FCC Report_CISPR22 179119 Certification Magic Control
2016-04-06
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Applicant: Magic Control Technology Corporation
Address: 6F, .#120-11, Chung Shan Rd, Sec. 3, Chung Ho, 235 Taipei,
Taiwan, R. O. C.
Tested and Prepared
by
ETS Product Service (Taiwan) Co., Ltd.
FCC Registration No.: 930600
Industry Canada filed test laboratory Reg. No. IC 5679
A2LA Accredited No.: 2300.01
PTCRB Accredited Type Certification Test House
Report No.: W6M20708-8430-P-15B
6F, NO. 58, LANE 188, RUEY-KUANG RD., NEIHU TAIPEI 114, TAIWAN, R.O.C.
TEL: 886-2-66068877 FAX: 886-2-66068879 E-mail: ets@ets-bzt.com.tw
FCC TEST REPORT
for
USB 2.0 Graphic Card
Model No.: UVT100
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Registration number: W6M20708-8430-P-15B
ETS Product Service (Taiwan) Co., Ltd. Page 1 of 17
TABLE OF CONTENTS
1 General Information 2
1.1 Notes 2
1.2 Tester 4
1.3 Testing laboratory 5
1.3.1 Location 5
1.3.2 Details of accreditation status 5
1.3.3 Test location, where different from ETS Product Service (Taiwan) Co., Ltd. 5
1.4 Details of applicant 6
1.5 Application details 6
1.6 Test item 6
1.6.1 Description of test item 6
1.6.2 Manufacturer (if different from applicant in point 1.4) 7
1.6.3 Frequency behavior 7
1.7 Test standards 7
2 Technical test 8
2.1 Summary of test results 8
2.2 Test environment 8
2.3 Test equipment utilized 9
2.4 Test results 11
2.4.1 Radiated Emission 12
2.4.2 Conducted Emission 13
2.5 Test protocols 14
2.5.1 Radiated Emission 14
2.5.2 Conducted Emission 15
2.6 Equipment Modification 16
3 Normative references 17
Appendix : Pictures and diagrams
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ETS Product Service (Taiwan) Co., Ltd. Page 2 of 17
1 General Information
1.1 Notes
The purpose of conformity testing is to increase the probability of adherence to the essential
requirements or conformity specifications, as appropriate.
The tests were carried out and passed in accordance to the standards:
FCC part 15 : May 2007
The complexity of the technical specifications, however, means that full and thorough testing is
impractical for both technical and economic reasons.
Furthermore, there is no guarantee that a test sample which has Passed all the relevant tests conforms
to a specification (only telecommunication products).
Neither is there any guarantee that such a test sample will interwork with other genuinely open
systems.
The existence of the tests nevertheless provides the confidence that the test sample possesses the
qualities as maintained and that its performance generally conforms to representative cases of
communications equipment.
The test results of this test report relate exclusively to the item tested as specified in 1.6.
The test report may only be reproduced or published in full.
Reproduction or publication of extracts from the report requires the prior written approval of the
ETS Product Service (Taiwan) Co., Ltd.
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ETS Product Service (Taiwan) Co., Ltd. Page 3 of 17
Important Notes:
Proper labeling is required for each device. Devices shall be labeled in accordance with labeling
requirements pursuant to section 15.19 and section 2.1074 of the FCC rules.
Devices subject to a Declaration of Conformity shall be uniquely identified by the responsible party.
This identification shall not be of a format which could be confused with the FCC Identifier required
on certified, notified type accepted or type approved equipment.
The responsible party shall maintain adequate identification records to facilitate positive identification
for each device.
The user manual or instruction manual shall included also a warning statement that changes or
modifications not expressly approved by the party responsible for compliance could void the user’s
authority to operate the equipment.
Reference Section 15.21
Furthermore an information to the user regarding to the interference potential of the device and about
simple measures that can be taken to correct interference is required.
Reference Section 15.105
The responsible party must warrant that each unit of equipment marketed under a Declaration of
Conformity is identical to the unit tested and found acceptable with the standards and that the records
maintained by the responsible party continue to reflect the equipment being produced under the
Declaration of Conformity within the variation that can be expected due to quantity production and
testing on a statistical basis.
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ETS Product Service (Taiwan) Co., Ltd. Page 4 of 17
1.2 Tester
September 04, 2007 Jay Chaing
___________________________________________________________________
Date ETS-Lab. Test Engineer Signature
Technical responsibility for area of testing:
September 04, 2007 Steven Chuang
____________________________________________________________________
Date ETS Name Signature
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ETS Product Service (Taiwan) Co., Ltd. Page 5 of 17
1.3 Testing laboratory
1.3.1 Location
OATS
No.5-1, Shuang Sing Village,
LiShuei Rd., Wanli Township,
Taipei County 207, Taiwan (R.O.C.)
Company
ETS Product Service (Taiwan) Co., Ltd.
6F, NO. 58, LANE 188, RUEY-KUANG RD.
NEIHU, TAIPEI 114, TAIWAN R.O.C.
Tel : 886-2-66068877
Fax : 886-2-66068875
1.3.2 Details of accreditation status
Accredited testing laboratory
A2LA accredited number: 2300.01
FCC filed test laboratory Reg. No. 930600
Industry Canada filed test laboratory Reg. No. IC 5679
PTCRB Accredited Type Certification Test House
1.3.3 Test location, where different from ETS Product Service (Taiwan) Co., Ltd.
Name: ./.
Street: ./.
Town: ./.
Country: ./.
Telephone: ./.
Fax: ./.
Teletex: ./.
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ETS Product Service (Taiwan) Co., Ltd. Page 6 of 17
1.4 Details of applicant
Name : Magic Control Technology Corporation
Street : 6F,.#120-11,Chung Shan Rd, Sec. 3, Chung Ho,
City : 235 Taipei,
Country : Taiwan, R. O. C.
Telephone : +886-2-3234-6616
Fax : +886-2-3234-6606
Teletex : ./.
1.5 Application details
Date of receipt of test item : August 20, 2007
Date of test : from August 21, 2007 to August 31, 2007
1.6 Test item
1.6.1 Description of test item
Type of product : USB 2.0 Graphic Card
Type identification : UVT100
Multi-listing model number : ./.
Brand Name : ./.
Photos : Please find in Appendix.
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1.6.2 Manufacturer (if different from applicant in point 1.4)
Name : ./.
Street : ./.
Town : ./.
Country : ./.
Contact : ./.
Phone : ./.
1.6.3 Frequency behavior
Highest clock Frequency < 200 MHz
1.7 Test standards
FCC part 15 : May 2007
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2 Technical test
2.1 Summary of test results
No deviations from the technical specification(s) were ascertained in the course :
of the tests performed.
Or
The deviations as specified in 2.4 were ascertained in the course of the tests
performed.
2.2 Test environment
Temperature: 18 ... 25 oC
Relative humidity content 20 ... 75 %
Air pressure: 860 ... 1030 hPa
Details of power supply battery: 5 VDC ( power on PC )
Other parameters: without
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2.3 Test equipment utilized
No. Test equipment Type Serial No. Manufacturer Cal. Date Next Cal.
Date
ETSTW-CE 001 EMI TEST RECEIVER ESHS10 842121/013 R&S 2006/10/16 2007/10/15
ETSTW-CE 002 PREREULATOR MODE DC
POWER SUPPLY None None Function Test
ETSTW-CE 003 AC POWER SOURCE APS-9102 D161137 GW Function Test
ETSTW-CE 004
ZWEILEITER-V-
NETZNACHBILDUNG TWO-
LINE V-NETWORK
ESH3-Z5 840731/011 R&S 2006/10/16 2007/10/15
ETSTW-CE 005 Line-Impedance Stabilisation
Network NNBM 8126D 137 Schwarzbeck 2006/10/16 2007/10/15
ETSTW-CE 006 IMPULSBEGRENZER PULSE
LIMITER ESH3-Z2 100226 R&S In House Certificate
ETSTW-CE 008 ABSORBING CLAMP MDS 21 3469 Schwarzbeck 2005/10/24 2007/10/23
ETSTW-CE 009 TEMP.&HUMIDITY CHAMBER GTH-225-40-1P-U MAA0305-009 GIANT FORCE 2007/8/2 2008/8/1
ETSTW-CE 013
CISPR 22 TWO BALANCED
TELECOM PAIRS IMPEDANCE
STABILIZATION NETWORK
FCC-TLISN-T4-02 20242 FCC 2005/12/8 2007/12/7
ETSTW-CE 014
CISPR 22 TWO BALANCED
TELECOM PAIRS IMPEDANCE
STABILIZATION NETWORK
FCC-TLISN-T2-02 20241 FCC 2005/12/7 2007/12/6
ETSTW-CE 015
CISPR 22 TWO BALANCED
TELECOM PAIRS IMPEDANCE
STABILIZATION NETWORK
FCC-TLISN-T8-02 20307 FCC 2006/11/7 2008/11/6
ETSTW-CE 016 TWO-LINE V-NETWORK ENV216 100050 R&S 2006/11/21 2007/11/20
ETSTW-RE 002 Function Generator 33220A MY43004982 Agilent 2005/10/14 2007/10/13
ETSTW-RE 003 EMI TEST RECEIVER ESI 26 831438/001 R&S 2006/10/20 2007/10/19
ETSTW-RE 004 EMI TEST RECEIVER ESI 40 832427/004 R&S 2006/10/30 2007/10/29
ETSTW-RE 005 EMI TEST RECEIVER ESVS10 843207/020 R&S 2006/10/12 2007/10/11
ETSTW-RE 010 PROGRAMMABLE LINEAR
POWER SUPPLY LPS-305 30503070181 MOTECH Function Test
ETSTW-RE 011 PROGRAMMABLE LINEAR
POWER SUPPLY LPS-305 30503070165 MOTECH Function Test
ETSTW-RE 017 Log-Periodic Antenna HL025 352886/001 R&S 2006/5/4 2008/5/3
ETSTW-RE 018 MICROWAVE HORN
ANTENNA AT4560 27212 AR 2004/11/8 2007/11/7
ETSTW-RE 020 MICROWAVE HORN
ANTENNA AT4002A 306915 AR Function Test
ETSTW-RE 021 SWEEP GENERATOR SWM05 835130/010 R&S 2006/10/11 2007/10/10
ETSTW-RE 027 Passive Loop Antenna 6512 00034563 EMCO In House Certificate
ETSTW-RE 028 Log-Periodic DipoleArray Antenna 3148 34429 EMCO 2006/5/26 2008/5/25
ETSTW-RE 029 Biconical Antenna 3109 33524 EMCO 2006/5/26 2008/5/25
ETSTW-RE 030 Double-Ridged Guide Horn
Antenna 3117 00035224 EMCO 2006/5/3 2008/5/2
ETSTW-RE 032 Millivoltmeter URV 55 849086/013 R&S 2006/10/11 2007/10/10
ETSTW-RE 034 Power Sensor URV5-Z4 839313/006 R&S 2005/10/17 2007/10/16
ETSTW-RE 042 Biconical Antenna HK116 100172 R&S 2007/1/11 2009/1/10
ETSTW-RE 043 Log-Periodic Dipole Antenna HL223 100166 R&S 2006/5/8 2008/5/7
ETSTW-RE 044 Log-Periodic Antenna HL050 100094 R&S 2006/5/29 2008/5/28
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ETS Product Service (Taiwan) Co., Ltd. Page 10 of 17
ETSTW-RE 048 Triple Loop Antenna HXYZ 9170 HXYZ 9170-134 Schwarzbeck 2005/3/22 2008/3/21
ETSTW-RE 049 TRILOG Super Broadband test
Antenna VULB 9160 9160-3185 Schwarzbeck 2007/5/2 2009/5/1
ETSTW-RE 055 SPECTRUM ANALYZER FSU-26 200074 R&S 2007/7/16 2008/7/15
ETSTW-RE 064 Bluetooth Test Set MT8852B-042 6K00005709 Anritsu Function Test
ETSTW-RE 072 CELL SITE TEST SET 8921A 3339A00375 HP 2007/7/2 2009/7/1
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2.4 Test results
: 1
st test test after modification production test
Test
Emission / Immunity
Done Test
passed
Test
failed
Emission Radiated Emission FCC part 15.109 Class B : :
Emission Conducted Emission FCC part 15.107 Class B : :
Note: According to FCC part 15.109 (g), digital devices may be shown to comply with the standards
contained in Third Edition of the International Special Committee on Radio Interference (CISPR), Pub.
22, “Information Technology Equipment - Radio Disturbance Characteristics - Limits and Methods of
Measurement”.
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2.4.1 Radiated Emission
2.4.1.1 Test Equipment
a) Biconical Antenna (HK116)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 042
b) Log-Periodic Dipole Antenna (HL223)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 043
c) EMI TEST RECEIVER (ESI-26)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 003
d) EMI TEST RECEIVER (ESI 40)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 004
e) Log-Periodic Antenna (HL025)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 017
f) Log-Periodic DipoleArray Antenna (3148)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 028
g) Biconical Antenna (3109)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 029
h) Double-Ridged Waveguide Horm Antenna (3117)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 030
i) Log-Periodic Antenna (HL050)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-RE 044
2.4.1.2 Test Procedures
• Test configuration
The test configuration corresponds to the standard CISPR 22. The equipment under test is placed on a
non metallic table with 0,8m height. The power supply and the RF connection points are close to the
equipment under test at the floor inside a connection box. The cables to this connection box are
shielded and below the double floor. The receiving antenna is placed in a height at 1,0 to 4,0m, in a
distance of 10m. The measurement receiver are placed in a special room. The observation of the
equipment under test is realized by 3 video cameras and by a microphone.
• Test parameters and marginal conditions
The test are carried out with horizontal and vertical polarization of the antenna in a frequency range of
30 MHz to 1000 MHz . Further information please find in the test protocol.
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2.4.2 Conducted Emission
2.4.2.1 Test Equipment
a) ZWEILEITER-V-NETZNACHBILDUNG TWO-LINE V-NETWORK (ESH3-Z5)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-CE 004
b) IMPULS-BEGRENZER PULSE LIMITER (ESH3-Z2)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-CE 006
c) EMI TEST RECEIVER (ESHS10)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-CE 001
d) AC Power Source (APS-9102)
For your reference please find it in our test equipment list at page 9 to 10 as number : ETSTW-CE 003
• Test configuration
The test configuration is contained inside of a shielded chamber and corresponds to the standard
CISPR 22. The equipment under test is placed in the facility on a wooden table 0.8m high. The
equipment under test is connected with the artificial mains network (AMN) in a distance of 0,8m and
also 0,8m from other subassembly and metallic area. The measurement receiver are placed in a special
room adjacent to the chamber. The observation of the equipment under test is realized by 3 video
cameras and by a microphone.
• Test parameters and marginal conditions
The test are carried out with a nominal impedance by 50Ω / 50μH of the AMN in a frequency range
150 kHz to 30 MHz. This measurement was transact first with instrumentation using an average and
peak detector and a 10 kHz bandwidth. If the peak detector achieves a calculated level, the
measurement is repeated by an instrumentation using a quasi-peak detector,
Further information please find in test report.
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2.5 Test protocols
2.5.1 Radiated Emission
Radio Noise Field Strength
Emission
Model: UVT100 Date: 2007/8/28
Mode: Temperature: 26 °C Engineer: Evan
Polarization: Horizontal Humidity: 60 %
Frequency
(MHz)
Reading
(dBuV) Detector Factor
(dB)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Table
Degree
(Deg.)
Ant.
High
(cm)
164.128 13.09 QP 15.26 28.35 30 -1.65 110 340
204.770 13.19 QP 12.23 25.42 30 -4.58 120 335
287.174 20.51 QP 14.98 35.49 37 -1.51 50 310
410.160 13.68 QP 18.00 31.68 37 -5.32 330 244
656.313 7.88 QP 22.82 30.7 37 -6.3 90 250
779.178 10.18 QP 24.82 35 37 -2 120 229
Polarization: Vertical
Frequency
(MHz)
Reading
(dBuV) Detector Factor
(dB)
Result
(dBuV/m)
Limit
(dBuV/m)
Margin
(dB)
Table
Degree
(Deg.)
Ant.
High
(cm)
164.188 8.84 peak 15.25 24.09 30 -5.91 120 120
246.433 14.77 peak 13.73 28.5 37 -8.5 90 155
287.555 15.67 peak 14.99 30.66 37 -6.34 320 190
532.866 12.79 peak 20.36 33.15 37 -3.85 120 285
716.633 8.98 peak 23.89 32.87 37 -4.13 90 299
913.026 5.72 peak 26.54 32.26 37 -4.74 0 310
Note 1. Correction Factor = Antenna factor + Cable loss - Preamplifier
2. The formula of measured value as: Test Result = Reading + Correction Factor
3. Detector function in the form : PK = Peak, QP = Quasi Peak, AV = Average
4. All not in the table noted test results are more than 20 dB below the relevant limits.
5. See attached diagrams as appendix.
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2.5.2 Conducted Emission
Conducted Emission
Emission
Model: UVT100 Date: 2007/8/21
Mode: Temperature: 26 °C Engineer: Catey
Polarization: N Humidity: 60 %
Frequency
(MHz)
Reading
(dBuV)
QP Ave.
Factor
(dB)
Corr.
Result
(dBuV)
QP Ave.
Limit
(dBuV)
QP Ave.
Margin
(dB)
0.201 41.17 35.06 10.10 51.27 45.16 63.57 53.57 -8.41
0.2659 33.49 27.71 10.10 43.59 37.81 61.25 51.25 -13.44
0.333 32.77 29.67 10.10 42.87 39.77 59.38 49.38 -9.61
1.805 25.73 23.37 10.10 35.83 33.47 56 46 -12.53
5.1944 10.55 -5.76 10.10 20.65 4.34 60 50 -39.35
19.7719 13.62 -0.73 10.10 23.72 9.37 60 50 -36.28
Polarization: L1
Frequency
(MHz)
Reading
(dBuV)
QP Ave.
Factor
(dB)
Corr.
Result
(dBuV)
QP Ave.
Limit
(dBuV)
QP Ave.
Margin
(dB)
0.2004 43.3 36.33 10.10 53.4 46.43 63.59 53.59 -7.16
0.267 35.22 29.09 10.10 45.32 39.19 61.21 51.21 -12.02
0.336 33.92 30.21 10.10 44.02 40.31 59.3 49.3 -8.99
0.4026 31.07 26.43 10.10 41.17 36.53 57.8 47.8 -11.27
1.4003 26.72 22.48 10.10 36.82 32.58 56 46 -13.42
5.4747 24.38 21.53 10.10 34.48 31.63 60 50 -18.37
Note 1. The formula of measured value as: Test Result = Reading + Correction Factor
2. The Correction Factor = Cable Loss + LISN Insertion Loss + Pulse Limit Loss
3. Detector function in the form : PK = Peak, QP = Quasi Peak, AV = Average
4. All not in the table noted test results are more than 20 dB below the relevant limits.
5. See attached diagrams as appendix.
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2.6 Equipment Modification
No modification was made to pass all tests.
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3 Normative references
/1/ FCC part 15
Radio Frequency Devises
/2/ CISPR 22
Limits and Methods of Measurement of Radio Interference Characteristics of Information
Technology Equipment
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ETS Product Service (Taiwan) Co., Ltd. Appendix page 1 of 12
Appendix
A Measurement diagrams
1. Radiated Emission
( The measurement diagrams plots attached below are preliminary wideband scan with a peak
detector and for reference only. The final test results are listed on section 2.5.1)
2 . Conducted Emission
( The measurement diagrams plots attached below are preliminary wideband scan with a peak
and average detector for reference only. The final test results are listed on section 2.5.2)
B Photos
1. External Photos
2. Internal Photos
3. Set Up Photo of Radiated Emission
4. Set Up Photo of Conducted Emission
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ETS Product Service (Taiwan) Co., Ltd. Appendix page 2 of 12
Radiated Emission
Antenna Polarization H
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Antenna Polarization V
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Conducted Emission
LISN N
LISN L1
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External Photos
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Internal Photos
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Set Up Photo of Radiated Emission
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Set Up Photo of Conducted Emission
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