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MCLT60H677802.11a and 802.11b Combo Module

HON HAI Precision Ind. Co., Ltd.
802.11a and 802.11b Combo Module - FCC ID MCLT60H677 - HON HAI Precision Ind. Co., Ltd.
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
May 14, 2003
Application Purpose
Original Equipment
Date of Application
Mar 06, 2003
Equipment Note
802.11a and 802.11b Combo Module
Frequency Range
5725.00000000 - 5825.00000000
Company
HON HAI Precision Ind. Co., Ltd.
Country
Taiwan

Documents & Files

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Users Manual

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

1 U S E R ’ S M A N U A L T60H677 Mini-PCI Type IIIB 802.11a/b WLAN CARD Ambit Microsystems Corporation 5F-1, 5 Hsin-An Rd., Hsinchu Science-Based Industrial Park, Hsinchu, Taiwan, R.O.C. TEL: 886-3-5784975, FAX: 886-3-5782924, Internet: [email protected] 2 Contents SECTION ONE: INTRODUCTION ............................................................................................ 1 1-1 FEATURES.............................................................................................................................. 1 1.1.1 WIRELESS LAN FUNCTION.................................................................................................... 1 1-2 FCC NOTICE.......................................................................................................................... 3 SECTION TWO: WIRELESS UTILITY AND CONFIGURATION ....................................... 4 2-1 WINDOWS 98/ME/2000 WIRELESS UTILITY................................................................................... 4 SECTION THREE: WINDOWS XP WIRELESS UTILITY AND CONFIGURATION ......... 11 3-1 WINDOWS XP WIRELESS UTILITY................................................................................................ 11 APPENDIX A GLOSSARY ............................................................................................................... 18 The information contained in this manual has been verified at the time of this manual printing. The manufacturer reserves the right to make any changes and improvements in the product described in this manual at any time and without notice. All registered trademarks are the property of their respective owners. 1 Section One: Introduction Ambit Wireless Mini-PCI Module complied with IEEE 802.11a/b Standard, it can be used to provide a variety of low-cost wireless network interface card to connect your wireless LAN via fitting into the Mini-PCI Type III slot. The Wireless Mini-PCI Module that complies with this specification and combines networking with high- speed Internet access will let people connect to the Internet anywhere, anytime. With seamless roaming, fully interoperability and advanced security with WEP standard, Wireless Mini-PCI Module can allow user to switch to different vendors’ Access Points through the wireless networks and to prevent from eavesdropping. 1-1 Features 1.1.1 Wireless LAN Function 802.11a Wireless LAN Compliance IEEE 802.11a Operating Frequency 5.15~5.25GHz (lower band) for US/Canada/Japan 5.25~5.35GHz (middle band) for US/Canada 5.725~5.825GHz (high band) for US Modulation Schemes OFDM, QPSK, BPSK,16-QAM and 64-QAM WLAN Data Rat e 54Mbps with fall back rates of 48, 36, 24, 18, 12, 9, and 6Mbps Media Access Protocol CSMA/CA with ACK Transmitter Output Power Typical 12 dBm for 54, 48Mbps of 5.15 to 5.35GHz Typical 12 dBm for 48Mbps of 5.725 to 5.825GHz Typical 10 dBm for 54Mps of 5.725 to 5.825GHz Typical 15 dBm for 36, 24, 18, 12, 9, 6Mbps Receiver Sensitivity UNII low and middle band (5.15 to 5.35GHz) Typical –70 dBm for 54Mbps @ 10% PER Typical –72 dBm for 48Mbps @ 10% PER Typical –78 dBm for 36Mbps @ 10% PER Typical –81 dBm for 24Mbps @ 10% PER 2 Typical –83 dBm for 18Mbps @ 10% PER Typical –85 dBm for 12Mbps @ 10% PER Typical –87 dBm for 9Mbps @ 10% PER Typical –87 dBm for 6Mbps @ 10% PER UNII high band (5.725 to 5.825GHz) Typical –63 dBm for 54Mbps @ 10% PER Typical –71 dBm for 48Mbps @ 10% PER Typical –78 dBm for 36Mbps @ 10% PER Typical –81 dBm for 24Mbps @ 10% PER Typical –83 dBm for 18Mbps @ 10% PER Typical –85 dBm for 12Mbps @ 10% PER Typical –87 dBm for 9Mbps @ 10% PER Typical –87 dBm for 6Mbps @ 10% PER Current Consumption 600mA at transmit mode (typically) 330mA at receive mode (typically) 20mA at normal power saving mode (typically) 10mA at maximum power saving mode (typically) 802.11b Radio Technology IEEE 802.11b Direct Sequence Spread Spectrum Operating Frequency 2412 ~ 2484MHz ISM band Modulation Schemes DQPSK, DBPSK and CCK Channel Numbers IEEE 802.11b compliant 11 channels for United States 13 channels for Europe Countries 14 channels for Japan Data Rate 11Mbps with fall back rates of 5.5, 2, and 1Mbps Spreading 11-chip Barker Sequence Media Access Protocol CSMA/CA with ACK Transmitter Output Power 15dBm typically Receiver Sensitivity Typical –83dBm for 11Mbps @ 8% PER 3 Typical –85dBm for 5.5Mbps @ 8% PER Typical –86dBm for 2Mbps @ 8% PER Typical –90dBm for 1Mbps @ 8% PER Current Consumption 500mA at transmit mode (typically) 350mA at receive mode (typically) 40mA at normal power saving mode (typically) 30mA at max power saving mode (typically) 1-2 FCC Notice USA – Federal Communication Commission (FCC) FCC Class B Statement This device complies with Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. (1) This device may not cause harmful interference (2) This device must accept any interference received, including interference that may cause undesired operation. FCC RF Safety Requirement : The radiated output power is far below the FCC radio frequency exposure limits. (1) Shielded cables, if any, must be used in order to comply with the emission limits. (2) Any change or modification not expressly approved by the grantee of the equipment authorized could void the user authority to operate the equipment Notice: The device will automatically discontinue transmission in case of either absence of information to transmit or operational failure. These provisions are not intended to preclude the transmission of control or signaling information or the use of repetitive codes used by certain digital technologies to complete frame of burst intervals. 4 Section Two: Wireless Utility and Configuration The following sections describe the Wireless Network Configuration Utility. This utility provides quick access and friendly interface to configure the card setup. 2-1 Windows 98/ME/2000 Wireless Utility After installation is com…

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Users Manual

1 U S E R ’ S M A N U A L T60H677 Mini-PCI Type IIIB 802.11a/b WLAN CARD Ambit Microsystems Corporation 5F-1, 5 Hsin-An Rd., Hsinchu Science-Based Industrial Park, Hsinchu, Taiwan, R.O.C. TEL: 886-3-5784975, FAX: 886-3-5782924, Internet: [email protected] 2 Contents SECTION ONE: INTRODUCTION ............................................................................................ 1 1-1 FEATURES.............................................................................................................................. 1 1.1.1 WIRELESS LAN FUNCTION.................................................................................................... 1 1-2 FCC NOTICE.......................................................................................................................... 3 SECTION TWO: WIRELESS UTILITY AND CONFIGURATION ....................................... 5 2-1 WINDOWS 98/ME/2000 WIRELESS UTILITY................................................................................... 5 SECTION THREE: WINDOWS XP WIRELESS UTILITY AND CONFIGURATION ......... 12 3-1 WINDOWS XP WIRELESS UTILITY................................................................................................ 12 APPENDIX A GLOSSARY ............................................................................................................... 19 The information contained in this manual has been verified at the time of this manual printing. The manufacturer reserves the right to make any changes and improvements in the product described in this manual at any time and without notice. All registered trademarks are the property of their respective owners. 1 Section One: Introduction Ambit Wireless Mini-PCI Module complied with IEEE 802.11a/b Standard, it can be used to provide a variety of low-cost wireless network interface card to connect your wireless LAN via fitting into the Mini-PCI Type III slot. The Wireless Mini-PCI Module that complies with this specification and combines networking with high- speed Internet access will let people connect to the Internet anywhere, anytime. With seamless roaming, fully interoperability and advanced security with WEP standard, Wireless Mini-PCI Module can allow user to switch to different vendors’ Access Points through the wireless networks and to prevent from eavesdropping. 1-1 Features 1.1.1 Wireless LAN Function 802.11a Wireless LAN Compliance IEEE 802.11a Operating Frequency 5.15~5.25GHz (lower band) for US/Canada/Japan 5.25~5.35GHz (middle band) for US/Canada 5.725~5.825GHz (high band) for US Modulation Schemes OFDM, QPSK, BPSK,16-QAM and 64-QAM WLAN Data Rat e 54Mbps with fall back rates of 48, 36, 24, 18, 12, 9, and 6Mbps Media Access Protocol CSMA/CA with ACK Transmitter Output Power Typical 16 dBm for 54, 48Mbps of 5.15 to 5.35GHz Typical 16 dBm for 48Mbps of 5.725 to 5.825GHz Typical 16 dBm for 54Mps of 5.725 to 5.825GHz Typical 16 dBm for 36, 24, 18, 12, 9, 6Mbps Receiver Sensitivity UNII low and middle band (5.15 to 5.35GHz) Typical –70 dBm for 54Mbps @ 10% PER Typical –72 dBm for 48Mbps @ 10% PER Typical –78 dBm for 36Mbps @ 10% PER Typical –81 dBm for 24Mbps @ 10% PER 2 Typical –83 dBm for 18Mbps @ 10% PER Typical –85 dBm for 12Mbps @ 10% PER Typical –87 dBm for 9Mbps @ 10% PER Typical –87 dBm for 6Mbps @ 10% PER UNII high band (5.725 to 5.825GHz) Typical –63 dBm for 54Mbps @ 10% PER Typical –71 dBm for 48Mbps @ 10% PER Typical –78 dBm for 36Mbps @ 10% PER Typical –81 dBm for 24Mbps @ 10% PER Typical –83 dBm for 18Mbps @ 10% PER Typical –85 dBm for 12Mbps @ 10% PER Typical –87 dBm for 9Mbps @ 10% PER Typical –87 dBm for 6Mbps @ 10% PER Current Consumption 600mA at transmit mode (typically) 330mA at receive mode (typically) 20mA at normal power saving mode (typically) 10mA at maximum power saving mode (typically) 802.11b Radio Technology IEEE 802.11b Direct Sequence Spread Spectrum Operating Frequency 2412 ~ 2484MHz ISM band Modulation Schemes DQPSK, DBPSK and CCK Channel Numbers IEEE 802.11b compliant 11 channels for United States 13 channels for Europe Countries 14 channels for Japan Data Rate 11Mbps with fall back rates of 5.5, 2, and 1Mbps Spreading 11-chip Barker Sequence Media Access Protocol CSMA/CA with ACK Transmitter Output Power 16dBm typically Receiver Sensitivity Typical –83dBm for 11Mbps @ 8% PER 3 Typical –85dBm for 5.5Mbps @ 8% PER Typical –86dBm for 2Mbps @ 8% PER Typical –90dBm for 1Mbps @ 8% PER Current Consumption 500mA at transmit mode (typically) 350mA at receive mode (typically) 40mA at normal power saving mode (typically) 30mA at max power saving mode (typically) 1-2 FCC Notice FCC Compliance This equipment complies with Part 68 of the FCC Rules. On this equipment is a label that contains, among other information, the FCC registration number and Ringer Equivalence Number (REN) for this equipment. You must, upon request, provide this information to your telephone company. If your telephone equipment causes harm to the telephone network, the Telephone Company may discontinue your service temporarily. If possible, they will be notify in advance. But if advance notice isn’t practical, you will notified as soon as possible. You will be informed of your right to file a complaint with FCC. Your telephone company may make changes in its facilities, equipment, operations or procedures that could affect proper operation of your equipment. If they do, you will be notified in advance to give you an opportunity you maintain uninterrupted telephone service. The FCC prohibits this equipment’s should fail to operate properly, disconnect the equipment from the phone line to determine if it is causing the problem. If the problem is with the equipment, discontinue use and contact your dealer or vendor. FCC Class B Statement This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference …

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External Photos

AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # Document9Page 4 of 81 FCC Part 15.247 & 15.407 Test Report EXHIBIT C - EUT EXTERNAL PHOTOGRAPHS EUT – Top View

ID Label/Location Info

EXHIBIT A - FCC ID LABEL INFORMATION Proposed FCC ID Label Proposed Label Location on EUT Solder View of EUT/FCC ID Label FCC ID: MCLT60H677 This device complies with Part15 of the FCC Rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interface, and (2) this device must accept any interference received, including interference that may cause undesired operation.

Internal Photos

AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # Document9Page 4 of 81 FCC Part 15.247 & 15.407 Test Report EXHIBIT C - EUT INTERNAL PHOTOGRAPHS EUT – Cover Removed View EUT – Solder View AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # Document9Page 5 of 81 FCC Part 15.247 & 15.407 Test Report BY27 Antenna Right View BY27 Antenna Left View AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # Document9Page 6 of 81 FCC Part 15.247 & 15.407 Test Report ZG1S Antenna Right View ZG1S Antenna Left View AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # Document9Page 7 of 81 FCC Part 15.247 & 15.407 Test Report ZI1S Antenna Right View ZI1S Antenna Left View

Operational Description

ZI1S computer setup and test procedure 1) Bluetooth is situated inside the note book can not be accessed. Please do not try to open the notebook. 2) Mini pci card at back of the notebook, connect to j1 point for testing 3) The notebook is in test mode, unable to connect to access point or other PC, only used for testing by ART Test Program. 4) To change to operation mode will have to update driver 5) Control panel Æ system Æ hardware Æ device manager Æ atheros mdk ( or 802.11a/b) Æ driver Æ update driver Æ install from a list or specific loacation Æ don’t search I will choose driver to install Æ In the show compatible hardware should see * lan-express IEEE 802.11a/b mini pci adaptor 6) To go back to the test mode by the same method update driver but this time in the compatible hardware chose * Atheros AR5001 Anwi Diagnostic kernel driver” 7) under test mode start testing by execute c:\driver\wireless lan\t60h677\art_v25_build_.... \ art\bin\art.exe you will see a dos prompt used to test “o” for changing from a\b\g “c” for continious transmit then another dos prompt will be seen “s” for un modulated signal Bluetooth test program Click blue test Make sure it is same as above diagram chose TXData1 then chose the frequency you want to test. Then execute for true CW signal use Txstart then chose frequency Attn: there is 2 buttons on the side bottom panel for enable and disable bluetooth and wireless lan, please if you can not transmit make sure the wireless is enabled by press button.

RF Exposure Info

234IEEE TRANSACTIONS ON ELECTROMAGNETIC COMPATIBILITY, VOL. 41, NO. 3, AUGUST 1999 An Automated SAR Measurement System for Compliance Testing of Personal Wireless Devices Qishan Yu, Om P. Gandhi,Life Fellow, IEEE, Magnus Aronsson,Student Member, IEEE, and Ding Wu Abstract—An automated specific absorption rate (SAR) mea- surement system has been developed for compliance testing of personal wireless devices. Unlike other systems, this system uses a model with a lossy ear-shaped protrusion and the accuracy of this experimental setup has been checked by comparing the peak 1-g SAR’s for ten cellular telephones, five each at 835 and 1900 MHz, with the results obtained using a 15-tissue anatomically based model with the finite-difference time-domain (FDTD) numerical electromagnetic technique. The SAR measurement system uses a three-dimensional (3-D) stepper motor to move a Narda Model 8021 E-field probe to measure the SAR distribution inside a head- shaped tissue-simulant phantom near the radiating device. The head and neck part of the model with an ear-shaped protrusion of 3 mm thickness is made of a lossy outer shell of 5–7 mm thickness of epoxy laced with KCl solution. The phantom is filled with appropriate frequency-specific fluids with measured electrical properties (dielectric constant and conductivity) that are close to the average for gray and white matters of the brain at the center frequencies of interest (835 and 1900 MHz). The implantable E-field probe is calibrated using the FDTD- calculated SAR variations for a slab model at two commonly used frequencies, 835 and 1900 MHz and is checked to have good isotropic characteristics ( 0.23 dB) and a wide dynamic range (0.01–10 W/kg). The system is validated using a 223-mm- diameter sphere model. Peak 1-g SAR’s for ten telephones using different antennas are within 1 dB of those obtained using the FDTD numerical method for the anatomical model of the head and neck region. Index Terms—Experimental phantom with lossy ear, safety compliance testing, validation against computed SAR. I. INTRODUCTION T HE use of cellular telephones and mobile wireless com- munication systems has increased dramatically during the past few years. Meanwhile, there is public concern for safety of RF exposure from these devices. Since the RF exposure is quantified by the mass-normalized rate of electromagnetic energy absorption or the specific absorption rate (SAR), the United States Federal Communications Commission (FCC) requires that the SAR values of new personal wireless devices must meet the prescribed RF safety guidelines [1]. Further- more, since electromagnetic energy absorbed by the human head depends to a large extent on the antenna used for the personal wireless devices [2], knowledge of SAR distributions in the human head can also help the industry to design better antennas to improve the performance of the wireless transceivers. In this regard, we should note that 30–65% of Manuscript received March 10, 1998; revised April 26, 1999. The authors are with the Department of Electrical Engineering, University of Utah, Salt Lake City, UT 84112 USA. Publisher Item Identifier S 0018-9375(99)06718-6. the power radiated by the whip antennas used today is wasted by absorption in the human head and hand [2] and this could be reduced greatly. Recent dosimetric studies on the RF exposure to the human body from personal wireless devices have been carried out by both numerical simulation [3]–[5] and experimental measure- ments [6], [7]. Numerical methods using millimeter resolution anatomically based human body models and computer-aided design (CAD) files of cellular telephones can simulate the human body and the cellular phones in detail, respectively, thus providing highly accurate information about the electro- magnetic coupling of the radiating device to the human body [8]. But the numerical technique requires considerable com- putational resources (memory and computation time) for just one test condition of the device. To alleviate this problem, use of the expanding grid finite-difference time-domain (FDTD) method [9] together with the use of the truncated models of the head [10] has resulted in savings of memory requirements by factors in excess of 20, making it possible to compute the high- resolution SAR distributions using workstations instead of parallel computers [8]. Nevertheless, if a device is to be tested for several orientations relative to the head or slightly variable conditions of the relatively unshielded internal circuitry, an easy, fast experimental procedure with validated accuracy and repeatability is of interest. A major requirement of the experimental setup, however, is that the phantom model be designed such that it gives peak 1-g SAR’s that are in good agreement (within 1 dB) with the values obtained using anatomically based models. While none of the previously developed thin shell phantoms can make this claim in this paper, we present an automated SAR measurement system that meets this requirement and can, therefore, be used for compliance testing at both 835 and 1900 MHz. The system is fully automated by a three-dimensional (3-D) stepper motor system controlled by a computer, with a miniature implantable -field probe that is used to determine spatial SAR variations. Using an ear-shaped protrusion of 3 mm thickness, the head and neck part of the phantom model is made of a lossy shell of 5–7 mm thickness of epoxy laced with KCl solution to simulate the thickness of the human skull. This is important since most of the electromagnetic energy absorption for the region of the highest SAR for anatomically based models occurs either for the ear or the internal tissues beyond the skull, which is on the order of 5–7 mm thick. This and the upper part of the torso are filled with a frequency specific fluid with measured electrical properties (dielectric constant and conductivity) close to the average properties of the brain 0018–9375/99$10.001…

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RF Exposure Info

SAR TESTING OF AMBIT MICROSYSTEMS MODEL T60H677 802.11 a/b MINI PCI WITH THREE HOST COMPUTERS AMBIT MODEL: T60H677 FCC ID: MCLT60H677 Host Computers: 1. Quantatw Model ZG1S with Ambit Model ZG1S 802.11a antenna (PC Serial #QCHCP025000023) 2. Quantatw Model ZI1S with Ambit Model ZI1S 802.11a antenna (PC Serial #QCHCOU24800018) 3. Compal Model L1S with Ambit Model BY27 802.11a antenna (PC Serial #BBY27001004) February 25, 2003 Prepared for: Ambit Microsystems Corporation 4-1, Ming-Sheng Street Tu-Cheng Industrial Area Tu-Cheng City, Taiwan, R.O. C. Prepared by: Om P. Gandhi Professor of Electrical and Computer Engineering University of Utah 50 S Central Campus Dr., Rm. 3280 Salt Lake City, UT 84112-9206 ii TABLE OF CONTENTS I. Introduction ........................................................................................................................ 1 II. The SAR Measurement System ......................................................................................... 3 The Flat Phantom ............................................................................................................... 3 III. Calibration of the E-Field Probe ......................................................................................... 4 IV. SAR System Verification ................................................................................................... 5 V. Tissue Simulant Fluid for the Frequency Band 5.2 to 5.8 GHz ......................................... 5 VI. The Measured SAR Distributions....................................................................................... 7 VII. Comparison of the Data with FCC 96-326 Guidelines ...................................................... 9 REFERENCES ............................................................................................................................ 10 TABLES ................................................................................................................................ 12-27 FIGURES .............................................................................................................................. 28-69 APPENDIX A (separate pdf file) APPENDIX B ........................................................................................................................... 70 APPENDIX C ........................................................................................................................... 72 1 SAR TESTING OF AMBIT MICROSYSTEMS MODEL T60H677 802.11 a/b MINI PCI WITH THREE HOST COMPUTERS AMBIT MODEL: T60H677 FCC ID: MCLT60H677 Host Computers: 1. Quantatw Model ZG1S with Ambit Model ZG1S 802.11a antenna (PC Serial #QCHCP025000023) 2. Quantatw Model ZI1S with Ambit Model ZI1S 802.11a antenna (PC Serial #QCHCOU24800018) 3. Compal Model L1S with Ambit Model BY27 802.11a antenna (PC Serial #BBY27001004) I. Introduction The U.S. Federal Communications Commission (FCC) has adopted limits of human exposure to RF emissions from mobile and portable devices that are regulated by the FCC [1]. The FCC has also issued Supplement C (Edition 97-01) to OET Bulletin 65 [2] and a more recent version of the same [3] defining both the measurement and the computational procedures that should be followed for evaluating compliance of mobile and portable devices with FCC limits for human exposure to radiofrequency emissions. We have used the measurement procedure for SAR compliance testing of the Ambit Microsystems Model T60H677 802.11 a/b Mini PCI built into three host computers. These host computers shown in Figs. 1-3, respectively, are: 1. Quantatw Model ZG1S. 2. Quantatw Model ZI1S. 3. Compal Model L1S. For each of the host computers, the approximate locations of the corresponding 802.11a wireless antennas built into the keyboard are indicated by a sticker in parts c of each of the Figs. 1-3, respectively. The Ambit Model T60H677 PCI with slightly different 802.11a antennas for each of the three host computers operates over the frequency band 5.17-5.81 GHz in the normal mode with conducted powers given for the individual host computers in Tables 1-3, respectively. 2 For SAR measurements, three configurations of each of the wireless PCs relative to the experimental phantom have been used. These are as follows: a. Configuration 1 is for the wireless PC placed on a user's lap. For this configuration, a planar phantom model with inside dimensions 12" x 16.5" (30.5 x 41.9 cm) and a base thickness of 2.0 ± 0.2 mm (recommended in [3]) was used for SAR measurements and the bottom side of each of the laptop computers shown in parts b of Figs. 1, 2, and 3 was pressed against it. See, for example, Fig. 4 where the bottom of Quantatw Model ZG1S PC is pressed against the base of the planar phantom. Due to the possible shielding effect of the keyboard, the measured SARs were fairly low and were, in fact, close to the noise level of the measuring system (estimated to be on the order of 0.02 W/kg) for Quantatw Model ZI1S and Compal Model L1S host computers. b. For a bystander, the SAR values were determined for Configurations 2 and 3 of the PCs relative to the flat phantom. These configurations are: Configuration 2: Edge-on placement of the PC with the antenna edge (right edge) at 90° pressed against the bottom of the planar phantom with separation of 0 cm for Quantatw Models ZG1S and ZI1S (see Figs. 7 and 8), and at a distance of 1.5 cm for Compal Model L1SPC (see Fig. 9). Because of a larger SAR for the Compal Model L1S PC for this configuration, a spacing of 1.5 cm rather than 0 cm was used for this PC. This configuration 2 for SAR testing represents the case of a bystander standing to the right of the PC with a separation of 0 cm from the antenna edge for Quantatw Models ZG1S and ZI1S PCs and 1.5 cm for Compal Model L1S PC. It should be noted that a spacing of 1.5-2.5 cm is suggested in [3] for end-on testing of SARs. Configuration 3: End-on placement of the PC with the broader back edges of three ho…

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Test Report

Note: This test report is specially limited to the above client company and product model only. It may not be duplicated without prior written consent of Bay Area Compliance Laboratory Corporation. This report must not be used by the client to claim product endorsement by NVLAP or any agency of the U.S. Government. FCC PART 15 TEST REPORT For AMBIT Microsystems Corporation 4-1, Ming Shen Street, Tu Chen Industrial District. Tu Chen, Taipei Hsien 236, Taiwan, R.O.C. FCC ID: MCLT60H677 February 11, 2003 This Report Concerns: Original Report Equipment Type: MiniPCI 802.11a/b Combo Module Test Engineer:Benjamin Jing Report No.:R0301172 Test Date:January 27, 2003 Reviewed By:Hans Mellberg Prepared By:Bay Area Compliance Laboratory Corporation (BACL) 230 Commercial Street Sunnyvale, CA 94085 Tel: (408) 732-9162 Fax: (408) 732 9164 AMBIT Microsystems Corporation FCC ID: MCLT60H677 Report # R0301172RptPage 2 of 69 FCC Part 15.247 & 15.407 Test Report TABLE OF CONTENTS 1 - GENERAL INFORMATION.................................................................................................................................................4 1.1 PRODUCT DESCRIPTION FOR EQUIPMENT UNDER TEST (EUT).........................................................................................4 1.2 OBJECTIVE................................................................................................................................................................................4 1.3 RELATED SUBMITTAL(S)/GRANT(S)......................................................................................................................................4 1.4 TEST METHODOLOGY.............................................................................................................................................................4 1.5 TEST FACILITY.........................................................................................................................................................................4 1.6 TEST EQUIPMENT LIST............................................................................................................................................................5 1.7 LOCAL SUPPORT EQUIPMENT LIST AND DETAILS...............................................................................................................5 1.8 EXTERNAL I/O CABLING LIST AND DETAILS......................................................................................................................5 2 - SYSTEM TEST CONFIGURATION..................................................................................................................................6 2.1 JUSTIFICATION.........................................................................................................................................................................6 2.2 EUT EXERCISE SOFTWARE....................................................................................................................................................6 2.3 SPECIAL ACCESSORIES............................................................................................................................................................6 2.…

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Contact Information

Applicant

Mrs. Rio Chen(Compliance Deputy Manager)
[email protected]+886-3-5784975Fax: +886-3-5775100

Technical Contact

Bay Area Compliance Laboratory Corp.John Chan
[email protected](408) 732 9162

230 Commercial St. · Sunnyvale, California · United States

Non-Technical Contact

Bay Area Compliance LaboratoryJohn Chan
[email protected](408) 732 9162

Test Firm

Bay Area Compliance LaboratoryJohn Chan
[email protected]408-732-9162Fax: 408-732-9164

Technical Specifications

#Rule PartsFrequency RangePower Output
315E5.72 GHz - 5.83 GHz44.90 mW

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