EN Test Report

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1 EN Test Report Product Name : WIRELESS-ABGN 3X3 NETWORK MINI PCIE ADAPTER Model No. : WLE350NX Applicant : Compex Systems Pte Ltd Address : 135 Joo Seng Road, #08-01 PM Industrial Building Singapore Date of Receipt : 04/02/2013 Test Date : 05/02/2013~08/04/2013 Issued Date : 08/04/2013 Report No. : 132S008R-RF-CE-P14V02 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 except in full without the written approval of QuieTek Corporation.

2 Test Report Certification Issued Date : 08/04/2013 Report No. : 132S008R-RF-CE-P14V02 Product Name : WIRELESS-ABGN 3X3 NETWORK MINI PCIE ADAPTER Applicant : Compex Systems Pte Ltd Address : 135 Joo Seng Road, #08-01 PM Industrial Building Singapore Manufacturer : Compex Systems Pte Ltd Address : 135 Joo Seng Road, #08-01 PM Industrial Building Singapore Model No. : WLE350NX EUT Voltage : DC: 3.3V Brand Name : COMPEX Applicable Standard : ETSI EN V1.7.1 ( ) Test Result : Complied Performed Location : Suzhou EMC Laboratory No.99 Hongye Rd., Suzhou Industrial Park Loufeng Hi-Tech Development Zone., Suzhou, China TEL: / FAX: Documented By : (Alice Ni) Reviewed By : (Jame Yuan) Approved By : (Robin Wu) Page: 2 of 132

3 Laboratory Information We, QuieTek Corporation, are an independent EMC and safety consultancy that was established the whole facility in our laboratories. The test facility has been accredited/accepted(audited or listed) by the following related bodies in compliance with ISO 17025, EN and specified testing scope: Taiwan R.O.C. : BSMI, NCC, TAF Germany : TUV Rheinland Norway : Nemko, DNV USA : FCC, NVLAP Japan : VCCI China : CNAS The related certificate for our laboratories about the test site and management system can be downloaded from QuieTek Corporation s Web Site : The address and introduction of QuieTek Corporation s laboratories can be founded in our Web site : If you have any comments, Please don t hesitate to contact us. Our contact information is as below: HsinChu Testing Laboratory : No.75-2, 3rd Lin, Wangye Keng, Yonghxing Tsuen, Qionglin Shiang, Hsinchu County 307, Taiwan, R.O.C. TEL: / FAX: service@quietek.com LinKou Testing Laboratory : No.5-22, Ruishukeng, Linkou Dist., New Taipei City 24451, Taiwan, R.O.C. TEL : / FAX : service@quietek.com Suzhou Testing Laboratory : No.99 Hongye Rd., Suzhou Industrial Park Loufeng Hi-Tech Development Zone., SuZhou, China TEL : / FAX : service@quietek.com Page: 3 of 132

4 Description TABLE OF CONTENTS Page 1. General Information EUT Description Mode of Operation Tested System Details Configuration of Tested System EUT Exercise Software Technical Test Summary of Test Result Measurement Uncertainty Test Environment Carrier Frequencies Test Equipment Test Setup Limit Test Procedure Test Result Occupied Channel Bandwidth Test Equipment Test Setup Limit Test Procedure Test Result RF Output Power, Transmit Power Control (TPC) and Power Density Test Equipment Test Setup Limit Test Procedure Test Result Transmitter Unwanted Emissions Outside the 5GHz RLAN Bands Test Equipment Test Setup Limit Test Procedure Test Result Test Photograph Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Equipment Page: 4 of 132

5 7.2. Test Setup Limit Test Procedure Test Result Receiver Spurious Emissions Test Equipment Test Setup Limit Test Procedure Test Result Test Photograph Adaptivity (Channel Access Mechanism) Test Equipment Test Setup Limit Test Procedure Test Result Dynamic Frequency Selection (DFS) Attachment EUT Photograph Page: 5 of 132

6 1. General Information 1.1. EUT Description Product Name WIRELESS-ABGN 3X3 NETWORK MINI PCIE ADAPTER Brand Name COMPEX Model No. WLE350NX Working Voltage DC 3.3V Frequency Range a/n(20MHz): MHz, MHz n(40MHz): MHz, MHz Channel Number a/n(20MHz): n(40MHz): 9 Type of Modulation a/n: OFDM Data Rate a: 6/9/12/18/24/36/48/54 Mbps n: up to 450 Mbps Channel Control Auto Antenna Delivery 3*Tx + 3*Rx Antenna Type Reference to Antenna List Peak Antenna Gain Reference to Antenna List Page: 6 of 132

7 For 5.0GHz Band a/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 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 MHz MHz N/A N/A N/A N/A N/A N/A a/b/g/n Antenna List Antenna Manufacturer Peak Gain Panel Antenna A*STAR Institute for Infocomm Research 3dBi for 2.4GHz, 5dBi for 5GHz Dipole Antenna 1# SmartAnt Telecom Co., Ltd. 4.5dBi for 2.4GHz, 7dBi for 5GHz Dipole Antenna 2# Kunshan Wavelink Electronic Co., Ltd. 2dBi for 2.4GHz and 5GHz Page: 7 of 132

8 Power Parameter Value of the test software Test Mode Test Channel Ant0 Ant1 Ant2 Ant0+1 Ant a n(20MHz) n(40MHz) The test mode of the test software can support. Test Mode Ant1 Ant2 Ant3 Ant1+2 Ant a n(20MHz) n(40MHz) Page: 8 of 132

9 1.2. Mode of Operation QuieTek has verified the construction and function in typical operation. All the test modes were carried out with the EUT in normal operation, which was shown in this test report and defined as: Test Mode Mode 1: Transmit by a Mode 2: Transmit by n (20MHz) Mode 3: Transmit by n (40MHz) Mode 4: Receive by n (20MHz) Mode 5: Receive by n (40MHz) Note: 1. For portable device, radiated spurious emission was verified over X, Y, Z axis, and shown the worst case on this report. 2. The extreme test condition for voltage and temperature was declared by the manufacturer. Page: 9 of 132

10 1.3. Tested System Details The types for all equipments, plus descriptions of all cables used in the tested system (including inserted cards) are: Product Manufacturer Model No. Serial No. Power Cord 1 Notebook DELL E520 N/A Non-Shielded, 1.8m Page: 10 of 132

11 1.4. Configuration of Tested System Connection Diagram Signal Cable Type A N/A N/A Signal cable Description Page: 11 of 132

12 1.5. EUT Exercise Software 1 Setup the EUT and simulators as shown on above. 2 Turn on the power of equipment. Run the RF test software Art2, and set the test mode and channel, then press OK to start 3 continue Transmit or receive. Page: 12 of 132

13 2. Technical Test 2.1. Summary of Test Result No deviations from the test standards Deviations from the test standards as below description: Performed Test Item Normative References Test Performed Deviation Carrier Frequencies ETSI EN V1.7.1 ( ) Yes No Occupied Channel Bandwidth ETSI EN V1.7.1 ( ) Yes No RF Output Power, Transmit Power Control (TPC) and Power Density ETSI EN V1.7.1 ( ) Yes No Transmitter Unwanted Emissions ETSI EN V1.7.1 ( ) Yes No Outside the 5GHz RLAN Bands Transmitter Unwanted Emissions ETSI EN V1.7.1 ( ) Yes No Within the 5GHz RLAN Bands Receiver Spurious Emissions ETSI EN V1.7.1 ( ) Yes No Dynamic Frequency Selection ETSI EN V1.7.1 ( ) Yes No (DFS) Adaptivity (Channel Access Mechanism) ETSI EN V1.7.1 ( ) Yes No Note: The requirement of User Access Restrictions for DFS Controls shall be implemented by manufacture. Page: 13 of 132

14 2.2. Measurement Uncertainty Where relevant, the following measurement uncertainty levels have been estimated for tests performed on the apparatus: Parameter Uncertainty Radio Frequency ±1 x 10-5 RF Power Conducted ±1.5dB RF Power Radiated ±6dB Spurious Emissions, Conducted ±3dB Spurious Emissions, Radiated ±6dB Humidity ±5% Temperature ±1 Time ±10% Page: 14 of 132

15 2.3. Test Environment Items Required (IEC 68-1) Actual Temperature ( C) Humidity (%RH) Barometric pressure (mbar) Page: 15 of 132

16 3. Carrier Frequencies 3.1. Test Equipment Carrier Frequencies /TR-8 Instrument Manufacturer Type No. Serial No. Cali. Due Date Spectrum Analyzer Agilent E4446A MY AC Power Supply IDRC CF-500TP Programmable Gaoyu TH-1P-B WIT Temperature & Humidity Chamber 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 For Conducted Measurement Page: 16 of 132

17 3.3. Limit The actual centre frequency for any given channel declared by the manufacturer shall be maintained within the range f c ±20ppm Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 17 of 132

18 3.5. Test Result Product : WLE350NX Test Item : Carrier Frequencies Test Site : TR-8 Test Mode : Mode: Carrier Wave Test Conditions Tnom (25 ) Vnom (AC 230V) Tmax (40 ) Vmax (AC 253V) Tmax (40 ) Vmin (AC 207V) Tmin (0 ) Vmax (AC 253V) Tmin (0 ) Vmin (AC 207V) Measured Carrier Frequency F Limit Frequency (MHz) (ppm) (ppm) (MHz) ± ± ± ± ±20 Page: 18 of 132

19 4. Occupied Channel Bandwidth 4.1. Test Equipment Occupied Channel Bandwidth / TR-8 Instrument Manufacturer Type No. Serial No. Cali. Due Date Spectrum Analyzer Agilent E4446A MY Temperature/Humidity Meter zhicheng ZC1-2 AC6-TH Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards Test Setup 4.3. Limit The Nominal Channel Bandwidth shall be at least 5 MHz at all times. The Occupied Channel Bandwidth shall be between 80 % and 100 % of the declared Nominal Channel Bandwidth. In case of smart antenna systems (devices with multiple transmit chains) each of the transmit chains shall meet this requirement. NOTE: During an established communication, a device is allowed to operate temporarily in a mode where its Occupied Channel Bandwidth may be reduced to as low as 40 % of its Nominal Channel Bandwidth with a minimum of 4 MHz Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 19 of 132

20 4.5. Test Result Product : WLE350NX Test Item : Occupied Channel Bandwidth Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 0) Declared Nominal Occupied Occupied Channel Frequency Limit Channel Channel Limit Bandwidth (MHz) (MHz) Bandwidth Bandwidth (%) (MHz) (MHz) (%) ~ ~ ~ ~ Product : WLE350NX Test Item : Occupied Channel Bandwidth Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 0) Declared Nominal Occupied Occupied Channel Frequency Limit Channel Channel Limit Bandwidth (MHz) (MHz) Bandwidth Bandwidth (%) (MHz) (MHz) (%) ~ ~ ~ ~ Page: 20 of 132

21 Product : WLE350NX Test Item : Occupied Channel Bandwidth Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz)(Chain 0) Declared Nominal Occupied Occupied Channel Frequency Limit Channel Channel Limit Bandwidth (MHz) (MHz) Bandwidth Bandwidth (%) (MHz) (MHz) (%) ~ ~ ~ ~ Page: 21 of 132

22 5. RF Output Power, Transmit Power Control (TPC) and Power Density 5.1. Test Equipment RF Output Power, Transmit Power Control (TPC) and Power Density / TR-8 Instrument Manufacturer Type No. Serial No. Cali. Due Date Spectrum Analyzer Agilent E4446A MY AC Power Supply IDRC CF-500TP Programmable Temperature & Humidity Chamber Temperature/Humidity Meter Gaoyu TH-1P-B WIT 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 Conducted Measurement Power Meter 12dBm Power Supply Temperature Chamber 5.3. Limit RF Output Power and Power density at the Highest Power Level TPC is not required for channels whose nominal bandwidth falls completely within the band 5150 MHz to MHz. For devices with TPC, the RF output power and the power density when configured to operate at the highest stated power level of the TPC range shall not exceed the levels given in following table. Devices are allowed to operate without TPC. See table for applicable limits in this case. Page: 22 of 132

23 Mean EIRP limits for RF Output Power and Power Density at the Highest Power Level Frequency Range Mean EIRP Limit [dbm] Mean EIRP Density Limit [dbm/mhz] with TPC without TPC with TPC without TPC 5150 MHz to /23 (see note 1) 10 7/10 (see note 2) MHz 5470 MHz to 5725 MHz 30 (see note 3) 27 (see note 3) 17 (see note 3) 14 (see note 3) NOTE 1: The applicable limit is 20 dbm, except for transmissions whose nominal bandwidth falls completely within the band MHz to MHz, in which case the applicable limit is 23 dbm. NOTE 2: The applicable limit is 7 dbm/mhz, except for transmissions whose nominal bandwidth falls completely within the band MHz to MHz, in which case the applicable limit is 10 dbm/mhz. NOTE 3: Slave devices without a Radar Interference Detection function shall comply with the limits for the band MHz to MHz. RF Output Power at the Lowest Power Level of the TPC Range For devices using TPC, the RF output power during a transmission burst when configured to operate at the lowest stated power level of the TPC range shall not exceed the levels given in following table. For devices without TPC, the limits in table do not apply. Mean EIRP Limits for RF Output Power at the Lowest Power Level of the TPC Range Frequency Range Mean EIRP [dbm] 5250 MHz to 5350 MHz MHz to 5725 MHz 24 (see note) Note: Slave devices without a Radar Interference Detection function shall comply with the limits for the band 5250 MHz to 5350 MHz Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 23 of 132

24 5.5. Test Result Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 24 of 132

25 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 25 of 132

26 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 26 of 132

27 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 0) Antenna Gain = 7dBi Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 27 of 132

28 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 28 of 132

29 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 29 of 132

30 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Total) EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 30 of 132

31 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Chain 2) Measured Power (Total) EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 31 of 132

32 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz)(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 32 of 132

33 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz)(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 33 of 132

34 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz)(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 34 of 132

35 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz)(Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Total) EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 35 of 132

36 Product : WLE350NX Test Item : Equivalent Isotropic Radiated Power Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz) (Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Chain 2) Measured Power (Total) EIRP Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 36 of 132

37 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 37 of 132

38 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 38 of 132

39 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 39 of 132

40 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 40 of 132

41 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 41 of 132

42 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz)(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 42 of 132

43 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz) (Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Total) EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 43 of 132

44 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz) (Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Chain 2) Measured Power (Total) EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 44 of 132

45 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 7: Transmit by n(40MHz)(Chain 0) Antenna Gain = 19dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 45 of 132

46 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz) (Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 46 of 132

47 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz) (Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 47 of 132

48 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 4: Transmit by n(40MHz) (Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Total) EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 48 of 132

49 Product : WLE350NX Test Item : TPC Test Site : TR-8 Test Mode : Mode 2: Transmit by n(40MHz) (Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Test Conditions Tnom (25 ) Tmax (40 ) Tmax (40 ) Tmin (0 ) Tmin (0 ) Vnom (AC 230V) Vmax (AC 253V) Vmin (AC 207V) Vmax (AC 253V) Vmin (AC 207V) Frequency (MHz) Measured Power (Chain 0) Measured Power (Chain 1) Measured Power (Chain 2) Measured Power (Total) EIRP of TPC Limit EIRP = Measured Power + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 49 of 132

50 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5180 N/A 1.17 N/A N/A 0.68 N/A N/A 6.54 N/A N/A 4.55 N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 50 of 132

51 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5180 N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 2: Transmit by n20(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 51 of 132

52 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 2: Transmit by n20(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5180 N/A 0.58 N/A N/A 0.98 N/A N/A 5.60 N/A N/A 4.01 N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 2: Transmit by n20(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5180 N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 52 of 132

53 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 2: Transmit by n20(Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 2: Transmit by n20(Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 53 of 132

54 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 3: Transmit by n40(Chain 0) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 3: Transmit by n40(Chain 1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5190 N/A N/A N/A N/A N/A 3.46 N/A N/A 1.35 N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 54 of 132

55 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 3: Transmit by n40(Chain 2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) 5190 N/A N/A N/A N/A N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 3: Transmit by n40(Chain 0+1) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) N/A N/A N/A N/A Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 55 of 132

56 Product : WLE350NX Test Item : Maximum Spectral Power Density Test Site : TR-8 Test Mode : Mode 3: Transmit by n40 (Chain 0+1+2) Antenna Gain = 7dBi, Duty Cycle = 99%, Cable Loss= 0.5dB Frequency (MHz) Measurement Density (dbm/mhz) Total Power Density Limit (dbm/mhz) Chain 0 Chain1 Chain2 (dbm/mhz) Power Density = Measured Density + Antenna Gain + Test Cable Loss + 10 log (1/Duty Cycle) Page: 56 of 132

57 6. Transmitter Unwanted Emissions Outside the 5GHz RLAN Bands 6.1. Test Equipment Transmitter Spurious Emissions / AC-6 Instrument Manufacturer Type No. Serial No. Cal. Due Date Spectrum Analyzer Agilent E4440A MY /03/30 PSG Analog S.G. Agilent E8257D MY /03/30 Preamplifier Agilent 8449B 3008A /04/10 Bilog Antenna Schaffner CBL6112B /10/15 Half Wave Tuned Dipole Antenna COM-POWER AD /11/24 Broad-Band Horn Antenna Schwarzbeck BBHA9120D /11/24 Broad-Band Horn Antenna Schwarzbeck BBHA9120D /06/08 Filter Banks QuieTek QTK-FB AC6-FB 2013/05/04 Temperature/Humidity Meter zhicheng ZC1-2 AC6-TH 2014/01/11 Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Page: 57 of 132

58 6.2. Test Setup For Radiated Measurement 6.3. Limit Frequency Range Maximum Power, ERP Bandwidth 30 MHz to 47 MHz -36 dbm 100 khz 47 MHz to 74 MHz -54 dbm 100 khz 74 MHz to 87.5 MHz -36 dbm 100 khz 87.5 MHz to 118 MHz -54 dbm 100 khz 118 MHz to 174 MHz -36 dbm 100 khz 174 MHz to 230 MHz -54 dbm 100 khz 230 MHz to 470 MHz -36 dbm 100 khz 470 MHz to 862 MHz -54 dbm 100 khz 862 MHz to 1 GHz -36 dbm 100 khz 1 GHz to 5.15 GHz -30 dbm 1 MHz 5.35 GHz to 5.47 GHz -30 dbm 1 MHz GHz to 26.5 GHz -30 dbm 1 MHz 6.4. Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 58 of 132

59 6.5. Test Result Test by panel antenna Mode 1: Transmit by a(Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK Page: 59 of 132

60 432.0 V PK H PK V PK H PK V PK Mode 1: Transmit by a(Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK Page: 60 of 132

61 V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 1: Transmit by a(Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK Page: 61 of 132

62 265.5 V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK Page: 62 of 132

63 V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK Page: 63 of 132

64 333.2 V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) V PK H PK V PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK Page: 64 of 132

65 V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 0+1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK Page: 65 of 132

66 280.0 V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 0+1+2) Frequency Polarization Measure Level Limit Margin Detector Page: 66 of 132

67 (MHz) (H/V) (db) Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 67 of 132

68 Mode 3: Transmit by n(40MHz) (Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK Page: 68 of 132

69 H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK Page: 69 of 132

70 355.4 V PK H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK Page: 70 of 132

71 H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 0+1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK Page: 71 of 132

72 331.8 V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 72 of 132

73 Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 73 of 132

74 Test by dipole antenna 1# Mode 1: Transmit by a(Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK Page: 74 of 132

75 H PK V PK H PK V PK Mode 1: Transmit by a(Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 75 of 132

76 Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 1: Transmit by a(Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK Page: 76 of 132

77 H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 77 of 132

78 Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK Page: 78 of 132

79 H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 79 of 132

80 Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 2: Transmit by n(20MHz) (Chain 0+1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK Page: 80 of 132

81 H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Frequency (MHz) Mode 2: Transmit by n(20MHz) (Chain 0+1+2) Polarization Measure Level Limit (H/V) Margin (db) Detector Page: 81 of 132

82 Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5500MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 82 of 132

83 Mode 3: Transmit by n(40MHz) (Chain 0) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK Page: 83 of 132

84 V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK Page: 84 of 132

85 829.8 H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK Page: 85 of 132

86 V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 0+1) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK Page: 86 of 132

87 H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Mode 3: Transmit by n(40MHz) (Chain 0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) Page: 87 of 132

88 256.0 H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK V PK H PK V PK H PK V PK H PK V PK Page: 88 of 132

89 6.6. Test Photograph Description: Transmitter Spurious Emissions Test Setup for Below 1GHz Description: Transmitter Spurious Emissions Test Setup for 1~18GHz Page: 89 of 132

90 Description: Transmitter Spurious Emissions Test Setup for 18~26.5GHz Description: Transmitter Spurious Emissions Test Setup for Below 1GHz Page: 90 of 132

91 Description: Transmitter Spurious Emissions Test Setup for 1~18GHz Description: Transmitter Spurious Emissions Test Setup for 18~26.5GHz Page: 91 of 132

92 7. Transmitter Unwanted Emissions Within the 5GHz RLAN Bands 7.1. Test Equipment Transmitter Unwanted Emissions Within the 5GHz RLAN Bands / TR-8 Instrument Manufacturer Type No. Serial No. Cali. Due Date Spectrum Analyzer Agilent E4446A MY 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 For Conducted Measurement Page: 92 of 132

93 7.3. Limit 7.4. Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 93 of 132

94 7.5. Test Result Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 0) Channel 36 Channel 64 Page: 94 of 132

95 Channel 100 Channel 140 Page: 95 of 132

96 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 1) Channel 36 Channel 64 Page: 96 of 132

97 Channel 100 Channel 140 Page: 97 of 132

98 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 1: Transmit by a(Chain 2) Channel 36 Channel 64 Page: 98 of 132

99 Channel 100 Channel 140 Page: 99 of 132

100 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz) (Chain 0) Channel 36 Channel 64 Page: 100 of 132

101 Channel 100 Channel 140 Page: 101 of 132

102 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 2: Transmit by n(20MHz) (Chain 1) Channel 36 Channel 64 Page: 102 of 132

103 Channel 100 Channel 140 Page: 103 of 132

104 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 2: Transmit by n20 (Chain 2) Channel 36 Channel 64 Page: 104 of 132

105 Channel 100 Channel 140 Page: 105 of 132

106 Product Test Item Test Site Test Mode : WLE350NX : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands : TR-8 : Mode 3: Transmit by n(40MHz) (Chain0) Channel 38 Channel 62 Page: 106 of 132

107 Channel 102 Channel 134 Page: 107 of 132

108 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz) (Chain 1) Channel 38 Channel 62 Page: 108 of 132

109 Channel 102 Channel 134 Page: 109 of 132

110 Product : WLE350NX Test Item : Transmitter Unwanted Emissions Within the 5GHz RLAN Bands Test Site : TR-8 Test Mode : Mode 3: Transmit by n(40MHz) (Chain 2) Channel 38 Channel 62 Page: 110 of 132

111 Channel 102 Channel 134 Page: 111 of 132

112 8. Receiver Spurious Emissions 8.1. Test Equipment Receiver Spurious Emissions / AC-6 Instrument Manufacturer Type No. Serial No. Cal. Due Date Spectrum Analyzer Agilent E4440A MY /03/30 PSG Analog S.G. Agilent E8257D MY /03/30 Preamplifier Agilent 8449B 3008A /04/10 Bilog Antenna Schaffner CBL6112B /10/15 Half Wave Tuned Dipole Antenna COM-POWER AD /11/24 Broad-Band Horn Antenna Schwarzbeck BBHA9120D /11/24 Broad-Band Horn Antenna Schwarzbeck BBHA9120D /06/08 Filter Banks QuieTek QTK-FB AC6-FB 2013/05/04 Temperature/Humidity Meter zhicheng ZC1-2 AC6-TH 2014/01/11 Note: All equipments are calibrated with traceable calibrations. Each calibration is traceable to the national or international standards. Page: 112 of 132

113 8.2. Test Setup For Radiated Measurement 8.3. Limit Frequency Range Maximum Power Measurement Bandwidth E.R.P ( 1GHz) E.I.R.P (> 1GHz) 30 MHz to 1GHz -57 dbm 100 khz 1 GHz to 26 GHz -47 dbm 1 MHz 8.4. Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 113 of 132

114 8.5. Test Result Test by panel antenna Mode 4: Receive by n(20MHz)(Chain0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5550MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK Page: 114 of 132

115 657.8 V PK H PK V PK H PK V PK Mode 5: Receive by n(40MHz)(Chain 0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) Page: 115 of 132

116 364.9 H PK V PK H PK V PK H PK V PK H PK V PK Page: 116 of 132

117 Test by dipole antenna 1# Mode 4: Receive by n(20MHz)(Chain0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 36 (5180MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 64 (5320MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 100 (5550MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 140 (5700MHz) H PK V PK H PK V PK Page: 117 of 132

118 H PK V PK H PK V PK Mode 5: Receive by n(40MHz)(Chain 0+1+2) Frequency Polarization Measure Level Limit Margin (MHz) (H/V) (db) Detector Channel 38 (5190MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 62 (5310MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 102 (5510MHz) H PK V PK H PK V PK H PK V PK H PK V PK Channel 134 (5670MHz) H PK Page: 118 of 132

119 398.1 V PK H PK V PK H PK V PK H PK V PK Page: 119 of 132

120 8.6. Test Photograph Description: Receive Spurious Emissions Test Setup for Below 1GHz Description: Receive Spurious Emissions Test Setup for 1~18GHz Page: 120 of 132

121 Description: Receive Spurious Emissions Test Setup for 18~26.5GHz Description: Receive Spurious Emissions Test Setup for Below 1GHz Page: 121 of 132

122 Description: Receive Spurious Emissions Test Setup for Above 1GHz Description: Receive Spurious Emissions Test Setup for 18~26.5GHz Page: 122 of 132

123 9. Adaptivity (Channel Access Mechanism) 9.1. Test Equipment Adaptivity / TR-8 Instrument Manufacturer Type No. Serial No Cal. Due Date Spectrum Analyzer Agilent N9020A MY Vector Signal Generator Agilent E4438C dB Coaxial Coupler Agilent 87300C MY Temperature/Humidity Meter zhicheng ZC1-2 TR8-TH Instrument Manufacturer Type No. Serial No Splitter/Combiner (Qty: 2) Mini-Circuits ZAPD-50W GHz NN Splitter/Combiner (Qty: 2) MCLI PS /4464 ATT (Qty: 1) Mini-Circuits VAT Laptop PC Asus N80V 8BN0AS RF Cable (Qty: 6) Mini-Circuits N/A DFS-1~6 Software Manufacturer Function DFS Tool Agilent DFS Test Software 9.2. Test Setup Page: 123 of 132

124 9.3. Limit Adaptivity Limit Frame Based Equipment Minimum Clear Channel Assessment (CCA) time = 20 us; CCA observation time used by the equipment declared by the manufacturer; COT = 1 ms to 10 ms; Idle Period = 5% of COT; Detection threshold level = -73dBm/MHz + 23 Ph; LBT based Detect and Avoid (Load Based Equipment with spectrum sharing mechanism IEEE Std.): LBT Based spectrum sharing mechanism may implement IEEE Std clauses 9 and 17, in IEEE Std n-2009 clauses 9, 11 and 20. LBT based Detect and Avoid (Load Based Equipment) Minimum Clear Channel Assessment (CCA) time = 20 us; CCA observation time used by the equipment declared by the manufacturer; COT (13 / 32) * q ms; q = [4~32]; 1.625ms~13ms; N = number of clear idle slots are randomly [1~q]. Every time an Extended CCA is required and the N value stored in a counter. Extended CCA = N * CCA; Detection threshold level = -73dBm/MHz + 23 Ph; Short Control Signalling Transmissions: Short Control Signalling Transmissions shall have a maximum duty cycle of 5% within an observation period of 50ms Test Procedure Refer to ETSI EN V1.7.1 ( ) Clause Page: 124 of 132

125 9.5. Test Result Product Test Item Test Site Test Mode : WLE350NX : Adaptivity : TR-8 : Normal Operation Adaptivity Result Detection Threshold Level -73 Modulation Mode Frequency (MHz) Adaptivity Short Control Signalling Transmissions (ms) n40M 5190 PASS n40M 5510 PASS 0 Limit PASS 2.5 Result Complied Note1: Clear Channel Assessment Time have be declared by the supplier and complies with IEEE Std and IEEE n-2009 specification. Test result plot 1# Channel 38 Page: 125 of 132

126 Test result plot 2# Channel 38 Test Result Pass Page: 126 of 132

127 Test result plot 1# Channel 102 Test result plot 2# Channel 102 Page: 127 of 132

128 Test Result Pass Page: 128 of 132

129 10. Dynamic Frequency Selection (DFS) Please refer to report number 132S008R-RFCE-DFS. Page: 129 of 132

130 11. Attachment EUT Photograph (1) EUT Photo (2) EUT Photo Page: 130 of 132

131 (3) EUT Photo (4) EUT Photo (Dipole Antenna 1#) Page: 131 of 132

132 (5) EUT Photo (Panel Antenna) (6) EUT Photo (Dipole Antenna 2#) The End Page: 132 of 132

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