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1 Reference No.: A Report No.:RADA Page:1 of 71 Product Name: Model No.: Applicant: Personal Computer MS-9A15 MICRO-STAR INT'L CO., LTD. No.69, Lide St., Jhonghe City, Taipei County 235, Taiwan Date of Receipt: Feb. 13, 2009 Finished date of Test: Feb. 18, 2009 Applicable Standards: Radio Spectrum Matters Electromagnetic Compatibility ETSI EN V1.7.1:2006 EN V1.8.1:2008 EN V1.3.2:2008 We, Spectrum Research & Testing Laboratory Inc., hereby certify that one sample of the above was tested in our laboratory with positive results according to the above-mentioned standards. The records in the report are an accurate account of the results. Details of the results are given in the subsequent pages of this report. Tested By: (Shunm Wang), Date: Approved By: (Johnson Ho, Director), Date: Lab Code:

2 Page:2 of 71 TABLE OF CONTENTS 1. DOCUMENT POLICY AND TEST STATEMENT DOCUMENT POLICY TEST STATEMENT EUT MODIFICATION DESCRIPTION OF EUT AND TEST MODE GENERAL DESCRIPTION OF EUT DESCRIPTION OF EUT INTERNAL DEVICE DESCRIPTION OF TEST MODE DESCRIPTION OF SUPPORT UNIT EUT OPERATING CONDITION DESCRIPTION OF APPLIED STANDARDS TECHNICAL CHARACTERISTICS TEST FOR TRANSMITTER PART EFFECTIVE ISOTROPICALLY RADIATED POWER EFFECTIVE ISOTROPICALLY RADIATED POWER LIMIT TEST EQUIPMENT TEST SETUP TEST PROCEDURE TEST RESULT PEAK POWER DENSITY PEAK POWER DENSITY LIMIT TEST EQUIPMENT TEST SETUP TEST PROCEDURE TEST RESULT FREQUENCY RANGE FREQUENCY RANGE LIMIT TEST EQUIPMENT TEST PROCEDURES TEST SETUP TEST RESULT SPURIOUS EMISSION FROM TRANSMITTER LIMIT TEST EQUIPMENT TEST SETUP TEST PROCEDURE TEST RESULT CONDUCTED EMISSION TEST LIMIT TEST EQUIPMENT TEST PROCEDURE TEST SETUP TEST RESULT CURRENT HARMONICS TEST...38

3 Page:3 of LIMIT FOR CLASS A EQUIPMENT TEST EQUIPMENT TEST SETUP TEST PROCEDURE DESCRIPTION OF SUPPORT UNIT EUT OPERATING CONDITION SUMMARY OF CURRENT HARMONICS TEST RESULT VOLTAGE FLUCTUATIONS LIMIT TEST EQUIPMENT TEST PROCEDURE TEST SETUP DESCRIPTION OF SUPPORT UNIT EUT OPERATING CONDITION SUMMARY OF VOLTAGE FLUCTUATIONS TEST RESULT ELECTROSTATIC DISCHARGE TEST EQUIPMENT TEST PROCEDURE TEST SET-UP TEST CONDITION AND PERFORMANCE GENERAL PERFORMANCE CRITERIA DESCRIPTION TEST RESULT RADIATED IMMUNITY TEST TEST EQUIPMENT TEST PROCEDURE TEST SETUP TEST CONDITION GENERAL PERFORMANCE CRITERIA DESCRIPTION TEST RESULT ELECTRICAL FAST TRANSIENT / BURST IMMUNITY TEST TEST EQUIPMENT TEST PROCEDURE TEST SET-UP TEST CONDITION/PERFORMANCE CRITERIA SUMMARY OF TEST RESULT INDUCED RF FIELDS (CONDUCTED SUSCEPTIBILITY) TEST TEST EQUIPMENT TEST PROCEDURE TEST SET-UP TEST CONDITION / PERFORMANCE CRITERIA SUMMARY OF TEST RESULT SURGE TEST TEST EQUIPMENT TEST PROCEDURE TEST SET-UP... 60

4 Page:4 of DESCRIPTION OF SUPPORT UNIT EUT OPERATING CONDITION TEST CONDITION / PERFORMANCE CRITERIA SUMMARY OF TEST RESULT VOLTAGE DIPS, INTERRUPTS TEST TEST EQUIPMENT TEST PROCEDURE TEST SET-UP DESCRIPTION OF SUPPORT UNIT EUT OPERATING CONDITION TEST CONDITION / PERFORMANCE CRITERIA SUMMARY OF TEST RESULT PHOTOS OF TESTING TERMS OF ABRIVATION...71

5 Page:5 of DOCUMENT POLICY AND TEST STATEMENT 1.1 DOCUMENT POLICY - The report shall not be reproduced except in full, without the written approval of SRT Lab, Inc. - The report must not be used by the client to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the Federal Government. 1.2 TEST STATEMENT - The test results in the report apply only to the unit tested by SRT Lab. - There was no deviation from the requirements of test standards during the test. - AC power source, 230 VAC/50 Hz, was used during the test. 1.3 EUT MODIFICATION - No modification in SRT Lab.

6 Page:6 of DESCRIPTION OF EUT AND TEST MODE 2.1 GENERAL DESCRIPTION OF EUT PRODUCT Personal Computer MODEL NO. MS-9A15 POWER SUPPLY DC 3.3V CABLE N/A FREQUENCY BAND 2.4GHz ~ 2.5GHz CARRIER FREQUENCY 2.412GHz ~ 2.484GHz NUMBER OF CHANNEL 14 CHANNEL SPACING 5MHz RATED RF OUTPUT POWER 14 dbm(erp) MODULATION TYPE OFDM MODE OF OPERATION Half Duplex BIT RATE OF TRANSMISSION 54Mbps ANTENNA TYPE Dipole OPERATING TEMPERATURE RANGE 0 ~ 70 C NOTE : 1. For more detailed information, please refer to the EUT s specification or user s manual provided by manufacturer. 2.2 DESCRIPTION OF EUT INTERNAL DEVICE DEVICE BRAND / MAKER MODEL REMARK CPU INTEL ATOM N GHz RAM Samsung M470T2864QZ3-CE6 1GB Motherboard MSI MS-N0111 N/A HDD TOSHIBA MK1652GSX 160GB

7 Page:7 of DESCRIPTION OF TEST MODE 11 channels are provided by EUT of wireless. The 3 channels of lower, medium and higher were chosen for test. There are test modes for each test configuration as below: Mode Modulation Type Channel Frequency 1 CH IEEE g OFDM CH CH CH IEEE b CCK CH CH Standby N/A N/A N/A 8 Link N/A N/A N/A NOTE : 1. Below 1 GHz, the channel 1, 6 and 11 were pre-tested in chamber. The channel 11, worst case one, was chosen for conducted and radiated emission test. 2. Above 1 GHz, the channel 1, 6 and 11 were tested individually. 2.4 DESCRIPTION OF SUPPORT UNIT The EUT was configured by the requirement of EN 55022:2006. All interface ports were connected to the appropriate support units via specific cables. The support units and cables are listed below. NO DEVICE BRAND MODEL CABLE 1 USB Keyboard Acer 6511-UV 1.5 m shielded data cable. 2 USB Mouse Logitech M-BE58 1.5m shielded data cable with one core 3 USB HDD TERASYS F12-U 1.5m shielded data cable. 4 CRT Monitor SAMSUNG PG17IS 1.8m unshielded power cord 1.5m shielded data cable. with one core. 5 Earphone Ergotech ET-E m unshielded data cable. 6 XD card Toshiba DPC-M2GB 2GB NOTE : For the actual test configuration, please refer to the photos of testing.

8 Page:8 of EUT OPERATING CONDITION 1.Setup the EUT and all peripheral devices. 2.Turn on the power of all equipment and EUT. 3.We will use the following programs under Windows Home server system to test EUT. 3.1 "EMC Test" program. EUT will read data from storage devices and then writes the data into storage devices. PC sent "H" pattern signal and detect following peripherals directly or via EUT: - Keyboard - Mouse - Monitor - HDD 3.2"Ping" program Use the ping command to link LAN port and local simulation EUT through Ethernet hub. 3.3 Media Player program Run Windows Media Player program to test Video and Audio devices. 3.4"MyHwin" program PC sends "H" pattern signal to monitor and monitor will show "full screen H pattern" 3. DESCRIPTION OF APPLIED STANDARDS The EUT is a kind of wireless product. According to the specifications provided by the applicant, it must comply with the requirements of the following standards: ETSI EN V1.7.1:2006 EN V1.8.1: EN 55022:2006, Class B EN V1.3.2: IEC : EN 55024:1998+A1:2001+A2: IEC :1995+A1:2001+A2: IEC : IEC : IEC : IEC : IEC : IEC :2004 All tests have been performed and recorded as the above standards.

9 Page:9 of 71 4 TECHNICAL CHARACTERISTICS TEST FOR TRANSMITTER PART 4.1 EFFECTIVE ISOTROPICALLY RADIATED POWER EFFECTIVE ISOTROPICALLY RADIATED POWER LIMIT DSSS FHSS PK. 200mW(23dBm) 200mW(23dBm) AV. 100mW(20dBm) 100mW(20dBm) Note: The was calculated from power(mw). Formula: (0) dbm=10 log 1 mw TEST EQUIPMENT The following test equipment was used for the test: EQUIPMENT/ FACILITIES TEMPERATURE & HUMIDITY CHAMBER SPECIFICATIONS MANUFACTURER -70 to 180 C 0 to 100% KSON HORN ANTENNA 1GHz to 18GHz EMCO HORN ANTENNA 1GHz to 18GHz EMCO POWER METER N/A BOOTON POWER SENSOR DC-18GHz 0.3 µw-100mw 50 Ω BOOTON DETECTOR 2GHz-18GHz OMNIYIG OSCILLOSCOPE 100MHz, 400V HP SIGNAL GENERATOR DC POWER SUPPLY 1GHz-20GHz 0 to 20Vdc 0 to 50A ROHDE& SCHWARZ Lurich MODEL#/ SERIAL# THS-D4H+-150/ / / A/ EMC/ DT9A4P/ A/ US SMR20/ RPS-1512MB/ DUE DATE OF CAL. & CAL. CENTER NOV DEC NOV MAY 2009 NOV BOOTON NOV SRT APR HP, ITRI JUN Calibrated by multimeter NOTE : The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA.

10 Page:10 of TEST SETUP The EUT was placed on a turntable at a fully anechoic chamber (see configure below). It was adjusted to the maximum output power during the test. Power meter Oscilloscope Detector The tested unit was stayed in a Temperature & Humidity chamber and supplied with a power source for extreme condition (see configure below). It was adjusted to the maximum output power during the test. Power meter Oscilloscope Detector Temperature & Humidity Chamber EUT Power supply TEST PROCEDURE Please refer to Subclause and of EN V1.7.1:2006.

11 Page:11 of TEST RESULT Temperature: 22 C Humidity: 66%RH Tested By: Shunm Wang Tested Mode: IEEE b Tested Date: Feb. 16, 2009 Modulation Type: CCK CHANNEL CH1 CH6 CH8 CH11 FREQUENCY 2412MHZ 2437MHz 2447MHz 2462MHz Temperature PK AV PK AV PK AV PK AV ( C) Norm Low High Note: Measurement Uncertainty: ±0.5dB Temperature: 22 C Humidity: 66%RH Tested By: Shunm Wang Tested Mode: IEEE g Tested Date: Feb. 16, 2009 Modulation Type: OFDM CHANNEL CH1 CH6 CH8 CH11 FREQUENCY 2412MHZ 2437MHz 2447MHz 2462MHz Temperature PK AV PK AV PK AV PK AV ( C) Norm Low High Note: Measurement Uncertainty: ±0.5dB

12 Page:12 of PEAK POWER DENSITY PEAK POWER DENSITY LIMIT DSSS FHSS LIMIT 10mW/1MHz(10dBm/1MHz) 100mW/100kHz(20dBm/100kHz) NOTE : The was calculated from power(mw). Formula: (0) dbm=10 log 1 mw TEST EQUIPMENT The following test equipment was used for the test: EQUIPMENT/ FACILITIES SPECTRUM SPECIFICATIONS MANUFACTURER 9kHz-40GHz ROHDE & SCHWARZ POWER METER N/A BOONTON POWER SENSOR DC-18GHz 0.3μW-100mW 50Ω BOONTON MODEL#/ SERIAL# FSP40/ A/ EMC/ DUE DATE OF CAL. & CAL. CENTER SEP MAY 2009 JUN NOTE : The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA.

13 Page:13 of TEST SETUP The tested unit was placed on the turntable at a fully anechoic chamber and supplied with nominated power source. It was adjusted to the maximum output power during the test. Power meter Spectrum IF OUTPUT TEST PROCEDURE Please refer to Subclause of EN V1.7.1:2006

14 Page:14 of TEST RESULT Temperature: 22 C Humidity: 68%RH Spectrum Detector: PK. Tested Mode: IEEE b Tested By: Shunm Wang Modulation Type: CCK Tested Date: Feb. 16, 2009 CHANNEL Antenna Limit POWER /khz FREQUENCY(MHZ) polarization (dbm/khz) CH1:2412MHz -9.83/1MHz H 10/1MHz CH6: 2437MHz -9.02/1MHz H 10/1MHz CH8: 2447MHz -9.13/1MHz H 10/1MHz CH11: 2462MHz -9.05/1MHz H 10/1MHz Measurement uncertainty +/-3dB Temperature: 23 C Humidity: 62%RH Spectrum Detector: PK. Tested Mode: IEEE g Tested By: Shunm Wang Modulation Type: OFDM Tested Date: Feb. 16, 2009 CHANNEL Antenna Limit POWER /khz FREQUENCY(MHZ) polarization (dbm/khz) CH1:2412MHz /1MHz H 10/1MHz CH6: 2437MHz /1MHz H 10/1MHz CH8: 2447MHz /1MHz H 10/1MHz CH11: 2462MHz /1MHz H 10/1MHz Measurement uncertainty +/-3dB

15 Page:15 of FREQUENCY RANGE FREQUENCY RANGE LIMIT COUNTRY LIMIT European Union 2400~ FRANCE ~ TEST EQUIPMENT The following test equipment was used for the test: EQUIPMENT/ FACILITIES SPECTRUM TEMPERATURE & HUMIDITY CHAMBER SPECIFICATIONS MANUFACTURER 9kHz-40GHz -70 to 180 C 0 to 100% ROHDE & SCHWARZ KSON MULTIMETER N/A HP DC POWER SUPPLY 0 to 20Vdc 0 to 50A Lurich MODEL#/ SERIAL# FSP40/ THS-D4H+-150/ 1801 E2377A/ 2927J05810 RPS-1512MB/ DUE DATE OF CAL. & CAL. CENTER SEP NOV AUG Calibrated by multimeter NOTE : The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA TEST PROCEDURES Please refer to Subclause of EN V1.7.1:2006.

16 Page:16 of TEST SETUP The EUT was s placed on a turntable at a fully anechoic chamber (see configure below). It was adjusted to the maximum output power during the test. Spectrum Then tested unit was stayed in a Temperature & Humidity chamber and supplied with power source for extreme condition(see configure below). It was adjusted to the maximum output power during the test. Receiver or Spectrum Temperature & Humidity Chamber EUT Power supply

17 Page:17 of TEST RESULT Temperature: 22 C Humidity: 68%RH Tested By: Shunm Wang Tested Mode: IEEE g Tested Date: Feb. 16, 2009 Modulation Type: OFDM For European Union: Temperature ( C) Frequency lower(fl) Frequency higher(fh) Norm Low High Measurement uncertainty +/- 1x10-5 For France: Temperature ( C) Frequency lower(fl) Frequency higher(fh) Norm Low High Measurement uncertainty +/- 1x10-5

18 Page:18 of 71 Temperature: 22 C Humidity: 64%RH Tested By: Shunm Wang Tested Mode: IEEE b Tested Date: Feb. 16, 2009 Modulation Type: CCK For European Union: Temperature ( C) Frequency lower(fl) Frequency higher(fh) Norm Low High Measurement uncertainty +/- 1x10-5 For France: Temperature ( C) Frequency lower(fl) Frequency higher(fh) Norm Low High Measurement uncertainty +/- 1x10-5

19 Page:19 of SPURIOUS EMISSION FROM TRANSMITTER LIMIT Narrowband spurious emission: Frequency Range Limit Limit in operating in standby 30MHz to 1GHz -36dBm -57dBm Above 1GHz to 12.75GHz -30dBm -47dBm 1.8GHz to 1.9GHz 5.15GHz to 5.3GHz -47dBm -47dBm Wideband spurious emission Frequency Range Limit Limit in operating in standby 30MHz to 1GHz -86dBm/Hz -107dBm/Hz Above 1GHz to 12.75GHz -80dBm/Hz -97dBm/Hz 1.8GHz to 1.9GHz 5.15GHz to 5.3GHz -97dBm/Hz -97dBm/Hz NOTE : For measuring emissions that exceed the level of 6 db below the applicable limit, the resolution bandwidth shall be switched to 30 khz and the span shall be adjusted accordingly. If the level does not change by more than 2 db, it is a narrowband emission; the observed value shall be recorded in the test report. If the level changes by more than 2 db, the emission is a wideband emission and its level shall be measured and recorded in the test report. The limit in standby mode is same as receiver mode.

20 Page:20 of TEST EQUIPMENT The following test equipment was used for the test: EQUIPMENT/ FACILITIES EMI TEST RECEIVER SPECTRUM BI-LOG ANTENNA PRE-AMPLIFIER HORN ANTENNA OATS SPECIFICATIONS 9kHz TO 2.75 GHz 9kHz-40GHz 25 MHz TO 2 GHz 1 GHz TO 26.5 GHz 1 GHz TO 18 GHz 3 10 M MEASUREMENT MANUFACTURER ROHDE & SCHWARZ ROHDE & SCHWARZ EMCO HP EMCO SRT COAXIAL CABLE 25M TIMES FILTER 2 LINE, 30A FIL.COIL MODEL#/ SERIAL# ESCS30/ /012 FSP40/ B/ B/ 3008A / SRT-1 J400/ #25M FC-943/ 869 DUE DATE OF CAL. & CAL. CENTER OCT SEP NOV SEP NOV NOV SRT AUG NCR NOTE : The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA.

21 Page:21 of TEST SETUP The tested unit was placed on a turntable at an open area test site and supplied with nominated power source, when the emission frequency was tested lower than 1GHz (see configure below). It was adjusted to the maximum output power during the test. The EUT was placed on a turntable at a fully anechoic chamber when the emission frequency was tested above 1GHz (see configure below). It was adjusted to the maximum output power during the test. Spectrum Pre-amplifier

22 4.4.4 TEST PROCEDURE Page:22 of 71 Please refer to Subclause of EN V1.7.1: TEST RESULT Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: Standby Tested Date: Feb. 19, 2009 Modulation Type: N/A Tested Result: Pass Tested Channel: N/A Antenna Polarization: Horizontal Cable Antenna Reading Emission Frequency Limit Margin AZ EL Loss Data Level ( o ) (m) (db/m) Antenna Polarization: Vertical Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Cable Loss. 4. The field strength of other emission frequencies were very low against the limit. AZ ( o ) EL (m)

23 Page:23 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: Link Frequency Range: 30M 1GHz Receiver Detector: Q.P. or AV. Modulation Type: N/A Tested Result: Pass Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) Antenna Polarization: Vertical Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Cable Loss. 4. The field strength of other emission frequencies were very low against the limit.

24 Page:24 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE g Frequency Range: 30M 1GHz Modulation Type: OFDM Receiver Detector: Q.P. or AV. Tested Channel: CH11 Tested Result: Pass Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) Antenna Polarization: Vertical Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Cable Loss. 4. The field strength of other emission frequencies were very low against the limit.

25 Page:25 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE b Frequency Range: 30M 1GHz Modulation Type: CCK Receiver Detector: Q.P. or AV. Tested Channel: CH11 Tested Result: Pass Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) Antenna Polarization: Vertical Frequency Cable Loss Antenna (db/m) Reading Data Emission Level Limit Margin AZ ( o ) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Cable Loss. 4. The field strength of other emission frequencies were very low against the limit.

26 Page:26 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE g Frequency Range: 1 25GHz Modulation Type: OFDM Receiver Detector: PK. or AV. Tested Channel: CH01 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

27 Page:27 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE g Frequency Range: 1 25GHz Modulation Type: OFDM Receiver Detector: PK. or AV. Tested Channel: CH06 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

28 Page:28 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE g Frequency Range: 1 25GHz Modulation Type: OFDM Receiver Detector: PK. or AV. Tested Channel: CH11 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

29 Page:29 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE b Frequency Range: 1 25GHz Modulation Type: CCK Receiver Detector: PK. or AV. Tested Channel: CH01 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

30 Page:30 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE b Frequency Range: 1 25GHz Modulation Type: CCK Receiver Detector: PK. or AV. Tested Channel: CH06 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

31 Page:31 of 71 Temperature: 23 C Humidity: 68 %RH Tested By: Shunm Wang Tested Mode: IEEE b Frequency Range: 1 25GHz Modulation Type: CCK Receiver Detector: PK. or AV. Tested Channel: CH11 Measured Distance: 3m Tested Date: Feb. 19, 2009 Antenna Polarization: Horizontal Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) Antenna Polarization: Vertical Frequency Correct Antenna (db/m) Reading Emission Limit Margin AZ (o) EL (m) NOTE : 1. Measurement uncertainty is +/-3.7dB. 2. "*": Measurement does not apply for this frequency. 3. Emission Level = Reading Value + Ant. + Correct. 4. The field strength of other emission frequencies were very low against the limit. 5. Correct = Cable Loss - Pre-amplifier.

32 Page:32 of CONDUCTED EMISSION TEST 5.1 LIMIT Class A (dbµv) Class B (dbµv) Frequency Quasi-peak Average Quasi-peak Average NOTE : 1. The lower limit shall apply at the transition frequencies. 2. The limit decreases in line with the logarithm of the frequency in the range of 0.15 to 0.50 MHz. 5.2 TEST EQUIPMENT The following test equipment was used for the test: EQUIPMENT/ FACILITIES EMI TEST RECEIVER SPECIFICATIONS MANUFACTURER 9 khz TO 30 MHz ROHDE & SCHWARZ LISN 50 µh, 50 ohm FCC LISN 50µH, 50 ohm FCC 50 OHM TERMINATOR COAXIAL CABLE 5M 50 ohm HP TIMES FILTER 2 LINE, 30A FIL.COIL GROUND PLANE GROUND PLANE 2.3M (H) x 2.4M (W) 2.4M (H) x 2.4M (W) MODEL#/ SERIAL# ESHS30 / /008 FCC-LISN / R24-BNC / A / #2 EQM-0159 / #5-5m FC-943 / 771 DUE DATE OF CAL. & CAL. CENTER SEP OCT JUN OCT AUG SRT NCR SRT N/A NCR SRT N/A NCR NOTE: The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA.

33 Page:33 of TEST PROCEDURE According to EN 55022:2006, EN V1.3.2: TEST SETUP NOTE: 1. The EUT was put on a wooden table with 0.8m heights above ground plane, and 0.4m away from reference ground plane (> 2mx2m). 2. For the actual test configuration, please refer to the photos of testing. 3. The serial no. of the LISN connected to EUT is The serial no. of the LISN connected to support units is

34 Page:34 of TEST RESULT Temperature: 22 C Humidity: 58 %RH Frequency Range: MHz Tested Mode: Standby Receiver Detector: Q.P. and AV. Modulation Type: N/A Tested By: Shunm Wang Tested Channel: N/A Tested Date: Feb. 17, 2009 Power Line Measured : Line Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV Power Line Measured : Neutral Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV NOTE : 1. Measurement uncertainty is +/- 2dB 2. Emission level = Reading valus + Correction factor 3. Correction = Cable loss + Insertion loss of LISN 4. Margin value = Emission level - Limit 5. The emission of other frequencies was very low against the limit. 6. "-": The Quasi-peak reading value also meets average limit and measurement with the average detector is unnecessary.

35 Page:35 of 71 Temperature: 22 C Humidity: 58 %RH Frequency Range: MHz Tested Mode: Link Receiver Detector: Q.P. and AV. Modulation Type: N/A Tested By: Shunm Wang Tested Channel: N/A Tested Date: Feb. 17, 2009 Power Line Measured : Line Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV Power Line Measured : Neutral Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV NOTE : 1. Measurement uncertainty is +/- 2dB 2. Emission level = Reading valus + Correction factor 3. Correction = Cable loss + Insertion loss of LISN 4. Margin value = Emission level - Limit 5. The emission of other frequencies was very low against the limit. 6. "-": The Quasi-peak reading value also meets average limit and measurement with the average detector is unnecessary.

36 Page:36 of 71 Temperature: 22 C Humidity: 58 %RH Frequency Range: MHz Tested Mode: Tx Receiver Detector: Q.P. and AV. Modulation Type: OFDM Tested By: Shunm Wang Tested Channel: CH 11 Tested Date: Feb. 17, 2009 Power Line Measured : Line Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV Power Line Measured : Neutral Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV NOTE : 1. Measurement uncertainty is +/- 2dB 2. Emission level = Reading valus + Correction factor 3. Correction = Cable loss + Insertion loss of LISN 4. Margin value = Emission level - Limit 5. The emission of other frequencies was very low against the limit. 6. "-": The Quasi-peak reading value also meets average limit and measurement with the average detector is unnecessary.

37 Page:37 of 71 Temperature: 22 C Humidity: 58 %RH Frequency Range: MHz Tested Mode: Tx Receiver Detector: Q.P. and AV. Modulation Type: CCK Tested By: Shunm Wang Tested Channel: CH 11 Tested Date: Feb. 17, 2009 Power Line Measured : Line Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV Power Line Measured : Neutral Freq. Correct. Reading Value (dbμv) Emission Level (dbμv) Limit (dbμv) Margin Q.P. AV. Q.P. AV. Q.P. AV. Q.P. AV NOTE : 1. Measurement uncertainty is +/- 2dB 2. Emission level = Reading valus + Correction factor 3. Correction = Cable loss + Insertion loss of LISN 4. Margin value = Emission level - Limit 5. The emission of other frequencies was very low against the limit. 6. "-": The Quasi-peak reading value also meets average limit and measurement with the average detector is unnecessary.

38 Page:38 of CURRENT HARMONICS TEST 6.1 LIMIT For Class A Equipment EVEN HARMONICS ODD HARMONICS HARMONICS HARMONICS LIMIT (Amp.) ORDER ORDER LIMIT (Amp.) < n < x 8 / n < n < x 8 / n For Class D Equipment MAX.. permissible Harmonics Order Max. permissible harmonics harmonics current per watt n current (A) (ma/w) Odd Harmonics only n / n 0.15 x 15 / n NOTE: 1. Class A and Class D are judged by test equipment automatically as per Section 5 of EN : The above limits for Class D equipment are for all applications having an active input power > 75 W. No limits apply for equipment whose active input power is lower than 75W.

39 Page:39 of TEST EQUIPMENT EQUIPMENT / FACILITIES MANUFACTURER MODEL # / SERIAL # Harmonic/Flicker-Test System EMC PARTNER HAR P / 081 DUE DATE OF CAL. & CAL. CENTER AUG TEST SETUP To utility power Harmonics/ Flicker tester EUT Auxiliary Equipment NOTE : 1. The EUT system was put on a wooden table with 0.8m high. 2. For the actual test configuration, please refer to the photos of testing. 6.4 TEST PROCEDURE According to EN :2006, EN V1.8.1: DESCRIPTION OF SUPPORT UNIT Same as section 2.4 of this report. 6.6 EUT OPERATING CONDITION Same as section 2.5 of this report.

40 Page:40 of SUMMARY OF CURRENT HARMONICS TEST RESULT Temperature: 23 C Humidity: 63% RH Fundamental Current: Voltage: 0.184A 233.1V Max. Power Consumption: 7.117W Power : Tested Mode: Link Tested By: Shunm Wang Test Date: Feb. 17, 2009 Maximum Reading Data: Odd Harm. Order Reading Data (A) Limit (A) Test Result PASS NOTE: 1. Measurement uncertainty is +/-0.003A 2. For more detail, please see the attached file back on the report file.

41 Page:41 of VOLTAGE FLUCTUATIONS 7.1 LIMIT Short-team flicker (P st ) : 1.0 Long-term flicker (P lt ) : 0.65 Relative steady-state voltage change (D c ) : 3.3% Relative voltage change characteristic (D (t) ) > 3.3% ; (T D(t) ) : 500 ms Maximum relative voltage change (D max ) : 4% TEST ITEM LIMIT NOTE P st 1.0 P st means short-term flicker indicator. P lt 0.65 P lt means long-term flicker indicator. T D(t) (ms) 500 T D(t) means maximum time that D (t) exceeds 3.3 %. D max (%) 4% D max means maximum relative voltage change. D c (%) 3.3% D c means relative steady-state voltage change 7.2 TEST EQUIPMENT EQUIPMENT / FACILITIES MANUFACTURER MODEL # / SERIAL # Harmonic/Flicker-Test System EMC PARTNER HAR P / 081 DUE DATE OF CAL. & CAL. CENTER AUG TEST PROCEDURE According to EN :1995+A1:2001+A2:2005, EN V1.8.1: TEST SETUP To utility power Harmonics/ Flicker tester EUT Auxiliary Equipment NOTE : 1. The EUT system was put on a wooden table with 0.8m high. 2. For the actual test configuration, please refer to the photos of testing. 7.5 DESCRIPTION OF SUPPORT UNIT Same as section 2.4 of this report. 7.6 EUT OPERATING CONDITION Same as section 2.5 of this report.

42 Page:42 of SUMMARY OF VOLTAGE FLUCTUATIONS TEST RESULT Temperature: 23 C Humidity: 63% RH Input Voltage: Ampere: 232.9Vrms 0.171Ams Observation Period: 2Hr Power : Tested Mode: Link Tested By: Shunm Wang Test Date: Feb. 17, 2009 Test Result: TEST PARAMETER MEASUREMENT VALUE LIMIT TEST RESULT P st PASS P lt PASS T D(t) (ms) PASS D max (%) 0.00% 4% PASS D c (%) 0.06% 3.30% PASS NOTE: 1. P st means short-term flicker indicator. 2. P lt means long-term flicker indicator. 3. T D(t) means maximum time that D(t) exceeds 3.3 %. 4. D max means maximum relative voltage change. 5. D c means relative steady-state voltage change. 6. N/A: Not applicable.. 7. Measurement uncertainty: (1) P st : +/-0.02P.U. (2) P lt : +/-0.02P.U. (3). T D(t) : +/-0.02ms (4) D max :+/-0. 02%(5).D c: +/-0.02%. 8. For more detail, please see the attached file back on the report file.

43 Page:43 of ELECTROSTATIC DISCHARGE 8.1 TEST EQUIPMENT EQUIPMENT / FACILITIES ESD SIMULATOR HCP (1.6M x 0.8M) VCP (0.5M x 0.5M) GROUND PLANE (3.4M x 2.4M) MANUFACTURER NOISEKEN SRT SRT MODEL # / SERIAL # ESS-100L(A)/TC-815P / 8099C02238/7099C02 WITH TWO 470k OHM CABLE WITH TWO 470k OHM CABLE DUE DATE OF CAL. & CAL. CENTER NOV NCR NCR SRT N/A NCR NOTE: The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA. 8.2 TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2:2008.

44 Page:44 of TEST SET-UP ESD Gun Vertical Coupling Plane 10 cm Insulating Support EUT System 470kΩ Horizontal Coupling Plane Wooden Table 470kΩ Return Cable Ground Reference Plane NOTE : 1. The wooden table should be 0.8m high for table top EUT and 01.m for floor-standing EUT. 2. For the actual test configuration, please refer to the photos of testing. 3. A distance of 1m minimum was provided between EUT and walls / other metallic structure.

45 Page:45 of TEST CONDITION AND PERFORMANCE 1. Test condition: (1) R-C Network: 330ohm, 150pF (2) Test level: Air Discharge: ±2kV, ±4kV, ±8kV Contact discharge: ±2kV, ±4kV Hcp discharge : ±2kV, ±4kV Vcp discharge : ±2kV, ±4kV (3) Discharge mode : Single discharge (4) Discharge period: at least 1 second (5) Discharge polarity : Postive and Negative (6) Number of discharge: Minimum 50 times at each test point of contact disdarge and at least 200 times of contact discharge to EUT in total. Minimum 10 times at each test area of air discharge selected. 2. Standard requirement: Criterion B 8.5 GENERAL PERFORMANCE CRITERIA DESCRIPTION Class of SRD equipment CLASSIFICATION OF SRD EQUIPMET Risk assessment of receiver performance Highly reliable SRD communication media; e.g. serving human life inherent systems(may result in a physical risk to a person) Medium reliable SRD communication media; e.g. causing inconvenience to persons, which cannot simply be overcome by other means. Standard reliable SRD communication media; e.g. inconvenience to persons, which can simply be overcome by other means (e.g. manual)

46 Page:46 of The Requirement of Performance Criteria Performance criteria for Criterion A of the applicable class shall continuous phenomena applied apply to transmitters (CT) Performance criteria for Criterion B of the applicable class shall transient phenomena applied to apply transmitters (TT) Performance criteria for Criterion A of the applicable class shall continuous phenomena applied apply to receivers (CR) Performance criteria for Criterion B of the applicable class shall transient phenomena applied to apply receivers (TR) The phenomena allowed during and after test in each criterion are clearly stated in the following table Class 1 SRD equipment Criteria During test After test A B Operate as intended. No loss of function. For equipment type II the minimum performance shall be 12dB SINAD No unintentional responses May be loss of function (one or more) No unintentional responses Operate as intended. For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions

47 Page:47 of 71 Class 2 SRD equipment Criteria During test After test A B Operate as intended. No loss of function. For equipment type II the minimum performance shall be 6dB SINAD No unintentional responses May be loss of function (one or more) No unintentional responses Operate as intended. For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions Class 3 SRD equipment Criteria During test After test Operate as intended, for equipment type II the communication link may be lost, but shall be recoverable by May be loss of function (one or more) A and B user No unintentional responses No degradation of performance Lost functions shall be self-recoverable

48 Page:48 of TEST RESULT Temperature: 24 C Humidity: 55 % RH Tested Mode: Link Tested By: Shunm Wang Atmospheric Air Pressure: kpa Tested Date: Feb. 18, 2009 Test Result: Criterion A pass SEVERITY LEVEL AIR DISCHARGE COUPLING MODE & TEST OBSERVATION CONTACT DISCHARGE HCP ±2kV A A ±4kV A ±8kV A NOTE: Description of test observation: A: There was no change compared with initial operation during the test. NR: No requirement. VCP Description of test points: 1. HCP. ( 4 Sides ) 2. VCP. ( 4 Sides ) 3. Screw 4. Case 5. Antenna

49 Page:49 of RADIATED IMMUNITY TEST 9.1 TEST EQUIPMENT EQUIPMENT / FACILITIES MANUFACTURER MODEL # / SERIAL # SMY01 / SIGNAL GENERATOR R&S /019 ANTENNA SCHAFFNER CHASE CBL6141A / 4181 FIELD SENSOR POWER AMPLIFIER AMPLIFIER DUAL DIRECTIONAL COUPLER ISOTROPIC E FIELD PROBE POWER SENSOR POWER SENSOR DUAL DIRECTIONAL COUPLER ANECHOIC CHAMBER ISOTROPIC FIELD MONITOR AMPLIFIER RESEARCH AMPLIFIER RESEARCH A.R. A.R. A.R. BOONTON BOONTON A.R. SRT A.R. FP2000 / W1000M1 / S1G4A / DC7420 / FP4080 KIT / (SE) / (SE) / DC6080 / A05 / SRT005 FM2000 / DUE DATE OF CAL. & CAL. CENTER JUL OCT SRT MAR ITRI NCR NCR JUL JUL ITRI JAN JAN JUL NOV SRT NCR MONITOR TAYAMA / NCR CCD TOPVIEW N/A / NCR ABSORBER ETS N/A NCR COAXIAL CABLE TIMES LMR400 / 0.5M AUG SRT COAXIAL CABLE TIMES LMR400 / 4M AUG SRT NOTE: The calibration interval of the above test equipment is one year and the calibrations are traceable to NML/ROC and NIST/USA.

50 Page:50 of TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2: TEST SETUP Absorber Sensor 1.5m EUT CCD Absorber 0.8 m Wooden table Coaxial Cable 3 m Power Amplifier Signal Generator V/M Monitor Optical Fiber Monitor NOTE : 1. The wooden table should be 0.8m high for table top EUT and 0.1m for floor-standing EUT. 2. For the actual test configuration, please refer to the photos of testing.

51 Page:51 of m balun to Absorber/Tile door Ant. 2.75m Absorber Location 1.5m 2.2m 1.85m 0.24m chamber (7m x 3m x 3m) 9.4 TEST CONDITION 1. Test condition (1) Source voltage and frequency : 230V/50Hz, single phase (2) Sweeping frequency : 80MHz 1GHz 1.4GHz 2GHz (3) Test level : 3V/m, the frequncy step is 1% (4) The four sides of EUT are tested : front, rear, left, right (5) Modulation : 80%AM, 1kHz Dwell time for each frequency at least 3sec.. (6) Standard requirement : Criterion A

52 Page:52 of GENERAL PERFORMANCE CRITERIA DESCRIPTION The Requirement of Performance Criteria Performance criteria for continuous phenomena applied to transmitters (CT) Performance criteria for transient phenomena applied to transmitters (TT) Performance criteria for continuous phenomena applied to receivers (CR) Performance criteria for transient phenomena applied to receivers (TR) Criterion A of the applicable class shall apply Criterion B of the applicable class shall apply Criterion A of the applicable class shall apply Criterion B of the applicable class shall apply The phenomena allowed during and after test in each criterion are clearly stated in the following table Class 1 SRD equipment Criteria During test After test A B Operate as intended. No loss of function. For equipment type II the minimum performance shall be 12dB SINAD No unintentional responses May be loss of function (one or more) No unintentional responses Operate as intended. For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions

53 Page:53 of 71 Class 2 SRD equipment Criteria During test After test A B Operate as intended. No loss of function. For equipment type II the minimum performance shall be 6dB SINAD No unintentional responses May be loss of function (one or more) No unintentional responses Operate as intended. For equipment type II the communication link shall be maintained No loss of function No degradation of performance No loss of stored data or user programmable functions Operate as intended Lost function(s) shall be self-recoverable No degradation of performance No loss of stored data or user programmable functions Class 3 SRD equipment Criteria During test After test Operate as intended, for equipment type II the communication link may be lost, but shall be recoverable by May be loss of function (one or more) A and B user No unintentional responses No degradation of performance Lost functions shall be self-recoverable

54 Page:54 of TEST RESULT Temperature: 23 C Humidity: 64 % RH Tested Mode: Link Tested By: Shunm Wang Test Result: Pass Tested Date: Feb. 17, 2009 Test Result : Criterion A pass FREQUENCY LEVEL MODULATION DIRECTION TEST RESULT (CRITERION) 80MHz 1GHz 3V/m 80%AM, 1kHz FRONT A 80MHz 1GHz 3V/m 80%AM, 1kHz REAR A 80MHz 1GHz 3V/m 80%AM, 1kHz LEFT A 80MHz 1GHz 3V/m 80%AM, 1kHz RIGHT A 1GHz 2GHz 3V/m 80%AM, 1kHz FRONT A 1GHz 2GHz 3V/m 80%AM, 1kHz REAR A 1GHz 2GHz 3V/m 80%AM, 1kHz LEFT A 1GHz 2GHz 3V/m 80%AM, 1kHz RIGHT A NOTE: 1. Measurement uncertainty is +/-2.7dB. 2. Description of test observation: A: There was no change compared with initial operation during the test.

55 Page:55 of ELECTRICAL FAST TRANSIENT / BURST IMMUNITY TEST 10.1 TEST EQUIPMENT EQUIPMENT / FACILITIES EFT GENERATOR CLAMP GROUND PLANE 2M x 3M MANUFACTURER HAEFELY HAEFELY MODEL # / SERIAL # PEFT-JUNIOR / TRENCH / DUE DATE OF CAL & CAL CENTER JUL NCR SRT N/A NCR 10.2 TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2: TEST SET-UP Power Auxiliary Equipment EUT Auxiliary Equipment Clamp I/O and communication ports EFT Wave Generator Load EUT EFT Wave Power Cable Generator Auxiliary Equipment Power supply ports NOTE : 1. The EUT system was put on a wooden table with 0.8m heights for table top EUT and 0.1m for floor-standing EUT above ground reference plane. 2. For the actual test configuration, please refer to the photos of testing. 3. The minimum distance between the EUT and all other conductive structure was more than 0.5m. 4. The minimum distance between the coupling plates of the coupling clamps (if used) and all over conductive structures, except the ground plane beneath the coupling clamp and beneath the EUT was more than 0.5m. 5. The power cable connecting EUT was controlled under 1m.

56 Page:56 of TEST CONDITION/PERFORMANCE CRITERIA 1. Test condition (1) Source voltage and frequency : 230V/50Hz, single phase (2) Pulse risetime and duration : 5ns / 50ns (3) Pulse repetition : 5kHz (4) Polarity : Positive Polarization and Negative Polarization (5) Burst duration and period : 15ms / 300ms (6) Test duration : 61sec each line (7) Time between test : 10Sec (8) Severity levels :Power Line ±1kV Signal/Control Line ±0.5kV (9) Standard requirement : Criterion B 2. Performance criterion (1) Criterion A : Normal performance during test (2) Criterion B : Temporary degradation or loss of function or performance which is self-recoverable. (3) Criterion C : Temporary degradation or loss of function or performance which requires operator intervention system reset SUMMARY OF TEST RESULT Temperature: 23 C Humidity: 64 % RH Tested Mode: Link Tested By: Shunm Wang Atmospheric Air Pressure: kpa Tested Date: Feb. 17, 2009 Test Result : Criterion A pass Voltage 0.5kV 1kV Test Result Polarity L1 A A A A L2 A A A A GND A A A A Signal/Control Line N/A N/A N/A N/A NOTE: 1. Measurement uncertainty is +/-0.02KV 2. Description of test observation: A: There was no change compared with initial operation during the test. N/A: Not applicable, as the signal/control line used in typical is less than 3 m.

57 Page:57 of INDUCED RF FIELDS (CONDUCTED SUSCEPTIBILITY) TEST 11.1 TEST EQUIPMENT EQUIPMENT / FACILITIES SIGNAL GENERATOR CLAMPER-EM INJECTION POWER AMPLIFIER DUAL DIRECTION COULPER POWER METER POWER SENSOR POWER SENSOR POWER LINE CDN POWER LINE CDN POWER LINE CDN (for Peripheral) POWER LINE CDN (for Peripheral) MANUFACTURER HP FCC A.R. A.R. BOONTON BOONTON BOONTON FCC FCC COM-POWER COM-POWER MODEL # / SERIAL # 8648A / 3636A02776 F-230I-23MM / A100A / DC2600 / A / EMC / EMC / FCC-801-M2-32A / 9840 FCC-801-M3-32A / 9874 CDN-M2-25 / CDN-M3-25 / DUE DATE OF CAL. & CAL. CENTER SEP JUN NCR NOV JUL JAN NOV NOV JUL APR APR FINAL TEST BE USED T2 WA WA NCR COAXIAL CABLE TIMES J400-2m-2NP / #2M AUG SRT COAXIAL CABLE TIMES LMR600 / #1M AUG SRT COAXIAL CABLE TIMES LMR-400 / #2M AUG SRT POWER LINE CDN FCC FCC-801-M4-32A / 9808 NOV SIGNAL LINE CDN FCC FCC-801-T2 / 9830 JUN SIGNAL LINE CDN FCC FCC-801-T4 / 9831 APR. 2009

58 Page:58 of TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2: TEST SET-UP (1) For CDN injection : EUT Coaxial SIGNAL GENERATOR Cable Power Amplifier T2 CDN Auxiliary Equipment (2) For Clamp injection : EUT Monitoring Probe SIGNAL GENERATOR Coaxial Cable Power Amplifier T2 Injection Clamp Receiver Auxiliary Equipment NOTE : 1. The EUT system was put on a wooden table with 0.1m heights above ground. 2. For the actual test configuration, please refer to the photos of testing. 3. The distance between CDN(Clamp) and EUT was controlled between 0.1m and 0.3m. 4. The model no. of the CDN connected to EUT is FCC-801-M3-32A.

59 Page:59 of TEST CONDITION / PERFORMANCE CRITERIA 1. Test condition (1) Source voltage and frequency : 230 V/ 50 Hz, single phase (2) Sweeping frequency : 150 khz 80 MHz (3) Test level : 3 V, the frequency step is 1% (4) Modulation : AM 80%, 1 khz (5) Dwell time for each frequency : 3 sec (6) Standard requirement : Criterion A 2. Performance criterion (1) Criterion A : Normal performance during test (2) Criterion B : Temporary degradation or loss of function or performance which is self-recoverable (3) Criterion C : Temporary degradation or loss of function or performance which requires operator intervention system reset 11.5 SUMMARY OF TEST RESULT Temperature: 24 C Humidity: 62 % RH Tested Mode: Link Tested By: Shunm Wang Tested Result : A pass Tested Date: Feb. 18, 2009 FREQUENCY LEVEL MODULATION INJECTION METHOD TEST RESULT (CRITERION) 150kHz - 80MHz 3V 80% AM, 1 khz M3 A NOTE: 1. Measurement uncertainty is +/-2.7dB. 2. Description of test observation: A: There was no change compared with initial operation during the test.

60 Page:60 of SURGE TEST 12.1 TEST EQUIPMENT EQUIPMENT / FACILITIES MANUFACTURER MODEL # / SERIAL # DUE DATE OF CAL. & CAL. CENTER SURGE TEST KeyTek EMC Pro / SEP TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2: TEST SET-UP SURGE GENERATOR EUT Auxiliary Equipment NOTE : 1. The EUT system was put on a wooden table with 0.8m heights above ground reference plane. 2. For the actual test configuration, please refer to the photos of testing DESCRIPTION OF SUPPORT UNIT Same as section 2.4 of this report EUT OPERATING CONDITION Same as section 2.5 of this report.

61 Page:61 of TEST CONDITION / PERFORMANCE CRITERIA 1. Test condition (1) Test level :Common mode : ±0.5kV, ±1kV, ±2kV Differential mode : ±0.25kV, ±0.5kV, ±1kV (2) Number of Pulse : 5 (3) Phase : 0, 90, 180, 270 (4) Polarity : Positive and Negative polarization (5) Repetition : 60 s (6) Waveform : 1.2/50 µs (open circuit) (7) Standard requirement : Criterion B 2. Performance criterion (1) Criterion A : Normal performance during test (2) Criterion B : Temporary degradation or loss of function or performance which is self-recoverable (3) Criterion C : Temporary degradation or loss of function or performance which requires operator intervention system reset 12.7 SUMMARY OF TEST RESULT Temperature: 24 C Humidity: 64 % RH Test Mode: Link Tested By: Shunm Wang Atmospheric Air Pressure: kpa Tested Date: Feb. 18, 2009 Test Result : Criterion A pass Mode Coupling Voltage Phase Common Differential L + PE N + PE L + N +/-0.5kV A A A A +/-1kV A A A A +/-2kV A A A A +/-0.25kV A A A A +/-0.5kV A A A A +/-1kV A A A A NOTE: 1. Measurement uncertainty is +/-1.43V 2. Description of test observation: A: There was no change compared with initial operation during the test. N/A: Not applicable.

62 Page:62 of VOLTAGE DIPS, INTERRUPTS TEST 13.1 TEST EQUIPMENT EQUIPMENT / FACILITIES MANUFACTURER MODEL # / SERIAL # DUE DATE OF CAL. & CAL. CENTER INTERFERENCE SIMULATOR HAEFELY PLINE 1610 / FEB TEST PROCEDURE According to EN V1.8.1:2008, EN V1.3.2: TEST SET-UP Frequency Converter Interference Simulator Power cable EUT Auxiliary Equipment NOTE : 1. The EUT system was put on a wooden table with 0.8m heights above ground. 2. For the actual test configuration, please refer to the photos of testing DESCRIPTION OF SUPPORT UNIT Same as section 2.4 of this report EUT OPERATING CONDITION Same as section 2.5 of this report.

63 Page:63 of TEST CONDITION / PERFORMANCE CRITERIA 1. Test condition (1) Source voltage and frequency : 100V/50Hz, 240V/50Hz, single phase (2) Test level : Dip depth 30%, 25 period Interrupt 100%, 250 period (3) Phase : 0, 180 (4) Test duration : 2min each phase (5) Time between test :10 sec (6) Standard requirement : Dip 30% : Criterion B; Interrupt 100%: Criterion C 2. Performance criterion (1) Criterion A : Normal performance during test (2) Criterion B : Temporary degradation or loss of function or performance which is self-recoverable. (3) Criterion C : Temporary degradation or loss of function or performance which requires operator intervention system reset SUMMARY OF TEST RESULT Temperature: 23 C Humidity: 59 % RH Test Mode: Link Tested By: Shunm Wang Test Result: Pass Tested Date: Dec. 08, 2008 AC POWER 100V/50Hz TEST DIP INTERVAL DIP TIME TEST TIME PHASE RESULT DEPTH (Criterion) 0 A 30% 10 sec 25 period 500 min 180 A 100% 0 C 10 sec 250 period 5000 min (interrupt) 180 C AC POWER 240V/50Hz TEST DIP INTERVAL DIP TIME TEST TIME PHASE RESULT DEPTH (Criterion) 0 A 30% 10 sec 25 period 500 min 180 A 100% 0 C 10 sec 250 period 5000 min (interrupt) 180 C NOTE: 1. The power voltage range: 100 V to 240V range 140V is 140% of the lowest voltage or the power voltage is 230 V. 2. Description of test observation: A: There was no change compared with initial operation during the test. C: EUT requires operator intervention system reset.

64 Page:64 of PHOTOS OF TESTING - Conducted emission test

65 Page:65 of 71 - Radiated emission test (below 1GHz)

66 Page:66 of 71 - Radiated emission test (above 1GHz)

67 Page:67 of 71 - Harmonics and Voltage fluctuations Flicker test - Electrostatic discharge immunity test

68 Page:68 of 71 - Electrical fast transient / burst immunity test -Surge test (Power Line)

69 Page:69 of 71 - Radiated immunity test

70 Page:70 of 71 - Inducted RF fields (conducted susceptibility) test - Voltage dips, interrupts, variations test

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