FCC RF Test Report. SPORTON INTERNATIONAL INC. No. 52, Hwa Ya 1 st Rd., Hwa Ya Technology Park, Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C.

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1 FCC RF Test Report APPLICANT : Sierra Wireless Inc. EQUIPMENT : Development Platform BRAND NAME : mangoh MODEL NAME : Red FCC ID : N7NRED STANDARD : FCC Part 5 Subpart C CLASSIFICATION : (DTS) Digital Transmission System The product was received on Aug. 0, 207 and testing was completed on Sep. 5, 207. We,, would like to declare that the tested sample has been evaluated in accordance with the test procedures and has been in compliance with the applicable technical standards. The test results in this report apply exclusively to the tested model / sample. Without written approval of, the test report shall not be reproduced except in full. Reviewed by: Joseph Lin / Supervisor Approved by: Jones Tsai / Manager No. 52, Hwa Ya st Rd., Hwa Ya Technology Park, Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C. Page Number : of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

2 TABLE OF CONTENTS REVISION HISTORY... 3 SUMMARY OF TEST RESULT... 4 GENERAL DESCRIPTION Applicant Manufacturer Product Feature of Equipment Under Test Modification of EUT Testing Location Applicable Standards TEST CONFIGURATION OF EQUIPMENT UNDER TEST Carrier Frequency and Channel Test Mode Connection Diagram of Test System Support Unit used in test configuration and system EUT Operation Test Setup Measurement Results Explanation Example TEST RESULT dB and 99% Bandwidth Measurement Output Power Measurement Power Spectral Density Measurement Conducted Band Edges and Spurious Emission Measurement Radiated Band Edges and Spurious Emission Measurement AC Conducted Emission Measurement Antenna Requirements LIST OF MEASURING EQUIPMENT UNCERTAINTY OF EVALUATION APPENDIX A. CONDUCTED TEST RESULTS APPENDIX B. AC CONDUCTED EMISSION TEST RESULT APPENDIX C. RADIATED SPURIOUS EMISSION APPENDIX D. RADIATED SPURIOUS EMISSION PLOTS APPENDIX E. DUTY CYCLE PLOTS APPENDIX F. SETUP PHOTOGRAPHS Page Number : 2 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

3 REVISION HISTORY REPORT NO. VERSION DESCRIPTION ISSUED DATE FR7807B Rev. 0 Initial issue of report Sep. 2, 207 Page Number : 3 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

4 SUMMARY OF TEST RESULT Report Section FCC Rule Description Limit Result Remark (a)(2) 6dB Bandwidth 0.5MHz Pass % Bandwidth - Pass (b) Power Output Measurement 30dBm Pass (e) Power Spectral Density 8dBm/3kHz Pass - Conducted Band Edges Pass (d) 20dBc Conducted Spurious Emission Pass (d) Radiated Band Edges and Radiated Spurious Emission 5.209(a) & 5.247(d) Pass Under limit 0.7 db at MHz AC Conducted Emission 5.207(a) Pass Under limit 5.60 db at MHz & 5.247(b) Antenna Requirement N/A Pass - Page Number : 4 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

5 General Description. Applicant Sierra Wireless Inc. 38 Wireless Way Richmond, BC Canada V6V 3A4.2 Manufacturer Sierra Wireless Inc. 38 Wireless Way Richmond, BC Canada V6V 3A4.3 Product Feature of Equipment Under Test Bluetooth, Wi-Fi 2.4GHz 802.b/g/n Antenna Type Product Specification subjective to this standard WLAN: SMT Antenna Bluetooth: SMT Antenna.4 Modification of EUT No modifications are made to the EUT during all test items. Page Number : 5 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

6 .5 Testing Location Sporton Lab is accredited to ISO 7025 by Taiwan Accreditation Foundation (TAF code : 90) and the FCC designation No. TW0007 under the FCC 2.948(e) by Mutual Recognition Agreement (MRA) in FCC Test. Test Site No. 52, Hwa Ya st Rd., Hwa Ya Technology Park, Test Site Location Kwei-Shan District, Tao Yuan City, Taiwan, R.O.C. TEL: FAX: Test Site No. TH05-HY Sporton Site No. CO05-HY Note: The test site complies with ANSI C requirement. Test Site No.58, Aly. 75, Ln. 564, Wenhua 3rd Rd. Guishan Dist, Test Site Location Taoyuan City, Taiwan (R.O.C.) TEL: FAX: Test Site No. Sporton Site No. 03CH-HY Note: The test site complies with ANSI C requirement..6 Applicable Standards According to the specifications of the manufacturer, the EUT must comply with the requirements of the following standards: FCC Part 5 Subpart C FCC KDB Publication No D0 DTS Meas. Guidance v04 ANSI C Remark:. All test items were verified and recorded according to the standards and without any deviation during the test. 2. This EUT has also been tested and complied with the requirements of FCC Part 5, Subpart B, recorded in a separate test report. Page Number : 6 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

7 2 Test Configuration of Equipment Under Test a. The EUT has been associated with peripherals and configuration operated in a manner tended to maximize its emission characteristics in a typical application. Frequency range investigated: conduction emission (50 khz to 30 MHz), radiation emission (9 khz to the 0th harmonic of the highest fundamental frequency or to 40 GHz, whichever is lower). For radiated measurement, pre-scanned in three orthogonal panels, X, Y, Z. The worst cases (Z plane) were recorded in this report. b. AC power line Conducted Emission was tested under maximum output power. 2. Carrier Frequency and Channel Frequency Band MHz Channel Freq. (MHz) Channel Freq. (MHz) Page Number : 7 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

8 2.2 Test Mode Final test mode of conducted test items and radiated spurious emissions are considering the modulation and worse data rates as below table. Modulation Data Rate 802.b Mbps 802.g 6 Mbps 802.n HT20 MCS0 Test Cases AC Conducted Emission Mode : Mode 2 : Bluetooth Tx + Max power channel WLAN (2.4GHz) Tx + Max power channel Remark: The worst case of conducted emission is mode ; only the test data of it was reported. Page Number : 8 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

9 2.3 Connection Diagram of Test System System Simulator AP router Notebook GPS Station BT Earphone Power Source EUT Notebook Cradle Earphone ipod WLAN AP Monitor This example is connection diagram of EUT test configurations.. For detail, please refer to test mode configuration and setup photographs for each test item. 2.4 Support Unit used in test configuration and system Item Equipment Trade Name Model Name FCC ID Data Cable Power Cord. WLAN AP ASUS RT-AC66U MSQ-RTAC66U N/A Unshielded,.8m 2. ipod Apple A285 FCC DoC Shielded,.0 m N/A 3. ipod Earphone Apple A285 DoC UnShielded,.2m N/A AC I/P:Unshielded, 4. NOTE BOOK Lenovo T430 FCC DoC N/A.2m DC O/P:Shielded,.8m 2.5 EUT Operation Test Setup The RF test items, programmed RF utility, MT7637 installed in the notebook make the EUT provide functions like channel selection and power level for continuous transmitting and receiving signals. Page Number : 9 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

10 2.6 Measurement Results Explanation Example For all conducted test items: The offset level is set in the spectrum analyzer to compensate the RF cable loss and attenuator factor between EUT conducted output port and spectrum analyzer. With the offset compensation, the spectrum analyzer reading level is exactly the EUT RF output level. Example : The spectrum analyzer offset is derived from RF cable loss and attenuator factor. Offset = RF cable loss + attenuator factor. Following shows an offset computation example with cable loss 4.2 db and 0dB attenuator. Offset(dB) = RF cable loss(db) + attenuator factor(db). = = 4.2 (db) Page Number : 0 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

11 3 Test Result 3. 6dB and 99% Bandwidth Measurement 3.. Limit of 6dB and 99% Bandwidth The minimum 6 db bandwidth shall be at least 500 khz Measuring Instruments The measuring equipment is listed in the section 4 of this test report Test Procedures. The testing follows FCC KDB Publication No DTS D0 Meas. Guidance v The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 00 khz. Set the Video bandwidth (VBW) = 300 khz. In order to make an accurate measurement. The 6 db bandwidth must be greater than 500 khz. 5. For 99% Bandwidth Measurement, the spectrum analyzer's resolution bandwidth (RBW) = MHz and set the Video bandwidth (VBW) = 3MHz. 6. Measure and record the results in the test report Test Setup Page Number : of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

12 3..5 Test Result of 6dB and 99% Occupied Bandwidth Please refer to Appendix A. Minimum 6dB Bandwidth Maximum 99% Occupied Bandwidth * RBW 00 khz Marker [T ] * RBW MHz Marker [T ] * VBW 300 khz dbm * VBW 3 MHz.2 dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 30 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db Delta 2 [T ] 30 Offset 24.8 db OBW MHz db Temp [T OBW] MHz A dbm A PK MAXH 0-0 D.55 dbm D dbm 2 LVL SA * MAXH 0 0 T GHz Temp 2 [T OBW] dbm LVL GHz T DB 3DB Center GHz 2 MHz/ Span 20 MHz Center GHz 5 MHz/ Span 50 MHz Date: 7.SEP.207 5:36:42 Date: 7.SEP.207 7:09:4 Note : The occupied channel bandwidth is maintained within the band of operation for all of the modulations. Page Number : 2 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

13 3.2 Output Power Measurement 3.2. Limit of Output Power For systems using digital modulation in the MHz, the limit for peak output power is 30dBm. If transmitting antenna of directional gain greater than 6dBi are used the peak output power from the intentional radiator shall be reduced below the above stated value by the amount in db that the directional gain of the antenna exceeds 6 dbi. In case of point-to-point operation, the limit has to be reduced by db for every 3dB that the directional gain of the antenna exceeds 6dBi Measuring Instruments The measuring equipment is listed in the section 4 of this test report Test Procedures. The testing follows the Measurement Procedure of FCC KDB No DTS D0 Meas. Guidance v04 section 9..2 PKPM Peak power meter method. 2. The RF output of EUT was connected to the power meter by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Measure the conducted output power and record the results in the test report Test Setup Test Result of Peak Output Power Please refer to Appendix A Test Result of Average output Power (Reporting Only) Please refer to Appendix A. Page Number : 3 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

14 3.3 Power Spectral Density Measurement 3.3. Limit of Power Spectral Density The peak power spectral density shall not be greater than 8dBm in any 3kHz band at any time interval of continuous transmission Measuring Instruments The measuring equipment is listed in the section 4 of this test report Test Procedures. The testing follows Measurement Procedure 0.2 Method PKPSD of FCC KDB Publication No D0 DTS Meas. Guidance v04 2. The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Make the measurement with the spectrum analyzer's resolution bandwidth (RBW) = 3 khz. Video bandwidth VBW = 0 khz In order to make an accurate measurement, set the span to.5 times DTS Channel Bandwidth. (6dB BW) 5. Detector = peak, Sweep time = auto couple, Trace mode = max hold, Allow trace to fully stabilize. Use the peak marker function to determine the maximum power level. 6. Measure and record the results in the test report Test Setup Page Number : 4 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

15 3.3.5 Test Result of Power Spectral Density Please refer to Appendix A. Worst Case Power Density (dbm/3khz) * RBW 3 khz Marker [T ] * VBW 0 khz dbm Ref 20 dbm * Att 20 db SWT 2.9 s GHz 20 Offset 24.8 db 0 A PK MAXH 0 LVL DB Center GHz MHz/ Span MHz Date: 7.SEP.207 7:07:54 Page Number : 5 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

16 3.4 Conducted Band Edges and Spurious Emission Measurement 3.4. Limit of Conducted Band Edges and Spurious Emission Measurement In any 00 khz bandwidth outside of the authorized frequency band, the emissions which fall in the non-restricted bands shall be attenuated at least 20 db / 30dB relative to the maximum PSD level in 00 khz by RF conducted measurement Measuring Instruments The measuring equipment is listed in the section 4 of this test report Test Procedures. The testing follows FCC KDB Publication No D0 DTS Meas. Guidance v The RF output of EUT was connected to the spectrum analyzer by RF cable and attenuator. The path loss was compensated to the results for each measurement. 3. Set to the maximum power setting and enable the EUT transmit continuously. 4. Set RBW = 00 khz, VBW=300 khz, Peak Detector. Unwanted Emissions measured in any 00 khz bandwidth outside of the authorized frequency band shall be attenuated by at least 20 db relative to the maximum in-band peak PSD level in 00 khz when maximum peak conducted output power procedure is used. If the transmitter complies with the conducted power limits based on the use of RMS averaging over a time interval, the attenuation required under this paragraph shall be 30 db instead of 20 db per 5.247(d). 5. Measure and record the results in the test report. 6. The RF fundamental frequency should be excluded against the limit line in the operating frequency band Test Setup Page Number : 6 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

17 3.4.5 Test Result of Conducted Band Edges and Spurious Emission Test Mode : 802.b Temperature : 26~27 C Test Band : 2.4GHz Low Relative Humidity : 49~50% Test Channel : 0 Test Engineer : Blue Lan WLAN 802.b Channel 0 00kHz PSD reference Level Low Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz 2.5 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK PK MAXH 0 LVL MAXH 0 LVL D dbm DB 3DB F Center 2.42 GHz.43 MHz/ Span 4.3 MHz Start 2.3 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 5:07:3 Date: 7.SEP.207 5:07:59 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz 0.4 dbm * VBW 300 khz -0.7 dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 2 0 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 5:08:0 Date: 7.SEP.207 5:08:9 Page Number : 7 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

18 Test Mode : 802.b Temperature : 26~27 C Test Band : 2.4GHz Mid Relative Humidity : 49~50% Test Channel : 06 Test Engineer : Blue Lan WLAN 802.b Channel 06 00kHz PSD reference Level Mid Channel Plot Ref 20 dbm 20 Offset 24.8 db * RBW 00 khz * VBW 300 khz * Att 20 db SWT 5 ms Marker [T ] 2.44 dbm GHz 0 A PK MAXH 0 LVL DB Center GHz.43 MHz/ Span 4.3 MHz Date: 7.SEP.207 5:8:54 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz. dbm * VBW 300 khz -.24 dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 2 0 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 5:9:06 Date: 7.SEP.207 5:9:5 Page Number : 8 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

19 Test Mode : 802.b Temperature : 26~27 C Test Band : 2.4GHz High Relative Humidity : 49~50% Test Channel : Test Engineer : Blue Lan WLAN 802.b Channel 00kHz PSD reference Level High Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz.42 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK PK MAXH 0 LVL MAXH 0 LVL D dbm DB 3DB F Center GHz.362 MHz/ Span 3.62 MHz Start 2.43 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 5:46:44 Date: 7.SEP.207 5:47:09 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz 0.29 dbm * VBW 300 khz -0.9 dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 2 0 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 5:48:6 Date: 7.SEP.207 5:48:25 Page Number : 9 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

20 Test Mode : 802.g Temperature : 26~27 C Test Band : 2.4GHz Low Relative Humidity : 49~50% Test Channel : 0 Test Engineer : Blue Lan WLAN 802.g Channel 0 00kHz PSD reference Level Low Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz -.45 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK MAXH 0 LVL PK MAXH 0 LVL D dbm DB 3DB F Center 2.42 GHz MHz/ Span MHz Start 2.3 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 6:02:58 Date: 7.SEP.207 6:04:3 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz -.52 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 0 2 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 6:04:0 Date: 7.SEP.207 6:04:0 Page Number : 20 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

21 Test Mode : 802.g Temperature : 26~27 C Test Band : 2.4GHz Mid Relative Humidity : 49~50% Test Channel : 06 Test Engineer : Blue Lan WLAN 802.g Channel 06 00kHz PSD reference Level Mid Channel Plot Ref 20 dbm 20 Offset 24.8 db * RBW 00 khz * VBW 300 khz * Att 20 db SWT 5 ms Marker [T ] 0.46 dbm GHz 0 A PK MAXH 0 LVL DB Center GHz MHz/ Span MHz Date: 7.SEP.207 6:09:47 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz dbm * VBW 300 khz -.69 dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 2 0 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 6:09:58 Date: 7.SEP.207 6:0:06 Page Number : 2 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

22 Test Mode : 802.g Temperature : 26~27 C Test Band : 2.4GHz High Relative Humidity : 49~50% Test Channel : Test Engineer : Blue Lan WLAN 802.g Channel 00kHz PSD reference Level High Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz -.49 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK MAXH 0 LVL PK MAXH 0 LVL D dbm DB 3DB F Center GHz MHz/ Span MHz Start 2.43 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 6:7:33 Date: 7.SEP.207 6:7:56 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK PK VIEW 0 2 LVL VIEW 02 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 6:8:09 Date: 7.SEP.207 6:8:7 Page Number : 22 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

23 Test Mode : 802.n HT20 Temperature : 26~27 C Test Band : 2.4GHz Low Relative Humidity : 49~50% Test Channel : 0 Test Engineer : Blue Lan WLAN 802.n HT20 Channel 0 00kHz PSD reference Level Low Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz -2.7 dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK PK MAXH 0 LVL MAXH 0 LVL D dbm DB 3DB F Center 2.42 GHz MHz/ Span MHz Start 2.3 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 7:04:0 Date: 7.SEP.207 7:04:54 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK PK VIEW 0 2 LVL VIEW 02 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 7:05:05 Date: 7.SEP.207 7:05:3 Page Number : 23 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

24 Test Mode : 802.n HT20 Temperature : 26~27 C Test Band : 2.4GHz Mid Relative Humidity : 49~50% Test Channel : 06 Test Engineer : Blue Lan WLAN 802.n HT20 Channel 06 00kHz PSD reference Level Mid Channel Plot * RBW 00 khz Marker [T ] * VBW 300 khz 0.55 dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 0 A PK MAXH 0 LVL DB Center GHz MHz/ Span MHz Date: 7.SEP.207 7:08:5 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz -0. dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK VIEW 0 2 LVL PK VIEW 2 0 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 7:08:27 Date: 7.SEP.207 7:08:36 Page Number : 24 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

25 Test Mode : 802.n HT20 Temperature : 26~27 C Test Band : 2.4GHz High Relative Humidity : 49~50% Test Channel : Test Engineer : Blue Lan WLAN 802.n HT20 Channel 00kHz PSD reference Level High Channel Plot * RBW 00 khz Marker [T ] * RBW 00 khz Marker [T ] * VBW 300 khz dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 5 ms GHz Ref 20 dbm * Att 20 db SWT 5 ms GHz 20 Offset 24.8 db 20 Offset 24.8 db 0 A 0 A PK PK MAXH 0 LVL MAXH 0 LVL D dbm DB 3DB F Center GHz MHz/ Span MHz Start 2.43 GHz 3.5 MHz/ Stop GHz Date: 7.SEP.207 7:27:0 Date: 7.SEP.207 7:27:4 Spurious Emission 30MHz~3GHz Spurious Emission 2GHz~25GHz * RBW 00 khz Marker 2 [T ] * RBW 00 khz Marker 2 [T ] * VBW 300 khz dbm * VBW 300 khz dbm Ref 20 dbm * Att 20 db SWT 300 ms GHz Ref 20 dbm * Att 20 db SWT 2.3 s GHz 20 Offset 24.8 db Marker [T ] 20 Offset 24.8 db Marker [T ] dbm dbm GHz A GHz A PK PK VIEW 0 2 LVL VIEW 02 LVL D dbm -20 D dbm DB 3DB Start 30 MHz 297 MHz/ Stop 3 GHz Start 2 GHz 2.3 GHz/ Stop 25 GHz Date: 7.SEP.207 7:27:26 Date: 7.SEP.207 7:27:34 Page Number : 25 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

26 3.5 Radiated Band Edges and Spurious Emission Measurement 3.5. Limit of Radiated band edge and Spurious Emission Measurement In any 00 khz bandwidth outside the intentional radiator frequency band, all harmonics/spurious must be at least 20 db below the highest emission level within the authorized band. If the output power of this device was measured by spectrum analyzer, the attenuation under this paragraph shall be 30 db instead of 20 db. In addition, radiated emissions which fall in the restricted bands must also comply with the limits as below. Frequency (MHz) Field Strength (microvolts/meter) Measurement Distance (meters) /F(kHz) /F(kHz) Above Measuring Instruments The measuring equipment is listed in the section 4 of this test report. Page Number : 26 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

27 3.5.3 Test Procedures. The testing follows FCC KDB Publication No D0 DTS Meas. Guidance v The EUT was arranged to its worst case and then tune the antenna tower (from m to 4 m) and turntable (from 0 degree to 360 degrees) to find the maximum reading. A pre-amp and a high pass filter are used for the test in order to get better signal level. 3. The EUT was placed on a turntable with 0.8 meter for frequency below GHz and.5 meter for frequency above GHz respectively above ground. 4. The EUT was set 3 meters from the interference receiving antenna, which was mounted on the top of a variable height antenna tower. 5. Corrected Reading: Antenna Factor + Cable Loss + Read Level - Preamp Factor = Level 6. For measurement below GHz, If the emission level of the EUT measured by the peak detector is 3 db lower than the applicable limit, the peak emission level will be reported. Otherwise, the emission measurement will be repeated using the quasi-peak detector and reported. 7. Use the following spectrum analyzer settings: () Span shall wide enough to fully capture the emission being measured; (2) Set RBW=00 khz for f < GHz; VBW RBW; Sweep = auto; Detector function = peak; Trace = max hold; (3) Set RBW = MHz, VBW= 3MHz for f GHz for peak measurement. For average measurement: VBW = 0 Hz, when duty cycle is no less than 98 percent. VBW /T, when duty cycle is less than 98 percent where T is the minimum transmission duration over which the transmitter is on and is transmitting at its maximum power control level for the tested mode of operation. Page Number : 27 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

28 3.5.4 Test Setup For radiated emissions below 30MHz For radiated emissions from 30MHz to GHz Page Number : 28 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

29 For radiated emissions above GHz Test Results of Radiated Spurious Emissions (9kHz ~ 30MHz) The low frequency, which started from 9 khz to 30MHz, was pre-scanned and the result which was 20dB lower than the limit line was not reported Test Result of Radiated Spurious at Band Edges Please refer to Appendix C and D Duty Cycle Please refer to Appendix E Test Result of Radiated Spurious Emission (30MHz ~ 0 th Harmonic) Please refer to Appendix C and D. Page Number : 29 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

30 3.6 AC Conducted Emission Measurement 3.6. Limit of AC Conducted Emission For equipment that is designed to be connected to the public utility (AC) power line, the radio frequency voltage that is conducted back onto the AC power line on any frequency or frequencies within the band 50 khz to 30 MHz shall not exceed the limits in the following table. Frequency of Emission Conducted Limit (dbμv) (MHz) Quasi-Peak Average to 56* 56 to 46* *Decreases with the logarithm of the frequency Measuring Instruments The measuring equipment is listed in the section 4 of this test report Test Procedures. The EUT was placed 0.4 meter from the conducting wall of the shielding room, and it was kept at least 80 centimeters from any other grounded conducting surface. 2. Connect EUT to the power mains through a line impedance stabilization network (LISN). 3. All the support units are connecting to the other LISN. 4. The LISN provides 50 ohm coupling impedance for the measuring instrument. 5. The FCC states that a 50 ohm, 50 microhenry LISN should be used. 6. Both sides of AC line were checked for maximum conducted interference. 7. The frequency range from 50 khz to 30 MHz was searched. 8. Set the test-receiver system to Peak Detect Function and specified bandwidth (IF bandwidth = 9kHz) with Maximum Hold Mode. Page Number : 30 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

31 3.6.4 Test Setup Test Result of AC Conducted Emission Please refer to Appendix B. Page Number : 3 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

32 3.7 Antenna Requirements 3.7. Standard Applicable If directional gain of transmitting antennas is greater than 6dBi, the power shall be reduced by the same level in db comparing to gain minus 6dBi. The use of a permanently attached antenna or of an antenna that uses a unique coupling to the intentional radiator shall be considered sufficient to comply with the rule Antenna Anti-Replacement Construction An embedded-in antenna design is used Antenna Gain The antenna peak gain of EUT is less than 6 dbi. Therefore, it is not necessary to reduce maximum peak output power limit. Page Number : 32 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

33 4 List of Measuring Equipment Instrument Manufacturer Model No. Serial No. Characteristics Calibration Date Test Date Due Date Remark Power Meter Anritsu ML2495A N/A Oct. 06, 206 Aug. 23, 207 ~ Conducted Oct. 05, 207 Sep. 07, 207 (TH05-HY) Power Sensor Anritsu MA24B MHz~40GHz Oct. 06, 206 Aug. 23, 207 ~ Conducted Oct. 05, 207 Sep. 07, 207 (TH05-HY) Spectrum Aug. 23, 207 ~ Conducted Rohde & Schwarz FSP kHz-40GHz Nov. 25, 206 Nov. 24, 207 Analyzer Sep. 07, 207 (TH05-HY) AC Power Conduction ChainTek APC-000W N/A N/A N/A Sep. 5, 207 N/A Source (CO05-HY) LISN Rohde & Schwarz ENV kHz~30MHz Nov. 29, 206 Sep. 5, 207 Nov. 28, 207 Conduction (CO05-HY) LISN Rohde & Schwarz ENV kHz~30MHz Dec. 06, 206 Sep. 5, 207 Dec. 05, 207 Conduction (CO05-HY) EMI Test Conduction Rohde & Schwarz ESU Hz~26.5GHz Dec. 29, 206 Sep. 5, 207 Dec. 28, 207 Receiver (CO05-HY) Amplifier MITEQ TTA HG GHz~40GHz,V Aug. 28, 207 ~ Radiation Jul. 8, 207 Jul. 7, 208 SWR : 2.5: max Sep. 04, 207 (03CH-HY) Amplifier SONOMA 30N kHz~GHz Nov. 0, 206 Aug. 28, 207 ~ Radiation Nov. 09, 207 Sep. 04, 207 (03CH-HY) Bilog Antenna TESEQ CBL 3544&AT-N06 6D&N MHz~GHz Oct. 5, 206 Horn Antenna SCHWARZBECK BBHA 920 D 920D-326 GHz ~ 8GHz Oct. 07, 206 Loop Antenna Rohde & Schwarz HFH2-Z khz~30 MHz Oct. 20, 206 Preamplifier Keysight 8307A MY GHz~26.5GHz Nov. 0, 206 Aug. 28, 207 ~ Radiation Oct. 4, 207 Sep. 04, 207 (03CH-HY) Aug. 28, 207 ~ Radiation Oct. 06, 207 Sep. 04, 207 (03CH-HY) Aug. 28, 207 ~ Radiation Oct. 9, 208 Sep. 04, 207 (03CH-HY) Aug. 28, 207 ~ Radiation Nov. 09, 207 Sep. 04, 207 (03CH-HY) Preamplifier MITEQ AMF-7D-0008 Aug. 28, 207 ~ Radiation GHz~8GHz Jun. 23, 207 Jun. 22, P Sep. 04, 207 (03CH-HY) Spectrum Aug. 28, 207 ~ Radiation Keysight N900A MY Hz ~ 44GHz Oct. 2, 206 Oct., 207 Analyzer Sep. 04, 207 (03CH-HY) Antenna Mast EMEC AM-BS-4500-B N/A ~4m N/A Aug. 28, 207 ~ Radiation N/A Sep. 04, 207 (03CH-HY) Turn Table EMEC TT 2000 N/A 0~360 Degree N/A Aug. 28, 207 ~ Radiation N/A Sep. 04, 207 (03CH-HY) SHF-EHF Horn Aug. 28, 207 ~ Radiation SCHWARZBECK BBHA 970 BBHA GHz- 40GHz Nov. 08, 206 Nov. 07, 207 Antenna Sep. 04, 207 (03CH-HY) EMI Test Aug. 28, 207 ~ Radiation Agilent N9038A(MXE) MY Hz to 26.5GHz Jan. 2, 207 Jan., 208 Receiver Sep. 04, 207 (03CH-HY) Page Number : 33 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

34 5 Uncertainty of Evaluation Uncertainty of Conducted Emission Measurement (50kHz ~ 30MHz) Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y)) 2.70 Uncertainty of Radiated Emission Measurement (30 MHz ~ 000 MHz) Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y)) 5.20 Uncertainty of Radiated Emission Measurement (000 MHz ~ 8000 MHz) Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y)) 5.50 Uncertainty of Radiated Emission Measurement (8000 MHz ~ MHz) Measuring Uncertainty for a Level of Confidence of 95% (U = 2Uc(y)) 5.20 Page Number : 34 of 34 Report Issued Date : Sep. 2, 207 FAX : Report Version : Rev. 0 FCC ID : N7NRED Report Template No.: BU5-FR5CWL Version 2.0

35 Report Number : FR7807B Appendix A. Test Result of Conducted Test Items Test Engineer: Reece Lin Temperature: 2~25 C Test Date: 207/8/23~207/9/7 Relative Humidity: 5~54 % A- of 5

36 Report Number : FR7807B TEST RESULTS DATA 6dB and 99% Occupied Bandwidth 2.4GHz Band Mod. Data Rate NTX CH. Freq. (MHz) 99% Occupied BW (MHz) 6dB BW (MHz) 6dB BW Limit (MHz) Pass/Fail b b b g g g HT20 HT20 HT20 Mbps Mbps Mbps 6Mbps 6Mbps 6Mbps MCS0 MCS0 MCS Pass Pass Pass Pass Pass Pass Pass Pass Pass A-2 of 5

37 Report Number : FR7807B TEST RESULTS DATA Peak Power Table 2.4GHz Band Mod. Data Rate NTX CH. Freq. (MHz) Peak Conducted Power (dbm) Conducted Power Limit (dbm) DG (dbi) EIRP Power (dbm) EIRP Power Limit (dbm) Pass /Fail b b b g g g HT20 HT20 HT20 Mbps Mbps Mbps 6Mbps 6Mbps 6Mbps MCS0 MCS0 MCS Pass Pass Pass Pass Pass Pass Pass Pass Pass A-3 of 5

38 Report Number : FR7807B TEST RESULTS DATA Average Power Table (Reporting Only) 2.4GHz Band Mod. Data Rate NTX CH. Freq. (MHz) Duty Factor (db) Average Conducted Power (dbm) b b b g g g HT20 HT20 HT20 Mbps Mbps Mbps 6Mbps 6Mbps 6Mbps MCS0 MCS0 MCS A-4 of 5

39 Report Number : FR7807B TEST RESULTS DATA Peak Power Density 2.4GHz Band Mod. Data Rate NTX CH. Freq. (MHz) Peak PSD (dbm /3kHz) DG (dbi) Peak PSD Limit (dbm /3kHz) Pass/Fail b b b g g g HT20 HT20 HT20 Mbps Mbps Mbps 6Mbps 6Mbps 6Mbps MCS0 MCS0 MCS Pass Pass Pass Pass Pass Pass Pass Pass Pass A-5 of 5

40 Appendix B. AC Conducted Emission Test Results Test Engineer : Blue Lan Temperature : 26~27 Relative Humidity : 49~50% Page Number : B of B FAX :

41 Level in dbµv EUT Information Report NO : 7807 Test Mode : Mode Test Voltage : Power Form System Phase : Line E N V 2 6 A u to T e s t-l CIS P R 2 2 -Q P L im it a t M a in P o rts CIS P R 2 2 -A v e L imit a t M a in P o rts k M 2M 3M 4M 5M 6 8 0M 20M 30M Fre q u e n c y in H z Final Result Frequency (MHz) QuasiPeak (dbµv) Filter Line Corr. (db) Margin (db) Limit (dbµv) Off L Off L Off L Off L Off L Off L Off L Final Result 2 Frequency (MHz) Average (dbµv) Filter Line Corr. (db) Margin (db) Limit (dbµv) Off L Off L Off L Off L Off L Off L Off L

42 Level in dbµv EUT Information Report NO : 7807 Test Mode : Mode Test Voltage : Power Form System Phase : Neutral E N V 2 6 A u to T e s t-n CIS P R 2 2 -Q P L im it a t M a in P o rts CIS P R 2 2 -A v e L imit a t M a in P o rts k M 2M 3M 4M 5M 6 8 0M 20M 30M Fre q u e n c y in H z Final Result Frequency (MHz) QuasiPeak (dbµv) Filter Line Corr. (db) Margin (db) Limit (dbµv) Off N Off N Off N Off N Off N Off N Off N Off N Final Result 2 Frequency (MHz) Average (dbµv) Filter Line Corr. (db) Margin (db) Limit (dbµv) Off N Off N Off N Off N Off N Off N Off N Off N

43 Appendix C. Radiated Spurious Emission Test Engineer : J.C. Liang / Jacky Hung / Ken Wu Temperature : 26~28 Relative Humidity : 50~55% 2.4GHz 2400~2483.5MHz WIFI 802.b (Band 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H A H * P H * A H 802.b CH 0 242MHz H H P V A V * P V * A V V V P H A H * P H * A H 802.b CH MHz P H A H P V A V * P V * A V P V A V FAX : Page Number : C of C2

44 802.b CH 2462MHz * P H * A H P H A H H H * P V * A V P V A V V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C2 of C2

45 2.4GHz 2400~2483.5MHz WIFI 802.b 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H H 802.b CH 0 242MHz H H P V A V V V P H P H 802.b CH MHz H H P V A V P V V P H A H 802.b CH 2462MHz P H H P V A V P V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C3 of C2

46 2.4GHz 2400~2483.5MHz WIFI 802.g (Band 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H A H * P H * A H 802.g CH 0 242MHz H H P V A V * P V * A V V V P H A H * P H * A H 802.g CH MHz P H A H P V A V * P V * A V P V A V FAX : Page Number : C4 of C2

47 802.g CH 2462MHz * P H * A H P H A H H H * P V * A V P V A V V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C5 of C2

48 2.4GHz 2400~2483.5MHz WIFI 802.g 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H A H 802.g CH 0 242MHz H H P V A V V V P H A H 802.g CH MHz P H H P V A V P V V P H A H 802.g CH 2462MHz P H H P V A V P V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C6 of C2

49 2.4GHz 2400~2483.5MHz WIFI 802.n HT20 (Band 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H A H * P H * A H 802.n HT20 CH 0 242MHz H H P V A V * P V * A V V V P H A H * P H * A H 802.n HT20 CH MHz P H A H P V A V * P V * A V P V A V FAX : Page Number : C7 of C2

50 802.n HT20 CH 2462MHz * P H * A H P H A H H H * P V * A V P V A V V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C8 of C2

51 2.4GHz 2400~2483.5MHz WIFI 802.n HT20 3m) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H A H 802.n HT20 CH 0 242MHz H H P V A V V V P H A H 802.n HT20 CH MHz P H H P V A V P V V P H A H 802.n HT20 CH 2462MHz P H H P V A V P V V Remark. No other spurious found. 2. All results are PASS against Peak and Average limit line. FAX : Page Number : C9 of C2

52 Emission below GHz 2.4GHz WIFI 802.g (LF) WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) (dbμv) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) P H P H P H P H P H P H H H H H 2.4GHz 802.g LF H H P V P V P V P V P V P V V V V V V V Remark. No other spurious found. 2. All results are PASS against limit line. FAX : Page Number : C0 of C2

53 Note symbol Fundamental Frequency which can be ignored. However, the level of any * unwanted emissions shall not exceed the level of the fundamental frequency.! Test result is over limit line. P/A Peak or Average H/V Horizontal or Vertical FAX : Page Number : C of C2

54 A calculation example for radiated spurious emission is shown as below: WIFI Note Frequency Level Over Limit Read Antenna Cable Preamp Ant Table Peak Pol. Ant. Limit Line Level Factor Loss Factor Pos Pos Avg. ( MHz ) ( dbμv/m ) ( db ) ( dbμv/m ) ( dbμv ) ( db/m ) ( db ) ( db ) ( cm ) ( deg ) (P/A) (H/V) 802.b CH 0 242MHz P H A H. Level(dBμV/m) = Antenna Factor(dB/m) + Cable Loss(dB) + Read Level(dBμV) - Preamp Factor(dB) 2. Over Limit(dB) = Level(dBμV/m) Limit Line(dBμV/m) For Peak 2390MHz:. Level(dBμV/m) = Antenna Factor(dB/m) + Cable Loss(dB) + Read Level(dBμV) - Preamp Factor(dB) = 32.22(dB/m) (dB) (dBμV) (db) = (dbμv/m) 2. Over Limit(dB) = Level(dBμV/m) Limit Line(dBμV/m) = 55.45(dBμV/m) 74(dBμV/m) = -8.55(dB) For Average 2390MHz:. Level(dBμV/m) = Antenna Factor(dB/m) + Cable Loss(dB) + Read Level(dBμV) - Preamp Factor(dB) = 32.22(dB/m) (dB) (dBμV) (db) = (dbμv/m) 2. Over Limit(dB) = Level(dBμV/m) Limit Line(dBμV/m) = 43.54(dBμV/m) 54(dBμV/m) = -0.46(dB) Both peak and average measured complies with the limit line, so test result is PASS. FAX : Page Number : C2 of C2

55 Appendix D. Radiated Spurious Emission Plots Test Engineer : J.C. Liang / Jacky Hung / Ken Wu Temperature : 26~28 Relative Humidity : 50~55% Note symbol -L Low channel location -R High channel location FAX : Page Number : D of D35

56 2.4GHz 2400~2483.5MHz WIFI 802.b (Band 3m) WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH0 242MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D2 of D35

57 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH0 242MHz Vertical Fundamental Peak Avg. FAX : Page Number : D3 of D35

58 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH MHz - L Horizontal Fundamental Peak Avg. FAX : Page Number : D4 of D35

59 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH MHz - R Horizontal Fundamental Peak Left blank Avg. Left blank FAX : Page Number : D5 of D35

60 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH MHz - L Vertical Fundamental Peak Avg. FAX : Page Number : D6 of D35

61 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH MHz - R Vertical Fundamental Peak Left blank Avg. Left blank FAX : Page Number : D7 of D35

62 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH 2462MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D8 of D35

63 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.b CH 2462MHz Vertical Fundamental Peak Avg. FAX : Page Number : D9 of D35

64 2.4GHz 2400~2483.5MHz WIFI 802.g (Band 3m) WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH0 242MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D0 of D35

65 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH0 242MHz Vertical Fundamental Peak Avg. FAX : Page Number : D of D35

66 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH MHz - L Horizontal Fundamental Peak Avg. FAX : Page Number : D2 of D35

67 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH MHz - R Horizontal Fundamental Peak Left blank Avg. Left blank FAX : Page Number : D3 of D35

68 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH MHz - L Vertical Fundamental Peak Avg. FAX : Page Number : D4 of D35

69 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH MHz - R Vertical Fundamental Peak Left Blank Avg. Left Blank FAX : Page Number : D5 of D35

70 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH 2462MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D6 of D35

71 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.g CH 2462MHz Vertical Fundamental Peak Avg. FAX : Page Number : D7 of D35

72 2.4GHz 2400~2483.5MHz WIFI 802.n HT20 (Band 3m) WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH0 242MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D8 of D35

73 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH0 242MHz Vertical Fundamental Peak Avg. FAX : Page Number : D9 of D35

74 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH MHz - L Horizontal Fundamental Peak Avg. FAX : Page Number : D20 of D35

75 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH MHz - R Horizontal Fundamental Peak Left blank Avg. Left blank FAX : Page Number : D2 of D35

76 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH MHz - L Vertical Fundamental Peak Avg. FAX : Page Number : D22 of D35

77 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH MHz - R Vertical Fundamental Peak Left Blank Avg. Left Blank FAX : Page Number : D23 of D35

78 WIFI ANT 2.4GHz 2400~2483.5MHz Band 3m 802.n HT20 CH 2462MHz Horizontal Fundamental Peak Avg. FAX : Page Number : D24 of D35

79 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.n HT20 CH 2462MHz Vertical Fundamental Peak Avg. FAX : Page Number : D25 of D35

80 2.4GHz 2400~2483.5MHz WIFI 802.b 3m) WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.b CH0 242MHz Horizontal Vertical Peak Avg. FAX : Page Number : D26 of D35

81 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.b CH MHz Horizontal Vertical Peak Avg. FAX : Page Number : D27 of D35

82 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.b CH 2462MHz Horizontal Vertical Peak Avg. FAX : Page Number : D28 of D35

83 2.4GHz 2400~2483.5MHz WIFI 802.g 3m) WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.g CH0 242MHz Horizontal Vertical Peak Avg. FAX : Page Number : D29 of D35

84 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.g CH MHz Horizontal Vertical Peak Avg. FAX : Page Number : D30 of D35

85 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.g CH 2462MHz Horizontal Vertical Peak Avg. FAX : Page Number : D3 of D35

86 2.4GHz 2400~2483.5MHz WIFI 802.n HT20 3m) WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.n HT20 CH0 242MHz Horizontal Vertical Peak Avg. FAX : Page Number : D32 of D35

87 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.n HT20 CH MHz Horizontal Vertical Peak Avg. FAX : Page Number : D33 of D35

88 WIFI ANT 2.4GHz 2400~2483.5MHz 3m 802.n HT20 CH 2462MHz Horizontal Vertical Peak Avg. FAX : Page Number : D34 of D35

89 Emission below GHz 2.4GHz WIFI 802.g (LF) WIFI ANT 2.4GHz 2400~2483.5MHz 802.g LF Horizontal Vertical QP / Peak FAX : Page Number : D35 of D35

90 Appendix E. Duty Cycle Plots Band Duty Cycle(%) T(us) /T(kHz) VBW Setting 802.b Hz 802.g Hz 2.4GHz 802.n HT Hz Page Number : E- of 3 FAX :

91 802.b Ref 32 dbm RBW 0 MHz * VBW 0 MHz * Att 20 db SWT 0 ms Delta 3 [T ] 0.00 db ms PK MAXH Offset 24.4 db Marker [T ] 6.50 dbm ms A 23 SGL Delta 2 [T ] 0.00 db ms LVL DB Center 2.42 GHz ms/ Date: 24.AUG.207 :55: g Ref 34 dbm RBW 0 MHz * VBW 0 MHz * Att 20 db SWT 0 ms Delta 3 [T ] 0.03 db ms 30 Offset 24.4 db Marker [T ] 7.43 dbm ms A PK MAXH Delta 2 [T ] 0.03 db ms SGL LVL DB Center 2.42 GHz ms/ Date: 24.AUG.207 :55:52 Page Number : E-2 of 3 FAX :

92 802.n HT20 Ref 30 dbm RBW 0 MHz * VBW 0 MHz * Att 20 db SWT 0 ms Delta 3 [T ] 0.37 db ms 30 Offset 24.4 db Marker [T ] 6.48 dbm PK MAXH ms Delta 2 [T ] 0.37 db ms A SGL LVL DB Center 2.42 GHz ms/ Date: 24.AUG.207 :56:29 Page Number : E-3 of 3 FAX :

93 Appendix F. Setup Photographs <Conducted Emission> Mode Remote View Page Number : F- of 3 FAX :

94 Rear View Page Number : F-2 of 3 FAX :

95 <Radiated Emission> LF HF Page Number : F-3 of 3 FAX :

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