipment The following test equipments are used during the radiated emission tests: Equipment Manufacturer Model No./Serial No. Last Cal. Spectrum Analyzer R&S FSP40 / Jun, 2009 Spectrum Analyzer Agilent E4407B / US Jun, 2009 X Spectrum Analyzer Agilent N9010A / MY Apr., 2010 X 8-WAY Power Divider JFW 50PD-647 / Apr., All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. 2. The test instruments marked with X are used to measure the final test results. 3. The power combiner is used for measure 11n mode Test Setup EUT RF Cable 8-WAY Power Divider Spectrum Analyzer 3.3. Test Condition Standard Temperature and Humidity, Standard Test Voltage 3.4. Limits The maximum spectral power density is defined as the highest level of power in Watts per Hertz generated by the transmitter within the power envelope. For equipment using FHSS modulation, the maximum spectral power density shall be limited to -10 dbw (100 mw) per 100 khz e.i.r.p. For equipment using other types of modulation, the maximum spectral power density shall be limited to-20 dbw(10 mw) per MHz e.i.r.p. Page: 11 of 97
12 Report No.: R-RFCEP14V Test Procedure The maximum spectral power density shall be determined using a spectrum analyzer of adequate bandwidth for the type of modulation being used in combination with an RF power meter. Connect an RF power meter to the IF output of the spectrum analyzer and correct its reading using a known reference source, e.g. a signal generator. The above procedure shall be repeated for each of the three frequencies identified by the procedure given in limit (subclause ) Where the spectrum analyzer bandwidth is non-gaussian, a suitable correction factor shall be determined and applied. Where a spectrum analyzer is equipped with a facility to measure power density, this facility may be used instead of the above procedure Uncertainty The measurement uncertainty is defined as ± 1.27 db 3.7. Test Specification According to ETSI EN :V1.7.1 ( ) 3.8. Test Result The emission from the EUT was below the specified limits. The worst-case emissions are shown in section 8. The acceptance criterion was met and the EUT passed the test. Page: 12 of 97
13 Report No.: R-RFCEP14V01 4. Frequency Range 4.1. Test Equipment Equipment Manufacturer Model No./Serial No. Last Cal. Spectrum Analyzer R&S FSP40 / Jun, 2009 Spectrum Analyzer Agilent E4407B / US Jun, 2009 X Spectrum Analyzer Agilent N9010A / MY Apr., 2010 X 8-WAY Power Divider JFW 50PD-647 / Apr., 2010 X Temperature Chamber TDE CHM 150CT March, All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. 2. The test instruments marked with X are used to measure the final test results. 3. The power combiner is used for measure 11n mode Test Setup Conduction Power Measurement Spectrum 12dBuV Temperature Chamber Power Supply 4.3. Test Condition Standard Temperature and Humidity, Standard Test Voltage Page: 13 of 97
14 Report No.: R-RFCEP14V Limits The frequency range of the equipment is determined by the lowest and highest frequencies occupied by the power envelope. f H is the highest frequency of the power envelope: it is the frequency furthest above the frequency of maximum power where the output power drops below the level of -80 dbm/hz e.i.r.p. spectral power density (-30 dbm if measured in a100 khz bandwidth). f L is the lowest frequency of the power envelope; it is the frequency furthest below the frequency of maximum power where the output power drops below the level equivalent to -80 dbm/hz e.i.r.p. spectral power density (or -30 dbm if measured in a 100 khz bandwidth). For a given operating frequency, the width of the power envelope is (f H - f L). In equipment that allows adjustment or selection of difference operation frequencies, the power envelope takes up difference positions in the allowed band. The frequency range is determined by the lowest value of f L and the highest value of f H resulting from the adjustment of the equipment to the lowest and highest operating frequencies. For all equipment the frequency range shall lie within the band 2.4GHz to GHz (f L > 2.4GHz and f H < GHz) Test Procedure The measurement procedure shall be as follows: a) Place the spectrum analyzer in video averaging mode with a minimum of 50 sweeps selected and activate the transmitter with modulation applied. The RF emission of the equipment shall be displayed on the spectrum analyzer; b) Select lowest operating frequency of the equipment under test; c) Using the marker of the spectrum analyzer, find lowest frequency below the operating frequency at which spectral power density drops below the level given in limit (subclause 5.2.3); d) Select the highest operating frequency of the equipment under test; e) Find the highest frequency at which the spectral power density drops below the value given in limit (subclause ); f) The difference between the frequencies measured in steps c) and e) is the frequency range Uncertainty The measurement uncertainty is defined as ± 100 khz Page: 14 of 97
15 Report No.: R-RFCEP14V Test Specification According to ETSI EN :V1.7.1 ( ) 4.8. Test Result The emission from the EUT was below the specified limits. The worst-case emissions are shown in section 8. The acceptance criterion was met and the EUT passed the test. Page: 15 of 97
16 Report No.: R-RFCEP14V01 5. Spurious Emission 5.1. Test Equipment The following test equipment are used during the radiated emission test: Test Site Equipment Manufacturer Model No./Serial No. Last Cal. Site # 3 X Bilog Antenna Schaffner Chase CBL6112B/2673 Sep., 2009 X Horn Antenna Schwarzbeck BBHA9120D/D305 Sep., 2009 X Horn Antenna Schwarzbeck BBHA9170/208 Jul., 2009 X Pre-Amplifier QTK QTK-AMP-03 / 0003 May, 2009 X Pre-Amplifier Agilent 8447D/2944A09549 Sep., 2009 X Pre-Amplifier MITEQ AMF-4D P/ Mar, 2010 X Spectrum Analyzer Agilent E4407B / US May, All equipments that need to calibrate are with calibration perio d of 1 year. 2. Mark X test instruments are used to measure the final test results Test Setup 3m FRP Dome 1m to 4m Non-Conducted Table Load EUT Antenna Mast Bilog or Horn Antenna Antenna height can be moved from 1m to 4m, Antenna and turntable distance 3m 1.5 m Test Receiver Fully Soldered Ground Plane TO Controller To Receiver Page: 16 of 97
17 Report No: R-RFCEP14V Test Condition Standard Temperature and Humidity, Standard Test Voltage 5.4. Limits Transmitter limits for narrowband spurious emission Frequency Range Limit when operating Limit when in standby 30MHz to 1 GHz -36 dbm -57 dbm Above 1 GHz to GHz -30 dbm -47 dbm 1.8 GHz to 1.9 GHz 5.15 GHz to 5.3 GHz -47 dbm -47 dbm Transmitter limits for wideband spurious emission Frequency Range Limit when operating Limit when in standby 30MHz to 1 GHz -86 dbm/hz -107 dbm/hz Above 1 GHz to GHz -80 dbm/hz -97 dbm/hz 1.8 GHz to 1.9 GHz 5.15 GHz to 5.3 GHz -97 dbm/hz -97 dbm/hz Narrowband spurious emission limit for receivers Frequency Range 30MHz to 1 GHz Above 1 GHz to GHz Limit -57 dbm -47 dbm Wideband spurious emission limit for receivers Frequency Range 30MHz to 1 GHz Above 1 GHz to GHz Limit -107 dbm/hz -97 dbm/hz Page : 17 of 43
18 Report No: R-RFCEP14V Test Procedure The EUT is placed on a turn table which is 1.5 meters above ground. The turn table can rotate 360 degrees to determine the position of the maximum emission level. The EUT was positioned such that the distance from antenna to the EUT was 3 meters.the antenna can move up and down between 1 meter and 4 meters to find out the maximum emission level. Broadband antenna (calibrated bi-log and horn antenna) are used as a receiving antenna. Both horizontal and vertical polarization of the antenna are set on measurement. And a high frequency preamlifier were used increase the sensitivity of the measuring. In order to find the maximum emission, all of the interface cables must be manipulated according to ETSI EN :V1.7.1 ( ) on radiated measurement. The additional notch filter below 1GHz was used to measure the level of harmonics radiated emission during field dtrength of harmonics measurement. The bandwidth setting on the field strength meter (R & S Spectrum Analyzer ESI26 ) is 100 khz. The frequency range from 30MHz to 12.75GHz is checked Uncertainty The measurement uncertainty above 1G is defined as ± 3.9 db under 1G is defined as ± 3.8 db 5.7. Test Specification According to ETSI EN :V1.7.1 ( ) 5.8. Test Result The emission from the EUT was below the specified limits. The worst-case emissions are shown in section 8. The acceptance criterion was met and the EUT passed the test. Page : 18 of 43
19 Report No: R-RFCEP14V Medium access protocol Test Equipment The following test equipments are used during the radiated emission tests: Equipment Manufacturer Model No./Serial No. Last Cal. Spectrum Analyzer R&S FSP40 / Jun, 2009 Spectrum Analyzer Agilent E4407B / US Jun, 2009 X Spectrum Analyzer Agilent N9010A / MY Apr., 2010 X 8-WAY Power Divider JFW 50PD-647 / Apr., All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. 2. The test instruments marked with X are used to measure the final test results. 3. The power combiner is used for measure 11n mode Test Setup EUT RF Cable 8-WAY Power Divider Spectrum Analyzer Test Condition Normal test condition Requirement A medium access protocol shall be implemented by the equipment Test Specification According to ETSI EN :V1.7.1 ( ) Test Result The test data is shown in Section 8. The EUT complies the specified limits and passes the test. Page : 19 of 43
20 6. Measurement Uncertainty Values The maximum values of the absolute measurement uncertainties of the measurements defined in the present document shall not exceed the values given below: Parameter Uncertainty Radio frequency ± 1 x10 5 Total RF power, conducted ± 1.5 db RF power density, conducted ± 3 db Spurious emissions, conducted ± 3 db All emissions, radiated ± 6 db Temperature ± 1 o C Humidity ± 5 % DC and low frequency voltages ± 3 % Page:20 of 97
21 7. EMC Reduction Method During Compliance Testing No modification was made during testing. Page:21 of 97
22 8. Test Result The test results in the emission and the immunity were performed according to the requirements of measurement standard and process. Quietek Corporation is assumed full responsibility for the accuracy and completeness of these measurements. The test data of the emission is listed as below. All the tests were carried out with the EUT in normal operation, which was defined as: Test Mode Mode 1: Transmit (802.11b 1Mbps) Mode 2: Transmit (802.11g 6Mbps) Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) NOTE: The Module has different conditions of aluminum foil when sell to OEM. In test item of radiation emission is evaluate three condition of aluminum foil. Three condition are list in below: Shielding A: EUT without aluminum foil. Shielding B: EUT with middle size of aluminum foil. Shielding C: EUT with larger size of aluminum foil. Other test item are use shielding C. Page:22 of 97
23 8.1. Test Data of Effective Radiated Power Test Item : Effective Radiated Power Test Mode : Mode 1: Transmit (802.11b 1Mbps) Antenna Gain: 1.93dBi, Duty Cycle: 1, Cable Loss: 0.5dB Test Conditions Channel Freq. (MHz) Reading Level (dbm) Emission Level (dbm) Limit (dbm) Tnom (23) o C Vnom (230) V Tmax (35) o C Vmax (253) V Tmax (35) o C Vnim (207) V Tnim (0) o C Vmax (253) V Tnim (0) o C Vnim (207) V * Emission Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Page:23 of 97
24 Test Item : Effective Radiated Power Test Mode : Mode 2: Transmit (802.11g 6Mbps) Antenna Gain: 1.93dBi, Duty Cycle: 1, Cable Loss: 0.5dB Test Conditions Channel Freq. (MHz) Reading Level (dbm) Emission Level (dbm) Limit (dbm) Tnom (23) o C Vnom (230) V Tmax (35) o C Vmax (253) V Tmax (35) o C Vnim (207) V Tnim (0) o C Vmax (253) V Tnim (0) o C Vnim (207) V * Emission Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Page:24 of 97
25 Test Item : Effective Radiated Power Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) Antenna Gain: 1.93dBi, Duty Cycle: 1, Cable Loss: 0.5dB Test Conditions Channel Freq. (MHz) Reading Level (dbm) Emission Level (dbm) Limit (dbm) Tnom (23) o C Vnom (230) V Tmax (35) o C Vmax (253) V Tmax (35) o C Vnim (207) V Tnim (0) o C Vmax (253) V Tnim (0) o C Vnim (207) V * Emission Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Page:25 of 97
26 Test Item : Effective Radiated Power Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) Antenna Gain: 1.93dBi, Duty Cycle: 1, Cable Loss: 0.5dB Test Conditions Channel Freq. (MHz) Reading Level (dbm) Emission Level (dbm) Limit (dbm) Tnom (23) o C Vnom (230) V Tmax (35) o C Vmax (253) V Tmax (35) o C Vnim (207) V Tnim (0) o C Vmax (253) V Tnim (0) o C Vnim (207) V * Emission Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Page:26 of 97
27 8.2. Test Data of Peak Power Density Test Item : Peak Power Density Test Mode : Mode 1: Transmit (802.11b 1Mbps) Antenna Gain: 1.93dBi, Cable Loss: 0.5dB, Duty Cycle: 1 Channel Freq. Reading Level Measure Level Limit (MHz) (dbm/mhz) (dbm/mhz) (dbm/mhz) * Measure Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Test Result PASS Page:27 of 97
28 Test Item : Peak Power Density Test Mode : Mode 2: Transmit (802.11g 6Mbps) Antenna Gain: 1.93dBi, Cable Loss: 0.5dB, Duty Cycle: 1 Channel Freq. Reading Level Measure Level Limit (MHz) (dbm/mhz) (dbm/mhz) (dbm/mhz) * Measure Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Test Result PASS Page:28 of 97
29 Test Item : Peak Power Density Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) Antenna Gain: 1.93dBi, Cable Loss: 0.5dB, Duty Cycle: 1 Channel Freq. Reading Level Measure Level Limit (MHz) (dbm/mhz) (dbm/mhz) (dbm/mhz) * Measure Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Test Result PASS Page:29 of 97
30 Test Item : Peak Power Density Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) Antenna Gain: 1.93dBi, Cable Loss: 0.5dB, Duty Cycle: 1 Channel Freq. Reading Level Measure Level Limit (MHz) (dbm/mhz) (dbm/mhz) (dbm/mhz) * Measure Level = Reading Level + Antenna Gain + Cable loss + 10 log (1/Duty Cycle) Test Result PASS Page:30 of 97
31 8.3. Test Data of Frequency Range Test Item : Frequency Range Test Mode : Mode 1: Transmit (802.11b 1Mbps) Test Conditions Tnom (23 o C) Vnom (230 V) Tmax (35 o C) Vmax (253 V) Tmax (35 o C) Vnim (207 V) Tnim (0 o C) Vmax (253 V) Tnim (0 o C) Vnim (207 V) Frequency (MHz) F L F H F L F H F L F H F L F H F L F H Test Result F L : MHz F H : MHz Page:31 of 97
32 Test Item : Frequency Range Test Mode : Mode 2: Transmit (802.11g 6Mbps) Test Conditions Tnom (23 o C) Vnom (230 V) Tmax (35 o C) Vmax (253 V) Tmax (35 o C) Vnim (207 V) Tnim (0 o C) Vmax (253 V) Tnim (0 o C) Vnim (207 V) Frequency (MHz) F L F H F L F H F L F H F L F H F L F H Test Result F L : MHz F H : MHz Page:32 of 97
33 Test Item : Frequency Range Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) Test Conditions Tnom (23 o C) Vnom (230 V) Tmax (35 o C) Vmax (253 V) Tmax (35 o C) Vnim (207 V) Tnim (0 o C) Vmax (253 V) Tnim (0 o C) Vnim (207 V) Frequency (MHz) F L F H F L F H F L F H F L F H F L F H Test Result F L : MHz F H : MHz Page:33 of 97
34 Test Item : Frequency Range Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) Test Conditions Tnom (23 o C) Vnom (230 V) Tmax (35 o C) Vmax (253 V) Tmax (35 o C) Vnim (207 V) Tnim (0 o C) Vmax (253 V) Tnim (0 o C) Vnim (207 V) Frequency (MHz) F L F H F L F H F L F H F L F H F L F H Test Result F L : MHz F H : MHz Page:34 of 97
35 8.4. Test Data of Spurious Emission Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding A Page:35 of 97
36 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding A Page:36 of 97
37 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2472MHz) - Shielding A Page:37 of 97
38 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding B Page:38 of 97
39 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding B Page:39 of 97
40 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2472MHz) - Shielding B Page:40 of 97
41 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding C Page:41 of 97
42 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding C (Without U12 Component) Page:42 of 97
43 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2412MHz) - Shielding C Page:43 of 97
44 Test Mode : Mode 1: Transmit (802.11b 1Mbps) (2472MHz) - Shielding C Page:44 of 97
45 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding A Page:45 of 97
46 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding A Page:46 of 97
47 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2472MHz) - Shielding A Page:47 of 97
48 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding B Page:48 of 97
49 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding B Page:49 of 97
50 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2472MHz) - Shielding B Page:50 of 97
51 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding C Page:51 of 97
52 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding C (Without U12 Component) Page:52 of 97
53 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2412MHz) - Shielding C Page:53 of 97
54 Test Mode : Mode 2: Transmit (802.11g 6Mbps) (2472MHz) - Shielding C Page:54 of 97
55 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding A Page:55 of 97
56 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding A Page:56 of 97
57 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding A Page:57 of 97
58 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding B Page:58 of 97
59 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding B Page:59 of 97
60 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding B Page:60 of 97
61 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C Page:61 of 97
62 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C (Without U12 Component) Page:62 of 97
63 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C Page:63 of 97
64 Test Mode : Mode 3: Transmit (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding C Page:64 of 97
65 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding A Page:65 of 97
66 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding A Page:66 of 97
67 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding A Page:67 of 97
68 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding B Page:68 of 97
69 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding B Page:69 of 97
70 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding B Page:70 of 97
71 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C Page:71 of 97
72 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C (Without U12 Component) Page:72 of 97
73 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C Page:73 of 97
74 Test Mode : Mode 4: Transmit (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding C Page:74 of 97
75 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding A Page:75 of 97
76 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding A Page:76 of 97
77 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding A Page:77 of 97
78 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding B Page:78 of 97
79 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding B Page:79 of 97
80 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding B Page:80 of 97
81 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C Page:81 of 97
82 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C (Without U12 Component) Page:82 of 97
83 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2412MHz) - Shielding C Page:83 of 97
84 Test Mode : Mode 5: Receive (802.11n MCS0 7.2Mbps 20MBW) (2472MHz) - Shielding C Page:84 of 97
85 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding A Page:85 of 97
86 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding A Page:86 of 97
87 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding A Page:87 of 97
88 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding B Page:88 of 97
89 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding B Page:89 of 97
90 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding B Page:90 of 97
91 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C Page:91 of 97
92 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C (Without U12 Component) Page:92 of 97
93 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2422MHz) - Shielding C Page:93 of 97
94 Test Mode : Mode 6: Receive (802.11n MCS0 15Mbps 40MBW) (2452MHz) - Shielding C Page:94 of 97
95 8.5. Test Data of Medium access protocol A medium access protocol Distributed Coordination Function (DCF) is implemented by this equipment, which is a fundamental MAC technique of the IEEE wireless LAN standard. It is a mechanism designed to facilitate spectrum sharing with other devices in a wireless network. Page:95 of 97
96 Attachment 1: EUT Test Photographs Page:96 of 97
97 Report No.: R-RFCEP14V01.Attachment 1: EUT Test Setup Photographs Front View of Spurious Emission Test - Shielding A (X-axis) Back View of Spurious Emission Test - Shielding A (X-axis) Page : 1 of 6
98 Report No.: R-RFCEP14V01 Front View of Spurious Emission Test (Horn) - Shielding A (X-axis) Back View of Spurious Emission Test (Horn) - Shielding A (X-axis) Page : 2 of 6
99 Report No.: R-RFCEP14V01 Front View of Spurious Emission Test - Shielding B (Z-axis) Back View of Spurious Emission Test - Shielding B (Z-axis) Page : 3 of 6
100 Report No.: R-RFCEP14V01 Front View of Spurious Emission Test (Horn) - Shielding B (Z-axis) Back View of Spurious Emission Test (Horn) - Shielding B (Z-axis) Page : 4 of 6
101 Report No.: R-RFCEP14V01 Front View of Spurious Emission Test - Shielding C (X-axis) Back View of Spurious Emission Test - Shielding C (X-axis) Page : 5 of 6
102 Report No.: R-RFCEP14V01 Front View of Spurious Emission Test (Horn) - Shielding C (X-axis) Back View of Spurious Emission Test (Horn) - Shielding C (X-axis) Page : 6 of 6
103 Attachment 2: EUT Detailed Photographs Page:97 of 97
104 Report No.: R-RFCEP14V01 Attachment 2 : EUT Detailed Photographs (1) EUT Photo (without aluminum foil) (2) EUT Photo (without aluminum foil) Page : 1 of 14
105 Report No.: R-RFCEP14V01 (3) EUT Photo (with middle size aluminum foil) (4) EUT Photo (with middle size aluminum foil) Page : 2 of 14
106 Report No.: R-RFCEP14V01 (5) EUT Photo (with middle size aluminum foil) (6) EUT Photo (with large size of aluminum foil) Page : 3 of 14
107 Report No.: R-RFCEP14V01 (7) EUT Photo (with large size of aluminum foil) (8) EUT Photo (with large size of aluminum foil) Page : 4 of 14
108 Report No.: R-RFCEP14V01 (9) EUT Photo (with U12 component) (10) EUT Photo (with U12 component) Page : 5 of 14
109 Report No.: R-RFCEP14V01 (11) EUT Photo (with U12 component) with U12 component (12) EUT Photo (with U12 component) Page : 6 of 14
110 Report No.: R-RFCEP14V01 (13) EUT Photo (with U12 component) (14) EUT Photo (with U12 component) Page : 7 of 14
111 Report No.: R-RFCEP14V01 (15) EUT Photo (with U12 component) (16) EUT Photo (with U12 component) Page : 8 of 14
112 Report No.: R-RFCEP14V01 (17) EUT Photo (without U12 component) (18) EUT Photo (without U12 component) Page : 9 of 14
113 Report No.: R-RFCEP14V01 (19) EUT Photo (without U12 component) (20) EUT Photo (without U12 component) Page : 10 of 14
114 Report No.: R-RFCEP14V01 (21) EUT Photo (without U12 component) without U12 component (22) EUT Photo (without U12 component) Page : 11 of 14
115 Report No.: R-RFCEP14V01 (23) EUT Photo (without U12 component) (24) EUT Photo (without U12 component) Page : 12 of 14
116 Report No.: R-RFCEP14V01 (25) EUT Photo (without U12 component) (26) EUT Photo (without U12 component) Page : 13 of 14
117 Report No.: R-RFCEP14V01 (27) EUT Photo 6cm Page : 14 of 14
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