ETSI EN & 17 TEST REPORT For Micro-Star Int'L Co., Ltd. Notebook PC Model No. : (1) MS-1736 (2) MS-1738 Marketing Name: CR720 Brand: msi

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1 Page 1 of 76 ETSI EN & 17 TEST REPORT For Micro-Star Int'L Co., Ltd. Notebook PC Model No. : (1) MS-1736 (2) MS-1738 Marketing Name: CR720 Brand: msi Prepared for Micro-Star Int'L Co., Ltd. No.69, Li-De St., Chung-Ho City, Taipei Hsien, Taiwan Prepared by Audix Technology (Wujiang) Co., Ltd. EMC Dept. No.1289 Jiangxing East Road, the Eastern Part of Wujiang Economic Development Zone Jiangsu China Tel.: Fax: Report Number ACWE-RF Date of Test Nov.04~Nov.07, 2009 Date of Report Jul.30, 2010

2 Description TABLE OF CONTENTS Page 2 of 76 Page TEST REPORT VERIFICATION SUMMARY OF STANDARDS AND RESULTS Description of Standards and Results DESCRIPTION OF PERFORMANCE CRITERION Criterion (ETSI EN /2008) Performance Criterion (ETSI EN /2008) GENERAL INFORMATION Description of Device (EUT) EUT s Configuration under Test Operating Condition of EUT Tested Supporting System Details Description of Test Facility Measurement Uncertainty CONDUCTED EMISSION MEASUREMENT Test Equipment Block Diagram of Test Setup for AC Mains Port Block Diagram of Test Setup for RJ45 Port Limits for Conducted Emissions from AC Mains Port Limits for Conducted Emissions from the telecommunication ports Test Procedure Measurement Results RADIATED EMI SSION MEASUREMENT Test Equipment Block Diagram of Test Setup Limits for Radiated Emission Test Procedure Measurement Results POWER HARMONICS AND FLICKER MEASUREMENT Test Equipment Block Diagram of Test Setup Test Standard Test Procedure Test Results ELECTROSTATIC DISCHARGE IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results RF ELECTROMAGNETIC FIELD IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results ELECTRICAL FAST TRANSIENT/BURST IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results...52

3 Page 3 of SURGE IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results RF COMMON MODE IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results VOLTAGE DIPS AND INTERRUPTIONS IMMUNITY TEST Test Equipment Block Diagram of Test Setup Test Standard Test Levels and Performance Criterion Test Procedure Test Results PHOTOGRAPHS Photos of Conducted Emission Measurement Photos of Radiated Emission Measurement Photos of Power Harmonic and Flicker Measurement Photos of Electrostatic Discharge Immunity Test Photos of RF Electromagnetic Field Immunity Test Photos of Fast Transient common mode Immunity test Photos of Surge Immunity Test Photos of RF Common Mode Immunity Test Photos of Voltage Dips and Interruptions Immunity Test Photos of host PC for RJ45 ping test Photos of host PC for WLAN ping test...76 APPENDIX PHOTOS OF EUT

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5 Page 5 of 76 1 SUMMARY OF STANDARDS AND RESULTS 1.1 Description of Standards and Results The EUT have been tested according to the applicable standards as referenced below. EMISSION Subclause ETSI EN V1.8.1/2008 Description of Test Item Standard Limits Results 8.2 Radiated disturbance EN 55022/2006 CLASS B PASS 8.3 Conducted disturbance (DC power input/output port) EN 55022/2006 CLASS B Note Conducted disturbance (AC mains input/output port) EN 55022/2006 CLASS B PASS 8.5 Harmonic current emissions EN /2006 CLASS D PASS 8.6 Voltage fluctuations & flicker EN /1995+A1/2001 +A2/ Subclause ETSI EN V1.8.1/ Conducted disturbance Telecommunication ports Description of Test Item RF electromagnetic field (80MHz to 2700MHz) IMMUNITY PASS EN 55022/2006 CLASS B PASS Standard Performance Criterion Results EN /2006 A PASS 9.3 Electrostatic discharge EN /2001 B PASS 9.4 Electrical Fast Transient/Burst EN /2004 B PASS RF common mode (0.15MHz to 80MHz) Transients and surges in the vehicular environment EN /2005 A PASS ISO /2004 B Note Voltage dips B PASS EN / Voltage interruptions B PASS 9.8 Surge EN /2006 B PASS Note 1: Due to the EUT doesn t have DC power input/output port, this test item is not applicable. Note 2: Due to the EUT is not used in vehicular environment; this test item is not applicable.

6 Page 6 of 76 2 DESCRIPTION OF PERFORMANCE CRITERION 2.1 Criterion (ETSI EN /2008) 1 Performance Criterion for continuous phenomena applied to transmitters and receivers (CT, CR) 2 Performance Criterion for transient phenomena applied to transmitters and receivers (TT, TR) 3 Performance Criterion for equipment which does not provide a continuous communications link 4 Performance Criterion for ancillary equipment tested on a stand alone basis Performance Criterion If no further details are given in the relevant part of the present document dealing with particular type of radio equipment, the following general performance Criterion for continuous phenomena shall apply. During and after the test, the apparatus shall continue to operate as intended. No degradation of performance or loss of function is allowed below a permissible performance level specified by the manufacturer when the apparatus is used as intended. In some cases this permissible performance level may be replaced by a permissible loss performance. During the test EUT shall not unintentionally transmit or change its actual operating state and stored data. If the minimum performance level or the permissible performance loss is not specified by the manufacturer, then either of these may be deduced from the product description and documentation and what the user may reasonably expect from the apparatus if used as intended. If no further details are given in the relevant part of the present document dealing with particular type of radio equipment, the following general performance Criterion for transient phenomena shall apply. After the test, the apparatus shall continue to operate as intended. No degradation of performance or loss of function is allowed below a permissible performance level specified by the manufacturer, when the apparatus is used as intended. In some cases this permissible performance level may be replaced by a permissible loss performance. During the EMC exposure to an electromagnetic phenomena, a degradation of performance is, however, allowed. No change of the actual mode of operation (e.g. unintended transmission) or stored data is allowed. If the minimum performance level or the permissible performance loss is not specified by the manufacturer, then either of these may be deduced from the product description and documentation and what the user may reasonably expect from the apparatus if used as intended. For radio equipment which does not provide a continuous communication link, the performance Criterion described in the subclauses above are not appropriate, then the manufacturer shall declare, for inclusion in test report, his own specification for an acceptable level of performance or degradation of performance during and/or after the immunity tests. The performance specification shall be included in the product description and documentation. The related specifications set out in subclause 5.3 have also to be taken into account. The performance Criterion specified by manufacturer shall give the same degree of immunity protection as called for in the foregoing subclause. For radio equipment which does not provide a continuous communication link, the performance Criterion described in the subclauses above are not appropriate, then the manufacturer shall declare, for inclusion in test report, his own specification for an acceptable level of performance or degradation The performance Criterion specified by manufacturer shall give the same degree of immunity protection as called for in the foregoing subclause.

7 Page 7 of Performance Criterion (ETSI EN /2008) The performance Criteria are: - Performance Criterion A for immunity tests with phenomena of a continuous nature (CT, CR); - Performance Criterion B for immunity tests with phenomena of a transient nature (TT, TR); - Performance Criterion C for immunity tests with power interruptions exceeding a certain time. Performance Criterion Criterion During test After test A Shall operate as intended May show degradation of performance(note 1) Shall be no loss of function Shall be no unintentional transmissions Shall operate as intended Shall be no degradation of performance (note 2) Shall be no loss of function Shall be no loss of stored data or user programmable functions B May show loss of function (one or more) May show degradation of performance(note 1) No unintentional transmissions Functions shall be self-recoverable Shall operate as intended after recovering Shall be no degradation of performance (note 2) Shall be no loss of stored data or user programmable functions C May be loss of function (one or more) Functions shall be recoverable by the operator Shall operate as intended after recovering Shall be no degradation of performance (note 2) NOTE 1: Degradation of performance during the test is understood as a degradation to a level not below a minimum performance level specified by the manufacturer for the use of the apparatus as intended. In some cases the specified minimum performance level may be replaced by a permissible degradation of performance. If the minimum performance level or the permissible performance degradation is not specified by the manufacturer then either of these may be derived from the product description and documentation (including leaflets and advertising) and what the user may reasonably expect from the apparatus if used as intended. NOTE 2: No degradation of performance after the test is understood as no degradation below a minimum performance level specified by the manufacturer for the use of the apparatus as intended. In some cases the specified minimum performance level may be replaced by a permissible degradation of performance. After the test no change of actual operating data or user retrievable data is allowed. If the minimum performance level or the permissible performance degradation is not specified by the manufacturer then either of these may be derived from the product description and documentation (including leaflets and advertising) and what the user may reasonably expect from the apparatus if used as intended.

8 Page 8 of 76 3 GENERAL INFORMATION 3.1 Description of Device (EUT) Product : Notebook PC Model No. : (1) MS-1736 (2) MS-1738 Remark: Between the two models are same except model No. and for different markets. Marketing Name : CR720 Brand : msi Applicant : Micro-Star Int'L Co., Ltd. No.69, Li-De St., Chung-Ho City, Taipei Hsien, Taiwan Manufacturer : MSI ELECTRONICS (KUNSHAN) CO., LTD. No.88 East Qianjin Road, Kunshan City WLAN Card : Brand: Atheros Model No.: AR5B95 Radio Technology: OFDM & DSSS Type of Network: IEEE b/g/n Frequency Band: IEEE b: 2412MHz~2462MHz (11CH) (DSSS (CCK, DQPSK, DBPSK)) IEEE g: 2412MHz~2462MHz (11CH) (OFDM(64QAM, 16QAM, QPSK, BPSK)) Draft IEEE n Standard-20MHz Channel Mode: 2412MHz~2462MHz (11CH) (OFDM(64QAM, 16QAM, QPSK, BPSK)) Draft IEEE n Wide-40MHz Channel Mode: 2412MHz~2462MHz (7CH) (OFDM(64QAM, 16QAM, QPSK, BPSK)) Antenna Gain: 3.62dBi max. Bluetooth Module : Brand: CSR; Model No.: BSMAN1(MS-3801) Frequency Band: 2402MHz~2480MHz Date of Receipt of Sample : Nov.02, 2009 Date of Test : Nov.04~Nov.07, 2009

9 Page 9 of EUT s Configuration under Test List of Interface Ports of EUT : USB port*4 RJ-45 port D-Sub port HDMI port Earphone port Microphone port Audio in port E-SATA port. SD/MS/MMC Card Slot DC In port List of the components of the EUT SKU#1 CPU LCD Panel RAM Battery Pack Wireless LAN HDD ODD Keyboard Bluetooth Module Touch Pad main board WEBCAM AC Adapter Brand/Model No./ Specification INTEL/Q3G9/2.52GHz AUO/B173RW01 V0 Hynix/HMT125S6BFR8C-G7N0/2GB Celxpert/BYT-L75/6600mAh/9cell Atheros/AR5B95(AW-NE785H)/ NCC No.:CCAE08LP1590T0,WLAN b/g/n, 2.4G WD/WD6400BEVT-22A0RT0/640GB HLDS/GT30N Sunrex/V111922AK1 CSR/MS-3801(BSMAN1) NCC No.:CCAE09LP0840T0 SYNAPTICS/TM /79.7mm*47.7mm MSI/MS-1736 Bison/BN29M6SSB-010/1.3M Pixels Brand: DELTA I/P: V, 1.5A, O/P: 19Vdc, 3.42A BSMI No.: R33030 DC Cord: Unshielded, Undetachable, 1.8m, 1 ferrite core AC Cord: Unshielded, Detachable, 1.8m

10 Page 10 of Operating Condition of EUT EUT Exercise Program and Condition Operating System Windows 7 Test Program EMC test.exe ; Media Player.exe ; Winthrax Graphic controller Display scrolling H pattern with test resolution 1600*900@60Hz IDE controller Read/Write operation to USB HDD Audio controller Play 1kHz audio signal LAN controller Data transfer to host PC Wireless LAN Send Signal by WLAN software Bluetooth Webcam Send data by Bluetooth software Operating normally 3.4 Tested Supporting System Details LCD Monitor #1 Manufacturer DELL Model Number SP2309Wc Serial Number CN-0U781F V-002S BSMI ID R33037 FCC ID FCC By DoC D-Sub Cable Shielded, Detachable, 1.8m, bonded 2 ferrite cores Power Cord Unshielded, Detachable, 3.0m LCD Monitor #2 Manufacturer DELL Model Number S2409Wb Serial Number CN-0W570D G-2MAO FCC ID FCC By DoC BSMI ID R3A002 HDMI Cable Shielded, Detachable, 1.8m Power Cord Unshielded, Detachable, 2.0m Earphone & Microphone Manufacturer SOMIC Model Number SM-301 Data Cable Unshielded, Undetachable, 2.2 m, Microphone Manufacturer N/A Model Number N/A Data Cable Unshielded, Undetachable, 2.5m HDD#1 Manufacturer Seagate

11 Model Number FreeAgent Pro Serial Number 9QM33930 FCC ID FCC By DoC Data Cable Shielded, Detachable, 1.0m Mouse Manufacturer DELL Model Number MOC5UO Serial Number 10S08R2F FCC ID FCC By DoC BSMI ID R41108 Data Cable Shielded, Undetachable, 1.5m HDD#2 Manufacturer Samsung Model Number HM042HI Serial Number S07WJ10L FCC ID FCC By DoC Data Cable Shielded, Detachable, 1.0m HDD Manufacturer Seagate Model Number Dual Firewire 400 Serial Number 6QG0XYY1 FCC ID FCC By DoC Data Cable Shielded, Detachable, 1.0m Power Cable Unshielded, Detachable, 2.0m Page 11 of Printer Manufacturer HP Model Number DESKJET3918 Serial Number CN64R1N251 BSMI ID R33001 USB Cable Shielded, Detachable, 1.5m AC Adapter HP/ I/P: V, 50-60Hz, 500mA, O/P: +32Vdc, 500mA max +15Vdc, 530mA max BSMI No.: R33160 AC Cord: Unshielded,Detachable, 1.8m DC Cord: Unshielded, Undetachable, 1.8m, 1 ferrite core Mini SD Card Adapter (2GB) Manufacturer A-DATA

12 Page 12 of 76 Supporting Systems for RJ 45 Ping Test Host PC Manufacturer Lenovo Model Number 2746 BSMI ID R33B65 AC Adapter M/N: 92P1211 Brand: Lenovo Input: AC V, 50-60Hz, 2.0A-1.2A Output: DC 20V,3.25A AC Cord: Unshielded, Detachable, 1.0m DC Cord: Unshielded, Undetachable, 1.8m, 1 ferrite core RJ 45 Cable *2: Unshielded, Detachable, 25m&2m AC Power Cord: Unshielded, Detachable, 1.8m Supporting Systems for WALAN &Bluetooth function Test Wireless Router Manufacturer TP-LINK Model Number TL-WR641G+ Serial Number Adapter LEI M/N: A A2 I/P: AC 220V, 50Hz, 150mA, O/P: AC 9V, 50Hz, 0.8A DC Cord: Unshielded, Undetachable, 1.8m

13 Page 13 of Description of Test Facility Name of Firm : Audix Technology (Wujiang) Co., Ltd. EMC Dept. Site Location : No Jiangxing East Road, the Eastern Part of Wujiang Economic Development Zone Jiangsu China Test Facilities : No.1 10m semi-anechoic chamber FCC filing on Aug.21, 2009 Registration No.: No. 1 conducted shielding enclosure The Complex Immunity Test Room RS&CS Test Room NVLAP Lab Code : (NVLAP is a NATA accredited body under Mutual Recognition Agreement) Valid until on Sep.30, 2010 DAR-Registration No. : DAT-P-264/07-00 Valid until on Dec.15, Measurement Uncertainty Test Item Conducted Disturbance Measurement Radiated Disturbance Measurement (distance 10m) Remark Uncertainty = ku c (y) Uncertainty ± 2.75dB ± 3.06dB (Horizontal) ± 3.22dB (Vertical)

14 Page 14 of 76 4 CONDUCTED EMISSION MEASUREMENT 4.1 Test Equipment For AC Mains Port Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Test Receiver R & S ESCI A.M.N R & S ESH2-Z L.I.S.N. Kyoritsu KNW Pulse Limiter R&S ESH3-Z Ω Coaxial Switch Anritsu MP59B ohm Terminator N/A N/A N/A RF Cable Harbour Industries RG For Telecommunication Port Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Test Receiver R & S ESCI A.M.N R & S ESH2-Z L.I.S.N. Kyoritsu KNW I.S.N. FCC FCC-TLISN -T ohm Terminator N/A N/A N/A Ω Coaxial Switch ANRITSU MP59B Pulse Limiter R&S ESH3-Z RF Cable Harbour Industries RG Block Diagram of Test Setup for AC Mains Port AC POWER SOURCE A.M.N. COAXIAL SWITCH HDD*2 Earphone & Microphone Microphone Mouse PULSE LIMITER TEST RECEIVER Notebook PC (EUT) PERSONAL COMPUTER PRINTER AC POWER SOURCE 50 ohm Terminator : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor #2 LISN Wireless Router 1394 HDD Test supporting system for WLAN and Bluetooth function test

15 Page 15 of Block Diagram of Test Setup for RJ45 Port AC POWER SOURCE A.M.N. COAXIAL SWITCH PULSE LIMITER TEST RECEIVER PERSONAL COMPUTER PRINTER HDD*2 Earphone & Microphone Microphone Mouse RJ45 USB ISN Notebook PC (EUT) 50 ohm Terminator USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor #2 AC POWER SOURCE L.I.S.N HDD : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter Wireless Router Test supporting system for WLAN and Bluetooth function test 4.4 Limits for Conducted Emissions from AC Mains Port (ETSI EN V1.8.1 /2008 Subclause 8.4 (EN 55022)) Frequency range Limit (quasi-peak) Limit (average) 150kHz ~ 500kHz 66 dbμv ~ 56 dbμv 56 dbμv ~ 46 dbμv 500kHz ~ 5MHz 56 dbμv 46 dbμv 5MHz ~ 30MHz 60 dbμv 50 dbμv Remark 1.The limit decreases linearly with the logarithm of the frequency in the range 0.15MHz to 0.5MHz. 2. If the average limit is met when using a Quasi-Peak detector, the EUT shall be deemed to meet both limits and measurement with the average detector is unnecessary. 3. The lower limit applies at the band edges. 4.5 Limits for Conducted Emissions from the telecommunication ports ETSI EN V1.8.1 /2008 Sub clause 8.7 (EN 55022) Frequency Voltage Limits(dBμV) Current Limits(dBμA) Quasi-Peak Average Quasi-Peak Average 0.15MHz ~ 0.5MHz 84 ~ ~ ~ ~ MHz ~ 30MHz Remark 1.The limit decreases linearly with the logarithm of the frequency in the range 0.15MHz to 0.5MHz.

16 4.6 Test Procedure Page 16 of 76 The measuring process is according to ETSI EN V1.8.1/2008 (EN55022) and laboratory internal procedure TKC For AC Mains Port In the conducted emission measurement, the EUT and all peripheral devices were set up on a non-metallic table which was 0.8 meters height above the ground plane, and 0.4 meters far away from the vertical plane. The EUT was powered by AC mains through Artificial Mains Network (A.M.N), other peripheral devices were powered by AC mains through the second Line Impedance Stabilization Network (L.I.S.N). For the measurement, the A.M.N measuring port was terminated by a 50Ω measuring equipment and the second L.I.S.N measuring port was terminated by a 50Ω resistive load. All measurements were done on the phase and neutral line of the EUT s power cord. All cables or wires placement were verified to find out the maximum emission For Telecommunication Port The setup is the same as conduction besides this, connecting between AE and telecommunication port through ISN. Each phase of telecommunication wire is measured to evaluate the maximum conducted emission in accordance with clause 9 of EN The bandwidth of measuring receiver was set at 9 khz. The required frequency band (0.15 MHz ~ 30 MHz) was pre-scanned with peak detector, the final measurement was measured with quasi-peak detector and average detector. (If the average limit is met when using a quasi-peak detector, the average detector is unnecessary). The emission level is calculated automatically by the test system which uses the following equation: Emission level (dbμv) = Meter-Reading (dbμv) + A.M.N / I.S.N. factor (db) + Cable loss (db). (Cable loss include pulse limiter loss) 4.7 Measurement Results AC Mains Port Measurement Results PASSED (All the emissions not reported below are too low against the prescribed limits.) EUT with the following worst test modes were performed during this section testing and all the test results are listed in next pages. Test Date: Nov.05, 2009 Temperature:23.5 Humidity: 45 Test Mode Neutral Reference Test Data No. WiFi Operating # 114 # 115 (WLAN Ping Test) NOTE - The worst emission is detected at 0.16 MHz with emission level of db (μv) and with QP detector (limit is db (μv)), when the Line of the EUT is connected to L.I.S.N. Line

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19 Page 19 of Telecommunication Port Measurement Results EUT with the following worst test modes were performed during this section testing and all the test results are listed in next pages. Test Date: Nov.05, 2009 Temperature: 23.5 Humidity: 45 Mode Test Mode Reference Test Data No. 1 RJ45 10Mbps Full #102 2 RJ45 10Mbps Half #103 3 RJ45 100Mbps Full # RJ45 100Mbps Half # RJ Mbps Full # 106 NOTE 1 means the worst test mode. NOTE 2 The worst emission is detected at 1.9 MHz with emission level of db (μv) and with Average detector (limit is 64 db (μv)), when the RJ45 port of the EUT is connected to I.S.N.

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25 Page 25 of 76 5 RADIATED EMI SSION MEASUREMENT 5.1 Test Equipment The following test equipment was used during the radiated emission measurement (At 10m Semi-Anechoic Chamber) (At 10m Semi-Anechoic Chamber) Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Spectrum Analyzer Agilent E7405A MY Spectrum Analyzer Agilent E7405A MY Pre-Amplifier Agilent 8447D 2944A Pre-Amplifier Agilent 8447D 2944A Bi-log Antenna (Horizontal) Schaffner CBL6112D Bi-log Antenna (Vertical) Schaffner CBL6112D Test Receiver R&S ESCI Ω Coaxial Switch # 1 ANRITSU MP59B Ω Coaxial Switch # 2 ANRITSU MP59B Ω Coaxial Switch # 3 ANRITSU MP59B Microwave amplifier Agilent 8449B 3008A RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Huber+Suhner SUCOFLEX RF Cable Huber+Suhner SUCOFLEX

26 Page 26 of 76 (No. 1 3m Semi-Anechoic Chamber) Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1 Preamplifier Agilent 8447D 2944A Spectrum Analyzer Agilent E7405A MY Bi-log Antenna (30MHz~1GHz) Schaffner CBL6112D Horn Antenna (1GHz~6GHz) ESCO Test Receiver R&S ESCI Ω Coaxial Switch Anritsu MP59B RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Yuhang CSYH RF Cable Huber+Suhner SUCOFLEX RF Cable Huber+Suhner SUCOFLEX Block Diagram of Test Setup Block Diagram of connection between EUT and simulators AC POWER SOURCE AC adapter HDD*2 USB Earphone & Microphone Microphone Mouse : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter Notebook PC (EUT) RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor # HDD Wireless Router Test supporting system for WLAN and Bluetooth function test

27 Page 27 of No. 1 10m Semi-Anechoic Chamber Setup Diagram (Test distance: 10m) ANTENNA TOWER ANTENNA ELEVATION VARIES FROM 1 TO 4 METERS 10 METERS EUT TURN TABLE 0.8m m Semi-Anechoic Chamber Setup Diagram (Test distance: 3m) ANTENNA TOWER GROUND PLANE ANTENNA ELEVATION VARIES FROM 1 TO 4 METERS 3 METERS EUT ABSORBER TURN TABLE 0.8m 5.3 Limits for Radiated Emission GROUND PLANE ETSI EN V1.8.1/2008, Sub clause 8.2 (EN55022) FREQUENCY DISTANCE Field Strengths Limits (MHz) (Meters) 30 ~ (dBμV/m) 230 ~ (dBμV/m) 1~ 3 3 AV 50(dBμV/m) PEAK 70(dBμV/m) 3~ 6 3 AV 54(dBμV/m) PEAK 74(dBμV/m) Note (1) The tighter limit shall apply at the edge between two frequency bands. (2) Distance refers to the distance in meters between the measuring instrument antenna and the closed point of any part of the EUT

28 5.4 Test Procedure Page 28 of 76 The measuring process is according to ETSI EN V1.8.1 (EN 55022) and laboratory internal procedure TKC In the radiated disturbance measurement, the EUT and all simulators were set up on a non-metallic turn table which was 0.8 meters above the ground plane. Measurement distance between EUT and receiving antennas was set at 10 meters at 30MHz~1000MHz and 3 meters at 1000MHz~6000MHz. The specified distance is the distance between the antennas and the closest periphery of EUT. During the radiated measurement, the EUT was rotated 360 and receiving antennas were moved from 1 ~ 4 meters for finding maximum emission. Two receiving antennas were used for both horizontal and vertical polarization detection for 30MHz~1GHz, One receiving antennas was used for both horizontal and vertical polarization detection for 1GHz~6GHz (the absorbing material was added when testing of 1GHz~6GHz was done). All cables or wires placement were verified to find out the maximum emission. The bandwidth of measuring receiver (or spectrum analyzer) was set to: RBW (120 khz), VBW (1MHz) for QP detector below 1GHz RBW (1 MHz), VBW (1MHz) for Peak detector above 1GHz RBW (1 MHz), VBW (10 Hz) for Average detector above 1GHz which is defined against CISPR section. The required frequency band (30 MHz ~ 6000 MHz) was pre-scanned with peak detector; all final measurements were measured with quasi-peak detector below 1GHz, measured with average detector and peak detector above 1GHz. The emission level is calculated automatically by the test system which uses the following equation: 1. For MHz measurement: Emission Level (dbμv/m) = Meter-Reading (dbμv)+antenna Factor (db/m)+cable Loss (db) 2. For MHz measurement: Emission Level (dbμv/m) = Meter-Reading (dbμv)+antenna Factor (db/m)+cable Loss(dB) -Pre-amplifier factor (dbμv)

29 5.5 Measurement Results Page 29 of 76 PASSED. (All the emissions not reported below are too low against the prescribed limits.) EUT with the following worst test modes were performed during this section testing and all the test results are listed in next pages For 30MHz~1GHz Test Date: Nov.06, 2009 Temperature: 24.9 Humidity: 43 The details of test modes and reference test data are as follows Test Mode Reference Test Data No. Horizontal Vertical WiFi Operating(WLAN Ping Test) # 11 # 12 NOTE 1-0 was the table front facing the antenna. Degree is calculated from 0 clockwise facing the antenna. NOTE 2 - The worst emission at horizontal polarization was detected at MHz with emission level of dbμv/m (limit is 37.00dBμV/m), when the antenna was 1.3m height and the turntable was at 165. The worst emission at vertical polarization was detected at MHz with emission level of 23.23dBμV/m (limit is dbμv/m), when the antenna was 1.1m height and the turntable was at 230.

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32 Page 32 of For 1GHz~6GHz Test Date:Nov.04, 2009 Temperature: 19.8 Humidity: 47 Test Mode WiFi Operating (WLAN Ping Test) Reference Test Data No. Neutral Line # 17 # 18

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35 Page 35 of 76 6 POWER HARMONICS AND FLICKER MEASUREMENT 6.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Compliance Test California System #1 Instrument 5001iX Compliance Test California System #2 Instrument PASC Block Diagram of Test Setup Compliance Test System #1 Compliance Test System #2 HDD*2 USB Earphone & Microphone Notebook PC (EUT) Microphone RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor #2 Mouse 1394 HDD : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter Wireless Router 6.3 Test Standard ETSI EN V1.8.1/2008, Sub clause 8.5&8.6 (EN /2006 & EN /1995+A1/2001+A2/2005) 6.4 Test Procedure The measuring process is according to EN /2006& EN /1995+A1/2001+A2/2005 and laboratory internal procedure TKC Test Results Test supporting system for WLAN and Bluetooth function test The limits for Class D equipment are valid for all applications having an active input power is >75W, due to the EUT measured active input power is <75W, therefore, no limits apply for this equipment according to EN PASSED. (complied with Class D limit) EUT with the following test mode was measured during this section testing and all the test results are listed in next page. Test Date: Jul.14, 2009 Temperature: 25.6 Humidity: 51 Mode Test Mode 1 WiFi Operating(WALAN Ping Test)

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40 Page 40 of 76 7 ELECTROSTATIC DISCHARGE IMMUNITY TEST 7.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. ESD Simulator NoiseKen ESS-2000 ESS07X Block Diagram of Test Setup AC SOURCE HDD*2 Earphone & Microphone Microphone Mouse USB ESD Simulator Notebook PC (EUT) RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor # HDD : POWER LINE : SIGNAL LINE : FERRITE CORE 7.3 Test Standard : AC Adapter : AIR /CONTACT DISCHARGE Wireless Router Test supporting system for WLAN and Bluetooth function test ETSI EN V1.8.1/2008, Sub clause 9.3 (EN /2001) & ETSI EN V 1.3.2/ Test Levels and Performance Criterion Test Level Performance Criterion Air Discharge Contact Discharge ±2kV,±4kV and ±8kV ±2kV and ±4kV B

41 7.5 Test Procedure Page 41 of 76 The measuring process is according to EN /2001 and laboratory internal procedure TKC Air Discharge This test is done on a non-conductive surfaces. The round discharge tip of the discharge electrode shall be approached as fast as possible to touch the EUT. After each discharge, the ESD generator discharge electrode shall be removed from the EUT. The generator is then retrigged for a new single discharge and repeated 10 discharges each at positive and negative polarity for each preselected test point. This procedure shall be repeated until all the air discharge completed Contact Discharge All the procedure shall be same as Except that the tip of the discharge electrode shall touch the EUT conductive surfaces & repeated 10 discharges each at positive and negative polarity for each test point before the discharge switch is operated Indirect discharge for horizontal coupling plane At least 10 discharges each at positive and negative polarity shall be applied to the horizontal coupling plane, at points on each side of the EUT. The ESD generator positions vertically at a distance of 0.1m from the EUT and with the discharge electrode touching the coupling plane Indirect discharge for vertical coupling plane At least 10 discharges each at positive and negative polarity shall be applied to the center of one vertical edge of the coupling plane. The coupling plane, of dimensions 0.5m X 0.5m, is placed parallel to, and positioned at a distance of 0.1m from the EUT. Discharges shall be applied to the coupling plane, with this plane in sufficient different positions that the four faces of the EUT are completely illuminated For above tests, the voltage was increased from the minimum to the selected test level. 7.6 Test Results PASSED. (Complied with Criterion A) EUT was tested with the test mode WLAN Ping Test and all the test results are listed in next page.

42 Page 42 of 76 Electrostatic Discharge Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50 Hz Model No. MS-1736 Temp Humidity 54 Atmosphere Pressure 101kPa Test Mode Working Condition Item WLAN Ping Test Refer to section 3.3 Results PASS Amount of Discharges Contact Discharge 150 Air Discharge 1040 Indirect Discharge (HCP) Indirect Discharge (VCP Front) Indirect Discharge (VCP Left) Indirect Discharge (VCP Back) Indirect Discharge (VCP Right) Test Points Discharge Voltage 2kV, 4kV - 2kV, - 4kV 2kV, 4kV, 8kV - 2kV, - 4kV, - 8kV 2kV, 4kV - 2kV, - 4kV 2kV, 4kV - 2kV, - 4kV 2kV, 4kV - 2kV, - 4kV 2kV, 4kV - 2kV, - 4kV 2kV, 4kV - 2kV, - 4kV Performance Criterion 1. Screw 3 Contact discharge 2. Vent 9 Air discharge 3. Touch pad Air Discharge 4. Keyboard 10 Air Discharge 5. Gap 4 Air discharge 6. lockhole Air Discharge 7. USB 4 Air discharge 8. Morphine 3 Air discharge 9. earphone Air discharge 10. SD Air discharge 11. Panel 8 Air discharge 12. express Air discharge 13. Carmera Air discharge 14. LED Air discharge 16 Button 2 Air discharge 16 Power port Air discharge 17 E-SATA Air discharge 18 RJ45 Air discharge 19 D-Sub Air discharge 20 HDMI Air discharge A A A A A A A Engineer :Hilary

43 Page 43 of 76 Photos of Discharge Points:

44 Page 44 of

45 Page 45 of

46 Page 46 of 76 8 RF ELECTROMAGNETIC FIELD IMMUNITY TEST 8.1 Test Equipment For 80MHz~1GHz Test Type Manufacturer Model No. Serial No. Last Cal. Next Cal. Item 1. Signal Generator Agilent 8648C 3847M Power Amplifier AR KAW NCR NCR 3. Power Sensor Agilent 8481D MY Dual Channel 4. EPM Series Power Agilent E4419B MY Meter 5. Log-Periodic Antenna AR AT NCR NCR 6. Direction Coupler AR DC6180A NCR: Non-Calibration Remark For 1.4GHz~2.7GHz Test Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Signal Generator Agilent 8648C 3847M LINEAR POWER MILMEGA AS AMPLIFIER NCR NCR 3. Power Sensor Agilent 8481D MY Dual Channel 4. EPM Series Power Agilent E4419B MY Meter 5. Horn Antenna AR AT4002A NCR NCR 6. Direction Coupler AR DC7144A NCR: Non-Calibration Remark 8.2 Block Diagram of Test Setup Block Diagram of connection between EUT and simulators. AC SOURCE Mouse HDD*2 Earphone & Microphone Microphone USB : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter Notebook PC (EUT) RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor # HDD Wireless Router Test supporting system for WLAN and Bluetooth function test

47 Page 47 of R/S Test Setup Anechoic Chamber 1 Meter 3 Meters for 80MHz~1000MHz 1 Meter for1.4ghz-2.7ghz EUT 0.8 Meter Control Room Direction Coupler Power Sensor Power Monitor Power Amp. Signal Generator Personal Computer 8.3 Test Standard ETSI EN V1.8.1/2008,Sub clause 9.2 (EN /2006) & ETSI EN V1.3.1/ Test Levels and Performance Criterion Frequency Field Strength Test Level 80MHz-1GHz& 1400MHz-2700MHz 3V/m Performance Criterion A Modulation & Signal 80%, 1kHz

48 8.5 Test Procedure Page 48 of 76 The measuring process is according to EN /2006 and laboratory internal procedure TKC The field sensor is placed on the EUT table (0.8 meter above the ground) which is 3 meter (for frequency range 80MHz-1GHz) or 1 meter (for frequency range 1400MHz -2700MHz) away from the transmitting antenna. Through the signal generator, power amplifier and transmitting antenna to produce a uniformity field strength (3V/m measured by field sensor) around the EUT table from frequency range 80MHz to 1000MHz & 1400MHz to 2700MHz and records the signal generator s output level at the same time for whole measured frequency range. Then, put EUT and its simulators on the EUT turn table and keep them 3 meter away from the transmitting antenna which is mounted on an antenna tower and fixes at 1 meter height above the ground. Using the recorded signal generator s output level to measure the EUT from frequency range 80MHz to 1000MHz & 1400MHz to 2700MHz and both horizontal & vertical polarization of antenna must be set and measured. Each of the four sides of EUT must be faced this transmitting antenna and measures individually. The most sensible side of EUT is tested which is right side to face transmitting antenna. A CCD camera was put inside the chamber and through its display to monitor the EUT operational situation to judge the EUT performance Criterion during measurement. All the scanning conditions are as follows Condition of Test Remarks Fielded Strength 3 V/m (Unmodulated, Severity Level 2) 2. Amplitude Modulated 1kHz, 80%AM 3. Scanning Frequency MHz & 1400~2700MHz 4. Step Size 1% increments 5. The Rate of Sweep decade/s 6. Dwell Time 3 sec. 8.6 Test Results PASSED. (Complied with Criterion A) EUT was tested with the test modes in Sec 7.6 and all the test results are listed in next page.

49 Page 49 of 76 RF Electromagnetic Field Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50Hz Model No. MS-1736 Temp Humidity 56 Test Mode WLAN Ping Test Working Refer to Section 3.3 Results PASS Condition Frequency Range E.U.T. Position Ant. Polarity Field Strength Performance (MHz) ( Angle ) (Hor. or Ver.) (V/m) Criterion Remark 80~ H 3 A 80~ H 3 A 80~ H 3 A 80~ H 3 A 80~ V 3 A 80~ V 3 A 80~ V 3 A 80~ V 3 A Engineer :Joecy Ma

50 Page 50 of 76 RF Electromagnetic Field Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50Hz Model No. MS-1736 Temp Humidity 56 Test Mode WLAN Ping Test Working Refer to section 3.3 Results PASS Condition Frequency Range E.U.T. Position Ant. Polarity Field Strength Performance (MHz) ( Angle ) (Hor. or Ver.) (V/m) Criterion 1400~ H 3 A Remark 1400~ H 3 A 1400~ H 3 A 1400~ H 3 A 1400~ V 3 A 1400~ V 3 A 1400~ V 3 A 1400~ V 3 A Engineer : Joeay Ma

51 Page 51 of 76 9 ELECTRICAL FAST TRANSIENT/BURST IMMUNITY TEST 9.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. ECAT system (EFT Module) KEYTEK E EFT Clamp KEYTEK CCL Block Diagram of Test Setup Block Diagram of connection between EUT and simulators. AC SOURCE Mouse HDD*2 Earphone & Microphone Microphone USB : POWER LINE : SIGNAL LINE : FERRITE CORE : AC Adapter Notebook PC (EUT) RJ45 USB D-Sub HDMI Host PC Printer LCD Monitor #1 LCD Monitor # HDD Wireless Router Test supporting system for WLAN and Bluetooth function test EFT Test Setup Signal Line AC Line (L=50cm) 10cm insulating support EUT EFT Clamp ECAT system To AC Power Supply Network Grounding Plate TABLE Grounding Wire Ground Plane Remark: Combination wave generator and decoupling networks are included in test.

52 Page 52 of Test Standard ETSI EN V1.8.1/2008, Sub clause 9.4 (EN /2004) & ETSI EN V1.3.2/ Test Levels and Performance Criterion Test Level Telecommunication port : 0.5kV AC mains power input port : 1kV Tr/Ts =5/50 ns Performance Criterion B 9.5 Test Procedure Rep. Frequency : 5kHz The measuring process is according to EN /2004 and laboratory internal procedure TKC The EUT and its simulators shall be placed 0.8m high above the ground reference plane.this reference ground plane shall project beyond the EUT by at least 0.1m on all sides and the minimum distance between EUT and all other conductive structure, except the ground plane beneath the EUT, shall be more than 0.5m For AC Mains port The EUT was connected to the power mains by using a coupling device which couples the EFT interference signal to AC power lines, and the length of the power line between the coupling device and the EUT shall be 0.5m or less. Both polarities of the test voltage should be applied during compliance test and the duration of the test can t less than 1min For telecommunication port The I/O interface cable of the EUT is connected to its simulator through a capacitive coupling clamp that is 0.5 meter long. The capacitive coupling clamp is impressed with burst noise for 1min and indirectly couples burst to I/O interface cable. 9.6 Test Results PASSED. (Complied with Criterion A) EUT was tested with the test modes as 7.6 and all the test results are listed in next page.

53 Electrical Fast Transient/Burst Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50 Hz Page 53 of 76 Model No. MS-1736 Temp Humidity 51 Test Mode Working Condition WLAN Ping Test Refer to Section 3.3 Results PASS Inject Place: Power Supply Line Inject Place: I/O Cable Inject Inject Inject Performance Inject Voltage Inject Inject Performance Voltage (kv) Line Time(s) Method Criterion Line (kv) Time(s) Method Criterion L1 +0.5, Direct A I/O +0.25, Clamp A L1-0.5, Direct A I/O -0.25, Clamp A L2 +0.5, Direct A L2-0.5, Direct A L1,L2 +0.5, Direct A L1,L2-0.5, Direct A PE +0.5, Direct A PE -0.5, Direct A L1,PE +0.5, Direct A L1,PE -0.5, Direct A L2,PE +0.5, Direct A L2,PE -0.5, Direct A L1,L2,PE +0.5, Direct A L1,L2,PE -0.5, Direct A Engineer: Hilary

54 Page 54 of SURGE IMMUNITY TEST 10.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. Plus Immunity Test Thermo 1. EMC pro System Electron Corp. Coupling Thermo CM-I/OCD& 2. Decoupling Electron Corp. HS Network 3. Coupling Decoupling Network Thermo Electron Corp Block Diagram of Test Setup Block Diagram of connection between EUT and simulators. Same as section CM-TELCD Test Setup EUT AC Line Coupler/ Decoupler Test Generator 80cm TABLE Telecom. Line To AC Power Supply Network Ground Plane Remark: Test generator includes control center surge combination and coupler Test Standard ETSI EN V1.8.1/2008, Sub clause 9.8 (EN /2006) & ETSI EN V1.3.2/ Test Levels and Performance Criterion Test Level AC mains power input port Telecommunication port Tr/Ts =1.2/50 (8/20) μs Rep. Frequency : 5kHz Line to earth: ± 2kV line to line : ± 1kV Line to earth: ± 0.5kV Performance Criterion B

55 10.5 Test Procedure Page 55 of 76 The measuring process is according to EN /2006 and laboratory internal procedure TKC For AC Mains ports Set up the EUT and test generator as shown on section & For line to line coupling mode, provided a 0.5/1kV 1.2/50 μs current surge (at open-circuit condition) and 8/20 μs current surge to EUT selected points At least 5 positive and 5 negative (polarity) tests with a maximum 1/min repetition rate were conducted during test Different phase angles were done individually Repeat procedure to Except the open-circuit test voltages 0.5kV/1kV/2kV for line to earth coupling mode test For telecommunication ports Set up the EUT and test generator as shown on section & For line to earth coupling mode, provided a 0.5/1kV 1.2/50 μs current surge (at open-circuit condition) and 8/20 μs current surge to EUT selected points At least 5 positive and 5 negative (polarity) tests with a maximum 1/min repetition rate were conducted during test Different phase angles were done individually Record the EUT Operating situation during compliance test and decide the EUT immunity criterion for above each test 10.6 Test Results PASSED. (Complied with Criterion A). EUT was tested with the test modes as 7.6 and all the test results are listed in next page.

56 Page 56 of 76 Surge Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50Hz Model No. MS-1736 Temp Humidity 51 Test Mode Working Condition Location L-N L-PE N-PE L, N-PE WLAN Ping Test Refer to Section 3.3 Results PASS Input and Output AC Power Port Phase No of Performance Polarity Pulse Voltage Angle Pulse Criterion kV, 1.0kV A kV, 1.0kV A kV, 1.0kV A kV,1.0kV A kV,1.0kV A kV, 1.0kV A kV, 1.0kV A kV, 1.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A kV, 1.0kV, 2.0kV A Engineer: Hilary

57 Page 57 of 76 Surge Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50Hz Model No. MS-1736 Temp Humidity 51 Test Mode Working Condition Line T1 R1 T2 R2 T1, R1 T2, R2 WLAN Ping Test Refer to Section 3.3 Results PASS Telecom Line Coupling Polarity No of Performance Pulse Voltage Pulse Criterion kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A kV,1kV N/A T1, R1, T2, kV,1kV N/A R kV,1kV N/A Location Polarity [ ]DC Input and Output Power Port [ˇ ]I/O Signal Cable No of Pulse Pulse Voltage Performance Criterion Differential kV,1kV N/A Mode kV,1kV N/A Common kV A Mode kV A Engineer :Hilary

58 Page 58 of RF COMMON MODE IMMUNITY TEST 11.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Signal Generator Agilent 8648C 3847M Power Amplifier AR KAW NCR NCR 3. Attenuator Agilent 8491B MY CDN-M2 FCC FCC-801-M2-25A 6041 NCR NCR 5. CDN-M3 FCC FCC-801-M3-25A Decoupling Network FCC F-203I-23MM-DCN 196 NCR NCR 7. EM Injection Clamp FCC F-203I-03MM NCR: Non-Calibration Remark 11.2 Block Diagram of Test Setup Block Diagram of connection between EUT and simulators. Same as Section Common Mode Test Setup 0.1m EUT CDN AC Source Ground Reference support Signal Generator Power Amplifier Attenuator Personal Computer Control System EM Clamp Mode Test Setup 50Ω 0.1m < L <0.3m 50Ω CDN 0.1m EUT EM Injection Clamp DCN AE 0.1m CDN Ground Reference support Signal Generator Power Amplifier Attenuator Personal Computer Control System

59 Page 59 of Test Standard ETSI EN V1.8.1/2008, Sub clause 9.5 (EN /2005) & ETSI EN V1.3.2/ Test Levels and Performance Criterion Test Level Frequency 0.15MHz-80MHz Strength 3V Modulation & Signal 80%, 1kHz Performance Criterion A 11.5 Test Procedure The measuring process is according to EN /2005 and laboratory internal procedure TKC For AC Mains port Set up the EUT, CDN and test generators as shown on section The EUT and supporting equipment were placed on an insulating support 0.1m high above a ground reference plane. CDN (coupling and decoupling device) was placed on the ground plane making contact with it at about m from EUT. Cables between CDN and EUT were as short as possible The disturbance signal described below was injected to EUT through CDN The EUT operates within its operational mode(s) under intended climatic conditions after power on The frequency range was swept from 150kHz to 80MHz using 3V signal level, and with the disturbance signal 80% amplitude modulated with a 1kHz sine wave The rate of sweep shall not exceed 1.5*10^3decades/s. Where the frequency was swept incrementally, the step size shall not exceed 1% of the start and thereafter 1% of the preceding frequency value Recording the EUT operating situation during compliance testing and decide the EUT immunity Criterion. For Telecommunication Port Set up the EUT, EM Injection Clamp and test generators as shown on section The EUT and supporting equipment were placed on an insulating support 0.1m high above a ground reference plane. EM Injection Clamp (coupling and decoupling device) was placed on the ground plane making contact with it at about m from EUT. Cables between CDN and EUT were as short as possible The DCN was placed on between AE and EUT, the EUT and AE of power through CDN, CDN terminated with 50Ω at the RF disturbance input port The disturbance signal described below was injected to EUT though EM Injection Clamp Repeat above procedure from to

60 11.6 Test Results PASSED. (Complied with Criterion A) EUT was tested with the test modes as 7.6 and all the test results are listed in next page. Page 60 of 76 RF Common Mode Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230V ; 50Hz Model No. MS-1736 Temp Humidity 56 Test Mode WLAN Ping Test Working Refer to Section 3.3 Results PASS Condition Frequency Range Performance Inject Position Strength (MHz) Criterion Remark 0.15MHz~80MHz Main 3V A 0.15MHz~80MHz I/O 3V A Engineer : Joecy Ma

61 Page 61 of VOLTAGE DIPS AND INTERRUPTIONS IMMUNITY TEST 12.1 Test Equipment Item Type Manufacturer Model No. Serial No. Last Cal. Next Cal. 1. Plus Immunity Test System Thermo Electron Corp Block Diagram of Test Setup Block Diagram of connection between EUT and simulators. Same as section EMC pro Test Setup I/P EUT AC Line O/P Plus Immunity Test System To AC Power Supply Network 12.3 Test Standard ETSI EN V1.8.1/2008, Sub clause 9.7 (EN /2004) & ETSI EN V1.3.2/ Test Levels and Performance Criterion Test Level Performance Criterion 30% reduction, 25cycle B Voltage dips 100% reduction, 1cycle B 100% reduction, 0.5cycle B Voltage interruptions >95% reduction, 250cycle C

62 12.5 Test Procedure Page 62 of 76 The measuring process is according to EN /2004 and laboratory internal procedure TKC Set up the EUT and test generator as shown on section The interruption was introduced at selected phase angles with specified duration. There was a 10s minimum interval between each test event After each test a full functional check was performed before the next test Repeat procedures & for voltage dips, only the test level and duration was changed Record any degradation of performance Test Results PASSED (Voltage interruptions complied with criterion B, Voltage dips Complied with criterion A) EUT was tested with the test modes in Sec 7.6 and all the test results are listed in next page.

63 Voltage Dips and Interruptions Immunity Test Results Applicant Micro-Star Int'L Co., Ltd. Date of Test EUT Notebook PC I/P Volt. AC: 230 V ; 50 Hz Page 63 of 76 Model No. MS-1736 Temp Humidity 51 Test Mode Working Condition Type of Test Voltage Interruption Voltage Dips WLAN Ping Test Refer to Section 3.3 Results PASS Test Voltage Phase Angle % Reduction Period Note: The performance criterion B means the power supply to the EUT is from AC to DC, but it can recover by itself during the test interval. Performance Criterion 0 100% 250 B % 250 B % 250 B % 250 B % 250 B % 250 B % 250 B % 250 B 0 30% 25 A 45 30% 25 A 90 30% 25 A % 25 A % 25 A % 25 A % 25 A % 25 A 0 100% 0.5 A % 0.5 A % 0.5 A % 0.5 A % 0.5 A % 0.5 A % 0.5 A % 0.5 A 0 100% 1.0 A % 1.0 A % 1.0 A % 1.0 A % 1.0 A % 1.0 A % 1.0 A % 1.0 A Engineer :Hilary

64 Page 64 of PHOTOGRAPHS 13.1 Photos of Conducted Emission Measurement Front View of Conducted Measurement for AC mains port Side View of Conducted Measurement for AC mains port

65 Page 65 of 76 Front View of Conducted Measurement for Telecommunication port Side View of Conducted Measurement for Telecommunication port

66 Page 66 of Photos of Radiated Emission Measurement For 30MHz~1GHz (At No.1 10m Semi-Anechioc Chambera) Front View of Radiated Disturbance Measurement Back View of Radiated Disturbance Measurement

67 Page 67 of 76 Test Mode: WALAN Ping test Setup with Maximum Detected Emission at Horizontal Polarization Setup with Maximum Detected Emission at Vertical Polarization

68 Page 68 of 76 For 1GHz~6GHz (At 3m Semi-Anechioc Chambera) Front View of Radiated Disturbance Measurement Back View of Radiated Disturbance Measurement

69 Page 69 of Photos of Power Harmonic and Flicker Measurement 13.4 Photos of Electrostatic Discharge Immunity Test Air Discharge

70 Page 70 of 76 VCP & HCP 13.5 Photos of RF Electromagnetic Field Immunity Test Front View (80MHz~1GHz)

71 Page 71 of 76 Back View (80MHz~1GHz) Front View (1400MHz~2700MHz)

72 Page 72 of 76 Back View (1400MHz~2700MHz) 13.6 Photos of Fast Transient common mode Immunity test For AC Mains port

73 Page 73 of Photos of Surge Immunity Test For Telecommunication port For AC Mains port

74 Page 74 of 76 For Telecommunication port 13.8 Photos of RF Common Mode Immunity Test For AC Mains port

75 Page 75 of 76 For Telecommunication port 13.9 Photos of Voltage Dips and Interruptions Immunity Test

76 Page 76 of Photos of host PC for RJ45 ping test For Conducted & Radiated Measurement Photos of host PC for WLAN ping test

77 APPENDIX APPENDIX Photos of EUT

78 APPENDIX-Page 1 of3 Figure 1 General Appearance (Top View) Figure 2 General Appearance (Bottom View)

79 APPENDIX-Page 2 of3 Figure 3 General Appearance (Side View) Figure 4 General Appearance (Side View)

80 APPENDIX-Page 3 of3 Figure 5 WLAN (Atheros/AR5B95/S T46, Front View) Figure 6 WLAN (Atheros/AR5B95/S T46, Back View)

EMC TEST REPORT For Suzhou Omnik New Energy Co., Ltd Solar Inverter Model No. : (1) Omniksol-3K-TL (2) Omniksol-4K-TL Brand : Omnik

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