
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
β chapter 1 getting to know the basics 1-1 CHAPTERβΌ ONE GETTING TO KNOW THE BASICS This chapter introduces the features and components of the computer. β chapter 1 getting to know the basics 1-2 Performance Features Β High Performance Processor The notebook PC is equipped with a powerful Mobile Intel Pentium M processor of the latest sub-micron process, processor technologies, and high bus bandwidths. Β Advanced Graphic Engine An Intel Integrated Extreme Graphic 2 video processor gives excellent graphic performance. The advanced graphic chip also incorporates a hardware-based motion-compensation engine, which gives you smooth MPEG video playback. 3D graphics capability also adds realism to PC games. Β LCD Display The computer is equipped either with a 12.1-inch TFT in standard format (4:3 aspect ratio) or 12.1-inch TFT in Wide format (16:10 aspect ratio) high-resolution display panel for clear text and brilliant colors. Β Expandability The system offers upgradeable hard disk drive and 2 DDR SDRAM sockets for expansion, allowing the user to easily increase the storage and system capacities as the need arises. Β Built-in Multiple Card Reader There is built-in 4-in-1 card reader to access many of the portable media formats (SD Card, MS Card, MMC Card, and MS-Pro Card). (Note: In some models, Card Reader may not be available.) Β Ethernet Port β chapter 1 getting to know the basics 1-3 The system provides built-in Ethernet network adapter for high bandwidth network connection. Β Firewire (IEEE1394 / 1394a) and USB2.0 ports In addition to a full array of built-in I/O por ts, the computer offers IEEE1394 for ultra high-speed connection to high bandwidth digital video devices and USB2.0 ports to connect to any USB-based peripheral devices. (Note: In some models, IEEE1394 Port may not be available.) Β Wireless LAN (Optional) The optional internal Wireless LAN module allows your notebook to connect wirelessly to other 802.11-enabled systems, devices, or network. Β Integrated USB Devices (Optional) The optional USB interface gives you added function to the notebook. β chapter 1 getting to know the basics 1-4 System At A Glance Front View 1 11 9 8 7 6 5 4 2 1 2 13 14 15 16 17 1 10 3 β chapter 1 getting to know the basics 1-5 Note: Your computer may come with the 12.1β display in the wide 16:10 aspect ratio or in the standard 4:3 aspect ratio. If your computer comes with the wide 12.1β display, there is an extra pair of built-in loudspeakers located below the display panel. 1. LCD Latch The LCD latches lock / unlock the LCD panel. 2. Built-in Microphone The built-in microphone records sound. 3. LCD Display The panel is where the system content is displayed. 4. Power / Suspend Button The power/suspend button turns the notebook on and off and it also acts as a system suspend key. Press momentarily to turn on the system. Press and hold for at least 3~4 seconds to turn off the system. How this key behaves can be defined in [Start > Settings > Control Panel > Power Options > Advanced] menu. Press the power / suspend button again to return from the suspend mode. (See Chapter 3 for more details on system suspend function.) 5. Power Cinema Launch Key / Silent Mode Button This is a dual function key. Power Cinema Launch (When system is off) β The key allows you to watch DVD movies in the optical drive without having to boot to Windows. Additionally, Power Cinema application allows you to view photos and play music files in the optical drive as well as in the hard β chapter 1 getting to know the basics 1-6 disk drive. Please see Appendix C to learn how to use Power Cinema. Silent Mode Button (When system has already booted to Windows) β Pressing the key enables the system to lower its power usage, therefore turning off the fan to achieve lowest operating noise. Note: The way the Power Cinema works is that when the key is pressed, the system boots to a Linux-based O/S and movie-player application in a separate hard drive partition. In case you have a brand new HDD or when you need to re-install O/S and Power Cinema, please go to Appendix C for installation instructions. 6. LED Status Indicator The LED Status indicators reveal the status of these functions: Numeric keypad, cap lock, scroll lock, WLAN module enabling and disabling and also the ODD, HDD activities. (See the LED Status Indicator Section for details.) 7. Keyboard The keyboard is used to enter data. It has an embedded numeric keypad and cursor control keys. (See Keyboard Section for details.) 8. Suspend Status LED Flashing green light indicates the notebook is in suspend mode. (See the LED Status Indicator Section for details.) 9. Battery Status LED The multi-color LED indicates the battery status of the notebook. (See the LED Status Indicator Section for details.) β chapter 1 getting to know the basics 1-7 10. Built-in Stereo Speakers The built-in speakers output the sound in stereo. 11. Touch Pad The touch pad is a built-in pointing device with functions similar to a mouse. 12. USB2.0 Port The Universal Serial Bus (USB2.0-compliant) port allows you to connect a wide variety of devices to your computer at a rate of up to 480 Mbps. This port conforms to the latest USB2.0 plug-and-play standards. 13. 4-in-1 Card Reader The 4-in-1 Card Reader supports SD Card, MS Card, MMC Card, and MS-Pro Card. Note: In some models, the Card Reader may not be available. 14. USB Device (Optional) You may install the optional USB interface into this slot. 15. Optical Drive and Disk Eject Button and Manual Eject Key Hole If your computer comes with the Combo drive, DVD-RW, DVD+RW, or DVD-Dual drive, you may save data onto a CD-R / CD-RW or DVD RW disc. Press the eject button to eject the disk tray. The manual eject keyhole allows you to manually eject a jammed disk. 16. External VGA Port The 15-pin VGA analog port is for connecting the external CRT β chapter 1 getting to know the basics 1-8 monitor or projector. 17. Built-in Stereo Speakers If your system comes with the β¦
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American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 July 15, 2004 RE: Uniwill Computer Corp. FCC ID: SAZ-2200BG223 After a review of the submitted information, I have a few comments on the above referenced Application. Administrative Issues: 1) The block diagram for the TX must include oscillator frequencies. Please update. 2) Pages 14, 107, and 56-58 of the users manual mentions that the user may install an optional Wireless Ethernet. This is not allowed. Installation of the WLAN device may not be allowed except by the applicant or their OEM integrators. Please adjust the users manual appropriately. 3) FYI...Declaration of Conformity information in the manual is lacking information. All the following information should be placed on a single page in the users manual for the end user. COMPLIANCE INFORMATION FOR DoC AUTHORIZATIONS (47CFR 2.1077) If a product is tested and authorized under a Declaration of Conformity, a compliance information statement shall be supplied with the product at the time of marketing or importation, containing the following information on a single page (as a separate sheet or in the users manual): (1) Identification of the product, i.e. name and model number. (2) A statement similar to that contained in Section 15.19(a)(3) that the product complies with Part 15 of the regulations. (3) The identification, by name, address and telephone number, of the responsible party. The responsible party is defined as either the manufacturer, or if the equipment is imported, the importer. The responsible party for a Declaration of Conformity must be located within the United States. 4) The users manual does not appear to contain information regarding RF exposure. Please correct. Technical Issues: 5) It is uncertain whether a modular approval is being requested or not. However please note that the current application does not appear to sufficiently justify a modular approval and modular approvals are not typically allowed on a portable device. Please note that labeling appears to be for approval of the entire laptop, not a modular TX and the test configuration photographs also only appear to support approval of a laptop device, not TX module. Please remove the request for Modular Approval or call to discuss further. Note that the proposed grant notes are written such that a Permissive change may be performed using a different laptop configuration as long as the same TX card is used. See proposed grant notes below. --- Continued on Next Page --- z Page 2 July 15, 2004 6) Page 13, page 107, and appendix C of the users manual mentions an optional Bluetooth device. Note that this application does not contain information regarding co-location and it appears that the SAR has not been tested for co-location conditions. Therefore co-location will not be allowed. Optionally, information to support co-location may be provided. Note co-location is defined as occurring when the antenna of the Bluetooth module is < 20 dm from the WLAN modules. This may be the case for both antennas, or possibly only one. If co-location is to be included, please provide additional SAR and EMC simultaneous TX results for this condition, and also photographs to show the distance between the Bluetooth and WLAN antennas. 7) The required SAR value on page 24 (13.8) does not appear to agree with the dipole calibration information. Please explain where the value for Required SAR on page 24 was obtained. 8) The probe calibration information on the plots (4.6, 4.6, 4.6) does not appear to agree with calibration information. 9) It appears that the probe may have been out of calibration during the test. Please explain. 10) The information for the probe on page 6 appears to match the calibration certificate, but appears out of calibration. In addition, the calibration information used on the test plots is not the same as page 6 and the calibration certificate. Note that all information should be in calibration, and all information should match. 11) FYI.....Proposed Grant Notes: Output power is Conducted. The Mini-PCI Card is to be installed in the specific notebook computer(s) shown in this filing only by the grantee or their designated OEM integrator β user installation is prohibited. Installation of this device into other host products requires the submission of a Class II permissive change application containing data demonstrating compliance for SAR, spurious emissions, or new application if appropriate. Compliance of this device in all final host configurations is the responsibility of the Grantee. The antenna(s) used for this transmitter must not be co-located or operate in conjunction with any other antenna or transmitter. The SAR data in this filing is applicable to demonstrate compliance for the final host product(s) only as shown in this filing. End-users must be provided with operating instructions for satisfying RF exposure compliance requirements. The highest SAR values reported are: Body; XXX W/kg. Timothy R. Johnson Examining Engineer mailto: [email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.
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FCC ID: SAZ-2200BG223 Report No.RF930610L04 Operational Description This device is a Notebook PC (with Wireless LAN mini-PCI Card ), which operates in the 2.4GHz frequency spectrum with throughput of up to 54Mbps which OFDM technique will be applied. If the signal to noise radio is too poor which could not support 54Mbps, the 11Mbps data rate with CCK technique will be applied. The transmitter of the EUT is powered by AC Adapter. Both antennas are PIFA antenna with UFL antenna connector. The other instruction, please have a look at the users manual.
FCC ID: SAZ-2200BG223 Report No.: SA930610L041Issued: June 28, 2004 SAR TEST REPORT REPORT NO.: SA930610L04 MODEL NO.: 223II0(with wireless card:Intel WM3B2200BG ) RECEIVED: June 10, 2004 TESTED: June 24, 2004 APPLICANT: UNIWILL COMPUTER CORP. ADDRESS: 5F, No.9,Wu Chiuan Rd, Wu Gu Ind.Park, Taipei, Taiwan, R. O. C. ISSUED BY: Advance Data Technology Corporation LAB LOCATION: No. 19, Hwa Ya 2nd rd., Kueishan, Taoyuan, Taiwan, R.O.C. This test report consists of 33 pages in total except Appendix. It may be duplicated completely for legal use with the approval of the applicant. It should not be reproduced except in full, without the written approval of our laboratory. The client should not use it to claim product endorsement by CNLA or any government agencies. The test results in the report only apply to the tested sample. 0528 ILAC MRA FCC ID: SAZ-2200BG223 Report No.: SA930610L042Issued: June 28, 2004 Table of Contents 1.CERTIFICATION .........................................................................................................3 2.GENERAL INFORMATION..........................................................................................4 2.1 GENERAL DESCRIPTION OF EUT............................................................................4 2.2 GENERAL DESCRIPTION OF APPLIED STANDARDS .............................................5 2.3 GENERAL INOFRMATION OF THE SAR SYSTEM ...................................................5 2.4 GENERAL DESCRIPTION OF THE SPATIAL PEAK SAR EVALUATION .................9 3.DESCRIPTION OF TEST MODES AND CONFIGURATIONS ..................................13 4.DESCRIPTION OF SUPPORT UNITS ......................................................................14 5.TEST RESULTS ........................................................................................................15 5.1 TEST PROCEDURES ...............................................................................................15 5.2 MEASURED SAR RESULT .......................................................................................16 5.3 SAR LIMITS...............................................................................................................18 5.4 RECIPES FOR TISSUE SIMULATING LIQUIDS ......................................................20 5.5 TEST EQUIPMENT FOR TISSUE PROPERTY ........................................................22 6.SYSTEM VALIDATION ..............................................................................................23 6.1 TEST EQUIPMENT ...................................................................................................23 6.2 TEST PROCEDURE .................................................................................................23 6.3 VALIDATION RESULT...............................................................................................25 6.4 SYSTEM VALIDATION UNCERTAINTIES ................................................................26 7.MEASUREMENT SAR PROCEDURE UNCERTAINTIES.........................................27 7.1 PROBE CALIBRATION UNCERTAINTY ...................................................................27 7.2 ISOTROPY UNCERTAINTY......................................................................................27 7.3 BOUNDARY EFFECT UNCERTAINTY .....................................................................28 7.4 PROBE LINEARITY UNCERTAINTY ........................................................................28 7.5 READOUT ELECTRONICS UNCERTAINTY ............................................................28 7.6 RESPONSE TIME UNCERTAINTY...........................................................................29 7.7 INTEGRATION TIME UNCERTAINTY ......................................................................30 7.8 PROBE POSITIONER MECHANICAL TOLERANCE................................................30 7.9 PROBE POSITIONING .............................................................................................31 7.10 PHANTOM UNCERTAINTY ......................................................................................31 7.11 DASY4 UNCERTAINTY BUDGET.............................................................................32 8.INFORMATION ON THE TESTING LABORATORIES ..............................................33 APPENDIX A: TEST CONFIGURATIONS AND TEST DATA APPENDIX B: ADT SAR MEASUREMENT SYSTEM APPENDIX C: PHOTOGRAPHS OF SYSTEM VALIDATION APPENDIX D: SYSTEM CERTIFICATE & CALIBRATION FCC ID: SAZ-2200BG223 Report No.: SA930610L043Issued: June 28, 2004 1. CERTIFICATION PRODUCT : Notebook PC (with Wireless LAN mini-PCI Card ) MODEL NO. : 223II0(with wireless card:Intel WM3B2200BG ) BRAND NAME : Uniwill TESTED : June 24, 2004 APPLICANT : UNIWILL COMPUTER CORP. TEST ITEM : ENGINEERING SAMPLE STANDARDS : FCC Part 2 (Section 2.1093), FCC OET Bulletin 65, Supplement C (01-01), RSS-102 The above equipment has been tested by Advance Data Technology Corporation, and found compliance with the requirement of the above standards. The test record, data evaluation & Equipment Under Test (EUT) configurations represented herein are true and accurate accounts of the measurements of the sampleβs EMC characteristics under the conditions specified in this report. PREPARED BY:, DATE:June 28, 2004 APPROVED BY: Stacy Hsueh , DATE:June 28, 2004 Cody Chang / Supervisor FCC ID: SAZ-2200BG223 Report No.: SA930610L044Issued: June 28, 2004 2. GENERAL INFORMATION 2.1 GENERAL DESCRIPTION OF EUT PRODUCT Notebook PC (with Wireless LAN mini-PCI Card ) MODEL NO. 223II0(with wireless card:Intel WM3B2200BG ) POWER SUPPLY 20Vdc powered by host equipment CLASSIFICATION Portable device, production unit MODULATION TYPE BPSK, QPSK, CCK, 16QAM, 64QAM RADIO TECHNOLOGY DSSS, OFDM TRANSFER RATE 802.11b: 11/5.5/2/1Mbps 802.11g: 54/48/36/24/18/12/9/6Mbps FREQUENCY RANGE 2412MHz ~ 2462MHz NUMBER OF CHANNEL 11 MAXIMUN CONDUCTED OUTPUT POWER (FOR CCK) 16.00dBm MAXIMUN CONDUCTED OUTPUT POWER (FOR β¦
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APPENDIX A: TEST CONFIGURATIONS AND TEST DATA A1: TEST CONFIGURATION Mode 1 Main Antenna The bottom of the EUT to the flat phantom distance 9 mm Mode 2 Main Antenna The tip of the EUT to the flat phantom distance 0mm Mode 3 Auxiliary Antenna The bottom of the EUT to the flat phantom distance 3 mm Mode 4 Auxiliary Antenna The tip of the EUT to the flat phantom distance 0 mm Mode 5 Main Antenna The bottom of the EUT to the flat phantom distance 9 mm Mode 6 Main Antenna The tip of the EUT to the flat phantom distance 0 mm Mode 7 Auxiliary Antenna The bottom of the EUT to the flat phantom distance 3 mm Mode 8 Auxiliary Antenna The tip of the EUT to the flat phantom distance 0 mm EUT Photo Liquid Level Photo 2450MHz D=155mm Date/Time: 07/13/04 22:31:36 Test Laboratory: Advance Data Technology 223II0 Main Antenna Bottom 11b Mode 1 Ch 1 DUT: Notebook PC ; Type: 223110 ; Test Channel Frequency: 2412 MHz Communication System: 802.11b ; Frequency: 2412 MHz; Duty Cycle: 1:1; Modulation type: CCK Medium: MSL2450 (Ο = 1.9717 mho/m, Ξ΅ r = 50.7249, Ο = 1000 kg/m 3 ) ; Liquid level : 155mm Phantom section: Flat Section ; Separation distance : 9 mm (The bottom side of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 1/Area Scan (7x5x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 0.657 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.00175 mW/g Channel 1/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00188 W/kg SAR(1 g) = 0.00103 mW/g; SAR(10 g) = 0.000811 mW/g Reference Value = 0.657 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.00182 mW/g Date/Time: 07/13/04 22:52:16 Test Laboratory: Advance Data Technology 223II0 Main Antenna Bottom 11b Mode 1 Ch 6 DUT: Notebook PC ; Type: 223110 ; Test Channel Frequency: 2437 MHz Communication System: 802.11b ; Frequency: 2437 MHz; Duty Cycle: 1:1; Modulation type: CCK Medium: MSL2450 (Ο = 2.0037 mho/m, Ξ΅ r = 50.6717, Ο = 1000 kg/m 3 ) ; Liquid level : 155mm Phantom section: Flat Section ; Separation distance : 9 mm (The bottom side of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 6/Area Scan (7x5x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 0.704 V/m Power Drift = -0.2 dB Maximum value of SAR = 0.00183 mW/g Channel 6/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00205 W/kg SAR(1 g) = 0.00139 mW/g; SAR(10 g) = 0.00101 mW/g Reference Value = 0.704 V/m Power Drift = -0.2 dB Maximum value of SAR = 0.00198 mW/g Date/Time: 07/13/04 23:12:10 Test Laboratory: Advance Data Technology 223II0 Main Antenna Bottom 11b Mode 1 Ch 11 DUT: Notebook PC ; Type: 223110 ; Test Channel Frequency: 2462 MHz Communication System: 802.11b ; Frequency: 2462 MHz; Duty Cycle: 1:1; Modulation type: CCK Medium: MSL2450 (Ο = 2.0308 mho/m, Ξ΅ r = 50.6184, Ο = 1000 kg/m 3 ) ; Liquid level : 155mm Phantom section: Flat Section ; Separation distance : 9 mm (The bottom side of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 11/Area Scan (7x5x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 0.692 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.0017 mW/g Channel 11/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00225 W/kg SAR(1 g) = 0.00151 mW/g; SAR(10 g) = 0.00116 mW/g Reference Value = 0.692 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.00221 mW/g Date/Time: 07/14/04 00:26:40 Test Laboratory: Advance Data Technology 223II0 Main Antenna Tip 11b Mode 2 Ch 1 DUT: Note Book PC ; Type: 223110 ; Test Channel Frequency: 2412 MHz Communication System: 802.11b ; Frequency: 2412 MHz; Duty Cycle: 1:1; Modulation type: CCK Medium: MSL2450 (Ο = 1.9717 mho/m, Ξ΅ r = 50.7249, Ο = 1000 kg/m 3 ) ; Liquid level : 155 mm Phantom section: Flat Section ; Separation distance : 0 mm (The tip of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 1/Area Scan (5x9x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 3.71 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.0252 mW/g Channel 1/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.0315 W/kg SAR(1 g) = 0.0106 mW/g; SAR(10 g) = 0.00365 mW/g Reference Value = 3.71 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.0301 mW/g Date/Time: 07/14/04 00:47:36 Test Laboratory: Advance Data Technology 223II0 Main Antenna Tip 11b Mode 2 Ch 6 DUT: Note Book PC ; Type: 223110 ; Test Channelβ¦
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Date/Time: 07/13/04 23:31:40 Test Laboratory: Advance Data Technology 223II0 Main Antenna Bottom 11g Mode 5 Ch 6 DUT: Notebook PC ; Type: 223110 ; Test Channel Frequency: 2437 MHz Communication System: 802.11g ; Frequency: 2437 MHz; Duty Cycle: 1:1; Modulation type: OFDM Medium: MSL2450 (Ο = 2.0037 mho/m, Ξ΅ r = 50.6717, Ο = 1000 kg/m 3 ) ; Liquid level : 155mm Phantom section: Flat Section ; Separation distance : 9 mm (The bottom side of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 6/Area Scan (7x5x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 0.786 V/m Power Drift = -0.2 dB Maximum value of SAR = 0.00172 mW/g Channel 6/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.0111 W/kg SAR(1 g) = 0.000946 mW/g; SAR(10 g) = 0.000822 mW/g Reference Value = 0.786 V/m Power Drift = -0.2 dB Maximum value of SAR = 0.00917 mW/g Date/Time: 07/13/04 23:57:54 Test Laboratory: Advance Data Technology 223II0 Main Antenna Bottom 11g Mode 5 Ch 11 DUT: Notebook PC ; Type: 223110 ; Test Channel Frequency: 2462 MHz Communication System: 802.11g ; Frequency: 2462 MHz; Duty Cycle: 1:1; Modulation type: OFDM Medium: MSL2450 (Ο = 2.0308 mho/m, Ξ΅ r = 50.6184, Ο = 1000 kg/m 3 ) ; Liquid level : 155mm Phantom section: Flat Section ; Separation distance : 9 mm (The bottom side of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 11/Area Scan (7x5x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 0.688 V/m Power Drift = 0.1 dB Maximum value of SAR = 0.00141 mW/g Channel 11/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00146 W/kg SAR(1 g) = 0.00891 mW/g; SAR(10 g) = 0.000755 mW/g Reference Value = 0.688 V/m Power Drift = 0.1 dB Maximum value of SAR = 0.0014 mW/g Date/Time: 07/14/04 01:31:20 Test Laboratory: Advance Data Technology 223II0 Main Antenna Tip 11g Mode 6 Ch 1 DUT: Note Book PC ; Type: 223110 ; Test Channel Frequency: 2412 MHz Communication System: 802.11g ; Frequency: 2412 MHz; Duty Cycle: 1:1; Modulation type: OFDM Medium: MSL2450 (Ο = 1.9717 mho/m, Ξ΅ r = 50.7249, Ο = 1000 kg/m 3 ) ; Liquid level : 155 mm Phantom section: Flat Section ; Separation distance : 0 mm (The tip of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 1/Area Scan (5x9x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 1.31 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.00366 mW/g Channel 1/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00777 W/kg SAR(1 g) = 0.00243 mW/g; SAR(10 g) = 0.00122 mW/g Reference Value = 1.31 V/m Power Drift = 0.2 dB Maximum value of SAR = 0.00746 mW/g Date/Time: 07/14/04 01:53:12 Test Laboratory: Advance Data Technology 223II0 Main Antenna Tip 11g Mode 6 Ch 6 DUT: Note Book PC ; Type: 223110 ; Test Channel Frequency: 2437 MHz Communication System: 802.11g ; Frequency: 2437 MHz; Duty Cycle: 1:1; Modulation type: OFDM Medium: MSL2450 (Ο = 2.0037 mho/m, Ξ΅ r = 50.6717, Ο = 1000 kg/m 3 ) ; Liquid level : 155 mm Phantom section: Flat Section ; Separation distance : 0 mm (The tip of the EUT to the Phantom) Antenna type : Internal Antenna ; Air temp. : 22.0 degrees ; Liquid temp. : 21.0 degrees DASY4 Configuration: - Probe: ET3DV6 - SN1687; ConvF(4.6, 4.6, 4.6); Calibrated: 2003/11/24 - Sensor-Surface: 4mm (Mechanical Surface Detection) - Electronics: DAE3 Sn579; Calibrated: 2003/8/15 - Phantom: SAM 12; Type: SAM V4.0; Serial: TP 1202 - Measurement SW: DASY4, V4.1 Build 47; Postprocessing SW: SEMCAD, V1.6 Build 115 Channel 6/Area Scan (5x9x1): Measurement grid: dx=15mm, dy=15mm Reference Value = 1.76 V/m Power Drift = -0.1 dB Maximum value of SAR = 0.00534 mW/g Channel 6/Zoon Scan (7x7x7)/Cube 0: Measurement grid: dx=5mm, dy=5mm, dz=5mm Peak SAR (extrapolated) = 0.00685 W/kg SAR(1 g) = 0.0025 mW/g; SAR(10 g) = 0.00118 mW/g Reference Value = 1.76 V/m Power Drift = -0.1 dB Maximum value of SAR = 0.00662 mW/g Date/Time: 07/14/04 02:13:10 Test Laboratory: Advance Data Technology 223II0 Main Antenna Tip 11g Mode 6 Ch 11 DUT: Note Book PC ; Type: 223110 ; Test Channel Frequency: 2462 MHz Communication System: 802.11g ; Frequency: 2462 MHz; Duty Cycle: 1:1; Modulation type: OFDM Medium: MSL2450 (Ο = 2.0308 mho/m, Ξ΅ r = 50.6184,β¦
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No. 19 Hwa Ya 2nd rd. Β· Kueishan Taoyuan Β· Taiwan
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.41 GHz - 2.46 GHz | 63.00 mW |

Shuttle XPC (Wireless 802.11a+b+g)
Equipment Class
NII - Unlicensed National Information Infrastructure TX
Notebook PC
Equipment Class
PCB - PCS Licensed Transmitter
Wireless mini-PCI Card Model MS-6833
Equipment Class
DTS - Digital Transmission System
Notebook PC with Intel model WM3B2200BG WLAN card
Equipment Class
DTS - Digital Transmission System