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FCC TEST REPORT Report No. : FD042834
SPORTON International Inc.TEL : 886-2-2696-2468FAX : 886-2-2696-2255
FCC TEST REPORT Authorized under Declaration of Conformity
according to
47 CFR FCC Rules and Regulations Part 15 Subpart B, Class B Digital Device and Canada ICES-003, Issue 4
Equipment : Gamepad
Model No. : G-U0002, G-U0001
Filing Type : Declaration of Conformity
Applicant : LOGITECH FAR EAST LTD. #2 Creation Rd. 4, Science-Based Ind. Park Hsinchu Taiwan, R.O.C.
The test result refers exclusively to the test presented test model / sample. Without written approval of SPORTON International Inc., the test report shall not be reproduced except
in full. Certificate or Test Report must not be used by the applicant to claim the product in this test
report endorsement by TAF.
SPORTON International Inc. 6F, No.106, Sec. 1, Hsin Tai Wu Rd., Hsi Chih, Taipei Hsien, Taiwan, R.O.C.
FCC TEST REPORT Report No. : FD042834
SPORTON International Inc. Page No. : i TEL : 886-2-2696-2468 Issued Date : May 10, 2010 FAX : 886-2-2696-2255
Table of Contents
History of this test report ..................................................................................................................ii CERTIFICATE OF COMPLIANCE........................................................................................................................1 1. General Description of Equipment under Test.............................................................................................2
1.1 Applicant..........................................................................................................................................................................................2 1.2 Manufacturer ...................................................................................................................................................................................2 1.3 Basic Description of Equipment under Test ....................................................................................................................................2 1.4 Feature of Equipment under Test ...................................................................................................................................................2
2. Test Configuration of Equipment under Test ...............................................................................................3 2.1 Test Manner ....................................................................................................................................................................................3 2.2 Description of Test System .............................................................................................................................................................3 2.3 Connection Diagram of Test System ..............................................................................................................................................5
3. Test Software ...................................................................................................................................................7 4. General Information of Test............................................................................................................................8
4.1 Test Facility .....................................................................................................................................................................................8 4.2 Test Voltage ....................................................................................................................................................................................8 4.3 Standard for Methods of Measurement...........................................................................................................................................8 4.4 Test in Compliance with ..................................................................................................................................................................8 4.5 Frequency Range Investigated .......................................................................................................................................................8 4.6 Test Distance ..................................................................................................................................................................................8
5. Test of Conducted Powerline .........................................................................................................................9 5.1 Major Measuring Instruments..........................................................................................................................................................9 5.2 Test Procedures ..............................................................................................................................................................................9 5.3 Typical Test Setup Layout of Conducted Powerline .....................................................................................................................10 5.4 Test Result of AC Powerline Conducted Emission .......................................................................................................................11 5.5 Photographs of Conducted Powerline Test Configuration ............................................................................................................13
6. Test of Radiated Emission............................................................................................................................15 6.1 Major Measuring Instruments........................................................................................................................................................15 6.2 Test Procedures ............................................................................................................................................................................16 6.3 Typical Test Setup Layout of Radiated Emission..........................................................................................................................17 6.4 Test Result of Radiated Emission .................................................................................................................................................18 6.5 Photographs of Radiated Emission Test Configuration ................................................................................................................22
7. List of Measuring Equipment Used .............................................................................................................23 8. Uncertainty of Test Site ................................................................................................................................24 9. Certificate of TAF Accreditation...................................................................................................................25 Appendix A. Photographs of EUT........................................................................................................ A1 ~ A12
FCC TEST REPORT Report No. : FD042834
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History of this test report Original Report Issue Date: May 10, 2010 Report No. : FD042834 ■ No additional attachment. □ Additional attachment were issued as following record:
Attachment No. Issue Date Description
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1. General Description of Equipment under Test
1.1 Applicant LOGITECH FAR EAST LTD.
#2 Creation Rd. 4, Science-Based Ind. Park Hsinchu Taiwan, R.O.C.
1.2 Manufacturer
Same as 1.1
1.3 Basic Description of Equipment under Test
Equipment : Gamepad
Model No. : G-U0002, G-U0001
Trade Name : Logitech
Power Supply Type : From Host System
USB Cable : Shielded, 181cm
1.4 Feature of Equipment under Test The model names are listed in the following table.
Model Name Type Description
G-U0002 EUT 1 EUT 1 has vibration apparatus.
G-U0001 EUT 2 EUT 2 hasn’t vibration apparatus.
Please refer to user manual for others.
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2. Test Configuration of Equipment under Test
2.1 Test Manner
a. The EUT has been associated with PC and peripherals pursuant to ANSI C63.4-2003 and
configuration operated in a manner which tended to maximize its emission characteristics in a typical
application.
b. There are two types of EUT, only EUT 1 was tested and recorded in this report.
Mode 1: EUT 1 (Model No.: G-U0002) has vibration apparatus
Mode 2: EUT 2 (Model No.: G-U0001) hasn’t vibration apparatus
c. The complete test system included DELL Personal Computer, DELL LCD Monitor, iCooky Keyboard,
iCooky Mouse, ACEEX Modem, EPSON Printer and EUT for EMI test.
d. Frequency range investigated: conduction 150 KHz to 30 MHz, radiation 30 MHz to 1000 MHz.
2.2 Description of Test System
Support Unit 1. – Personal Computer (DELL) FCC ID : N/A Model No. : OPTIPLEX 780 Serial No. : PC-H Data Cable : Non-Shielded Remark : This support device was tested to comply with FCC standards and
authorized under a declaration of conformity.
Support Unit 2. -- LCD Monitor (DELL) FCC ID : E144096 Model No. : 2709WB Power Supply Type : Switching Power Cord : Non-Shielded Serial No. : LM-D
Support Unit 3 – Keyboard (iCooky) FCC ID : N/A Model No. : SK068 Power Cord : Non-Shielded Serial No. : KB-A Remark : This support device was tested to comply with FCC standards and
authorized under a declaration of conformity.
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Support Unit 4. -- Mouse (iCooky) FCC ID : N/A Model No. : AMS0706W Serial No. : MO-A Data Cable : Shielded, 1.8m Remark : This support device was tested to comply with FCC standards and
authorized under a declaration of conformity.
Support Unit 5 –Modem (ACEEX) FCC ID : IFAXDM1414 Model No. : DM1414 Power Supply Type : Linear Power Cord : Non-Shielded Data Cable : Shielded,1.8m Serial No. : MD-A
Support Unit 6 – Printer (EPSON) FCC ID : N/A Model No. : LQ-300+ Power Supply Type : Linear Power Cord : Non-Shielded Data Cable : Shielded,1.8m Serial No. : PR-A Remark : This support device was tested to comply with FCC standards and
authorized under a declaration of conformity.
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2.3 Connection Diagram of Test System
2.3.1 AC Power Line Conduction Emissions Test Configuration
Test Mode: Mode 1
ModemPrinter
EUT
PC
LPT
US
B
RS
232V
GA
US
B
Monitor
KEYBOARD MOUSE
1. USB CABLE , 180 CM ,SHIELDED2. VGA CABLE ,180 CM ,SHIELDED3. LPT CABLE , 180 CM ,SHIELDED4. RS232 CABLE , 180 CM , SHIELDED5. POWER CABLE , 180 CM , NON-SHIELDED6. USB CABLE , 181 CM , SHIELDED
AC
1
1
24 3
6
5
AC MAIN
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2.3.2 Radiation Emissions Test Configuration
Test Mode: Mode 1
ModemPrinter
EUT
PC
LPT
US
B
RS
232VG
A
US
B
Monitor
KEYBOARD MOUSE
1. USB CABLE , 180 CM ,SHIELDED2. VGA CABLE ,180 CM ,SHIELDED3. LPT CABLE , 180 CM ,SHIELDED4. RS232 CABLE , 180 CM , SHIELDED5. POWER CABLE , 180 CM ,NON-SHIELDED6. USB CABLE , 181 CM , SHIELDED
AC
1
1
24 3
6
5
AC MAIN
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3. Test Software
An executive program, EMCTEST.EXE under WIN XP, which generates a complete line of continuously
repeating “ H “ pattern was used as the test software.
a. Turn on the power of all equipment.
b. The PC sends “ H“ messages to the monitor, and the monitor displays “ H “ patterns on the screen.
c. The PC sends “ H “ messages to the printer, then the printer prints them on the paper.
d. The PC sends “ H “ messages to the modem.
e. Repeat the steps from b to d.
At the same time, the following program was executed:
Executed " XBOX 360" to display the data transmission sent from EUT.
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4. General Information of Test
4.1 Test Facility
Test Site Location : No.8, Lane 724, Bo-ai St., Jhubei City, Hsinchu County 302, Taiwan, R.O.C. TEL : 886-3-656-9065 FAX : 886-3-656-9085
Test Site No. : Conduction : CO01-CB; Radiation : 10CH01-CB
4.2 Test Voltage
120V / 60Hz
4.3 Standard for Methods of Measurement
ANSI C63.4-2003
4.4 Test in Compliance with
FCC Rules and Regulations Part 15 Subpart B and Canada ICES-003, Issue 4
4.5 Frequency Range Investigated
a. Conduction: from 150 kHz to 30 MHz b. Radiation : from 30 MHz to 1,000 MHz
4.6 Test Distance
The test distance of radiated emission from antenna to EUT is 10 m.
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5. Test of Conducted Powerline
Conducted Emissions were measured from 150 kHz to 30 MHz with a bandwidth of 9 KHz and return leads
of the EUT according to the methods defined in ANSI C63.4-2003 Section 3.1. The EUT was placed on a
nonmetallic stand in a shielded room 0.8 meters above the ground plane as shown in section 5.3. The
interface cables and equipment positioning were varied within limits of reasonable applications to determine
the position produced maximum conducted emissions.
5.1 Major Measuring Instruments
Test Receiver (R&S ESCS 30) Attenuation 10 dB Start Frequency 0.15 MHz Stop Frequency 30 MHz IF Bandwidth 9kHz
5.2 Test Procedures a. The EUT was placed 0.4 meter from the conducting wall of the shielding room was kept at least 80
centimeters from any other grounded conducting surface.
b. Connect EUT to the power mains through a line impedance stabilization network (LISN).
c. All the support units are connect to the other LISN.
d. The LISN provides 50 ohm coupling impedance for the measuring instrument.
e. The FCC states that a 50 ohm, 50 microhenry LISN should be used.
f. Both sides of AC line were checked for maximum conducted interference.
g. The frequency range from 150 kHz to 30 MHz was searched.
h. Set the test-receiver system to Peak Detect Function and Specified Bandwidth with Maximum Hold
Mode.
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5.3 Typical Test Setup Layout of Conducted Powerline
L.I.S.N.
10 cm
80 cm to the ground plane
L.I.S.N.
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5.4 Test Result of AC Powerline Conducted Emission Test Mode: Mode 1 Frequency Range of Test: from 0.15 MHz to 30 MHz Temperature: 23 ℃ Relative Humidity: 56 % All emissions not reported here are more than 10 dB below the prescribed limit. Corrected Reading (dBuV) = LISN Factor + Cable Loss + Read Level = Level
■ The test was passed at the minimum margin that marked by the frame in the following table
Line
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Neutral
Test Engineer : Peter Wu
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5.5 Photographs of Conducted Powerline Test Configuration The photographs show the configuration that generates the maximum emission.
Test Mode: Mode 1
FRONT VIEW
REAR VIEW
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SIDE VIEW
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6. Test of Radiated Emission
Radiated emissions from 30MHz to 18GHz were measured with a bandwidth of 120kHz for 30MHz~1GHz, according to the methods defines in ANSI C63.4-2003. The EUT was placed on a nonmetallic stand, 0.8 meter above the ground plane, as shown in section 6.3. The interface cables and equipment positions were varied within limits of reasonable applications to determine the positions producing maximum radiated emissions.
6.1 Major Measuring Instruments
Amplifier (Agilent 8447D)
RF Gain 25 dB
Signal Input 9 KHz to 1.3 GHz
Spectrum Analyzer (R&S FSP40)
Attenuation 10 dB
Start Frequency 30 MHz
Stop Frequency 1000 MHz
Resolution Bandwidth 120 KHz
Signal Input 9 KHz to 40 GHz
Test Receiver (R&S ESCI)
Attenuation 10 dB
Start Frequency 30 MHz
Stop Frequency 1000 MHz
Resolution Bandwidth 120 KHz
Signal Input 9kHz to 3 GHz
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6.2 Test Procedures
a. The EUT was placed on a rotatable table top 0.8 meter above ground.
b. The EUT was set 3m(above 1GHz)/10m(below 1GHz) meters from the interference receiving antenna
which was mounted on the top of a variable height antenna tower.
c. The table was rotated 360 degrees to determine the position of the highest radiation.
d. The antenna is a half wave dipole and its height is varied between one meter and four meters above
ground to find the maximum value of the field strength both horizontal polarization and vertical
polarization of the antenna are set to make the measurement.
e. For each suspected emission the EUT was arranged to its worst case and then tune the antenna tower
(from 1 m to 4 m) and turn table (from 0 degree to 360 degrees) to find the maximum reading.
f. Set the test-receiver system to Peak Detect Function and specified bandwidth with Maximum Hold
Mode.
g. If the emission level of the EUT in peak mode was 3 dB lower than the limit specified, then testing will
be stopped and peak values of EUT will be reported, otherwise, the emissions which do not have 3 dB
margin will be repeated one by one using the quasi-peak method and reported.
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6.3 Typical Test Setup Layout of Radiated Emission
Antenna
0.8 M
Equipment under Test
Test distance
TurnTable
Ground Plane
Receiver
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6.4 Test Result of Radiated Emission
Test Mode: Mode 1
Frequency Range of Test: from 30 MHz to 1,000 MHz
Test Distance: 10m Temperature: 24 ℃ Relative Humidity: 56 % Emission level (dBuV/m) = 20 log Emission level (uV/m) Corrected Reading: Antenna Factor + Cable Loss + Read Level - Preamp Factor = Level
■ The test was passed at the minimum margin that marked by the frame in the following test record
Vertical
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Vertical
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Horizontal
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Horizontal
Test Engineer : Aric Li
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6.5 Photographs of Radiated Emission Test Configuration The photographs show the configuration that generates the maximum emission.
Test Mode: Mode 1
FRONT VIEW
REAR VIEW
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7. List of Measuring Equipment Used
Instrument Manufacturer Model No. Serial No. Characteristics Calibration
Date Remark
EMI Test Receiver R&S ESCS 30 100377 9kHz ~ 2.75GHz Jul. 20, 2009 Conduction(CO01-CB)
LISN F.C.C. FCC-LISN-50-16-2 04083 150kHz ~ 100MHz Apr. 24, 2010 Conduction(CO01-CB)
V- LISN Schwarzbeck NSLK 8127 8127-478 9K ~ 30MHz Oct. 30, 2009 Conduction
(CO01-CB)
PULSE LIMITER R&S ESH3-Z2 100430 9K~30MHz Jan. 04, 2010 Conduction
(CO01-CB)
10m Semi Anechoic
Chamber TDK SAC-10M 10CH01-CB
30MHz~1GHz
10m, 3m Nov. 16, 2009
Radiation
(10CH01-CB)
Pre-Amplifier Agilent 8447D 2944A10783 9KHz ~ 1.3GHz Nov. 06, 2009 Radiation
(10CH01-CB)
Pre-Amplifier Agilent 8447D 2944A10784 9KHz ~ 1.3GHz Nov. 06, 2009 Radiation
(10CH01-CB)
Biconical Antenna Schwarzbeck VHBB 9124 324 30MHz ~ 200MHz Nov. 16, 2009 Radiation
(10CH01-CB)
Log Antenna Schwarzbeck VUSLP 9111 247 200MHz ~ 1GHz Nov. 16, 2009 Radiation
(10CH01-CB)
EMI Test Receiver R&S ESCI 100186 9KHZ ~ 3GHz Mar. 09, 2010 Radiation
(10CH01-CB)
Spectrum Analyzer R&S FSP40 100142 9KHz ~ 40GHz Jan. 21, 2010 Radiation
(10CH01-CB)
※ Calibration Interval of instruments listed above is one year.
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8. Uncertainty of Test Site Uncertainty of Conducted Emission Measurement (150kHz ~ 30MHz)
Uncertainty of ix
Contribution Value Unit
Probability Distribution
k
( )ixu
Receiver reading 0.026 dB normal(k=2) 0.013 Cable loss 0.002 dB normal(k=2) 0.001
AMN/LISN specification 1.200 dB normal(k=2) 0.600 Mismatch
Receiver VSWR Γ1= AMN/LISN VSWR Γ2=
-0.080 dB U-shaped 0.060
combined standard uncertainty Ue(y) 1.2 Measuring uncertainty for a level of confidence of 95% U=2Ue(y)
2.4
Uncertainty of Radiated Emission Measurement (30MHz ~ 1000MHz)
Uncertainty of ix
Contribution Value Unit
Probability Distribution
k
( )ixu
Reading stability 0.135 dB normal(k=2) 0.068 Antenna Factor calibration(Rx) 0.057 dB normal(k=2) 0.029
Cable loss 0.020 dB normal(k=2) 0.010 Pre Amplifier Gain 0.094 dB normal(k=2) 0.047
RCV/SPA specification 0.500 dB normal(k=2) 0.250 Path loss 0.123 dB normal(k=2) 0.062
Receiver device ( absolute level) 0.500 dB rectangular 0.29 Receiver device( non-linearity) 0.500 dB rectangular 0.29
Mismatch Receiver VSWR Γ1= Antenna VSWR Γ2=
Pre Amplifier VSWR Γ3=
-0.08 dB U-shaped 0.06
combined standard uncertainty Ue(y) 0.89 Measuring uncertainty for a level of confidence of 95% U=2Ue(y)
1.79
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9. Certificate of TAF Accreditation
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APPENDIX A. Photographs of EUT
EUT 1
Model No.: G-U0002
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EUT 2
Model No.: G-U0001
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