CE Test Report. Product Name : 300Mbps Wi-Fi Range Extender Model No. : TL-WA855RE

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1 CE Test Report Product Name : 300Mbps Wi-Fi Range Extender Model No. : TL-WA855RE Applicant : TP-Link Technologies Co., Ltd. Address : Building 24(floors1,3,4,5) and 28(floors1-4) Central Science and Technology Park, Shennan Rd, Nanshan, Shenzhen, China Date of Receipt : Dec. 05, 2016 Test Date : Dec. 05, 2016 ~ Dec. 27, 2016 Issued Date : Dec. 30, 2016 Report No. : 16C2012E-MME-CE-P01V01 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 QuieTek Corporation.

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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 USA : FCC 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, Suzhou,215006, Jiangsu,China TEL : / FAX : service@quietek.com Page 3 of 94

4 TABLE OF CONTENTS Description 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 List of Test Equipment Measurement Uncertainty Performance Criteria Conducted Emission Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Asymmetric mode conducted emissions Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Radiated Emission Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Conducted differential voltage emissions Test Specification Page 4 of 94

5 6.2. Test Setup Limit Test Procedure Deviation from Test Standard Test Result Harmonic current emissions Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Voltage fluctuations and flicker Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Electrostatic discharge Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Radio-frequency electromagnetic field Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Electrical fast transients Test Specification Page 5 of 94

6 11.2. Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Surges Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Radio-frequency continuous conducted Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Power-frequency magnetic field Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Voltage dips and interruptions Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Attachment Page 6 of 94

7 EUT Photograph Page 7 of 94

8 History of This Test Report REPORT NO. VERSION DESCRIPTION ISSUED DATE 16C2012E-MME-CE-P01V01 V1.0 Initial Issued Report Dec. 30, 2016 Page 8 of 94

9 1. General Information 1.1. EUT Description Product Name Model No. Brand Name 300Mbps Wi-Fi Range Extender TL-WA855RE TP-Link Page 9 of 94

10 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 Emission Immunity Mode 1: Normal Operation Mode 1: Normal Operation Page 10 of 94

11 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 LATITUNE KC12 Power by adapter 2 Notebook DELL Latitude E5450 C14MY52 Power by adapter Page 11 of 94

12 1.4. Configuration of Tested System Connection Diagram Signal Cable Type Signal Cable Description A LAN Cable Non-shielded, >10m Page 12 of 94

13 1.5. EUT Exercise Software 1 Setup the EUT and simulators as shown on above. 2 Turn on the power of all equipments. 3 EUT communicates with the Notebook through WLAN. 4 Execute Ping function to communicate with the Notebook. 5 Start test. Page 13 of 94

14 2. Technical Test 2.1. Summary of Test Result No deviations from the test standards Deviations from the test standards as below description: Emission Performed Item Normative References Test Performed Deviation Conducted Emission EN 55032:2012+AC: 2013 Yes No Asymmetric mode conducted EN 55032:2012+AC: 2013 Yes No emissions Radiated Emission EN 55032:2012+AC: 2013 Yes No Conducted differential voltage EN 55032:2012+AC: 2013 N/A N/A emissions Harmonic current emissions EN :2014 Yes No Voltage fluctuations and flicker EN :2013 Yes No Immunity Performed Test Item Normative References Test Performed Deviation Electrostatic discharge IEC :2008 Yes No Radio-frequency IEC :2010 Yes No electromagnetic field Electrical fast transients IEC :2012 Yes No Surges IEC :2014 Yes No Radio-frequency continuous conducted IEC :2013 Yes No Power-frequency magnetic field IEC :2009 Yes No Voltage dips and interruptions IEC :2004 Yes No Page 14 of 94

15 2.2. List of Test Equipment Conducted Emission / TR1 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI Two-Line V-Network R&S ENV Two-Line V-Network R&S ENV Impedance Stabilization Network Teseq GmbH ISN T Impedance Stabilization Teseq GmbH ISN T8-Cat Network Current Probe R&S EZ ohm Termination SHX TF ohm Termination SHX TF ohm Coaxial Switch Anritsu MP59B N/A Coaxial Cable Suhner RG 223 TR1-C Temperature/Humidity Meter zhicheng ZC1-2 TR1-TH Asymmetric mode conducted emissions / TR1 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI Two-Line V-Network R&S ENV Two-Line V-Network R&S ENV Impedance Stabilization Network Teseq GmbH ISN T Impedance Stabilization Teseq GmbH ISN T8-Cat Network 50ohm Termination SHX TF ohm Termination SHX TF ohm Coaxial Switch Anritsu MP59B N/A Coaxial Cable Suhner RG 223 TR1-C Temperature/Humidity Meter zhicheng ZC1-2 TR1-TH Radiated Emission / AC1 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI EMI Test Receiver R&S ESCI EMI Receiver Agilent N9038A MY Preamplifier Quietek AP-025C CHM Preamplifier Quietek AP-025C CHM Bilog Antenna Schaffner CBL6112B Bilog Antenna Schaffner CBL6112B DRG Horn Antenna ETS-Lindgren Coaxial Cable Huber+Suhner RG 214_U AC1-L Coaxial Cable Huber+Suhner RG 214_U AC1-R Temperature/Humidity Meter zhicheng ZC1-2 AC1-TH Page 15 of 94

16 Radiated Emission / AC2 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI Bilog Antenna Teseq GmbH CBL6112D Coaxial Cable Huber+Suhner RG 214 AC2-C Temperature/Humidity Meter zhicheng ZC1-2 AC2-TH Radiated Emission / AC3 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI Bilog Antenna Teseq GmbH CBL6112D Coaxial Cable Huber+Suhner RG 214 AC3-C Temperature/Humidity Meter zhicheng ZC1-2 AC3-TH Radiated Emission / AC5 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Receiver Agilent N9038A MY Preamplifier Miteq NSP DRG Horn Antenna ETS-Lindgren Coaxial Cable Huber+Suhner SUCOFLEX 106 AC5-C Temperature/Humidity Meter zhicheng ZC1-2 AC5-TH Conducted differential voltage emissions / TR1 Instrument Manufacturer Model No. Serial No. Cali. Due Date EMI Test Receiver R&S ESCI Minimum Loss Pad Agilent 11852B Minimum Loss Pad Agilent 11852B Power Divider Agilent 11636A ohm Coaxial Switch Anritsu MP59B N/A Coaxial Cable Suhner RG 223 TR1-C Temperature/Humidity Meter zhicheng ZC1-2 TR1-TH Harmonic current emissions / TR1 Instrument Manufacturer Model No. Serial No. Cali. Due Date Power Analyzer California PACS AC Power Source California 5001iX Temperature/Humidity Meter zhicheng ZC1-2 TR1-TH Voltage fluctuations and flicker / TR1 Instrument Manufacturer Model No. Serial No. Cali. Due Date Power Analyzer California PACS AC Power Source California 5001iX Temperature/Humidity Meter zhicheng ZC1-2 TR1-TH Page 16 of 94

17 Electrostatic discharge / TR3 Instrument Manufacturer Model No. Serial No. Cali. Due Date ESD Simulator EM TEST Dito V Barometer Fengyun DYM Temperature/Humidity Meter zhicheng ZC1-2 TR3-TH Radio-frequency electromagnetic field / AC4 Instrument Manufacturer Model No. Serial No. Cali. Due Date Signal Generator R&S SML Power Meter Boonton 4231A Power Sensor Boonton EMC Power Meter Agilent E4416A GB Power Sensor Agilent E9304A MY RF Switch MF SW1072 RFSW N/A Power Amplifier Schaffner CBA9413B NA Power Amplifier Schaffner CBA NA Directional Coupler Schaffner CHA 9652B Directional Coupler A&R DC7144A Electric Field Probe ETS-LINDGREN HI Bilog Antenna Schaffner CBL6141A 4278 N/A Horn Antenna A&R AT4002A N/A Temperature/Humidity Meter Zhicheng ZC1-2 AC4-TH Electrical fast transients / TR2 Instrument Manufacturer Model No. Serial No. Cali. Due Date Immunity Test System Teseq GmbH NSG Automatic Step Teseq GmbH VAR 3005-S transformer CDN Teseq GmbH CDN CDN Teseq GmbH CDN CDN Teseq GmbH CDN Temperature/Humidity Meter zhicheng ZC1-2 TR2-TH Surges / TR2 Instrument Manufacturer Model No. Serial No. Cali. Due Date Immunity Test System Teseq GmbH NSG Automatic Step transformer Teseq GmbH VAR 3005-S CDN Teseq GmbH CDN CDN Teseq GmbH CDN CDN Teseq GmbH CDN CDN Teseq GmbH CDN Signal Line Coupling Network Teseq GmbH INA Signal Line Coupling Network Teseq GmbH IAN Signal Line Coupling Network Teseq GmbH INA Signal Line Coupling Teseq GmbH INA Page 17 of 94

18 Network Signal Line Coupling Network Signal Line Coupling Network Signal Line Coupling Network Temperature/Humidity Meter Teseq GmbH INA Teseq GmbH INA Teseq GmbH CDN zhicheng ZC1-2 TR2-TH Radio-frequency continuous conducted / TR2 Instrument Manufacturer Model No. Serial No. Cali. Due Date RF-Generator Schaffner NSG Attenuator Schaffner INA Coupling / Decoupling Network Schaffner CDN M Coupling / Decoupling Network Teseq GmbH CDN M Coupling / Decoupling Network Schaffner CDN T Coupling / Decoupling Network Teseq GmbH CDN T Coupling / Decoupling Network Teseq GmbH CDN T Coupling / Decoupling Network Teseq GmbH CDN M EM Clamp Schaffner KEMZ Temperature/Humidity Meter zhicheng ZC1-2 TR2-TH Power-frequency magnetic field / TR2 Instrument Manufacturer Model No. Serial No. Cali. Due Date Immunity Test System Teseq GmbH NSG Automatic Step Teseq GmbH VAR 3005-S transformer CDN Teseq GmbH CDN Magnetic field Coil Teseq GmbH INA Magnetic Field Generator Teseq GmbH MFO Temperature/Humidity Meter zhicheng ZC1-2 TR2-TH Voltage dips and interruptions / TR2 Instrument Manufacturer Model No. Serial No. Cali. Due Date Immunity Test System Teseq GmbH NSG Automatic Step transformer Teseq GmbH VAR 3005-S CDN Teseq GmbH CDN Temperature/Humidity Meter zhicheng ZC1-2 TR2-TH Page 18 of 94

19 2.3. Measurement Uncertainty Conducted Emission / TR1 The maximum measurement uncertainty is evaluated as: 9kHz~150kHz: 2.80dB 150kHz~30MHz: 2.40dB Asymmetric mode conducted emissions / TR1 The maximum measurement uncertainty is evaluated as: ISN T800: 150kHz~30MHz: 3.60 db ISN T8-Cat6: 150kHz~30MHz: 3.50 db ISN ST08: 150kHz~30MHz: 3.10 db Radiated Emission / AC1 The maximum measurement uncertainty is evaluated as: Horizontal: 30MHz~300MHz: 3.50 db 300MHz~1GHz: 3.20 db 1GHz~18GHz: 4.80 db Vertical: 30MHz~300MHz: 3.60 db 300MHz~1GHz: 3.10 db 1GHz~18GHz: 4.50 db Radiated Emission / AC2 The maximum measurement uncertainty is evaluated as: Horizontal: 30MHz~300MHz: 3.60 db 300MHz~1GHz: 3.10 db Vertical: 30MHz~300MHz: 3.20 db 300MHz~1GHz: 3.20 db Radiated Emission / AC3 The maximum measurement uncertainty is evaluated as: Horizontal: 30MHz~300MHz: 3.50 db 300MHz~1GHz: 3.60 db Vertical: 30MHz~300MHz: 3.60 db 300MHz~1GHz: 3.50 db Radiated Emission / AC5 The maximum measurement uncertainty is evaluated as: Horizontal: 30MHz~300MHz: 3.90 db 300MHz~1GHz: 3.60 db 1GHz~18GHz: 5.00 db Vertical: 30MHz~300MHz: 3.80 db 300MHz~1GHz: 3.50 db 1GHz~18GHz: 4.80 db Conducted differential voltage emissions / TR1 Page 19 of 94

20 The maximum measurement uncertainty is evaluated as: 2.73 db. Harmonic current emissions / TR1 The maximum measurement uncertainty is evaluated as: 1.8 db. Voltage fluctuations and flicker / TR1 The maximum measurement uncertainty is evaluated as: 1.5 db. Electrostatic discharge / TR3 The maximum measurement uncertainty is evaluated as Rise Time: 6.4 %, Peak Current: 6 %, Current at 30 ns: 6 %, Current at 60 ns: 6 %. Radio-frequency electromagnetic field / AC4 The maximum measurement uncertainty is evaluated as 1.48dB. Electrical fast transients / TR2 The maximum measurement uncertainty is evaluated as Voltage: 4%, Time: 2%. Surges / TR2 The maximum measurement uncertainty is evaluated as Voltage: 4%, Time: 2%. Radio-frequency continuous conducted / TR2 The maximum measurement uncertainty is evaluated as CDN: 1.52dB, EM Clamp: 1.92dB. Power-frequency magnetic field / TR2 The maximum measurement uncertainty is evaluated as 10%. Voltage dips and interruptions / TR2 The maximum measurement uncertainty is evaluated as Voltage: 4%, Time: 2%. Page 20 of 94

21 2.4. Performance Criteria Performance Criterion A During and after the test the EUT shall continue to operate as intended without operator intervention. No degradation of performance or loss of function is allowed below a minimum performance level specified by the manufacturer when the EUT is used as intended. The performance level may be replaced by a permissible loss of performance. If the minimum performance level or the permissible performance loss is not specified by the manufacturer, then either of these may be derived from the product description and documentation, and by what the user may reasonably expect from the EUT if used as intended. Performance Criterion B After the test, the EUT shall continue to operate as intended without operator intervention. No degradation of performance or loss of function is allowed, after the application of the phenomena below a performance level specified by the manufacturer, when the EUT is used as intended. The performance level may be replaced by a permissible loss of performance. During the test, degradation of performance is allowed. However, no change of operating state or stored data is allowed to persist after the test. If the minimum performance level (or the permissible performance loss) is not specified by the manufacturer, then either of these may be derived from the product description and documentation, and by what the user may reasonably expect from the EUT if used as intended. Performance Criterion C During and after testing, a temporary loss of function is allowed, provided the function is self-recoverable, or can be restored by the operation of the controls or cycling of the power to the EUT by the user in accordance with the manufacturer s instructions. Functions, and/or information stored in non-volatile memory, or protected by a battery backup, shall not be lost. Page 21 of 94

22 3. Conducted Emission 3.1. Test Specification According to EMC Standard: EN Test Setup 80cm Signal Generator 80cm Test Receiver 80cm 80cm To LISN 80cm Reference 40cm 12dBuV Load EUT 80cm LI LI SN Ground Plane LISN Page 22 of 94

23 3.3. Limit Applicable to AC mains power ports Frequency range MHz Coupling device Detector type/ Bandwidth Class A limits db(μv) AMN Quasi Peak / 9 KHz AMN Average / 9 KHz Both apply across the entire frequency range. Page 23 of 94

24 Frequency range MHz Coupling device Applicable to AC mains power ports Detector type/ Bandwidth Class B limits db(μv) AMN Quasi Peak / 9 KHz AMN Average / 9 KHz Both apply across the entire frequency range. Remarks: If the limits for the average detector are met when using the quasi-peak detector, then the limits for the measurement with the average detector are considered to be met Test Procedure The EUT and simulators are connected to the main power through a line impedance stabilization network (L.I.S.N.). This provides a 50Ω / 50μH or 50Ω / 50μH + 5Ω coupling impedance for the measuring equipment. The peripheral devices are also connected to the main power through a LISN that provides a 50Ω / 50μH or 50Ω / 50μH + 5Ω coupling impedance with 50Ω termination. Both sides of A.C. line are checked for maximum conducted interference. Conducted emissions were invested over the frequency range from 0.15MHz to 30MHz using a receiver bandwidth of 9kHz Deviation from Test Standard No deviation. Page 24 of 94

25 3.6. Test Result Engineer: Bob Site: TR1 Time: 2016/12/12 Limit: EN55032_CE_Mains_ClassB Margin: 0 Probe: ENV216_101044( MHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Line Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) 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 = Reading Level + Factor(Probe+Cable-Amp). Page 25 of 94

26 Engineer: Bob Site: TR1 Time: 2016/12/12 Limit: EN55032_CE_Mains_ClassB Margin: 0 Probe: ENV216_101044( MHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Neutral Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP AV QP AV 5 * QP AV QP AV QP AV QP AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 26 of 94

27 3.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Front View of Conducted Emission Test Setup Test Mode: Mode 1: Normal operation Description: Side View of Conducted Emission Test Setup Page 27 of 94

28 4. Asymmetric mode conducted emissions 4.1. Test Specification According to EMC Standard: EN Test Setup Page 28 of 94

29 4.3. Limit Applicable to 1. wired network ports 2. optical fibre port with metallic shield or tension members 3. antenna ports Frequency range MHz Coupling device Detector type/ Bandwidth Class A voltage limits db(μv) Class A current limits db(μa) AAN Quasi Peak / 9 KHz N / A AAN Average / 9 KHz CVP Quasi Peak / 9 KHz And current probe CVP Average / 9 KHz And current probe Current Probe Quasi Peak / 9 KHz N / A Current Probe Average / 9 KHz The choice of coupling device and measurement procedure is defined in EN55032:2012 Annex C. AC mains ports that also have the function of a wired network port shall meet the limits given in EN55032:2012 Table A.8. The test shall cover the entire frequency range. The application of the voltage and/or current limits is dependent on the measurement procedure used. Refer to EN55032:2012+AC 2013 Table C.1 for applicability. Testing is required at only one EUT supply voltage and frequency. Applicable to ports listed above and intended to connect to cables longer than 3 m Remarks: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz~0.50 MHz. Page 29 of 94

30 Applicable to 1. wired network ports 2. optical fibre ports with metallic shield or tension members 3. broadcast receiver tuner ports 4. antenna ports Frequency range MHz Coupling device Detector type/ Bandwidth Class B voltage limits db(μv) Class B current limits db(μa) AAN Quasi Peak / 9 KHz N / A AAN Average / 9 KHz CVP Quasi Peak / 9 KHz And current probe CVP Average / 9 KHz And current probe Current Probe Quasi Peak / 9 KHz N / A Current Probe Average / 9 KHz The choice of coupling device and measurement procedure is defined in EN55032:2012 Annex C. Screened ports including TV broadcast receiver tuner ports are tested with a common-mode impedance of 150 Ω. This is typically accomplished with the screen terminated by 150 Ω to earth. AC mains ports that also have the function of a wired network port shall meet the limits given in EN55032:2012 Table A.9. The test shall cover the entire frequency range. The application of the voltage and/or current limits is dependent on the measurement procedure used. Refer to EN55032:2012+AC 2013 Table C.1 for applicability. Testing is required at only one EUT supply voltage and frequency. Applicable to ports listed above and intended to connect to cables longer than 3 m. Remarks: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz~0.50 MHz. Page 30 of 94

31 4.4. Test Procedure Telecommunication Port: The mains voltage shall be supplied to the EUT via the LISN when the measurement of telecommunication port is performed. The common mode disturbances at the telecommunication port shall be connected to the ISN, which is 150 ohm impedance. Both alternative cables are tested related to the LCL requested. The measurement range is from 150kHz to 30MHz. The bandwidth of measurement is set to 9kHz. The 75dB LCL ISN is used for cat. 6 cable, the 65dB LCL ISN is used for cat. 5 cable, 55dB LCL ISN is used for cat. 5e Deviation from Test Standard No deviation. Page 31 of 94

32 4.6. Test Result Engineer: Bob Site: TR1 Time: 2016/12/12 Limit: EN55032_CE_ISN(Voltage)_ClassB Margin: 0 Probe: TESEQ-ISN-T800_30306( MHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Power: AC 230V/50Hz Note: Mode 1: Normal Operation LAN-100Mbps No Mark Frequency Measure Level Reading Level Over Limit Limit Probe Cable Amp Type (MHz) (dbuv) (dbuv) (db) (dbuv) (db) (db) (db) QP 2 * AV QP AV QP AV QP AV QP AV QP AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 32 of 94

33 4.7. Test Photograph Test Mode : Mode 1: Normal Operation Description : Front View of ISN Test Test Mode : Mode 1: Normal Operation Description : Back View of ISN Test Page 33 of 94

34 5. Radiated Emission 5.1. Test Specification According to EMC Standard: EN Test Setup Below 1GHz Test Setup Above 1GHz Test Setup Page 34 of 94

35 5.3. Limit Radiated emissions at frequencies up to 1 GHz for Class A equipment Frequency range Measurement Class A limits db(μv/m) MHz Distance Detector type/ OATS / SAC m Bandwidth Quasi Peak / KHz Apply only 3m or 10m across the entire frequency range Radiated emissions at frequencies above 1 GHz for Class A equipment Frequency range Measurement Class A limits db(μv/m) MHz Distance Detector type/ OATS / SAC m Bandwidth Average / MHz Peak / MHz 80 Apply across the frequency range from 1000 MHz to the highest required frequency of measurement derived from Radiated emissions at frequencies up to 1 GHz for Class B equipment Frequency range Measurement Class B limits db(μv/m) MHz Distance Detector type/ OATS / SAC m Bandwidth Quasi Peak / KHz Apply only 3m or 10m across the entire frequency range Page 35 of 94

36 Radiated emissions at frequencies above 1 GHz for Class B equipment Frequency range Measurement Class B limits db(μv/m) MHz Distance Detector type/ OATS / SAC m Bandwidth Average / MHz Peak / MHz 74 Apply across the frequency range from 1000 MHz to the highest required frequency of measurement derived from Radiated emissions from FM receivers Frequency range Measurement Class B limits db(μv/m) MHz Distance Detector type/ Fundanmental Harmonics m Bandwidth OATS / SAC OATS / SAC Quasi Peak / KHz Apply only 3m or 10m across the entire frequency range These relaxed limits apply only to emissions at the fundamental and harmonic frequencies of the local oscillator. Signals at all other frequencies shall be compliant with the limits given in Table Reqirements for radiated emissions at frequencies up to 1GHz for Class B equipment. Page 36 of 94

37 Required highest frequency for radiated measurement Highest internal frequency Highest measured frequency (Fx) Fx 108 MHz 1 GHz 108 MHz < Fx 500 MHz 2 GHz 500 MHz < Fx 1 GHz 5 GHz Fx > 1 GHz 5 Fx up to a maximum of 6 GHz NOTE 1 For FM and TV broadcast receivers, Fx is determined from the highest frequency generated or used excluding the local oscillator and tuned frequencies. NOTE 2 Fx is defined in Test Procedure The EUT and its simulators are placed on a turn table which is 0.8 meter above ground. The turn table can rotate 360 degrees to determine the position of the maximum emission level. The EUT was positioned such that the distance from antenna to the EUT was 3/10 meters. The antenna can move up and down between 1 meter and 4 meters to find out the maximum emission level. Both horizontal and vertical polarization of the antenna are set on measurement. In order to find the maximum emission, all of the interface cables must be manipulated on radiated measurement. Radiated emissions were invested over the frequency range from 30MHz to1ghz using a receiver bandwidth of 120kHz and above 1GHz using a receiver bandwidth of 1MHz. 30MHz to1ghz Radiated was performed at an antenna to EUT distance of 10 or 3 meters. Above1GHz Radiated was performed at an antenna to EUT distance of 3 meters. It is placed with absorb on the ground between EUT and Antenna Deviation from Test Standard No deviation. Page 37 of 94

38 5.6. Test Result Engineer: Glory Site: AC1 Time: 2016/12/15 Limit: EN55032_RE(10m)_ClassB Margin: 0 Probe: CBL6112B_2931( MHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Horizontal Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level Level Limit (dbuv/m) (db/m) (db) (db) Pos Pos (dbuv/m) (dbuv) (db) (cm) (deg) 1 * QP QP QP QP QP QP Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 38 of 94

39 Engineer: Glory Site: AC1 Time: 2016/12/15 Limit: EN55032_RE(10m)_ClassB Margin: 0 Probe: CBL6112B_2933( MHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Vertical Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level Level Limit (dbuv/m) (db/m) (db) (db) Pos Pos (dbuv/m) (dbuv) (db) (cm) (deg) QP QP QP QP QP 6 * QP Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 39 of 94

40 Engineer: Steven Site: AC5 Time: 2016/12/20 Limit: EN55032_RE(3m)_ClassB Margin: 0 Probe: Horn_3117_ (1-18GHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Horizontal Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level Level Limit (dbuv/m) (db/m) (db) (db) Pos Pos (dbuv/m) (dbuv) (db) (cm) (deg) PK AV 3 * PK AV PK AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 40 of 94

41 Engineer: Steven Site: AC5 Time: 2016/12/22 Limit: EN55032_RE(3m)_ClassB Margin: 0 Probe: Horn_3117_ (1-18GHz) EUT: 300Mbps Wi-Fi Range Extender Polarity: Vertical Power: AC 230V/50Hz Note: Mode 1: Normal Operation No Mark Frequency Measure Reading Over Limit Probe Cable Amp Ant Table Type (MHz) Level Level Limit (dbuv/m) (db/m) (db) (db) Pos Pos (dbuv/m) (dbuv) (db) (cm) (deg) PK AV PK AV PK 6 * AV Note: 1. " * ", means this data is the worst emission level. 2. Measurement Level = Reading Level + Factor(Probe+Cable-Amp). Page 41 of 94

42 5.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Front View of Radiated Emission Test Setup (Below 1GHz) Test Mode: Mode 1: Normal operation Description: Rear View of Radiated Emission Test Setup (Below 1GHz) Page 42 of 94

43 Test Mode: Mode 1: Normal operation Description: Front View of Radiated Emission Test Setup (Above 1GHz) Test Mode: Mode 1: Normal operation Description: Rear View of Radiated Emission Test Setup (Above 1GHz) Page 43 of 94

44 6. Conducted differential voltage emissions 6.1. Test Specification According to EMC Standard: EN Test Setup Peripheral EUT Auxiliary Signal Generator Coaxial Cable Coaxial Cable 75Ω/50Ω Matching 75Ω/50Ω Matching Combining Network Test Receiver Page 44 of 94

45 6.3. Limit Applicable to 1. TV broadcast receiver tuner ports with an accessible connector. 2. RF modulator output ports. 3. FM broadcast receiver tuner ports with an accessible connector. Frequency range MHz Detector type/ Bandwidth Other Class B limits db(μv) 75 Ω Local Oscillator Fundamental Local Oscillator Harmonics Applicability For frequencies See note a GHz Quasi Peak/ See note b khz See note c For frequencies GHz Peak/ MHz See note d See note e N / A 54 Note: a) Television receivers (analogue or digital), video recorders and PC TV broadcast receiver tuner cards working in channels between 30 MHz and 1 GHz, and digital audio receivers. b) Tuner units (not the LNB) for satellite signal reception. c) Frequency modulation audio receivers and PC tuner cards. d) Frequency modulation car radios. e) Applicable to EUTs with RF modulator output ports (for example DVD equipment, video recorders, camcorders and decoders etc.) designed to connect to TV broadcast receiver tuner ports. Testing is required at only one EUT supply voltage and frequency. The term other refers to all emissions other than the fundamental and the harmonics of the local oscillator. The test shall be performed with the device operating at each reception channel. The test shall cover the entire frequency range. Page 45 of 94

46 6.4. Test Procedure The output level of the auxiliary signal generator is set to give at the antenna input terminal of the EUT the value of 60 dbμv for frequency modulation receivers and 70 dbμv for television receivers, on 75 impedance. The antenna terminals of the EUT or associated equipment and the auxiliary signal generator are connected to the test receiver by means of coaxial cables and a resistive combining network having a minimum attenuation of 6dB. The EUT is tuned to the wanted signal. The test receiver is tuned to the relevant radiated frequency and the disturbance level is measured. The test shall then be repeated with the EUT switched off, to check that the measured disturbance voltage is not due to the auxiliary generator. In order to find the maximum emission, the relative positions of equipment and all of the interface cables were changed according to EN 55032:2012+AC 2013 on Antenna Terminal Emission measurement. Disturbance voltage at the antenna terminal is investigated over the frequency range from 30MHz to 2150MHz using a test receiver bandwidth of 120kHz Deviation from Test Standard No deviation. Page 46 of 94

47 6.6. Test Result The EUT does not contain the antenna terminal, so it needs not to perform this test item. Page 47 of 94

48 7. Harmonic current emissions 7.1. Test Specification According to EMC Standard: EN Test Setup 7.3. Limit (a) Limits of Class A Harmonics Currents Harmonics Order n Maximum Permissible harmonic current A Harmonics Order n Maximum Permissible harmonic current A Odd harmonics Even harmonics n * 8/n n * 15/n Page 48 of 94

49 (b) Limits of Class B Harmonics Currents For Class B equipment, the harmonic of the input current shall not exceed the maximum permissible values given in table that is the limit of Class A multiplied by a factor of 1.5. (c) Limits of Class C Harmonics Currents Harmonics Order Maximum Permissible harmonic current Expressed as a percentage of the input current at the fundamental frequency n % λ n 39 3 (odd harmonics only) λ is the circuit power factor (d) Limits of Class D Harmonics Currents Harmonics Order n Maximum Permissible harmonic current per watt ma/w Maximum Permissible harmonic current A n 39 (odd harmonics only) 3.85/n See limit of Class A Page 49 of 94

50 7.4. Test Procedure The EUT is supplied in series with power analyzer from a power source having the same normal voltage and frequency as the rated supply voltage and the equipment under test. And the rated voltage at the supply voltage of EUT of 0.98 times and 1.02 times shall be performed Deviation from Test Standard No deviation. Page 50 of 94

51 7.6. Test Result Test Site TR1 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 25 C Humidity 48%RH Barometric Pressure 101kPa Test Engineer Bob Test Mode Mode 1: Normal operation AC 230V / 50Hz Test Result: N/L Source qualification: Normal Current & voltage waveforms Current (Amps) Voltage (Volts) Harmonics and Class A limit line European Limits Current RMS(Amps) Harmonic # Test result: N/L Page 51 of 94

52 Test Result: N/L Source qualification: Normal THC(A): I-THD(%): POHC(A): POHC Limit(A): Highest parameter values during test: V_RMS (Volts): Frequency(Hz): I_Peak (Amps): I_RMS (Amps): I_Fund (Amps): Crest Factor: Power (Watts): 1.7 Power Factor: Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status N/A N/A N/L N/L N/A N/A N/L N/L N/A N/A N/L N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L N/A N/A N/L 1. Dynamic limits were applied for this test. The highest harmonics values in the above table may not occur at the same window as the maximum harmonics/limit ratio. 2. According to EN paragraph 7 the note 1 and 2 are valid for all applications having an active input power >75W. Others the result should be pass. Page 52 of 94

53 7.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Harmonic current emissions Test Setup Page 53 of 94

54 8. Voltage fluctuations and flicker 8.1. Test Specification According to EMC Standard: EN Test Setup 8.3. Limit The following limits apply: the value of P st shall not be greater than 1.0; the value of P lt shall not be greater than 0.65; Tmax, the accumulated time value of d(t) with a deviation exceeding 3,3 % during a single voltage change at the EUT terminals, shall not exceed 500 ms; the relative steady-state voltage change, d c, shall not exceed 3.3%; the maximum relative voltage change, d max, shall not exceed; a) 4% without additional conditions; b) 6% for equipment which is: switched manually, or switched automatically more frequently than twice per day, and also has either a delayed restart (the delay being not less than a few tens of seconds), or manual restart, after a power supply interruption. NOTE: The cycling frequency will be further limited by the P st and P lt limit. For example: a d max of 6% producing a rectangular voltage change characteristic twice per hour will give a P lt of about Page 54 of 94

55 c) 7% for equipment which is: attended whilst in use (for example: hair dryers, vacuum cleaners, kitchen equipment such as mixers, garden equipment such as lawn mowers, portable tools such as electric drills), or switched on automatically, or is intended to be switched on manually, no more than twice per day, and also has either a delayed restart (the delay being not less than a few tens of seconds) or manual restart, after a power supply interruption. P st and P lt requirements shall not be applied to voltage changes caused by manual switching Test Procedure The EUT is supplied in series with power analyzer from a power source having the same normal voltage and frequency as the rated supply voltage and the equipment under test. And the rated voltage at the supply voltage of EUT of 0.98 times and 1.02 times shall be performed Deviation from Test Standard No deviation. Page 55 of 94

56 8.6. Test Result Test Site TR1 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 25 C Humidity 48%RH Barometric Pressure 101kPa Test Engineer Bob Test Mode Mode 1: Normal operation AC 230V / 50Hz Test Result: Pass Status: Test Completed Pst i and limit line European Limits Pst :50:08 Plt and limit line 0.50 Plt :50:08 Parameter values recorded during the test: Vrms at the end of test (Volt): Highest dt (%): 0.00 Test limit (%): N/A N/A T-max (ms): 0 Test limit (ms): Pass Highest dc (%): 0.00 Test limit (%): 3.30 Pass Highest dmax (%): Test limit (%): 4.00 Pass Highest Pst (10 min. period): Test limit: Pass Highest Plt (2 hr. period): Test limit: Pass Page 56 of 94

57 8.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Voltage fluctuations and flicker Test Setup Page 57 of 94

58 9. Electrostatic discharge 9.1. Test Specification According to EMC Standard: IEC Test Setup 9.3. Limit Environmental phenomenon Enclosure port Electrostatic discharge Test specification Units Performance criterion ±4 (Contact discharge) kv (Charge voltage) B ±8 (Air discharge) kv (Charge voltage) Page 58 of 94

59 9.4. Test Procedure Direct application of discharges to the EUT: Contact discharge was applied only to conductive surfaces of the EUT. Air discharges were applied only to non-conductive surfaces of the EUT. During the test, it was performed with single discharges. For the single discharge time between successive single discharges will be keep longer 1 second. It was at least twenty-five single discharges with positive and negative at the same selected point. The selected point, which was performed with electrostatic discharge, was marked on the red label of the EUT. Indirect application of discharges to the EUT: Vertical Coupling Plane (VCP): The coupling plane, of dimensions 0.5m x 0.5m, is placed parallel to, and positioned at a distance 0.1m from the EUT, with the Discharge Electrode touching the coupling plane. The four faces of the EUT will be performed with electrostatic discharge. It was at least twenty-five single discharges with positive and negative at the same selected point. Horizontal Coupling Plane (HCP): The coupling plane is placed under to the EUT. The generator shall be positioned vertically at a distance of 0.1m from the EUT, with the Discharge Electrode touching the coupling plane. The four faces of the EUT will be performed with electrostatic discharge. It was at least twenty-five single discharges with positive and negative at the same selected point Deviation from Test Standard No deviation. Page 59 of 94

60 9.6. Test Result Test Site TR3 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH AC 230V / 50Hz Barometric Pressure 101kPa Test Engineer Whiteside Test Mode Mode 1: Normal operation Air Discharge Test Location Test Level +2kV -2kV +4kV -4kV +8kV -8kV Observation Result 1-9 A A A A A A Note Pass Contact Discharge Test Location Test Level +4kV -4kV Observation Result A A Note Pass Horizontal Coupling Test Location Test Level +4kV -4kV Observation Result Front A A Note Pass Rear A A Note Pass Left A A Note Pass Right A A Note Pass Vertical Coupling Test Location Test Level +4kV -4kV Observation Result Front A A Note Pass Rear A A Note Pass Left A A Note Pass Right A A Note Pass NOTE: There was no change compared with initial operation during the test. Page 60 of 94

61 9.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Electrostatic discharge Test Setup Electrostatic discharge Test Location Page 61 of 94

62 Page 62 of 94 Report No.: 16C2012E-MME-CE-P01V01

63 Page 63 of 94 Report No.: 16C2012E-MME-CE-P01V01

64 10. Radio-frequency electromagnetic field Test Specification According to EMC Standard: IEC Test Setup Page 64 of 94

65 10.3. Limit Environmental phenomenon Enclosure port Test specification Units Performance criterion Radio-frequency electromagnetic field MHz V/m (unmodulated, r.m.s) % AM (1kHz) A NOTE: The frequency range is scanned as specified. However, when specified in Annex A, an additional comprehensive functional test shall be carried out at a limited number of frequencies. The selected frequencies are: 80, 120, 160, 230, 434, 460, 600, 863 and 900MHz ( 1%) Test Procedure The EUT and load, which are placed on a table that is 0.8 meter above ground, are placed with one coincident with the calibration plane such that the distance from antenna to the EUT was 3 meters. Both horizontal and vertical polarization of the antenna and four sides of the EUT are set on measurement. In order to judge the EUT performance, a CCD camera is used to monitor EUT screen. All the scanning conditions are as follows: Condition of Test Remarks 1. Field Strength 3V/m 2. Radiated Signal AM 80% Modulated with 1kHz 3. Scanning Frequency MHz 4 Dwell Time 3 Seconds 5. Frequency Step Size f 1% Deviation from Test Standard No deviation. Page 65 of 94

66 10.6. Test Result Test Site AC4 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 230V / 50Hz Frequency Field Strength Test Result Polarity Position Observation (MHz) (V/m) Criterion Result Horizontal Front 3 A Note Pass Vertical Front 3 A Note Pass Horizontal Rear 3 A Note Pass Vertical Rear 3 A Note Pass Horizontal Left 3 A Note Pass Vertical Left 3 A Note Pass Horizontal Right 3 A Note Pass Vertical Right 3 A Note Pass NOTE: There was no change compared with initial operation during the test. Page 66 of 94

67 10.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Radio-frequency electromagnetic field Test Setup Page 67 of 94

68 11. Electrical fast transients Test Specification According to EMC Standard: IEC Test Setup Limit Environmental phenomenon Input a.c. power ports Electrical fast ±1.0 transients 5/50 5 Input d.c. power ports Electrical fast transients ±0.5 5/50 5 Test specification Units Performance criterion Signal ports and telecommunication ports (See Note) Electrical fast transients ±0.5 5/50 5 Page 68 of 94 kv (peak) Tr/Th (ns) Repetition frequency (khz) kv (peak) Tr/Th (ns) Repetition frequency (khz) kv (peak) Tr/Th (ns) Repetition frequency (khz) NOTE 1. Applicable only to cables which according to the manufacturer s specification supports communication on cable lengths greater than 3m. 2. Test applied to all lines simultaneously to earth (ground) 3. For xdsl equipment, the repetition frequency for EFT testing shall be 100 khz (See EN 55024:2010 Annex H). B B B

69 11.4. Test Procedure The EUT is placed on a table that is 0.8 meter height. A ground reference plane is placed on the table, and uses a (0,1 ± 0,01)m insulation between the EUT and ground reference plane. The minimum area of the ground reference plane is 0.8m*1m, and 0.65mm(copper or aluminium of 0,25 mm minimum thickness) thick min, and projected beyond the EUT by at least 0.1m on all sides. For input a.c. and d.c. power ports: The EUT is connected to the power mains through a coupling device that directly couples the EFT/B interference signal. Each of the line conductors is impressed with burst noise for 1 minute. The length of the power lines between the coupling device and the EUT is (0,5 0/+0,1)m for tabletop equipment testing. For signal and telecommunication ports: The EFT interference signal is through a coupling clamp device couples to the signal of the EUT with burst noise for 1 minute. The length of the signal lines between the coupling device and the EUT is (0,5 0/+0,1)m for tabletop equipment testing Deviation from Test Standard No deviation. Page 69 of 94

70 11.6. Test Result Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 230V / 50Hz Input a.c. power ports (Tr/Th: 5/50ns, Repetition Frequency: 5kHz) Inject Test Level Test Duration Inject Test Result Polarity Observation Line (kv) (second) Method Criterion Result L Direct A Note Pass L Direct A Note Pass N Direct A Note Pass N Direct A Note Pass L+N Direct A Note Pass L+N Direct A Note Pass Signal ports and telecommunication ports (Tr/Th: 5/50ns, Repetition Frequency: 5kHz) Inject Test Level Test Duration Inject Test Result Polarity Observation Line (kv) (second) Method Criterion Result LAN Clamp A Note Pass LAN Clamp A Note Pass NOTE : There was no change compared with initial operation during the test. Page 70 of 94

71 11.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Electrical fast transients Test Setup (Input a.c. power ports) Test Mode: Mode 1: Normal operation Description: Electrical fast transients Test Setup (LAN) Page 71 of 94

72 12. Surges Test Specification According to EMC Standard: IEC Test Setup Page 72 of 94

73 12.3. Limit Environmental phenomenon Input a.c. power ports (See Note 1) Test specification Units Performance criterion Surges 1.2/50 (8/20) 1 line to line 2 line to earth (ground) Input d.c. power ports (See Note 2) Surges 1.2/50 (8/20) 0.5 Tr/Th (us) kv (peak) kv (peak) Tr/Th (us) kv (peak) B B Signal ports and telecommunication ports (See Note 2, 3, 4 and 5) Surges 10/700 Tr/Th (us) C Line to Ground 1 kv (peak) 10/700 Tr/Th (us) C 4 kv (peak) NOTE 1: When the manufacturer specifies protection measures and it is impractical to simulate these measures during the tests, then the applied test levels shall be reduced to 0.5kV and 1kV. NOTE 2: Applicable only to ports which according to the manufacturer s specification may connect directly to outdoor cables. NOTE 3: For ports where primary protection is intended, surges are applied at voltages up to 4 kv with the primary protectors fitted. Otherwise the 1 kv test level is applied without primary protection in place. NOTE 4: Test applied to all lines simultaneously to earth (ground). NOTE 5: Where the coupling network for the 10/700 μs waveform affects the functioning of high speed data ports, the test shall be carried out using a 1,2/50 (8/20) μs waveform and appropriate coupling network. Page 73 of 94

74 12.4. Test Procedure The EUT is placed on a table that is 0.8 meter above a metal ground plane measured 1m*1m minimum and 0.65mm thick minimum and projected beyond the EUT by at least 0.1m on all sides. The length of power cord between the coupling device and the EUT shall be 2m or less. For input a.c. and d.c. power ports: The EUT is connected to the power mains through a coupling device that directly couples the surge interference signal. The surge noise shall be applied synchronized to the voltage phase at 0 0, 90 0, 180 0, and the peak value of the a.c. voltage wave. (Positive and negative) Each of Line to Earth and Line to Line is impressed with a sequence of five surge voltages with interval of 1 minute. For signal and telecommunication ports: The signal line of EUT is connected to coupling and decoupling network that directly couples the surge interference signal. Only Line to ground is impressed with a sequence of five surge voltages with interval of 1 minute Deviation from Test Standard No deviation. Page 74 of 94

75 12.6. Test Result Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 230V / 50Hz Inject Line Polarity Angle (degree) Test Level (kv) Test Interval Test Result Observation Result (second) Criterion L+N A Note Pass L+N A Note Pass L+N A Note Pass L+N A Note Pass L+N A Note Pass L+N A Note Pass L+N A Note Pass L+N A Note Pass NOTE: There was no change compared with initial operation during the test. Page 75 of 94

76 12.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Surges Test Setup (Input a.c. power ports) Page 76 of 94

77 13. Radio-frequency continuous conducted Test Specification According to EMC Standard: IEC Test Setup CDN Test Setup EM Clamp Test Setup Page 77 of 94

78 13.3. Limit Environmental phenomenon Test specification Units Performance criterion Input a.c. power ports (See Note 1) Radio-frequency MHz A continuous 3 V (unmodulated, r.m.s) conducted 80 % AM (1kHz) Input d.c. power ports (See Note 1) Radio-frequency MHz A continuous 3 V (unmodulated, r.m.s) conducted 80 % AM (1kHz) Signal ports and telecommunication ports (See Note 1 and 2) Radio-frequency continuous conducted MHz V (unmodulated, r.m.s) % AM (1kHz) A NOTE 1: The frequency range is scanned as specified. However, when specified in Annex A, an additional comprehensive functional test shall be carried out at a limited number of frequencies. The selected frequencies for conducted test are: 0.2; 1; 7.1; 13.56; 21; and 40.68MHz ( 1%). NOTE 2: Applicable only to cables which according to the manufacturer s specification supports communication on cable lengths greater than 3m. Page 78 of 94

79 13.4. Test Procedure The EUT is placed on a table that is 0.8 meter height, and a ground reference plane on the table, EUT is placed upon table and use a 0,1 m 0,05 m insulation between the EUT and ground reference plane. Where coupling and/or decoupling devices are required, they shall be located between 0,1 m and 0,3 m from the EUT. This distance is to be measured horizontally from the projection of the EUT on to the reference ground plane to the coupling and/or decoupling device. For input a.c. and d.c. power ports: The EUT is connected to the power mains through a coupling and decoupling networks for power supply lines. And directly couples the disturbances signal into EUT. Used CDN-M2 for two wires or CDN-M3 for three wires. For signal and telecommunication ports: The disturbance signal is through a coupling and decoupling networks (CDN) or EM-clamp device couples to the signal and telecommunication lines of the EUT. Condition of Test Remarks 1. Field Strength 3V 2. Radiated Signal AM 80% Modulated with 1kHz 3. Scanning Frequency MHz 4 Dwell Time 3 Seconds 5. Frequency Step Size f 1% Deviation from Test Standard No deviation. Page 79 of 94

80 13.6. Test Result Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 230V / 50Hz Frequency Inject Voltage Test Result Inject Ports Inject Method Observation (MHz) (V) Criterion Result AC Mains CDN A Note Pass LAN CDN A Note Pass NOTE: There was no change compared with initial operation during the test. Page 80 of 94

81 13.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Radio-frequency continuous conducted Test Setup (Input a.c. power ports) Test Mode: Mode 1: Normal operation Description: Radio-frequency continuous conducted Test Setup (LAN) Page 81 of 94

82 14. Power-frequency magnetic field Test Specification According to EMC Standard: IEC Test Setup Page 82 of 94

83 14.3. Limit Environmental phenomenon Enclosure port Test specification Units Performance criterion Power-frequency magnetic field 50 1 Hz A/m (r.m.s) A NOTE: Applicable only to equipment containing devices susceptible to magnetic fields, such as CRT monitors, Hall elements, electrodynamic microphones, magnetic field sensors, etc Test Procedure The EUT is placed on a table which is 0.8 meter above a metal ground plane measured at least 1m*1m minimum. The ground plane (GRP) is placed in the laboratory and it shall be a non-magnetic metal sheet (copper or aluminium) of 0,25 mm minimum thickness; other metals may be used but in this case they shall have at least 0,65 mm minimum thickness.the test magnetic field shall be placed at central of the induction coil. All cables shall be exposed to the magnetic field for 1 m of their length. The test magnetic Field shall be applied 10 minutes by the immersion method to the EUT, and the induction coil shall be rotated by 90 in order to expose the EUT to the test field with different orientation (X, Y, Z Orientations) Deviation from Test Standard No deviation. Page 83 of 94

84 14.6. Test Result Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 230V / 50Hz Test Coil Position Frequency Magnetic Strength Test Result (Hz) (A/m) Criterion Observation Result X Axis 50 1 A Note Pass Y Axis 50 1 A Note Pass Z Axis 50 1 A Note Pass NOTE: There was no change compared with initial operation during the test. Page 84 of 94

85 14.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Power-frequency magnetic field Test Setup Page 85 of 94

86 15. Voltage dips and interruptions Test Specification According to EMC Standard: IEC Test Setup Page 86 of 94

87 15.3. Limit Environmental phenomenon Input a.c. power ports Voltage dips > Test specification Units Performance criterion % reduction B period % reduction C periods Voltage interruptions > % reduction periods C NOTE: Changes to occur at 0 degree crossover point of the voltage waveform Test Procedure The EUT is placed on a table which is 0.8 meter above a metal ground plane measured 1m*1m minimum, and 0.65mm thick minimum, and projected beyond the EUT by at least 0.1m on all sides. The power cord shall be used the shortest power cord as specified by the manufacturer. For Voltage dips and interruptions test: The selection of test voltage is based on the rated power range. If the operation range is large than 20% of lower power range, both end of specified voltage shall be tested. Otherwise, the typical voltage specification is selected as test voltage. The EUT is connected to the power mains through a coupling device that directly couples to the voltage dips and interruption generator Deviation from Test Standard No deviation. Page 87 of 94

88 15.6. Test Result Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation AC 100V / 50Hz Voltage Test Duration Complied to % Reduction (period) Criteria Observation Result >95(Dips) 0.5 A Note 1 Pass 30(Dips) 25 A Note 1 Pass >95(Interruptions) 250 C Note 2 Pass NOTE 1: There was no change compared with initial operation during the test. NOTE 2: The system shut down during the test, but can be restored by the user. Page 88 of 94

89 Test Site TR2 Date of Test EUT 300Mbps Wi-Fi Range Extender Test Voltage AC 240V / 50Hz Temperature 22 C Humidity 44%RH Barometric Pressure 101kPa Test Engineer Ray Test Mode Mode 1: Normal operation Voltage Test Duration Complied to % Reduction (period) Criteria Observation Result >95(Dips) 0.5 A Note 1 Pass 30(Dips) 25 A Note 1 Pass >95(Interruptions) 250 C Note 2 Pass NOTE 1: There was no change compared with initial operation during the test. NOTE 2: The system shut down during the test, but can be restored by the user. Page 89 of 94

90 15.7. Test Photograph Test Mode: Mode 1: Normal operation Description: Voltage dips and interruptions Test Setup Page 90 of 94

91 16. Attachment (1) EUT Photo EUT Photograph (2) EUT Photo Page 91 of 94

92 (3) EUT Photo (4) EUT Photo Page 92 of 94

93 (5) EUT Photo (6) EUT Photo Page 93 of 94

94 (7) EUT Photo (8) EUT Photo The End Page 94 of 94

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