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PD9WM3A2200BGIntel PRO/Wireless 2200BG Network Connection

Intel Corporation
Intel PRO/Wireless 2200BG Network Connection - FCC ID PD9WM3A2200BG - Intel Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Mar 07, 2004
Application Purpose
Original Equipment
Date of Application
Mar 07, 2004
Equipment Note
Intel PRO/Wireless 2200BG Network Connection
Frequency Range
2412.00000000 - 2462.00000000
Company
Intel Corporation
Country
France

Documents & Files

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Users Manual

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Attestation Statements

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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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

Regulatory Information: Intel(R) PRO/Wireless LAN 3A Mini PCI Adapter User's Guide Information For the User Regulatory Information Information for the user Safety Notices The FCC with its action in ET Docket 96-62 has adopted a safety standard for human exposure to radio frequency (RF) electromagnetic energy emitted by FCC certified equipment. The Intel(R) PRO/Wireless 2200BG LAN 3A Mini PCI Adapter meets the Human Exposure limits found in OET Bulletin 65, 2001, and ANSI/IEEE C95.1, 1992. Proper operation of this radio according to the instructions found in this manual will result in exposure substantially below the FCC’s recommended limits. The Intel(R) PRO/Wireless 2200BG LAN 3A Mini PCI Adapter has been tested and complies with the FCC & Industry Canada SAR (Specific Absorption Rate) requirements operating in a typical laptop configuration. The following safety precautions should be observed: • Do not touch or move antenna while the unit is transmitting or receiving. • Do not hold any component containing the radio such that the antenna is very close or touching any exposed parts of the body, especially the face or eyes, while transmitting. • Do not operate the radio or attempt to transmit data unless the antenna is connected; if not, the radio may be damaged. • Use in specific environments: o The use of wireless devices in hazardous locations is limited by the constraints posed by the safety directors of such environments. o The use of wireless devices on airplanes is governed by the Federal Aviation Administration (FAA). o The use of wireless devices in hospitals is restricted to the limits set forth by each hospital. • Explosive Device Proximity Warning (see below) • Antenna Warning (see below) • Use on Aircraft Caution (see below) • Other Wireless Devices (see below) • Power Supply (Access Point) (see below) Explosive Device Proximity Warning Warning: Do not operate a portable transmitter (such as a wireless network device) near unshielded blasting caps or in an explosive environment unless the device has been modified to be qualified for such use. Antenna Warnings Warning: Intel(R) PRO/Wireless LAN products are not designed for use with high-gain directional antennas. Use of such antennas with these products is illegal. Use On Aircraft Caution Caution: Regulations of the FCC and FAA prohibit airborne operation of radio-frequency wireless devices because their signals could interfere with critical aircraft instruments. Other Wireless Devices Safety Notices for Other Devices in the Wireless Network: Refer to the documentation supplied with wireless Ethernet adapters or other devices in the wireless network. Local Restrictions on 802.11b / 802.11g Radio Usage Caution: Due to the fact that the frequencies used by 802.11b/802.11g wireless LAN devices may not yet be harmonized in all countries, 802.11b/802.11g products are designed for use only in specific countries, and are not allowed to be operated in countries other than those of designated use. As a user of these products, you are responsible for ensuring that the products are used only in the countries for which they were intended and for verifying that they are configured with the correct selection of frequency and channel for the country of use. Any deviation from the permissible settings for the country of use is an infringement of national law and may be punished as such. For country-specific information, see the additional compliance information supplied with the product. Wireless interoperability The Intel(R) PRO/Wireless 2200BG LAN 3A Mini PCI adapters are designed to be interoperable with any wireless LAN product that is based on direct sequence spread spectrum (DSSS) radio technology and to comply with the following standards: • IEEE Std. 802.1b/g-XXXX. Standard on Wireless LAN. • Wireless Fidelity (WiFi) certification, as defined by the WECA (Wireless Ethernet Compatibility Alliance). The Intel(R) PRO/Wireless 2200BG LAN 3A Mini PCI adapter and your health The Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter, like other radio devices, emits radio frequency electromagnetic energy. The level of energy emitted by this device, however, is less than the electromagnetic energy emitted by other wireless devices such as mobile phones. The Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter wireless devices operate within the guidelines found in radio frequency safety standards and recommendations. These standards and recommendations reflect the consensus of the scientific community and result from deliberations of panels and committees of scientists who continually review and interpret the extensive research literature. In some situations or environments, the use of the Intel(R) PRO/Wireless 2200 WLAN 3A Mini PCI adapter wireless devices may be restricted by the proprietor of the building or responsible representatives of the applicable organization. Examples of such situations include the following: • Using the Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter equipment on board airplanes, or • Using the Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter equipment in any other environment where the risk of interference with other devices or services is perceived or identified as being harmful. If you are uncertain of the policy that applies to the use of wireless devices in a specific organization or environment (an airport, for example), you are encouraged to ask for authorization to use the Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter wireless device before you turn it on. Regulatory information Please refer to the full Grant of equipment document for other restrictions. The Intel(R) PRO/Wireless 2200BG WLAN 3A Mini PCI adapter wireless network device must be installed and used in strict accordance with the manufacturer's instructions as described in the user documentation that comes with the product. For country-specific approvals, see Radio approvals. Dell Computer Corporation is not responsible for …

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Users Manual

Intel(R) PRO/Wireless 2200BG User's Guide Your Intel(R) PRO/Wireless 2200BG Network Connection adapter works with either 802.11b or 802.11g wireless standard. Operating at 2.4 GHz frequency at speeds of up to 54 Mbps you can now connect your computer to high-capacity existing 802.11b networks using multiple access points within large or small environments, and also to high-speed 802.11g networks. Your wireless adapter maintains automatic data rate control according to access point location to achieve the fastest possible connection. All your wireless client connections can be easily managed by the Intel(R) PROSet for Wireless utility. Using the Intel(R) PROSet for Wireless Profile Wizard, you can create profiles automatically to suite your specific connection requirements. Enhanced security measures using 802.1x, WPA encryption and authentication, and 128-bit WEP encryption is standard for both 802.11b and 802.11g. Introduction to Wireless Networking Software Installation Using Intel(R) PROSet for Wireless Connecting to a Network Security Overview Setting up Connection Security Troubleshooting Specifications Glossary Customer Support Safety and Regulatory Notices Warranty Adapter Registration Information in this document is subject to change without notice. (c) 2000–2003 Intel Corporation. All rights reserved. Intel Corporation, 5200 N.E. Elam Young Parkway, Hillsboro, OR 97124-6497 USA The copying or reproducing of any material in this document in any manner whatsoever without the written permission of Intel Corporation is strictly forbidden. Intel(R) is a trademark or registered trademark of Intel Corporation or its subsidiaries in the United States and other countries. Other trademarks and trade names may be used in this document to refer to either the entities claiming the marks and names or their products. Intel disclaims any proprietary interest in trademarks and trade names other than its own. Microsoft and Windows are registered trademarks of Microsoft Corporation. *Other names and brands may be claimed as the property of others. Intel Corporation assumes no responsibility for errors or omissions in this document. Nor does Intel make any commitment to update the information contained herein. September 2003 Back to Contents Page Wireless LAN Overview: Intel(R) PRO/Wireless 2200BG User's Guide About Wireless LAN Technology l Choosing a WLAN l Configuring a WLAN l Identifying a WLAN l Surveying the Site of Your WLAN l Factors Affecting Range A wireless network connects computers without using network cables. Computers use radio communications to send data between each other. You can communicate directly with other wireless computers, or connect to an existing network through a wireless access point. When you set up your wireless adapter, you select the operating mode for the kind of wireless network you want. You can use your wireless adapter to connect to other similar wireless devices that comply with the 802.11 standard for wireless networking. Choosing a Wireless LAN Wireless LANs can operate with or without access points, depending on the number of users in the network. Infrastructure mode uses access points to allow wireless computers to send and receive information. Wireless computers transmit to the access point, the access point receives the information and rebroadcasts it to other computers. The access point can also connect to a wired network or to the Internet. Multiple access points can work together to provide coverage over a wide area. Peer-to-Peer mode, also called Ad Hoc mode, works without access points and allows wireless computers to send information directly to other wireless computers. Ad Hoc Mode is only supported in 802.11b and 802.11g networks. You can use Peer-to-Peer mode to network computers in a home or small office or to set up a temporary wireless network for a meeting. Configuring a Wireless LAN There are three basic components that must be configured for an 802.11 wireless LAN to operate properly: l Network Name: Each wireless network uses a unique Network Name to identify the network. This name is called the Service Set Identifier (SSID). When you set up your wireless adapter, you specify the SSID. If you want to connect to an existing network, you must use the name for that network. If you are setting up your own network you can make up your own name and use it on each computer. The name can be up to 32 characters long and contain letters and numbers. l Profiles: When you set up your computer to access a wireless network, the wireless client manager creates a profile for the wireless settings that you specify. If you want to connect to another network, you can scan for existing networks and make a temporary connection, or create a new profile for that network. After you create profiles, your computer will automatically connect when you change locations. l Security: The 802.11 wireless networks use encryption to help protect your data. Wired equivalent privacy (WEP) uses a 64-bit or 128-bit shared encryption key to scramble data. Before a computer transmits data, it scrambles the data using the secret encryption key. The receiving computer uses this same key to unscramble the data. If you are connecting to an existing network, use the encryption key provided by the administrator of the wireless network. If you are setting up your own network you can make up your own key and use it on each computer. m Wi-Fi Protected Access (WPA) is a security enhancement that strongly increases the level of data protection and access control to a WLAN. WPA mode enforces 802.1x authentication and key-exchange to strengthen data encryption. WPA utilizes its Temporal Key Integrity Protocol (TKIP). TKIP provides important data encryption enhancements that include a per-packet key mixing function, a message integrity check (MIC) named "Michael", an extended initialization vector (IV) with sequencing rules, and a also re-keying mechanism. Using these improvement enhanceme…

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Cover Letter(s)

AEGIS LABS, INC 22431 Antonio Parkway B160-417, Rancho Santa Margarita, CA 92688 949-459-7886 TEL 949-459-7869 FAX www.aegislabsinc.com TRANSMITTER MODULAR APPROVAL ATTESTATION January 28, 2004 Federal Communications Commission Re: Application Modular Approval Certification for FCC ID: PD9WM3A2200BG Gentlemen: The following attestation addresses the eight requirements to support modular approval as required by the FCC Public Notice DA00-1407 “Part 15 Unlicensed Modular Transmitter Approval” 1 The modular transmitter has its own RF shielding and does not rely upon the shielding provided by the device into which it is installed in order to comply with Part 15 limits. 2 The modular transmitter has buffered modulation/data inputs. All inputs to the modules are buffered through the radio circuitry. 3 The modular transmitter has its own power supply regulator. 4 The modular transmitter has an antenna that complies with section 15.203 and 15.204(c) of the FCC rules. It has a UFL type of connector at the transmitter end and is soldered to the antenna (depending on OEM configuration). Also the antenna will be internal in the OEM host equipment and inaccessible to the user. 5 The modular transmitter was tested outside of a host desktop computer using a PCI extender card. The PCI extender card allows the transmitter to be placed outside of the chassis of the host desktop computer. 6 The modular transmitter will be labeled with its own FCC ID. Also, the OEM host computer manufacturer will be informed to display a label referring to the enclosed module. The exterior label will read as follows: “Contains Transmitter Module FCC ID” or “Contains TXFCCID”. 7 The modular transmitter is manufactured so that the user cannot influence the operation of the transmitter that will operate outside of the scope of the regulations. 8 The modular transmitter meets the MPE calculations of 47 CFR 1.1307(b)(1). Also, SAR data is available if necessary. If there are any additional questions or if further information is needed, please contact us at your earliest convenience at (949) 459-7886. Sincerely, Rick Candelas Aegis Labs, Inc. Lab Manager

Cover Letter(s)

January 28, 2004 American TCB 6731 Whittier Ave., Suite C110 McLean, VA 22101 Gentlemen: The attached documentation is provided in support of a formal submission to your organization for a Limited Modular Approval of an intentional unlicensed transmitter. On behalf of our client, Aegis Labs has included an application for a Grant of Equipment Authorization pursuant to Subpart C of part 15 of FCC Rules (47 CFR) regarding intentional radiators. The data within the test report demonstrates the equipment was tested in a manner described under Part 2 and 15 of the Code of Federal Regulations. This is a Limited Modular Approval of the Intel PRO/Wireless 2200BG Network Connection (MN: WM3A2200BG, FCC ID: PD9WM3A2200BG), which is a dual band WLAN adapter (802.11b and 802.11g). It was tested installed in the mini PCI slot of a laptop computer chassis with a set of Wistron NeWeb Corporation antennas and Hitachi antennas continuously transmitting and receiving form the MAIN and AUX antenna ports. If there are any additional questions or if further information is needed, please contact us at your earliest convenience. Sincerely, Rick Candelas Aegis Labs, Inc. Lab Manager Enclosure (1 Emissions Test Report + Exhibits) AEGIS LABS, INC 22431 Antonio Parkway B160-417, Rancho Santa Margarita, CA 92688 949-459-7886 TEL 949-459-7869 FAX www.aegislabsinc.com

Cover Letter(s)

December 7, 2004 RE: Intel Corporation FCC ID: PD9WM3A2200BG Correspondence Reference Number: 11830 731 Confirmation Number: TC331545 Answers to the FCC Audit on the above referenced Application. 1. Not clear that DA 00-1407 item 6 is done correctly for this LMA. External photos exhibit shows card in laptop. ID label exhibit shows "FCC ID: PD9WM3A2200BG" - not consistent with DA 00-1407. Please explain and/or revise. Please note that there was a mistake in the modular request letter. This device was not tested on an extender card as specified in the modular approval letter. This device was tested inside a specific host laptop. This is why Intel has requested a Limited Modular Approval specific to Dell Laptop Model PP05L laptop only. The manufacturer of this device understands that installation of this device into other Host device will require the submission of a Class II permissive change application addressing RF exposure and spurious emissions. It is also relevant to note that Dell also submits all of their chassis for this card under their own unique Dell FCC ID. This application is being approved to assist Intel in efforts for South American approvals. Please refer to the modular request letter for further detail. The modular transmitter will be labeled with its own FCC ID (sample label that was provided with application). Also, the OEM host computer manufacturer will be informed to display a label referring to the enclosed module. The exterior label will read as follows: Contains Transmitter Module FCC ID or Contains TX FCC ID.

External Photos

View of the WLAN Transmitter Location Inside the Laptop View of the WLAN Transmitter Location Inside the Laptop (Close-Up)

ID Label/Location Info

A A

Internal Photos

Top View of the WLAN Transmitter “Insulation Removed” Bottom View of the WLAN Transmitter “Insulation Removed” Top View of the WLAN Transmitter “Shielding Removed” Top View of the WLAN Transmitter “With Insulation” Bottom View of the WLAN Transmitter “With Insulation”

RF Exposure Info

MPE Calculations Systems operating under the provision of 47 CFR 1.1307(b)(1) shall be operated in a manor that ensures that the public is not exposed to radio frequency energy levels in excess of the FCC guidelines. The EUT will only be used with a separation of 20 centimeters or greater between the antenna and the body of the user or nearby persons and can therefore be considered a mobile transmitter per 47 CFR 2.1091(b). The MPE calculation for this exposure is shown below. Using the Wistron NeWeb Corp. Antennas: The peak radiated output power (EIRP) is calculated as follows: EIRP = P + G EIRP = 17.50 dBm + 1.07 dBi EIRP = 18.57 dBm (71.94mW) Where P = Power input to the antenna (mW). G = Power gain of the antenna (dBi) Power density at the specific separation: S = PG/(4R 2 π) S = (56.23 x 1.279) / (4 x 20 2 x π) S = 0.014 mW/cm 2 Where S = Maximum power density (mW/cm 2 ) P = Power input to the antenna (mW). G = Numeric power gain of the antenna R = Distance to the center of the radiation of the antenna (20cm = limit for MPE) The maximum permissible exposure (MPE) for the general population is 1mW/cm 2 . The power density at 20cm does not exceed the 1mW/cm 2 limit. Therefore, the exposure condition is compliant with FCC rules. Estimated safe separation: R = PG/4π R = ( 56.23 x 1.279) / 4π R = 2.39 cm Where P = Power input to the antenna (mW). G = Numeric power gain of the antenna R = The safe estimated separation that the user must maintain from the antenna (cm) The numeric gain (G) of the antenna with a gain specified in dB is determined by: G = Log -1 (dB antenna gain/10) G = Log -1 (1.07 dBi/10) G = 1.279 Using the Hitachi Antennas: The peak radiated output power (EIRP) is calculated as follows: EIRP = P + G EIRP = 17.50 dBm + 0.60 dBi EIRP = 18.10 dBm (64.57mW) Where P = Power input to the antenna (mW). G = Power gain of the antenna (dBi) Power density at the specific separation: S = PG/(4R 2 π) S = (56.23 x 1.148) / (4 x 20 2 x π) S = 0.013 mW/cm 2 Where S = Maximum power density (mW/cm 2 ) P = Power input to the antenna (mW). G = Numeric power gain of the antenna R = Distance to the center of the radiation of the antenna (20cm = limit for MPE) The maximum permissible exposure (MPE) for the general population is 1mW/cm 2 . The power density at 20cm does not exceed the 1mW/cm 2 limit. Therefore, the exposure condition is compliant with FCC rules. Estimated safe separation: R = PG/4π R = ( 56.23 x 1.148) / 4π R = 2.27 cm Where P = Power input to the antenna (mW). G = Numeric power gain of the antenna R = The safe estimated separation that the user must maintain from the antenna (cm) The numeric gain (G) of the antenna with a gain specified in dB is determined by: G = Log -1 (dB antenna gain/10) G = Log -1 (0.60 dBi/10) G = 1.148

RF Exposure Info

29-Nov-02 Antenna Type Antenna Model NumberMain AntennaHFT01-DL01(Main) Aux AntennaHFT01-DL01(Aux) Peak Gain Main Antenna2GHz1.2dBi 5GHz5.6dBi Aux Antenna2GHz0.9dBi 5GHz4.9dBi Manufacturing Info Antenna Dimension(Mechanical Drawings)Main AntennaEH3848238 Aux AntennaEH3848239 Cable LengthMain Antenna141mm Aux Antenna349mm Cable Loss(including connector) Cable Length 141mm2GHz0.6dB 5GHz1.2dB Cable Length 349mm2GHz1.3dB 5GHz2.2dB Antenna MaterialAntenna Element MFJ Cable Coaxial Cable Connector I-PEX20308-111R-13 Connector Info(general description) Pictures of Antennas Latest Regulator Information for Bondi - Hitachi Monopole Type - MFJ (Multi Frame Joiner) Micro Coaxial Connector Hitachi Cable, Ltd. Takasago Works, 880 Isagozawa-cho Hitachi-shi, Ibaraki-ken, 319-1418 Japan http://www.hitachi-cable.co.jp/ Main Antenna Aux Antenna Front ViewBackside View Front View Backside View MAIN ANTENNA DRAWING AUX ANTENNA DRAWING Vertical 2.412 GHz 2.442 GHz 2.484 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 2.412 GHz 2.442 GHz 2.484 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Vertical 5.150 GHz 5.250 GHz 5.350 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 5.150 GHz 5.250 GHz 5.350 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Vertical 5.470 GHz 5.598 GHz 5.725 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 5.470 GHz 5.598 GHz 5.725 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Vertical 2.412 GHz 2.442 GHz 2.484 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 2.412 GHz 2.442 GHz 2.484 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Vertical 5.150 GHz 5.250 GHz 5.350 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 5.150 GHz 5.250 GHz 5.350 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Vertical 5.470 GHz 5.598 GHz 5.725 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10 Horizontal 5.470 GHz 5.598 GHz 5.725 GHz -40 Gain (dBi) 10 0 -10 -20 -30 -40 -50 -30 -20 -10 0 10

RF Exposure Info

                                  !   "#$$%&%$' "(#$$&%$(          )  !) ! *(&('$$( *(&('$$%            ! ($(+,- . + /   0+ 1 -'$$+ 2 +.3  **"'"""##445"&6& 7 **"'"""##((                                        8        ,9     .:-       ;7 7  ; -    0<  !"#$%&'$(!)#**$"+,$-$!)#./0$"+,1$2-3%%$(0)40*$"+,$-$0)/0*$"+,1$+56789:3$(0)#;*$"+,$-$0);!0$"+,1$ :<=7<<>$">?<$ !)#*$"+,$!)#0$"+,$!)0*"+,$0)40$"+,$0)!0$"+,$0)/0$"+,$0)#;$"+,$0)0@;0$"+,$0);!0$"+,$ A7>B$CD?$        ':%3$ :EF$CD?$                 A7>B$CD?$         :2G$ :EF$CD?$                     !    &  =  9  : 9   )  !)     ! ($(+,- . + /   0+ 1 -'$$+ 2 +.3  =     - 2 : /! %:                  =   9              = , : - ,9    (&&>((' .:-    '"4>((' 7  -  9    -  9  = ,   :   ?  ;%<6 ?! 18,!  (&&$*($6((( '"4('4%$(%('  @          (; %A 0 - B@     ! 1./   ( /   % A 0 - B@     ! 1./   ' / : 6             @    9 :            !   " #    #$%% &    '$()#*%% !   " + , #''%%  .C  -  .  %   )/0-% 1%      *2%  ..  3   *4 )-%,%5 6 .  ..   ')%! 0-%,%51 #  " -.  ! 7 ,"  '83'% .  : 9  !  $8%. 1%  -  .  .%   )-% 89 '5 6#:;<'5 6:$;<  ..   '% 5 6#';<              .   ..   '8#)5-%51 B  -   8 !3 8 3'%    , !% 5 6 13 .- 7 ,"         CONFIG F REQ GH z Avg dBi Pk dBi                                   !""# #"$  % "& &"!"" " '  "# # (( 2G4 ISM (2.400 GHz - 2.4835 GHz) Antenna Radiation Patterns ) & ")*"#  +$",- +$". 2G4 ISM (2.400 GHz - 2.4835 GHz) / ,- / . Main Horizontal    Main Vertical    Aux Horizontal    Aux Vertical                     CONFIG F REQ GH z Avg dBi Pk dBi                           !""# #"$  % "& &"!"" " '  "# # +$". U-NII (5.150 GHz - 5.350 GHz) / ,- / . U-NII (5.150 GHz - 5.350 GHz) Antenna Radiation Patterns +$",- ) & ")*"#  (( Main Horizontal       Main Vertical       Aux Horizontal       Aux Vertical                        CONFIG F REQ GH z Avg dBi Pk dBi                                      !""# #"$  % "& &"!"" " '  "# # HyperLAN (5.470 GHz - 5.725 GHz) Antenna Radiation Patterns +$",- ) & ")*"#  (( +$". HyperLAN (5.470 GHz - 5.725 GHz) / ,- / . Main Horizontal        Main Vertical        Aux Horizontal        Aux Vertical               

Test Report

Page 1 of 16 Report Number: INTEL-031126F FCC ID: PD9WM3A2200BG Limited Modular Approval Test Report And Application for Grant of Equipment Authorization Pertaining To: EUT FCC ID: Intel PRO/Wireless 2200BG Network Connection, MN: WM3A2200BG PD9WM3A2200BG Configuration Tested with in 802.11b / 802.11g With a set of Wistron NeWeb Corp. and Hitachi Antennas MEASUREMENTS PERFORMED IN ACCORDANCE WITH Regulatory Standard(s) 47 CFR Part 15, Subpart C Section 15.247 Test Method: ANSI C63.4: 1992 American National Standard for Methods of Measurement of Radio-Noise Emissions from Low- Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz Certificate Number: 1111.01 APPLICANT: PREPARED BY: Intel Corporation Aegis Labs, Inc. EC2-02 13280 Evening Creek Drive 22431 Antonio Parkway B160-417 San Diego, California 92128 Rancho S. Margarita, CA 92688 Contact(s): Mr. James K. Baer Agent(s): Mr. Steve Kuiper Mr. Rick Candelas Test Report #: INTEL-031126F APPENDICES REPORT BODY A TOTAL PAGES PAGES 16 69 85 Test Report Revision: None The contents of this report shall not be reproduced except in full, without the written approval of Aegis Labs, Inc. Page 2 of 16 Report Number: INTEL-031126F FCC ID: PD9WM3A2200BG TABLE OF CONTENTS SECTION TITLE PAGE COVER SHEET.................................................................................... 01 TABLE OF CONTENTS............................................................................................... 02 1.0 CERTIFICATION OF TEST DATA............................................................................. 03 2.0 SUMMARY OF TEST RESULTS.............................................................. 04 3.0 ADMINISTRATIVE DATA AND TEST DESCRIPTION.......................................... 05 4.0 DESCRIPTION OF EUT..................................................................................... 06 4.1 EUT Description..................................................................................... 06 4.1.1 Channel Number and Frequencies................................................................ 07 4.2 EUT Configuration.................................................................................. 08 4.3 List of EUT Sub-Assemblies and Host Equipment...................................................... 09 4.4 I/O Cabling Diagram and Description............................…

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Contact Information

Applicant

Benjamin Lavenant(Regulatory Engineer)
[email protected]0493001400Fax: 0493001401

Technical Contact

Aegis labs Inc.Rick Candelas
[email protected]949 459 7886

23091 Antionio Parkway · Rancho Santa Margarita, California · United States

Test Firm

AEGIS Labs, Inc.Steve Kuiper
[email protected]949-454-8295Fax: 9498295839

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz56.00 mW
Modular Type
Limited Single Modular Approval
Confidentiality
Long Term
Grant Notes
Limited Modular Approval (LMA). Power Output listed is conducted. Power reductions required for Channels 1 and 11 as specified in this filing. Approval is limited to OEM installation only. The antenna used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. OEM integrators must be provided with antenna installation instructions. OEM integrators and end-users must be provided with transmitter operation conditions for satisfying RF exposure compliance. This grant is valid only when the device is sold to OEM integrators and the OEM integrators are instructed to ensure that the end user has no manual instructions to remove or install the device.

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