45
Compliance Certification Services Inc. Report No: 41104402-RE Date of Issue: December 7, 2004 Note: This report shall not be reproduced except in full, without the written approval of Compliance Certification Services Inc. This document may be altered or revised by Compliance Certification Services Inc. personnel only, and shall be noted in the revision section of the document. Page 1 Total Page: 45 Rev. 00 ETSI EN 301 489-17 V1.2.1: 2002 TEST REPORT For Bluetooth USB Hub Model: MS-6871 Trade Name: MSI Issued to MICRO-STAR INT'L CO., LTD. NO. 69, Li-De St, Jung-He City, Taipei Hsien, Taiwan, R.O.C. Issued by Compliance Certification Services Inc. No. 81-1, Lane 210, Bade Rd. 2, Luchu Hsiang, Taoyuan Hsien, (338) Taiwan, R.O.C. TEL: 886-3-324-0332 FAX: 886-3-324-5235

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Page 1: 41104402-RE EN 301 489-17 - faenl.msi.comfaenl.msi.com/ftp/CE Documents/68xx/MS-6871.pdf · Compliance Certification Services Inc. Report No: 41104402-RE Date of Issue: December 7,

Compliance Certification Services Inc. Report No: 41104402-RE Date of Issue: December 7, 2004

Note: This report shall not be reproduced except in full, without the written approval of Compliance Certification Services Inc. This document may be altered or revised by Compliance Certification

Services Inc. personnel only, and shall be noted in the revision section of the document.

Page 1 Total Page: 45

Rev. 00

ETSI EN 301 489-17 V1.2.1: 2002

TEST REPORT

For

Bluetooth USB Hub

Model: MS-6871

Trade Name: MSI

Issued to

MICRO-STAR INT'L CO., LTD. NO. 69, Li-De St, Jung-He City,

Taipei Hsien, Taiwan, R.O.C.

Issued by

Compliance Certification Services Inc. No. 81-1, Lane 210, Bade Rd. 2, Luchu Hsiang,

Taoyuan Hsien, (338) Taiwan, R.O.C. TEL: 886-3-324-0332 FAX: 886-3-324-5235

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Page 2 Rev.00

TABLE OF CONTENTS 1. TEST RESULT CERTIFICATION............................................................................................. 3

2. EUT DESCRIPTION..................................................................................................................... 4

3. TEST METHODOLOGY.............................................................................................................. 5 3.1 UNIT OF MEASUREMENT............................................................................................... 5 3.2 ANTENNA..................................................................................................................... 5 3.3 MEASUREMENT EQUIPMENT USED .................................................................. 6 3.4 DECISION OF FINAL TEST MODE .................................................................................... 9

4. INSTRUMENT AND CALIBRATION...................................................................................... 10 4.1 MEASURING INSTRUMENT CALIBRATION.................................................... 10

5. FACILITIES AND ACCREDITATIONS.................................................................................. 11 5.1 FACILITIES ................................................................................................................. 11 5.2 EQUIPMENT................................................................................................................ 11 5.3 LABORATORY ACCREDITATIONS AND LISTINGS.......................................................... 11 5.4 TABLE OF ACCREDITATIONS AND LISTINGS ............................................................... 12

6. SETUP OF EQUIPMENT UNDER TEST................................................................................. 13 6.1 SETUP CONFIGURATION OF EUT.................................................................................. 13 6.2 SUPPORT EQUIPMENT......................................................................................... 13 6.3 TEST SETUP ................................................................................................................ 14

7. ETSI EN 301 489-1/-17 REQUIREMENTS............................................................................... 15 7.1 RADIATED EMISSION .................................................................................................. 15 7.2 AC MAINS LINE CONDUCTED EMISSION....................................................................... 17 7.3 AC MAINS HARMONIC CURRENT EMISSION ................................................................. 20 7.4 AC MAINS VOLTAGE FLUCTUATION AND FLICKER ...................................................... 22 7.5 ELECTROSTATIC DISCHARGE...................................................................................... 24 7.6 RF ELECTROMAGNETIC FIELD..................................................................................... 30 7.7 AC MAINS FAST TRANSIENTS – COMMON MODE.......................................................... 32 7.8 AC MAINS SURGE........................................................................................................ 34 7.9 AC MAINS RF – COMMON MODE.................................................................................. 36 7.10 VOLTAGE DIPS AND INTERRUPTION ............................................................................ 38

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1. TEST RESULT CERTIFICATION Applicant: MICRO-STAR INT'L CO., LTD.

NO. 69, Li-De St, Jung-He City, Taipei Hsien, Taiwan, R.O.C.

Equipment Under Test: Bluetooth USB Hub

Trade Name: MSI

Model: MS-6871

Date of Test: November 10 ~ December 1, 2004 APPLICABLE STANDARDS

STANDARD TEST RESULT ETSI EN 301 489-17 V1.2.1: 2002 No non-compliance noted Applicable Standard Class/Limit/Criterion Test Result

ETSI EN 301 489-1 V1.4.1: 2002 EN 55022: 1998 Class B No non-compliance noted EN 61000-3-2: 2000 Class D No non-compliance noted EN 61000-3-3: 1995 + A1: 2001 Limit No non-compliance noted EN 61000-4-2: 1995 + A2: 2001 Criterion B No non-compliance noted EN 61000-4-3: 2002 + A1: 2002 Criterion A No non-compliance noted EN 61000-4-4: 1995 + A2: 2001 Criterion B No non-compliance noted EN 61000-4-5: 1995 + A1: 2001 Criterion B No non-compliance noted EN 61000-4-6: 1996 + A1: 2001 Criterion A No non-compliance noted EN 61000-4-11: 1994 + A1: 2001 Criterion B/C/C No non-compliance noted

Deviation from Applicable Standard None

The above equipment was tested by Compliance Certification Services Inc. for compliance with the requirements set forth in ETSI EN 301 489-17 V1.2.1: 2002. The results of testing in this report apply only to the product/system, which was tested. Other similar equipment will not necessarily produce the same results due to production tolerance and measurement uncertainties.

Approved by: Reviewed by:

Harris. W. Lai Devin Chang Executive Vice President Section Manager Compliance Certification Services Inc. Compliance Certification Services Inc.

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2. EUT DESCRIPTION

Product Bluetooth USB Hub

Trade Name MSI

Model Number MS-6871

Model Discrepancy N/A

Module Trade Name MSI

Module Model Number MS6970

Power Supply DC 5V from upstream USB port

Frequency Range 2402 ~ 2480 MHz

Transmit Power (mean EIRP) 4.09dBm

Modulation Technique GFSK (16-QAM, 64-QAM)

Number of Channels 79 Channels

Antenna Specification Printed Antenna / Gain: -4.1dBi

Temperature Range 0 ~ +50°C

Note: for more details, please refer to the User’s manual of the EUT.

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3. TEST METHODOLOGY All tests were performed in accordance with the procedure documented in ETSI EN 301 489-1 V1.4.1 (2002-04) as referenced in ETSI EN 301 489-17 V1.2.1 (2002-04).

3.1 UNIT OF MEASUREMENT Measurements of radiated interference are reported in terms of dB(uV/m) at a specified distance. The indicated readings on the Spectrum analyzers were converted to dB (uV/m) by use of appropriate conversion factors. Measurements of conducted interference are reported in terms of dB(uV).

The field strength is calculated by adding the Antenna Factor and Cable Factors and subtracting the Amplifier Gain from the measured reading. The following is a sample calculation:

FS = RA + AF + CF – AG

Where FS = Field Strength RA = Receiver Amplitude AF = Antenna Factor CF = Cable Attenuation Factor AG = Amplifier Gain

Assume a receiver reading of 52.5 dBuV is obtained. The Antenna Factor of 7.4dB/m and a Cable Factor of 1.1dB are added. The Amplifier Gain of 29 dB is subtracted, giving field strength of 32 dBuV/m. The 32-dBuV/m values was mathematically converted to its corresponding level in uV/m.

FS = 52.5 + 7.4 + 1.1 – 29 = 32 dBuV/m Note: Level in uV/m = Common Antilogarithm [(32 dBuV/m)/20] = 39.8 uV/m

3.2 ANTENNA The calibrated antennas used to sample the radiated field strength are mounted on a non-conductive, motorized antenna mast 10 meters from the leading edge of the turntable.

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3.3 MEASUREMENT EQUIPMENT USED

Equipment Used for Emission Measurement Remark: Each piece of equipment is scheduled for calibration once a year.

Open Area Test Site # 3 Name of Equipment Manufacturer Model Serial Number Calibration Due

Spectrum Analyzer ADVANTEST R3132 91700456 N.C.R

EMI Test Receiver R&S ESVS10 846285/016 04/10/2005

Bilog Antenna CHASE CBL 6112B 2462 01/10/2005

Turn Table Chance most N/A N/A N.C.R

Antenna Tower Chance most N/A N/A N.C.R

Controller Chance most N/A N/A N.C.R

RF Switch ANRITSU MP59B M51067 N.C.R

Site NSA C&C Lab. N/A N/A 08/08/2005

Test S/W HTBasic (M026C)

Conducted Emission Test Site # 3

Name of Equipment Manufacturer Model Serial Number Calibration DueEMI TEST RECEIVER

9kHz-30MHz ROHDE & SCHWARZ ESHS30 828144/003 09/24/2005

TWO-LINE V-NETWORK 9kHz-30MHz

SCHAFFNER NNB41 03/10013 06/11/2005

LISN 10kHz-100MHz EMCO 3825/2 9106-1809 02/05/2005

Test S/W LabABVIEW (V 6.1)

Power Harmonic & Voltage Fluctuation/Flicker Measurement (EN 61000-3-2&-3-3)

Name of Equipment Manufacturer Model Serial Number Calibration DueHarmonic & Flicker

Tester EMC-PARTNER HARMONICS-1000 094 10/26/2005

Test S/W HARCS (Ver. 4.0)

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Equipment Used for Immunity Measurement ESD Test Site (IEC/EN 61000-4-2)

Name of Equipment Manufacturer Model Serial Number Calibration DueESD Simulator NoiseKen ESS-2001 ESS0210582 09/13/2005

Fast Transients/Burst Test Site (IEC/EN 61000-4-4)

Name of Equipment Manufacturer Model Serial Number Calibration DueFast Transients/Burst

Generator HAEFELY TRENCH PEFT- JUNIOR 583 333-117 08/19/2005

Clamp HAEFELY TRENCH 093 506.1 080 421.13 N.C.R

Test S/W E400 Burstware (V4.19 (c)) Remark: The clamp is used only for EUT with signal cable connected and greater than 3m in length.

Radiated Electromagnetic Field Immunity Test Site (IEC/EN 61000-4-3) Name of Equipment Manufacturer Model Serial Number Calibration Due

Signal Generator Agilent 8648C 4108A05772 09/12/2005 150 Watts 80-1000MHz

Amplifier Amplifier Research 150W1000M3 306730 N.C.R

30 Watts 0.8-3.0GHz Amplifier Amplifier Research 30S1G3M1 306722 N.C.R

Power Meter Boonton 4232A-01-02 98501 07/09/2005

Power Sensor Boonton 51011-EMC 32920 07/09/2005

Power Sensor Boonton 51011-EMC 32863 07/09/2005

Log-Periodic Antenna Amplifier Research AT1080 306709 N.C.R

Microwave Horn Antenna Amplifier Research AT4002A 306750 N.C.R 6 MHz Sweep/Function

Generator AMREL FG-506 50608090006 05/18/2005

RF Test System Controller Amplifier Research SC1000M3 306666 N.C.R

Field Probe Amplifier Research FP6001 305657 03/17/2005

0.8-4.2GHz Amplifier Research DC7144A N/A N.C.R

80-1000MHz Amplifier Research DC6180A N/A N.C.R

Antenna Tower Amplifier Research TP2000 N/A N.C.R

Probe Stand Amplifier Research PS2000 N/A N.C.R

Test S/W SW1005 (Release 1.4)

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Surge Immunity Test Site (IEC/EN EN 61000-4-5) Name of Equipment Manufacturer Model Serial Number Calibration Due

Surge Tester HAEFELY TRENCH PSUGER 4010 583 334-71 09/02/2005

CDN HAEFELY TRENCH IP6.2 148342 N.C.R.

CDN HAEFELY TRENCH DEC1A 148050 N.C.R.

Test S/W E500 Surgeware (V4.19cc)

CS Test Site (IEC/EN 61000-4-6) Name of Equipment Manufacturer Model Serial Number Calibration Due

Signal Generator Agilent 8648C 4108A05773 09/12/2005 75 Watts 10kHz-250MHz

Amplifier Amplifier Research 75A250AM1 306334 N.C.R

Power Meter Boonton 4232A-01-02 98601 07/09/2005

Power Sensor Boonton 51011-EMC 32862 07/09/2005

Power Sensor Boonton 51011-EMC 32864 07/09/2005 Power Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-M1-32A 03018 09/13/2005

Power Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-M2-16A 03026 09/06/2005

Power Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-M3-16A 03027 09/13/2005

Signal Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-T2 03016 09/06/2005

Signal Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-T4 03017 09/06/2005

EM Injection Clamp Fischer Custom Communications, Inc. F-203I-23mm 421 09/13/2005

Passive Impedance Adapters

Fischer Custom Communications, Inc. FCC-801-150-50-CDN 03053&03054 09/13/2005

Calibration Fixture Fischer Custom Communications, Inc. F-203I-CF-23mm 408 09/13/2005

Signal Line Coupling Decoupling Network

Fischer Custom Communications, Inc. FCC-801-T8-RJ45 04024 09/13/2005

Attenuator Amplifier Research HFP-575-3/6-NM NF201875106 N.C.R Coupler Amplifier Research DC2600A 306621 N.C.R Test S/W SW1005 (Release 1.4)

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Voltage Dips/Short Interruption and Voltage Variation Immunity Test Site (IEC/EN 61000-4-11)

Name of Equipment Manufacturer Model Serial Number Calibration DueDips/Interruption and Variations Simulator

HAEFELY TRENCH PLINE 1610 080 344-05 04/07/2005

Test S/W WinPATS (V. 3.26)

3.4 DECISION OF FINAL TEST MODE 1. The following test mode was scanned during the preliminary test:

Mode 1 Transceiving --- (Operated with the Highest channel under IEEE 802.11b mode)

Mode 2 Transceiving --- (Operated with the Highest channel under IEEE 802.11g mode)

2. After the preliminary scan, the following test mode was found to produce the highest emission level.

Mode 2 Then, the EUT configuration and cable configuration of the above highest emission mode was chosen for all final test items.

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4. INSTRUMENT AND CALIBRATION

4.1 MEASURING INSTRUMENT CALIBRATION The measuring equipment, which was utilized in performing the tests documented herein, has been calibrated in accordance with the manufacturer’s recommendations for utilizing calibration equipment, which is traceable to recognized national standards.

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5. FACILITIES AND ACCREDITATIONS

5.1 FACILITIES All measurement facilities used to collect the measurement data are located at

No. 81-1, Lane 210, Bade Rd. 2, Luchu Hsiang, Taoyuan Hsien, Taiwan, R.O.C.

No. 199, Chunghsen Road, Hsintien City, Taipei Hsien, Taiwan, R.O.C.

The sites are constructed in conformance with the requirements of ANSI C63.7, ANSI C63.4 and CISPR Publication 22.

5.2 EQUIPMENT Radiated emissions are measured with one or more of the following types of linearly polarized antennas: tuned dipole, biconical, log periodic, bi-log, and/or ridged waveguide, horn. Spectrum analyzers with preselectors and quasi-peak detectors are used to perform radiated measurements.

Conducted emissions are measured with Line Impedance Stabilization Networks and EMI Test Receivers.

Calibrated wideband preamplifiers, coaxial cables, and coaxial attenuators are also used for making measurements.

All receiving equipment conforms to CISPR Publication 16-1, “Radio Interference Measuring Apparatus and Measurement Methods.”

5.3 LABORATORY ACCREDITATIONS AND LISTINGS The test facilities used to perform radiated and conducted emissions tests are accredited by National Voluntary Laboratory Accreditation Program for the specific scope of accreditation under Lab Code: 200600-0 to perform Electromagnetic Interference tests according to FCC PART 15 AND CISPR 22 requirements. No part of this report may be used to claim or imply product endorsement by NVLAP or any agency of the US Government. In addition, the test facilities are listed with Federal Communications Commission (registration no: 93105 and 90471).

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5.4 TABLE OF ACCREDITATIONS AND LISTINGS

Country Agency Scope of Accreditation Logo

USA NVLAP*

EN 55011, EN 55014-1, AS/NZS 1044, CNS 13783-1, EN 55022, CNS 13438, EN 61000-3-2, EN 61000-3-3, ANSI C63.4, FCC OST/MP-5, AS/NZS CISPR 22, IEC 61000-4-2/3/4/5/6/8/11

200600-0

USA FCC 3/10 meter Open Area Test Sites to perform FCC Part 15/18 measurements

93105, 90471

Japan VCCI 4 3/10 meter Open Area Test Sites to perform conducted/radiated measurements

R-393/1066/725/879 C-402/747/912

Norway NEMKO

EN 50081-1/2, EN 50082-1/2, IEC 61000-6-1/2, EN 50091-2, EN 50130-4, EN 55011, EN 55013, EN 55014-1/2, EN 55015, EN 55022, EN 55024, EN 61000-3-2/3, EN 61326-1, IEC 61000-4-2/3/4/5/6/8/11, EN 60601-1-2, EN 300 328-2, EN 300 422-2, EN 301 419-1, EN 301 489-01/03/07/08/09/17, EN 301 419-2/3, EN 300 454-2, EN 301 357-2

ELA 124a ELA 124b ELA 124c

Taiwan CNLA

EN 300 328-1/2, EN 300 220-1/2/3, EN 300 440-1/2, EN 61000-3-2, EN 61000-3-3, 47 CFR FCC Part 15 Subpart C/D/E, EN 55013, CNS 13439, EN 55014-1, CNS 13783-1, EN 55022, CNS 13438, CISPR 22, AS/NZS 3548, EN 61000-4-2/3/4/5/6/8/11, ENV 50204, IEEE Std 1528, FCC OET Bulletin,65+Supplement C, EN50360, EN50361, EN50371, RSS102

Taiwan BSMI CNS 13438, CNS 13783-1, CNS 13439, CNS 14115

SL2-IS-E-0014 SL2-IN-E-0014 SL2-A1-E-0014 SL2-R1-E-0014 SL2-R2-E-0014 SL2-L1-E-0014

Canada Industry Canada RSS212, Issue 1

IC 3991-3 IC 3991-4

* No part of this report may be used to claim or imply product endorsement by NVLAP or any agency of the US Government.

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6. SETUP OF EQUIPMENT UNDER TEST

6.1 SETUP CONFIGURATION OF EUT See test photographs attached in Appendix 1 for the actual connections between EUT and support equipment.

6.2 SUPPORT EQUIPMENT

No. Device Type Brand Model Series No. FCC ID Data Cable Power Cord

1. LCD Monitor BenQ FP557 99L4672AC132500150TP1AC1 FCC DoC

Shielded, 1.8m with two cores Unshielded, 1.8m

2. USB Keyboard Compaq KU-9978 B463AOAGALT097 FCC DoC Shielded, 1.8m N/A

3. USB Mouse HP MO19UCA 020440964 FCC DoC Shielded, 1.8m N/A

4. Printer EPSON STYLUS C60 DR3K039633 FCC DoC Shielded, 1.8m Unshielded, 1.8m

5. USB 2.0 HDD TeraSyS F12-U A0100214-31d0014 FCC DoC Shielded, 1.8m Unshielded, 1.8m

6. Notebook PC IBM 2656 AK-VF0HT FCC DoC

Shielded, 1.8m with two cores Unshielded, 1.8m

7. Notebook PC Toshiba Satellite 1110 Y2382109 FCC DoC

Shielded, 1.8m with two cores Unshielded, 1.8m

Notes: 1. All the equipment/cables were placed in the worst-case configuration to maximize the

emission during the test. 2. Grounding was established in accordance with the manufacturer’s requirements and

conditions for the intended use.

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6.3 TEST SETUP The equipment under test was configured and operated in a manner to communicate with Bluetooth USB Hub continuously. EUT tends to maximize its emission characteristics in a typical application for conducted and radiated emission measurement. The RF module plus ancillary (stand alone unit) was evaluated as per table 2 of clause 7.1 of ETSI Final draft ETSI EN 301 489-1 V1.4.1: 20002. The transmitter was active during the conducted and radiated emission measurements.

Software Used During the Test

Operating System Windows XP

Program Sequence 1. Boot up Windows XP. 2. Connect and link the auxiliary bluetooth dongle.

RF Management Software S/W provided applicant.

Remark: During the test, no modification is made to the EUT to comply with Class B limit levels.

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7. ETSI EN 301 489-1/-17 REQUIREMENTS

7.1 RADIATED EMISSION

LIMIT Please refer to ETSI EN 301 489-1 Clause 8.2.3, Table 4 and EN 55022 Clause 6, Table 6, Class B

Test Configuration

Filter Filter Filter To Power

EUT

Ground Plane10 m

0.8 m

CoaxialCable

Turntable 1m ~ 4m

Power Cable

EMI Receiver

Filter

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TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 8.2.3 and EN 55022 Clause 6 for the measurement methods.

TEST RESULTS No non-compliance noted

Test Data

Location: Site # 3 Tested by: Tom Jen

Test Mode: Mod 2 Test Distance: 10m

Detector Function: Quasi-peak Test Results: Passed

Freq. (MHz)

Ant. V/H

Reading (dBuV)

Factor (dB)

Actual FS(dBuV/m)

Limits(QP)(dBuV/m)

Safe Margins

(dB) Note

66.00 V 15.80 9.67 25.47 30.00 -4.53 Peak

226.65 V 7.61 16.29 23.90 30.00 -6.10 Peak

240.15 V 11.05 16.50 27.55 37.00 -9.45 Peak

N/A

240.15 H 12.24 16.50 28.74 37.00 -8.26 Peak

249.15 H 12.60 16.64 29.24 37.00 -7.76 Peak

280.65 H 7.89 16.48 24.37 37.00 -12.63 Peak

N/A

Note:

1. Measuring frequencies from 30 MHz to the 1GHz. 2. Radiated emissions measured in frequency range from 30 MHz to 1000MHz were made

with an instrument using Peak detector mode. 3. Field strength limits for frequency above 1000MHz are based on average limits.

However, Peak mode field strength shall not exceed the average limits specified plus 20dB.

4. Measurements above show only up to 6 maximum emissions noted. 5. The IF bandwidth of SPA 30MHz to 1GHz was 100kHz.

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7.2 AC MAINS LINE CONDUCTED EMISSION

LIMIT Please refer to ETSI EN 301 489-1 Clause 8.4.3, Table 8 and EN 55022 Clause 5, Table 2, Class B

Test Configuration

E U T

LISN

EM I receiver

R eference ground plane

V ert. reference plane

TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 8.4.3 and EN 55022 Clause 5 for the measurement methods.

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TEST RESULTS No non-compliance noted

Test Data

Operation Mode: TX + RX mode Test Date: November 12, 2004

Temperature: 25oC Tested by: Tom Jen

Humidity: 55% RH

Freq. (MHz)

QP Reading

AV Reading

Corr. factor

QP Result

AV Result QP Limit AV Limit QP

Margin AV

Margin Note

0.194 43.710 36.060 0.076 43.786 36.136 63.864 53.864 -20.077 -17.727 L1

0.302 39.470 36.240 0.090 39.560 36.330 60.188 50.188 -20.628 -13.858 L1

0.541 49.940 38.860 0.110 50.050 38.970 56.000 46.000 -5.950 -7.030 L1

1.259 42.720 29.260 0.118 42.838 29.378 56.000 46.000 -13.162 -16.622 L1

3.328 41.290 29.780 0.207 41.497 29.987 56.000 46.000 -14.503 -16.013 L1

9.605 31.070 26.670 0.360 31.430 27.030 60.000 50.000 -28.570 -22.970 L1

0.192 40.350 38.020 0.067 40.417 38.087 63.950 53.950 -23.533 -15.863 L2

0.305 34.030 32.000 0.090 34.120 32.090 60.106 50.106 -25.986 -18.016 L2

0.563 41.720 34.900 0.129 41.849 35.029 56.000 46.000 -14.151 -10.971 L2

1.269 37.150 36.150 0.125 37.275 36.275 56.000 46.000 -18.725 -9.725 L2

3.302 35.840 33.390 0.179 36.019 33.569 56.000 46.000 -19.981 -12.431 L2

6.983 28.480 26.230 0.309 28.789 26.539 60.000 50.000 -31.211 -23.461 L2

Remark:

1. The measuring frequencies range between 0.15 MHz and 30 MHz. 2. The emissions measured in the frequency range between 0.15 MHz and 30MHz were made

with an instrument using Quasi-peak detector and Average detector. 3. “---” denotes the emission level was or more than 2dB below the Average limit, and no

re-check was made. 4. The IF bandwidth of SPA between 0.15MHz and 30MHz was 10kHz. The IF bandwidth of

Test Receiver between 0.15MHz and 30MHz was 9kHz. 5. L1 = Line One (Live Line) / L2 = Line Two (Neutral Line)

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Test Plot

Conducted emissions (Line 1)

Conducted emissions (Line 2)

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7.3 AC MAINS HARMONIC CURRENT EMISSION

LIMIT Please refer to EN 61000-3-2

Test Configuration

Ambient Condition of the Test Site Temperature 25°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 55%RH EUT DC Voltage Rating N/A

Tested by Tom Jen Ground Bond Resistance 0.2 Ω

TEST PROCEDURE Please refer to EN 61000-3-2 for the measurement methods.

TEST RESULTS No non-compliance noted.

Note: According to clause 7 of EN 61000-3-2, equipment with a rated power of 75W or less, no limits apply. The test result is only for reference.

Harmonics & Flicker

Analyzer +

Power Source EUT

Support Units

Power Cord

0.8m

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Harmonic Emission - IEC 61000-3-2, EN 61000-3-2, (EN60555-2)

Comply: IEC 61000-3-2 Ed.2.1: 2001 (incl. Amd.14) - IEC 61000-4-7 Ed.1.0: 1991 MICRO-STAR HARCS Setup File : unnamed HARCS Report File : unnamed Bluetooth USB Hub ms-6781 Tom Remarks Temp : 25'C Humidity : 55% RH

Full Bar : Actual Values Empty Bar : Maximum Values Blue : Current , Green : Voltage , Red : Failed

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7.4 AC MAINS VOLTAGE FLUCTUATION AND FLICKER

LIMIT Please refer to EN 61000-3-3

Test Configuration

(Same as the configuration of the AC MAINS HARMONIC CURRENT EMISSIONS TEST)

Ambient Condition of the Test Site Temperature 25°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 55%RH EUT DC Voltage Rating N/A

Tested by Tom Jen Ground Bond Resistance 0.2 Ω

TEST PROCEDURE Please refer to EN 61000-3-3 for the measurement methods.

TEST RESULTS No non-compliance noted.

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Flicker Emission - IEC 61000-3-3, EN 61000-3-3, (EN60555-3)

Comply: IEC 61000-3-3 Ed.1.1: 2002 (incl. Amd.1) - IEC 61000-4-15 Ed.1.0: 1997

(incl. Amd.1)

MICRO-STAR HARCS Setup File: unnamed HARCS Report File: unnamed Bluetooth USB Hub

ms-6781

Tom

Remarks

Full Bar : Actual Values

Empty Bar : Maximum Values

Circles : Average Values

Blue : Current , Green : Voltage , Red : Failed

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7.5 ELECTROSTATIC DISCHARGE

LIMIT Please refer to EN 61000-4-2

Test Configuration

Ambient Condition of the Test Site Temperature 28°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 40%RH EUT DC Voltage Rating N/A

Pressure 1019 mbar Ground Bond Resistance 0.2 Ω

Tested by Tom Jen

Ground Reference Plane

Wooden Table

Indirect Support units

EUT & its direct

Support Units

VCP

HCP >1m

0.8m

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TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 9.3.2 and EN 61000-4-2 for the measurement methods.

TEST RESULTS PASS (System will be recovered itself after the temporary service suspension which caused by

the interference applied.)

Description of the Electrostatic Discharges (ESD)

Operating Mode

Amount of Discharges Voltage Coupling Result (Pass/Fail)

Mini 20 / Point ±4kV Contact Discharge Pass

Mini 20 / Point ±8kV Air Discharge Pass

Mini 20 / Point ±4kV Indirect Discharge HCP Pass

Mini 20 / Point ±4kV Indirect Discharge VCP Pass

Note: For tested points to EUT, refer to the enclosed pages. Be aware that the Blue mark is for contact discharge, and the red mark is for air discharge.

PERFORMANCE CRITERIA

Criteria requested A / B / C Criteria meet A / B / C

Standby Mode

Amount of Discharges Voltage Coupling Result (Pass/Fail)

Mini 20 / Point ±4kV Contact Discharge Pass

Mini 20 / Point ±8kV Air Discharge Pass

Mini 20 / Point ±4kV Indirect Discharge HCP Pass

Mini 20 / Point ±4kV Indirect Discharge VCP Pass

Note: For tested points to EUT, refer to the enclosed pages. Be aware that the Blue mark is for contact discharge, and the red mark is for air discharge.

PERFORMANCE CRITERIA

Criteria requested A / B / C Criteria meet A / B / C

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The Tested Points of EUT

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7.6 RF ELECTROMAGNETIC FIELD LIMIT Please refer to EN 61000-4-3

Test Configuration

0.8m

Power Amp Signal Generator

EUT Monitoring by using a camera

Control Room

7x3x3

EUT & Support Units

PC Controller to control S.G. & PA as well as forward power

3 meter

1.5 meter

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Ambient Condition of the Test Site Temperature 23°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 40%RH EUT DC Voltage Rating N/A

Pressure 1019 mbar Ground Bond Resistance 0.2 Ω

Tested by Tom Jen

TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 9.2.2, ETSI EN 301 489-17 Clause 7.2 and EN 61000-4-3 for the measurement methods.

TEST RESULTS PASS (EUT continued to operate normally during test)

Description of Preliminary Test (Operating & Standby Modes)

Freq. Range (MHz) Field Modulation Polarity Position (°) Selection for

the final test1 80-2000 6V/m Yes H / V Front

2 80-2000 6V/m Yes H / V Right

3 80-2000 6V/m Yes H / V Back

4 80-2000 6V/m Yes H / V Left

Result of Final Tests (Operating Mode)

Freq. Range (MHz) Field Modulation Polarity Position (°) Result

(Pass/Fail) 80-2000 3V/m Yes H / V Front Pass

PERFORMANCE CRITERIA

Criteria requested A / B / C

Criteria meet A / B / C

Results of Final Tests (Standby Mode)

Freq. Range (MHz) Field Modulation Polarity Position (°) Result

(Pass/Fail)

80-2000 3V/m Yes H / V Front Pass PERFORMANCE CRITERIA Criteria requested A / B / C

Criteria meet A / B / C

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7.7 AC MAINS FAST TRANSIENTS – COMMON MODE

LIMIT Please refer to EN 61000-4-4

Test Configuration

Ambient Condition of the Test Site Temperature 23°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 40%RH EUT DC Voltage Rating N/A

Pressure 1019 mbar Ground Bond Resistance 0.2 Ω

Tested by Tom Jen

Controller Computer

EFT/Burst/ Surge Generator

EUTSupport Units

0.8m Non-Conductive Table AC Line

Injection Clamp Burst Generator

To Load

AC Line

Comm. Line ≧ 3 mEUT

0.8m Non-Conductive

Table

10cm

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TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 9.4.2 and EN 61000-4-4 for the measurement methods.

TEST RESULTS PASS (EUT continued to operate normally during test)

TEST CONDITIONS Results of Final Tests (Operating Mode)

Impulse Frequency: 5 kHz Tr/Th: 5/50ns Burst Duration: 15ms Burst Period: 3Hz

Injection Line Voltage (kV) Injected Method Result (Pass / Fail) Line ±1 Direct Pass Neutral ±1 Direct Pass PE ± 1 Direct Pass Line + Neutral ±1 Direct Pass L + PE ± 1 Direct Pass N + PE ± 1 Direct Pass L + N + PE ± 1 Direct Pass RJ45 port (LAN cable) ±0.5 Clamp Pass RJ11 port (Line cable) ±0.5 Clamp Pass

PERFORMANCE CRITERIA Criteria requested A / B / C Criteria meet A / B / C

Results of Final Tests (Standby Mode) Impulse Frequency: 5 kHz Tr/Th: 5/50ns Burst Duration: 15ms Burst Period: 3Hz

Injection Line Voltage (kV) Injected Method Result (Pass / Fail) Line ±1 Direct Pass Neutral ±1 Direct Pass PE ± 1 Direct Pass Line + Neutral ±1 Direct Pass L + PE ± 1 Direct Pass N + PE ± 1 Direct Pass L + N + PE ± 1 Direct Pass RJ45 port (LAN cable) ±0.5 Clamp Pass RJ11 port (Line cable) ±0.5 Clamp Pass

PERFORMANCE CRITERIA Criteria requested A / B / C Criteria meet A / B / C

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7.8 AC MAINS SURGE

LIMIT Please refer to EN 61000-4-5

Test Configuration

Ambient Condition of the Test Site

Temperature 23°C EUT AC Voltage Rating 230 Vac, 50 Hz Humidity 40%RH EUT DC Voltage Rating N/A Pressure 1019 mbar Ground Bond Resistance 0.2 Ω Tested by Tom Jen

TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 9.8.2 and EN 61000-4-5 for the measurement methods.

Surge Immunity Test

Controller Computer

EUT &

Support Units

0.8m

To AC Source

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TEST RESULTS PASS (EUT continued to operate normally during test)

Test conditions

Results of Final Tests (Operating Mode) Voltage Waveform: 1.2/50 us Current Waveform: 8/20 us Polarity: Positive/Negative Phase angle: 0o, 90o, 180 o, 270o

Coupling Line Voltage (kV) Polarity Coupling Method Result (Pass/Fail)

Line + Neutral 1 Pos./ Neg. Capacitive Pass

L + PE 1 Pos./ Neg. Capacitive Pass

N + PE 1 Pos./ Neg. Capacitive Pass

T, R-Ground 0.5 Pos./ Neg. Capacitive Pass

L1, 2, 3, 4-G (LAN) 0.5 Pos./ Neg. Capacitive Pass

PERFORMANCE CRITERIA

Criteria requested A / B / C Criteria meet A / B / C

Results of Final Tests (Standby Mode) Voltage Waveform: 1.2/50 us Current Waveform: 8/20 us Polarity: Positive/Negative Phase angle: 0o, 90o, 180 o, 270o

Coupling Line Voltage (kV) Polarity Coupling Method Result (Pass/Fail)

Line + Neutral 1 Pos./ Neg. Capacitive Pass

L + PE 1 Pos./ Neg. Capacitive Pass

N + PE 1 Pos./ Neg. Capacitive Pass

T, R-Ground 0.5 Pos./ Neg. Capacitive Pass

L1, 2, 3, 4-G (LAN) 0.5 Pos./ Neg. Capacitive Pass PERFORMANCE CRITERIA Criteria requested A / B / C

Criteria meet A / B / C

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CDN

EUT and Support units Power

Amplifier PC Controller

Ground Reference Plane

10 cm isolation supporter

0.1m< L <0.3m

7.9 AC MAINS RF – COMMON MODE

LIMIT

Please refer to EN 61000-4-6

Test Configuration

Ambient Condition of the Test Site

Temperature 23°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 40%RH EUT DC Voltage Rating N/A

Pressure 1019 mbar Ground Bond Resistance 0.2 Ω

Tested by Tom Jen

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TEST PROCEDURE Please refer to ETSIETSI EN 301 489-1 Clause 9.5.2, ETSI EN 301 489-17 Clause 7.2.2 and EN 61000-4-6 for the measurement methods.

TEST RESULTS PASS (EUT continued to operate normally during test)

TEST CONDITIONS

Results of Final Tests (Operating Mode) Frequency Range: 0.15MHz~80MHz Frequency Step: 1% of fundamental Dwell time: 3 Sec.

80% A.M., 1 kHz Sine wave (Field Strength: 3 V/m) Coupling type: CDN: FCC-801-M3-16A / RF Current Probe

Range (MHz) Field Modulation Result (Pass/Fail)

0.15-80 3V/m Yes Pass

PERFORMANCE CRITERIA

Criteria requested A / B / C Criteria meet A / B / C

Results of Final Tests (Standby Mode) Frequency Range: 0.15MHz~80MHz Frequency Step: 1% of fundamental Dwell time: 3 Sec.

80% A.M., 1 kHz Sine wave (Field Strength: 3 V/m) Coupling type: CDN: FCC-801-M3-16A / RF Current Probe

Range (MHz) Field Modulation Result (Pass/Fail)

0.15-80 3V/m Yes Pass

PERFORMANCE CRITERIA Criteria requested A / B / C Criteria meet A / B / C

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7.10 VOLTAGE DIPS AND INTERRUPTION

LIMIT Please refer to EN 61000-4-11

Test Configuration

Ambient Condition of the Test Site

Temperature 23°C EUT AC Voltage Rating 230 Vac, 50 Hz

Humidity 40%RH EUT DC Voltage Rating N/A

Pressure 1019 mbar Ground Bond Resistance 0.2 Ω

Tested by Tom Jen

TEST PROCEDURE Please refer to ETSI EN 301 489-1 Clause 9.7.2 and EN 61000-4-11 for the measurement methods.

Dips/Interruption and Variations

Simulator

Controller Computer

EUT &

Support Units

0.8m

To AC Source

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TEST RESULTS PASS (for criteria A: EUT continued to operate normally during test) (for criteria B: EUT shut down, but can be auto recovered as the events disappear.) (for criteria C: EUT shut down, but can be recovered by manual, as the events disappear.)

TEST CONDITIONS Interruption at phase angles of 0, 45, 90, 135, 180, 225, 270 and 315 degree in a 10 sec-interval.

Test Level (% UT)

Reduction (%)

Duration (ms) Criterion

70 30% 10 B Voltage Dips 40 60% 100 C

Voltage Interruption <5 >95% 5000 C

Note: The duration with a sequence of three dips/interruptions with a minimum interval of 10 s between each test event.

Results of Final Tests (Operating Mode) Voltage Dips

Test Level (% UT)

Reduction (%)

Duration (ms) Observation Criterion

70 30 10 Normal A

40 60 100 Normal B

Voltage Interruption

Test Level (% UT)

Reduction (%)

Duration (ms) Observation Criterion

<5 95 5000 Normal C

Results of Final Tests (Standby Mode) Voltage Dips

Test Level (% UT)

Reduction (%)

Duration (ms) Observation Criterion

70 30 10 Normal A

40 60 100 Normal B

Voltage Interruption

Test Level (% UT)

Reduction (%)

Duration (ms) Observation Criterion

<5 95 5000 Normal C

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APPENDIX 1 PHOTOGRAPHS OF TEST SETUP RADIATED EMISSION TEST (EN 55022)

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LINE CONDUCTED EMISSION TEST (EN 55022)

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POWER HARMONICS &VOLTAGE FLUCTUATION / FLICKER (EN 61000-3-2/EN 61000-3-3)

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ELECTROSTATIC DISCHARGE TEST (EN 61000-4-2)

RADIATED ELECTROMAGNETIC FIELD (EN 61000-4-3)

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FAST TRANSIENTS/BURST TEST (EN 61000-4-4)

SURGE IMMUNITY TEST (EN 61000-4-5)

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CONDUCTED DISTURBANCE, INDUCED BY RADIO-FREQUENCY FIELDS TEST (EN 61000-4-6)

VOLTAGE DIPS/ INTERRUPTION TEST (EN 61000-4-11)