C-Tick Test Report. : R-ITAUP09V02 Report Version : V1.0

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1 C-Tick Test Report Product Name : All in one PC Model No. : MS-AC31, AE2280 Applicant : MICRO-STAR INT L Co., LTD. Address : No. 69, Li-De St., Jung-He City, Taipei Hsien, Taiwan, R.O.C. Date of Receipt : 2010/03/12 Issued Date : 2010/04/16 Report No. : R-ITAUP09V02 Report Version : V1.0 The test results relate only to the samples tested. The test results shown in the test report are traceable to the national/international standard through the calibration of the equipment and evaluated measurement uncertainty herein. This report must not be used to claim product endorsement by TAF, NVLAP, NIST or any agency of the Government. The test report shall not be reproduced except in full without the written approval of QuieTek Corporation.

2 Test Report Certification Issued Date : 2010/04/16 Report No. : R-ITAUP09V02 Product Name : All in one PC Applicant : MICRO-STAR INT L Co., LTD. Address : No. 69, Li-De St., Jung-He City, Taipei Hsien, Taiwan, R.O.C. Manufacturer : MICRO-STAR INT L Co., LTD. Model No. : MS-AC31, AE2280 EUT Rated Voltage : AC V, 50-60Hz EUT Test Voltage : AC 240 V / 50 Hz Trade Name : msi Applicable Standard : AS/NZS CISPR 22: 2006 Class B Test Result : Complied Performed Location : Quietek Corporation (Linkou Laboratory) No.5-22,Ruei-Shu Valley, Ruei-Ping Tsuen Lin Kuo Shiang, Taipei, 244 Taiwan, R.O.C. TEL: / FAX: Documented By : Reviewed By : Approved By : ( Engineering Adm. Specialist / Rita Huang ) ( Engineer / Kevin Ker ) ( Manager / Vincent Lin ) Page: 2 of 66

3 Laboratory Information We, QuieTek Corporation, are an independent EMC and safety consultancy that was established the whole facility in our laboratories. The test facility has been accredited/accepted (audited or listed) by the following related bodies in compliance with ISO 17025, EN and specified testing scopes: Taiwan R.O.C. : BSMI, NCC, TAF Germany : TUV Rheinland Norway : Nemko, DNV USA : FCC, NVLAP Japan : VCCI The related certificate for our laboratories about the test site and management system can be downloaded from QuieTek Corporation s Web Site : The address and introduction of QuieTek Corporation s laboratories can be founded in our Web site : If you have any comments, Please don t hesitate to contact us. Our contact information is as below: HsinChu Testing Laboratory : No.75-2, 3rd Lin, Wangye Keng, Yonghxing Tsuen, Qionglin Shiang, Hsinchu County 307, Taiwan, R.O.C. TEL: / FAX: service@quietek.com LinKou Testing Laboratory : No. 5-22, Ruei-Shu Valley, Ruei-Ping Tsuen, Lin-Kou Shiang, Taipei, Taiwan, R.O.C. TEL : / FAX : service@quietek.com Suzhou (China) Testing Laboratory : No. 99 Hongye Rd., Suzhou Industrial Park Loufeng Hi-Tech Development Zone., Suzhou,China. TEL : / FAX : service@quietek.com Page: 3 of 66

4 TABLE OF CONTENTS Description Page 1. General Information EUT Description Mode of Operation Tested System Details Configuration of Tested System EUT Exercise Software Technical Test Summary of Test Result List of Test Equipment Measurement Uncertainty Test Environment Conducted Emission Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Conducted Emissions (Telecommunication Ports) Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Radiated Emission Test Specification Test Setup Limit Test Procedure Deviation from Test Standard Test Result Test Photograph Attachment EUT Photograph Page: 4 of 66

5 1. General Information 1.1. EUT Description Product Name Trade Name Model No. All in one PC msi MS-AC31, AE2280 Component 3Pin Power Cable Non-Shielded, 1.8m Power Adapter (1) MFR: DELTA, M/N: ADP-180HB B Input: AC V, 50-60Hz, 2.25A Output: DC 19V, 9.5A Cable Out: Non-Shielded, 1.8m with two ferrite cores bonded. Power Adapter (2) MFR: FSP, M/N: FSP180-ABAN1 Input: AC V, 50-60Hz, 2.5A Output: DC 19V, 9.47A Cable Out: Non-Shielded, 1.8m with two ferrite cores bonded. Keyparts List Keyparts Vendor Model No. CPU Intel i5-660, CM AC(SLBLV),3.33GHz,LGA-1156pin i5-650, CM AH(SLBLK),3.2GHz,LGA-1156pin i3-530, CM AG(SLBLR),2.93GHz,LGA-1156pin Panel CHIMEI 21.5", M215H1-L02 HDD WD WD10EADS, 3.5 inch, 1TB, 10000RPM WD6400AAKS, 3.5 inch, 640GB, 7200RPM ODD HLDS GT32N GT10N GT30N Memory -- DDR3 SDRAM, 2GB, 667(1333)MHz WebCam BISON BN65M6S8-000 BlueTooth CSR BSMAN1(MS-3801) Inverter MITAC DA-2A12-MS17-1 L WI-FI Realtek RTL8191SE (MS-6897) Adaptor DELTA ADP-180HB B FSP FSP180-ABAN1 Page: 5 of 66

6 1.2. Mode of Operation QuieTek has verified the construction and function in typical operation. All the test modes were carried out with the EUT in normal operation, which was shown in this test report and defined as: Pre-Test Mode Mode 1 Mode 2 Mode 3 Final Test Mode Mode 1 Emission Mode 2 ITEM Mode 1 Mode 2 LCD+D-SUB 1920*1080/60Hz LCD+D-SUB 1920*1080/60Hz CPU INTEL, i5-660 (3.33GHz) INTEL, i5-650 (3.2GHz) HDD WD / WD10EADS WD / WD6400AAKS MEMORY 2GB 2GB ODD HLDS, GT32N HLDS, GT10N Webcam BISON, BN65M6S8-000 BISON, BN65M6S8-000 Bluetooth CSR, BSMAN1(MS-3801) CSR, BSMAN1(MS-3801) Inverter MITAC, DA-2A12-MS17-1 L MITAC, DA-2A12-MS17-1 L PANEL CHIMEI, M215H1-L02 CHIMEI, M215H1-L02 Adaptor DELTA, ADP-180HB B FSP, FSP180-ABAN1 WI-FI MSI, RTL8191SE (MS-6897) MSI, RTL8191SE (MS-6897) ITEM CPU HDD MEMORY ODD Webcam Bluetooth Inverter PANEL Adaptor WI-FI Mode 3 HDMI 1080p INTEL, i3-530 (2.93GHz) WD / WD6400AAKS 2GB HLDS, GT30N BISON, BN65M6S8-000 CSR, BSMAN1(MS-3801) MITAC, DA-2A12-MS17-1 L CHIMEI, M215H1-L02 DELTA, ADP-180HB BH MSI, RTL8191SE (MS-6897) Page: 6 of 66

7 1.3. Tested System Details The types for all equipments, plus descriptions of all cables used in the tested system (including inserted cards) are: Product Manufacturer Model No. Serial No. Power Cord 1 Monitor Dell 2408WFPb CN-0G293H Non-Shielded, 1.8m 95M-1H6S 2 Printer EPSON StyLus C63 FAPY Non-Shielded, 1.9m 3 Notebook PC DELL PP04X Non-Shielded, 0.8m 4 DVD PLAYER Pioneer DV-S969Avi EAMP004349LW Non-Shielded, 1.8m 5 Cambridge Creative S80130 AM Non-Shielded, 1.9m SoundWorks 6 Non-Shielded, 1.8m With SATA HDD Onnto ST-M10 A01926-F Core*1 7 Microphone & PCHOME N/A N/A N/A Earphone 8 IPod nano Apple A1236 7K823DZGY0P N/A 9 IPod nano Apple A1236 7K823DY0Y0P N/A 10 IPod nano Apple A1236 7K823DPSY0P N/A 11 Keyboard Logitech Y-UR83 SY848UK N/A 12 USB Mouse Logitech M-UAL-96 LZ923A40006 N/A 13 TS-9980 R&S N/A N/A Non-Shielded, 1.8m Page: 7 of 66

8 1.4. Configuration of Tested System Connection Diagram Signal Cable Type Signal cable Description A D-SUB Cable Shielded, 1.8m with two ferrite cores bonded B LAN Cable Non-Shielded, 7.0m C Coaxial Cable Shielded, 7.0m D HDMI Cable Shielded, 1.0m E Fiber Cable Non-Shielded, 1.5m F e-sata Cable Shielded, 1.0m G Microphone & Earphone Cable Non-Shielded, 1.6m H USB Cable Shielded, 1.0m, three PCS I USB Cable Shielded, 1.5m, three PCS Page: 8 of 66

9 1.5. EUT Exercise Software 1 Setup the EUT and peripheral as shown on Figure 2 Connect the power to EUT and peripherals, then turn on the power of all equipments. 3 Waiting for EUT to enter Window Windows Vista Operating System, and adjust the display resolution to the test mode first. 4 Connect LAN and Telecom to All in one PC for transmitting data. 5 Activate Wireless interface and and perform the wireless data communication with the other All in one PC (write/delete action). 6 Run Windows Media Player program 7 Run H" pattern. 8 Begin to test and repeat the above procedure (4)~(7) Page: 9 of 66

10 2. Technical Test 2.1. Summary of Test Result No deviations from the test standards Deviations from the test standards as below description: Emission Performed Item Normative References Test Performed Deviation Conducted Emission AS/NZS CISPR 22: 2006 Class B Yes No Impedance Stabilization AS/NZS CISPR 22: 2006 Class B Yes No Network Radiated Emission AS/NZS CISPR 22: 2006 Class B Yes No Page: 10 of 66

11 2.2. List of Test Equipment Conducted Emission / SR1 Instrument Manufacturer Type No. Serial No Cal. Date EMI Test Receiver R&S ESCS /10/29 LISN R&S ENV / /08/14 LISN R&S ENV /02/17 Pulse Limiter R&S ESH3-Z /09/10 Impedance Stabilization Network / SR1 Instrument Manufacturer Type No. Serial No Cal. Date Capacitive Voltage Probe Schaffner CVP2200A /11/16 EMI Test Receiver R&S ESCS /10/29 LISN R&S ENV /02/17 LISN R&S ENV / /08/14 Pulse Limiter R&S ESH3-Z /09/10 RF Current Probe FCC F-65 10KHz~1GHz /11/13 BALANCED TELECOM ISN FCC FCC-TLISN-T /11/22 BALANCED TELECOM ISN FCC FCC-TLISN-T /11/22 BALANCED TELECOM ISN FCC FCC-TLISN-T /11/22 Radiated Emission / Site3 Instrument Manufacturer Type No. Serial No Cal. Date Bilog Antenna Schaffner Chase CBL6112B /08/01 Broadband Horn Antenna Schwarzbeck BBHA /07/25 EMI Test Receiver R&S ESCS /01/14 Horn Antenna Schwarzbeck BBHA9120D /08/26 Pre-Amplifier QTK N/A N/A 2009/08/01 Spectrum Analyzer Advantest R /11/24 EMI Test Receiver R&S ESI / /06/26 Pre-Amplifier MITEQ QMF-4D P /01/03 Page: 11 of 66

12 2.3. Measurement Uncertainty Conducted Emission The measurement uncertainty is evaluated as ± 2.26 db. Impedance Stabilization Network The measurement uncertainty is evaluated as ± 2.26 db. Radiated Emission The measurement uncertainty is evaluated as ± 3.19 db. Page: 12 of 66

13 2.4. Test Environment Performed Item Items Required Actual Temperature ( C) Conducted Emission Humidity (%RH) Barometric pressure (mbar) Temperature ( C) Impedance Stabilization Humidity (%RH) Network Barometric pressure (mbar) Temperature ( C) Radiated Emission Humidity (%RH) Barometric pressure (mbar) Page: 13 of 66

14 3. Conducted Emission 3.1. Test Specification According to EMC Standard: AS/NZS CISPR Test Setup 3.3. Limit Limits Frequency (MHz) QP AV Remarks: In the above table, the tighter limit applies at the band edges. Page: 14 of 66

15 3.4. Test Procedure The EUT and simulators are connected to the main power through a line impedance stabilization network (L.I.S.N.). This provides a 50 ohm /50uH coupling impedance for the measuring equipment. The peripheral devices are also connected to the main power through a LISN that provides a 50ohm/50uH coupling impedance with 50ohm termination. (Please refers to the block diagram of the test setup and photographs.) Both sides of A.C. line are checked for maximum conducted interference. In order to find the maximum emission, the relative positions of equipment and all of the interface cables must be changed on conducted measurement. Conducted emissions were invested over the frequency range from 0.15MHz to 30MHz using a receiver bandwidth of 9kHz Deviation from Test Standard No deviation. Page: 15 of 66

16 3.6. Test Result Site : SR1 Time : 2010/03/17-04:09 Limit : CISPR_B_00M_QP Margin : 10 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 1 Page: 16 of 66

17 Site : SR1 Time : 2010/03/17-04:12 Limit : CISPR_B_00M_QP Margin : 0 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK 3 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 17 of 66

18 Site : SR1 Time : 2010/03/17-04:12 Limit : CISPR_B_00M_AV Margin : 0 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE 2 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 18 of 66

19 Site : SR1 Time : 2010/03/17-04:13 Limit : CISPR_B_00M_QP Margin : 10 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 1 Page: 19 of 66

20 Site : SR1 Time : 2010/03/17-04:13 Limit : CISPR_B_00M_QP Margin : 0 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK 3 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 20 of 66

21 Site : SR1 Time : 2010/03/17-04:13 Limit : CISPR_B_00M_AV Margin : 0 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE 2 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 21 of 66

22 Site : SR1 Time : 2010/03/24-22:30 Limit : CISPR_B_00M_QP Margin : 10 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 2 Page: 22 of 66

23 Site : SR1 Time : 2010/03/24-22:31 Limit : CISPR_B_00M_QP Margin : 0 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK 4 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 23 of 66

24 Site : SR1 Time : 2010/03/24-22:31 Limit : CISPR_B_00M_AV Margin : 0 Probe : ENV_216_L1 - Line1 Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) 1 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 24 of 66

25 Site : SR1 Time : 2010/03/24-22:31 Limit : CISPR_B_00M_QP Margin : 10 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 2 Page: 25 of 66

26 Site : SR1 Time : 2010/03/24-22:32 Limit : CISPR_B_00M_QP Margin : 0 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK 4 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 26 of 66

27 Site : SR1 Time : 2010/03/24-22:32 Limit : CISPR_B_00M_AV Margin : 0 Probe : ENV_216_N - Line2 Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) 1 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 27 of 66

28 3.7. Test Photograph Test Mode : Mode 1 Description : Front View of Conducted Test Test Mode : Mode 1 Description : Back View of Conducted Test Page: 28 of 66

29 Test Mode : Mode 2 Description : Front View of Conducted Test Test Mode : Mode 2 Description : Back View of Conducted Test Page: 29 of 66

30 4. Conducted Emissions (Telecommunication Ports) 4.1. Test Specification According to EMC Standard : AS/NZS CISPR Test Setup 4.3. Limit Limits Frequency (MHz) QP AV Remarks: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz~0.50 MHz. Page: 30 of 66

31 4.4. Test Procedure Telecommunication Port: The mains voltage shall be supplied to the EUT via the LISN when the measurement of telecommunication port is performed. The common mode disturbances at the telecommunication port shall be connected to the ISN, which is 150 ohm impedance. Both alternative cables are tested related to the LCL requested. The measurement range is from 150kHz to 30MHz. The bandwidth of measurement is set to 9kHz. The 75dB LCL ISN is used for cat. 6 cable, the 65dB LCL ISN is used for cat. 5 cable, 55dB LCL ISN is used for cat Deviation from Test Standard No deviation. Page: 31 of 66

32 4.6. Test Result Site : SR1 Time : 2010/03/17-04:18 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 10M Page: 32 of 66

33 Site : SR1 Time : 2010/03/17-04:18 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 10M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK 3 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 33 of 66

34 Site : SR1 Time : 2010/03/17-04:18 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 10M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE AVERAGE 3 * AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 34 of 66

35 Site : SR1 Time : 2010/03/17-04:19 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 100M Page: 35 of 66

36 Site : SR1 Time : 2010/03/17-04:20 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 100M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK 6 * QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 36 of 66

37 Site : SR1 Time : 2010/03/17-04:20 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 1: ISN 100M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE 6 * AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 37 of 66

38 Site : SR1 Time : 2010/03/17-04:20 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 1: ISN GIGA Page: 38 of 66

39 Site : SR1 Time : 2010/03/17-04:21 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 1: ISN GIGA Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK 3 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 39 of 66

40 Site : SR1 Time : 2010/03/17-04:21 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 1: ISN GIGA Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE AVERAGE 3 * AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 40 of 66

41 Site : SR1 Time : 2010/03/24-22:34 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 10M Page: 41 of 66

42 Site : SR1 Time : 2010/03/24-22:34 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 10M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK 4 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 42 of 66

43 Site : SR1 Time : 2010/03/24-22:34 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 10M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE 2 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 43 of 66

44 Site : SR1 Time : 2010/03/24-22:36 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 100M Page: 44 of 66

45 Site : SR1 Time : 2010/03/24-22:36 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 100M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK 4 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 45 of 66

46 Site : SR1 Time : 2010/03/24-22:36 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T4 - Line1 Note : Mode 2: ISN 100M Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE 6 * AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 46 of 66

47 Site : SR1 Time : 2010/03/24-22:37 Limit : ISN_Voltage_B_00M_QP Margin : 10 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 2: ISN GIGA Page: 47 of 66

48 Site : SR1 Time : 2010/03/24-22:38 Limit : ISN_Voltage_B_00M_QP Margin : 0 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 2: ISN GIGA Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) QUASIPEAK QUASIPEAK QUASIPEAK 4 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 48 of 66

49 Site : SR1 Time : 2010/03/24-22:38 Limit : ISN_Voltage_B_00M_AV Margin : 0 Power : AC 240V/50Hz Probe : ISN_T8 - Line1 Note : Mode 2: ISN GIGA Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) AVERAGE 2 * AVERAGE AVERAGE AVERAGE AVERAGE AVERAGE Note: 1. All Reading Levels are Quasi-Peak and average value. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 49 of 66

50 4.7. Test Photograph Test Mode : Mode 1 Description : Front View of ISN Test Test Mode : Mode 1 Description : Back View of ISN Test Page: 50 of 66

51 Test Mode : Mode 2 Description : Front View of ISN Test Test Mode : Mode 2 Description : Back View of ISN Test Page: 51 of 66

52 5. Radiated Emission 5.1. Test Specification According to EMC Standard : AS/NZS CISPR Test Setup Under 1GHz Test Setup: Above 1GHz Test Setup: Page: 52 of 66

53 5.3. Limit Frequency (MHz) Limits Distance (m) dbuv/m Limits Frequency Distance Peak Average (GHz) (m) (dbuv/m) (dbuv/m) Remark: 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 device or system. Highest frequency generated or used Upper frequency of measurement in the device or on which the device range (MHz) operates or tunes (MHz) Below Above th harmonic of the highest frequency or 6 GHz, whichever is lower Page: 53 of 66

54 5.4. Test Procedure The EUT and its simulators are placed on a turn table which is 0.8 meter above ground. The turn table can rotate 360 degrees to determine the position of the maximum emission level. The EUT was positioned such that the distance from antenna to the EUT was 3/10 meters. The antenna can move up and down between 1 meter and 4 meters to find out the maximum emission level. All cable leaving the table-top EUT for a connection outsidethe test site (for example, mains cable, telephone lines, connections to auxiliary equipment located outside the test area) shall be fitted with ferrite clamps placed on the floor at the point where the cable reached the floor. Both horizontal and vertical polarization of the antenna are set on measurement. In order to find the maximum emission, all of the interface cables must be manipulated on radiated measurement. Radiated emissions were invested over the frequency range from 30MHz to1ghz using a receiver bandwidth of 120kHz and above 1GHz using a receiver bandwidth of 1MHz. 30MHz to1ghz Radiated was performed at an antenna to EUT distance of 10 meters. Above1GHz Radiated was performed at an antenna to EUT distance of 3 meters Deviation from Test Standard No deviation. Page: 54 of 66

55 5.6. Test Result Site : OATS-3 Time : 2010/03/17-05:30 Limit : CISPR_B_10M_QP Margin : 6 Probe : Site3_CBL6112_10M_ HORIZONTAL Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) (dbuv/m) (dbuv/m) QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK 5 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Readings below 1GHz are Quasi-Peak, above are performed with peak and/or average measurements as necessary. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 55 of 66

56 Site : OATS-3 Time : 2010/03/17-05:03 Limit : CISPR_B_10M_QP Margin : 6 Probe : Site3_CBL6112_10M_ VERTICAL Power : AC 240V/50Hz Note : Mode 1 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) (dbuv/m) (dbuv/m) QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK 5 * QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Readings below 1GHz are Quasi-Peak, above are performed with peak and/or average measurements as necessary. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 56 of 66

57 Site : OATS-3 Time : 2010/03/25-03:38 Limit : CISPR_B_10M_QP Margin : 6 Probe : Site3_CBL6112_10M_ HORIZONTAL Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) (dbuv/m) (dbuv/m) 1 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Readings below 1GHz are Quasi-Peak, above are performed with peak and/or average measurements as necessary. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 57 of 66

58 Site : OATS-3 Time : 2010/03/25-03:19 Limit : CISPR_B_10M_QP Margin : 6 Probe : Site3_CBL6112_10M_ VERTICAL Power : AC 240V/50Hz Note : Mode 2 Frequency Correct Factor Reading Level Measure Level Margin Limit Detector Type (MHz) (dbuv/m) (dbuv/m) QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK 5 * QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK QUASIPEAK Note: 1. All Readings below 1GHz are Quasi-Peak, above are performed with peak and/or average measurements as necessary. 2. " * ", means this data is the worst emission level. 3. Measurement Level = Reading Level + Correct Factor Page: 58 of 66

59 5.7. Test Photograph Test Mode : Mode 1 Description : Front View of Radiated Test Test Mode : Mode 1 Description : Back View of Radiated Test Page: 59 of 66

60 Test Mode : Mode 2 Description : Front View of Radiated Test Test Mode : Mode 2 Description : Back View of Radiated Test Page: 60 of 66

61 6. Attachment EUT Photograph (1) EUT Photo (2) EUT Photo Page: 61 of 66

62 (3) EUT Photo (4) EUT Photo Page: 62 of 66

63 (5) EUT Photo (6) EUT Photo Page: 63 of 66

64 (7) EUT Photo (8) EUT Photo Page: 64 of 66

65 (9) EUT Photo (10) EUT Photo Page: 65 of 66

66 (11) EUT Photo Page: 66 of 66

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