SK Tech Co., Ltd.

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2 REVISION HISTORY Rev. # Changes of Content Section Affected Reviewed by Date 0 Original Release All S.H.Yoon Nov.18, 2011 Page 2 of 58

3 SUMMARY OF TEST RESULT EMISSION STANDARD ITEM CLASS/SEVERITY RESULT EN 55022:2006+A1:2007 EN : 2006+A1:2009+A2:2009 Conducted Emissions (Main Port) Conducted Emissions (Telecommunication Port) Radiated Emissions Meets Class A limits and minimum passing margin is db at MHz. N/A Meets Class A limits and minimum passing margin is db at MHz. N/A Harmonic Current Emissions Meets Class A limits. EN :2008 Voltage Fluctuations & Flicker Meets the requirements. IMMUNITY STANDARD ITEM CLASS/SEVERITY RESULT EN :2009 EN : 2006+A1:2008+A2:2010 EN : 2004+A1:2010 EN :2006 EN :2009 EN :2004 Electrostatic Discharge(ESD) Radiated Immunity EFT on AC and other supply/signal Surge Immunity on AC and other supply/signal Injected Current on AC & Supply/signal Voltage Dips & Interruptions on AC & Mains supply voltage variations ± 2; 4 & 6 kv Contact ± 2; 4 & 8 kv Air 80 MHz to 2000 MHz 1 V/m, 3 V/m, 10 V/m Amplitude modulation 80 %, 1 khz, sinusoidal Pulse modulation 1 Hz (0.5 s ON : 0.5 s OFF) ± 0.5 kv ; 1 kv & 2 kv: AC ± 0.25 kv ; 0.5 kv & 1.0 kv: other supply/signal ± 0.5 kv & 1.0 kv: line-to-line ± 0.5 kv ; 1 kv & 2.0 kv: line-to-ground ± 0.5 & 1.0 kv: other supply/signal 0.15 MHz to 100 MHz 1 V, 3 V,10 V Amplitude modulation 80 %, 1 khz, sinusoidal Pulse modulation 1 Hz (0.5 s ON : 0.5 s OFF) 30% reduction, 0.5,1,5,10 periods 60% reduction, 0.5,1,5,10 periods 100% reduction, 0.5,1,5 periods Unom +10%, Unom -15% Page 3 of 58

4 Table of Contents ⅰ Cover Page 1 ⅱ Revision History 2 ⅲ Summary of Test Results 3 Ⅳ Table of Contents 4 Ⅴ Buyer Model/Multi Model No General 6 2. Facilities and Accreditations Facilities Accreditations Test and Measurement Instruments Used 7 3. EUT Description EUT Operating Condition EUT Operating Modes Ancillary Equipment Interconnection and I/O cable Configuration Uncertainty Test Results EMISSION Harmonic current Voltage fluctuations and flicker Conducted Disturbance at mains terminals Radiated Disturbance Test Results IMMUNITY Electrostatic discharge Radiated radio-frequency electromagnetic field Electrical fast transient/burst Surge Conducted disturbances, induced by radio-frequency fields Mains supply voltage dips, short interruptions Mains supply voltage variations 38 Appendices A1 Photographs of the test set-up A2 EUT Photographs Page 4 of 58

5 Buyer Model/Multi Model No. Model Frequency Voltage FlatV-M12 NTSC/PAL DC12V±10% FlatV-M120 NTSC/PAL DC12V±10% FlatV-M121 NTSC/PAL DC12V±10% FlatV-M122 NTSC/PAL DC12V±10% FlatV-M123 NTSC/PAL DC12V±10% FlatV-M124 NTSC/PAL DC12V±10% FlatV-M125 NTSC/PAL DC12V±10% FlatP-M12 NTSC/PAL DC12V±10% FlatP-M120 NTSC/PAL DC12V±10% FlatP-M121 NTSC/PAL DC12V±10% FlatP-M122 NTSC/PAL DC12V±10% FlatP-M123 NTSC/PAL DC12V±10% FlatP-M124 NTSC/PAL DC12V±10% FlatP-M125 NTSC/PAL DC12V±10% HDVDF202 NTSC/PAL DC12V±10% BID-HDW-DFLT-F28 NTSC/PAL DC12V±10% NMCVFDFHDOLI NTSC/PAL DC12V±10% HDMDF202 NTSC/PAL DC12V±10% Page 5 of 58

6 1. General The tests listed in this report have been performed and the results recorded by in accordance with the procedures stated in each test requirement and specification. As a result, the subject product has been verified to comply with each test specification. The test results relate only to the items tested. We attest to the accuracy of data. All measurements reported herein were performed by SK TECH Co., Ltd. and were made under Technical Manager s supervision. We assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. 2. Facilities and Accreditations 2.1 Facilities All of the measurements described in this report were performed at SK Tech Co., Ltd located in 820-2, Wolmoon Ri, Wabu-Up, Namyangju-Si, Kyunggi-Do, Korea. Site I: 820-2, Wolmoon Ri, Wabu-Up, Namyangju-Si, Kyunggi-Do, Korea Site II: 688-8, Wolmoon Ri, Wabu-Up, Namyangju-Si, Kyunggi-Do, Korea The test site is constructed in conformance with the requirements of ANSI C63.4 and CISPR Publication 22. It complies with the Normalized Site Attenuation requirements given in ANSI/IEEE C63.4. The measuring equipment conforms to CISPR 16 requirements for Electromagnetic Noise and Field Strength Instrumentation. 2.2 Accreditations Our testing laboratories are accredited by the following accreditation bodies in accordance with ISO/IEC for general requirements for the competence of testing and calibration laboratories. Korea : KOLAS No.191 Germany : DAKKS DAT-P-076/97-02 Designation number: KR0007 The laboratories have been also notified to FCC by RRA as a Conformity Assessment Body, and designated to perform compliance testing on equipment subject to Declaration of Conformity (DOC) and Certification under Parts 15 and 18 of the FCC Rules. Page 6 of 58

7 2.3 Test and Measurement Instruments Used Conducted Disturbance Name of Equipment Type S/N Calibrated until EMI Receiver ESHS / Artificial Mains Network ESH2-Z / Artificial Mains Network ESH3-Z / Impedance Stabilization Network ISN T Radiated Disturbance Name of Equipment Type S/N Calibrated until EMI Receiver ESVS / Amplifier 8447F 3113A Trilog-Broadband Antenna VULB Antenna Turntable Driver X518 N/A Antenna Turntable controller X519 N/A EMI TEST RECEIVER ESPI Log-Periodic Antenna LP960-2 A Pre-Amplifier MLA-100M18- B Harmonic Current / Voltage Fluctuations and Flicker Name of Equipment Type S/N Calibrated until Reference Impedance Network IMP555 IG147/ Universal Power Analyzer PM Electrostatic discharge Name of Equipment Type S/N Calibrated until ESD Equipment ESS-2000AX ESS Page 7 of 58

8 Radiated radio-frequency electromagnetic field Name of Equipment Type S/N Calibrated until Wideband Amplifier CMX N/A Wideband Amplifier SMCC N/A Wideband Amplifier M N/A Signal Generator SMY Power Meter NRVD V Insertion Unit URV5-Z V Insertion Unit URV5-Z High Gain Log Periodic Antenna HL N/A Electric Fielded Probe 2244/90.20 AR MXG Analog Signal Generator N5181A MY USB Power Sensor U2004A MY USB Power Sensor U2004A MY RF Relay Matrix RFM-S3A3CIL N/A N/A RF Power Amplifier(1G~3G) FLG-50C 1002 N/A RF Power Amplifier FLH-200/100 N/A N/A RF Power Amplifier(2G~6G) 5192R 1005 N/A Interlock Unit N/A N/A N/A Broad-Band Horn Antenna (1G~18G) BBHA 9120D 9120D-816 N/A Isotropic Electric Fielded Probe HI Electrical fast transient/burst Name of Equipment Type S/N Calibrated until Ultra Compact Simulator UCS 500 M6B V Motor Variac MV 2616 V N/A EFT/B Simulator 5555 S Capacitive Coupling Clamp HFK Page 8 of 58

9 Surge Name of Equipment Type S/N Calibrated until I/O Signal Line Coupler/Decoupler CM-I/OCD N/A Ultra Compact Simulator UCS 500 M6B V Motor Variac MV 2616 V N/A Surge Combination Wave E501A Surge Coupler/Decoupler E Conducted disturbances, induced by radio-frequency fields Name of Equipment Type S/N Calibrated until CDN TSCDN-M3-25A CDN CDN S1/ CDN CDN M Attenuator (6dB, 75W) ATT6/ N/A Conducted Immunity Test System CIT-10/75 102C Ω/50Ω adaptor N/A N/A N/A CDN TSCDN-T EM Clamp KT Power Frequency Magnetic Field Name of Equipment Type S/N Calibrated until Magnetic Antenna MS N/A Motor Variac MV 2616 V N/A Voltage dips, Mains supply voltage variations Name of Equipment Type S/N Calibrated until Ultra Compact Simulator UCS 500 M6B V Motor Variac MV 2616 V N/A Voltage Swell/Dip/Interrupt Source EP N/A Page 9 of 58

10 3. EUT Description The EUT is a MEGA PIXEL CAMERA. The following information has been supplied by the applicant. Page 10 of 58

11 Page 11 of 58

12 4. EUT Operating Conditions During testing, the EUT was powered with, 230 Vac / 50 Hz. AC Adapter Input AC V~, 50/60 Hz 1.0A, Output DC 12V 3.0A, The worst case test configuration and mode of operation was used all testing. Unless otherwise noted elsewhere in this report, this selection will apply to all testing. 4.1 EUT Operation Modes The EUT was connected to the Color Video Monitor and MULTI-FORMAT LCD Monitor. The EUT s Image was displayed on the Color Video Monitor and MULTI-FORMAT LCD Monitor. (Internal Clock Frequency: 27 MHz) 4.2 Ancillary Equipment The EUT was tested while connected to the following representative configuration of ancillary equipment necessary to exercise the ports during tests. # Equipment Manufacturer Model No. Serial No. 1 MULTI-FORMAT LCD Monitor BON ELECTRONICS INC BLM-170 B012M066 2 Color Video Monitor HITRON SYSTEMS INC. CVM1054X M AC Adapter (DC 12V) Suzhou Li shin Electronics Co.,Ltd. LSE0107A1236 A Interconnection and I/O cables # START END Cable Name I/O Port Name I/O Port Length(m) Shielded/ Unshielded 1 EUT Power AC Adapter 1.5 Unshielded 2 AC Adapter AC Line 1.6 Unshielded 3 Video Out Color Video Monitor 3.0 Unshielded 4 HD SDI Out MULTI-FORMAT LCD Monitor 3.0 Unshielded 5 RS 485(+,-) D/N IN, M/D Out Unshielded TRIGGER 6 Color Video Monitor Power AC Line 1.6 Unshielded 7 MULTI-FORMAT LCD Monitor Power AC Line 1.6 Unshielded Page 12 of 58

13 4.4 Test Configuration For the actual test configuration, please refer to the related item-photographs of the test setup. AC 230V / 50 Hz TRIGGER, RS 485(+,-) D/N IN, M/D Out Video Out AC Adapter HD SDI Out Color Video Monitor EUT (MEGA PIXEL CAMERA) MULTI-FORMAT LCD Monitor [ System Block Diagram of Test Configuration ] Page 13 of 58

14 4.5 Uncertainty 1) Radiated disturbances from 30 MHz to 1000 MHz at a distance of 3 m and 10 m Expanded Uncertainty U = k * Uc(xi) = 2 * 2.10 = 4.20 db The coverage factor k =2 yields approximately a 95% level of confidence. 2) Conducted disturbance from 150 KHz to 30 MHz using a 50 Ω/50 μh AMN Expanded uncertainty U= k * Uc(xi) = 2 * 1.57 = 3.14dB The coverage factor k =2 yields approximately a 95% level of confidence. When the measured emission is positioned within the range of the uncertainty of measurement from the emission limit, the uncertainty of measurement shall be concerned as follow. Compliance or non-compliance with a disturbance limit shall be determined in the following manner. If Ulab is less than or equal to Ucispr - Compliance is deemed to occur if no measured disturbance exceeds the disturbance limit; - Non-compliance is deemed to occur if any measured disturbance exceeds the disturbance limit. If Ulab is greater than Ucispr - Compliance is deemed to occur if no measured disturbance, increased by (Ulab - Ucispr), exceeds the disturbance limit; - Non-compliance is deemed to occur if any measured disturbance, increased by (Ulab - Ucispr), exceeds the disturbance limit. If the measurement value is lower or equal to the limit, the EUT is considered to pass the test. Page 14 of 58

15 3) EMS UNCERTAINTY All parameters are within the tolerances required by the standard, reduced by the tolerances required on the calibration certificate, so this laboratory has confidence that the EMS Test equipment is in compliance with the standard with X% confidence level. Tolerance required by the standard Reduced by the uncertainty reported on the calibration certificate. (about X% confidence level) ESD (EN ): 95% (k=2, confidence level is 95%) Radiated immunity (EN ): 2.64dB (k=1.65, confidence level is 90%) 3.16dB (k=2, confidence level is 95%) EFT (EN ): 95% (k=2, confidence level is 95%) SURGE (EN ): 95% (k=2, confidence level is 95%) except following parameters - L1-L2 (Open Circuit, 1.2 μs/50 μs, 2Ω) positive; 500 V (k=1.29, confidence level is 80 %) - L1-L2 (Open Circuit, 1.2 μs/50 μs, 2Ω) negative; 1 kv&2 kv (k=1.44, confidence level is 85 %) - L1-PE (Open Circuit, 1.2 μs/50 μs, 2Ω) positive; 1 kv (k=1.44, confidence level is 85 %) Conducted immunity (EN ): 1.34 db (k=1.65, confidence level is 90%) 1.67 db (k=2, confidence level is 95%) Voltage dip (EN ): 95% (k=2, confidence level is 95%) Page 15 of 58

16 5. Test Results EMISSION 5.1 Harmonic current Result Test Environment Temperature 22 Humidity 48 % R.H. Test Procedure The harmonics on AC Mains in the frequency from 0 to 2 khz were measured in accordance to EN :2006+A1:2009+A2:2009. The measurement was conducted with an automatic current harmonic analyzing system. This equipment is in compliance with the requirements of EN :2006+A1:2009+A2:2009. The Measurement showed that the equipment is classified into class A of EN :2006+A1:2009+A2:2009. The harmonic test data is shown on the next page. Page 16 of 58

17 Harmonic Test Data Page 17 of 58

18 5.2 Voltage fluctuations and flicker Result Test Environment Temperature 23 Humidity 48 % R.H. Test Procedure The voltage fluctuations on AC mains in the frequency range from 0 to 2 khz were measured in accordance to EN :2008. The measurement was conducted with an automatic current harmonic analyzing system. This equipment is in compliance with the requirements of EN :2008. The Voltage fluctuations test data is shown on the next page. Page 18 of 58

19 Flicker meter Test Table Page 19 of 58

20 5.3 Conducted Disturbance at mains terminals Result Test Environment Temperature 24 Humidity 52 % R.H. Test Procedure The continuous disturbance voltage of AC Mains in the frequency from 0.15 to 30 MHz was measured in accordance to EN55022:2006+A1:2007 Class A. The measurement setup was made according to EN55022:2006+A1:2007 Class A in a shielded room. The EUT was placed on a non-conductive table at least 80 cm (mains terminals) or 40 cm (telecommunication ports) above the ground plane. A grounded vertical reference plane was positioned in a distance of 40 cm from the EUT. The distance from the EUT to other metal surfaces was at least 0.8 m. The EUT was only earthen by its power cord through the line impedance stabilizing network. The power cord has been bundled to a length of 1.0 m. The used line impedance stabilizing network (LISN) has a rated impedance of 50 Ω/50 μh as specified in CISPR 16. The test receiver with Quasi Peak and Average detector complies with CISPR 16. If the result of the measurement with The Quasi Peak detector is below the average limit, the measurement with average detector has been omitted. Page 20 of 58

21 Conducted Disturbance Test data <Quasi-Peak> Frequency Reading C/F C/L Actual Limit Margin Line (MHz) (dbμv) (db) (db) (dbμv) (dbμv) (db) N N N L N N <Average> Frequency Reading C/F C/L Actual Limit Margin Line (MHz) (dbμv) (db) (db) (dbμv) (dbμv) (db) N N L N L N NOTE * C/F = Correction Factor * C/L = Cable Loss * LINE: L = Line-PE, N = Neutral-PE * Margin Calculation Margin (Q.P) = Limit - Actual [Actual (Q.P) = Reading (Q.P) + C/F + C/L] Page 21 of 58

22 Spectral Diagram, LINE PE Spectral Diagram NEUTRAL PE Page 22 of 58

23 5.4 Radiated Disturbance Result Test Environment Temperature 16 Humidity 50 % R.H. Test Procedure In the range of 30 MHz to 6 GHz the Electric Field strength was measured in accordance with EN55022:2006+A1:2007 Class A. The test setup was made according to EN55022:2006+A1:2007 Class A on an open test site, which allows a 10 m distance measurement. The EUT was placed in the center of a wooden turntable. The height of this table was 0.8 m. The measurement was conducted with both horizontal and vertical antenna polarization. The turntable has been fully rotated. The highest radiation of the equipment has been recorded. By varying the configuration of the test sample and the cable routing it was attempted to maximize the emission. For further description of the configuration refer to the picture of the test set-up. Page 23 of 58

24 Radiated Disturbance Test data Frequency Reading Pol. Height Amp Gain [MHz] [dbμv] [H/V] [m] [db] Correction Factor Antenna [db/m] Cable [db] Data Limits Margin [dbμv/m] [dbμv/m] [db] V V V V V V NOTES: 1. All other emission are non-significant. 2. Measurements using CISPR Quasi-Peak mode. (Resolution bandwidth: 120 khz) 3. H = Horizontal, V = Vertical Polarization. 4. Data = Reading Amp Gain + Correction Factor (Antenna + Cable) 5. Margin = Limits - Data 6. Radiated Measurements at 10-meters. Page 24 of 58

25 Radiated Disturbance Test data Above 1 GHz Frequency Reading Pol. Height Amp Gain [MHz] [dbμv] [H/V] [m] [db] Correction Factor Antenna [db/m] Cable [db] Data Limits Margin [dbμv/m] [dbμv/m] [db] No emission were detected at a level greater than 20dB below limit. NOTES: 1. All other emission are non-significant. 2. Measurements using peak and average mode. (Resolution bandwidth: 1 MHz, Video bandwidth: 1 MHz) 3. H = Horizontal, V = Vertical Polarization 4. Data = Real Reading Amp Gain + Correction Factor (Antenna + Cable) 5. Margin = Limits Data 6. Radiated Measurements at 3-meters Page 25 of 58

26 6. Test Results IMMUNITY 6.1 Electrostatic discharge Result Temperature 23 Test Environment Humidity Barometric 50 % R.H kpa Test Procedure The immunity against electrostatic discharge was tested in accordance with EN :1995+A1:1998+A2:2003. Test setup and ESD-Generator are according to EN :2009. Severity level : 3 (Contact discharge) 3 (Air Discharge) Test voltages : ±2.0 kv, ±4.0 kv, 6kV (Contact Discharge) ±2.0 kv, ±4.0 kv, ±8.0 kv (Air Discharge) Number of discharges : Criteria for compliance: >10 per test point There was no damage, malfunction or change of status during the test. Page 26 of 58

27 ESD Test data Positive / Negative Polarity Position Kind of Discharge Result Lens, Signal Cable Air Enclosure (Front, Rear, Left, Right, Top) Contact Screws Contact HCP, VCP Contact Remarks Equipment operated as intended, No disturbance of function Equipment operated as intended, No disturbance of function Equipment operated as intended, No disturbance of function Equipment operated as intended, No disturbance of function Page 27 of 58

28 ESD, Discharged points Air Contact Page 28 of 58

29 6.2. Radiated radio-frequency electromagnetic field Result Test Environment Temperature 23 Humidity 54 % R.H. Barometric kpa Test Procedure The immunity against radio-frequency electromagnetic fields in the frequency range between 80 and 2000 MHz was tested in accordance to EN :1995+A1:1998+A2:2003. The test setup was made according to EN :2006+A1:2008+A2:2010 in a semi-anechoic chamber. The EUT has been placed in the center of a wooden turntable. The height of this table was 0.8 m. The field strength was monitored by an isotropic sensor during the complete test. The isotropic sensor was located beside the equipment. The antenna has been orientated for both horizontal and vertical polarization. The distance between antenna and the equipment under testing was at least 3 m. The tests have been performed with the antenna facing each of the four sides of the EUT. Severity level : 1, 2, 3 Field strength : Freq. Range : Modulation : Criteria for compliance: Step size : Sweep capability : Dwell Time 1 V/m, 3 V/m, 10 V/m 80 ~ 2000 MHz AM, 80 %, 1 khz, sine-wave PM, 1 Hz(0.5s ON : 0.5s OFF) There was no damage, malfunction or change of status during the test. 1 % of fundamental 1.5x10-3 decade/s 3 sec Page 29 of 58

30 Radiated radio-frequency electromagnetic field Test data (AM) Position Result (AM) Horizontal Vertical Remarks Front Side See Note. Right Side See Note. Left Side See Note. Rear Side See Note. Top Side See Note. Bottom Side See Note. Radiated radio-frequency electromagnetic field Test data (PM) Position Result (PM) Horizontal Vertical Remarks Front Side See Note. Right Side See Note. Left Side See Note. Rear Side See Note. Top Side See Note. Bottom Side See Note. * Note) There was a little noise on the system when 10V/m applied but the system could still be used and there was no observable degradation of the screen at 3V/m and 1V/m. Page 30 of 58

31 6.3 Electrical fast transient/burst Result Temperature 21 Test Environment Humidity Barometric 54 % R.H kpa Test Procedure The immunity against fast transients was tested in accordance to EN :1995+A1:1998+A2:2003 on all lines which length may exceed 3 m according to the manufacturer s specification. Test setup with capacitive clamp and fast transient noise generator was according to EN :2004+A1:2010. The EUT was placed on a wooden table 80 cm above the reference ground plane. The reference ground plane exceeded the projected geometry of the EUT and the capacitive clamp by more than 20 cm. The clamp was placed directly on the reference ground plane. The un-used signal connector of the clamp was terminated with a 50 Ω resistor. The distance between the EUT and all other conductive structures, except the ground plane beneath the EUT, was more than 0.5 m. The distance between clamp and EUT was about 30 cm. Severity level : 1, 2, 3 Test voltage : AC mains supply lines (kv) 0.5, 1, 2 Other supply / signal lines (kv) 0.25, 0.5, 1 Polarity : Repetition frequency : Criteria for compliance: Test duration : Negative / positive 5 khz There was no damage, malfunction or change of status during the test. 60sec Page 31 of 58

32 Electrical fast transient Test data - AC Power lines, Positive/Negative Polarity Line Result Remarks L1 L2 PE L1 + L2 L1 + PE L2 + PE L1 + L2 + PE 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv 0.5 kv 1 kv 2 kv Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Burst Test data other supply/signal lines, Positive/Negative Polarity Line Result Remarks Video Out HD SDI Out 0.25 kv 0.5kV 1 kv 0.25 kv 0.5kV 1 kv Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Page 32 of 58

33 6.4 Surge Result Temperature 21 Test Environment Humidity Barometric 48 % R.H kpa Test Procedure The Combination Wave Test Generator, the Coupling / Decoupling Network and the test set-up was in accordance with EN :2006. The test consists of the injection of slow high energy transients in the a.c. mains supply lines in both line-to-line and line-to-ground coupling mode, and into the signal and extra low voltage supply lines in line-to-ground coupling mode. The impedance of the transient generator (effectively 2 Ω) is characterized by the shape of the open-circuit voltage and the short-circuit current pulses. To simulate typical installation impedances, 40 Ω is inserted in series with the generator when extra low voltage and signal lines are tested, and 10 Ω is inserted when the lineto-ground test is conducted on the a.c. mains lines. The test pulses are coupled into the leads to be tested by means of appropriate coupling networks, which maintain the test pulses within their specification. The EUT has been placed on a wooden table 10cm above the reference ground plane. Severity level : 2(Normal Mode) 3(Common Mode) Test voltage : AC mains supply lines (kv) 0.5, 1, 2 Other supply/signal lines (kv) 0.5, 1 Waveshape, open circuit voltage : Waveshape, short circuit current : Polarity & Phase Risetime 1.2 μs / Duration 50 μs Risetime 8 μs / Duration 20 μs Negative / positive 0,90,180,270 Number of surges : 5 Criteria for compliance: There was no damage, malfunction or change of status during the test. Page 33 of 58

34 Surge Test data - AC Power lines, Positive/Negative Polarity Line Result Remarks AC Input L1 to L2 0.5 kv 1 kv Equipment operated as intended. No disturbance of function. AC Input L1 to PE 0.5 kv 1 kv 2 kv Equipment operated as intended. No disturbance of function. AC Input L2 to PE 0.5 kv 1 kv 2 kv Equipment operated as intended. No disturbance of function. Surge Test data other supply/signal lines, Positive/Negative Polarity Line Result Remarks HD SDI Out 0.5 kv 1 kv Equipment operated as intended. No disturbance of function. Video Out 0.5 kv 1 kv Equipment operated as intended. No disturbance of function. RS 485(+,-), M/D Out TRIGGER, D/N IN 0.5 kv 1 kv Equipment operated as intended. No disturbance of function. Page 34 of 58

35 6.5 Conducted disturbances, induced by radio-frequency fields Result Temperature 22 Test Environment Humidity Barometric 48 % R.H kpa Test Procedure The immunity to conducted radio frequency disturbances has been tested according to EN :2009. The EUT has been placed on a wooden table 10 cm above the reference ground plane. The reference ground plane exceeded the projected geometry of the EUT and the Coupling / Decoupling Network (CDN) by more than 20 cm. The CDN has been placed directly on the reference ground plane. The ground terminal of the CDN has been connected directly with the reference ground plane. The cable between CDN and EUT has a length of 20 cm. The distance between this cable and the reference ground plane was kept between 3 and 5 cm as long as possible. The EUT has no dedicated ground terminal. The coupling factor of the RF amplifier, cables and the CDN has been recorded before the test. The specified frequency range has been swept manually with a sweep rate smaller than 1.5 x 10-3 decade / sec. Severity level : 1, 2, 3 Applied voltage : Frequency range : Modulation : 1 V, 3 V, 10 V 0.15 MHz ~ 100 MHz AM,80 %, 1kHz sine-wave PM, 1 Hz(0.5s ON : 0.5s OFF) Step size : Sweep capability : Criteria for compliance: Dwell Time 1% of fundamental 1.5x10-3 decade/s There was no damage, malfunction or change of status during the test. 3 sec Page 35 of 58

36 Immunity input and output AC power ports Port Result (AM) Remarks AC Main See Note. Port Result (PM) Remarks AC Main See Note. Immunity ports for signal and control lines Port Result (AM) Remarks Video Out See Note. HD SDI Out See Note. Port Result (PM) Remarks Video Out See Note. HD SDI Out See Note. * Note) There was a little noise on the system when 10V and 3V applied but the system could still be used and there was no observable degradation of the screen at 1V. Page 36 of 58

37 6.6 Mains supply voltage dips, short interruptions Result Temperature 21 Test Environment Humidity Barometric 50 % R.H kpa Test Procedure Mains supply voltage dips, short interruptions immunity tests and it s test setup were carried out in accordance with EN :2004. Criteria for compliance: There was no damage, malfunction or change of status during the test. Voltage dips and short interruptions Voltage reduction % Duration of reduction (No. of periods) Result Remark ; 1; 5; ; 1; 5; ; 1; 5 Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Page 37 of 58

38 6.7 Mains supply voltage variations Result Temperature 21 Test Environment Humidity Barometric 50 % R.H kpa Test Procedure No reference of mains supply voltage variation immunity test can be made to an internationally accepted standard a resent. Criteria for compliance: There was no damage, malfunction or change of status during the test. Voltage variations Main supply voltage conditions Result Remark Supply voltage max (Umax) Unom + 10% Supply voltage max (Umin) Unom - 15% Equipment operated as intended, No disturbance of function. Equipment operated as intended, No disturbance of function. Page 38 of 58

39 Appendices A1: Photograph of test set-up A1.1: harmonic current/voltage Fluctuations & flicker Page 39 of 58

40 A1.2: Conducted Disturbance Page 40 of 58

41 A1.3: Radiated Disturbance Page 41 of 58

42 A1.4: Electrostatic discharge Page 42 of 58

43 A1.5: Radiated radio-frequency electromagnetic field Page 43 of 58

44 A1.6: Electrical fast transient/burst Page 44 of 58

45 A1.7: Surge Page 45 of 58

46 A1.8: Conducted disturbances, induced by radio-frequency fields Page 46 of 58

47 A1.9: Voltage dips, short interruptions Page 47 of 58

48 A2: EUT Photographs A2.1: <Front> Page 48 of 58

49 A2.2: <Rear> Page 49 of 58

50 A2.3: <Internal> Page 50 of 58

51 A2.4: <Internal 1> Page 51 of 58

52 A2.5: <Internal 2> Page 52 of 58

53 A2.6: <Main Board Front> Page 53 of 58

54 A2.7: <Main Board Rear> Page 54 of 58

55 A2.8: < Sensor Board Front> Page 55 of 58

56 A2.9: <Sensor Board Rear> Page 56 of 58

57 A2.10: <Lens Front> Page 57 of 58

58 A2.11: <Lens Rear> Page 58 of 58

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