FCC NII 5 GHz WLAN Report. for. LG Electronics Inc. 222 LG-ro Jinwi-myeon Pyeongtaek-si,Gyeonggi-do , Korea

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1 Page 1 of 73 FCC NII 5 GHz WLAN Report for LG Electronics Inc. 222 LG-ro Jinwi-myeon Pyeongtaek-si,Gyeonggi-do , Korea Brand Product Name Model Name FCC ID : LG : Notebook Computer : 15Z970 : BEJNT-18Z970 Prepared by: : AUDIX Technology Corporation, EMC Department

2 Page 2 of 73 TABLE OF CONTENTS Description Page TEST REPORT CERTIFICATION REPORT HISTORY SUMMARY OF TEST RESULTS GENERAL INFORMATION Description of EUT Description of Key Component Lists EUT Specifications Assessed in Current Report Antenna Information Data Rate Relative to Output Power Test Configuration Tested Supporting System List Setup Configuration Operating Condition of EUT Description of Test Facility Measurement Uncertainty MEASUREMENT EQUIPMENT LIST Conducted Measurement Radiated Measurement RF Conducted Measurement CONDUCTED EMISSION MEASUREMET Block Diagram of Test Setup Power Line Conducted Limit Test Procedure Conducted Measurement Results RADIATED EMISSION MEASUREMENT Block Diagram of Test Setup Radiated Limits Test Procedure Measurement Result Explanation Test Results EMISSION BANDWIDTH MEASUREMENT Block Diagram of Test Setup Specification Limits Test Procedure Test Results MAXIMUM OUTPUT POWER MEASUREMENT Block Diagram of Test Setup Specification Limits Test Procedure Test Results EMISSION LIMITATIONS MEASUREMENT Block Diagram of Test Setup... 69

3 Page 3 of Specification Limits Test Procedure Test Results POWER SPECTRAL DENSITY MEASUREMENT Block Diagram of Test Setup Specification Limits Test Procedure Test Results DEVIATION TO TEST SPECIFICATIONS APPENDIX A TEST PLOTS APPENDIX B TEST PHOTOGRAPHS

4 Page 4 of 73 TEST REPORT CERTIFICATION Applicant : LG Electronics Inc. Factory : LG Electronics Nanjing New Technology Co., Ltd. Product Name : Notebook Computer Model No. : 15Z970 Serial No. : N/A Brand : LG Applicable Standards: 47 CFR FCC Part 15 Subpart E:2016 ANSI C63.10: D02 General UNII Test Procedures New Rules v01r03 AUDIX Technology Corp. tested the equipment mentioned in accordance with the requirements set forth in the above standards. Test results indicate that the equipment tested is capable of demonstrating compliance with the requirements as documented within this report. AUDIX Technology Corp. does not assume responsibility for any conclusions and generalizations drawn from the test results with regard to other specimens and samples. Date of Test: ~ 24 Date of Report: Producer: (Annie Yu/Administrator) Signatory: (Ben Cheng/Manager)

5 Page 5 of REPORT HISTORY Revision Date Revision Summary Report Number Original Report. EM-F160753

6 Page 6 of SUMMARY OF TEST RESULTS Rule Description Results Conducted PASS (d)/ (a)(5)/ (e) Radiated Band Edge and Radiated Spurious Bandwidth Measurement PASS PASS (a) Maximum Output PASS (b) Conducted Band Edges and Conducted Spurious PASS (a) Power Spectral Density PASS Antenna Requirement PASS Note: Due to update the standard, so it is unnecessary to re-test.

7 Page 7 of GENERAL INFORMATION 3.1. Description of EUT Product Model Number Serial Number Brand Name Applicant Factory RF Features Notebook Computer 15Z970 N/A LG LG Electronics Inc. 222, LG-ro, Jinwi-myeon, Pyeongtaek-si, Gyeonggi-do Korea LG Electronics Nanjing New Technology Co., Ltd. No.346,Yaoxin Road, Economic & Technical Development Zone, Nanjing, China. WLAN:802.11a/b/g/n/ac Bluetooth: BT and BLE Transmit Type 2.4 GHz b 1T1R g 1T1R n-HT20 2T2R n-HT40 2T2R BT/BLE 1T1R UNII Bands a 1T1R n-HT20/ ac-VHT20 2T2R n-HT40/ ac-VHT40 2T2R ac-VHT80 2T2R Device Category Outdoor Access Point Fixed point-to-point Access Point Indoor Access Point Mobile and Portable client device Date of Receipt of Sample

8 Page 8 of Description of Key Component Lists Item Vendor Model name Description System Microsoft Windows Main Board CPU (Socket: BGA1356) Memory LCD Panel Storage LGIT 13/14/15Z970 Main --- E&E 13/14/15Z970 Main --- Intel i7-7500u 2.70GHz, up to 2.90GHz Intel i5-7200u 2.50GHz, up to 2.71GHz SAMSUNG M471A1K43BB0-CPB 8GB DDR4 2133MHz SK hynix HMA81GS6AFR8N-TF 8GB DDR4 2133MHz LG Display LP156WFA-SPC1 LG Display LP156WF8-SPA1 (Non touch) SAMSUNG MZNLN512HMJP (MZ-NLN512A) Resolution: 1920 x 1080, 60Hz HDMI: 4K; (Including touch) 512GB SK hynix HFS512G39MND-3510A 512GB Web Camera Namuga LC121 / LC M/HD WLAN Combo Card Intel 8265D2W Wireless LAN Antenna LG (INPAQ) WA-F-LBLB Wireless LAN Board HDMI Board Note Keyboard Touch Pad Type C to LAN E&E 15Z970 WLAN SUB --- HANNSTAR 15Z970 WLAN SUB --- LGIT / E&E E&E / HANNSTAR LG LG LG 15Z970 HDMI SUB (TBT3 Model) 15Z970 HDMI SUB (Non TBT3 Model) 15Z970 KR HMB8154ELB13 15Z970 KR HMB8154ELB01 EBD FA167D-16H0 EBD SA167D-26H5 LG 10/100 Megabit Ethernet --- Type C to LAN: Shielded, Undetached, 0.12m a/b/g/n/ac 2.4GHz/5GHz + BT 4.2 BLE FCC ID: PD98265D2 IC: 1000M 8265D2 FPCB Type Main: Black, Aux: Gray

9 Page 9 of 73 Battery Pack AC Adapter Item Vendor Model name Description LG LBR1223E 60.06Wh, DC7.7V, 7800mAh LG LBP7221E 34.61Wh, DC7.7V, 4495mAh LG (Lien Chang) LCAP25B I/P: AC V, 50-60Hz, 1.0A, O/P: DC 19V, 2.1A DC Power Cord: Non-Shielded, Undetached, 1.5m, Bonded a ferrite core AC Power Cord: Non-Shielded, Detached, 1.5m (2C) Remark: For more detailed features description, please refer to the manufacturer s specifications or the user manual. Note: SKU: 15Z970-H for with TBT3 mode, 15Z970-G for non TBT3 mode EUT Specifications Assessed in Current Report a Mode n-HT20/ ac-VHT n-HT40/ ac-VHT ac-VHT80 UNII Band Fundamental Range (MHz) Channel Number I II-2A II-2C III I II-2A II-2C III I II-2A II-2C III I II-2A II-2C III Modulation OFDM Modulation (BPSK/QPSK/16Q AM/64QAM) OFDM Modulation (BPSK/QPSK/16Q AM/64QAM) OFDM Modulation (BPSK/QPSK/16Q AM/64QAM) OFDM Modulation (BPSK/QPSK/16Q AM/64QAM) Data Rate (Mbps) Up to 54 MCS0~15 MCS0~15 MCS0~15 Remark: UNII Band II (DFS Function, Slave/no In service monitor, no Ad-Hoc mode)

10 Page 10 of 73 UNII Band I II-2A II-2C UNII Band I II-2A II-2C Channel List a/802.11n-HT20/802.11ac-VHT20 Channel UNII Channel Number (MHz) Band Number (MHz) II-2C III Channel List n-HT40/802.11ac-VHT40 Channel UNII Channel Number (MHz) Band Number (MHz) II-2C III Channel List ac-VHT80 UNII Band Channel Number (MHz) UNII Band Channel Number (MHz) I II-2C II-2A III II-2C Note 1: 80211n has similar modulation to ac at 20 MHz and 40 MHz bandwidths, we assess the worst case to be the representative mode in this report. 2: Test modes are presented at section 3.6.

11 Page 11 of Antenna Information 2.4G Antenna Antenna Part No. Number 1 2 WA-F-LBLB (Main) WA-F-LBLB (AUX) Manufacture INPAQ Antenna Type FPCB (MHz) Max Gain (dbi) G Antenna Antenna Part No. Number 1 2 WA-F-LBLB (Main) WA-F-LBLB (AUX) Manufacture INPAQ Antenna Type FPCB (MHz) Max Gain (dbi) Data Rate Relative to Output Power Channel a n-HT20 Modulation Date Rate Power (dbm) Channel Modulation Date Rate Power (dbm) 36 BPSK BPSK MCS QPSK QPSK MCS QPSK QPSK MCS QAM QAM MCS QAM QAM MCS QAM QAM MCS QAM QAM MCS QAM QAM MCS

12 Page 12 of 73 Channel n-HT40 Modulation Date Rate Power (dbm) Channel ac-VHT80 Modulation Date Rate Power (dbm) 38 BPSK MCS BPSK MCS QPSK MCS QPSK MCS QPSK MCS QPSK MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS QAM MCS Note: Above results are assessed in average power Test Configuration Mode Duty Cycle (x) T (ms) Duty Cycle Factor (db) a n-HT20/802.11ac-VHT n-HT40/802.11ac-VHT ac-VHT Note: When duty cycle is less than 98% (0.98) that duty cycle factor 10log(1/x) is needed to add in conducted test items measured in average detector. Test Case Normal operation AC Conduction Radiated Test Case Item Radiated Band Edge Note1 Radiated Spurious Note1 & 2 Mode Data Rate Test Channel a 6 Mbps 36/64/100/ n-HT20 MCS8 36/64/100/ n-HT40 MCS8 38/62/102/ ac-VHT80 MCS8 42/58/106/ a 6 Mbps 40/52/120/144/ n-HT20 MCS8 40/52/120/144/ n-HT40 MCS8 46/54/118/142/ ac-VHT80 MCS8 42/58/122/138/155

13 Page 13 of 73 Item Mode Data Rate Test Channel a 6 Mbps 36/40/48/52/60/64 100/120/140/144/149/157/165 36/40/48/52/60/ n-HT20 MCS8 100/120/140/144/149/157/165 Bandwidth 38/46/54/62/ n-HT40 MCS8 118/134/142/151/ ac-VHT80 MCS8 42/58/106/122/138/ a 6 Mbps 36/40/48/52/60/64 100/120/140/144/149/157/165 36/40/48/52/60/64 Conducted Maximum n-HT20 MCS8 100/120/140/144/149/157/165 Test Case output power 38/46/54/62/ n-HT40 MCS8 118/134/142/151/ ac-VHT80 MCS8 42/58/106/122/138/ a 6 Mbps 36/40/48/52/60/64 100/120/140/144/149/157/165 36/40/48/52/60/ n-HT20 MCS8 100/120/140/144/149/157/165 Limitations 38/46/54/62/ n-HT40 MCS8 118/134/142/151/ ac-VHT80 MCS8 42/58/106/122/138/ a 6 Mbps 36/40/48/52/60/64 100/120/140/144/149/157/165 Power 36/40/48/52/60/64 Conducted n-HT20 MCS8 spectral 100/120/140/144/149/157/165 Test Case density 38/46/54/62/ n-HT40 MCS8 118/134/142/151/ ac-VHT80 MCS8 42/58/106/122/138/155 Note 1: Mobile Device Portable Device, and 3 axis were assessed. The worst scenario for Radiated Spurious as follow: Lie Side Stand Note 2: Low, mid, and high channels were measured, only the worst channel of each modulation was presented in this report.

14 Page 14 of Tested Supporting System List Support Peripheral Unit No. Product Brand Model No. Serial No. FCC ID 1. SD Card ADATA N/A N/A N/A 2. Earphone APPLE N/A N/A N/A 3. LCD Monitor VIEWSONIC VP2780-4K U8K N/A 4. External HDD #1 SONY HD-E1 5. External HDD #2 SONY HD-E1 6. USB Mouse DELL MS111-T 3GDL0T A12 3GDL0T A14 CN-0KW2YH XYP 7. Earphone HTC Max300 N/A N/A 8. USB Mouse ASUS N6-mimi N/A N/A 9. LCD TV LG 22LK330-DB N/A N/A 10. USB Storage Transcend N/A N/A N/A No Cable Lists Cable Description Of The Above Support Units 1. N/A 2. Earphone Cable: Unshielded, Detachable, 0.9m 3. HDMI Cable: Shielded, Detachable, 1.8m 4. USB Cable: Shielded, Detachable, 0.5m 5. USB Cable: Shielded, Detachable, 0.5m 6. USB Cable: Shielded, Detachable, 1.8m 7 Earphone Cable: Unshielded, Detachable, 1.5m 8. USB Cable: Shielded, Detachable, 1.5m 9. Power Cord: Shielded, Detachable, 1.5m HDMI Cable: Shielded, Detachable, 1.5m 10. N/A N/A N/A N/A

15 Page 15 of Setup Configuration EUT Configuration for Power Line EUT Configuration for Conducted Test Items 3.9. Operating Condition of EUT Test program DRTU is used for enabling EUT WLAN function under continues transmitting and choosing data rate/ channel Description of Test Facility Test Firm Name : AUDIX Technology Corporation EMC Department No , Dingfu, Linkou Dist., New Taipei City 244, Taiwan Test Location & Facility : No. 7 Shielded Room No , Dingfu, Linkou Dist., New Taipei City 244, Taiwan NVLAP Lab. Code : TAF Accreditation No : 1724 Semi-Anechoic Chamber No , Dingfu, Linkou Dist., New Taipei City 244, Taiwan IC Test Site Registration No.: 5183B-1 Renewal on September 17, 2014 FullyAnechoic Chamber No , Dingfu, Linkou Dist., New Taipei City 244, Taiwan IC Test Site Registration No.: 5183B-4 Renewal on August 31, 2015 FCC OET Designation : TW1004 & TW1090

16 Page 16 of Measurement Uncertainty Test Item Range Uncertainty Conduction Test 150kHz~30MHz ±3.5dB Radiation Test (Distance: 3m) Remark:Uncertainty = ku c (y) 30MHz~1000MHz Above 1GHz ± 3.68dB ± 5.82dB Test Item Bandwidth Maximum output power Power spectral density Conducted Limitations Uncertainty ± 0.2kHz ± 0.33dB ± 0.13dB ± 0.13dB

17 Page 17 of MEASUREMENT EQUIPMENT LIST 4.1. Conducted Measurement Item Type Manufacturer Model No. Serial No. Cal. Date Cal. Interval 1. Test Receiver R&S ESCI Year 2. A.M.N. R&S ESH2-Z Year 3. L.I.S.N. Kyoritsu KNW Year 4. Pulse Limiter R&S ESH3-Z Year 5. Test Software Audix e3 V C N.C.R. N.C.R. 1. Test Receiver R&S ESCI Year 4.2. Radiated Measurement Range 9kHz~1000MHz (Semi Anechoic Chamber) Item Type Manufacturer Model No. Serial No. Cal. Date Cal. Interval 1. Spectrum Analyzer Agilent N9010A-526 MY Year 2. Test Receiver R & S ESCS Year 3. Amplifier HP 8447D 2944A Year 4. Bilog Antenna CHASE CBL6112D Year 5. Loop Antenna R&S HFH2-Z / Year 6. Test Software Audix e3 V N.C.R. N.C.R Range Above 1GHz (Fully Anechoic Chamber) Item Type Manufacturer Model No. Serial No. Cal. Date Cal. Interval 1. Spectrum Analyzer Agilent E4446A US Year 3. Amplifier Sonoma 310N Year 4. 5G Notch Filter 5. 5G Notch Filter 6. 5G Notch Filter 7. Double-Ridged Waveguide Horn Microware Circuits Microware Circuits Microware Circuits ETS-Lindgre n N Year N Year N Year Year 8. Horn Antenna EMCO Year 9. Test Software Audix e3 V N.C.R. N.C.R.

18 Page 18 of RF Conducted Measurement Item Type Manufacturer Model No. Serial No. Cal. Date Cal. Interval 1. Spectrum Analyzer Agilent N9010A-507 MY Year 2. Power Meter Anritsu ML2495A Year 3. Power Sensor Anritsu MA2411B Year

19 Page 19 of CONDUCTED EMISSION MEASUREMET 5.1. Block Diagram of Test Setup Shielded Room Setup Diagram 40cm EUT Peripherals Test Receiver 80cm Table 80 cm Table AMN LISN Ground Plane 5.2. Power Line Conducted Limit Conducted Limit Quasi-Peak Level Average Level 150kHz ~ 500kHz 66 ~ 56 dbμv 56 ~ 46 dbμv 500kHz ~ 5MHz 56 dbμv 46 dbμv 5MHz ~ 30MHz 60 dbμv 50 dbμv Remark 1.: If the average limit is met when using a Quasi-Peak detector, the measurement using the average detector is not required. 2.: The lower limit applies to the band edges Test Procedure To set up the EUT as indicated in ANSI C The EUT was placed on the table which has 80 cm height to the ground and 40 cm distance to the conducting wall Power supplier of the EUT was connected to the AC mains through an Artificial Mains Network (A.M.N.) The AC power supplies to all peripheral devices must be provided through line impedance stabilization network (L.I.S.N.) Checking frequency range from 150 khz to 30 MHz and record the emission which does not have 20 db below limit.

20 Page 20 of Conducted Measurement Results PASSED. Test Date 2016/11/07 Temp./Hum. 24 /53% Test Voltage AC 120V, 60Hz (via AC Adapter)

21 Page 21 of 73 Test Date 2016/11/07 Temp./Hum. 24 /53% Test Voltage AC 120V, 60Hz (via AC Adapter)

22 Page 22 of RADIATED EMISSION MEASUREMENT 6.1. Block Diagram of Test Setup Block Diagram of connection between EUT and simulators Indicated as section Semi-Anechoic Chamber (3m) Setup Diagram for 9kHz-30MHz Antenna Tower Antenna height is fixed to 1 m 3 m Turn Table 0.8m Ground Plane TEST EQUIPMENT Semi-Anechoic Chamber (3m) Setup Diagram for MHz Antenna height is varied from 1 m to 4 m 3 m Turn Table 0.8m Ground Plane TEST EQUIPMENT

23 Page 23 of Fully Anechoic Chamber (3m) Setup Diagram for above 1GHz Antenna Tower Antenna height is varied from 1 m to 4 m 3 m 1.5m Ground Plane TEST EQUIPMENT 6.2. Radiated Limits Turn Table Radiated emissions fall in restricted bands, as defined in Section must be in compliance with the radiated emission limits specified in Section as below General Limit (MHz) Distance (m) Field Strengths Limits μv/m dbμv/m /kHz /kHz ~ ~ ~ Above dbμv/m (Peak) Above dbμv/m (Average) Remark: (1) dbμv/m = 20 log (μv/m) (2) The tighter limit applies to the edge between two frequency bands. (3) Distance refers to the distance in meters between the measuring instrument antenna and the closed point of any part of the device or system. (4) Fundamental and emission fall within operation band are exempted from this section. (5) Pursuant to ANSI C63.10: , if the maximized peak measured value complies with the average limit, then it is unnecessary to perform an average measurement.

24 Page 24 of Limit for non-restricted frequency above 1 GHz Band (MHz) E.I.R.P. Limit Field Strength Limit at 3 m (dbμv/m) 5150 to to dbm to Note: Field Strength at 3 m= E.I.R.P db Band (MHz) 5725 to 5850 Field Strength Limit at 3 m (b)(4)(i) All emissions shall be limited to a level of 68.2 dbμv/m at 75 MHz or more above or below the band edge increasing linearly to 105.2dBμV/m at 25 MHz above or below the band edge, and from 25 MHz above or below the band edge increasing linearly to a level of dbμv/m at 5 MHz above or below the band edge, and from 5 MHz above or below the band edge increasing linearly to a level of 68.2 dbμv/m at the band edge (b)(4)(ii),compliance with the emission limits in (d) Shall be at least 30dB below that in the 100 khz bandwidth within the band that contains the highest level of the desired power,. Attenuation below the general limits specified in (a) is not required. In addition,radiated emissions which fall in the restricted bands, as defined in (a), must also comply with the radiated emission limits specified in (a) (see (c))

25 Page 25 of Test Procedure Range 9kHz~30MHz: The EUT setup on the turn table which has 0.8 m height to the ground. The turn table rotated 360 degrees and antenna fixed to 1 m to find the maximum emission level. In order to find the maximum emission, all of the interface cables were manipulated according to ANSI C regulation. (1) RBW = 9kHz with peak and average detector. (2) : average and peak (9kHz-490kHz) Q.P. (490kHz-30MHz) Range 30MHz ~ 40GHz: The EUT setup on the turn table which has 0.8m (For MHz) or 1.5m (For Above 1GHz) height to the ground. The turn table rotated 360 degrees and antenna varied from 1 m to 4 m to find the maximum emission level. Both horizontal and vertical polarization are required. In order to find the maximum emission, all of the interface cables were manipulated according to ANSI C regulation. below 1 GHz: Spectrum Analyzer is used for pre-testing with following setting: (1) RBW = 120 khz (2) VBW 3 x RBW. (3) = Peak. (4) Sweep time = auto. (5) Trace mode = max hold. (6) Allow sweeps to continue until the trace stabilizes. (7) When peak-detected value is lower than limit that the measurement using the Q.P. detector is not required. Otherwise using Q.P. for finally measurement.

26 Page 26 of 73 above 1GHz to 10th harmonic (up to 40 GHz): Peak : (1) RBW = 1 MHz (2) VBW 3 x RBW. (3) = Peak. (4) Sweep time = auto. (5) Trace mode = max hold. (6) Allow sweeps to continue until the trace stabilizes. (7) When peak-detected value is lower than limit that the measurement using the average detector is not required. Otherwise using average for finally measurement. Average : Option 1: (1) RBW = 1 MHz (2) VBW 1/ T. Modulation Type T (ms) 1/ T (khz) VBW Setting (khz) a ac-VHT ac-VHT ac-VHT N/A: 1/ T is not implemented when duty cycle presented in section 3.5 is 98 %. (1) = Peak. (2) Sweep time = auto. (3) Trace mode = max hold. (4) Allow sweeps to continue until the trace stabilizes. Option 2: Average Level= Peak Level+ D.C.C.F Measurement Result Explanation Peak Level=Antenna Factor + Cable Loss + Meter Reading Average Level l=antenna Factor + Cable Loss + Meter Reading Average Level= Peak Level+ DCCF Duty Cycle Correction Factor (DCCF)= 20log (TX on /TX on+off ) presented in section Test Results PASSED. Test Date 2016/11/24 Temp./Hum. 24 /53% Test Voltage AC 120V, 60Hz

27 Page 27 of s within Restricted Bands kHz~30MHz The emissions (9kHz~30MHz) not reported for there is no emission be found MHz~1000MHz UNII Band Mode a III TX 5785MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Peak Peak Peak Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak

28 Page 28 of Above 1 GHz to 10 th harmonics Band Edge: Mode a TX 5180MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

29 Page 29 of 73 Mode a TX 5180MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

30 Page 30 of 73 Mode a TX 5320MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

31 Page 31 of 73 Mode a TX 5320MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

32 Page 32 of 73 Mode a TX 5500MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

33 Page 33 of 73 Mode a TX 5500MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

34 Page 34 of 73 Mode a TX 5700MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak

35 Page 35 of 73 Mode n-HT20 TX 5180MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

36 Page 36 of 73 Mode n-HT20 TX 5180MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

37 Page 37 of 73 Mode n-HT20 TX 5320MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

38 Page 38 of 73 Mode n-HT20 TX 5320MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

39 Page 39 of 73 Mode n-HT20 TX 5500MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

40 Page 40 of 73 Mode n-HT20 TX 5500MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

41 Page 41 of 73 Mode n-HT20 TX 5700MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak

42 Page 42 of 73 Mode n-HT40 TX 5190MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

43 Page 43 of 73 Mode n-HT40 TX 5190MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

44 Page 44 of 73 Mode n-HT40 TX 5310MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

45 Page 45 of 73 Mode n-HT40 TX 5310MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

46 Page 46 of 73 Mode n-HT40 TX 5510MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

47 Page 47 of 73 Mode n-HT40 TX 5510MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

48 Page 48 of 73 Mode n-HT40 TX 5670MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak

49 Page 49 of 73 Mode ac-VHT80 TX 5210MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

50 Page 50 of 73 Mode ac-VHT80 TX 5210MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

51 Page 51 of 73 Mode ac-VHT80 TX 5290MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

52 Page 52 of 73 Mode ac-VHT80 TX 5290MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

53 Page 53 of 73 Mode ac-VHT80 TX 5530MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

54 Page 54 of 73 Mode ac-VHT80 TX 5530MHz Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Average Average Average

55 Page 55 of 73 Mode ac-VHT80 TX 5610MHz Antenna at Horizontal Polarization Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak Antenna Cable Meter Limits Margin Factor Loss Reading Level Peak Peak Peak

56 Page 56 of s outside the frequency band: The emissions (up to 40GHz) not reported for there is no emission be found. Mode a UNII Band I TX 5200MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Mode a UNII Band II-2A TX 5260MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Mode a UNII Band II-2C TX 5600MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak

57 Page 57 of 73 Mode a UNII Band II-2C TX 5720MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Mode a UNII Band III TX 5825MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak

58 Page 58 of 73 Mode n-HT20 UNII Band I TX 5200MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak Peak Mode n-HT20 UNII Band II-2A TX 5260MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak

59 Page 59 of 73 Mode n-HT20 UNII Band II-2C TX 5600MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Mode n-HT20 UNII Band II-2C TX 5720MHz Antenna at Horizontal Polarization Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak

60 Page 60 of 73 Mode n-HT20 UNII Band III TX 5825MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak

61 Page 61 of 73 Mode n-HT40 UNII Band I TX 5230MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak Mode n-HT40 UNII Band II-2A TX 5270MHz The emissions not reported for there is no emission be found. Mode n-HT40 UNII Band II-2C TX 5590MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak

62 Page 62 of 73 Mode n-HT40 UNII Band II-2C TX 5710MHz Antenna at Horizontal Polarization Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Mode n-HT40 UNII Band III TX 5795MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak

63 Page 63 of 73 Mode ac-VHT80 UNII Band I TX 5210MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Mode ac-VHT80 UNII Band II-2A TX 5290MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Mode ac-VHT80 UNII Band II-2C TX 5610MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak

64 Page 64 of 73 Mode ac-VHT80 UNII Band II-2C TX 5690MHz Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak Peak Peak Peak Peak

65 Page 65 of 73 Mode ac-VHT80 UNII Band III TX 5775MHz Antenna at Horizontal Polarization Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Antenna Factor Cable Loss Meter Reading Level Limits Margin Peak Peak Peak Peak Peak Peak Peak s in Non-restricted Bands Pursuant to D02 General UNII Test Procedures New Rules v01r03 that emission levels below the general radiated emissions limits is not required.

66 Page 66 of EMISSION BANDWIDTH MEASUREMENT 7.1. Block Diagram of Test Setup 7.2. Specification Limits Band (MHz) Limit 5150 to to 5350 Reference only 5470 to to kHz 7.3. Test Procedure Following measurement procedure is reference to D02 General UNII Test Procedures New Rules v01r03: Applicable to all bands except to 5725 MHz MHz (1) Set RBW= 1% of the emission bandwidth (2) Set VBW > RBW (3) = Peak (4) Trace mode = max hold (5) Setting channel bandwidth function x db to -26 db to record the final bandwidth MHz MHz (1) Set RBW = 100 khz. (2) Set the video bandwidth (VBW) 3 RBW. (3) = Peak. (4) Trace mode = max hold. (5) Sweep = auto couple. (6) Allow the trace to stabilize. (7) Setting channel bandwidth function x db to -6 db to record the final bandwidth Test Results Please refer to Appendix A

67 Page 67 of MAXIMUM OUTPUT POWER MEASUREMENT 8.1. Block Diagram of Test Setup 80MHz bandwidth only 8.2. Specification Limits Band (MHz) Category Limit Outdoor Access Point 1 W(30 dbm)/ Max e.i.r.p. 125 mw(21 dbm) at any elevation angle above 30 degrees as measured from the horizon 5150 to 5250 Fixed point-to-point Access Point 1 W(30 dbm) Indoor Access Point 1 W(30 dbm) Mobile and Portable client device 250 mw(24 dbm) 5250 to mw or 11 dbm + 10 log B Note to 5725 N/A 250 mw or 11 dbm + 10 log B Note to W(30 dbm) Note 1: B is the 26 db emission bandwidth, which presented in section 7 and appendix A.1.

68 Page 68 of Test Procedure Following measurement procedure is reference to D02 General UNII Test Procedures New Rules v01r03: Method AVGPM (Measurement using an RF average power meter): EUT is connected to power sensor and record the maximum average output power and duty cycle factor is added when duty cycle presented in section 3.5 is < 98%. Method AVGSA-2 (Spectrum channel power) (1) Set span to at least 1.5 times the OBW (2) Set RBW = 1 MHz (3) Set the video bandwidth (VBW) 3 MHz. (4) = RMS. (5) Trace mode = trace average at least 100 traces (6) Sweep = auto couple. (7) Compute power by integrating the spectrum across the OBW of the signal using the instrument s band power measurement function with band limits set equal to the OBW band edges. (8) Duty cycle factor is added when duty cycle presented in section 3.5 is < 98% Test Results Please refer to Appendix A

69 Page 69 of EMISSION LIMITATIONS MEASUREMENT 9.1. Block Diagram of Test Setup 9.2. Specification Limits Band (MHz) 5150 to to to 5725 E.I.R.P. Limit -27 dbm

70 Page 70 of 73 Band (MHz) 5725 to 5850 E.I.R.P. Limit (b)(4)(i) All emissions shall be limited to a level of 27 dbm/mhz at 75 MHz or more above or below the band edge increasing linearly to 10 dbm/mhz at 25 MHz above or below the band edge, and from 25 MHz above or below the band edge increasing linearly to a level of 15.6 dbm/mhz at 5 MHz above or below the band edge, and from 5 MHz above or below the band edge increasing linearly to a level of 27 dbm/mhz at the band edge (b)(4)(ii),compliance with the emission limits in (d) Shall be at least 30dB below that in the 100 khz bandwidth within the band that contains the highest level of the desired power,. Attenuation below the general limits specified in (a) is not required. In addition,radiated emissions which fall in the restricted bands, as defined in (a), must also comply with the radiated emission limits specified in (a) (see (c))

71 Page 71 of Test Procedure Following measurement procedure is reference to D02 General UNII Test Procedures New Rules v01r03: (1) RBW = 1 MHz (2) VBW 3 x RBW (3) = Peak (4) Sweep time = auto (5) Trace mode = max hold (6) Allow sweeps to continue until the trace stabilizes Test Results Please refer to Appendix A

72 Page 72 of POWER SPECTRAL DENSITY MEASUREMENT Block Diagram of Test Setup Specification Limits Band (MHz) Category Limit Outdoor Access Point Fixed point-to-point 17dBm Access Point 5150 to 5250 Indoor Access Point Mobile and Portable client device 11 dbm/mhz 5250 to dbm/mhz 5470 to 5725 N/A 11 dbm/mhz 5725 to dBm/500 khz Test Procedure Following measurement procedure is reference to D02 General UNII Test Procedures New Rules v01r03: Method AVGSA-2 (Spectrum channel power) (1) Set span to at least 1.5 times the OBW (2) Set RBW = 1 MHz (3) Set the video bandwidth (VBW) 3 MHz. (4) = RMS. (5) Trace mode = trace average at least 100 traces (6) Sweep = auto couple. (7) Use peak search function to find out the maximum power density. (8) Duty cycle factor is added when duty cycle presented in section 3.5 is < 98% Test Results Please refer to Appendix A

73 Page 73 of DEVIATION TO TEST SPECIFICATIONS NONE

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