Test Report FCC Part15 Subpart C

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1 Test Report FCC Part15 Subpart C Product Name : 300Mbps Wireless N Nano Router Model No. : TL-WR802N FCC ID : TE7WR802NV4 Applicant : TP-Link Technologies Co., Ltd.. Address : Building 24 (floors 1,3,4,5) and 28 (floors1-4) Central Science and Technology Park,Shennan Rd, Nanshan, Shenzhen,China Date of Receipt : Feb. 24th, 2017 Test Date : Feb. 24th, 2017~ Apr. 12th, 2017 Issued Date : Apr. 21st, 2017 Report No. : R-RF-US-P06V01 Report Version : V1.0 The test results relate only to the samples tested. The test results shown in the test report are traceable to the national/international standard through the calibration of the equipment and evaluated measurement uncertainty herein. This report must not be used to claim product endorsement by TAF, CNAS or any agency of the government. The test report shall not be reproduced without the written approval of DEKRA Testing and Certification (Suzhou) Co., Ltd. Corporation.

2 Test Report Certification Issued Date : Apr. 21st, 2017 Report No. : R-RF-US-P06V01 Product Name : 300Mbps Wireless N Nano Router Applicant : TP-Link Technologies Co., Ltd.. Address : Building 24 (floors 1,3,4,5) and 28 (floors1-4) Central Science and Technology Park,Shennan Rd, Nanshan, Shenzhen,China Manufacturer : TP-Link Technologies Co., Ltd.. Address : Building 24 (floors 1,3,4,5) and 28 (floors1-4) Central Science and Technology Park,Shennan Rd, Nanshan, Shenzhen,China Model No. : TL-WR802N FCC ID : TE7WR802NV4 EUT Voltage : AC V/50-60Hz Test Voltage : AC 120V/60Hz Brand Name : TP-Link Applicable Standard : FCC CFR Title 47 Part 15 Subpart C ANSI C63.4:2014; ANSI C63.10:2013; KDB D01v04 KDB D01 Multiple Transmitter Output v02r01 Test Result : Complied Performed Location : DEKRA Testing and Certification (Suzhou) Co., Ltd. Corporation No.99 Hongye Rd., Suzhou Industrial Park, Suzhou, , Jiangsu, China TEL: / FAX: FCC Registration Number: Documented By : ( Adm. Specialist: Kitty Li ) Reviewed By : Approved By : (Senior Engineer: Jack Zhang ) (Engineering Manager: Harry Zhao ) Page: 2 of 139

3 TABLE OF CONTENTS Description Page 1. General Information EUT Description Working Frequency of Each Channel: Antenna information Mode of Operation Tested System Details Configuration of Tested System Technical Test Summary of Test Result Test Frequency configuration: Power setting parameter Power vs Data Rate Test Environment Measurement Uncertainty AC Power Line Conducted Emission Test Equipment Test Setup Test Procedure Test Result Emissions in restricted frequency bands Test Equipment Test Setup Test Procedure EUT test Axis definition Test Result Emissions in non-restricted frequency bands Test Equipment Test Setup Test Procedure EUT test Axis definition Test Result Radiated Emission Band Edge Test Equipment Test Setup Page: 3 of 139

4 Test Procedure EUT test definition Duty Cycle Test Result Occupied Bandwidth Test Equipment Test Setup Test Procedure EUT test definition Test Result Fundamental emission output power Test Equipment Test Setup Test Procedure EUT test definition Test Result Power Spectral Density Test Equipment Test Setup Test Procedure EUT test definition Test Result Page: 4 of 139

5 History of This Test Report REPORT NO. VERSION DESCRIPTION ISSUED DATE R-RF-US-P06V01 V1.0 Initial Issued Report Apr. 21st, 2017 Page: 5 of 139

6 1. General Information 1.1. EUT Description Product Name Brand Name Model No. EUT Voltage Frequency Range Channel Number of Modulation Data Rate Channel Control 300Mbps Wireless N Nano Router TP-Link TL-WR802N AC V/50-60Hz For 2.4GHz Band b/g/n(20MHz): 2412~2462MHz n(40MHz): 2422~2452MHz For 2.4GHz Band b/g/n(20MHz): n(40MHz): b: DSSS g: OFDM g: 6/9/12/18/24/36/48/54 Mbps b: 1/2/5.5/11 Mbps n: up to 300 Mbps Auto 1.2. Working Frequency of Each Channel: b/g/n(20MHz) Working Frequency of Each Channel: Channel Frequency Channel Frequency Channel Frequency Channel Frequency MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz MHz N/A N/A n(40MHz) Working Frequency of Each Channel: Channel Frequency Channel Frequency Channel Frequency Channel Frequency MHz MHz MHz MHz MHz MHz MHz N/A N/A Page: 6 of 139

7 1.3. Antenna information Model No. N/A Antenna manufacturer N/A Antenna Delivery 1*TX+1*RX 2*TX+2*RX 3*TX+3*RX Antenna technology SISO Basic MIMO CDD Sectorized Beam-forming Antenna Dipole External Sectorized PIFA Internal PCB Ceramic Chip Antenna Metal plate type F antenna Directional Gain Ant Gain Antenna Technology (dbi) (dbi) For Power For PSD CDD Ant1:2.85 Ant2: Page: 7 of 139

8 1.4. Mode of Operation Test Modes List Mode 1: Transmit by b Mode 2: Transmit by g Mode 3: Transmit by n(20MHz) Mode 4: Transmit by n(40MHz) 1.5. Tested System Details The types for all equipments, plus descriptions of all cables used in the tested system (including inserted cards) are: No. Product Manufacturer Model No. Serial No. Power Cord 1 Notebook Lenovo Think pad x220 SUA Non-shielded A LAN cable N/A N/A N/A Non-shielded,1.5m B LAN cable N/A N/A N/A Non-shielded,10m Page: 8 of 139

9 1.6. Configuration of Tested System Test setup Diagram- AC Line Conducted Emission Test Page: 9 of 139

10 Test setup Diagram- Radiated Emission Page: 10 of 139

11 2. Technical Test 2.1. Summary of Test Result Performed Test Item Normative References Result AC Power Line Conducted Emission FCC CFR Title 47 Part 15 Subpart C: 2015 Section Emissions in restricted FCC CFR Title 47 Part 15 Subpart C: frequency bands 2015 Section Emissions in non-restricted FCC CFR Title 47 Part 15 Subpart C: frequency bands 2015 Section (d) Radiated Emission Band FCC CFR Title 47 Part 15 Subpart C: Edge (d) Occupied Bandwidth FCC CFR Title 47 Part 15 Subpart C: 2015 Section (a)(2) Fundamental emission output FCC CFR Title 47 Part 15 Subpart C: power 2015 Section (b)(3) Power Spectral Density FCC CFR Title 47 Part 15 Subpart C: 2015 Section (e) Antenna Requirement FCC CFR Title 47 Part 15 Subpart C: 2015 Section FCC FCC dBc FCC kHz 30dBm 8dBm/3kHz FCC PASS PASS PASS PASS PASS PASS PASS PASS 2.2. Test Frequency configuration: Modulation Mode Channel Frequency Channel Frequency Channel Frequency b MHz MHz MHz MHz MHz g MHz MHz MHz MHz MHz n(20MHz) MHz MHz MHz MHz MHz n(40MHz) MHz MHz MHz MHz MHz Page: 11 of 139

12 2.3. Power setting parameter Test Software QA Tool Modulation Mode Test Frequency Ant 1 Ant 2 Ant F b g n(20MHz) F n(40MHz) Page: 12 of 139

13 2.4. Power vs Data Rate MCS Index for n Spatial Streams b g Data Rate (Mbps) 20MHz Bandwidth 40MHz Bandwidth 800ns GI 400ns GI 800ns GI 400ns GI Note 1 : The blue form is the maximum power data rate Note 2 : The EUT has two spatial Streams Page: 13 of 139

14 2.5. Test Environment Items Required (IEC 68-1) Actual Temperature ( C) Humidity (%RH) Barometric pressure (mbar) Measurement Uncertainty Test Items AC Power Line Conducted Emission Radiated Emission RF Antenna Port Conducted Emission Radiated Emission Band Edge Occupied Bandwidth Power Spectral Density Uncertainty 2.02dB Below 1GHz 3.8 db Above 1GHz 3.9 db 1.27dB 3.9dB 1kHz 1.27dB Page: 14 of 139

15 3. AC Power Line Conducted Emission 3.1. Test Equipment AC Power Line Conducted Emission / TR-1 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date EMI Test Receiver R&S ESCI Two-Line V-Network R&S ENV Two-Line V-Network R&S ENV ohm Coaxial Switch Anritsu MP59B ohm Termination SHX TF Temperature/Humidity Meter zhichen ZC1-2 TR1-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards Test Setup AC Power Line Conducted Emission test setup Page: 15 of 139

16 3.3. Frequency of Emission Conducted Quasi-peak (db V) Average(dB V) to to Note 1: The lower limit shall apply at the transition frequencies. Note 2: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.5 MHz Test Procedure Test Method References Rule Chapter Item ANSI C Standard test method for ac power-line conducted emissions from unlicensed wireless devices ANSI C AC power-line conducted emission measurements Page: 16 of 139

17 3.5. Test Result Site: TR1 Time: 2017/03/02 : FCC_Part15.107_CE_AC Power_ClassB Margin: 0 Probe: ENV216-L1 EUT: 300Mbps Wireless N Nano Router Polarity: Line Note: Mode 1 Probe Cable Amp 1 * QP AV QP AV QP AV QP AV QP AV QP AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = + (Probe+Cable-Amp). Page: 17 of 139

18 Site: TR1 Time: 2017/03/02 : FCC_Part15.107_CE_AC Power_ClassB Margin: 0 Probe: ENV216-N EUT: 300Mbps Wireless N Nano Router Polarity: Neutral Note: Mode 1 Probe Cable Amp QP AV 3 * QP AV QP AV QP AV QP AV QP AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = + (Probe+Cable-Amp). Page: 18 of 139

19 4. Emissions in restricted frequency bands 4.1. Test Equipment Radiated Emission(Below 1GHz) / AC-2 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date EMI Test Receiver R&S ESCI Loop Antenna R&S HFH2-Z / Bilog Antenna Teseq GmbH CBL6112D Coaxial Cable Temperature/Humidity Meter Huber+Suhner SUCOFLEX 106 AC2-C Zhichen ZC1-2 AC2-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Radiated Emission(Above 1GHz) / AC-5 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent E4446A MY Preamplifier Miteq NSP Preamplifier QuieTek AP-040G CHM DRG Horn ETS-Lindgren Broad-Band Horn Antenna Schwarzbeck BBHA SUCOFLEX Coaxial Cable Coaxial Cable Coaxial Cable Huber+Suhner Huber+Suhner Huber+Suhner 106 AC5-C SUCOFLEX 106 AC5-C SUCOFLEX 102 AC5-C EMI Receiver Agilent N9038A MY Temperature/Humidity Meter Zhichen ZC1-2 AC5-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Page: 19 of 139

20 4.2. Test Setup Below 30MHz Test Setup: 30MHz-1GHz Test Setup: Above 1GHz Test Setup: Page: 20 of 139

21 4.3. Restricted Bands of operation Frequency Frequency Frequency Frequency (GHz) Page: 21 of 139

22 Restricted Band Emissions Frequency Field strength ( V/m) Field strength (db V/m) Measurement distance (m) /F(kHz) (Note 1) /F(kHz) (Note 1) (Note 1) (Note 2) (Note 2) (Note 2) Above (Note 2) Note 1: At frequencies below 30 MHz, measurements may be performed at a distance closer than that specified in the regulations; however, an attempt should be made to avoid making measurements in the near field. Pending the development of an appropriate measurement procedure for measurements performed below 30 MHz, when performing measurements at a closer distance than specified, the results shall be extrapolated to the specified distance by either making measurements at a minimum of two distances on at least one radial to determine the proper extrapolation factor or by using the square of an inverse linear distance extrapolation factor (40 db/decade). Note 2: At frequencies at or above 30 MHz, measurements may be performed at a distance other than what is specified provided: measurements are not made in the near field except where it can be shown that near field measurements are appropriate due to the characteristics of the device; and it can be demonstrated that the signal levels needed to be measured at the distance employed can be detected by the measurement equipment. Measurements shall not be performed at a distance greater than 30 meters unless it can be further demonstrated that measurements at a distance of 30 meters or less are impractical. When performing measurements at a distance other than that specified, the results shall be extrapolated to the specified distance using an extrapolation factor of 20 db/decade (inverse linear-distance for field strength measurements; inverse-linear-distance-squared for power density measurements). Page: 22 of 139

23 4.4. Test Procedure Test Method References Rule Chapter Description ANSI C Emissions in non-restricted frequency bands ANSI C Reference level measurement ANSI C Emission level measurement ANSI C Emissions in restricted frequency bands ANSI C Radiated emission measurements ANSI C Radiated spurious emission test ANSI C Radiated emissions from unlicensed wireless devices below 30 MHz ANSI C Radiated emissions from unlicensed wireless devices in the frequency range of 30 MHz to 1000 MHz ANSI C Radiated emissions from unlicensed wireless devices above 1 GHz ANSI C Antenna-port conducted measurements ANSI C Quasi-peak measurement procedure ANSI C Peak power measurement procedure ANSI C Average power measurement procedures ANSI C Trace averaging with continuous EUT transmission at full power ANSI C Trace averaging across ON and OFF times of the EUT transmissions followed by duty cycle correction ANSI C Reduced VBW averaging across ON and OFF times of the EUT transmissions with max hold Page: 23 of 139

24 4.5. EUT test Axis definition Item Emissions in restricted frequency bands Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1~4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 1 Chain 1 Chain 2 Chain 1 Chain 2 Chain 3 Page: 24 of 139

25 4.6. Test Result Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Mode : Mode 1 Test Site : AC-5 Test Date : Chain CH Antenna Frequency Reading Measured Polarity Level (db V) Level (db V/m) (db V/m) Detector H (note3) PK H (note3) PK 1 H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK H PK Ant H AV V (note3) PK V (note3) PK V AV V PK H (note3) PK H (note3) PK 11 H (note3) PK V (note3) PK V (note3) PK V (note3) PK Note: 1. = +. Note: 2. The test frequency range, 9kHz~30MHz, 18GHz~25GHz, both of the worst case are at least 20dB below the limits, therefore no data appear in the report. Note: 3. This limit applies for using average detector, if the test result on peak is lower than average limit, then average measurement needn t be performed. Note: 4. The VBW setting, see Clause 6.6. Page: 25 of 139

26 Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Site : Mode 2 Test Site : AC-5 Test Date : Chain CH Antenna Frequency Reading Measured Polarity Level (db V) Level (db V/m) (db V/m) Detector H (note3) PK H (note3) PK 1 H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK Ant H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK 11 H (note3) PK V (note3) PK V (note3) PK V (note3) PK Note: 1. = +. Note: 2. The test frequency range, 9kHz~30MHz, 18GHz~25GHz, both of the worst case are at least 20dB below the limits, therefore no data appear in the report. Note: 3. This limit applies for using average detector, if the test result on peak is lower than average limit, then average measurement needn t be performed. Note: 4. The VBW setting, see Clause 6.6. Page: 26 of 139

27 Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Site : Mode 3 Test Site : AC-5 Test Date : Chain CH Antenna Frequency Reading Measured Polarity Level (db V) Level (db V/m) (db V/m) Detector H (note3) PK H (note3) PK 1 H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK Ant H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK 11 H (note3) PK V (note3) PK V (note3) PK V (note3) PK Note: 1. = +. Note: 2. The test frequency range, 9kHz~30MHz, 18GHz~25GHz, both of the worst case are at least 20dB below the limits, therefore no data appear in the report. Note: 3. This limit applies for using average detector, if the test result on peak is lower than average limit, then average measurement needn t be performed. Note: 4. The VBW setting, see Clause 6.6. Page: 27 of 139

28 Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Site : Mode 4 Test Site : AC-5 Test Date : Chain CH Antenna Frequency Reading Measured Polarity Level (db V) Level (db V/m) (db V/m) Detector H (note3) PK H (note3) PK 3 H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK Ant H (note3) PK V (note3) PK V (note3) PK V (note3) PK H (note3) PK H (note3) PK 9 H (note3) PK V (note3) PK V (note3) PK V (note3) PK Note: 1. = +. Note: 2. The test frequency range, 9kHz~30MHz, 18GHz~25GHz, both of the worst case are at least 20dB below the limits, therefore no data appear in the report. Note: 3. This limit applies for using average detector, if the test result on peak is lower than average limit, then average measurement needn t be performed. Note: 4. The VBW setting, see Clause 6.6. Page: 28 of 139

29 The worst case of Radiated Emission below 1GHz: Site: AC2 Time: 2017/03/02 : FCC_Part15.109_RE(3m)_ClassB Margin: 0 Probe: AC2_(30-1G) EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1 Measure Reading Over Probe Cable Amp Ant Table Level Level (db/m) Pos Pos (cm) (deg) 1 * QP QP QP QP QP QP Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = + (Probe+Cable-Amp). Page: 29 of 139

30 Site: AC2 Time: 2017/03/02 : FCC_Part15.109_RE(3m)_ClassB Margin: 0 Probe: AC2_(30-1G) EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1 Measure Reading Over Probe Cable Amp Ant Table Level Level (db/m) Pos Pos (cm) (deg) QP 2 * QP QP QP QP QP Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = + (Probe+Cable-Amp). Page: 30 of 139

31 5. Emissions in non-restricted frequency bands 5.1. Test Equipment Emissions in non-restricted frequency bands / TR-8 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent N9010A MY EXA Spectrum Analyzer Keysight N9010A MY MXA Signal Anlyzer Keysight N9020A MY Temperature/Humidity Meter zhichen ZC1-2 TR8-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Page: 31 of 139

32 5.2. Test Setup Emissions in non-restricted frequency bands Page: 32 of 139

33 5.3. Un-Restricted Band Emissions RF Output power (Detection methods) RF Output power(average detector) RF Output power(pk detector) 30c(Note1) 20c(Note2) Note 1: If maximum conducted (average) output power was used to demonstrate compliance as described in 9.2, then the peak power in any 100 khz bandwidth outside of the authorized frequency band shall be attenuated by at least 30 db relative to the maximum in-band peak PSD level in 100 khz (i.e., 30 dbc). Note 2: If the maximum peak conducted output power procedure was used, then the peak output power measured in any 100 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 100 khz (i.e., 20 dbc). Page: 33 of 139

34 5.4. Test Procedure Test Method References Rule Chapter Description ANSI C Emissions in non-restricted frequency bands ANSI C Reference level measurement ANSI C Emission level measurement ANSI C Emissions in restricted frequency bands ANSI C Radiated emission measurements ANSI C Radiated spurious emission test ANSI C Radiated emissions from unlicensed wireless devices below 30 MHz ANSI C Radiated emissions from unlicensed wireless devices in the frequency range of 30 MHz to 1000 MHz ANSI C Radiated emissions from unlicensed wireless devices above 1 GHz ANSI C Antenna-port conducted measurements ANSI C Quasi-peak measurement procedure ANSI C Peak power measurement procedure ANSI C Average power measurement procedures ANSI C Trace averaging with continuous EUT transmission at full power ANSI C Trace averaging across ON and OFF times of the EUT transmissions followed by duty cycle correction ANSI C Reduced VBW averaging across ON and OFF times of the EUT transmissions with max hold Page: 34 of 139

35 5.5. EUT test Axis definition Item Emissions in non-restricted frequency bands Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1 ~ Mode 4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 0 Chain 0 Chain 1 Chain 0 Chain 1 Chain 2 Page: 35 of 139

36 5.6. Test Result Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Mode : Mode1~4 Test Site : TR8 Test Date : Antenna #1 Mode Channel Test Frequency Maximum In-Band PSD[a] (dbm/100khz) Frequency Out-Band PSD[b] (dbm/100khz) [a]-[b] Result >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass Note: The worst case of emissions in non-restricted frequency bands as below: Mode 2 CH01(2412MHz) Page: 36 of 139

37 Antenna #2 Mode Channel Test Frequency Maximum In-Band PSD[a] (dbm/100khz) Frequency Out-Band PSD[b] (dbm/100khz) [a]-[b] Result >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass >30 Pass Note: The worst case of emissions in non-restricted frequency bands as below: Mode 2 CH01(2412MHz) Page: 37 of 139

38 6. Radiated Emission Band Edge 6.1. Test Equipment Radiated Emission Band Edge / AC-5 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent E4446A MY Preamplifier Miteq NSP Preamplifier QuieTek AP-040G CHM DRG Horn ETS-Lindgren Broad-Band Horn Antenna Schwarzbeck BBHA SUCOFLEX Coaxial Cable Huber+Suhner 106 AC5-C Coaxial Cable Huber+Suhner SUCOFLEX 106 AC5-C Coaxial Cable Huber+Suhner SUCOFLEX 102 AC5-C EMI Receiver Agilent N9038A MY Temperature/Humidity Meter Zhichen ZC1-2 AC5-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Page: 38 of 139

39 6.2. Test Setup Radiated Emission Band Edge 6.3. Band edge Frequency bands Detector (db V/m) RBW Distance (m) PK AV Note: The field strength of emissions appearing within these frequency bands shall not exceed the limits. Page: 39 of 139

40 6.4. Test Procedure Radiated Emission Band Edge References Rule Chapter Description ANSI C Band-edge testing ANSI C Restricted-band band-edge measurements ANSI C Marker-delta method ANSI C Emissions in restricted frequency bands ANSI C Radiated emission measurements ANSI C Radiated spurious emission test ANSI C Radiated emissions from unlicensed wireless devices below 30 MHz ANSI C Radiated emissions from unlicensed wireless devices in the frequency range of 30 MHz to 1000 MHz ANSI C Radiated emissions from unlicensed wireless devices above 1 GHz ANSI C Antenna-port conducted measurements ANSI C Quasi-peak measurement procedure ANSI C Peak power measurement procedure ANSI C Average power measurement procedures ANSI C Trace averaging with continuous EUT transmission at full power ANSI C Trace averaging across ON and OFF times of the EUT transmissions followed by duty cycle correction ANSI C Reduced VBW averaging across ON and OFF times of the EUT transmissions with max hold Page: 40 of 139

41 6.5. EUT test definition Item Radiated Emission Band Edge Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1~4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 0 Chain 0 Chain 1 Chain 0 Chain 1 Chain 2 Page: 41 of 139

42 6.6. Duty Cycle Test Mode Tx On Tx Off Tx On + Tx Off VBW (ms) (ms) (ms) Duty Cycle b Hz % g Hz % n(20MHz) Hz % n(40MHz) kHz % b g n(20MHz) n(40MHz) Page: 42 of 139

43 6.7. Test Result Site: AC5 Time: 2017/03/18-09:58 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2412MHz by B AV AV 3 * AV Page: 43 of 139

44 Site: AC5 Time: 2017/03/18-10:05 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2412MHz by B PK PK 3 * PK Page: 44 of 139

45 Site: AC5 Time: 2017/03/18-10:07 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2412MHz by B AV AV 3 * AV Page: 45 of 139

46 Site: AC5 Time: 2017/03/18-10:09 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2412MHz by B PK PK 3 * PK Page: 46 of 139

47 Site: AC5 Time: 2017/04/08-10:31 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2422MHz by B AV AV 3 * AV Page: 47 of 139

48 Site: AC5 Time: 2017/04/08-10:56 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2422MHz by B PK PK 3 * PK Page: 48 of 139

49 Site: AC5 Time: 2017/04/08-11:03 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2422MHz by B AV AV 3 * AV Page: 49 of 139

50 Site: AC5 Time: 2017/04/08-11:07 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2422MHz by B PK PK 3 * PK Page: 50 of 139

51 Site: AC5 Time: 2017/03/18-10:11 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2437MHz by B AV AV 3 * AV AV AV Page: 51 of 139

52 Site: AC5 Time: 2017/03/18-10:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2437MHz by B PK 2 * PK PK PK Page: 52 of 139

53 Site: AC5 Time: 2017/03/18-10:19 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2437MHz by B AV 2 * AV AV AV Page: 53 of 139

54 Site: AC5 Time: 2017/03/18-10:22 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2437MHz by B PK 2 * PK PK PK Page: 54 of 139

55 Site: AC5 Time: 2017/04/08-11:11 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2452MHz by B 1 * AV AV AV Page: 55 of 139

56 Site: AC5 Time: 2017/04/08-11:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2452MHz by B 1 * PK PK PK Page: 56 of 139

57 Site: AC5 Time: 2017/04/08-11:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2452MHz by B 1 * AV AV AV Page: 57 of 139

58 Site: AC5 Time: 2017/04/08-11:20 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2452MHz by B 1 * PK PK PK Page: 58 of 139

59 Site: AC5 Time: 2017/03/18-10:28 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2462MHz by B 1 * AV AV AV Page: 59 of 139

60 Site: AC5 Time: 2017/03/18-10:34 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 1:Transmit at 2462MHz by B 1 * PK PK PK Page: 60 of 139

61 Site: AC5 Time: 2017/03/18-10:41 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2462MHz by B 1 * AV AV AV Page: 61 of 139

62 Site: AC5 Time: 2017/03/18-10:43 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 1:Transmit at 2462MHz by B 1 * PK PK PK Page: 62 of 139

63 Site: AC5 Time: 2017/03/18-10:46 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2412MHz by G AV 2 * AV Page: 63 of 139

64 Site: AC5 Time: 2017/03/18-10:54 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2412MHz by G PK 2 * PK Page: 64 of 139

65 Site: AC5 Time: 2017/03/18-10:56 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2412MHz by G AV 2 * AV Page: 65 of 139

66 Site: AC5 Time: 2017/03/18-10:58 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2412MHz by G PK 2 * PK Page: 66 of 139

67 Site: AC5 Time: 2017/04/08-11:26 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2422MHz by G AV 2 * AV Page: 67 of 139

68 Site: AC5 Time: 2017/04/08-11:30 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2422MHz by G PK PK 3 * PK Page: 68 of 139

69 Site: AC5 Time: 2017/04/08-11:33 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2422MHz by G AV 2 * AV Page: 69 of 139

70 Site: AC5 Time: 2017/04/08-11:35 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2422MHz by G PK PK 3 * PK Page: 70 of 139

71 Site: AC5 Time: 2017/03/18-11:01 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2437MHz by G AV 2 * AV AV Page: 71 of 139

72 Site: AC5 Time: 2017/03/18-11:03 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2437MHz by G PK 2 * PK PK Page: 72 of 139

73 Site: AC5 Time: 2017/03/18-11:08 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2437MHz by G AV 2 * AV AV Page: 73 of 139

74 Site: AC5 Time: 2017/03/18-11:10 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2437MHz by G PK 2 * PK PK Page: 74 of 139

75 Site: AC5 Time: 2017/04/08-11:39 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2452MHz by G 1 * AV AV Page: 75 of 139

76 Site: AC5 Time: 2017/04/08-11:42 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2452MHz by G 1 * PK PK Page: 76 of 139

77 Site: AC5 Time: 2017/04/08-11:44 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2452MHz by G 1 * AV AV Page: 77 of 139

78 Site: AC5 Time: 2017/04/08-11:46 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2452MHz by G 1 * PK PK PK Page: 78 of 139

79 Site: AC5 Time: 2017/03/18-11:12 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2462MHz by G 1 * AV AV Page: 79 of 139

80 Site: AC5 Time: 2017/03/18-11:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 2:Transmit at 2462MHz by G 1 * PK PK Page: 80 of 139

81 Site: AC5 Time: 2017/03/18-11:19 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2462MHz by G 1 * AV AV Page: 81 of 139

82 Site: AC5 Time: 2017/03/18-11:21 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 2:Transmit at 2462MHz by G 1 * PK PK Page: 82 of 139

83 Site: AC5 Time: 2017/03/18-18:09 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2412MHz by N AV 2 * AV Page: 83 of 139

84 Site: AC5 Time: 2017/03/18-18:15 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2412MHz by N PK 2 * PK Page: 84 of 139

85 Site: AC5 Time: 2017/03/18-18:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2412MHz by N AV 2 * AV Page: 85 of 139

86 Site: AC5 Time: 2017/03/18-18:30 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2412MHz by N PK PK 3 * PK Page: 86 of 139

87 Site: AC5 Time: 2017/04/08-12:11 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2422MHz by N AV 2 * AV Page: 87 of 139

88 Site: AC5 Time: 2017/04/08-12:15 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2422MHz by N PK PK 3 * PK Page: 88 of 139

89 Site: AC5 Time: 2017/04/08-12:20 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2422MHz by N AV 2 * AV Page: 89 of 139

90 Site: AC5 Time: 2017/04/08-12:24 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2422MHz by N PK 2 * PK Page: 90 of 139

91 Site: AC5 Time: 2017/03/18-18:33 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2437MHz by N AV 2 * AV AV Page: 91 of 139

92 Site: AC5 Time: 2017/03/18-18:45 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2437MHz by N PK 2 * PK PK PK Page: 92 of 139

93 Site: AC5 Time: 2017/03/18-18:47 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2437MHz by N AV 2 * AV AV Page: 93 of 139

94 Site: AC5 Time: 2017/03/18-18:49 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2437MHz by N PK 2 * PK PK Page: 94 of 139

95 Site: AC5 Time: 2017/04/08-12:27 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2452MHz by N20 1 * AV AV Page: 95 of 139

96 Site: AC5 Time: 2017/04/08-12:30 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2452MHz by N20 1 * PK PK Page: 96 of 139

97 Site: AC5 Time: 2017/04/08-12:34 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2452MHz by N20 1 * AV AV Page: 97 of 139

98 Site: AC5 Time: 2017/04/08-12:36 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2452MHz by N20 1 * PK PK Page: 98 of 139

99 Site: AC5 Time: 2017/03/18-19:13 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2462MHz by N20 1 * AV AV Page: 99 of 139

100 Site: AC5 Time: 2017/03/18-19:15 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 3:Transmit at 2462MHz by N20 1 * PK PK Page: 100 of 139

101 Site: AC5 Time: 2017/03/18-19:17 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2462MHz by N20 1 * AV AV Page: 101 of 139

102 Site: AC5 Time: 2017/03/18-19:19 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 3:Transmit at 2462MHz by N20 1 * PK PK Page: 102 of 139

103 Site: AC5 Time: 2017/03/18-19:23 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2422MHz by N AV 2 * AV Page: 103 of 139

104 Site: AC5 Time: 2017/03/18-19:28 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2422MHz by N PK 2 * PK Page: 104 of 139

105 Site: AC5 Time: 2017/03/18-19:30 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2422MHz by N AV AV 3 * AV Page: 105 of 139

106 Site: AC5 Time: 2017/03/18-19:32 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2422MHz by N PK PK 3 * PK Page: 106 of 139

107 Site: AC5 Time: 2017/04/08-12:45 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2427MHz by N AV AV 3 * AV Page: 107 of 139

108 Site: AC5 Time: 2017/04/08-12:55 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2427MHz by N PK PK 3 * PK Page: 108 of 139

109 Site: AC5 Time: 2017/04/08-12:57 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2427MHz by N AV 2 * AV Page: 109 of 139

110 Site: AC5 Time: 2017/04/08-13:05 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2427MHz by N PK 2 * PK Page: 110 of 139

111 Site: AC5 Time: 2017/03/18-19:35 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2437MHz by N AV 2 * AV AV Page: 111 of 139

112 Site: AC5 Time: 2017/03/18-19:43 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2437MHz by N PK 2 * PK PK PK Page: 112 of 139

113 Site: AC5 Time: 2017/03/18-19:46 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2437MHz by N AV 2 * AV AV Page: 113 of 139

114 Site: AC5 Time: 2017/03/18-19:48 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2437MHz by N PK 2 * PK PK Page: 114 of 139

115 Site: AC5 Time: 2017/04/08-13:06 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2447MHz by N40 1 * AV AV Page: 115 of 139

116 Site: AC5 Time: 2017/04/08-13:11 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2447MHz by N40 1 * PK PK PK Page: 116 of 139

117 Site: AC5 Time: 2017/04/08-13:14 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2447MHz by N40 1 * AV AV Page: 117 of 139

118 Site: AC5 Time: 2017/04/08-13:16 : FCC_Part15.209_RE(3m) Margin: 0 EUT: 300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2447MHz by N40 1 * PK PK PK Page: 118 of 139

119 Site: AC5 Time: 2017/03/18-19:50 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2452MHz by N40 1 * AV AV AV Page: 119 of 139

120 Site: AC5 Time: 2017/03/18-19:54 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Horizontal Note: Mode 4:Transmit at 2452MHz by N40 1 * PK PK PK Page: 120 of 139

121 Site: AC5 Time: 2017/03/18-19:56 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2452MHz by N40 1 * AV AV Page: 121 of 139

122 Site: AC5 Time: 2017/03/18-19:58 : FCC_Part15.209_RE(3m) Margin: 0 EUT:300Mbps Wireless N Nano Router Polarity: Vertical Note: Mode 4:Transmit at 2452MHz by N40 1 * PK PK PK Page: 122 of 139

123 7. Occupied Bandwidth 7.1. Test Equipment Occupied Bandwidth / TR-8 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent N9010A MY EXA Spectrum Analyzer Keysight N9010A MY MXA Signal Anlyzer Keysight N9020A MY Temperature/Humidity Meter zhichen ZC1-2 TR8-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards Test Setup Occupied Bandwidth test setup: Page: 123 of 139

124 7.3. Occupied Bandwidth Systems using digital modulation techniques operate in the MHz.The minimum 6 db bandwidth shall be at least 500 khz 7.4. Test Procedure Test Method Reference Rule Chapter Description ANSI C DTS bandwidth ANSI C Option 1 ANSI C Option 2 Page: 124 of 139

125 7.5. EUT test definition Item Occupied Bandwidth Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1~4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 0 Chain 0 Chain 1 Chain 0 Chain 1 Chain 2 Page: 125 of 139

126 7.6. Test Result Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Mode : Mode1~4 Test Site : TR8 Test Date : Mode CH. Test 99% Occupied Bandwidth 6dB Occupied Bandwidth Freq. (khz) Ant 1 Ant 2 Ant 1 Ant 2 Result >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass >500 Pass Note : The worst case of Occupied Bandwidth as below in next page: Mode 1 CH11 (2462MHz) Ant 1 Page: 126 of 139

127 8. Fundamental emission output power 8.1. Test Equipment Fundamental emission output power/ TR-8 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent E4446A MY Spectrum Analyzer Agilent N9010A MY Wideband Peak Power Meter Anritsu ML2495A Power Sensor Anritsu MA2411B Temperature/Humidity Meter zhicheng ZC1-2 TR8-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards Test Setup Fundamental emission output power test setup Page: 127 of 139

128 8.3. Fundamental emission output power GTX 6dBi Pout 30dBm GTX 6dBi Non-Fix point-point Pout 30-( GTX -6) Fix point-point Point-to-multipoint Overlap Beams Aggregate power transmitted simultaneously on all beams Pout 30-[(GTX-6)]/3 Pout 30-(GTX-6) Pout 30-[(GTX-6)]/3 Pout 30-[(GTX-6)]/3 single directional beam Pout 30-[(GTX-6)]/3+8dB Note 1 : GTX directional gain of transmitting antennas. Note 2 : Pout is maximum peak conducted output power. Page: 128 of 139

129 8.4. Test Procedure Fundamental emission output power Test Method References Rule Chapter Description ANSI C Fundamental emission output power ANSI C Maximum peak conducted output power ANSI C RBW DTS bandwidth ANSI C Integrated band power method ANSI C PKPM1 Peak power meter method ANSI C Maximum conducted (average) output power ANSI C Measurement using a spectrum analyzer (SA) ANSI C ANSI C ANSI C ANSI C ANSI C ANSI C Method AVGSA-1(Duty cycle 98%) Method AVGSA-1A(Duty cycle 98%) Method AVGSA-2(Duty cycle 98%) Method AVGSA-2A(Duty cycle 98%) Method AVGSA-3 Method AVGSA-3A ANSI C Measurement using a power meter (PM) ANSI C ANSI C Method AVGPM Method AVGPM-G Page: 129 of 139

130 Directional Gain Calculations for In-Band test method References Rule Chapter Description KDB F2)a) Basic methodology with NANT transmit antennas KDB F2)a) (i) transmit signals are correlated KDB F2)a) (ii) transmit signals are uncorrelated KDB F2)b) Sectorized antenna systems. KDB F2)c) Cross-polarized antennas ANSI C63.10 F2)c) (i) Cross-polarized antennas with NANT = 2. ANSI C63.10 F2)c) (ii) Multiple antennas KDB F2)e) Spatial stream KDB F2)e) (i) Antennas have the same gain KDB KDB F2)e) (ii) F2)e) (iii) Antenna have the different gain with one spatial stream Antenna have the different gain with more than one spatial stream KDB F2)f) Cyclic Delay Diversity (CDD) KDB F2)f) (i) Antennas have the same gain KDB KDB F2)f) (ii) F2)f) (ii) Antenna have the different gain with one spatial stream Antenna have the different gain with more than one spatial stream Page: 130 of 139

131 8.5. EUT test definition Item Fundamental emission output power Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1~4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 0 Chain 0 Chain 1 Chain 0 Chain 1 Chain 2 Page: 131 of 139

132 8.6. Test Result Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Mode : Mode1~4 Test Site : TR8 Test Date : Mode Channel Test Frequency Average Power Output (dbm) Ant 1 Ant 2 Total Power (dbm) Directional Gain (dbi) (dbm) Result Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Page: 132 of 139

133 9. Power Spectral Density 9.1. Test Equipment Power Spectral Density / TR-8 Instrument Manufacturer No. Serial No. Cal. Date Cal. Due Date Spectrum Analyzer Agilent N9010A MY EXA Spectrum Analyzer Keysight N9010A MY MXA Signal Anlyzer Keysight N9020A MY Temperature/Humidity Meter zhichen ZC1-2 TR8-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards Test Setup Power Spectral Density test setup 9.3. Power Spectral Density Power Spectral Density 8dBm/3kHz Page: 133 of 139

134 9.4. Test Procedure Power Spectral Density Test Method References Rule Chapter Description ANSI C Maximum power spectral density level in the fundamental emission ANSI C Method PKPSD (peak PSD) ANSI C Method AVGPSD-1(Duty cycle 98%) ANSI C Method AVGPSD-1A(Duty cycle 98%) ANSI C Method AVGPSD-2(Duty cycle 98%) ANSI C Method AVGPSD-2A(Duty cycle 98%) ANSI C Method AVGPSD-3 ANSI C Method AVGPSD-3A Page: 134 of 139

135 Directional Gain Calculations for In-Band test method Referred Rule Chapter Description KDB F2)a) Basic methodology with NANT transmit antennas KDB F2)a) (i) transmit signals are correlated KDB F2)a) (ii) transmit signals are uncorrelated KDB F2)b) Sectorized antenna systems. KDB F2)c) Cross-polarized antennas ANSI C63.10 F2)c) (i) Cross-polarized antennas with NANT = 2. ANSI C63.10 F2)c) (ii) Multiple antennas KDB F2)e) Spatial stream KDB F2)e) (i) Antennas have the same gain KDB KDB F2)e) (ii) F2)e) (iii) Antenna have the different gain with one spatial stream Antenna have the different gain with more than one spatial stream KDB F2)f) Cyclic Delay Diversity (CDD) KDB F2)f) (i) Antennas have the same gain KDB KDB F2)f) (ii) F2)f) (ii) Antenna have the different gain with one spatial stream Antenna have the different gain with more than one spatial stream Page: 135 of 139

136 9.5. EUT test definition Item Power Spectral Density Test Method Fixed point-to-point Device Category Emit multiple directional beams, simultaneously or sequentially Other cases Test mode Mode 1~4 Radiated X Axis Y Axis Z Axis Worst Axis Worst Axis Worst Axis Conducted Test method Chain 0 Chain 0 Chain 1 Chain 0 Chain 1 Chain 2 Page: 136 of 139

137 9.6. Test Result Product Name : 300Mbps Wireless N Nano Router Power : AC 120V/60Hz Test Mode : Mode1~4 Test Site : TR8 Test Date : Mod e Chann el Test Frequenc y Measurement PSD (dbm/3khz) Ant 1 Ant 2 Total Measureme nt PSD (dbm/3khz) Duty Facto r Total PSD (dbm/3kh z) Direction al Gain (dbi) (dbm/3kh z) Resul t Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass Pass 2 7 Page: 137 of 139

138 Mode 1 CH11(2462MHz) Ant 1 Page: 138 of 139

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