NC6000-FCC

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NC6000-FCC
Report Number: B30722205-D
August 5, 2003
FCC CLASS B COMPLIANCE REPORT
(DoC)
for
Electromagnetic Emissions
of
Notebook Computer
Trade Name
: HP; INVENTEC
Model Number : SERIES PP2090; PC8800 SERIES
Serial Number : N/A
Report Number : B30722205-D
Date
: August 5, 2003
Prepared for:
INVENTEC CORPORATION
66 Hou-Kang St., Shin-Lin District,
Taipei, Taiwan, R.O.C.
Prepared by:
C&C LABORATORY, CO., LTD.
No. 81-1, 210 Lane, Pa-de 2nd Road, Lu-Chu Hsiang,
Taoyuan, Taiwan, R.O.C.
TEL: (03) 324-0332
FAX: (03) 324-5235
This report shall not be reproduced, except in full, without the written approval of
C&C LABORATORY, CO., LTD.
The client to claim product certification, approval or endorsement by NVLAP, NIST or any agency
of the federal government must not use this report.
Page 1 of 48
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
TABLE OF CONTENTS
1
VERIFICATION OF COMPLIANCE .................................................................... 3
2
SYSTEM DESCRIPTION ........................................................................................ 4
3
PRODUCT INFORMATION................................................................................... 5
4
SUPPORT EQUIPMENT ......................................................................................... 9
5
MEASUREMENT PROCEDURE......................................................................... 10
6
5.1 PRELIMINARY LINE CONDUCTED EMISSION TEST ...........................10
5.2 FINAL LINE CONDUCTED EMISSION TEST...........................................14
5.3 PRELIMINARY RADIATED EMISSION TEST .........................................15
5.4 FINAL RADIATED EMISSION TEST .........................................................19
SUMMARY DATA ............................................................................................... 20
7
TEST FACILITY..................................................................................................... 27
8
TEST EQUIPMENT LIST ..................................................................................... 28
9
BLOCK DIAGRAM OF TEST SETUP ................................................................ 30
10 APPENDIX 1
PHOTOGRAPHS
(TEST SETUP OF LINE CONDUCTED EMISSION TEST)............................. 31
11 APPENDIX 2
PHOTOGRAPHS
(TEST SETUP OF RADIATED EMISSION TEST) ............................................ 33
12 APPENDIX 3
PHOTOGRAPHS OF EUT......................................................... 35
13 APPENDIX 4
LABELING REQUIREMENTS ................................................ 46
Page 2
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
1 VERIFICATION OF COMPLIANCE
Equipment Under Test:
Notebook Computer
Trade Name:
Model Number:
HP; INVENTEC
Serial Number:
Applicant:
N/A
INVENTEC CORPORATION
66 Hou-Kang St., Shin-Lin District,
Taipei, Taiwan, R.O.C.
Manufacturer:
INVENTEC CORPORATION
66 Hou-Kang St., Shin-Lin District,
Taipei, Taiwan, R.O.C.
Type of Test:
FCC Class B (DoC)
Measurement Procedure:
ANSI C63.4: 1992
File Number:
B30722205-D
Date of Test:
July 22 ~ 30, 2003
Deviation:
None
Condition of Test Sample:
Normal
Final Result:
Pass
Worst Data:
See below
SERIES PP2090; PC8800 SERIES
Test Item
Freq. (MHz)
Radiated Emission
833.80
Measured
Data
33.6 (dB/m)
Margin (MuC)
Remark
-3.4 dB (± 3.3308 dB)
Conducted Emission
0.155
52.7 (dB)
-3.0 dB (± 2.8104 dB)
The negative sign in Margin cell means under the specific limit.
This test result traceable to national or international standards.
The above equipment was tested by C&C Laboratory, Co., Ltd. for compliance with the
requirements set forth in the FCC Rules and Regulations Part 15, Subpart B and the measurement
procedure according to ANSI C63.4. This said equipment in the configuration described in this
report shows the maximum emission levels emanating from equipment are within the compliance
requirements.
The test results of this report relate only to the tested sample identified in this report.
Approved by:
Reviewed by:
Jonson Lee / EMC Director
Jessie Wang / Section Manager
Page 3
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
2 SYSTEM DESCRIPTION
EUT Test Program:
1.
The module device driver was exercised to play music.
2.
Communication software was loaded and executed to communicate between EUT and remote
equipments.
3.
EMI test program was loaded and executed in “Windows XP” mode.
4.
Data was sent to the LCD Panel of EUT and CRT monitor, and filling the screens with upper
case of “H” patterns.
5.
Test program sequentially exercised all related I/O’s of EUT and sent “H” patterns to all
applicable output ports of EUT.
6.
Repeat 2 to 5.
Test program is self-repeating throughout the test.
Page 4
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
3 PRODUCT INFORMATION
Housing Type:
EUT Power Rating:
AC power during Test:
AC Power Adapter Manufacturer:
AC Power Adapter Rating:
AC Power Cord Type:
DC Power Cable Type:
OSC/Clock Frequencies:
CPU Manufacturer:
Memory Captains:
14.1” XGA TFT Manufacturer:
14.1” SXGA+ TFT Manufacturer:
FDD Manufacturer:
CD-ROM Manufacturer:
DVD-ROM Manufacturer:
Plastic
DCV from Power Adapter
120VAC/ 60Hz to Power Adapter
Compaq (LITEON) Model:
Series PPP009L
(PA-1650-02C)
Compaq (HIPRO) Model:
Series PPP009H
(HP-OK065B13)
Compaq (LITEON) Model:
Series PPP012L
(PA-1900-05C1)
1) For Series PPP009L
I/P: 100-240VAC, 50-60Hz, 1.6A
O/P: 18.5VDC, 3.5A
2) For Series PPP009H
I/P: 100-240VAC, 50-60Hz, 1.7A
O/P: 18.5VDC, 3.5A
3) For Series PPP012L
I/P: 100-240VAC, 50-60Hz, 1.5A
O/P: 18.5VDC, 4.9A
Unshielded, 1.8m (Detachable) to Power Adapter
Unshielded, 1.8m (Non-Detachable) at Power Adapter
133 MHz
Intel
Banias 1.3GHz
Type:
Banias 1.4GHz
Banias 1.5GHz
Banias 1.6GHz
Banias 1.7GHz
Installed: 128 MB / 256 MB
512 MB / 1GB
Samsung
LTN141XB-L02
Model:
AU
B141XG08
Model:
CHIMEI
N141X7-L06
Model:
Samsung
LTN141P4-L03
Model:
HannStar
HSD141PK13-A
Model:
Citizen
BXX10700
Model:
BXX10720
TEAC
FD-05HG-CP01
Model:
TEAC
CD-224E-CC3 (24X)
Model:
HLDS
CRN-8245B (24X)
Model:
Toshiba
SD-C2612 (8X)
Model:
HLDS
GDR-8082N (8X)
Model:
Page 5
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
Combo Manufacturer:
Toshiba
Model:
DVD-RW Manufacturer:
ZIP-250 Manufacturer:
LS-120 Manufacturer:
TEAC
HLDS
HLDS
ZIP
Compaq
(PANASONIC)
Fujitsu
Model:
Model:
Model:
Model:
Model:
Toshiba
Model:
Hitachi
Hitachi
Compaq
(MOTOROLA)
Simplo
Model:
Model:
Model:
Dynapack
Model:
2nd Battery Manufacturer: (Li-Ion)
Compaq
Model:
Bluetooth Manufacturer:
Wireless LAN Manufacturer:
Actiontec
Ambit
Model:
Model:
Port Replication Manufacturer:
Modem Card Manufacturer:
Intel
LG
Ambit
Model:
Model:
Model:
HDD Manufacturer:
nd
2 HDD Manufacturer:
Battery Manufacturer: (Li-Ion)
Model:
Model:
SD-R2312
SD-R2512
DW-224E-A43
GCC-4241N
GCA-4040N
CPQZ250NB
LKM-FH33-8XX
MHT2030AT (30GB)
MHT2040AH (40GB)
MK4019GAX (40GB)
MK6022GAX (60GB)
DK23FB-60 (60GB)
HTS726060M9AT00
PPB004A
(8 cell, 14.4V, 4.4AHr)
PPB004B
(8 cell, 14.4V, 4.4AHr)
PPB004C
(8 cell, 14.4V, 4.4AHr)
PPB005A
(8 cell, 14.8V, 3.6AHr)
BTM200
J07H069.01
J07H069.02
WM 3B21000
Series PR1000
T60M283
I/O Port of Notebook Computer:
I/O PORT TYPES
Q’TY
1
TESTED WITH
1
1
1
1
1
1.
Parallel Port
2.
Serial Port
3.
Video Out Port (VGA)
4.
S-Video Out Port
5.
Line Port
1
1
6.
LAN Port
1
1
7.
USB Port
2
2
8.
Audio In Port
1
9.
Audio Out Port
1
1
1
1
10. Port Replicator Connect Port
1
1
1
Page 6
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
I/O Port of Port Replicator
I/O PORT TYPES
Q’TY
TESTED WITH
1.
Parallel Port
1
1
2.
Serial Port
1
1
3.
PS/2 Keyboard Port
1
1
4.
PS/2 Mouse Port
1
1
5.
Video Out Port (VGA)
1
1
6.
Video Out Port (DVI)
1
1
7.
Audio Out Port
1
1
8.
Microphone Port
1
1
9.
LAN Port
1
1
10. USB Port
2
2
11. 5.1 CH Audio Out Port
1
1
12. 1394 Port
1
1
13. S-Video Out Port
1
1
14. AV Terminal Port
1
1
15. Port Replicator Connect Port
1
1
Page 7
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
I/O Port of Notebook Computer + Port Replicator
I/O PORT TYPES
Q’TY
TESTED WITH
1.
Parallel Port
1
1
2.
Serial Port
1
1
3.
PS/2 Keyboard Port
1
1
4.
PS/2 Mouse Port
1
1
5.
Video Out Port (VGA)
1
1
6.
Video Out Port (DVI)
1
1
7.
Audio Out Port
2
1
8.
Microphone Port
2
1
9.
LAN Port
1
1
10. USB Port
2
2
11. 5.1 CH Audio Out Port
1
1
12. 1394 Port
1
1
13. S-Video Out Port
1
1
14. AV Terminal Port
1
1
15. Line Port
1
0
Note: Difference of the two model numbers (list on this report) are list as below:
1.
2.
Model Number
SERIES PP2090
PC8800 SERIES
Difference
Marketing number
Inside control number
Page 8
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
4 SUPPORT EQUIPMENT
No.
1.
2.
3.
4.
5.
6.
7.
8.
9.
10.
Data
Cable
Unshielded, 1.8m
AQ19H2RT706137Y
CRT Monitor
959NF
FCC DoC
SAMSUNG
with two cores
Unshielded, 1.8m
LCD Monitor VLCDJ22720-1D
N/A
FDD DoC
ViewSonic
with two cores
DM-1414
Modem
0304012269
IFAXDM1414 ACEEX Unshielded, 1.8m
Printer
STYLUS C60
DR3K041995
FCC DoC
EPSON Unshielded, 1.8
USB 2.0 HDD
F12-U
N/A
FCC DoC
Tersys
Shielded, 1.8m
USB 2.0 HDD
F12-U
N/A
FCC DoC
Tersys
Shielded, 1.8m
PS2/2
KB-0133
N/A
FCC DoC
Compaq Shielded, 1.8m
Keyboard
PS/2 Mouse
M-S69
N/A
FCC DoC
Compaq Shielded, 1.8m
TV
ST-21FPI
N/A
FCC DoC
SANYO Shielded, 1.6m
1394 Cable:
Shielded, 1.6m
DCR-TRV18
DV8
N/A
FCC DoC
SONY
S-Video Cable:
Shielded, 1.6m
Equipment
Model
#
Serial
#
FCC
ID
Trade
Name
Power
Cord
Unshielded, 1.8m
Unshielded, 1.8m
Unshielded, 1.8m
Unshielded, 1.8
N/A
N/A
N/A
N/A
Unshielded, 1.8m
N/A
11
5.1 CH
Amplifier
ROCC05.1
N/A
N/A
J-S
Unshielded, 2.0m
AC I/P:
Unshielded, 1.8m
DC O/P:
Unshielded, 1.8m
12.
Multimedia
Earphone
Axis-301
N/A
N/A
Labtec
Unshielded, 2.2m
N/A
LEO
LAN Cable:
Unshielded, 10m
Line Cable:
Unshielded, 1.0m
AC I/P:
Unshielded, 1.8m
DC O/P:
Unshielded, 1.8m
with a core
13.
Notebook PC
(Remote)
M285
NU2503589
FCC DoC
Note: 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.
Page 9
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
5 MEASUREMENT PROCEDURE
5.1 PRELIMINARY LINE CONDUCTED EMISSION TEST
1) The equipment was set up as per the test configuration to simulate typical actual 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.
2) Support equipment, if needed, was placed as per ANSI C63.4.
3) All I/O cables were positioned to simulate typical actual usage as per ANSI C63.4.
4) The EUT received AC power through a Line Impedance Stabilization Network (LISN) which
supplied power source and was grounded to the ground plane.
5) All support equipment received power from a second LISN supplying power of 110VAC/60Hz,
if any.
6) The EUT test program was started. Emissions were measured on each current carrying line of
the EUT using a spectrum analyzer / 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 Analyzer / 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
Analyzer / Receiver.
7) Analyzer / Receiver scanned from 150kHz to 30MHz for emissions in each of the test modes.
8) During the above scans, the emissions were maximized by cable manipulation.
Page 10
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
9) The following test mode(s) were scanned during the preliminary test:
Mode(s): (Customer defined)
No.
CPU
1.
Banias
LCD Panel
HDD
Vino-Bay Device
RAM
Battery
256MB
PPB004B
Modem
Adapter
Multi-Port
Port
Device
Replicator
Intel
1.3 Ghz
Intel
2.
Banias
1.4 Ghz
3.
Intel
14.1”
Banias
Samsung
1.5 Ghz
LTN141XB-L02
Fujitsu 30GB
MHT2030AT
DVD-ROM
HLDS
Simplo
Ambit
GDR-8082N
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
Intel
4.
Banias
1.6 Ghz
Intel
5.
Banias
1.7 Ghz
6
Choose worst cause from test config 1-5 to decide which CPU would be used for next configuration
14.1” XGA
7.
IDT
N141X7-L06
14.1” XGA
8
AU
Worst from
B141XG08
Fujitsu 30GB
6
14” SXGA+
MHT2030AT
9
DVD-ROM
HLDS
Simplo
256MB
PPB004B
Ambit
GDR-8082N
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
HannStar
HSD141PK13-A
14” SXGA+
10
Samsnung
LTN141P4-L03
11
Choose worst cause from test config 6-10 to decide which LCD Panel would be used for next configuration
Fujitsu 40GB
12
13
MHT2040AH
Toshiba 40GB
Worst from
6
14
15
16
Worst from 11
MK4019GAX
Toshiba 60GB
DVD-ROM
HLDS
GDR-8082N
Simplo
256MB
PPB004B
Ambit
LITEON
Ambit
PA-1650-02C
J07H069.02
MK6022GAX
Hitachi 60GB
DK23FB-60
Choose worst cause from test config 11-15 to decide which HDD would be used for next configuration
Page 11
Rev. 00
N/A
Report Number: B30722205-D
Auguts 5, 2003
17
18
19
20
21
22
23
24
Worst from
6
Worst from 11
25
26
27
28
29
30
31
CD-ROM
HLDS
CRN-8245B
DVD-ROM
Toshiba
SD-2612
CD-ROM
TEAC
CD-224-CC3
Combo
TEAC
DW-224E-A43
Combo
HLDS
GCC-4241N
DVD-RW
HLDS
GCA-4040N
Combo
Toshiba
SD-R2512
Worst from 16
Combo
Toshiba
SD-R2312
FDD
Citizen
BXX10700
FDD
Citizen
BXX10720
FDD
TEAC
FD-05HG-CP01
ZIP
CPQZ250NB
LS-120
LKM-FH33-8XX
2nd Battery
Compaq
PPB005A
2nd HDD
TOSHIBA
256MB
Simplo
PPB004B
Ambit
LITEON
PA-1650-02C
Ambit
J07H069.02
N/A
HTS726060M9AT00
32
Choose worst cause from test config 16-31 to decide which Vino-Bay device would be used for next configuration
33
34
128MB
Worst from
6
Worst from 11
Worst from 16
Worst from 32
35
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
MOTOROLA
Worst from
Worst from 11
Worst from 16
Worst from 32
Worst from
36
38
PPB004A
Ambit
Dyna-Pack
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
PPB004C
39
41
Ambit
Choose worst cause from test config 32-35 to decide which RAM would be used for next configuration
6
40
Simplo
PPB004B
1GB
36
37
512MB
Choose worst cause from test config 36-38 to decide which battery would be used for next configuration
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
Worst from 39
N/A
LITEON
Ambit
PA-1650-02C
J07H069.02
Choose worst cause from test config 39-40 to decide which modem would be used for next configuration
Page 12
Rev. 00
N/A
Report Number: B30722205-D
Auguts 5, 2003
42
HIPRO
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
43
Ambit
LITEON
J07H069.02
N/A
PA-1900-05C1
44
45
Worst from 39 Worst from 41
HP-OK065B13
Choose worst cause from test config 41-43 to decide which power adapter would be used for next configuration
Ambit
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
Worst from 39 Worst from 41 Worst from 44
J07H069.01
N/A
Intel
46
WM 3B21000
47
Choose worst cause from test config 44-46 to decide which multi-port device would be used for next configuration
LG
Series
48
PR1000
LCD+CRT
LG
49
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
Worst from 39 Worst from 41 Worst from 44
Worst from
47
Series
PR1000
LCD+DVI
LG
Series
50
PR1000
LCD+TV
Worst Case: Banian 1.7GHz CPU + 14.1” SXGA+ HannStar HSD141PK13-A LCD Panel + Toshiba 60GB MK6022GAX HDD + Toshiba SD-R2512
51 Combo + 1G RAM + Simplo PPB004B Battery Pack + Ambit Modem + LITEON PA-1650-02C Power Adapter + Ambit J07H069.02 Wireless LAN + LG
Series PR1000 LCD + CRT Port Replicator
10) After the preliminary scan, we found the following test mode producing the highest emission
level.
Mode:
51
Then, the EUT configuration and cable configuration of the above highest emission level were
recorded for reference of final testing.
Page 13
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
5.2 FINAL LINE CONDUCTED EMISSION TEST
1) EUT and support equipment was set up on the test bench as per step 10 of the preliminary test.
2) 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. If EUT emission level was less –2dB to the A.V. limit in Q.P. mode, then the
emission signal was re-checked using an Average detector.
3) The test data of the worst case condition(s) was reported on the Summary Data page.
Data Sample:
Freq.
MHz
Q.P.
Raw
dBuV
Average
Raw
dBuV
Q.P.
Limit
dBuV
Average
Limit
dBuV
Q.P.
Margin
dB
Average
Margin
dB
Note
x.xx
43.95
---
56
46
-12.05
-2.05
L1
Freq.
Raw dBuV
= Emission frequency in MHz
= Uncorrected Analyzer/Receiver reading +
Insertion loss of LISN, if it > 0.5 dB
= Limit stated in standard
= Reading in reference to limit
= Current carrying line of reading
= The emission level complied with the
Average limits, with at least 2dB margin
limits, so no further recheck.
Limit dBuV
Margin dB
Note
“---“
Calculation example:
Margin (dB) = RAW (dBuV) – Limit (dBuV)
LINE CONDUCTED EMISSION LIMIT
Frequency
Maximum RF Line Voltage
Q.P.
AVERAGE
150kHz-500kHz
66-56dBuV
56-46dBuV
500kHz-5MHz
56dBuV
46dBuV
5MHz-30MHz
60dBuV
50dBuV
Note: The lower limit shall apply at the transition frequency.
Page 14
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
5.3 PRELIMINARY RADIATED EMISSION TEST
1) The equipment was set up as per the test configuration to simulate typical actual 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 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.
2) Support equipment, if needed, was placed as per ANSI C63.4.
3) All I/O cables were positioned to simulate typical actual usage as per ANSI C63.4.
4) The EUT received AC power source from the outlet socket under the turntable. All support
equipment received 110VAC/60Hz power from another socket under the turntable, if any.
5) The antenna was placed at 10 meter away from the EUT as stated in ANSI C63.4.
antenna connected to the Analyzer via a cable and at times a pre-amplifier would be used.
The
6) The Analyzer / Receiver quickly scanned from 1GHz to 13GHz. 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.
Page 15
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
7) The following test mode(s) were scanned during the preliminary test:
Mode(s): (Customer defined)
No.
CPU
1.
Banias
LCD Panel
HDD
Vino-Bay Device
RAM
Battery
256MB
PPB004B
Modem
Adapter
Multi-Port
Port
Device
Replicator
Intel
1.3 Ghz
Intel
2.
Banias
1.4 Ghz
3.
Intel
14.1”
Banias
Samsung
1.5 Ghz
LTN141XB-L02
Fujitsu 30GB
MHT2030AT
DVD-ROM
HLDS
Simplo
Ambit
GDR-8082N
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
Intel
4.
Banias
1.6 Ghz
Intel
5.
Banias
1.7 Ghz
6
Choose worst cause from test config 1-5 to decide which CPU would be used for next configuration
14.1” XGA
7.
IDT
N141X7-L06
14.1” XGA
8
AU
Worst from
6
9
B141XG08
Fujitsu 30GB
14” SXGA+
MHT2030AT
DVD-ROM
HLDS
GDR-8082N
Simplo
256MB
PPB004B
Ambit
LITEON
Ambit
PA-1650-02C
J07H069.02
HannStar
HSD141PK13-A
14” SXGA+
10
Samsnung
LTN141P4-L03
11
Choose worst cause from test config 6-10 to decide which LCD Panel would be used for next configuration
Page 16
Rev. 00
N/A
Report Number: B30722205-D
Auguts 5, 2003
Fujitsu 40GB
12
13
MHT2040AH
Toshiba 40GB
Worst from
6
Worst from 11
MK4019GAX
Toshiba 60GB
14
DVD-ROM
HLDS
Simplo
256MB
PPB004B
Ambit
GDR-8082N
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
MK6022GAX
Hitachi 60GB
15
DK23FB-60
16
Choose worst cause from test config 11-15 to decide which HDD would be used for next configuration
CD-ROM
17
HLDS
CRN-8245B
DVD-ROM
18
Toshiba
SD-2612
CD-ROM
19
TEAC
CD-224-CC3
Combo
20
TEAC
DW-224E-A43
Combo
21
HLDS
GCC-4241N
DVD-RW
22
HLDS
GCA-4040N
Combo
23
Toshiba
Worst from
24
6
SD-R2512
Worst from 11
Worst from 16
Combo
Toshiba
Simplo
256MB
PPB004B
Ambit
LITEON
Ambit
PA-1650-02C
J07H069.02
SD-R2312
FDD
25
Citizen
BXX10700
FDD
26
Citizen
BXX10720
FDD
27
TEAC
FD-05HG-CP01
28
29
ZIP
CPQZ250NB
LS-120
LKM-FH33-8XX
2nd Battery
30
Compaq
PPB005A
2nd HDD
31
TOSHIBA
HTS726060M9AT00
32
Choose worst cause from test config 16-31 to decide which Vino-Bay device would be used for next configuration
Page 17
Rev. 00
N/A
Report Number: B30722205-D
Auguts 5, 2003
33
34
128MB
Worst from
6
Worst from 11
Worst from 16
Worst from 32
35
Worst from 11
Ambit
J07H069.02
N/A
Worst from 16
Worst from 32
Worst from
PPB004A
36
Dyna-Pack
Ambit
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
PPB004C
39
Choose worst cause from test config 36-38 to decide which battery would be used for next configuration
Worst from
6
Worst from 11
41
Worst from 16
Worst from 32
Worst from
36
Worst from 39
N/A
LITEON
Ambit
PA-1650-02C
J07H069.02
N/A
Choose worst cause from test config 39-40 to decide which modem would be used for next configuration
HIPRO
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
43
Worst from 39 Worst from 41
HP-OK065B13
Ambit
LITEON
J07H069.02
N/A
PA-1900-05C1
44
45
LITEON
PA-1650-02C
MOTOROLA
Worst from
38
42
Ambit
Choose worst cause from test config 32-35 to decide which RAM would be used for next configuration
6
40
Simplo
PPB004B
1GB
36
37
512MB
Choose worst cause from test config 41-43 to decide which power adapter would be used for next configuration
Ambit
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
Worst from 39 Worst from 41 Worst from 44
J07H069.01
N/A
Intel
46
WM 3B21000
47
Choose worst cause from test config 44-46 to decide which multi-port device would be used for next configuration
LG
Series
48
PR1000
LCD+CRT
LG
49
Worst from
6
Worst from 11
Worst from 16
Worst from 32
Worst from
36
Worst from 39 Worst from 41 Worst from 44
Worst from
47
Series
PR1000
LCD+DVI
LG
Series
50
PR1000
LCD+TV
Worst Case: Banian 1.7GHz CPU + 14.1” SXGA+ HannStar HSD141PK13-A LCD Panel + Toshiba 60GB MK6022GAX HDD + Toshiba SD-R2512
51 Combo + 1G RAM + Simplo PPB004B Battery Pack + Ambit Modem + LITEON PA-1650-02C Power Adapter + Ambit J07H069.02 Wireless LAN + LG
Series PR1000 LCD + CRT Port Replicator
8) After the preliminary scan, we found the following test mode producing the highest emission
level.
Model:
51.
Then, the EUT and cable configuration, antenna position, polarization and turntable position of the
above highest emission level were recorded for reference of final testing.
Page 18
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
5.4 FINAL RADIATED EMISSION TEST
1) EUT and support equipment were set up on the turntable as per step 8 of the preliminary test.
2) The Analyzer / Receiver scanned from 1GHz to 13GHz. 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.
3) 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.
4) The test data of the worst case condition(s) was reported on the Summary Data page.
Data Sample:
======================================================================
Freq.
Raw
Corr.
Emiss.
Limits
Margin
Data
Factor
Level
(MHz)
(dBuV)
(dB/m)
(
dBuV/m
)
(dB)
======================================================================
xx.xx
14.0
11.2
26.2
30
-3.8
======================================================================
Freq.
Raw Data (dBuV)
Corr. Factor (dB/m)
Emiss. Level
Limit dBuV/m
Margin dB
P
Q
A
= Emission frequency in MHz
= Uncorrected Analyzer / Receiver reading
= Antenna factor + Cable loss – Amplifier gain
= Raw reading converted to dBuV/m and CF added
= Limit stated in standard
= Reading in reference to limit
= Peak Reading
= Quasi-peak Reading
= Average Reading
Calculation example:
Margin (dB) = Emiss. Level (dBuV/m) – Limits (dBuV/m)
Emission Level (dBuV/m)=Raw Data (dBuV) + Corr Factor (dB/m)
RADIATED EMISSION LIMIT
Frequency
(MHz)
Distance
(m)
30-230
230-1000
Above 1000
10
10
3
Maximum Field Strength Limit
(dBuV/m)
Q.P.
AVERAGE
PEAK
30
/
/
37
/
/
/
53.9
73.9
Note: The lower limit shall apply at the transition frequency.
Page 19
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
6 SUMMARY
DATA
(LINE CONDUCTED TEST)
Model Number: SERIES PP2090
Location: Site # 3
Tested by: Max Yan
Test Mode: Mode 51
Test Results: Passed
Temperature: 30oC
Humidity: 60%RH
(The chart below shows the highest readings taken from the final data)
FREQ
Q.P.
AVG
Q.P.
AVG
Q.P.
AVG
NOTE
MHz
RAW
dBuV
55.70
60.60
46.40
39.30
40.30
38.20
RAW
dBuV
48.00
45.50
---------
Limit
dBuV
65.70
65.20
63.40
61.50
60.80
56.00
Limit
dBuV
55.70
55.20
53.40
51.50
50.80
46.00
M argin
dB
-10.00
-4.60
-17.00
-22.20
-20.50
-17.80
M argin
dB
-7.70
-9.70
---------
L1
L1
L1
L1
L1
L1
0.150
0.165
0.203
0.256
0.279
2.421
0.155
62.60
52.70
65.70
55.70
-3.10
-3.00
1.941
36.90
--56.00
46.00
-19.10
--2.561
38.30
--56.00
46.00
-17.70
--4.219
37.80
--56.00
46.00
-18.20
--11.531
33.20
--60.00
50.00
-26.80
--17.751
33.80
--60.00
50.00
-26.20
--L1 = Line One (Hot side) / L2 = Line Two (Neutral side)
**NOTE: “---” denotes the emission level was or more than 2dB below the Average limit,
so no re-check anymore.
L2
L2
L2
L2
L2
L2
Page 20
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
SUMMARY
DATA
(RADIATED EMISSION TEST)
Model Number: SERIES PP2090
Location: Site # 1
Tested by: Ethan Huang
Polar: Vertical--10m
Test Mode: Mode 51
Test Results: Passed
Detector Function: Quasi-Peak
Temperature: 32oC
Humidity: 59%RH
(The chart below shows the highest readings taken from the final data)
=================================================================
Freq.
Raw
Corr.
Emiss.
Limits
Margin
Data
Factor
Level
(MHz)
(dBuV)
(dB/m)
(
dBuV/m
)
(dB)
=================================================================
48.27
10.6
12.4
23.0
30.0
-7.0
-------------------------------------------------------------------------------------------------------------53.28
9.2
9.9
19.1
30.0
-10.9
-------------------------------------------------------------------------------------------------------------68.68
10.9
5.6
16.5
30.0
-13.5
-------------------------------------------------------------------------------------------------------------72.88
10.1
6.0
16.1
30.0
-13.9
-------------------------------------------------------------------------------------------------------------112.52
12.1
11.6
23.7
30.0
-6.3
-------------------------------------------------------------------------------------------------------------122.88
13.2
11.8
25.0
30.0
-5.0
-------------------------------------------------------------------------------------------------------------153.59
7.2
10.6
17.8
30.0
-12.2
-------------------------------------------------------------------------------------------------------------162.88
10.8
10.1
20.9
30.0
-9.1
-------------------------------------------------------------------------------------------------------------184.29
10.8
11.4
22.2
30.0
-7.8
-------------------------------------------------------------------------------------------------------------199.78
10.2
10.8
21.0
30.0
-9.0
-------------------------------------------------------------------------------------------------------------215.90
9.4
10.5
19.9
30.0
-10.1
-------------------------------------------------------------------------------------------------------------233.00
7.1
11.3
18.4
37.0
-18.6
-------------------------------------------------------------------------------------------------------------244.10
7.5
12.7
20.2
37.0
-16.8
--------------------------------------------------------------------------------------------------------------
Page 21
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
268.80
7.4
15.5
22.9
37.0
-14.1
-------------------------------------------------------------------------------------------------------------315.00
11.0
16.2
27.2
37.0
-9.8
-------------------------------------------------------------------------------------------------------------352.40
11.2
17.8
29.0
37.0
-8.0
-------------------------------------------------------------------------------------------------------------376.40
6.6
18.9
25.5
37.0
-11.5
-------------------------------------------------------------------------------------------------------------407.40
7.0
19.9
26.9
37.0
-10.1
-------------------------------------------------------------------------------------------------------------430.80
7.4
19.4
26.8
37.0
-10.2
-------------------------------------------------------------------------------------------------------------466.00
7.0
19.7
26.7
37.0
-10.3
-------------------------------------------------------------------------------------------------------------534.60
6.6
22.1
28.7
37.0
-8.3
-------------------------------------------------------------------------------------------------------------591.20
6.7
22.1
28.8
37.0
-8.2
-------------------------------------------------------------------------------------------------------------622.60
6.8
22.8
29.6
37.0
-7.4
-------------------------------------------------------------------------------------------------------------680.00
6.0
23.7
29.7
37.0
-7.3
-------------------------------------------------------------------------------------------------------------763.90
5.1
26.1
31.2
37.0
-5.8
-------------------------------------------------------------------------------------------------------------820.90
5.4
27.6
33.0
37.0
-4.0
-------------------------------------------------------------------------------------------------------------888.40
5.4
27.2
32.6
37.0
-4.4
-------------------------------------------------------------------------------------------------------------927.10
4.8
27.0
31.8
37.0
-5.2
--------------------------------------------------------------------------------------------------------------
Page 22
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
SUMMARY
DATA
(RADIATED EMISSION TEST)
Model Number: SERIES PP2090
Location: Site # 1
Tested by: Ethan Huang
Polar: Horizontal--10m
Test Mode: Mode 51
Test Results: Passed
Detector Function: Quasi-Peak
Temperature: 32oC
Humidity: 59%RH
(The chart below shows the highest readings taken from the final data)
=================================================================
Freq.
Raw
Corr.
Emiss.
Limits
Margin
Data
Factor
Level
(MHz)
(dBuV)
(dB/m)
(
dBuV/m
)
(dB)
=================================================================
72.66
8.0
5.9
13.9
30.0
-16.1
-------------------------------------------------------------------------------------------------------------113.02
8.2
11.7
19.9
30.0
-10.1
-------------------------------------------------------------------------------------------------------------122.86
12.0
11.8
23.8
30.0
-6.2
-------------------------------------------------------------------------------------------------------------153.59
7.0
10.6
17.6
30.0
-12.4
-------------------------------------------------------------------------------------------------------------162.83
7.0
10.1
17.1
30.0
-12.9
-------------------------------------------------------------------------------------------------------------184.58
8.9
11.4
20.3
30.0
-9.7
-------------------------------------------------------------------------------------------------------------199.85
8.4
10.8
19.2
30.0
-10.8
-------------------------------------------------------------------------------------------------------------215.00
9.1
10.5
19.6
30.0
-10.4
-------------------------------------------------------------------------------------------------------------233.50
7.8
11.4
19.2
37.0
-17.8
-------------------------------------------------------------------------------------------------------------243.90
7.0
12.7
19.7
37.0
-17.3
-------------------------------------------------------------------------------------------------------------269.30
7.1
15.6
22.7
37.0
-14.3
--------------------------------------------------------------------------------------------------------------
Page 23
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
290.40
12.7
15.8
28.5
37.0
-8.5
-------------------------------------------------------------------------------------------------------------332.80
9.7
17.0
26.7
37.0
-10.3
-------------------------------------------------------------------------------------------------------------352.20
8.3
17.8
26.1
37.0
-10.9
-------------------------------------------------------------------------------------------------------------384.80
6.7
19.3
26.0
37.0
-11.0
-------------------------------------------------------------------------------------------------------------401.60
7.1
20.0
27.1
37.0
-9.9
-------------------------------------------------------------------------------------------------------------459.60
7.3
19.4
26.7
37.0
-10.3
-------------------------------------------------------------------------------------------------------------532.00
8.0
22.0
30.0
37.0
-7.0
-------------------------------------------------------------------------------------------------------------569.80
5.4
22.3
27.7
37.0
-9.3
-------------------------------------------------------------------------------------------------------------613.20
6.4
22.5
28.9
37.0
-8.1
-------------------------------------------------------------------------------------------------------------661.40
5.9
23.6
29.5
37.0
-7.5
-------------------------------------------------------------------------------------------------------------718.00
5.7
24.5
30.2
37.0
-6.8
-------------------------------------------------------------------------------------------------------------772.60
6.1
26.2
32.3
37.0
-4.7
-------------------------------------------------------------------------------------------------------------833.80
5.4
28.2
33.6
37.0
-3.4
-------------------------------------------------------------------------------------------------------------873.40
5.5
27.9
33.4
37.0
-3.6
-------------------------------------------------------------------------------------------------------------928.30
5.3
27.1
32.4
37.0
-4.6
--------------------------------------------------------------------------------------------------------------
Page 24
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
SUMMARY DATA
(RADIATED EMISSION TEST-ABOVE 1GHz)
Model Number: SERIES PP2090
Location: 3 meter chamber
Tested by: Max Yan
Polar: Vertical ---3 m
Test Mode: Mode 51
Detector Function: Pk / A.V.
Test Results: Passed
Temperature: 32oC
Humidity: 59%RH
(The chart below shows the highest readings taken from the final data)
=================================================================
Freq.
Raw
Corr.
Emiss.
Limits
Margin
Data
Factor
Level (Pk)
(Pk)
(MHz)
(dBuV)
(dB)
(
dBuV/m
)
(dB)
=================================================================
7514.29
36.50
4.62
41.12
73.9
-32.78
-------------------------------------------------------------------------------------------------------------8242.86
34.25
5.37
39.62
73.9
-34.28
-------------------------------------------------------------------------------------------------------------8871.43
35.50
6.30
41.80
73.9
-32.10
-------------------------------------------------------------------------------------------------------------9114.29
37.00
6.37
43.37
73.9
-30.53
-------------------------------------------------------------------------------------------------------------9528.57
37.75
6.36
44.11
73.9
-29.79
-------------------------------------------------------------------------------------------------------------12035.71
37.50
9.87
47.37
73.9
-26.53
-------------------------------------------------------------------------------------------------------------Note:
In case of peak reading complied with the limit at least 22dB margin, no
measurement with A.V. detector required.
Page 25
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
SUMMARY
DATA
(RADIATED EMISSION TEST-ABOVE 1GHz)
Model Number: SERIES PP2090
Location: 3 meter chamber
Tested by: Max Yan
Polar: Horizontal ---3 m
Test Mode: Mode 51
Detector Function: Pk / A.V.
Test Results: Passed
Temperature: 32oC
Humidity: 59%RH
(The chart below shows the highest readings taken from the final data)
=================================================================
Freq.
Raw
Corr.
Emiss.
Limits
Margin
Data
Factor
Level (Pk)
(Pk)
(MHz)
(dBuV)
(dB)
(
dBuV/m
)
(dB)
=================================================================
7507.14
37.00
4.62
41.62
73.9
-32.28
-------------------------------------------------------------------------------------------------------------8235.71
35.25
5.35
40.60
73.9
-33.30
-------------------------------------------------------------------------------------------------------------8878.57
34.75
6.30
41.05
73.9
-33.85
-------------------------------------------------------------------------------------------------------------9564.29
38.50
6.41
44.91
73.9
-28.99
-------------------------------------------------------------------------------------------------------------10600.00
40.75
8.34
49.09
73.9
-24.81
-------------------------------------------------------------------------------------------------------------10992.86
41.25
9.36
50.61
73.9
-23.29
-------------------------------------------------------------------------------------------------------------Note: In case of peak reading complied with the limit at least 22dB margin, no
measurement with A.V. detector required.
Page 26
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
7 TEST FACILITY
Location:
No. 81-1, 210 Lane, Pa-de 2nd Road, Lu-Chu Hsiang, Taoyuan,
Taiwan, R. O. C.
Description:
There are four 3/10m open area test sites and three line conducted
labs for final test. The Open Area Test Sites and the Line Conducted
labs are constructed and calibrated to meet the FCC requirements in
documents ANSI C63.4: 1992 and CISPR 16 requirements.
Site Filing:
A site description is on file with the Federal Communications
Commission, 7435 Oakland Mills Road, Columbia, MD 21046.
Registration also was made with Voluntary Control Council for
Interference (VCCI).
Site Accreditation:
Accredited by NEMKO (Authorization #: ELA 124) for EMC &
A2LA (Certificate #: 824.01) for Emission
Accredited by NVLAP (Certificate #: 200600-0)
Also accredited by BSMI for the product category of Information
Technology Equipment.
Instrument Tolerance:
All measuring equipment is in accord with ANSI C63.4 and CISPR
22 requirements that meet industry regulatory agency and
accreditation agency requirement.
Ground Plane:
Two conductive reference ground planes were used during the Line Conducted
Emission, one in vertical and the other in horizontal. The dimensions of these ground planes are
as below. The vertical ground plane was placed distancing 40 cm to the rear of the wooden test
table on where the EUT and the support equipment were placed during test. The horizontal
ground plane projected 50 cm beyond the footprint of the EUT system and distanced 80 cm to the
wooden test table. For Radiated Emission Test, one horizontal conductive ground plane extended
at least 1m beyond the periphery of the EUT and the largest measuring antenna, and covered the
entire area between the EUT and the antenna. It has no holes or gaps having longitudinal
dimensions larger than one-tenth of a wavelength at the highest frequency of measurement up to
1GHz.
Site # 3 & # 4 Line Conducted Test Site: At Shielding Room
Page 27
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
8 TEST EQUIPMENT LIST
Instrumentation: The following list contains equipment used at C & C Laboratory, Co., Ltd. for
testing. The equipment conforms to the CISPR 16-1 / ANSI C63.2-1988 Specifications for
Electromagnetic Interference and Field Strength Instrumentation from 9kHz to 1.0 GHz or above.
Equipment used during the tests:
Open Area Test Site:
#1
Open Area Test Site # 1
EQUIPMENT
TYPE
Spectrum Analyzer
S.P.A Display
Q.P Adaptor
RF Pre-selector
Spectrum Analyzer
Pre-Amplifier
Bilog Antenna
Turn Table
Antenna Tower
Controller
RF Switch
Site NSA
EQUIPMENT
TYPE
Spectrum Analyzer
Pre-Amplifier
Coaxial Cable
Turn Table
Antenna Tower
Controller
MODEL
NUMBER
8568B
85662A
85650A
85685A
R3261A
CPA9231
CBL6112A
2081-1.21
2075-2
2090
MP59B
N/A
MFR
HP
HP
HP
HP
ADVANTEST
CHASE
CHASE
EMCO
EMCO
EMCO
ANRITSU
C&C
MFR
ADVANTEST
HP
ANOREW
HD
HD
HD
Conducted Emission Test Site:
SERIAL
NUMBER
2415A00314
2403A06937
2043A00373
3010A01113
21720279
3103
2309
N/A
9707-2604
N/A
M54367
N/A
LAST
CAL.
07/01/2003
07/01/2003
07/01/2003
07/02/2003
08/23/2002
N/A
02/28/2003
N.C.R
N.C.R
N.C.R
N.C.R
08/31/2002
CAL.
DUE
06/30/2004
06/30/2004
06/30/2004
07/01/2004
08/22/2003
N/A
02/27/2004
N.C.R
N.C.R
N.C.R
N.C.R
08/30/2003
3 meter chamber
MODEL
SERIAL
NUMBER
NUMBER
R3271A
85060321
8449B
3008A00965
LDF-2-50
79027
HD320
N/A
MA 240
N/A
HD 100
N/A
LAST
CAL.
10/16/2002
10/15/2002
10/14/2002
N.C.R
N.C.R
N.C.R
CAL.
DUE
10/15/2003
10/14/2003
10/13/2003
N.C.R
N.C.R
N.C.R
LAST
CAL.
12/21/2002
12/16/2002
07/28/2003
CAL.
DUE
12/20/2003
12/15/2003
07/27/2004
#3
Conducted Emission Test Site # 3
EQUIPMENT
TYPE
EMI Test Receiver
LISN
LISN
MFR
R&S
R&S
EMCO
MODEL
NUMBER
ESCS30
ESH2-Z5
3825/2
SERIAL
NUMBER
847793/012
843285/010
9003-1628
The calibrations of the measuring instruments, including any accessories that may effect such
calibration, are checked frequently to assure their accuracy. Adjustments are made and correction
factors applied in accordance with instructions contained in the manual for the measuring
Page 28
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
instrument.
Page 29
Rev. 00
Report Number: B30722205-D
Auguts 5, 2003
9 BLOCK DIAGRAM OF TEST SETUP
SYSTEM DIAGRAM OF CONNECTIONS BETWEEN EUT AND SIMULATORS
EUT: Notebook Computer
Trade Name: HP; INVENTEC
Model Number: SERIES PP2090
Power Cord: Unshielded, 1.8m to Power Adapter
Notebook Computer
(EUT)
1. CRT
Monitor
Port Replicator
(EUT)
3. Modem
4. Printer
2. LCD
Monitor
1394 Cable
S-Video Cable
5. USB 2.0
HDD
8. PS/2
Mouse
10. DV8
6. USB 2.0
HDD
11. 5.1 CH
Amplifier
AV Cable
7. PS/2
Keyboard
9. TV
12. Multimedia
Earphone
(Remote)
13. Notebook PC
LAN Cable
Page 30
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10 APPENDIX 1
PHOTOGRAPHS
(TEST SETUP OF LINE CONDUCTED EMISSION TEST)
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LINE CONDUCTED EMISSION TEST
Front View
Back View
Page 32
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11 APPENDIX 2
PHOTOGRAPHS
(TEST SETUP OF RADIATED EMISSION TEST)
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RADIATED EMISSION TEST
Front View
Back View
Page 34
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12 APPENDIX 3
PHOTOGRAPHS OF EUT
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Front View of EUT
Back View of EUT
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Left View of EUT
Right View of EUT
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Open View of EUT
Bottom View of EUT
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Front View of EUT with Port Replicator
Back View of EUT with Port Replicator
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Left View of EUT with Port Replicator
Right View of EUT with Port Replicator
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Front View of Port Replicator
Back View of Port Replicator
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Left View of Port Replicator
Right View of Port Replicator
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Front View of Power Adapter (LITEON / PA-1650-02C)
Back View of Power Adapter (LITEON / PA-1650-02C)
Page 43
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Front View of Power Adapter (HIPRO / HP-OK065B13)
Back View of Power Adapter (HIPRO / HP-OK065B13)
Page 44
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Front View of Power Adapter (LITEON / PA-1900-05C1)
Back View of Power Adapter (LITEON / PA-1900-05C1)
Page 45
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13 APPENDIX 4
LABELING REQUIREMENTS
Page 46
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Auguts 5, 2003
§ 15.19
Labeling requirements.
(a) In addition to the requirements in part 2of this chapter, a device subject to certification, or
verification, or verification shall be labeled as follows:
(1) Receivers associated with the operation of a licensed radio service, e.g., FM broadcast under
part 73 of this chapter, land mobile operation under part 90,etc., shall bear the following
statement in a conspicuous location on the device:
This device complies with part 15 of the FCC Rules. Operation is subject to the condition
that this device does not cause harmful interference.
(2) A stand-alone cable input selector switch, shall bear the following statement in a
conspicuous location on the device:
This device is verified to comply with the part15of the FCC Rules for use with cable
television service.
(3) All other devices shall bear the following statement in a conspicuous location on the device:
This device complies with part 15 of the FCC Rules. Operation is subject to the following
two conditions:(1) This device may not cause harmful interference, and (2) this device must
accept any interference received including interference that may cause undesired operation.
(4) Where a device is constructed in two or more sections connected by wires and marketed
together, the statement specified under paragraph (a) of this section is required to be affixed
only to the main control unit.
(5) When the device is so small or for such use that it is not practicable to place the statement
specified under paragraph (a) of this section on it , the information required by this
paragraph shall be placed in a prominent location in the instruction manual or pamphlet
supplied to the user or, alternatively, shall be placed on the container in which the device is
marketed. However, the FCC identifier or the unique identifier, as appropriate, must be
displayed on the device.
(b) Products subject to authorization under a Declaration of Conformity shall be labeled as
follows:
(1) The label shall be located in a conspicuous location on the device and shall contain the
unique identification described in § 2.1074of this chapter and the following logo:
(i) If the product is authorized based on testing of the product or system; or
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(ii) If a personal computer is authorized based on assembly using separately authorized
components, in accordance with § 15.101(c) (2)or (c)(3),and the resulting product is not
separately tested:
(2) Label text information should be in a size of type large enough to be readily legible,
consistent with the dimensions of the equipment and the label. However, the type size for
the text is not required to be larger than eight points.
(3) When the device is so small or for such use that it is not practicable to place the statement
specified under paragraph (b)(1) of this section on it, such as for a CPU board or a plug-in
circuit board peripheral device, the text associated with the logo may be placed in a
prominent location in the instruction manual or pamphlet supplied to the user. However, the
unique identification (trade name and model number) and the logo must be displayed on the
device.
(4) The label shall not be a stick-on , paper label. The label on these products shall be
permanently affixed to the product and shall be readily visible to the purchaser at the time of
purchase, as, described in § 2.925(d)of this chapter. ”Permanently affixed” means that the
label is etched, engraved, stamped, silk screen, indelibly printed, or otherwise permanently
marked on a permanently attached part of the equipment or on a nameplate of metal, plastic,
or other material fastened to the equipment by welding, riveting, or a permanent adhesive.
The label must be designed to last the expected lifetime of the equipment in the environment
in which the equipment may be operated and must not be readily detachable.
Page 48
Rev. 00

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