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Test Report Product Name Notebook P.C. Model No. MS-1734 Marketing Name CR700 Applicant Micro-Star Int’L Co., Ltd. Address No. 69, Li-De St., Chung-Ho City, Taipei Hsien, Taiwan Date of Receipt 2009/04/07 Issued Date 2009/04/30 Report No. 094S039-RF-CE-P02V01 Report Version 1.0 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 CNLA, 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.
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Page 1: Test Report - faenl.msi.comfaenl.msi.com/ftp/CE Documents/Notebook/MS-1734x... · Marketing Name CR700 RF Module (WLAN1) Realtek / RTL8192E RF Module (WLAN2) MSI / MS-6894 RF Module

Test Report

Product Name : Notebook P.C.

Model No. : MS-1734

Marketing Name CR700

Applicant : Micro-Star Int’L Co., Ltd.

Address : No. 69, Li-De St., Chung-Ho City, Taipei Hsien, Taiwan

Date of Receipt : 2009/04/07

Issued Date : 2009/04/30

Report No. : 094S039-RF-CE-P02V01

Report Version : 1.0

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 CNLA, 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.

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Report No: 094S039-RF-CE-P02V01

Page: 2 of 153

Test Report Cert i f icat ion Issued Date : 2009/04/30 Report No. : 094S039-RF-CE-P02V01

Product Name : Notebook P.C.

Applicant : Micro-Star Int’L Co., Ltd.

Address : No. 69, Li-De St., Chung-Ho City, Taipei Hsien, Taiwan

Manufacturer : MSI ELECTRONICS (KUNGSHAN) CO., LTD.

Model No. : MS-1734

Marketing Name : CR700

Rated Voltage : AC 230 V / 50 Hz

EUT Voltage : AC 100-240 V / 50-60 Hz

Trade Name : MSI

Applicable Standard : ETSI EN 301 489-1 V1.6.1 (2005-09)

ETSI EN 301 489-17 V1.2.1 (2002-08)

Test Result : Complied

Performed Location : SuZhou EMC laboratory

No.99 Hongye Rd., Suzhou Industrial Park Loufeng

Hi-Tech Development Zone., SuZhou, China

TEL: +86-512-6251-5088 / FAX: +86-512-6251-5098

Documented By :

( Any Liu )

Reviewed By :

( Coffon Ye )

Approved By :

( Gene Zhang )

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Report No: 094S039-RF-CE-P02V01

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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 by the following accreditation Bodies in compliance with ISO 17025, EN 45001 and Guide 25:

The related certificate for our laboratories about the test site and management system can be downloaded from QuieTek Corporation’s Web Site : http://tw.quietek.com/modules/myalbum/ The address and introduction of QuieTek Corporation’s laboratories can be founded in our Web site : http://www.quietek.com/ 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:+886-3-592-8858 / FAX:+886-3-592-8859 E-Mail : [email protected]

LinKou Testing Laboratory :

No. 5, Ruei-Shu Valley, Ruei-Ping Tsuen, Lin-Kou Shiang, Taipei, Taiwan, R.O.C. TEL : +886-2-8601-3788 / FAX : 886-2-8601-3789 E-Mail : [email protected]

Suzhou Testing Laboratory : No.99 Hongye Rd., Suzhou Industrial Park Loufeng Hi-Tech Development Zone., SuZhou, China

TEL : +86-512-6251-5088 / FAX : 86-512-6251-5098 E-Mail : [email protected]

Taiwan R.O.C. : BSMI, DGT, CNLA

Germany : TUV Rheinland

Norway : Nemko, DNV

USA : FCC, NVLAP

Japan : VCCI

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TABLE OF CONTENTS Description Page 1. General Information .......................................................................................................8 1.1. EUT Description.........................................................................................................8 1.2. Mode of Operation.....................................................................................................9 1.3. Tested System Details .............................................................................................10 1.4. Configuration of Tested System............................................................................... 11 1.5. EUT Exercise Software............................................................................................12 2. Technical Test ..............................................................................................................13 2.1. Summary of Test Result...........................................................................................13 2.2. List of Test Equipment .............................................................................................14 2.3. Measurement Uncertainty........................................................................................17 2.4. Test Environment .....................................................................................................19 2.5. Performance criteria ................................................................................................21 3. Conducted Emission (AC input/output Ports)...............................................................24 3.1. Test Specification.....................................................................................................24 3.2. Test Setup................................................................................................................24 3.3. Limit……… ..............................................................................................................24 3.4. Test Procedure ........................................................................................................25 3.5. Deviation from Test Standard...................................................................................25 3.6. Test Result...............................................................................................................26 3.7. Test Photograph ......................................................................................................38 4. Conducted Emission (DC input/output Ports) ..............................................................40 4.1. Test Specification.....................................................................................................40 4.2. Test Setup................................................................................................................40 4.3. Limit……… ..............................................................................................................40 4.4. Test Procedure ........................................................................................................41 4.5. Deviation from Test Standard...................................................................................41 4.6. Test Result...............................................................................................................41 5. Conducted Emissions (Telecommunication Ports).......................................................42 5.1. Test Specification.....................................................................................................42 5.2. Test Setup................................................................................................................42 5.3. Limit………. .............................................................................................................42 5.4. Test Procedure ........................................................................................................43 5.5. Deviation from Test Standard...................................................................................43 5.6. Test Result...............................................................................................................44 5.7. Test Photograph ......................................................................................................62 6. Radiated Emission.......................................................................................................64

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6.1. Test Specification.....................................................................................................64 6.2. Test Setup................................................................................................................64 6.3. Limit……… ..............................................................................................................64 6.4. Test Procedure ........................................................................................................65 6.5. Deviation from Test Standard...................................................................................65 6.6. Test Result...............................................................................................................66 6.7. Test Photograph ......................................................................................................70 7. Harmonic Current Emission .........................................................................................72 7.1. Test Specification.....................................................................................................72 7.2. Test Setup................................................................................................................72 7.3. Limit……….. ............................................................................................................72 7.4. Test Procedure ........................................................................................................74 7.5. Deviation from Test Standard...................................................................................74 7.6. Test Result...............................................................................................................75 7.7. Test Photograph ......................................................................................................79 8. Voltage Fluctuation and Flicker....................................................................................80 8.1. Test Specification.....................................................................................................80 8.2. Test Setup................................................................................................................80 8.3. Limit……..................................................................................................................80 8.4. Test Procedure ........................................................................................................81 8.5. Deviation from Test Standard...................................................................................81 8.6. Test Result...............................................................................................................82 8.7. Test Photograph ......................................................................................................84 9. Electrostatic Discharge ................................................................................................85 9.1. Test Specification.....................................................................................................85 9.2. Test Setup................................................................................................................85 9.3. Limit………………....................................................................................................85 9.4. Test Procedure ........................................................................................................86 9.5. Deviation from Test Standard...................................................................................86 9.6. Test Result...............................................................................................................87 9.7. Test Photograph ......................................................................................................91 10. RF Electromagnetic Field..............................................................................................93 10.1. Test Specification.....................................................................................................93 10.2. Test Setup ...............................................................................................................93 10.3. Limit…………. .........................................................................................................93 10.4. Test Procedure ........................................................................................................94 10.5. Deviation from Test Standard ..................................................................................94 10.6. Test Result...............................................................................................................95

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10.7. Test Photograph ......................................................................................................99 11. Fast Transients Common Mode ..................................................................................101 11.1. Test Specification...................................................................................................101 11.2. Test Setup..............................................................................................................101 11.3. Limit……................................................................................................................101 11.4. Test Procedure.......................................................................................................102 11.5. Deviation from Test Standard.................................................................................102 11.6. Test Result .............................................................................................................103 11.7. Test Photograph.....................................................................................................107 12. Surges……….............................................................................................................. 111 12.1. Test Specification................................................................................................... 111 12.2. Test Setup ............................................................................................................. 111 12.3. Limit……................................................................................................................ 111 12.4. Test Procedure ...................................................................................................... 112 12.5. Deviation from Test Standard ................................................................................ 112 12.6. Test Result............................................................................................................. 113 12.7. Test Photograph .................................................................................................... 117 13. RF Common Mode...................................................................................................... 119 13.1. Test Specification................................................................................................... 119 13.2. Test Setup ............................................................................................................. 119 13.3. Limit…. ..................................................................................................................120 13.4. Test Procedure ......................................................................................................120 13.5. Deviation from Test Standard ................................................................................121 13.6. Test Result.............................................................................................................122 13.7. Test Photograph ....................................................................................................126 14. Voltage Dips and Interruption......................................................................................130 14.1. Test Specification...................................................................................................130 14.2. Test Setup .............................................................................................................130 14.3. Limit… ...................................................................................................................130 14.4. Test Procedure ......................................................................................................131 14.5. Deviation from Test Standard ................................................................................131 14.6. Test Result.............................................................................................................132 14.7. Test Photograph ....................................................................................................140 15. Transients and surges.................................................................................................142 15.1. Test Specification...................................................................................................142 15.2. Test Setup .............................................................................................................142 15.3. Limit……….. ..........................................................................................................142 15.4. Test Procedure ......................................................................................................142

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15.5. Deviation from Test Standard ................................................................................143 15.6. Test Result.............................................................................................................143 16. Attachment ..................................................................................................................144   EUT Photograph.....................................................................................................144

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1. General Information 1.1. EUT Description

Product Name Notebook P.C.

Trade Name MSI

Model No. MS-1734

Marketing Name CR700

RF Module (WLAN1) Realtek / RTL8192E

RF Module (WLAN2) MSI / MS-6894

RF Module (Bluetooth) MSI / MS-6837D

Component

AC Adapter#1 Manufacturer: LISHIN INTERNATIONAL ENTERPRISE CORP. M/N: 0335A1965 Input: 100-240V~, 50-60Hz, 1.7A Output: 19VDC, 3.42A

AC Adapter#2 Manufacturer: DELTA ELECTRONICS, INC. M/N: ADP-65HB BB Input: 100-240V~, 1.5A, 50-60Hz Output: 19VDC, 3.42A

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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: Test Mode

EMI Mode 1: Communication by WLAN1 and Bluetooth Mode 3: Communication by WLAN2 and Bluetooth

EMS

Mode 1: Communication by WLAN1 and Bluetooth Mode 2: Standby Mode 3: Communication by WLAN2 and Bluetooth Mode 4: Standby

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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 CRT ‘’21 IBM 6652-U3N 3 Non-Shielded, 1.8m

2 LCD Monitor DELL 3008WFPT 7735432490P08B Non-Shielded, 1.8m

3 Printer EPSON B241A 7094256 Non-Shielded, 1.8m

4 iPod Apple A1199 6U715ULBVQ5 Power by PC

5 USB Mouse DELL MO56UOA GOQ024HJ Power by PC

6 Microphone & Earphone SALAR V81 N/A N/A

7 Walkman Yanisa NS-218F N/A Battery

8 MacBook Apple MB061CH W8732B4TZ5V Power by adapter

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1.4. Configuration of Tested System

Connection Diagram

Signal Cable Type Signal cable Description A VGA Cable Shielded, 1.8m, with two ferrite cores B HDMI Cable Shielded, 1.8m C USB Cable Shielded, 2.1m D USB Cable Shielded, 1.0m E USB Mouse Cable Non-Shielded, 1.8m F Microphone & Earphone Cable Non-Shielded, 2.4m G Audio Cable Non-Shielded, 1.8m H LAN Cable Non-Shielded, >10m

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1.5. EUT Exercise Software

1 Setup the EUT and simulators as shown on 1.4.

2 Turn on the power of all equipment.

3 Execute the HDD running Program using Burn In Test v5.1 software.

4 Run EMC test program using Burn In Test v5.1 software and send “H” pattern to the monitor.

5 EUT will send and receive data through LAN using “Ping” function.

6 Communicate with another notebook by WLAN and Bluetooth.

7 Open the camera and play music using media player program.

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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 Test Item Normative References Test

Performed Deviation

Conducted Emission

(AC input/output Ports)

EN 55022: 2006 Class B Yes No

Conducted Emissions

(DC input/output Ports)

EN 55022: 2006 Class B

CISPR 25: 2002

N/A N/A

Conducted Emissions

(Telecommunication Ports)

EN 55022: 2006 Class B Yes No

Radiated Emission EN 55022: 2006 Class B Yes No

Harmonic Current Emission EN 61000-3-2: 2006 Yes No

Voltage Fluctuations and Flicker EN 61000-3-3: 1995+A1: 2001+A2: 2005 Yes No

Immunity

Performed Test Item Normative References Test

Performed Deviation

Electrostatic Discharge EN 61000-4-2: 2001 Yes No

RF Electromagnetic Field EN 61000-4-3: 2006 Yes No

Fast Transients Common Mode EN 61000-4-4: 2004 Yes No

Surges EN 61000-4-5: 2006 Yes No

RF Common Mode EN 61000-4-6: 2005 Yes No

Voltage Dips and Interruption EN 61000-4-11: 2004 Yes No

Transients and Surges ISO 7637-2: 2004 N/A N/A

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2.2. List of Test Equipment Conducted Emission / SR-1 Instrument Manufacturer Type No. Serial No Cal. Date EMI Test Receiver R&S ESCI 100726 2008/06/28 Two-Line V-Network R&S ENV216 100013 2008/06/28 Two-Line V-Network R&S ENV216 100014 2009/04/23 V-Network R&S ESH3-Z6 100248 2008/09/28 V-Network R&S ESH3-Z6 100249 2008/09/28 ISN Schaffner ISN T400 21648 2008/11/15 Balanced Telecom ISN Fischer FCC-TLISN-T2-02 20352 2009/03/02 Balanced Telecom ISN Fischer FCC-TLISN-T4-02 20353 2009/03/02 Balanced Telecom ISN Fischer FCC-TLISN-T8-02 20354 2009/03/02 Current Probe R&S EZ-17 100255 2008/04/18 50ohm Coaxial Switch Anritsu MP59B 6200464462 2008/11/24 50ohm Termination SHX TF2 07081401 2008/09/28 50ohm Termination SHX TF2 07081402 2008/09/28 50ohm Termination SHX TF2 07081403 2008/09/28 Coaxial Cable Luthi RG214 519358 2008/11/24 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH004 2009/03/31 Radiated Emission / AC-1 Instrument Manufacturer Type No. Serial No Cal. Date Spectrum Analyzer Agilent E4403B MY45102715 N/A Spectrum Analyzer Agilent E4403B MY45102798 N/A EMI Test Receiver R&S ESCI 100175 2008/11/15 Preamplifier Quietek AP-025C QT-AP001 2008/11/24 Preamplifier Quietek AP-025C QT-AP002 2008/11/24 Bilog Antenna Schaffner CBL6112B 2933 2008/11/21 Bilog Antenna Schaffner CBL6112B 2931 2008/11/21 50ohm Coaxial Switch Anritsu MP59B 6200447303 2008/11/24 50ohm Coaxial Switch Anritsu MP59B 6200464461 2008/11/24 50ohm Coaxial Switch Anritsu MP59B 6200447305 2008/11/24 Coaxial Cable Huber+Suhner AC1-L 01 2008/11/24 Coaxial Cable Huber+Suhner AC1-R 02 2008/11/24 Coaxial Cable Huber+Suhner AC1-C 03 2008/11/24 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH001 2009/03/31 Radiated Emission / AC-2 Instrument Manufacturer Type No. Serial No Cal. Date Spectrum Analyzer Agilent E4408B MY45102679 2008/06/28 EMI Test Receiver R&S ESCI 100573 2009/04/23 Preamplifier Quietek AP-025C QT-AP003 2008/11/24 Preamplifier Quietek AP-180C CHM-0602012 2008/11/24 Bilog Antenna Schaffner CBL6112B 2932 2009/02/25 Broad-Band Horn Antenna Schwarzbeck BBHA9120D 496 2008/11/24 50ohm Coaxial Switch Anritsu MP59B 6200447304 2008/11/24 Coaxial Cable Huber+Suhner AC2-C 04 2008/11/24 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH002 2009/03/31

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Radiated Emission / AC-3 Instrument Manufacturer Type No. Serial No Cal. Date Spectrum Analyzer Agilent N9010A MY48030494 2009/04/23 EMI Test Receiver R&S ESCI 100176 2008/11/15 Preamplifier Quietek AP-025C QT-AP004 2008/11/24 Preamplifier Quietek AP-180C CHM-0602012 2008/11/24 Bilog Type Antenna Schaffner CBL6112D 22254 2008/11/21 Broad-Band Horn Antenna Schwarzbeck BBHA9120D 496 2008/11/24 50ohm Coaxial Switch Anritsu MP59B 6200464463 2008/11/24 Coaxial Cable Huber+Suhner AC3-C 05 2008/11/24 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH003 2009/03/31 Harmonic Current Emission / SR-1 Instrument Manufacturer Type No. Serial No Cal. Date AC Power Source California 5001iX-208 56741 2008/11/18 Power Analyzer California PACS-1 72419 2008/11/18 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH004 2009/03/31 Voltage Fluctuation and Flicker / SR-1 Instrument Manufacturer Type No. Serial No Cal. Date AC Power Source California 5001iX-208 56741 2008/11/18 Power Analyzer California PACS-1 72419 2008/11/18 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH004 2009/03/31 Electrostatic Discharge / SR-3 Instrument Manufacturer Type No. Serial No Cal. Date ESD Simulator EMC PARTNER ESD3000DN1 140 2008/06/08 ESD Simulator EM TEST dito V0616101367 2008/06/08 Barometer Fengyun DYM3 0506048 2008/12/07 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH006 2009/03/31 RF Electromagnetic Field / AC-4 Instrument Manufacturer Type No. Serial No Cal. Date Signal Generator R&S SML03 102324 2008/10/21 Power Meter Boonton 4231A 144502 2008/10/21 Power Sensor Boonton 51011-EMC 33859 2008/10/21 RF Switch Network Schaffner RFS N100 21799 N/A Power Amplifier Schaffner CBA9428 43516 N/A Power Amplifier Schaffner CBA9413B 43526 N/A Directional Coupler A&R DC7144A 312249 N/A Directional Coupler Schaffner CHA 9652B 0121 N/A Electric Field Probe Type 8.3 narda 2244/90.21 AZ-0030 2008/07/30 Electromagnetic Radiation Meter narda 2244/70 AW-0074 2008/07/30

Bilog Type Antenna Schaffner CBL6141A 4278 N/A Horn Antenna A&R AT4002A 312312 N/A Temperature/Humidity Meter zhicheng ZC1-2 QT-TH007 2009/03/31

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Fast Transients Common Mode / SR-2 Instrument Manufacturer Type No. Serial No Cal. Date Immunity Test System KeyTek EMCpro 508273 2009/04/23 CCL KeyTek CCL 0510181 2009/04/23 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH005 2009/03/31 Surges / SR-2 Instrument Manufacturer Type No. Serial No Cal. Date Immunity Test System KeyTek EMCpro 508273 2009/04/23 Coupler/Decoupler Telecom line KeyTek CM-TELCD 0506277 N/A

Coupler/Decoupler Signal line KeyTek CM-I/OCD 0508206 N/A

Temperature/Humidity Meter zhicheng ZC1-2 QT-TH005 2009/03/31 RF Common Mode / SR-2 Instrument Manufacturer Type No. Serial No Cal. Date RF-Generator Schaffner NSG2070 1120 2008/11/12 Attenuator Schaffner INA2070-1 2120 2008/11/12 CDN Schaffner CDN M016 21249 2008/11/12 CDN Teseq GmbH CDN M016 24484 2008/09/03 CDN Schaffner CDN T400 19083 2008/11/12 CDN Teseq GmbH CDN T400 22461 2008/09/03 EM Clamp Schaffner KEMZ 801 21041 2008/11/12 50ohm Termination SHX TF2 07081404 2008/09/28 50ohm Termination SHX TF2 07081405 2008/09/28 50ohm Termination SHX TF2 07081406 2008/09/28 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH005 2009/03/31 Voltage Dips and Interruption / SR-2 Instrument Manufacturer Type No. Serial No Cal. Date Immunity Test System KeyTek EMCpro 508273 2009/04/23 Temperature/Humidity Meter zhicheng ZC1-2 QT-TH005 2009/03/31 *Transients and Surges / No.4 Shielded Rom Instrument Manufacturer Type No. Serial No Cal. Date Transient Generator Schaffner MT5510-750-0034 67 2008/11/01 Burst Generator Schaffner FT5530-70-0033r01 74 2008/11/01 Load Dump Generator Schaffner LD5505-750-0045r01 35 2008/11/01 Impedance Generator Schaffner RM5505-750-057r01 14 2008/11/01 Power Amplifier Generator Schaffner PA5840-75 / 581-0005 2008/11/01 Function/Wave Generator

Schaffner FG5620-750-0051-00 35 2008/11/01

Note: “*” means this test is performed in HsinChu Testing Laboratory.

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2.3. Measurement Uncertainty Conducted Emission

The measurement uncertainty is evaluated as ± 2.26 dB.

Radiated Emission The measurement uncertainty is evaluated as ± 3.19 dB.

Harmonic Current Emission The measurement uncertainty is evaluated as ± 1.2 %.

Voltage Fluctuations and Flicker The measurement uncertainty is evaluated as ± 1.5 %.

Electrostatic Discharge As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in ESD testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant ESD standards. The immunity test signal from the ESD system meet the required specifications in IEC 61000-4-2 through the calibration report with the calibrated uncertainty for the waveform of voltage and timing as being 1.63% and 2.76%.

RF Electromagnetic Field As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in RS testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant RS standards. The immunity test signal from the RS system meet the required specifications in IEC 61000-4-3 through the calibration for the uniform field strength and monitoring for the test level with the uncertainty evaluation report for the electrical filed strength as being 2.72 dB.

Fast Transients Common Mode As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in EFT/Burst testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant EFT/Burst standards. The immunity test signal from the EFT/Burst system meet the required specifications in IEC 61000-4-4 through the calibration report with the calibrated uncertainty for the waveform of voltage. Frequency and timing as being 1.63% and 2.76%.

Surges As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in Surge testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant Surge standards. The immunity test signal from the Surge system meet the required specifications in IEC 61000-4-5 through the calibration report with the calibrated uncertainty for the waveform of voltage and timing as being 1.63% and 2.76%.

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RF Common Mode As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in CS testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant CS standards. The immunity test signal from the CS system meet the required specifications in IEC 61000-4-6 through the calibration for unmodulated signal and monitoring for the test level with the uncertainty evaluation report for the injected modulated signal level through CDN and EM Clamp/Direct Injection as being 3.72 dB and 2.78 dB.

Voltage Dips and Interruption As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in DIP testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant DIP standards. The immunity test signal from the DIP system meet the required specifications in IEC 61000-4-11 through the calibration report with the calibrated uncertainty for the waveform of voltage and timing as being 1.63% and 2.76%.

Transients and Surges As what is concluded in the document from Note2 of clause 5.4.6.2 of ISO/IEC 17025: 1999[2], the requirements for measurement uncertainty in Transients and Surges testing are deemed to have been satisfied, and the testing is reported in accordance with the relevant DIP standards. The immunity test signal from the Transients and Surges system meet the required specifications in ISO 7637-2 through the calibration report with the calibrated uncertainty for the waveform of voltage and timing as being 1.60% and 2.60%.

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2.4. Test Environment Performed Item Items Required Actual

Temperature (°C) 15-35 23

Conducted Emission Humidity (%RH) 25-75 43

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Radiated Emission Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Harmonic Current Emission Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Voltage Fluctuations and Flicker Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Electrostatic Discharge Humidity (%RH) 30-60 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

RF Electromagnetic Field Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Fast Transients Common Mode Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Surges Humidity (%RH) 10-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

RF Common Mode Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

Temperature (°C) 15-35 23

Voltage Dips and Interruption Humidity (%RH) 25-75 42

Barometric pressure (mbar) 860-1060 950-1000

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Temperature (°C) 15-35 --

Transients and Surges Humidity (%RH) 25-75 --

Barometric pressure (mbar) 860-1060 --

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2.5. Performance criteria The performance criteria criteria are used to take a decision on whether a radio equipment passes or fails immunity tests. For the purpose of the present document four categories of performance criteria apply:

performance criteria for continuous phenomena applied to transmitters; performance criteria for transient phenomena applied to transmitters; performance criteria for continuous phenomena applied to receivers; performance criteria for transient phenomena applied to receivers.

Normally, the performance criteria depend on the type of radio equipment. Thus, the present document only contains general performance criteria commonly used for the assessment of radio equipment. More specific and product-related performance criteria for a dedicated type of radio equipment may be found in the part of EN 301 489 series [22] dealing with the particular type of radio equipment. (1) Performance criteria for continuous phenomena applied to transmitters and receivers If no further details are given in the relevant part of EN 301 489 series [22] dealing with the particular type of radio equipment, the following general performance criteria 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 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 of performance. During the test the 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. (2) Performance criteria for transient phenomena applied to transmitters and receivers If no further details are given in the relevant part of EN 301 489 series [22] dealing with the particular type of radio equipment, the following general performance criteria for transient phenomena shall apply. After the test, the apparatus shall continue to operate as intended. No degradation of performance or

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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 of performance. During the EMC exposure to an electromagnetic phenomenon, 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. (3) Performance criteria for equipment which does not provide a continuous communication

link For radio equipment which does not provide a continuous communication link, the performance criteria described in clauses (1) and (2) are not appropriate, then the manufacturer shall declare, for inclusion in the 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 clause 5.3 of EN 301 489-1 V1.6.1 (2005-09) have also to be taken into account. The performance criteria specified by the manufacturer shall give the same degree of immunity protection as called for in clauses (1) and (2). (4) Performance criteria for ancillary equipment tested on a stand alone basis If ancillary equipment is intended to be tested on a stand alone basis, the performance criteria described in clauses (1) and (2) are not appropriate, then the manufacturer shall declare, for inclusion in the 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 clause 5.3 of EN 301 489-1 V1.6.1 (2005-09) have also to be taken into account. The performance criteria specified by the manufacturer shall give the same degree of immunity protection as called for in clauses (1) and (2).

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Performance table Performance criteria

Criteria During Test After test A Shall operate as intended

May show degradation of performance (see note 1)

Shall be no loss of function Shall be no unintentional

transmissions

Shall operate as intended Shall be no degradation of performance

(see 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 (see note 1)

No unintentional transmission

Functions shall be self-recoverable Shall operate as intended after recovering Shall be no degradation of performance

(see 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

(see 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.

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3. Conducted Emission (AC input/output Ports)

3.1. Test Specification

According to EMC Standard: EN 55022 Class B

3.2. Test Setup

3.3. Limit

Limits for conducted emssions of equipment intended to be used in

telecommunication centres only

Frequency (MHz)

QP (dBuV)

AV (dBuV)

0.15 - 0.50 79 66

0.50 - 30 73 60

Note: The lower limit shall apply at the transition frequencies.

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Limits for Conducted Emissions

Frequency (MHz)

QP (dBuV)

AV (dBuV)

0.15 - 0.50 66 - 56 56 - 46

0.50 - 5.0 56 46

5.0 - 30 60 50

Note 1: The lower limit shall apply at the transition frequencies. Note 2: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz

to 0.5 MHz.

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.

3.5. Deviation from Test Standard No deviation.

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3.6. Test Result Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:16

Limit : EN55022_B_00M_QP Margin : 10

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:17

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.187 32.200 42.387 -23.499 65.886 QUASIPEAK

2 * 0.198 9.580 42.600 52.180 -12.449 64.629 QUASIPEAK

3 0.258 9.466 33.600 43.066 -19.848 62.914 QUASIPEAK

4 0.322 9.509 26.600 36.109 -24.977 61.086 QUASIPEAK

5 0.382 9.549 19.900 29.449 -29.922 59.371 QUASIPEAK

6 4.530 9.867 18.500 28.367 -27.633 56.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:17

Limit : EN55022_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.187 9.900 20.087 -35.799 55.886 AVERAGE

2 * 0.198 9.580 30.600 40.180 -14.449 54.629 AVERAGE

3 0.258 9.466 20.300 29.766 -23.148 52.914 AVERAGE

4 0.322 9.509 12.600 22.109 -28.977 51.086 AVERAGE

5 0.382 9.549 6.600 16.149 -33.222 49.371 AVERAGE

6 4.530 9.867 6.600 16.467 -29.533 46.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:19

Limit : EN55022_B_00M_QP Margin : 10

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:21

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.017 29.600 39.617 -26.269 65.886 QUASIPEAK

2 * 0.190 9.696 38.800 48.496 -16.361 64.857 QUASIPEAK

3 0.258 9.583 31.500 41.083 -21.831 62.914 QUASIPEAK

4 0.274 9.588 32.300 41.888 -20.569 62.457 QUASIPEAK

5 0.318 9.590 23.300 32.890 -28.310 61.200 QUASIPEAK

6 14.962 10.240 22.500 32.740 -27.260 60.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 07:21

Limit : EN55022_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.017 9.300 19.317 -36.569 55.886 AVERAGE

2 * 0.190 9.696 25.300 34.996 -19.861 54.857 AVERAGE

3 0.258 9.583 19.600 29.183 -23.731 52.914 AVERAGE

4 0.274 9.588 18.300 27.888 -24.569 52.457 AVERAGE

5 0.318 9.590 8.600 18.190 -33.010 51.200 AVERAGE

6 14.962 10.240 16.300 26.540 -23.460 50.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:02

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:04

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.187 30.900 41.087 -24.799 65.886 QUASIPEAK

2 0.198 9.580 35.900 45.480 -19.149 64.629 QUASIPEAK

3 0.270 9.474 27.900 37.374 -25.197 62.571 QUASIPEAK

4 0.626 9.656 28.000 37.656 -18.344 56.000 QUASIPEAK

5 3.422 9.788 26.800 36.588 -19.412 56.000 QUASIPEAK

6 * 18.114 10.260 32.000 42.260 -17.740 60.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:04

Limit : EN55022_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.154 10.187 16.000 26.187 -29.699 55.886 AVERAGE

2 0.198 9.580 25.800 35.380 -19.249 54.629 AVERAGE

3 0.270 9.474 18.000 27.474 -25.097 52.571 AVERAGE

4 0.626 9.656 15.600 25.256 -20.744 46.000 AVERAGE

5 3.422 9.788 15.900 25.688 -20.312 46.000 AVERAGE

6 * 18.114 10.260 25.600 35.860 -14.140 50.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:10

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:12

Limit : EN55022_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 * 0.151 10.009 38.500 48.509 -17.462 65.971 QUASIPEAK

2 0.198 9.664 35.600 45.264 -19.365 64.629 QUASIPEAK

3 0.262 9.584 27.500 37.084 -25.716 62.800 QUASIPEAK

4 0.626 9.711 28.500 38.211 -17.789 56.000 QUASIPEAK

5 3.498 9.703 25.000 34.703 -21.297 56.000 QUASIPEAK

6 18.850 10.350 26.500 36.850 -23.150 60.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 10:12

Limit : EN55022_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : ENV216_100014(0.009-30MHz) - Line2

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.151 10.009 26.800 36.809 -19.162 55.971 AVERAGE

2 0.198 9.664 23.600 33.264 -21.365 54.629 AVERAGE

3 0.262 9.584 15.500 25.084 -27.716 52.800 AVERAGE

4 0.626 9.711 11.900 21.611 -24.389 46.000 AVERAGE

5 3.498 9.703 13.600 23.303 -22.697 46.000 AVERAGE

6 * 18.850 10.350 21.600 31.950 -18.050 50.000 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

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3.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Front View of Conducted Emission Test Setup (AC input/output Ports)

Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Back View of Conducted Emission Test Setup (AC input/output Ports)

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Front View of Conducted Emission Test Setup (AC input/output Ports)

Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Back View of Conducted Emission Test Setup (AC input/output Ports)

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4. Conducted Emission (DC input/output Ports)

4.1. Test Specification

According to EMC Standard: EN 55022 Class B and CISPR 25

4.2. Test Setup

4.3. Limit

Limits for conducted emssions of equipment intended to be used in

telecommunication centres only

Frequency (MHz)

QP (dBuV)

AV (dBuV)

0.15 - 0.50 79 66

0.50 - 30 73 60

Note: The lower limit shall apply at the transition frequencies.

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Limits for Conducted Emissions

Frequency (MHz)

QP (dBuV)

AV (dBuV)

0.15 - 0.50 66 - 56 56 - 46

0.50 - 5.0 56 46

5.0 - 30 60 50

Note 1: The lower limit shall apply at the transition frequencies. Note 2: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz

to 0.5 MHz.

4.4. Test Procedure The EUT and simulators are connected to the main power through a Artificial Mains Networks (AMN). For radio and ancillary equipment for fixed use, the Artificial Mains Networks (AMN) shall be used and be connected to a DC power source. For mobile radio and ancillary equipment intended to be connected to the vehicles’s onboard DC mains, an Artificial Network (AN) shall be used and be connected to a DC power source. (Please refers to the block diagram of the test setup and photographs.) Both sides of D.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.

4.5. Deviation from Test Standard No deviation.

4.6. Test Result The EUT has an AC/DC power supply, then the measurement only shall be performed on the AC power input port, so this test item needn’t perform.

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5. Conducted Emissions (Telecommunication Ports)

5.1. Test Specification According to EMC Standard: EN 55022 Class B

5.2. Test Setup

5.3. Limit

Limits for conducted emissions from telecommunication ports of equipment intended for use in telecommunication centres only

Voltage Current Frequency

(MHz) QP (dBuV)

AV (dBuV)

QP (dBuA)

AV (dBuA)

0.15 - 0.50 97 - 87 84 - 74 53 - 43 40 - 30

0.50 - 30 87 74 43 30

Note 1: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz.

Note 2: The current and voltage disturbance limits are derived for use with an Impedance Stabilization Network (ISN), which presents a common mode (asymmetric mode) impedance of 150 ohm to the telecommunication port under test (conversion factor is 20 log150/I = 44 dB).

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Limits for conducted emissions from telecommunication ports

Voltage Current Frequency

(MHz) QP (dBuV)

AV (dBuV)

QP (dBuA)

AV (dBuA)

0.15 - 0.50 84 - 74 74 - 64 40 - 30 30 - 20

0.50 - 30 74 64 30 20

Note 1: The limit decreases linearly with the logarithm of the frequency in the range 0.15 MHz to 0.50 MHz.

Note 2: The current and voltage disturbance limits are derived for use with an Impedance Stabilization Network (ISN) which presents common mode (asymmetric mode) impedance of 150 ohm to the telecommunication port under test (conversion factor is 20 log150/I = 44 dB).

Note 3: The emission requirement only applies to telecommunication ports. The provisional relaxation of 10 dB will be reviewed no later than 3 years after the date of withdrawal based on the results and interference cases seen in this period. Wherever possible it is recommended to comply with the limits without the provisional relaxation.

5.4. Test Procedure

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.

5.5. Deviation from Test Standard No deviation.

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5.6. Test Result Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:33

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 10Mbps

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Report No: 094S039-RF-CE-P02V01

Page: 45 of 153

Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:35

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 10Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.206 9.860 42.500 52.360 -30.040 82.400 QUASIPEAK

2 0.354 9.832 40.900 50.732 -27.439 78.171 QUASIPEAK

3 0.478 9.830 42.900 52.730 -21.899 74.629 QUASIPEAK

4 * 1.114 9.787 50.500 60.287 -13.713 74.000 QUASIPEAK

5 7.054 9.900 34.200 44.100 -29.900 74.000 QUASIPEAK

6 27.198 10.380 18.400 28.780 -45.220 74.000 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

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Report No: 094S039-RF-CE-P02V01

Page: 46 of 153

Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:35

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 10Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.206 9.860 36.600 46.460 -25.940 72.400 AVERAGE

2 0.354 9.832 34.300 44.132 -24.039 68.171 AVERAGE

3 0.478 9.830 32.600 42.430 -22.199 64.629 AVERAGE

4 * 1.114 9.787 45.800 55.587 -8.413 64.000 AVERAGE

5 7.054 9.900 27.300 37.200 -26.800 64.000 AVERAGE

6 27.198 10.380 13.800 24.180 -39.820 64.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:26

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 100Mbps

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Report No: 094S039-RF-CE-P02V01

Page: 48 of 153

Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:28

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 100Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 * 1.110 9.788 49.500 59.288 -14.712 74.000 QUASIPEAK

2 16.230 10.110 48.600 58.710 -15.290 74.000 QUASIPEAK

3 17.694 10.140 48.600 58.740 -15.260 74.000 QUASIPEAK

4 18.246 10.160 48.300 58.460 -15.540 74.000 QUASIPEAK

5 19.710 10.190 47.600 57.790 -16.210 74.000 QUASIPEAK

6 23.130 10.280 48.200 58.480 -15.520 74.000 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

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Report No: 094S039-RF-CE-P02V01

Page: 49 of 153

Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:28

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 100Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 1.110 9.788 44.300 54.088 -9.912 64.000 AVERAGE

2 * 16.230 10.110 46.200 56.310 -7.690 64.000 AVERAGE

3 17.694 10.140 45.800 55.940 -8.060 64.000 AVERAGE

4 18.246 10.160 46.000 56.160 -7.840 64.000 AVERAGE

5 19.710 10.190 45.100 55.290 -8.710 64.000 AVERAGE

6 23.130 10.280 45.600 55.880 -8.120 64.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:21

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 1000Mbps

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:23

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 1000Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.282 9.866 39.800 49.666 -30.563 80.229 QUASIPEAK

2 0.350 9.850 41.500 51.350 -26.936 78.286 QUASIPEAK

3 0.414 9.848 41.800 51.648 -24.809 76.457 QUASIPEAK

4 0.494 9.840 43.600 53.440 -20.731 74.171 QUASIPEAK

5 * 1.662 9.750 49.500 59.250 -14.750 74.000 QUASIPEAK

6 6.770 9.860 35.900 45.760 -28.240 74.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:23

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth - LAN 1000Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.282 9.866 33.800 43.666 -26.563 70.229 AVERAGE

2 0.350 9.850 35.300 45.150 -23.136 68.286 AVERAGE

3 0.414 9.848 35.500 45.348 -21.109 66.457 AVERAGE

4 0.494 9.840 33.600 43.440 -20.731 64.171 AVERAGE

5 * 1.662 9.750 42.300 52.050 -11.950 64.000 AVERAGE

6 6.770 9.860 30.500 40.360 -23.640 64.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 08:53

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 10Mbps

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:02

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 10Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.151 9.870 38.900 48.770 -35.201 83.971 QUASIPEAK

2 0.298 9.840 37.500 47.340 -32.431 79.771 QUASIPEAK

3 0.374 9.830 40.600 50.430 -27.170 77.600 QUASIPEAK

4 * 1.074 9.790 46.600 56.390 -17.610 74.000 QUASIPEAK

5 5.218 9.848 39.800 49.648 -24.352 74.000 QUASIPEAK

6 10.034 9.980 25.500 35.480 -38.520 74.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:02

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 10Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.151 9.870 32.300 42.170 -31.801 73.971 AVERAGE

2 0.298 9.840 28.300 38.140 -31.631 69.771 AVERAGE

3 0.374 9.830 33.200 43.030 -24.570 67.600 AVERAGE

4 * 1.074 9.790 39.600 49.390 -14.610 64.000 AVERAGE

5 5.218 9.848 31.900 41.748 -22.252 64.000 AVERAGE

6 10.034 9.980 19.600 29.580 -34.420 64.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:04

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 100Mbps

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:08

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 100Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 1.078 9.790 45.900 55.690 -18.310 74.000 QUASIPEAK

2 16.230 10.110 48.500 58.610 -15.390 74.000 QUASIPEAK

3 17.694 10.140 48.600 58.740 -15.260 74.000 QUASIPEAK

4 * 18.240 10.160 48.900 59.060 -14.940 74.000 QUASIPEAK

5 19.710 10.190 47.500 57.690 -16.310 74.000 QUASIPEAK

6 23.130 10.280 48.130 58.410 -15.590 74.000 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

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Report No: 094S039-RF-CE-P02V01

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:08

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T4_20353(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 100Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 1.078 9.790 37.000 46.790 -17.210 64.000 AVERAGE

2 * 16.230 10.110 46.000 56.110 -7.890 64.000 AVERAGE

3 17.694 10.140 45.800 55.940 -8.060 64.000 AVERAGE

4 18.240 10.160 45.200 55.360 -8.640 64.000 AVERAGE

5 19.710 10.190 45.000 55.190 -8.810 64.000 AVERAGE

6 23.130 10.280 45.600 55.880 -8.120 64.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:17

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 1000Mbps

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:20

Limit : ISN_Voltage_B_00M_QP Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 1000Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.151 9.919 38.000 47.919 -36.052 83.971 QUASIPEAK

2 0.274 9.868 36.600 46.468 -33.989 80.457 QUASIPEAK

3 0.374 9.845 40.500 50.345 -27.255 77.600 QUASIPEAK

4 0.558 9.830 46.800 56.630 -17.370 74.000 QUASIPEAK

5 * 1.074 9.770 47.600 57.370 -16.630 74.000 QUASIPEAK

6 7.938 9.890 35.800 45.690 -28.310 74.000 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

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Engineer : Okey

Site : SR-1 (Conducted Emission and Power

Disturbance Test)

Time : 2009/04/14 - 09:20

Limit : ISN_Voltage_B_00M_AV Margin : 0

EUT : Notebook P.C. Probe : FCC-TLISN-T8_20354(0.15-30MHz) - Line1

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth - LAN 1000Mbps

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV)

Margin

(dB)

Limit

(dBuV)

Detector Type

1 0.151 9.919 30.800 40.719 -33.252 73.971 AVERAGE

2 0.274 9.868 30.200 40.068 -30.389 70.457 AVERAGE

3 0.374 9.845 35.300 45.145 -22.455 67.600 AVERAGE

4 * 0.558 9.830 44.900 54.730 -9.270 64.000 AVERAGE

5 1.074 9.770 41.800 51.570 -12.430 64.000 AVERAGE

6 7.938 9.890 30.500 40.390 -23.610 64.000 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

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5.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Front View of Conducted Emission Test Setup for LAN

Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Back View of Conducted Emission Test Setup for LAN

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Front View of Conducted Emission Test Setup for LAN

Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Back View of Conducted Emission Test Setup for LAN

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6. Radiated Emission

6.1. Test Specification According to EMC Standard: EN 55022 Class B

6.2. Test Setup

6.3. Limit

Limits for radiated emissions from ancillary equipment intended foruse in telecomunication centres only, and measured on a stand alone basis

Frequency (MHz)

Distance (m)

QP (dBuV/m)

30 - 230 10 40

230 - 1000 10 47

Note 1: The lower limit shall apply at the transition frequency. Note 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.

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Limits for radiated emissions from ancillary equipment, measured on a stand-alone basis

Frequency (MHz)

Distance (m)

QP (dBuV/m)

30 - 230 10 30

230 - 1000 10 37

Note 1: The lower limit shall apply at the transition frequency. Note 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.

6.4. 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 10 meters. The antenna can move up and down between 1 meter and 4 meters to find out the maximum emission level. 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.

6.5. Deviation from Test Standard

No deviation.

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6.6. Test Result Engineer : Rove

Site : AC-1 (10m Semi-Anechoic Chamber) Time : 2009/04/21 - 12:55

Limit : EN55022_B_10M_QP Margin : 6

EUT : Notebook P.C. Probe : CBL6112B_2931(30-1000MHz) - HORIZONTAL

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV/m)

Margin

(dB)

Limit

(dBuV/m)

Detector Type Ant Pos

(cm)

Table Pos

(deg)

1 125.025 -19.922 45.100 25.178 -4.822 30.000 QUASIPEAK 400.000 263.500

2 360.015 -14.626 42.300 27.673 -9.327 37.000 QUASIPEAK 400.000 132.500

3 500.025 -11.851 38.900 27.049 -9.951 37.000 QUASIPEAK 162.300 250.000

4 625.025 -9.620 37.800 28.180 -8.820 37.000 QUASIPEAK 199.200 26.300

5 904.825 -5.504 35.400 29.896 -7.104 37.000 QUASIPEAK 400.000 172.300

6 * 1000.000 -4.380 36.900 32.520 -4.480 37.000 QUASIPEAK 400.000 12.300

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

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Engineer : Rove

Site : AC-1 (10m Semi-Anechoic Chamber) Time : 2009/04/21 - 12:56

Limit : EN55022_B_10M_QP Margin : 6

EUT : Notebook P.C. Probe : CBL6112B_2933(30-1000MHz) - VERTICAL

Power : AC 230V/50Hz Note : Mode 1: Communication by WLAN1 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV/m)

Margin

(dB)

Limit

(dBuV/m)

Detector Type Ant Pos

(cm)

Table Pos

(deg)

1 41.825 -20.355 43.600 23.245 -6.755 30.000 QUASIPEAK 100.000 263.500

2 64.000 -26.910 50.900 23.990 -6.010 30.000 QUASIPEAK 100.000 263.900

3 * 125.025 -19.681 43.900 24.219 -5.781 30.000 QUASIPEAK 100.000 14.200

4 200.015 -22.339 43.500 21.160 -8.840 30.000 QUASIPEAK 199.200 269.900

5 625.025 -9.373 40.100 30.727 -6.273 37.000 QUASIPEAK 178.200 152.300

6 1000.000 -4.000 33.500 29.500 -7.500 37.000 QUASIPEAK 182.600 10.200

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

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Engineer : Rove

Site : AC-1 (10m Semi-Anechoic Chamber) Time : 2009/04/21 - 13:09

Limit : EN55022_B_10M_QP Margin : 6

EUT : Notebook P.C. Probe : CBL6112B_2931(30-1000MHz) - HORIZONTAL

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV/m)

Margin

(dB)

Limit

(dBuV/m)

Detector Type Ant Pos

(cm)

Table Pos

(deg)

1 117.225 -20.184 42.900 22.716 -7.284 30.000 QUASIPEAK 163.200 69.600

2 240.025 -19.664 45.900 26.237 -10.763 37.000 QUASIPEAK 301.000 152.300

3 316.015 -17.051 43.200 26.150 -10.850 37.000 QUASIPEAK 362.500 125.300

4 500.025 -11.851 38.900 27.049 -9.951 37.000 QUASIPEAK 266.300 150.200

5 * 720.025 -7.941 40.100 32.158 -4.842 37.000 QUASIPEAK 300.200 150.200

6 1000.000 -4.380 34.200 29.820 -7.180 37.000 QUASIPEAK 300.200 260.300

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

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Engineer : Rove

Site : AC-1 (10m Semi-Anechoic Chamber) Time : 2009/04/21 - 13:09

Limit : EN55022_B_10M_QP Margin : 6

EUT : Notebook P.C. Probe : CBL6112B_2933(30-1000MHz) - VERTICAL

Power : AC 230V/50Hz Note : Mode 3: Communication by WLAN2 and

Bluetooth

Frequency

(MHz)

Correct Factor

(dB)

Reading Level

(dBuV)

Measure Level

(dBuV/m)

Margin

(dB)

Limit

(dBuV/m)

Detector Type Ant Pos

(cm)

Table Pos

(deg)

1 * 63.825 -26.907 52.900 25.993 -4.007 30.000 QUASIPEAK 166.200 200.200

2 125.025 -19.681 43.100 23.419 -6.581 30.000 QUASIPEAK 162.300 260.200

3 500.005 -11.559 39.900 28.342 -8.658 37.000 QUASIPEAK 198.200 99.200

4 800.005 -6.763 34.100 27.337 -9.663 37.000 QUASIPEAK 103.200 240.200

5 875.025 -5.682 38.100 32.418 -4.582 37.000 QUASIPEAK 190.000 172.300

6 960.025 -4.102 32.900 28.798 -8.202 37.000 QUASIPEAK 100.000 42.600

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

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6.7. Test Photograph Test Mode : Mode 1: Communication by WLAN1 and Bluetooth Description : Front View of Radiated Emission Test Setup

Test Mode : Mode 1: Communication by WLAN1 and Bluetooth Description : Back View of Radiated Emission Test Setup

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Test Mode : Mode 3: Communication by WLAN2 and Bluetooth Description : Front View of Radiated Emission Test Setup

Test Mode : Mode 3: Communication by WLAN2 and Bluetooth Description : Back View of Radiated Emission Test Setup

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7. Harmonic Current Emission

7.1. Test Specification According to EMC Standard: EN 61000-3-2

7.2. Test Setup

7.3. Limit

(a) Limits of Class A Harmonics Currents

Harmonics Order

n

Maximum Permissible harmonic current

A

Harmonics Order

n

Maximum Permissible harmonic current

A

Odd harmonics Even harmonics

3 2.30 2 1.08

5 1.14 4 0.43

7 0.77 6 0.30

9 0.40 8 ≤ n ≤ 40 0.23 * 8/n

11 0.33

13 0.21

15 ≤ n ≤ 39 0.15 * 15/n

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(b) Limits of Class B Harmonics Currents

For Class B equipment, the harmonic of the input current shall not exceed the maximum permissible values given in table that is the limit of Class A multiplied by a factor of 1.5.

(c) Limits of Class C Harmonics Currents

Harmonics Order

n

Maximum Permissible harmonic current Expressed as a percentage of the input current at the fundamental frequency

2 2

3 30.λ*

5 10

7 7

9 5

11 ≤ n ≤ 39 (odd harmonics only)

3

*λ is the circuit power factor

(d) Limits of Class D Harmonics Currents

Harmonics Order

n

Maximum Permissible harmonic current per watt

mA/W

Maximum Permissible harmonic current

A

3 3.4 2.30

5 1.9 1.14

7 1.0 0.77

9 0.5 0.40

11 0.35 0.33

11 ≤ n ≤ 39 (odd harmonics only)

3.85/n See limit of Class A

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7.4. Test Procedure

The EUT is supplied in series with power analyzer from a power source having the same normal voltage and frequency as the rated supply voltage and the equipment under test. And the rated voltage at the supply voltage of EUT of 0.94 times and 1.06 times shall be performed.

7.5. Deviation from Test Standard No deviation.

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7.6. Test Result Product Notebook P.C.

Test Item Harmonic Current Emission

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/18

Test Site SR-1

Test Result: Pass Source qualification: Normal

Current & voltage waveforms

-6-4-20246

-300-200-1000100200300

Cur

rent

(Am

ps)

Voltage (V

olts)

Harmonics and Class D limit line European Limits

0.000.050.100.150.200.250.300.35

Cur

rent

RM

S(A

mps

)

Harmonic #4 8 12 16 20 24 28 32 36 40

Test result: Pass

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Test Result: N/L Source qualification: Normal THC(A): 0.00 I-THD(%): 0.00 POHC(A): 0.000 POHC Limit(A): 0.000 Highest parameter values during test:

V_RMS (Volts): 230.02 Frequency(Hz): 50.00 I_Peak (Amps): 3.807 I_RMS (Amps): 0.767 I_Fund (Amps): 0.305 Crest Factor: 4.967 Power (Watts): 68.2 Power Factor: 0.389

Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status 2 0.002 3 0.292 0.232 0.0 0.293 0.348 0.00 N/L 4 0.001 5 0.281 0.130 0.0 0.283 0.194 0.00 N/L 6 0.001 7 0.266 0.068 0.0 0.268 0.102 0.00 N/L 8 0.001 9 0.247 0.034 0.0 0.250 0.051 0.00 N/L 10 0.001 11 0.226 0.024 0.0 0.228 0.036 0.00 N/L 12 0.001 13 0.202 0.020 0.0 0.204 0.030 0.00 N/L 14 0.001 15 0.176 0.018 0.0 0.179 0.026 0.00 N/L 16 0.001 17 0.151 0.016 0.0 0.154 0.023 0.00 N/L 18 0.001 19 0.127 0.014 0.0 0.129 0.021 0.00 N/L 20 0.001 21 0.104 0.012 0.0 0.106 0.019 0.00 N/L 22 0.001 23 0.084 0.011 0.0 0.086 0.017 0.00 N/L 24 0.001 25 0.066 0.011 0.0 0.068 0.016 0.00 N/L 26 0.001 27 0.051 0.010 0.0 0.053 0.015 0.00 N/L 28 0.001 29 0.040 0.009 0.0 0.041 0.014 0.00 N/L 30 0.001 31 0.032 0.008 0.0 0.032 0.013 0.00 N/L 32 0.001 33 0.026 0.008 0.0 0.026 0.012 0.00 N/L 34 0.000 35 0.022 0.008 0.0 0.022 0.011 0.00 N/L 36 0.000 37 0.019 0.007 0.0 0.019 0.011 0.00 N/L 38 0.000 39 0.016 0.007 0.0 0.016 0.010 0.00 N/L 40 0.000

1. Dynamic limits were applied for this test. The highest harmonics values in the above table may

not occur at the same window as the maximum harmonics/limit ratio.

2. According to EN61000-3-2 paragraph 7 the note 1 and 2 are valid for all applications having an

active input power >75W. Others the result should be pass.

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Product Notebook P.C.

Test Item Harmonic Current Emission

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/18

Test Site SR-1

Test Result: Pass Source qualification: Normal

Current & voltage waveforms

-6-4-20246

-300-200-1000100200300

Cur

rent

(Am

ps)

Voltage (V

olts)

Harmonics and Class D limit line European Limits

0.000.050.100.150.200.250.300.35

Cur

rent

RM

S(A

mps

)

Harmonic #4 8 12 16 20 24 28 32 36 40

Test result: Pass

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Test Result: N/L Source qualification: Normal THC(A): 0.00 I-THD(%): 0.00 POHC(A): 0.000 POHC Limit(A): 0.000 Highest parameter values during test:

V_RMS (Volts): 230.01 Frequency(Hz): 50.00 I_Peak (Amps): 3.800 I_RMS (Amps): 0.777 I_Fund (Amps): 0.305 Crest Factor: 4.896 Power (Watts): 68.6 Power Factor: 0.385

Harm# Harms(avg) 100%Limit %of Limit Harms(max) 150%Limit %of Limit Status 2 0.002 3 0.293 0.233 0.0 0.294 0.350 0.00 N/L 4 0.001 5 0.283 0.130 0.0 0.285 0.196 0.00 N/L 6 0.001 7 0.270 0.069 0.0 0.271 0.103 0.00 N/L 8 0.001 9 0.252 0.034 0.0 0.254 0.051 0.00 N/L 10 0.001 11 0.231 0.024 0.0 0.233 0.036 0.00 N/L 12 0.001 13 0.208 0.021 0.0 0.210 0.030 0.00 N/L 14 0.001 15 0.184 0.018 0.0 0.185 0.026 0.00 N/L 16 0.001 17 0.159 0.016 0.0 0.160 0.023 0.00 N/L 18 0.001 19 0.134 0.014 0.0 0.135 0.021 0.00 N/L 20 0.001 21 0.109 0.013 0.0 0.110 0.019 0.00 N/L 22 0.001 23 0.087 0.011 0.0 0.087 0.017 0.00 N/L 24 0.001 25 0.066 0.011 0.0 0.066 0.016 0.00 N/L 26 0.001 27 0.048 0.010 0.0 0.048 0.015 0.00 N/L 28 0.001 29 0.033 0.009 0.0 0.033 0.014 0.00 N/L 30 0.001 31 0.021 0.009 0.0 0.021 0.013 0.00 N/L 32 0.001 33 0.014 0.008 0.0 0.014 0.012 0.00 N/L 34 0.001 35 0.011 0.008 0.0 0.011 0.011 0.00 N/L 36 0.000 37 0.012 0.007 0.0 0.012 0.011 0.00 N/L 38 0.000 39 0.013 0.007 0.0 0.013 0.010 0.00 N/L 40 0.000

1. Dynamic limits were applied for this test. The highest harmonics values in the above table may

not occur at the same window as the maximum harmonics/limit ratio.

2. According to EN61000-3-2 paragraph 7 the note 1 and 2 are valid for all applications having an

active input power >75W. Others the result should be pass.

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7.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Harmonic Current Emission Test Setup

Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Harmonic Current Emission Test Setup

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8. Voltage Fluctuation and Flicker

8.1. Test Specification According to EMC Standard: EN 61000-3-3

8.2. Test Setup

8.3. Limit The following limits apply:

- the value of Pst shall not be greater than 1.0; - the value of Plt shall not be greater than 0.65; - the value of d(t) during a voltage change shall not exceed 3.3 % for more than 500 ms; - the relative steady-state voltage change, dc, shall not exceed 3.3 %; - the maximum relative voltage change, dmax, shall not exceed;

a) 4 % without additional conditions; b) 6 % for equipment which is:

- switched manually, or - switched automatically more frequently than twice per day, and also has either a

delayed restart (the delay being not less than a few tens of seconds), or manual restart, after a power supply interruption.

Note: The cycling frequency will be further limited by the Pst and P1t limit.

For example: a dmax of 6%producing a rectangular voltage change characteristic twice

per hour will give a P1t of about 0.65.

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c) 7 % for equipment which is: - attended whilst in use (for example: hair dryers, vacuum cleaners, kitchen equipment

such as mixers, garden equipment such as lawn mowers, portable tools such as electric drills), or

- switched on automatically, or is intended to be switched on manually, no more than

twice per day, and also has either a delayed restart (the delay being not less than a few tens of seconds) or manual restart, after a power supply interruption.

Pst and P1t requirements shall not be applied to voltage changes caused by manual switching.

8.4. Test Procedure

The EUT is supplied in series with power analyzer from a power source having the same normal voltage and frequency as the rated supply voltage and the equipment under test. And the rated voltage at the supply voltage of EUT of 0.94 times and 1.06 times shall be performed.

8.5. Deviation from Test Standard No deviation.

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8.6. Test Result Product Notebook P.C.

Test Item Voltage Fluctuation and Flicker

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/18

Test Site SR-1

Test Result: Pass Status: Test Completed

Psti and limit line European Limits

0.25

0.50

0.75

1.00

Pst

5:3

1:3

1

Plt and limit line

0.00.10.20.30.40.50.6

Plt

5:31:31

Parameter values recorded during the test: Vrms at the end of test (Volt): 229.90 Highest dt (%): 0.00 Test limit (%): 3.30 Pass Time(mS) > dt: 0.0 Test limit (mS): 0.0 Pass Highest dc (%): 0.00 Test limit (%): 3.30 Pass Highest dmax (%): 0.00 Test limit (%): 4.00 Pass Highest Pst (10 min. period): 0.064 Test limit: 1.000 Pass Highest Plt (2 hr. period): 0.028 Test limit: 0.650 Pass

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Product Notebook P.C.

Test Item Voltage Fluctuation and Flicker

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/18

Test Site SR-1

Test Result: Pass Status: Test Completed

Psti and limit line European Limits

0.25

0.50

0.75

1.00

Pst

7:4

0:2

0

Plt and limit line

0.00.10.20.30.40.50.6

Plt

7:40:20

Parameter values recorded during the test: Vrms at the end of test (Volt): 229.75 Highest dt (%): 0.00 Test limit (%): 3.30 Pass Time(mS) > dt: 0.0 Test limit (mS): 0.0 Pass Highest dc (%): 0.00 Test limit (%): 3.30 Pass Highest dmax (%): 0.00 Test limit (%): 4.00 Pass Highest Pst (10 min. period): 0.064 Test limit: 1.000 Pass Highest Plt (2 hr. period): 0.028 Test limit: 0.650 Pass

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8.7. Test Photograph Test Mode : Mode 1: Communication by WLAN1 and Bluetooth Description : Voltage Fluctuation and Flicker Test Setup

Test Mode : Mode 3: Communication by WLAN2 and Bluetooth Description : Voltage Fluctuation and Flicker Test Setup

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9. Electrostatic Discharge

9.1. Test Specification According to Standard: EN 61000-4-2

9.2. Test Setup

9.3. Limit

Item Environmental Phenomena

Units Test Specification Performance Criteria

Enclosure Port

Electrostatic Discharge kV(Charge Voltage) ±8 Air Discharge ±4 Contact Discharge

B

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9.4. Test Procedure

Direct application of discharges to the EUT: Contact discharge was applied only to conductive surfaces of the EUT. Air discharges were applied only to non-conductive surfaces of the EUT. During the test, it was performed with single discharges. For the single discharge time between successive single discharges will be keep longer 1 second. It was at least ten single discharges with positive and negative at the same selected point. The selected point, which was performed with electrostatic discharge, was marked on the red label of the EUT.

Indirect application of discharges to the EUT:

Vertical Coupling Plane (VCP): The coupling plane, of dimensions 0.5m x 0.5m, is placed parallel to, and positioned at a distance 0.1m from, the EUT, with the Discharge Electrode touching the coupling plane. The four faces of the EUT will be performed with electrostatic discharge. It was at least ten single discharges with positive and negative at the same selected point. Horizontal Coupling Plane (HCP): The coupling plane is placed under to the EUT. The generator shall be positioned vertically at a distance of 0.1m from the EUT, with the Discharge Electrode touching the coupling plane. The four faces of the EUT will be performed with electrostatic discharge. It was at least ten single discharges with positive and negative at the same selected point.

9.5. Deviation from Test Standard

No deviation.

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9.6. Test Result Product Notebook P.C.

Test Item Electrostatic Discharge

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site SR-3

Item Amount of Discharge

Voltage (kV)

Required Criteria

Complied to Criteria

Results

Air Discharge 1000 ±2, ±4, ±8 B A Pass

Contact Discharge 500 ±2, ±4 B A Pass

Indirect Discharge (HCP)

200 ±2, ±4 B A Pass

Indirect Discharge (VCP Front)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Left)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Back)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Right)

50 ±2, ±4 B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV. No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Electrostatic Discharge

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site SR-3

Item Amount of Discharge

Voltage (kV)

Required Criteria

Complied to Criteria

Results

Air Discharge 1000 ±2, ±4, ±8 B A Pass

Contact Discharge 500 ±2, ±4 B A Pass

Indirect Discharge (HCP)

200 ±2, ±4 B A Pass

Indirect Discharge (VCP Front)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Left)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Back)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Right)

50 ±2, ±4 B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV. No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Electrostatic Discharge

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site SR-3

Item Amount of Discharge

Voltage (kV)

Required Criteria

Complied to Criteria

Results

Air Discharge 1000 ±2, ±4, ±8 B A Pass

Contact Discharge 500 ±2, ±4 B A Pass

Indirect Discharge (HCP)

200 ±2, ±4 B A Pass

Indirect Discharge (VCP Front)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Left)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Back)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Right)

50 ±2, ±4 B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV. No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Electrostatic Discharge

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site SR-3

Item Amount of Discharge

Voltage (kV)

Required Criteria

Complied to Criteria

Results

Air Discharge 1000 ±2, ±4, ±8 B A Pass

Contact Discharge 500 ±2, ±4 B A Pass

Indirect Discharge (HCP)

200 ±2, ±4 B A Pass

Indirect Discharge (VCP Front)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Left)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Back)

50 ±2, ±4 B A Pass

Indirect Discharge (VCP Right)

50 ±2, ±4 B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV. No false alarms or other malfunctions were observed during or after the test.

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9.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Electrostatic Discharge Test Setup

Test Mode: Mode 2: Standby Description: Electrostatic Discharge Test Setup

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Electrostatic Discharge Test Setup

Test Mode: Mode 2: Standby Description: Electrostatic Discharge Test Setup

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10. RF Electromagnetic Field

10.1. Test Specification

According to Standard: EN 61000-4-3

10.2. Test Setup

10.3. Limit

Item Environmental Phenomena

Units Test Specification Performance Criteria

Enclosure Port (See Note)

Radio-Frequency Electromagnetic Field Amplitude Modulated

MHz V/m(Un-modulated, rms)% AM (1kHz)

80-1000, 1400-2000 3 80

A

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10.4. Test Procedure

The EUT and load, which are placed on a table that is 0.8 meter above ground, are placed with one coincident with the calibration plane such that the distance from antenna to the EUT was 3 meters. Both horizontal and vertical polarization of the antenna and four sides of the EUT are set on measurement. In order to judge the EUT performance, a CCD camera is used to monitor EUT screen.

All the scanning conditions are as follows: Condition of Test Remarks 1. Field Strength 3 V/m Level 2 2. Radiated Signal AM 80% Modulated with 1kHz 3. Scanning Frequency 80 - 1000MHz, 1400 – 2000MHz 4 Dwell Time 3 Seconds 5. Frequency step size ∆ f 1% 6. The rate of Swept of Frequency 1.5 x 10-3 decades/s

10.5. Deviation from Test Standard

No deviation.

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10.6. Test Result Product Notebook P.C.

Test Item RF Electromagnetic Field

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site AC-4

Frequency (MHz)

Position (Angle)

Polarity (H or V)

Field Strength

(V/m)

Required Criteria

Complied to Criteria

Results

80-1000 1400-2000

Front H 3 A A Pass

80-1000 1400-2000

Front V 3 A A Pass

80-1000 1400-2000

Back H 3 A A Pass

80-1000 1400-2000

Back V 3 A A Pass

80-1000 1400-2000

Right H 3 A A Pass

80-1000 1400-2000

Right V 3 A A Pass

80-1000 1400-2000

Left H 3 A A Pass

80-1000 1400-2000

Left V 3 A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V/m, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Electromagnetic Field

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site AC-4

Frequency (MHz)

Position (Angle)

Polarity (H or V)

Field Strength

(V/m)

Required Criteria

Complied to Criteria

Results

80-1000 1400-2000

Front H 3 A A Pass

80-1000 1400-2000

Front V 3 A A Pass

80-1000 1400-2000

Back H 3 A A Pass

80-1000 1400-2000

Back V 3 A A Pass

80-1000 1400-2000

Right H 3 A A Pass

80-1000 1400-2000

Right V 3 A A Pass

80-1000 1400-2000

Left H 3 A A Pass

80-1000 1400-2000

Left V 3 A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V/m, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Electromagnetic Field

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site AC-4

Frequency (MHz)

Position (Angle)

Polarity (H or V)

Field Strength

(V/m)

Required Criteria

Complied to Criteria

Results

80-1000 1400-2000

Front H 3 A A Pass

80-1000 1400-2000

Front V 3 A A Pass

80-1000 1400-2000

Back H 3 A A Pass

80-1000 1400-2000

Back V 3 A A Pass

80-1000 1400-2000

Right H 3 A A Pass

80-1000 1400-2000

Right V 3 A A Pass

80-1000 1400-2000

Left H 3 A A Pass

80-1000 1400-2000

Left V 3 A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V/m, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Electromagnetic Field

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site AC-4

Frequency (MHz)

Position (Angle)

Polarity (H or V)

Field Strength

(V/m)

Required Criteria

Complied to Criteria

Results

80-1000 1400-2000

Front H 3 A A Pass

80-1000 1400-2000

Front V 3 A A Pass

80-1000 1400-2000

Back H 3 A A Pass

80-1000 1400-2000

Back V 3 A A Pass

80-1000 1400-2000

Right H 3 A A Pass

80-1000 1400-2000

Right V 3 A A Pass

80-1000 1400-2000

Left H 3 A A Pass

80-1000 1400-2000

Left V 3 A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V/m, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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10.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: RF Electromagnetic Field Test Setup

Test Mode: Mode 2: Standby Description: RF Electromagnetic Field Test Setup

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: RF Electromagnetic Field Test Setup

Test Mode: Mode 4: Standby Description: RF Electromagnetic Field Test Setup

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11. Fast Transients Common Mode

11.1. Test Specification According to Standard: EN 61000-4-4

11.2. Test Setup

11.3. Limit Item Environmental

Phenomena Units Test Specification Performance Criteria

Signal Ports and Telecommunication Ports (See Note) Fast Transients Common Mode

kV (Peak) Tr/Th ns Rep. Frequency kHz

+0.5 5/50 5

B

Input D.C. Power Ports Fast Transients Common Mode

kV (Peak) Tr/Th ns Rep. Frequency kHz

+0.5 5/50 5

B

Input A.C. Power Ports Fast Transients Common Mode

kV (Peak) Tr/Th ns Rep. Frequency kHz

+1 5/50 5

B

Note: Applicable only to cables which according to the manufacturer’s specification supports communication on cable lengths greater than 3m.

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11.4. Test Procedure The EUT is placed on a table that is 0.8 meter height. A ground reference plane is placed on the table, and uses a 0.1m insulation between the EUT and ground reference plane. The minimum area of the ground reference plane is 1m*1m, and 0.65mm thick min, and projected beyond the EUT by at least 0.1m on all sides. For signal and telecommunication ports: The EFT interference signal is through a coupling clamp device couples to the signal and control lines of the EUT with burst noise for 1minute. For input A.C. and D.C. power ports: The EUT is connected to the power mains through a coupling device that directly couples the EFT/B interference signal. Each of the Line and Neutral conductors is impressed with burst noise for 1 minute. The length of the signal and power lines between the coupling device and the EUT is 0.5m.

11.5. Deviation from Test Standard No deviation.

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11.6. Test Result Product Notebook P.C.

Test Item Fast Transients Common Mode

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Voltage

(kV)

Inject Time

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L+N+PE ± 1 60 Direct B A Pass

LAN ± 0.5 60 Clamp B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Fast Transients Common Mode

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Voltage

(kV)

Inject Time

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L+N+PE ± 1 60 Direct B A Pass

LAN ± 0.5 60 Clamp B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Fast Transients Common Mode

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Voltage

(kV)

Inject Time

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L+N+PE ± 1 60 Direct B A Pass

LAN ± 0.5 60 Clamp B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Fast Transients Common Mode

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Voltage

(kV)

Inject Time

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L+N+PE ± 1 60 Direct B A Pass

LAN ± 0.5 60 Clamp B A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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11.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Fast Transients Common Mode Test Setup for Main

Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Fast Transients Common Mode Test Setup for LAN

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Test Mode: Mode 2: Standby Description: Fast Transients Common Mode Test Setup for Main

Test Mode: Mode 2: Standby Description: Fast Transients Common Mode Test Setup for LAN

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Fast Transients Common Mode Test Setup for Main

Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Fast Transients Common Mode Test Setup for LAN

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Test Mode: Mode 4: Standby Description: Fast Transients Common Mode Test Setup for Main

Test Mode: Mode 4: Standby Description: Fast Transients Common Mode Test Setup for LAN

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12. Surges

12.1. Test Specification According to Standard: EN 61000-4-5

12.2. Test Setup

12.3. Limit Item Environmental

Phenomena Units Test Specification Performance Criteria

Telecommunication ports directly connected to outdoor cables Surges Line to Ground

Tr/Th us kV

1.2/50 (8/20) ± 1 B

Telecommunication ports directly connected to indoor cables (See Note(2)) Surges Line to Ground

Tr/Th us kV

1.2/50 (8/20) ± 0.5 B

AC Power Ports (See Note(3)) Surges Line to Line Line to Ground

Tr/Th us kV kV

1.2/50 (8/20) ± 1 ± 2

B

Note 1: Where normal functioning cannot be achieved because of the impact of the CDN on the EUT, no immunity test shall be required.

Note 2: In telecommunications centres 0.5 kV line to ground shall be used. Note 3: In telecom centres 1 kV line to ground and 0.5 kV line to line shall be used.

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12.4. Test Procedure The EUT and its load are placed on a table that is 0.8 meter above a metal ground plane measured 1m*1m min. and 0.65mm thick min. And projected beyond the EUT by at least 0.1m on all sides. The length of power cord between the coupling device and the EUT shall be 2m or less. For input A.C. and D.C. power ports: The EUT is connected to the power mains through a coupling device that directly couples the Surge interference signal. The surge noise shall be applied synchronized to the voltage phase at 00, 900, 1800, 2700 and the peak value of the a.c. voltage wave. (Positive and negative) Each of Line-Earth and Line-Line is impressed with a sequence of five surge voltages with interval of 1 min.

12.5. Deviation from Test Standard No deviation.

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12.6. Test Result Product Notebook P.C.

Test Item Surges

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Angle Voltage

(kV)

Time Interval

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L-N ± 0 1 60 Direct B A Pass

L-N ± 90 1 60 Direct B A Pass

L-N ± 180 1 60 Direct B A Pass

L-N ± 270 1 60 Direct B A Pass

L+PE ± 0 2 60 Direct B A Pass

L+PE ± 90 2 60 Direct B A Pass

L+PE ± 180 2 60 Direct B A Pass

L+PE ± 270 2 60 Direct B A Pass

N+PE ± 0 2 60 Direct B A Pass

N+PE ± 90 2 60 Direct B A Pass

N+PE ± 180 2 60 Direct B A Pass

N+PE ± 270 2 60 Direct B A Pass

Note: The testing performed is from lowest level up to the highest level as required by standard, but

only highest level is shown on the report.

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Surges

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Angle Voltage

(kV)

Time Interval

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L-N ± 0 1 60 Direct B A Pass

L-N ± 90 1 60 Direct B A Pass

L-N ± 180 1 60 Direct B A Pass

L-N ± 270 1 60 Direct B A Pass

L+PE ± 0 2 60 Direct B A Pass

L+PE ± 90 2 60 Direct B A Pass

L+PE ± 180 2 60 Direct B A Pass

L+PE ± 270 2 60 Direct B A Pass

N+PE ± 0 2 60 Direct B A Pass

N+PE ± 90 2 60 Direct B A Pass

N+PE ± 180 2 60 Direct B A Pass

N+PE ± 270 2 60 Direct B A Pass

Note: The testing performed is from lowest level up to the highest level as required by standard, but

only highest level is shown on the report.

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Surges

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Angle Voltage

(kV)

Time Interval

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L-N ± 0 1 60 Direct B A Pass

L-N ± 90 1 60 Direct B A Pass

L-N ± 180 1 60 Direct B A Pass

L-N ± 270 1 60 Direct B A Pass

L+PE ± 0 2 60 Direct B A Pass

L+PE ± 90 2 60 Direct B A Pass

L+PE ± 180 2 60 Direct B A Pass

L+PE ± 270 2 60 Direct B A Pass

N+PE ± 0 2 60 Direct B A Pass

N+PE ± 90 2 60 Direct B A Pass

N+PE ± 180 2 60 Direct B A Pass

N+PE ± 270 2 60 Direct B A Pass

Note: The testing performed is from lowest level up to the highest level as required by standard, but

only highest level is shown on the report.

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Surges

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site SR-2

Inject Line

Polarity Angle Voltage

(kV)

Time Interval

(Second)

Inject Method

Required Criteria

Complied to Criteria

Result

L-N ± 0 1 60 Direct B A Pass

L-N ± 90 1 60 Direct B A Pass

L-N ± 180 1 60 Direct B A Pass

L-N ± 270 1 60 Direct B A Pass

L+PE ± 0 2 60 Direct B A Pass

L+PE ± 90 2 60 Direct B A Pass

L+PE ± 180 2 60 Direct B A Pass

L+PE ± 270 2 60 Direct B A Pass

N+PE ± 0 2 60 Direct B A Pass

N+PE ± 90 2 60 Direct B A Pass

N+PE ± 180 2 60 Direct B A Pass

N+PE ± 270 2 60 Direct B A Pass

Note: The testing performed is from lowest level up to the highest level as required by standard, but

only highest level is shown on the report.

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at kV of Line .

No false alarms or other malfunctions were observed during or after the test.

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12.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: Surges Test Setup for Main

Test Mode: Mode 2: Standby Description: Surges Test Setup for Main

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: Surges Test Setup for Main

Test Mode: Mode 4: Standby Description: Surges Test Setup for Main

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13. RF Common Mode

13.1. Test Specification According to Standard: EN 61000-4-6

13.2. Test Setup CDN Test Setup

EM Clamp Test Setup

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13.3. Limit

Item Environmental Phenomena

Units Test Specification Performance Criteria

Signal Ports, Telecommunication Ports, Control Ports Radio-Frequency Continuous Conducted

MHz V (rms, Un-modulated) % AM (1kHz)

0.15-80 3 80

A

D.C. Power Ports Radio-Frequency Continuous Conducted

MHz V (rms, Un-modulated) % AM (1kHz)

0.15-80 3 80

A

A.C. Power Ports Radio-Frequency Continuous Conducted

MHz V (rms, Un-modulated) % AM (1kHz)

0.15-80 3 80

A

13.4. Test Procedure

The EUT are placed on a table that is 0.8 meter height, and a Ground reference plane on the table, EUT are placed upon table and use a 0.1m insulation between the EUT and Ground reference plane. For signal ports, telecommunication ports and control ports: The disturbance signal is through a coupling and decoupling networks (CDN) or EM-clamp device couples to the signal and Telecommunication lines of the EUT. For input D.C. and A.C. power ports: The EUT is connected to the power mains through a coupling and decoupling networks for power supply lines. And directly couples the disturbances signal into EUT. Used CDN-M2 for two wires or CDN-M3 for three wires.

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All the scanning conditions are as follows: Condition of Test Remarks 1. Field Strength 3V Level 2 2. Radiated Signal AM 80% Modulated with 1kHz 3. Scanning Frequency 0.15 - 80MHz 4 Dwell Time 3 Seconds 5. Frequency step size ∆ f 1% 6. The rate of Swept of Frequency 1.5 x 10-3 decades/s

13.5. Deviation from Test Standard No deviation.

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13.6. Test Result Product Notebook P.C.

Test Item RF Common Mode

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Frequency (MHz)

Voltage

(V)

Inject

Method Inject Ports

Required Criteria

Complied to Criteria

Result

0.15-80 3 CDN AC IN A A Pass

0.15-80 3 CDN LAN A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Common Mode

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site SR-2

Frequency (MHz)

Voltage

(V)

Inject

Method Inject Ports

Required Criteria

Complied to Criteria

Result

0.15-80 3 CDN AC IN A A Pass

0.15-80 3 CDN LAN A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Common Mode

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Frequency (MHz)

Voltage

(V)

Inject

Method Inject Ports

Required Criteria

Complied to Criteria

Result

0.15-80 3 CDN AC IN A A Pass

0.15-80 3 CDN LAN A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item RF Common Mode

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site SR-2

Frequency (MHz)

Voltage

(V)

Inject

Method Inject Ports

Required Criteria

Complied to Criteria

Result

0.15-80 3 CDN AC IN A A Pass

0.15-80 3 CDN LAN A A Pass

Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at frequency MHz.

No false alarms or other malfunctions were observed during or after the test.

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13.7. Test Photograph Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: RF Common Mode Test Setup for Main

Test Mode: Mode 1: Communication by WLAN1 and Bluetooth Description: RF Common Mode Test Setup for LAN

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Test Mode: Mode 2: Standby Description: RF Common Mode Test Setup for Main

Test Mode: Mode 2: Standby Description: RF Common Mode Test Setup for LAN

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Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: RF Common Mode Test Setup for Main

Test Mode: Mode 3: Communication by WLAN2 and Bluetooth Description: RF Common Mode Test Setup for LAN

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Test Mode: Mode 4: Standby Description: RF Common Mode Test Setup for Main

Test Mode: Mode 4: Standby Description: RF Common Mode Test Setup for LAN

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14. Voltage Dips and Interruption

14.1. Test Specification According to Standard: EN 61000-4-11

14.2. Test Setup

14.3. Limit Item Environmental

Phenomena Units Test Specification Performance Criteria

Input A.C. Power Ports

% Reduction ms

30 10

C Voltage Dips

% Reduction ms

60 100

B

Voltage Interruptions % Reduction ms

>95 5000

C

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14.4. Test Procedure The EUT and its load are placed on a table which is 0.8 meter above a metal ground plane measured 1m*1m min. And 0.65mm thick min. And projected beyond the EUT by at least 0.1m on all sides. The power cord shall be used the shortest power cord as specified by the manufacturer. For Voltage Dips/ Interruptions test: The selection of test voltage is based on the rated power range. If the operation range is large than 20% of lower power range, both end of specified voltage shall be tested. Otherwise, the typical voltage specification is selected as test voltage. The EUT is connected to the power mains through a coupling device that directly couples to the Voltage Dips and Interruption Generator. Voltage phase shifting are shall occur at 00, 450, 900, 1350, 1800, 2250, 2700, 3150 of the voltage.

14.5. Deviation from Test Standard

No deviation.

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14.6. Test Result Product Notebook P.C.

Test Item Voltage Dips and Interruption

Test Mode Mode 1: Communication by WLAN1 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Voltage Dips and

Interruption Reduction (%)

Angle Test Duration

(ms) Required Criteria

Complied to Criteria

Test Result

30(161V) 0 10 B A Pass

30(161V) 45 10 B A Pass

30(161V) 90 10 B A Pass

30(161V) 135 10 B A Pass

30(161V) 180 10 B A Pass

30(161V) 225 10 B A Pass

30(161V) 270 10 B A Pass

30(161V) 315 10 B A Pass

60(92V) 0 100 C A Pass

60(92V) 45 100 C A Pass

60(92V) 90 100 C A Pass

60(92V) 135 100 C A Pass

60(92V) 180 100 C A Pass

60(92V) 225 100 C A Pass

60(92V) 270 100 C A Pass

60(92V) 315 100 C A Pass

>95(0V) 0 5000 C B Pass

>95(0V) 45 5000 C B Pass

>95(0V) 90 5000 C B Pass

>95(0V) 135 5000 C B Pass

>95(0V) 180 5000 C B Pass

>95(0V) 225 5000 C B Pass

>95(0V) 270 5000 C B Pass

>95(0V) 315 5000 C B Pass

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Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at angle.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Voltage Dips and Interruption

Test Mode Mode 2: Standby

Date of Test 2009/04/30

Test Site SR-2

Voltage Dips and

Interruption Reduction (%)

Angle Test Duration

(ms) Required Criteria

Complied to Criteria

Test Result

30(161V) 0 10 B A Pass

30(161V) 45 10 B A Pass

30(161V) 90 10 B A Pass

30(161V) 135 10 B A Pass

30(161V) 180 10 B A Pass

30(161V) 225 10 B A Pass

30(161V) 270 10 B A Pass

30(161V) 315 10 B A Pass

60(92V) 0 100 C A Pass

60(92V) 45 100 C A Pass

60(92V) 90 100 C A Pass

60(92V) 135 100 C A Pass

60(92V) 180 100 C A Pass

60(92V) 225 100 C A Pass

60(92V) 270 100 C A Pass

60(92V) 315 100 C A Pass

>95(0V) 0 5000 C B Pass

>95(0V) 45 5000 C B Pass

>95(0V) 90 5000 C B Pass

>95(0V) 135 5000 C B Pass

>95(0V) 180 5000 C B Pass

>95(0V) 225 5000 C B Pass

>95(0V) 270 5000 C B Pass

>95(0V) 315 5000 C B Pass

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Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at angle.

No false alarms or other malfunctions were observed during or after the test.

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Product Notebook P.C.

Test Item Voltage Dips and Interruption

Test Mode Mode 3: Communication by WLAN2 and Bluetooth

Date of Test 2009/04/30

Test Site SR-2

Voltage Dips and

Interruption Reduction (%)

Angle Test Duration

(ms) Required Criteria

Complied to Criteria

Test Result

30(161V) 0 10 B A Pass

30(161V) 45 10 B A Pass

30(161V) 90 10 B A Pass

30(161V) 135 10 B A Pass

30(161V) 180 10 B A Pass

30(161V) 225 10 B A Pass

30(161V) 270 10 B A Pass

30(161V) 315 10 B A Pass

60(92V) 0 100 C A Pass

60(92V) 45 100 C A Pass

60(92V) 90 100 C A Pass

60(92V) 135 100 C A Pass

60(92V) 180 100 C A Pass

60(92V) 225 100 C A Pass

60(92V) 270 100 C A Pass

60(92V) 315 100 C A Pass

>95(0V) 0 5000 C B Pass

>95(0V) 45 5000 C B Pass

>95(0V) 90 5000 C B Pass

>95(0V) 135 5000 C B Pass

>95(0V) 180 5000 C B Pass

>95(0V) 225 5000 C B Pass

>95(0V) 270 5000 C B Pass

>95(0V) 315 5000 C B Pass

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Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at angle.

No false alarms or other malfunctions were observed during or after the test.

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Report No: 094S039-RF-CE-P02V01

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Product Notebook P.C.

Test Item Voltage Dips and Interruption

Test Mode Mode 4: Standby

Date of Test 2009/04/30

Test Site SR-2

Voltage Dips and

Interruption Reduction (%)

Angle Test Duration

(ms) Required Criteria

Complied to Criteria

Test Result

30(161V) 0 10 B A Pass

30(161V) 45 10 B A Pass

30(161V) 90 10 B A Pass

30(161V) 135 10 B A Pass

30(161V) 180 10 B A Pass

30(161V) 225 10 B A Pass

30(161V) 270 10 B A Pass

30(161V) 315 10 B A Pass

60(92V) 0 100 C A Pass

60(92V) 45 100 C A Pass

60(92V) 90 100 C A Pass

60(92V) 135 100 C A Pass

60(92V) 180 100 C A Pass

60(92V) 225 100 C A Pass

60(92V) 270 100 C A Pass

60(92V) 315 100 C A Pass

>95(0V) 0 5000 C B Pass

>95(0V) 45 5000 C B Pass

>95(0V) 90 5000 C B Pass

>95(0V) 135 5000 C B Pass

>95(0V) 180 5000 C B Pass

>95(0V) 225 5000 C B Pass

>95(0V) 270 5000 C B Pass

>95(0V) 315 5000 C B Pass

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Meet criteria A: Operate as intended during and after the test Meet criteria B: Operate as intended after the test Meet criteria C: Loss/Error of function Additional Information

EUT stopped operation and could / could not be reset by operator at V, at angle.

No false alarms or other malfunctions were observed during or after the test.

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14.7. Test Photograph Test Mode : Mode 1: Communication by WLAN1 and Bluetooth Description : Voltage Dips and Interruption Test Setup

Test Mode : Mode 2: Standby Description : Voltage Dips and Interruption Test Setup

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Test Mode : Mode 3: Communication by WLAN2 and Bluetooth Description : Voltage Dips and Interruption Test Setup

Test Mode : Mode 4: Standby Description : Voltage Dips and Interruption Test Setup

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15. Transients and surges

15.1. Test Specification According to Standard: ISO 7637-2

15.2. Test Setup

15.3. Limit EUT applying pulses 1, 2a, 2b, 3a, 3b, and 4, using immunity test level Ⅲ. For the purpose of EMC testing it is sufficient to apply pulses 1, 2a and 4, 10 times each, and apply the test pulses 3a and 3b for 20 minutes each.

15.4. Test Procedure Test requirements for 12 V DC powered equipment: Where the manufacturer in his installation documentation requires the radio equipment to have a direct connection to the 12 V main vehicle battery the requirements in a) shall apply. Where the manufacturer does not require the radio equipment to have a direct connection to the 12 V main vehicle battery the requirements in a) and b) shall apply: Pulse 3a and 3b, level II, with the test time reduced to 5 min for each; Pulse 4, level II, 5 pulses, with the characteristics as follows: Vs = -5 V; Va = -2.5 V; t6 = 25 ms; t7 = 50 ms; t8 = 5 s; tf = 5 ms; pulse cycle time: 60 s Pulse, level II: t1 = 2.5 s; 10 pulses; Pulse 2, level II: t1 = 2.5 s; 10 pulses;

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Report No: 094S039-RF-CE-P02V01

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Pulse 7, 5 pulses. Where the manufacturer declares that the radio equipment requires a direct connection to the main vehicle battery, and therefore the tests in accordance with the requirements b) are not carried out, this shall be stated in the test report. Test requirements for 24 V DC powered equipment: Where the manufacturer in his installation documentation requires the radio equipment to have a direct connection to the 24 V main vehicle battery the requirements in c) shall apply. Where the manufacturer does not require the radio equipment to have a direct connection to the 24 V main vehicle battery the requirements in c) and d) shall apply: c) Pulse 3a and 3b, level II, with the test time reduced to 5 min for each; Pulse 4, level II, 5 pulses, with the characteristics as follows: Vs = -10 V; Va = -5 V; t6 = 25 ms; t7 = 50 ms; t8 = 5 s; tf = 10 ms; pulse cycle time: 60 s d) Pulse 1a, level II: t1 = 2.5 s; Ri = 25 Ω; 10 pulses; Pulse 2b, level II: t1 = 2.5 s; Ri = 100 Ω; 10 pulses; Pulse 2, 10 pulses. Where the manufacturer declares that the radio equipment requires a direct connection to the main vehicle battery, and therefore the tests in accordance with the requirements d) are not carried out, this shall be stated in the test report. Radio and ancillary equipment designed to operate at both DC power voltages shall be tested in both configurations.

15.5. Deviation from Test Standard No deviation.

15.6. Test Result The EUT is not used for vehicular, so the test item is not necessary performed.

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16. Attachment EUT Photograph

(1) EUT Photo

(2) EUT Photo

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(3) EUT Photo

(4) EUT Photo

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(5) EUT Photo

(6) EUT Photo

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(7) EUT Photo

(8) EUT Photo

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(9) EUT Photo

(10) EUT Photo

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(11) EUT Photo

(12) EUT Photo

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(13) EUT Photo

(14) EUT Photo

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(15) EUT Photo

(16) EUT Photo

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(17) EUT Photo

(18) EUT Photo

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(19) EUT Photo


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