ELECTRONICS TESTING CENTER, TAIWAN

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1 CONFORMANCE TEST REPORT FOR FCC 47 CFR, Part 15 Subpart B CSA Standard C108.8 / Interference-Causing Equipment Standard ICES-003 (2016) / ICES-003 (2016) / CAN/CSA- CISPR (Class B) Report No.: MAR Lab Code Client: Product: JET OPTOELECTRONICS CO.,LTD. Model: / / Comment Issues: ---- Manufacturer/supplier: EVO ASSEMBLY-0 / EVO ASSEMBLY-4/ EVO ASSEMBLY-5 JET OPTOELECTRONICS CO.,LTD. Date test item received 2017/05/09 Date test campaign completed 2017/05/11 Date of issue 2017/05/25 The test result only corresponds to the tested sample. It is not permitted to copy this report, in part or in full, without the permission of the test laboratory. Total number of pages of this test report: 31 pages Total number of pages of this test photos: 12 pages Test Engineer Checked By Approved By Andy Wang Kuang Chi Yu Jerry Huang ELECTRONICS TESTING CENTER, TAIWAN No.8, Lane 29, Wenming Rd., Guishan Dist., Taoyuan City 33383, Taiwan, R.O.C. TEL: (03) ~4 INT: ~4 FAX: (03) INT: Report No.: MAR Page 1 of 31

2 Table of Contents Page 1. GENERAL INFORMATION Product Description For Unintentional Radiators Frequency Range Related Information of EUT: Tested Configuration: Deviation Record: Modification Record: Test Methodology Test Facility Worst Case Mode EUT Configuration, Operating Condition, and Setup: The Worst Mode For Test PROVISIONS APPLICABLE Definition Requirement for Compliance Labelling Requirement User Information SUMMARY OF TEST RESULTS Emissions: Applied Level: RADIATED EMISSION MEASUREMENT Applicable Standard Measurement Procedure (Below 1GHz) Measurement Procedure (Above 1GHz) Measuring Instrument Field Strength Calculation Radiated Emission Data ANEEX A: PHOTOS... A1~A12 Report No.: MAR Page 2 of 31

3 Applicant Address Manufacturer Address EUT Brand/Trade TEST REPORT CERTIFICATION : JET OPTOELECTRONICS CO.,LTD. : 3F.,No.300,Yangguang St.,Neihu Dist.,Taipei City 11491,Taiwan,R.O.C : JET OPTOELECTRONICS CO.,LTD. : 3F.,No.300,Yangguang St.,Neihu Dist.,Taipei City 11491,Taiwan,R.O.C : EVO ASSEMBLY-0 / EVO ASSEMBLY-4/ EVO ASSEMBLY-5 : VOXXHirschmann Corporation. Model : / / Comment Issues : ---- Power Source : DC 12V Regulations Applied : FCC 47 CFR, Part 15 Subpart B (2015) CSA Standard C108.8 / Interference-Causing Equipment Standard ICES-003 (2016) / ICES-003 (2016) / CAN/CSA- CISPR (Class B) Test Specifications : Class B The testing described in this report has been carried out to the best of our knowledge and ability, and our responsibility is limited to the exercise of reasonable care. This certification is not intended to believe the sellers from their legal and/or contractual obligations. The compliance test is only certified for the test equipment and the results of the testing report relate only to the item tested. The compliance test of this report was conducted in accordance with the appropriate standards. It s not intention to assure the quality and performance of the product. This report shall not be reproduced except in full, without the approval of ETC. This report must not be used by the client to claim product endorsement by NVLAP or any agency of the U.S. Government. Laboratory Introduction: Electronics Testing Center, Taiwan is recognized, filed and mutual recognition arrangement as following: ISO/IEC 17025: BSMI, TAF, NCC, NVLAP, CCIBLAC, UL, Compliance Filing: FCC, Industry Canada, VCCI MRA: Australia, Hong Kong, New Zealand, Singapore, USA, Japan, Korea, China, APLAC through TAF FCC Registration Number: 90588, 91094, Report No.: MAR Page 3 of 31

4 1.1 Product Description 1. GENERAL INFORMATION EVO ASSEMBLY-0 / EVO ASSEMBLY-4/ EVO ASSEMBLY For Unintentional Radiators Frequency Range For an unintentional radiator, including a digital device, the spectrum shall be investigated from the lowest radio frequency signal generated or used in the device, without going below the lowest frequency for which a radiated emission limit is specified, up to the frequency shown in the following table: Highest frequency generated or Upper frequency of measurement Used in the device or on which the device operated or tunes (MHz) Range (MHz) Below Above Related Information of EUT: Power Supply : DC 12V * For more detailed features, please refer to User s Manual. 5th harmonic of the highest frequency or 40 GHz, whichever is lower Report No.: MAR Page 4 of 31

5 1.4 Tested Configuration: The EUT connected with the following peripheral devices. Following peripheral devices and interface cables were connected during the measurement: The Table of peripheral devices and interface cables Product Manufacturer Model No. I/O Cable N/A N/A N/A N/A 1.5 Deviation Record: (If any deviation from additions to or exclusions from test method must be stated) N/A 1.6 Modification Record: No modifications were required. (That is the EUT complied with the requirement as tested.) 1.7 Test Methodology Both conducted AND radiated emissions were performed according to the procedures in ANSI C Test Facility The Semi-Anechoic Chamber and conducted measurement facility used to collect the radiated and conducted data are located inside the Building at No.8, Lane 29, Wen-ming Road, Lo-shan Tsun, Kweishan Hsiang, Taoyuan, Taiwan, R.O.C. This site has been accreditation as a FCC filing site. 1.9 Worst Case Mode EUT Configuration, Operating Condition, and Setup: 1.9.1Operating Conditions of the EUT. The EUT configuration, operating condition, and associated setup used during measurement is evaluated to produce the worse case or highest level relative to the limit under the clauses set out in ANSI C63.4 and FCC 47 FCR, Part 15 Subpart B as described in following sections Refer to ANSI C63.4(2014): The EUT and accessories shall be operated at the rated (normal) operating voltage, operating temperature, and typical load conditions mechanical,electrical,or both for which they are designed. Loads may be actual or simulated as described in the individual equipment requipments. It may be necessary to develop a set of explicit requirements specifying the test conditions, EUT operation,and so on, to be used in testing a specific EUT or class of EUTs for radio-noise emissions. Such requirements shall be documented for the EUT and may be used in determining compliance with the limits.the EUT shall be operated to ensure that all the functions are exercised (software,etc.): for example,see 11.2 on information technology equipment (ITE). If software is used to exercise the EUT, then a description and all identifiers (e.g., Report No.: MAR Page 5 of 31

6 model/issue name / number and revision number) of the specific operating software shall be included in the test report to ensure reproducible test results. Note:Clause 11-Measurement of ITE. Clause 12.3-Measurement of TV interface devices. Refer to FCC 47 CFR, Part 15 Subpart B (2015): Section 15.5 General conditions of operation The Worst Mode For Test * The EUT additional used second sources. Previous pre-scan mode to identify the worst case. And a configuration, which produced worst emission level was selected and recorded in this report. Report No.: MAR Page 6 of 31

7 2.1 Definition 2. PROVISIONS APPLICABLE Unintentional Radiator: A device that intentionally generates radio frequency energy for use within the device, or that sends radio frequency signals by conduction to associated equipment via connecting wiring, but which is not intended to emit RF energy by radiation or induction. Class A Digital Device: A digital device which is marketed for use in commercial or business environment; exclusive of a device which is marketed for use by the general public, or which is intended to be used in the home. Class B Digital Device: A digital device which is marketed for use in a residential environment notwithstanding use in a commercial, business and industrial environment. Examples of such devices include, but are not limited to, personal computers, calculators, and similar electronic devices that are marketed for use by the general public. Note: A manufacturer may also qualify a device intended to be marketed in a commercial, business, or industrial environment as a Class B digital device, and in fact is encouraged to do so, provided the device complies with the technical specifications for a Class B Digital Device. In the event that a particular type of device has been found to repeatedly cause harmful interference to radio communications, the Commission may classify such a digital device as a Class B Digital Device, Regardless of its intended use. 2.2 Requirement for Compliance (1) Conducted Emission Requirement For unintentional device, according to FCC (b) Line Conducted Emission Limits class A is as following: Frequency MHz Quasi Peak dbμv Average dbμv For unintentional device, according to CISPR 22 Line Conducted Emission Limits class A is as following: Frequency MHz Quasi Peak dbμv Average dbμv Report No.: MAR Page 7 of 31

8 For unintentional device, according to AS/NZS CISPR 22 Line Conducted Emission Limits class A is as following: Frequency MHz Quasi Peak dbμv Average dbμv For unintentional device, according to FCC (a) Line Conducted Emission Limits class B is as following: Frequency MHz Quasi Peak dbμv Average dbμv For unintentional device, according to CISPR 22 Line Conducted Emission Limits class B is as following: Frequency MHz Quasi Peak dbμv Average dbμv For unintentional device, according to AS/NZS CISPR 22 Line Conducted Emission Limits class B is as following: Frequency MHz Quasi Peak dbμv Average dbμv (2) Radiated Emission Requirement For unintentional device, according to FCC (b), the field strength of radiated emissions from class A unintentional radiators at a distance of 10 meters shall not exceed the following values: (Above 1G - Distance 1/ Distance 2 = Limit 2/ Limit 1) Frequency MHz Distance Meters Radiated μv/m Radiated dbμv/m above Frequency Distance Radiated(PK) Radiated(AV) MHz Meters dbμv/m dbμv/m above 1G-18G Report No.: MAR Page 8 of 31

9 For unintentional device, according to CISPR 22 Radiated Emission Limits class A is as following: Frequency MHz Distance Meters Radiated dbμv/m 30 to to For unintentional device, according to AS/ NZS CISPR 22 Radiated Emission Limits class A is as following: Frequency MHz Distance Meters Radiated dbμv/m 30 to to For unintentional device, according to FCC (a), the field strength of radiated emissions from unintentional radiators at except for class B digital devices a distance of 3 meters shall not exceed the following values: (Distance 1/ Distance 2 = Limit 2/ Limit 1) Frequency MHz Distance Meters Radiated μv/m Radiated dbμv/m above Frequency MHz Distance Meters above 1G-18G 3 Radiated(PK) dbμv/m Radiated(AV) dbμv/m 54 For unintentional device, according to CISPR 22 Radiated Emission Limits class B is as following: Frequency MHz Distance Meters Radiated dbμv/m 30 to to For unintentional device, according to AS/ NZS CISPR 22 Radiated Emission Limits class B is as following: Frequency MHz Distance Meters Radiated dbμv/m 30 to to Report No.: MAR Page 9 of 31

10 2.3 Labelling Requirement The device shall bear the following statement in a conspicuous location on the device: This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. 2.4 User Information The users manual or instruction manual for an intentional or unintentional radiator shall caution the user that changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate the equipment. (a)class A: For a Class A digital device or peripheral, the instructions furnished the user shall include the following or similar statement, placed in a prominent location in the text of the manual: Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful intererence when the equipment is operated in a commerical environment. This equipment generates,uses,and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual,may cause harmful intererence to radio communications. Operation of this equipment in a residential area is likely to cause harmful intererence in which case the user will be required to correct the intererence at his own expense. (b)class B: For a Class B digital device or peripheral, the instructions furnished the user shall include the following or similar statement, placed in a prominent location in the text of the manual: Note: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instruction, may cause harmful interference to radio communication. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: -- Reorient or relocate the receiving antenna. -- Increase the separation between the equipment and receiver. -- Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. -- Consult the dealer or an experienced radio / TV technician for help. Report No.: MAR Page 10 of 31

11 (c)the provisions of paragraphs (a) and (b) do not apply to digital devices exempted from the technical standards under the provisions of Section (d)for systems incorporating several digital devices, the statement shown in paragraph(a) or (b) needs to be contained only in the instruction manual for the main control unit. (e)in cases where the manual is provided only in a form other than paper, such as on a computer disk or over the internet, the information required by this section me be included in the manual in that alternative form,provided the user can reasonably be expected to have the capability to access information in that form. Report No.: MAR Page 11 of 31

12 3.1 Emissions: 3. SUMMARY OF TEST RESULTS Radiated Emissions(Below 1GHz) -PASS EMI value to the limit: db at MHz Radiated Emissions(Above 1GHz) -PASS EMI value to the limit: db at MHz 3.2 Applied Level: Manufacturer level requirements: Applied Level Emission Test Test Item Standard FCC 47 CFR, Part 15 Subpart B (a) CSA Standard C108.8 / Interference-Causing Equipment StandardICES-003 (2016) / ICES-003 (2016) / CAN/CSA- CISPR Radiated Emission Test Result PASS Applied Level and M.U. Class B Report No.: MAR Page 12 of 31

13 4. RADIATED EMISSION MEASUREMENT 4.1 Applicable Standard For unintentional radiator digital devices, the radiated emission shall comply with (a). And according to (g), as an alternative to the radiated emission limits is CISPR Measurement Procedure (Below 1GHz) (1). Setup the configuration per figure 1. (2). For emission frequencies measured below 1 GHz, a pre-scan is performed in a semi-anechoic chamber to determine the accurate frequencies of higher emissions then each selected frequency is precisely measured. (3). The search antenna is to be raised and lowered over a range from 1 to 4 meters in horizontally polarized orientation. Position the highness when the highest value is indicated on spectrum analyzer, then change the orientation of EUT on test table over a range from 0 to 360 with a speed as slow as possible, and keep the azimuth that the highest emission is indicated on the spectrum analyzer. Vary the antenna position again and record the highest value as a final reading. A RF test receiver is also used to confirm emissions measured. (4). Repeat step 3 until all frequencies need to be measured were complete. (5). Repeat step 4 with search antenna in vertical polarized orientations. (6). Check the frequency of the highest emission with varying the placement of cables associated with EUT to obtain the worse case and record the result. Figure 1: Frequencies measured below 1 GHz configuration Antenna Tower EUT 10m Search Antenna 4m RF Test Receiver Turn Table 0.8m 1m Ground Plane Report No.: MAR Page 13 of 31

14 4.3 Measurement Procedure (Above 1GHz) (1). Setup the configuration per figure 1. (2). For emission frequencies measured above 1 GHz, a pre-scan is performed in a semi-anechoic chamber to determine the accurate frequencies of higher emissions then each selected frequency is precisely measured. (3). The search antenna is to be raised and lowered over a range from 1 to 4 meters in horizontally polarized orientation. Position the highness when the highest value is indicated on spectrum analyzer, then change the orientation of EUT on test table over a range from 0 to 360 with a speed as slow as possible, and keep the azimuth that the highest emission is indicated on the spectrum analyzer. Vary the antenna position again and record the highest value as a final reading. A RF test receiver is also used to confirm emissions measured. (4). Repeat step 3 until all frequencies need to be measured were complete. (5). Repeat step 4 with search antenna in vertical polarized orientations. (6). Check the frequency of the highest emission with varying the placement of cables associated with EUT to obtain the worse case and record the result. Figure 1: Frequencies measured above 1 GHz configuration Antenna Tower EUT 3m Search Antenna 4m RF Test Receiver Turn Table 0.8m 1m Ground Plane Report No.: MAR Page 14 of 31

15 4.4 Measuring Instrument The following instrument are used for radiated emissions measurement: Item Name Manufacturer Model 1 2 EMI Test Receiver EMI Test Receiver Calibration Date Recommended Recal. Date R&S ESIB 7 Aug. 30, 2016 Aug. 29, 2017 R&S ESU May 04, 2017 May 03, Bilog Antenna ETC&JYEBAO MCTD2786B Mar. 13, 2017 Mar. 12, Bilog Antenna ETC&JYEBAO MCTD2786B Mar. 20, 2017 Mar. 19, Horn Antenna ETS-LINDGREN 3117 Oct. 19, 2016 Oct. 18, Preamplifier EMCI EMC9135 Oct. 11, 2016 Oct. 10, 2017 Note: The standards used to perform this calibration are traceable to NML/ROC, NIST/USA and NPL/UK. Measuring instrument setup in measured frequency band when specified detector function is used: Frequency Band (MHz) 30 to GHz to 18GHz Instrument Function Resolution Bandwidth Video Bandwidth RF Test Receiver Quasi-Peak 120 khz 300 khz Spectrum Analyzer Peak 120 khz 300 khz Spectrum Analyzer Average 1MHz 100KHz or 10Hz Spectrum Analyzer Peak 1MHz 1MHz 4.5 Field Strength Calculation The field strength is calculated by adding the Antenna Factor, High Pass Filter Loss and Cable Loss, and subtracting the Amplifier Gain (if any) from the measured reading. The basic equation calculation is as follows: Result = Reading + Corrected Factor where Corrected Factor = Antenna Factor + Cable Loss - Amplifier Gain Report No.: MAR Page 15 of 31

16 4.6 Radiated Emission Data Limits below 1GHz Test Mode: HDMI Test Date : May 11, 2017 Temperature : 26 C Humidity : 60 % Antenna Polarization: Horizontal Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 16 of 31

17 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 17 of 31

18 Test Mode: DVD Test Date : May 11, 2017 Temperature : 26 C Humidity : 60 % Antenna Polarization: Horizontal Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 18 of 31

19 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 19 of 31

20 Test Mode: MHL Test Date : May 11, 2017 Temperature : 26 C Humidity : 60 % Antenna Polarization: Horizontal Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 20 of 31

21 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 21 of 31

22 Test Mode: DLNA Test Date : May 11, 2017 Temperature : 26 C Humidity : 60 % Antenna Polarization: Horizontal Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 22 of 31

23 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Ant. Table Frequency Reading Factor (10m) High Degree (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) (cm) (deg) Notes: 1) Place of Measurement: ETC EMC LAB. (1F) 2) If the data table appeared symbol of *** means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±4.6dB (30MHz f 300MHz). ±4.4dB (300MHz<f 1000MHz). 4) Class B Limits. Report No.: MAR Page 23 of 31

24 4.6.2 Limits above 1GHz Test Mode: HDMI Test Date : May 09, 2017 Temperature : 22 C Humidity : 67 % Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 24 of 31

25 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 25 of 31

26 Test Mode: DVD Test Date : May 09, 2017 Temperature : 22 C Humidity : 67 % Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 26 of 31

27 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak AVG Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 27 of 31

28 Test Mode: MHL Test Date : May 09, 2017 Temperature : 22 C Humidity : 67 % Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 28 of 31

29 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 29 of 31

30 Test Mode: DLNA Test Date : May 09, 2017 Temperature : 22 C Humidity : 67 % Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 30 of 31

31 Antenna Polarization: Vertical Emission Meter CORR d Results Limit Margins Frequency Reading Detector (MHz) (dbuv) (db/m) (dbuv/m) (dbuv/m) (db) peak peak peak peak peak peak Notes: 1) Place of Measurement: ETC EMC LAB. (B1F) 2) If the data table appeared symbol of "***" means the value was too low to be measured. 3) The estimated measurement uncertainty of the result measurement is ±5.18dB (1GHz f 18GHz) 4) Class B Limits. Report No.: MAR Page 31 of 31

32 ANNEX A: PHOTOS 1. Radiated Emissions Test Setup Photos (Below 1GHz) Report No.: MAR Page A1 of A12

33 2. Radiated Emissions Test Setup Photos (Above 1GHz) Report No.: MAR Page A2 of A12

34 1. Outside view 1 of EUT 2. Outside view 2 of EUT Report No.: MAR Page A3 of A12

35 3. Outside view 3 of EUT 4. Outside view 4 of EUT Report No.: MAR Page A4 of A12

36 5. Outside view 5 of EUT 6. Outside view 6 of EUT Report No.: MAR Page A5 of A12

37 7. Inside view 1 of EUT 8. Inside view 2 of EUT Report No.: MAR Page A6 of A12

38 9. Inside view 3 of EUT 10. Inside view 4 of EUT Report No.: MAR Page A7 of A12

39 11. Inside view 5 of EUT 12. Inside view 6 of EUT Report No.: MAR Page A8 of A12

40 13. Inside view 7 of EUT 14. Inside view 8 of EUT Report No.: MAR Page A9 of A12

41 15. Inside view 9 of EUT 16. Inside view 10 of EUT Report No.: MAR Page A10 of A12

42 17. Inside view 11 of EUT 18. Inside view 12 of EUT Report No.: MAR Page A11 of A12

43 19. Inside view 13 of EUT Report No.: MAR Page A12 of A12

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