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Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

FCC 47 CFR PART 15 SUBPART B & IC ICES-003

TEST REPORT

For

Cat5 KVM Extender

Model: UKE-100

Trade Name: UNICLASS

Issued to

UNICLASS TECHNOLOGY CO., LTD.
4F, No. 98, Ming Chuan Rd., Hsin-Tien,
Taipei, 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.
http://www.ccsemc.com.tw
service@tw.ccsemc.com

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: 17
Rev. 00

Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

TABLE OF CONTENTS
1

TEST RESULT CERTIFICATION........................................................................................................3

2

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

3

TEST METHODOLOGY.......................................................................................................................5
3.1
3.2

4

INSTRUMENT AND CALIBRATION .................................................................................................6
4.1
4.2

5

FACILITIES...................................................................................................................................7
TABLE OF ACCREDITATIONS AND LISTINGS ......................................................................8

SETUP OF EQUIPMENT UNDER TEST.............................................................................................9
6.1
6.2

7

MEASURING INSTRUMENT CALIBRATION..........................................................................6
TEST AND MEASUREMENT EQUIPMENT .............................................................................6

FACILITIES AND ACCREDITATIONS..............................................................................................7
5.1
5.2

6

EUT SYSTEM OPERATION ........................................................................................................5
DECISION OF FINAL TEST MODE ...........................................................................................5

SETUP DIAGRAM........................................................................................................................9
SUPPORT EQUIPMENT ..............................................................................................................9

POWERLINE CONDUCTED & RADIATED EMISSION TEST........................................................10
7.1
7.2
7.3
7.4

LIMIT …. .....................................................................................................................................10
TEST PROCEDURE OF LINE CONDUCTED EMISSION ......................................................11
TEST PROCEDURE OF RADIATED EMISSION.....................................................................12
TEST RESULTS ..........................................................................................................................13

APPENDIX I - PHOTOGRAPHS OF TEST SETUP..............................................................................16

Page 2

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Compliance Certification Services Inc.
Report No.: 70509004-D

2

Date of Issue: September 10, 2007

EUT DESCRIPTION

Product

Cat5 KVM Extender

Trade Name

UNICLASS

Model

UKE-100

Model Discrepancy

N/A

Housing Type

Metal

Power Supply

Power adapter 1:
Model: M7-10US08R-A
I/P: AC 100-240V, 50-60Hz, 0.5A
O/P: DC 9V, 1.11A
Power adapter 2:
Model: M7-10US08R-D
I/P: AC 100-240V, 50-60Hz, 0.5A
O/P: DC 9V, 1.11A

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Compliance Certification Services Inc.
Report No.: 70509004-D

3

Date of Issue: September 10, 2007

TEST METHODOLOGY

3.1 EUT SYSTEM OPERATION
Software Used During the Test
Windows XP
1. EMI test program (file name: EMCTEST) was loaded and
executed in “Windows XP” mode.
2. The detect signal was sent to EUT.
3. Data was sent to the monitor, filling the screen with upper case
of “H” patterns.
Program Sequence
4. Test program sequentially all related I/O’s of Host PC include
EUT and sent “H” patterns to all applicable output ports of
Host PC.
5. Repeat 2 to 4.
Operating System

Remark: Test program is self-repeating throughout the test.

3.2 DECISION OF FINAL TEST MODE
The EUT (model: UKE-100) comes with two types of power adapters (M7-10US08R-A &
M7-10US08R-D) for sale. After the preliminary test, the power adapter with model
M7-10US08R-A was found to emit the worst emissions and therefore had been tested under
operating condition.
1.

The following test mode was scanned during the preliminary test:
Mode 1
Operating

2.

After the preliminary scan, the following test mode was found to produce the highest
emission level.
Mode 1
Then, the EUT configuration and cable configuration of the above highest emission mode
was chosen for all final test items.

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Compliance Certification Services Inc.
Report No.: 70509004-D

4

Date of Issue: September 10, 2007

INSTRUMENT AND CALIBRATION

4.1 MEASURING INSTRUMENT CALIBRATION
The measuring equipment utilized to perform the tests documented in this report has been
calibrated once a year or in accordance with the manufacturer's recommendations, and is
traceable under the IEC 17025 to international or national standards. Equipment has been
calibrated by accredited calibration laboratories.

4.2 TEST AND MEASUREMENT EQUIPMENT
The following list contains measurement equipment used for testing. The equipment conforms to
the requirement of CISPR 16-1, ANSI C63.2 and other equivalent standards.
Calibration of all test and measurement, including any accessories that may effect such
calibration, is checked frequently to ensure the accuracy. Adjustments are made and correction
factors are applied in accordance with the instructions contained in the respective manual.
Equipment Used for Emission Measurement
Open Area Test Site # 3
Name of Equipment

Manufacturer

Model

Serial Number

Calibration Due

EMI Test Receiver

R&S

ESVS20

838804/004

01/17/2008

Spectrum Analyzer

R&S

FSP30

100112

10/10/2007

Spectrum Analyzer

Agilent

E4446A

MY43360131

01/30/2008

Pre-Amplifier

MITEC

AFS42-00102650

924206

N.C.R.

Pre-Amplifier

MITEC

AMF-6F-260400

945377

N.C.R.

Bilog Antenna

SCHWAZBECK

VULB9163

145

07/03/2008

Turn Table

EMCO

2081-1.21

9709-1885

N.C.R.

Antenna Tower

EMCO

2075-2

9707-2060

N.C.R.

Controller

EMCO

2090

9709-1256

N.C.R.

RF Switch

ANRITSU

MP59B

M53867

N.C.R.

Site NSA

CCS

N/A

N/A

05/04/2008

Remark: The measurement uncertainty is less than +/- 4.0235dB, which is evaluated as per the NAMAS NIS 81 and
CISPR/A/291/CDV.

Powerline Conducted Emissions Test Site
Name of Equipment

Manufacturer

Model

Serial Number

Calibration Due

EMI TEST RECEIVER
9kHz-30MHz
TWO-LINE V-NETWORK
9kHz-30MHz

ROHDE &
SCHWARZ

ESHS30

828144/003

10/31/2007

SCHAFFNER

NNB41

03/10013

06/12/2008

EMCO

3825/2

9106-1809

04/01/2008

LISN 10kHz-100MHz
Test S/W

LABVIEW (V 6.1)

Remark: The measurement uncertainty is less than +/- 2.81dB, which is evaluated as per the NAMAS NIS 81 and
CISPR/A/291/CDV.

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Report No.: 70509004-D

5

Date of Issue: September 10, 2007

FACILITIES AND ACCREDITATIONS

5.1 FACILITIES
All measurement facilities used to collect the measurement data are located at
No.199, Chunghsen Road, Hsintien City, Taipei Hsien, Taiwan, R.O.C.
Tel: 886-2-2217-0894 / Fax: 886-2-2217-1029
No.11, Wugong 6th Rd., Wugu Industrial Park, Taipei Hsien 248, Taiwan
Tel: 886-2-2299-9720 / Fax: 886-2-2298-4045
No.81-1, Lane 210, Bade 2nd Rd., Luchu Hsiang, Taoyuan Hsien 338, Taiwan
Tel: 886-3-324-0332 / Fax: 886-3-324-5235
The measurement facilities are constructed in conformance with the requirements of CISPR
16-1, ANSI C63.4 and other equivalent standards.

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Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

5.2 TABLE OF ACCREDITATIONS AND LISTINGS
The test facilities used to perform Electromagnetic compatibility tests are registered or accredited by the
organizations listed in the following table which includes the recognized scope specifically.

Country Agency

Scope of Accreditation

USA

A2LA

EN 55011, EN 55014-1/2, CISPR 11, CISPR 14-1/2,
EN 55022, EN 55015, CISPR 22, CISPR 15,
AS/NZS 3548, VCCI V3 (2001), CFR 47, FCC Part 15/18,
CNS 13783-1, CNS 13439, CNS 13438, CNS 13803,
CNS 14115, EN 55024, IEC 801-2, IEC 801-3, IEC 801-4,
IEC/EN 61000-3-2, IEC/EN 61000-3-3,
IEC/EN 61000-4-2/3/4/5/6/8/11, EN 50081-1/
EN 61000-6-3, EN 50081-2/EN 61000-6-4,
EN 50081-2/EN 61000-6-1: 2001

USA

FCC

3/10 meter Open Area Test Sites (93105, 90471) /
3M Semi Anechoic Chamber (965860) to perform
FCC Part 15/18 measurements

Japan

VCCI

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

Logo

93105, 90471
965860

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

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, 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

Taiwan

TAF

EN 300 328, EN 300 220-1, EN 300 220-2, EN 300 220-3,
47 CFR FCC Part 15 Subpart C,
EN 61000-3-2, EN 61000-3-3, CNS 13439, CNS 13783-1,
CNS 14115, CNS 13438, AS/NZS CISPR 22, CNS 13022-1,
IEC 61000-4-2/3/4/5/6/8/11, CNS 13022-2/3

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

3/10 meter Open Area Test Sites (IC 2324C-3, IC 2324C-5) /
3M Semi Anechoic Chamber (IC 6106)

IC 2324C-3
IC 2324C-5
IC 6106

Norway

ELA 124a
ELA 124b
ELA 124c

* No part of this report may be used to claim or imply product endorsement by A2LA or any agency of the US
Government.

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Report No.: 70509004-D

6

Date of Issue: September 10, 2007

SETUP OF EQUIPMENT UNDER TEST

6.1 SETUP DIAGRAM
See test photographs attached in Appendix I for the actual connections between EUT and
support equipment.

6.2 SUPPORT EQUIPMENT
No Equipment

Brand

Model

Serial No.

FCC ID

Data Cable

Power Cord

1.

PC

HP

DX-6120

SGH5330GK7

FCC
DoC

N/A

Unshielded, 1.8m

2.

PC

HP

PL926AV

SGH528048P

FCC
DoC

N/A

Unshielded, 1.8m

3.

CRT Monitor

Samsung

959NF

AQ19H2RT706139P

FCC
DoC

Shielded, 1.8m
with 2 cores

Unshielded, 1.8m
AC I/P:
Unshielded, 1.8m
DC O/P:
Unshielded, 1.8m
with a core
AC I/P:
Unshielded, 1.8m
DC O/P:
Unshielded, 1.8m
with a core
AC I/P:
Unshielded, 1.8m
DC O/P:
Unshielded, 1.8m
with a core

4.

LCD Monitor

Samsung

173P

DI17H4JXB04968Y

FCC
DoC

Shielded, 1.8m
with 2 cores

5.

LCD Monitor

SAMSUNG

959NF

AQ19H2RT706121B

FCC DoC

Shielded, 1.8m
with 2 cores

6.

LCD Monitor

LG

L1740PQ

503KGXA2K858

BEJL17NU

Shielded, 1.8m
with 2 cores

7.

PS/2 Keyboard

Logitech

Y-SJ17

SY528UK

FCC
DoC

Shielded, 1.8m

N/A

8.

PS/2 Keyboard

Logitech

Y-SJ17

SY528UK

FCC
DoC

Shielded, 1.8m

N/A

9.

PS/2 Keyboard

hp

KB-0316

355630-AB1

FCC DoC

Shielded, 1.8m

N/A

10.

PS/2 Keyboard

COMPAQ

KB-0133

N/A

FCC DoC

Shielded, 1.8m

N/A

11.

PS/2 Mouse

Logitech

M-S34

HCA25200400

DZL211029 Shielded, 1.8m

N/A

12.

PS/2 Mouse

Logitech

M-S34

HCA25200475

DZL211029 Shielded, 1.8m

N/A

13.

PS/2 Mouse

Logitech

M-S34

LZC85106992

14.

PS/2 Mouse

Logitech

M-S34

HCA25200251

15.

Printer

EPSON

STYLUS C60

DR3K039633

FCC
DoC

Shielded, 1.8m

Unshielded, 1.8m

16.

Printer

EPSON

STYLUS C60

DR3K041995

FCC
DoC

Shielded, 1.8m

Unshielded, 1.8m

17.

Multimedia
Earphone

Labtec

Axis-301

N/A

FCC
DoC

Unshielded, 1.8m

N/A

18.

Multimedia
Earphone

Ergotech

ET-E220

N/A

FCC
DoC

Unshielded, 1.8m

N/A

19.

Modem

ACEEX

DM-1414

304012269

FCC
DoC

Shielded, 1.8m

N/A

DZL211029 Shielded, 1.8m

N/A

IFAXDM1414 Shielded, 1.8m

Unshielded, 1.8m

Remark: All the above equipment/cables were placed in worse case positions to maximize emission signals during
emission test.
Grounding: Grounding was in accordance with the manufacturer’s requirements and conditions for the intended
use.

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Report No.: 70509004-D

7

Date of Issue: September 10, 2007

POWERLINE CONDUCTED & RADIATED EMISSION TEST

7.1 LIMIT
Maximum permissible level of Line Conducted Emission
Frequency
(MHZ)

Class A
(dBuV)
Quasi-peak
Average

Class B
(dBuV)
Quasi-peak
Average

0.15 - 0.5

79

66

66 - 56

56 - 46

0.50 - 5.0

73

60

56

46

5.0 - 30.0

73

60

60

50

Remark: The lower limit shall apply at the transition frequency.

Maximum permissible level of Radiated Emission measured at 10 meter
Frequency
(MHZ)

Class A
(dBuV/m)
Quasi-peak

Class B
(dBuV/m)
Quasi-peak

30 – 230

40

30

230 - 1000

47

37

Maximum permissible level of Radiated Emission measured at 3 meter
Frequency
(MHZ)
Above 1000

Class A
(dBuV/m)
Average
Peak
59.3

79.3

Class B
(dBuV/m)
Average
Peak
53.9

73.9

Remark: The lower limit shall apply at the transition frequency.

Maximum permissible level of Radiated Emission measured at 3 meter

30-88

Field Strength
(µV/m at 3-meter)
Average
100

Field Strength
(dBµV/m at 3-meter)
Average
40

88-216

150

43.5

216-960

200

46

Above 960

500

54

Frequency
(MHz)

Remark: The lower limit shall apply at the transition frequency.

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Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

7.2 TEST PROCEDURE OF LINE CONDUCTED EMISSION
Procedure of Preliminary Test
The EUT was set up as per the test configuration to simulate typical usage per the user’s
manual. When the EUT is a tabletop system, a wooden table with a height of 0.8 meters is
used and is placed on the ground plane as per ANSI C63.4 (see Test Facility for the
dimensions of the ground plane used). When the EUT is a floor-standing equipment, it is
placed on the ground plane which has a 3-12 mm non-conductive covering to insulate the EUT
from the ground plane.
Support equipment, if needed, was placed as per ANSI C63.4.
All I/O cables were positioned to simulate typical actual usage as per ANSI C63.4.
The test equipment EUT installed received AC power, 120VAC/60Hz, through a Line
Impedance Stabilization Network (LISN), which supplied power source and was grounded to
the ground plane.
All support equipment received power from a second LISN.
The EUT test program was started. Emissions were measured on each current carrying line
of the EUT using a EMI Test Receiver connected to the LISN powering the EUT. The LISN
has two monitoring points: Line 1 (Hot Side) and Line 2 (Neutral Side). Two scans were
taken: one with Line 1 connected to the Receiver and Line 2 connected to a 50 ohm load; the
second scan had Line 1 connected to a 50 ohm load and Line 2 connected to the Receiver.
The Receiver scanned from 150kHz to 30MHz for emissions in each of the test modes.
During the above scans, the emissions were maximized by cable manipulation.
The test mode(s) described in Item 3.2 were scanned during the preliminary test.
After the preliminary scan, we found the test mode described in Item 3.2 producing the highest
emission level.
The EUT configuration and cable configuration of the above highest emission level were
recorded for reference of the final test.
Procedure of Final Test
EUT and support equipment were set up on the test bench as per step 10 of the preliminary
test.
A scan was taken on both power lines, Line 1 and Line 2, recording at least the six highest
emissions. Emission frequency and amplitude were recorded into a computer in which
correction factors were used to calculate the emission level and compare reading to the
applicable limit.
The test data of the worst-case condition(s) was recorded.

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Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

7.3 TEST PROCEDURE OF RADIATED EMISSION
Procedure of Preliminary Test
The equipment was set up as per the test configuration to simulate typical usage per the
user’s manual. When the EUT is a tabletop system, a wooden turntable with a height of 0.8
meters is used which is placed on the ground plane. When the EUT is a floor-standing
equipment, it is placed on the ground plane which has a 3-12 mm non-conductive covering to
insulate the EUT from the ground plane.
Support equipment, if needed, was placed as per ANSI C63.4.
All I/O cables were positioned to simulate typical usage as per ANSI C63.4.
The EUT received AC power source, 120VAC/60Hz, from the outlet socket under the
turntable. All support equipment received power from another socket under the turntable.
The antenna was placed at 10 meter away from the EUT as stated in ANSI C63.4. The
antenna connected to the Spectrum Analyzer via a cable and at times a pre-amplifier would
be used.
The Analyzer / Receiver quickly scanned from 30MHz to 40GHz maximum, if any. The EUT
test program was started. Emissions were scanned and measured rotating the EUT to 360
degrees and positioning the antenna 1 to 4 meters above the ground plane, in both the vertical
and the horizontal polarization, to maximize the emission reading level.
The test mode(s) described in Item 3.2 were scanned during the preliminary test:
After the preliminary scan, we found the test mode described in Item 3.2 producing the
highest emission level.
The EUT and cable configuration, antenna position, polarization and turntable position of the
above highest emission level were recorded for the final test.
Procedure of Final Test
EUT and support equipment were set up on the turntable as per step 8 of the preliminary test.
The Analyzer / Receiver scanned from 30MHz to 40GHz maximum, if any. Emissions were
scanned and measured rotating the EUT to 360 degrees, varying cable placement and
positioning the antenna 1 to 4 meters above the ground plane, in both the vertical and the
horizontal polarization, to maximize the emission reading level.
Recorded at least the six highest emissions. Emission frequency, amplitude, antenna position,
polarization and turntable position were recorded into a computer in which correction factors
were used to calculate the emission level and compare reading to the applicable limit and
only Q.P. reading is presented.
The test data of the worst case condition(s) was recorded.

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Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

7.4 TEST RESULTS
Powerline Conducted Emission
Operation Mode:

Mode 1

Test Date:

August 10, 2007

Temperature:

25°C

Tested by:

Eric Cheng

Humidity:

55% RH

QP
Frequency
Reading
(MHz)
(dBuV)

AV
Reading
(dBuV)

Corr.
factor
(dB)

QP
Result
(dBuV)

AV
Result
(dBuV)

QP
Limit
(dBuV)

AV
Limit
(dBuV)

QP
Margin
(dB)

AV
Margin
(dB)

Note

0.195

45.790

43.940

0.110

45.900

44.050

63.821

53.821

-17.921

-9.771

L1

0.262

40.990

37.870

0.100

41.090

37.970

61.368

51.368

-20.278

-13.398

L1

0.393

41.270

40.280

0.100

41.370

40.380

58.000

48.000

-16.630

-7.620

L1

0.524

36.770

36.070

0.100

36.870

36.170

56.000

46.000

-19.130

-9.830

L1

5.242

39.220

33.430

0.224

39.444

33.654

60.000

50.000

-20.556

-16.346

L1

17.047

32.530

27.770

0.964

33.494

28.734

60.000

50.000

-26.506

-21.266

L1

0.195

45.650

43.320

0.110

45.760

43.430

63.821

53.821

-18.061

-10.391

L2

0.260

40.650

36.360

0.100

40.750

36.460

61.431

51.431

-20.681

-14.971

L2

0.390

41.460

41.320

0.100

41.560

41.420

58.064

48.064

-16.504

-6.644

L2

0.458

40.650

39.820

0.100

40.750

39.920

56.729

46.729

-15.979

-6.809

L2

0.586

38.810

38.290

0.100

38.910

38.390

56.000

46.000

-17.090

-7.610

L2

4.840

33.870

28.990

0.184

34.054

29.174

56.000

46.000

-21.946

-16.826

L2

Remark:
1. Measuring frequencies from 0.15 MHz to 30MHz.
2.

The emissions measured in frequency range from 0.15 MHz to 30MHz were made with
an instrument using Quasi-peak detector and average detector.

3.

The IF bandwidth of SPA between 0.15MHz to 30MHz was 10kHz; the IF bandwidth of
Test Receiver between 0.15MHz to 30MHz was 9kHz;

4.

L1 = Line One (Live Line) / L2 = Line Two (Neutral Line)

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Report No.: 70509004-D

Date of Issue: September 10, 2007

Test Plots
Conducted emissions (Line 1)

Conducted emissions (Line 2)

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Report No.: 70509004-D

Date of Issue: September 10, 2007

Radiated Emission
Operation Mode: Mode 1

Test Date: August 13, 2007

Temperature:

26°C

Tested by: Eric Cheng

Humidity:

55 % RH

Polarity:

Frequency Ant.Pol.
(MHz)
(H/V)

Detector
Mode
(PK/QP)

Reading
(dBuV)

Correction Factor
Result
(dB/m)
(dBuV/m)

Ver. / Hor.
Limit 10m
(dBuV/m)

Margin
(dB)

59.10

V

QP

9.50

12.99

22.49

30.00

-7.51

141.55

V

QP

10.50

9.32

19.82

30.00

-10.18

163.38

V

QP

8.80

10.22

19.02

30.00

-10.98

253.10

V

QP

6.40

14.38

20.78

37.00

-16.22

536.83

V

QP

6.20

20.90

27.10

37.00

-9.90

648.37

V

QP

5.80

22.74

28.54

37.00

-8.46

55.27

H

QP

10.10

13.20

23.30

30.00

-6.70

134.27

H

QP

15.50

9.79

25.29

30.00

-4.71

182.78

H

QP

8.10

11.33

19.43

30.00

-10.57

253.10

H

QP

12.00

14.38

26.38

37.00

-10.62

612.00

H

QP

6.40

22.38

28.78

37.00

-8.22

752.65

H

QP

4.90

23.59

28.49

37.00

-8.51

Remark:
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/Quasi-peak detector mode.

3.

Measurements above show only up to 6 maximum emissions noted, or would be
lesser, with “ N/A ” remark, if no specific emissions from the EUT are recorded (ie:
margin>20dB from the applicable limit) and considered that's already beyond the
background noise floor.

4.

The IF bandwidth of SPA between 30MHz to 1GHz was 100kHz.

Page 15

Rev.00

Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

APPENDIX I PHOTOGRAPHS OF TEST SETUP
POWERLINE CONDUCTED EMISSIONS SETUP PHOTOS

Page 16

Rev.00

Compliance Certification Services Inc.
Report No.: 70509004-D

Date of Issue: September 10, 2007

RADIATED EMISSION SETUP PHOTOS

Page 17

Rev.00



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