CE CONFORMANCE REPORT

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1 Accredited Testing Laboratory under the terms of ISO/IEC CE CONFORMANCE REPORT EMC DIRECTIVE 2004/108/EC for PRODUCT: HIGH DEFINITION NETWORK CAMERA MODEL NAME: LND5110 AUTHORIZED LG Electronics Inc. 222 LG-ro, Jinwi-Myeon, Pyeongtaek -Si, Gyeonggi-Do, , Korea April 03, 2014 SUMMARY The equipment complies with the standards; EN 55022: 2010 (Class A) EN : A1: A2: 2009 EN : 2008 EN : 2011 (signature) Gea-Won, Lee / Managing Director This is only valid in connection with Test Report: E144R-009 SAFETY-CE:DoC(Rev.2) HEAD OFFICE: Daessangnyeong-ri, Chowol-eup, Gwangju-si, Gyeonggi-do Korea (TEL: , FAX: )

2 Page 1 of 52 ELECTROMAGNETIC COMPATIBILITY TEST REPORT Test Report No. AGR No. Applicant Address Manufacturer Address Type of Equipment Model Name Multiple Model Name Serial number Total page of Report : E144R-009 : A143A-070R : LG Electronics Inc. : 222 LG-ro, Jinwi-Myeon, Pyeongtaek -Si, Gyeonggi-Do, , Korea : LG Electronics Inc. : 222 LG-ro, Jinwi-Myeon, Pyeongtaek -Si, Gyeonggi-Do, , Korea : High Definition Network Camera : LND5110 : N/A : N/A : 52 pages (including this page) Date of Incoming : March 10, 2014 Date of Issuing : April 03, 2014 SUMMARY The equipment complies with the standard; EN 55022: 2010 (Class A), EN : A1: A2: 2009, EN : 2008 and EN : This test report contains only the results of a single test of the sample supplied for the examination. It is not a general valid assessment of the features of the respective products of the mass-production. Prepared by: Approved by: Dong-Youl, Lim / Asst. Chief Engineer Gea-Won, Lee / Managing Director ONETECH Corp. ONETECH Corp.

3 Page 2 of 52 CONTENTS PAGE 1. APPLICANT AND MANUFACTURER INFORMATION TEST SUMMARY TEST STANDARDS AND RESULTS ADDITIONS, DEVIATIONS, EXCLUSIONS FROM STANDARDS PURPOSE OF THE TEST TEST FACILITY ENVIRONMENTAL CONDITIONS INFORMATION OF THE INSTRUCTION FOR CLASS A EQUIPMENT EUT (EQUIPMENT UNDER TEST) IDENTIFICATION OF THE EUT ADDITIONAL INFORMATION ABOUT THE EUT PERIPHERAL EQUIPMENT MODE OF OPERATION DURING THE TEST CRITERION DESCRIPTION CABLE DESCRIPTION ALTERNATIVE TYPE(S)/MODEL(S) EUT MODIFICATIONS EMISSION TESTS MAINS TERMINAL CONTINUOUS DISTURBANCE VOLTAGE Operating environment Test set-up Measurement uncertainty Test equipment used CONDUCTED COMMON MODE DISTURBANCE AT TELECOMMUNICATION PORTS Operating environment Test set-up Measurement uncertainty Test equipment used Test data RADIATED ELECTROMAGNETIC FIELD... 19

4 Page 3 of Operating environment Test set-up Measurement uncertainty Test equipment used Test data HARMONICS CURRENT EMISSIONS Operating environment Test set-up Measurement uncertainty Test equipment used Test data VOLTAGE CHANGES, VOLTAGE FLUCTUATIONS AND FLICKER Operating environment Test set-up Measurement uncertainty Test equipment used Test data IMMUNITY TESTS ELECTROSTATIC DISCHARGE IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data ESD Test Point & Test Result RADIATED RF-ELECTROMAGNETIC FIELD IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data ELECTRICAL FAST TRANSIENT/BURST IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used... 33

5 Page 4 of Test data SURGE IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data CONDUCTED RF FIELDS IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data MAINS SUPPLY VOLTAGE DIPS AND SHORT INTERRUPTIONS IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data MAINS SUPPLY VOLTAGE VARIATIONS IMMUNITY TEST Operating environment Test set-up Measurement uncertainty Test equipment used Test data APPENDIX I - TEST SET-UP PHOTOS: (MAINS TERMINAL CONTINUOUS DISTURBANCE VOLTAGE) APPENDIX II - TEST SET-UP PHOTOS: (CONDUCTED COMMON MODE DISTURBANCE AT TELECOMMUNICATION PORTS) APPENDIX III - TEST SET-UP PHOTOS: (RADIATED ELECTROMAGNETIC FIELD) APPENDIX IV - TEST SET-UP PHOTO: (HARMONICS & VOLTAGE FLUCTUATIONS ON AC MAINS) APPENDIX V TEST SET-UP PHOTO: (ESD) APPENDIX VI TEST SET-UP PHOTO: (RF E- FIELD)... 49

6 Page 5 of 52 APPENDIX VII - TEST SET-UP PHOTO: (EFT/BURST) APPENDIX VIII - TEST SET-UP PHOTO: (SURGE) APPENDIX IX - TEST SET-UP PHOTO: (C.S) APPENDIX XI - TEST SET-UP PHOTO: (MAINS SUPPLY VOLTAGE DIPS, SHORT INTERRUPTIONS) APPENDIX XI - TEST SET-UP PHOTO: (POWER SUPPLY SHORT TERM VARIATION) APPENDIX XII - PHOTOGRAPHS OF THE PRODUCT... 55

7 Page 6 of 52 Revision History Issued Report No. Issued Date Revisions Effect Section E144R-009 April 03, 2014 Initial Issue All

8 Page 7 of APPLICANT AND MANUFACTURER INFORMATION -. Applicant : LG Electronics Inc. -. Address : 222 LG-ro, Jinwi-Myeon, Pyeongtaek -Si, Gyeonggi-Do, , Korea -. Manufacturer : LG Electronics Inc. -. Address : 222 LG-ro, Jinwi-Myeon, Pyeongtaek -Si, Gyeonggi-Do, , Korea 2. TEST SUMMARY 2.1 Test standards and results EN 55022: 2010 EN : A1: A2: 2009 STANDARDS Radiated Electromagnetic Field Mains Terminal disturbance voltage Conducted Common Mode Disturbance at Telecommunication Ports Harmonics Current Emissions RESULTS Met Class A / PASS Met Class A / PASS Met Class A / PASS Met / PASS EN : 2008 Voltage changes, Voltage fluctuations and Flicker Met / PASS EN : 2011 Electrostatic Discharge Immunity Radiated RF E-Field (80 to MHz) Electrical Fast Transient/Burst Immunity Surge Immunity Conducted Disturbance induced by RF fields Immunity Mains Supply Voltage Dips, Short Interruptions PASS PASS PASS PASS PASS PASS Mains Supply Voltage Variations Note1. The margin to the limit is within the uncertainty interval of the measured value. PASS 2.2 Additions, deviations, exclusions from standards No additions, deviations or exclusions have been made from standard. 2.3 Purpose of the test To determine whether the equipment under test fulfills the EMC requirements of the standards stated in section Test Facility The Electromagnetic compatibility measurement facilities are located on at , Daessangnyeong-ri, Chowol-eup, Gwangju-si, Gyeonggi-do, Korea. Description details of test facilities were submitted to the FCC (KR0013) and IC (Registration No: IC3736A-2), accredited by KOLAS (Korea Laboratory Accreditation Scheme, No: 85) and approved by TUV, DNV and KCC (Korea Communications Commission) according to the requirement of ISO

9 Page 8 of Environmental conditions Unless otherwise indicated in the basic standard or test procedure, the tests shall be carried out within the rated supply voltage for the EUT and the following standard atmospheric conditions for measurements and tests, as specified in IEC , Subclause Temperature: 15 C to 35 C. -. Relative humidity: 25 % R.H. to 75 % R.H. -. Air pressure: 86.0 kpa to kpa 2.6 Information of the instruction for class A equipment Class A equipment shall be included the following warning in the instructions for use: WARNING: This is a class A product. In a domestic environment this product may cause radio interference in which case the user may be required to take adequate measures.

10 Page 9 of EUT (Equipment Under Test) 3.1 Identification of the EUT -. Equipment : High Definition Network Camera -. Model Name : LND Brand Name : LG Electronics -. Serial number : N/A -. Manufacturer : LG Electronics Inc. 3.2 Additional information about the EUT The LG Electronics Inc., Model LND5110 (referred to as the EUT in this report) is an High Definition Network Camera. Product specification information described herein was obtained from product data sheet or user s manual. CHASSIS TYPE LIST OF EACH OSC. OR CRY. FREQ.(FREQ.>=1 MHz) ELECTRICAL RATING Plastic & Metal 400 MHz DC 12 V, 490 ma (Adapter : AC V ~, 50/60 Hz) NUMBER OF LAYERS - TEMPERATURE RANGE -40 C ~ 85 C EXTERNAL CONNECTOR Main Input Power, LAN, Audio In/Out, Alarm 3.3 Peripheral equipment Defined as equipment needed for correct operation of the EUT, but not considered as tested: Model Manufacturer Description Connected to LND5110 LG Electronics Inc. High Definition Network Camera (EUT) - XPS 14z DELL Notebook PC EUT DA90PM11 DELL Adapter Notebook PC DA-18C-12 LG AC/DC Adapter EUT 3.4 Mode of operation during the test -. The LAN port on the EUT was connected to the notebook PC and then the EUT was observed the state of video output on the monitor during the testing. -. The power of the EUT was fed from a power adaptor (230 V~, 50 Hz).

11 Page 10 of Criterion description There shall be no damage, malfunction or change of status due to the conditioning. Flickering of an indicator during the conditioning is permissible, providing that there is no residual change in the EUT or any change in outputs, which could be interpreted by associated equipment as a change, The EUT shall meet the acceptance criteria for the functional test, after the conditioning. For Radiated electromagnetic fields and no such flickering of indicators occurs at a field strength of 3 V/m. For components of CCTV systems, where the status is monitored by observing the TV picture, then deterioration of the picture is allowed at 10 V/m, providing: a) there is no permanent damage or change to the EUT (e.g. no corruption of memory or changes to programmable settings etc.); b) at 3 V/m, any deterioration of the picture is so minor that the system could still be used; and c) there is no observable deterioration of the picture at 1 V/m. For Conducted disturbances induced by electromagnetic fields and no such flickering of indicators occurs at U 0 = 3 V. For components of CCTV systems, where the status is monitored by observing the TV picture, then deterioration of the picture is allowed at U 0 = 10 V, providing: a) there is no permanent damage or change to the EUT (e.g. no corruption of memory or changes to programmable settings etc.); b) at U 0 = 3 V, any deterioration of the picture is so minor that the system could still be used; and c) there is no observable deterioration of the picture at U 0 = 1 V. -. Mains supply voltage variations There shall be no damage, malfunction or change of status due to the different supply voltage conditions. 3.6 Cable Description Ports Name Shielded Ferrite Bead Metal Shell Length (m) Connected to DC IN Y N N 1.0 AC/DC Adaptor LAN N N N 3.0 Notebook PC 3.7 Alternative type(s)/model(s) -. None 4. EUT MODIFICATIONS -. None

12 Page 11 of EMISSION TESTS 5.1 MAINS TERMINAL CONTINUOUS DISTURBANCE VOLTAGE Operating environment Temperature : 21 C Relative humidity : 35 % R.H Test set-up The EUT was placed on a non-conductive table, 0.8 m height above the floor. The EUT was connected to adapter and the power of adapter was fed through a 50 Ω/ 50 μh + 5 Ω Artificial Mains Network (AMN). The ground plane was electrically bonded to reference ground system and all power lines were filtered from ambient. The test set-up photos are included in appendix I Measurement uncertainty Mains terminal continuous disturbance voltage, quasi-peak detection Mains terminal continuous disturbance voltage, average detection : ± 2.93 db : ± 2.93 db Measurement uncertainty is calculated in accordance with CISPR The measurement uncertainty is given with a confidence of 95 % with the coverage factor, k = Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - ESHS10 Rohde & Schwarz Test Receiver /007 Jul. 02, 2013 (1Y) - NSLK 8126 Schwarzbeck AMN May 29, 2013 (1Y) - NSLK 8128 Schwarzbeck AMN Jun. 07, 2013 (1Y) /2 EMCO AMN May 20, 2013 (1Y) /2 EMCO AMN May 20, 2013 (1Y) All test equipment used is calibrated on a regular basis.

13 Page 12 of Test data -. Test Date : March 19, Resolution bandwidth : 9 khz -. Frequency range : 0.15 MHz ~ 30 MHz Frequency Line Peak (dbμv) Margin (MHz) Emission level Q.P Limits (db) 0.15 N H N H N H Frequency Line Average (dbμv) Margin (MHz) Emission level Limits (db) Remark : H : Hot Line, N : Neutral Line See next page for an overview sweep performed with peak detector. Tested by: Jong-Jin. Lee / Engineer

14 Page 13 of 52 HOT LINE NEUTRAL LINE

15 Page 14 of CONDUCTED COMMON MODE DISTURBANCE AT TELECOMMUNICATION PORTS Operating environment Temperature : 21 C Relative humidity : 35 % R.H Test set-up The EUT and other support equipment were placed on a non-conductive table, 0.8 m height above the floor. Telecommunication line for the EUT connected to associated equipment through an Impedance Stabilization Network (ISN) which has a common mode termination impedance of 150 Ω to the telecommunication port under test. The ground plane was electrically bonded to the reference ground system and all power lines were filtered from ambient. The test set-up photos are included in appendix II Measurement uncertainty Conducted emission, quasi-peak detection Conducted emission, average detection : ± 2.93 db : ± 2.93 db Measurement uncertainty is calculated in accordance with CISPR The measurement uncertainty is given with a confidence of 95 % with the coverage factor, k = Test equipment used Model Number Manufacturer Description Serial Number Last Cal.(Interval) - ESHS10 Rohde & Schwarz EMI Test Receiver /007 Jul. 02, 2013 (1Y) - NSLK 8126 Schwarzbeck AMN May 29, 2013 (1Y) /2 EMCO AMN May 20, 2013 (1Y) - ENY41 Rohde & Schwarz ISN May 30, 2013 (1Y) All test equipment used is calibrated on a regular basis.

16 Page 15 of Test data -. Test Date : March 19, Resolution bandwidth : 9 khz -. Frequency range : 0.15 MHz ~ 30 MHz -.Remark : ISN 10 Mbps Frequency Port Peak (dbμv) Margin Average (dbμv) Margin Emission Detector Emission (MHz) Q.P Limits (db) Limits (db) Level Mode Level 0.15 Four P Four P Four P Four P Four P Four P Remark : Four : Two Unscreened Balance Pair, P : Peak detect See next page for an overview sweep performed with peak detector. Tested by: Jong-Jin. Lee / Engineer

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18 Page 17 of 52 -.Remark : ISN 100 Mbps Frequency Port Peak (dbμv) Margin Average (dbμv) Margin Emission Detector Emission (MHz) Q.P Limits (db) Limits (db) Level Mode Level 0.57 Four P Four P Four P Four P Four P Four P Remark : Four : Two Unscreened Balance Pair, P : Peak detect See next page for an overview sweep performed with peak detector. Tested by: Jong-Jin. Lee / Engineer

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20 Page 19 of RADIATED ELECTROMAGNETIC FIELD Operating environment Temperature : 23 C Relative humidity : 38 % R.H Test set-up The radiated emissions measurements were on the 10 m, semi anechoic chamber. The EUT and all local support equipment were placed on a non-conductive turntable approximately 0.8 m above the ground plane. The frequency spectrum from 30 MHz to MHz was scanned and emission levels maximized at each frequency recorded. The system was rotated 360, and the antenna was varied in height between 1.0 m and 4.0 m in order to determine the maximum emission levels. This procedure was performed for both horizontal and vertical polarization of the receiving antenna. The test set-up photos are included in appendix III Measurement uncertainty Radiated emission electric field intensity, 30 MHz ~ 300 MHz : ± 4.43 db Radiated emission electric field intensity, 300 MHz ~ MHz : ± 3.80 Db Radiated emission electric field intensity, 1 GHz ~ 6 GHz : ± 4.20 db Measurement uncertainty is calculated in accordance with CISPR The measurement uncertainty is given with a confidence of 95 % with the coverage factor, k = Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - ESCI Rohde & Schwarz EMI Test Receiver Oct. 14, 2013 (1Y) - ESU Rohde & Schwarz EMI Test Receiver May 27, 2013(1Y) - 310N Sonoma Instrument Amplifier May 21, 2013 (1Y) - 310N Sonoma Instrument Amplifier May 21, 2013 (1Y) - VULB9163 Schwarzbeck TRILOG Broadband Antenna Mar. 27, 2012(2Y) - VULB9163 Schwarzbeck TRILOG Broadband Antenna Apr. 24, 2012 (2Y) - BBHA9120D Schwarzbeck Horn Antenna BBHA9120D295 Sep. 05, 2013 (2Y) - SCU 18 Rohde & Schwarz Signal Conditioning Unit Nov. 07, 2013 (1Y) - CO2000 Innco System Controller 619/ /L N/A - DT3000 Innco System Turn Table N/A - MA4000-EP Innco System Antenna Master N/A - MA4000-EP Innco System Antenna Master N/A All test equipment used is calibrated on a regular basis.

21 Page 20 of Test data -. Test Date : March 19, Resolution bandwidth : 120 khz -. Frequency range : 30 MHz ~ MHz -. Measurement distance : 10 m Graphical representation of Radiated Disturbance Tabulated Results for Radiated Disturbance Remark: Margin (db) = Limit Result and Result = Reading Peak + Antenna Factor + Loss Gain Loss and Gain in above table means Cable Loss and Pre-amplifier gain.

22 Page 21 of Resolution bandwidth : 1 MHz -. Frequency range : MHz ~ MHz -. Measurement distance : 3 m Detector Mode: Peak Graphical representation of Radiated Disturbance Tabulated Results for Radiated Disturbance Remark: Margin (db) = Limit Result and Result = Reading Peak + Antenna Factor + Loss Gain Loss and Gain in above table means Cable Loss and Pre-amplifier gain.

23 Page 22 of 52 Detector Mode: Average Graphical representation of Radiated Disturbance Tabulated Results for Radiated Disturbance Remark: Margin (db) = Limit Result and Result = Reading Average + Antenna Factor + Loss Gain Loss and Gain in above table means Cable Loss and Pre-amplifier gain. Tested by: Jong-Jin. Lee / Engineer

24 Page 23 of HARMONICS CURRENT EMISSIONS Operating environment Temperature : 24 C Relative humidity : 34 % R.H Test set-up Harmonics of the fundamental current were measured up to 2 khz using a universal power analyzer. The measurements were carried out under steady conditions and using average. Before making measurements, it is necessary for the EUT to decide which class the EUT fulfills into; A, B, C or D. The test set-up photo is included in appendix IV Measurement uncertainty The uncertainty of our equipments for harmonic measurement is ± 0.2 %. Measurement uncertainty is calculated in accordance with EN The measurement uncertainty is given with a confidence of 95 % with the coverage factor, k = Test equipment used Model Number Manufacturer Description Serial Number Last Cal.(Interval) - PM6000 Voltech Universal Power Analyzer May 28, 2013 (1Y) Pacific Power Magnetics Module 1512 Jun. 24, 2013 (1Y) - UPC Pacific Power Waveform Generator 0002 Apr. 15, 2013 (1Y) - 360AMXT/UPC-32 Pacific Power AC Power Source 0222 Jun. 24, 2013 (1Y) - 360AMXT/UPC-32 Pacific Power AC Power Source 1631 Jun. 24, 2013 (1Y) All test equipments used are calibrated on a regular basis Test data -. Test Date : March 22, Class : A -. Remark : The input power of the EUT is lower than 75 W. According to the cause 7 in EN , no limit applies for the EUT. See next page for Harmonics on AC Mains and DC test data. Tested by: Jong-Jin. Lee / Engineer

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26 Page 25 of VOLTAGE CHANGES, VOLTAGE FLUCTUATIONS AND FLICKER Operating environment Temperature : 24 C Relative humidity : 34 % R.H Test set-up The voltage changes at the supply terminals were measured across the complex reference impedance Z = (0.4 + j0.25) Ω. The short-term flicker values are measured during a time interval of 10 min. Dc = relative voltage change between two steady states and Dmax = maximum single voltage change, are measured over the reference impedance. The test set-up photo is included in appendix IV Measurement uncertainty The uncertainty of our equipment for flicker measurement is ± 5 %. Measurement uncertainty is calculated in accordance with EN The measurement uncertainty is given with a confidence of 95 % with the coverage factor, k = Test equipment used Model Number Manufacturer Description Serial Number Last Cal.(Interval) - PM6000 Voltech Universal Power Analyzer May 28, 2013 (1Y) - IEC Voltech Reference Impedance Network IG 203/3401 May 28, 2013 (1Y) - IEC Voltech Reference Impedance Network IG 119/3228 May 28, 2013 (1Y) - IEC 555 Voltech Reference Impedance Network IB13/9886 May 28, 2013 (1Y) Pacific Power Magnetics Module 0283 Jun. 24, 2013 (1Y) Pacific Power Magnetics Module 1512 Jun. 24, 2013 (1Y) - UPC Pacific Power Waveform Generator 0002 Apr. 15, 2013 (1Y) - 360AMXT/UPC-32 Pacific Power AC Power Source 0222 Jun. 24, 2013 (1Y) - 360AMXT/UPC-32 Pacific Power AC Power Source 1631 Jun. 24, 2013 (1Y) All test equipments used are calibrated on a regular basis Test data -. Test Date : March 22, Test Result : Pass -. Remark : See next page for Voltage Fluctuations on AC mains test data. Tested by: Jong-Jin, Lee / Engineer

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29 Page 28 of IMMUNITY TESTS 6.1 ELECTROSTATIC DISCHARGE IMMUNITY TEST The measurement of the Immunity Against Electrostatic Discharge was performed in a shield room. Date: March 21, Operating environment Ambient temperature Relative humidity Atmospheric pressure 22 [ C] 34 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-conductive support 0.1 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix V Measurement uncertainty It has been demonstrated that the ESD generator meets the specified requirements in the standard with at least a 95 % confidence Test equipment used Model Number Manufacturer Description Serial Number Last Cal.(Interval) - ESS-2002EX NOISEKEN ESD Simulator ESS May 28, 2013(1Y) All test equipment used is calibrated on a regular basis.

30 Page 29 of Test data Test levels Number of discharges Polarity EUT-position : Contact discharge 6 kv, Air discharge 2 / 4 / 8 kv : 10 at all test points. : Positive / Negative : Floor Standing (Wall and Ceiling mounted Equipment) Required performance criterion : See section 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The test points of the EUT are each location on the surface touchable by hand (see test point in next page) and VCP -0.1 m from the four sides of the EUT. The results of selected test points of the EUT are listed in below table. Point Test level [± kv] Pass / Fail Description Enclosure 2 / 4 / 8 (Air) Pass There was no deviation from normal operating condition VCP 6 (Indirect) Pass during and after test. Tested by: Jong-Jin. Lee / Engineer

31 Page 30 of ESD Test Point & Test Result ESD Point Discharge voltage[± kv] Results (1) Enclosure 2 / 4 / 8 (Indirect) Pass VCP 6 (Indirect) Pass (1) (1)

32 Page 31 of RADIATED RF-ELECTROMAGNETIC FIELD IMMUNITY TEST The measurement of the Immunity Against Radiated RF-Electromagnetic Field was performed in an anechoic chamber. Date: April 01, Operating environment Ambient temperature Relative humidity Atmospheric pressure 21 [ C] 40 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-metallic support 0.8 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix VI Measurement uncertainty The measurement uncertainty is ± 0.23 V/m for 1 V/m, ± 0.70 V/m for 3 V/m and ± 2.30 V/m for 10 V/m. Measurement uncertainty is calculated in accordance with UKAS Lab34. The measurement uncertainty is given with a confidence of 95 %. The measurement uncertainty is calculated as the uncertainty of the electric field intensity detected by the probe(s). The uncertainty calculations exclude influence of phenomena like inhomogeneity of the electric field intensity Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - SML 03 Rohde & Schwarz Signal Generator May 21, 2013 (1Y) - NRVD Rohde & Schwarz Power Meter May 21, 2013 (1Y) - HL046 Rohde & Schwarz Log Periodic Antenna Jan. 28, 2014 (1Y) - AT4002A Amplifier Research Microwave Horn Antenna N/A Jan. 28, 2014 (1Y) - 120S1G4M1 Amplifier Research Power Amplifier Feb. 22, 2013 (1Y) - 500W1000A Amplifier Research Power Amplifier Jan. 28, 2014 (1Y) - DC6180A Amplifier Research Directional Coupler Jan. 28, 2014 (1Y) - DC7144M1 Amplifier Research Directional Coupler Jan. 28, 2014 (1Y) - TA-EMS Rohde & Schwarz System Communication Jan. 28, 2014 (1Y) All test equipment used is calibrated on a regular basis.

33 Page 32 of Test data Test level : 1 V/m, 3 V/m, 10 V/m (AM 80 %, 1 khz, sine wave / PM 50%, 1 Hz (0.5 s ON: 0.5 s OFF)) Frequency range : 80 MHz ~ MHz Frequency step : 1 % Dwell time at each frequency : 3 s Exposed side : Front / Back / Left / Right Distance of antenna EUT : 3 m EUT-position : Table top Required performance criterion : See section 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Freq. Range [MHz] Exposed side Pass/ Fail Description 80 ~ Pass Front / Back / Left / Right ~ Pass There was no deviation from normal operating condition during and after test. Tested by: Jong-Jin. Lee / Engineer

34 Page 33 of ELECTRICAL FAST TRANSIENT/BURST IMMUNITY TEST The measurement of the Immunity Fast Transient/Burst was performed in a shield room. Date: March 24, Operating environment Ambient temperature Relative humidity Atmospheric pressure 20 [ C] 33 [% R.H.] [kpa] Test set-up The EUT was placed on non-metallic support 0.1 m above a reference ground plane (RGP) and was put into operation according to the specified operating mode. If the manufacturer provides a non-detachable supply cable more than 0.5 m long with the equipment, the excess length of this cable shall be folded to avoid a flat coil and situated at a distance of 0.1 m above the ground reference plane. The test set-up photo is included in appendix VII Measurement uncertainty It has been demonstrated that the burst generator meets the specified requirements in the standard with at least a 95 % confidence Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - UCS 500 M4 S1 EM Test Ultra Compact Generator May 30, 2013(1Y) - CNI A EM Test Combined Coupling Decoupling Net Jul. 16, 2013(1Y) - H.F.K EM Test Capacitive Coupling Clamp N/A May 28, 2013(1Y) - AC2716 EM Test Power Source May 30, 2013(1Y) All test equipment used is calibrated on a regular basis.

35 Page 34 of Test data Test level : 2 kv (AC-mains supply), 1 kv (Other supply / Signal lines > 3 m) Burst frequency Rise time/hold time Polarity Coupling time Coupling methods : 100 khz : 5/50 ns : Positive / Negative : 72 s : AC mains - Coupling/decoupling network (CDN) Signal lines - Capacitive Coupling Clamp (CCC) Lines for test : AC Mains of the Adaptor Signal lines of the EUT Type of line & length : Unshielded, 0.5 m (AC Mains) Unshielded, 3.0 m (RJ-45 - Signal line) EUT-position : Table top Required performance criterion : See section 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Line for test Coupling Method Test level [± kv] Pass/ Fail Description AC-mains (L/N) CDN 2 Pass AC-mains (L+N) CDN 2 Pass Signal line CCC 1 Pass There was no deviation from normal operating condition during and after test. Tested by: Jong-Jin. Lee / Engineer

36 Page 35 of SURGE IMMUNITY TEST The measurement of the Immunity Surge Transients was performed in a shield room. Date: March 24, Operating environment Ambient temperature Relative humidity Atmospheric pressure 20 [ C] 33 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-metallic support 0.8 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix VIII Measurement uncertainty It has been demonstrated that the surge generator meets the specified requirements in the standard with at least a 95 % confidence Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - UCS 500 M4 S1 EM Test Ultra Compact Generator May 30, 2013(1Y) - CNI A EM Test Combined Coupling Decoupling Net Jul. 16, 2013(1Y) - CNV508 EM Test Coupling Network N/A N/A - AC2716 EM Test Power Source May 30, 2013(1Y) - HV Gun SQS HV Gun N/A N/A All test equipments used is calibrated on a regular basis.

37 Page 36 of Test data Test level : 0.5 kv, 1 kv (Common mode of AC mains) 0.5 kv, 1 kv (Signal lines > 30 m) Number of surge Polarity : 5 surges/ polarity : Positive / Negative Angle : 0 / 90 / 180 / 270 Repetition rate Coupling methods : 60 s : AC mains - Coupling/decoupling network (CDN) Signal lines Coupling/decoupling network (CDN) Lines for test : AC Mains of the Adapter Signal line of the EUT Type of line & length : Unshielded, 0.5 m (AC Mains) Shielded, 30.0 m (Signal cable - RJ-45) EUT-position : Table top Required performance criterion: See Item 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Line for test Coupling Method Test level [± kv] Pass/ Fail Description AC-mains (L+N) CDN 0.5 / 1 Pass There was no deviation from normal operating Signal lines CDN 0.5 / 1 Pass condition during and after test Tested by: Jong-Jin. Lee / Engineer

38 Page 37 of CONDUCTED RF FIELDS IMMUNITY TEST The measurement of the Immunity Against Conducted RF Field was performed in the anechoic chamber. Date: March 24, Operating environment Ambient temperature Relative humidity Atmospheric pressure 20 [ C] 33 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-metallic support 0.1 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix IX Measurement uncertainty The measurement uncertainty is ± 0.17 V for 1 V, ± 0.50 V for 3 V and ± 1.70 V for 10 V. Measurement uncertainty is calculated in accordance with EN Annex G. The measurement uncertainty is given with a confidence of 95 % Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - CWS 500 N1 EM Test Continuous Wave Generator P Aug. 27, 2013 (1Y) - CDN-M2/M3 EM Test Coupling Decoupling Net P Aug. 27, 2013 (1Y) - EM 101 Fisher Custom Injection Clamp May 06, 2013 (1Y) A-FFN-06 Bird Technologies Group Attenuator 751 May 21, 2013 (1Y) All test equipments used is calibrated on a regular basis.

39 Page 38 of Test data Test level : 1 V, 3 V, 10 V (AM 80 %, 1 khz sine wave / PM 50 %, 1 Hz (0.5 s ON: 0.5 s OFF)) Frequency range : 0.15 MHz ~ 100 MHz Frequency step : 1 % Dwell time at each frequency Coupling methods : 3 s : AC mains - Coupling/decoupling network (CDN) Various input/output ports >3 m - EM clamp Lines for test : Power line of the Adaptor Signal line of the EUT Type of line & length : Unshielded, 0.3 m (AC Mains) Shielded, 3.0 m (Signal cable - RJ-45) EUT-position : Table top Required performance criterion: See Item 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Lines for test Freq. Range [MHz] Test level [V] Pass/ Fail Coupling Method Description AC mains 0.15 ~ / 3 / 10 Pass CDN Signal lines 0.15 ~ / 3 / 10 Pass EM clamp There was no deviation from normal operating condition during and after test. Tested by: Jong-Jin. Lee / Engineer

40 Page 39 of MAINS SUPPLY VOLTAGE DIPS AND SHORT INTERRUPTIONS IMMUNITY TEST The measurements of the Immunity Mains Supply Voltage Dips and Interruptions were performed in a shield room. Date: March 24, Operating environment Ambient temperature Relative humidity Atmospheric pressure 20 [ C] 33 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-metallic support 0.8 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix X Measurement uncertainty It has been demonstrated that the voltage dips and interruptions generator meets the specified requirements in the standard with at least a 95 % confidence Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - UCS 500 M4 S1 EM Test Ultra Compact Generator May 30, 2013(1Y) - AC2716 EM Test Power Source May 30, 2013(1Y) All test equipments used is calibrated on a regular basis.

41 Page 40 of Test data Nominal Mains Voltage (V NOM ) : 230 V~, 50 Hz Level of Reduction (dip) : 200 ms at 60 % of V NOM, 500 ms at 30 % of V NOM, ms at 20 % of V NOM No. of dips/interruption : 3 Interval Type of line & length EUT-position : 10 s : AC mains of the adapter Unshielded, 1.0 m : Table top Required performance criterion : See section 3.5 of this report Test result : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Test Reduction (% of V NOM ) Duration in time (ms) Pass / Fail Description Voltage dips Pass Pass Pass There was no deviation from normal operating condition during and after test. Voltage Interruptions N/A (See Note) The power of EUT is off during the test. After the test, EUT is getting back to normal operation. Note.: It fully recorded using ancillary Power source equipment to content with Manufacturer`s set up manual. Tested by: Jong-Jin. Lee / Engineer

42 Page 41 of MAINS SUPPLY VOLTAGE VARIATIONS IMMUNITY TEST The measurement of the Immunity Mains Supply Voltage Variations was performed in a shield room. Date: March 24, Operating environment Ambient temperature Relative humidity Atmospheric pressure 20 [ C] 33 [% R.H.] [kpa] Test set-up The EUT and all local support equipment were placed on a non-metallic support 0.8 m above a reference ground plane (RGP) and were put into operation according to the specified operating mode. The test set-up photo is included in appendix XI Measurement uncertainty It has been demonstrated that the Mains Supply Voltage Variations generator meets the specified requirements in the standard with at least a 95 % confidence Test equipment used Model Number Manufacturer Description Serial Number Last Cal. (Interval) - UCS 500 M4 S1 EM Test Ultra Compact Generator May 30, 2013(1Y) - AC2716 EM Test Power Source May 30, 2013(1Y) All test equipments used is calibrated on a regular basis.

43 Page 42 of Test data Nominal Mains Voltage (V NOM ) : 230 V~ Voltage variations : V NOM + 10 %, V NOM 15 % Interval Type of line & length EUT-position Required performance criterion Test result : 10 s : AC mains of the Adaptor Unshielded, 1.0 m : Table top : See section 3.5 of this report : Pass The EUT met the acceptance criteria for the functional test, after the conditioning. Monitoring of the EUT : Observed the state of video output of the EUT on screen of notebook pc via LAN. The results of test are listed in below table. Test Voltage (% of V NOM ) Pass / Fail Description Voltage Variations +10 Pass There was no deviation from normal operating condition -15 Pass during and after test. Tested by: Jong-Jin. Lee / Engineer

44 Page 43 of 52 APPENDIX I - TEST SET-UP PHOTOS: (Mains Terminal Continuous Disturbance Volta ge)

45 Page 44 of 52 APPENDIX II - TEST SET-UP PHOTOS: (Conducted Common Mode Disturbance at Telecommunication Ports)

46 Page 45 of 52 APPENDIX III - TEST SET-UP PHOTOS: (Radiated Electromagnetic Field) 30 MHz ~ MHz

47 Page 46 of MHz ~ MHz

48 Page 47 of 52 APPENDIX IV - TEST SET-UP PHOTO: (Harmonics & Voltage Fluctuations on AC Ma ins)

49 Page 48 of 52 APPENDIX V TEST SET-UP PHOTO: (ESD)

50 Page 49 of 52 APPENDIX VI TEST SET-UP PHOTO: (RF E- FIELD)

51 Page 50 of 52 APPENDIX VII - TEST SET-UP PHOTO: (EFT/BURST)

52 Page 51 of 52 APPENDIX VIII - TEST SET-UP PHOTO: (SURGE)

53 Page 52 of 52 APPENDIX IX - TEST SET-UP PHOTO: (C.S)

54 Page 53 of 52 APPENDIX XI - TEST SET-UP PHOTO: (MAINS SUPPLY VOLTAGE DIPS, SHORT INTERRUPTIONS)

55 Page 54 of 52 APPENDIX XI - TEST SET-UP PHOTO: (Power Supply Short Term Variation)

56 Page 55 of 52 APPENDIX XII - PHOTOGRAPHS OF THE PRODUCT

57 Page 56 of 52

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