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J3OWPCI5000Wreless PCI Adapter

Xircom
Wreless PCI Adapter - FCC ID J3OWPCI5000 - Xircom
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Application Details

Equipment Class
NII - Unlicensed National Information Infrastructure TX
Date of Grant
Mar 26, 2002
Application Purpose
Original Equipment
Date of Application
Mar 26, 2002
Equipment Note
Wreless PCI Adapter
Frequency Range
5250.00000000 - 5320.00000000
Company
Xircom
Country
United States

Documents & Files

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Users Manual

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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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Operational Description

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Parts List/Tune Up Info

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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

Intel® PRO/Wireless 5000 LAN Products Quick Installation Guide 2 Copyright © 2001, Intel Corporation. All rights reserved. Intel Corporation assumes no responsibility for errors or omissions in this document. Nor does Intel make any commitment to update the information contained herein. Intel is a registered trademark of Intel Corporation. Other product and corporate names may be trademarks of other companies and are used only for explanation and to the owners' benefit, without intent to infringe. 801-0311-001A November 2001 3 Table of Contents Installing the Access Point.......................... 4 Installing the CardBus Adapter ................. 11 Installing the PCI Adapter.......................... 14 4 Intel® PRO/Wireless 5000 LAN Products User Documentation In addition to this Quick Installation Guide, Intel provides extensive online documentation for the PRO/Wireless 5000 LAN product line on the Intel CD- ROM in HTML format. Note: The Intel CD-ROM may contain documentation for other Intel products in addition to the PRO/Wireless 5000 LAN Products. Please disregard the documentation for other products. All documentation for the PRO/Wireless 5000 LAN Products is accessible by clicking a button on the autorun menu screen displayed when the Intel CD- ROM is inserted into the computer (if this screen does not appear, run autorun.exe from the root directory of the Intel CD-ROM). Disregard any documentation on the CD-ROM that is not accessible through this autorun menu screen. Installing the Access Point Package Contents x Intel® PRO/Wireless 5000 LAN Access Point (model WSAP5000) x Mounting hardware x Power supply and power cord x CD-ROM containing software and online documentation x Quick Installation Guide (this manual) Installation Options and Requirements x (Recommended) To set up and configure the access point, use a wired client workstation connected to the access point directly or connected to the wired LAN to which the access point is connected. Initial setup and configuration must be done over a wired connection, but subsequent changes can be made over a wireless connection. x (Optional) Use DHCP server support for automatic assignment of an IP address to the access point over the wired network. You can configure the access point to use DHCP to get its IP address. See Using DHCP on page 8. 5 Connect and Power Up the Access Point Connect the Access Point to the Wired Network x Plug an RJ-45 Category 5 Ethernet cable into the RJ-45 connector on the access point and into a 10/100 Ethernet wall connector or hub. Connect the Access Point to an AC Power Source x Plug the power adapter into a wall outlet. x Plug the power adapter cable into the socket on the bottom of the access point. LED Indicators Once the access point is connected to a wired network and is powered on, check the LED indicators to verify that the unit is functioning correctly. If the access point fails to initialize, restart it by disconnecting and reconnecting power. x The "Ready" LED at the bottom of the row of LEDs should be lit. x If the access point is connected to a LAN through an Ethernet cable, the "Wired Link" LED should be lit (green for 10 Mbps, orange for 100 Mbps) and the "Wired network activity" LED should be blinking. x If the access point is communicating with a wireless adapter, the "Wireless radio activity" LED should be flashing. Viewed top to bottom, the LED indicators on the access point have the following functions. Wired link  Green for 10 Mbps wired network speed, orange for 100 Mbps.  Wired network activity  Yellow blinking shows activity.  Wireless radio association  Green will be ON if a client is associated to the access point and OFF if not.  Wireless radio activity  Yellow flashes steadily if no adapter associated, and more rapidly when transferring data.  Wireless radio association  Future use.  Wireless radio activity  Future use.  Ready  Green. This indicator will stay illuminated after the access point has completed the initialization sequence.  6 Configuring the Access Point for the First Time 1. Set up a portable or desktop computer as a configuration workstation from which to view the browser-based Configuration Management System used to configure the access point. 2. Connect the configuration workstation to the access point either directly (using a crossover RJ-45 cable) or through a hub or switch (using a standard RJ-45 cable). 3. The configuration workstation must be running Microsoft Windows® XP, 2000, Me, or 98, and one of the following web browsers: Microsoft Internet Explorer version 5.50 or Netscape Navigator version 4.78 or 5.x 4. Set up the configuration workstation initially with an IP address compatible with the default IP address and default subnet of the access point. For example, based on the access point default IP address 192.0.2.1 and default subnet 255.255.0.0, the client workstation could be set to 192.0.2.2, 192.0.2.3, or a similar address not in use by another device. 5. Once the workstation has been configured as just described, type the default access point IP address as a URL in the browser address field: http://192.0.2.1. 6. To access the Express Setup pages, type a user name and a password. The default for both is: Intel. The password is case-sensitive: capital "I," lower case "ntel." 7. Use Express Setup to configure the access point with a new IP address, subnet, and other settings suitable for the network to which it will be permanently connected (see table on page 7). 8. Click Apply first, then click Restart AP. After the access point has restarted, connect it to the required network. 9. Once the access point has been configured and connected to the network, the configuration interface can be viewed from any workstation on the same network segment or subnet. Open a compatible browser and type the actual IP address of the access point as a URL in the address field. Note: To view configuration, function or option changes on the browser p…

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Cover Letter(s)

File: R46202 February 8, 2002 Jim Baer Intel Corporation 2300 Corporate Center Drive Thousand Oaks, CA. 91320 Subject: FCC and IC Emissions Report, WPCI5000 Dear Mr. Baer: A report has been created detailing the results of the FCC and IC electromagnetic emissions testing performed on the WPCI5000. This has been submitted to the American TCB for a Grant of Equipment Authorization pursuant to Subpart E of Part 15 of FCC Rules (CFR 47) regarding intentional radiators and to Industry Canada as a Low Power, Licence Exempt Radio Communications Device. Please find this report enclosed. This report has been sent to American TCB and Industry Canada. We will periodically check the status of the applications and immediately communicate any problems, should they arise. To check on the status of the Industry Canada application yourself, you can go to the following URL: http://spectrum.ic.gc.ca/~cert/index2_e.html If you have any questions, please don't hesitate to call us at 408-245-7800. Sincerely, Juan Martinez Senior EMC Engineer JM/dmg Enclosure: R46202 File: R46202 February 8, 2002 American TCB 6731 Whittier Ave. Suite C110 McLean, VA. 22101 Gentlemen: The enclosed documents constitute a formal submittal and application for a Grant of Equipment Authorization pursuant to Subpart E of Part 15 of FCC Rules (CFR 47) regarding intentional radiators. Data within this report demonstrates that the equipment tested complies with the FCC limits for intentional radiators. Elliott Laboratories, as duly authorized agent prepared this submittal. A copy of the letter of our appointment as agent is enclosed. If there are any questions or if further information is needed, please contact Elliott Laboratories for assistance. Sincerely, Juan Martinez Senior EMC Engineer JM/dmg Enclosures: Agent Authorization Letter Emissions Test Report with Exhibits File: R46202 February 8, 2002 Industry Canada, Certification Section Certification and Engineering Bureau 1241 Clyde Avenue Ottawa, Canada K2C 1Y3 Gentlemen: The enclosed documents constitute a formal submittal and application for Certification pursuant to RSS- 210 and RSP-100 regarding low power, licence-exempt radiocommunications devices. Data within this report demonstrates that the equipment tested complies with the RSS-210, Issue 4 limits for such devices. Please note that a summary of results is provided on page 5 of this report and the test data is provided in EXHIBIT 2. The device in question is a PCI Card w/ WM3A5000 Mini PCI card. The PCI card is used inside PC computers, which provides wireless networking capability. Model Number: WPCI5000. Elliott Laboratories, as duly authorized agent prepared this submittal. A copy of the letter of our appointment as agent is enclosed. Please also find enclosed a credit card authorization form. If there are any questions or if further information is needed, please contact Elliott Laboratories for assistance at [email protected]. Sincerely, Juan Martinez Senior EMC Engineer JM/dmg Enclosures: Application Form Application Fee Agent Authorization Letter Emissions Test Report with Exhibits File: R46202 Page 1 of 20 Electromagnetic Emissions Test Report and Application for Grant of Equipment Authorization pursuant to FCC Part 15, Subpart E (UNII Devices) and Industry Canada RSS 210 Issue 4 (LELEAN Devices) on the Intel Corporation Model: WPCI5000 FCC ID: J3OWPCI5000 GRANTEE: Intel Corporation 2300 Corporate Center Drive Thousand Oaks, CA. 91320 TEST SITE: Elliott Laboratories, Inc. 684 W. Maude Avenue Sunnyvale, CA 94086 REPORT DATE: February 8, 2002 FINAL TEST DATE: January 18 and January 19, 2002 AUTHORIZED SIGNATORY: ______________________________ Juan Martinez Senior EMC Engineer This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: February 8, 2002 File: R46202 Page 2 of 20 pages DECLARATIONS OF COMPLIANCE Equipment Name and Model: WPCI5000 Manufacturer: Intel Corporation 2300 Corporate Center Drive Thousand Oaks, CA. 91320 Tested to applicable standards: RSS-210, Issue 4, December 2000 (Low Power License-Exempt Radiocommunication Devices) FCC Part 15 Subpart E (UNII Devices) Measurement Facility Description Filed With Department of Industry: Departmental Acknowledgement Number: IC2845 SV3 Dated July 30, 2001 Departmental Acknowledgement Number: IC2845 SV4 Dated July 19, 2001 I declare that the testing was performed or supervised by me; that the test measurements were made in accordance with the above mentioned departmental standards (through the use of ANSI C63.4 as detailed in section 5.3 of RSS-210, Issue 4); and that the equipment performed in accordance with the data submitted in this report. Signature ______________________________ Name Juan Martinez Title Senior EMC Engineer Company Elliott Laboratories Inc. Address 684 W. Maude Ave Sunnyvale, CA 94086 USA Date: February 8, 2002 Maintenance of compliance with the above standards is the responsibility of the manufacturer. Any modification of the product which may result in increased emissions should be checked to ensure compliance has been maintained (i.e., printed circuit board layout changes, different line filter, different power supply, harnessing or I/O cable changes, etc.). Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: February 8, 2002 File: R46202 Page 3 of 20 pages TABLE OF CONTENTS COVER PAGE..................................................................................................................................................................................1 DECLARATIONS OF COMPLIANCE......................................................................................................................................2 TABLE OF CONTENTS.............................................................................................................................................................…

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Cover Letter(s)

File: R46203 February 8, 2002 Jim Baer Intel Corporation 2300 Corporate Center Drive Thousand Oaks, CA. 91320 Subject: FCC Emissions Report, WPCI5000 Dear Mr. Baer: A report has been created detailing the results of the FCC electromagnetic emissions testing performed on the WPCI5000 for authorization under a FCC Declaration of Conformity. Please find this report enclosed. Per Federal Communication Commission regulations, the signature of an official of the company responsible for marketing the WPCI5000 is required for this report to be acceptable for determining compliance. After this report has been signed, we recommend filing it in a safe place for future reference. Once an official has signed page 3 of this report, you may begin shipping the WPCI5000, making sure each unit is manufactured with any modifications described in the report, the proper FCC label is attached and the appropriate FCC statement is included in the operator's manual. If you have any questions, please don't hesitate to call us at 408-245-7800. Sincerely, Juan Martinez Senior EMC Engineer JM/dmg Enclosure: Emissions Report File: R46203 Page 1 of 15 Electromagnetic Emissions Test Report for a Declaration of Conformity per FCC Part 15, Subpart B Specifications for a Class B Digital Device on the Intel Corporation Model: WPCI5000 MANUFACTURER: Intel Corporation 2300 Corporate Center Drive Thousand Oaks, CA. 91320 TEST SITE: Elliott Laboratories, Inc. 684 W. Maude Avenue Sunnyvale, CA 94086 REPORT DATE: February 8, 2002 FINAL TEST DATE (S): January 25 and January 26, 2002 AUTHORIZED SIGNATURE: ______________________________ Juan Martinez Senior EMC Engineer NVLAP LAB CODE 200069-0 Elliott Laboratories, Inc. is accredited by the National Voluntary Laboratory Accreditation Program under Lab Code 200069-0 for Federal Communications Commission Methods, CISPR Methods, and Austel Technical Standards. This shall not be construed as an endorsement by NVLAP or any other agency of the US government. This report shall not be reproduced, except in its entirety, without the written approval of Elliott Laboratories, Inc. Elliott Laboratories, Inc. -- EMC Department Test Report Report Date: February 8, 2002 File: R46203 Page 2 of 15 pages TABLE OF CONTENTS COVER PAGE..................................................................................................................................................................................1 TABLE OF CONTENTS...............................................................................................................................................................2 SCOPE.............................................................................................................................................................................................3 VALIDATING SIGNATURES.....................................................................................................................................................3 OBJECTIVE...................................................................................................................................................................................4 EMISSION TEST RESULTS.......................................................................................................................................................5 LIMITS OF CONDUCTED INTERFERENCE VOLTAGE....................................................................................................5 LIMITS OF RADIATED INTERFERENCE FIELD STRENGTH.........................................................................................5 MEASUREMENT UNCERTAINTIES....................................................................................................................................6 EQUIPMENT UNDER TEST (EUT) DETAILS..........................................................................................................................7 GENERAL...................................................................................................................................................................................7 ENCLOSURE..............................................................................................................................................................................7 MODIFICATIONS....................................................................................................................................................................7 SUPPORT EQUIPMENT..........................................................................................................................................................7 EUT INTERFACE PORTS........................................................................................................................................................8 EUT OPERATION.....................................................................................................................................................................8 TEST SITE......................................................................................................................................................................................9 GENERAL INFORMATION....................................................................................................................................................9 CONDUCTED EMISSIONS CONSIDERATIONS................................................................................................................9 RADIATED EMISSIONS CONSIDERATIONS....................................................................................................................9 MEASUREMENT INSTRUMENTATION................................................................................................................................10 RECEIVER SYSTEM..............................................................................................................................................…

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External Photos

Front side of Mini PCI Card with shield Front side of PCI Card with Mini PCI card

ID Label/Location Info

Approved by IDA for use in Singapore. DBxxxxx Intel ® PRO/Wireless 5000 LAN PCI Adapter Model WPCI5000 x-xxxx-xx-xxxx C US LISTED E178682 E178682 I.T.E.I.T.E. U L xxxxxxxx FOR HOME OR OFFICE USE Tested to Comply with FCC Standards FCC ID: J3OWPCI5000 Product of Malaysia CANADA ICES/NMB-003 Class/Classe (B) CANADA: XXXXXXXXXXX REVISIONS REV.DESCRIPTIONDATEAPPROVED APer ECN 24376M. Klutch UNLESS OTHERWISE SPECIFIED DIMENSIONS ARE IN INCHES TOLERANCES ARE: FRACTIONS DECIMALS ANGLES ±.008 MATERIAL FINISH DO NOT SCALE DRAWING CONTRACT NO. APPROVALS DATE DRAWN K. Hovsepian02-22-02 CHECKED N. Guetschoff APPROVED R. San Jose C. Claybaugh B. Winters L. Thum LABELS, APPRVLS, WPCI5000 SIZE FSCM NO.DRAWING NO.REV. A830-1649-001 A SCALE = 1”= 1”SHEET 1 OF 1 THIS DOCUMENT CONTAINS INFORMATION PROPRIETARY TO XIRCOM, INC. AND IS FURNISHED TO FOR THE PURPOSE OF INSTALLATION, OPERATION OR MAINTENANCE OF THE ITEM(S) DESCRIBED HEREIN. ALL OTHER USES OF THIS DOCUMENT OR ITS CONTENTS ARE NOT AUTHORIZED BY XIRCOM, INC. © 2002 ALL RIGHTS RESERVED. COPYING OF THIS DOCUMENT IS UNLAWFUL WITHOUT THE WRITTEN PERMISSION OF XIRCOM, INC., THOUSAND OAKS, CA 91320-1420. 3 7 1 2 1 2 • ELECTRONIC ART: REF. ARTWORK #832-2494-001A (ADOBE ILLUSTRATOR 9.0 FORMAT) • LABEL MATERIAL AND SUPPLIER MUST BE UL APPROVED • A/W PART NUMBERS TO PRINT ON ALL FILM LAYERS (CMYK OR PMS) IF FILM IS REQD • CLEANING TEST: PERFORM LABEL CLEANING TEST PER XIRCOM QA LABEL CLEANING TEST #XQI-0002-001 • GAP BETWEEN LABELS ON ROLL TO BE BETWEEN 3.175MM (.125”) • ALL TEXT/GRAPHICS TO BE BLACK UNLESS OTHERWISE SPECIFIED IN ART FILE • FOR LABEL ORIENTATION ON ROLL, REF: DWG #802-0016-001, PAGEMAKER 5.0 FILE • MARK PART NUMBER AND REVISION IN CONSPICUOUS AREA ON OUTSIDE OF BULK PACKAGING FINISH • MATTE MATERIAL • MYLAR, WHITE, 2.3 MIL FACESTOCK, 3M#7815; ACRYLIC PERM ADHESIVE, 3M#310, 0.8 MIL (PENANG REQMT); OR XIRCOM APPROVED EQUIVALENT NOTES:(UNLESS OTHERWISE SPECIFIED) 44.00mm (1.73”) 8 36.50mm (1.44”) PRELIMINARY LABEL KEYLINE DOES NOT PRINT 1.27mm (.05”) R 4 PLACES 6 4 9 10 8 5 5

ID Label/Location Info

Printed By: Robert PaxmanReference Only unless DC stampedDate Printed: 25-Feb-2002 09:45:25 Number: 175-1487-001Rev: 02 24398Status: Prototype

Internal Photos

External Antenna Front side of PCI Card Back Side of PCI Card Front side of Mini PCI Card without shield Back side of Mini PCI card

Operational Description

Hardware Functional Specification WM3A5000 Mini PCI 3A 802.11a (Atheros Chipset) Original: Lynn Schilder 1. SUMMARY The Mini PCI 802.11a (WM3A5000) is Xircom’s Mini PCI 3A wireless card. This Type 3A card is designed to operate with the Access Point mother board. This 802.11a wireless card is IEEE compliant, features bus mastering, and supports BPSK, QPSK, 16QAM, and 64QAM modulation schemes. The adapter supports the following data rates: 6, 9, 12, 18, 24, 36, 48 and 54 Mbps and operates in the unlicensed 5-GHz spectrum. The card operates with a 3.3V supply from the host socket. The Host interface is PCI 2.2 and PC Card 7.1 Standards compliant. 2. MRD REQUIREMENTS The WM3A5000 hardware generally meets the requirements outlined in the Marketing Requirements Document (MRD), Xircom document number 103-0926-001. The WM3A5000 is functionality, virtually identical to Xircom’s WCB5000 802.11a adapter. Both products may share the same software drivers. The typical 3.3V current has been measured on pre-production units under a variety of conditions, and is listed in the following chart: WCB5000 state 3.3V Current (mA) Initial Power-On state 32.0 No Association 420.0 Associated, idle 420.0 Associated, active 450.0-475.0 3. Functional Description This section contains a complete description of the WM3A5000 hardware architecture. It includes a block diagram of the Mini PCI Card followed by a functional description of each block. 3.1. Functional Block Diagram 3.2. Functional Description of PC Card 3.2.1. Mini PCI Interface The WM3A5000 interfaces with the host PC via an enhanced 68-pin connector. The 3.3V signaling conforms to the PCI Card Standard. The Mini PCI signals interface with the Athero AR5210 MAC Baseband Processor. 3.2.2. Atheros MAC Baseband Processor (AR5210) The AR5210 Processor integrates the Media Access Control (MAC) and baseband processing functions. It supports either the PCI or CardBus host interface. When this chip is used along with the Atheros Radio-on-a-Chip (AR5110) the result is an IEEE 802.11a 5GHz design. The AR5210 Processor implements a half-duplex, Orthogonal Frequency Division Multiplexing (OFDM) baseband processor supporting data rates from 6 Mbps to 54 Mbps. It uses the following modulation schemes: BPSK (binary phase shift keying), QPSK (quadrature phase shift keying), 16QAM (16 quadrature amplitude modulation), and 64QAM (54 quadrature amplitude modulation). Other features include: channel estimation, symbol timing, frequency offset estimation, signal detection, automatic gain Atheros MAC Baseband Processor Antennas EEPROM 256x16/512 x8 32 MHz Osc. Mini PCI Interface Tx,Rx LED Signals LEDs Atheros Radio Chip control, and forward error correction coding at rates of 1/2, 2/3 and 3/4.The AR5210 operates in accordance to the 802.11a specification with regards to transmit and receive frame filtering, frame encryption, and error recovery. It also controls data transfers with the host, interrupts, status and error reporting, power-down sequencing and hardware register access. Following is a description of the hardware interfaces on the ASIC utilized by the WM3A5000. 3.2.3.1. Host Interface The host interface on the AR5210 is designed for PCI/CardBus applications. It consists of 32 bits of address and data, as well as all the required PCI control signals. The chip supports the 3.3V signaling environment, with clock speeds up to 33 MHz. Most of the host interface signals are bi-directional. The DMA block is a full bus mastering descriptor based engine. 3.2.3.2. Serial EEPROM Interface The WM3A5000 is designed to support an EEPROM. The ROM contains configuration options, subsystem vendor IDs, CIS Pointers to be stored in AR5210, Boot ROM code, and manufacturing information. The EEPROM is a 256x16/512x8. The AR5210 supports the industry standard I 2 C “2-wire” serial interface to an external 256x16 bit EEPROM. The EEPROM stores configuration information for the PCI/CardBus. At power-up, the serial EEPROM reads logic internal to AR5210, automatically downloads configuration information and the Card Information Structure (CIS) into internal SRAM for the host PC to read. For more information on the serial EEPROM, refer to the Atheros AR5210 MAC/Baseband Processor Specification (attached to P/N 419-0024-001). 3.2.3.3. General Purpose Bits The AR5210 has 6 bi-directional GPIO ports that are independently configured as input or output via the GPIO control register. One port is used on this design as an output LED driver for “ASSOCIATE”. 3.2.3.4 LED Drivers Two output pins are provided for LED drivers. Only one is used on this design, LED_0 which is used for network “ACTIVITY”. Blinking of LED indicates network activity. 3.2.3.5 Antenna Switch The AR5210 supports two antennas through Host software processing. The default antenna is the first antenna on which transmission is attempted. The same antenna is used for receive. If two transmissions fail in a row the second antenna is switched in for transmission and receive. 3.2.3.6 Phase Locked Loop The PLL takes the base 32MHz clock from the AR5110 and derives either 40MHz or 80MHz as a core frequency. The baseband processor and the ADC/DAC use these clock frequencies. 3.2.3 Single-chip Radio (AR5110) The AR5110 radio chip is an integrated, IEEE 802.11a compliant, 5GHz CMOS transceiver. It requires no external active components or SAW filters. The transceiver core, digital logic, and VCO are powered by 2.5V. The I/O’s are powered by 3.3V. The AR5110 supports eight channels between 5.15 and 5.35 GHz, leaving two 20MHz channels unused as a guard band. Across the 5.12 and 5.25 GHz band the FCC permits a maximum transmit power of 50mW, the design outputs less than 40mW. The FCC permits a maximum power rating of 250mW in the 5.25 to 5.35 GHz band, but is limited to less than 100mW in this design. The 20MHz channels are divided into 52 carriers, 48 carry data and 4 are pilot signals. All 52 carriers are always used. Varying modulation and err…

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Parts List/Tune Up Info

2/11/2002 8:03:05 AM Company Proprietary Created by: Robert Paxman 100-0920-004 BOM EXPLOSION REPORT PCBA,WM3A5000RICK,W/SHIELD FOR RICKSHAW 01 Part Number Part Description Part Revision LevelPart TypeItem NumberRevPart DescriptionFind Num QtyRef DesNotes 0Part100-0920-004PCBA, WM3A5000RICK, W/SHIELD FOR RICKSHAW .1Part200-0920-002BPCB, WM3A5000DAP, 5V11 ..2Part200-SPEC-001BSPEC, QA REQUIREMENTS, PCB100 .1Part600-0330-001ACAP, C0G, 15pF, 5%, 50V, 0402, T=0.61mm MAX24C1, C7, C13, C28 .1Part600-0331-001ACAP, C0G, 6.8pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 34C2, C6, C15, C27 .1Part600-0332-001ACAP, C0G, 10pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 47C4, C5, C8, C22, C23, C160, C162 .1Part600-0333-001ACAP, C0G, 2.2pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 52C20, C46 .1Part601-0030-001A3CAP, TANT, 3.3uF, 20%, 6.3V, 0805, EIA 201262C12, C17 .1Part600-0206-001A1CAP, C0G, 22pF, 5%, 50V, 0402, T=0.61mm MAX726C18, C31, C32, C36, C38, C40, C53, C54, C59, C61, C63-C65, C68, C69, C73, C78, C80, C82, C88, C89, C93, C108, C156, C163, C164 .1Part600-0343-001ACAP, X5R, 2.2uF, 10%, 10V, 0805, T=1.45mm MAX87C10, C16, C114, C116, C154, C155, C161 .1Part600-0334-001ACAP, X5R, 22uF, 20%, 6.3V, 1210, T=2.2mm MAX93C11, C91, C101 .1Part600-0205-001A4CAP, X7R, 0.01uF, 10%, 16V, 0402, T=0.60mm MAX103C14, C33, C92 .1Part600-0335-001ACAP, C0G, 8.0pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 112C26, C157 .1Part600-0296-001ACAP, X5R, 1.0uF, 10%, 10V, 0603, T=0.9mm MAX128C19, C30, C83, C84, C180-C183 .1Part600-0302-001A1CAP, X7R, 1000pF, 10%, 50V, 0402, T=0.60mm MAX1310C25, C35, C118, C145-C151 Page 1 of 5 2/11/2002 8:03:11 AM Company Proprietary Created by: Robert Paxman 100-0920-004 BOM EXPLOSION REPORT PCBA,WM3A5000RICK,W/SHIELD FOR RICKSHAW 01 Part Number Part Description Part Revision LevelPart TypeItem NumberRevPart DescriptionFind Num QtyRef DesNotes .1Part600-0310-001A1CAP, X7R, 470pF, 10%, 50V, 0402, T=0.55mm MAX149C37, C39, C41, C58, C60, C62, C66, C79, C81 .1Part600-0336-001ACAP, C0G, 0.5pF, +/-.1pF, 50V, 0402, T=0.55mm MAX156C9, C21, C42-C44, C49 .1Part600-0337-001ACAP, C0G, 27pF, 1%, 50V, 0603, T=0.90mm MAX162C56, C57 .1Part600-0339-001ACAP, C0G, 39pF, 5%, 50V, 0402, T=0.61mm MAX172C52, C55 .1Part600-0204-001A1CAP, C0G, 100pF, 5%, 50V, 0402183C29, C50, C67 .1Part600-0338-001ACAP, C0G, 3.9pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 194C70, C71, C75, C77 .1Part600-0315-001B1CAP, X7R, 330pF, 10%, 50V, 0402, T=0.60mm MAX201C72 .1Part600-0301-001A1CAP, C0G, 4.7pF, +/-.25pF, 50V, 0402, T=0.55mm MAX 212C74, C76 .1Part600-0342-001ACAP, X5R, 4.7uF, 10%, 10V, 1206, T=1.8mm MAX224C85, C87, C98, C99 .1Part600-0276-001ACAP, X5R, 0.1uF, 10%, 10V, 0402, T=0.55mm MAX2310C24, C95, C102, C121, C122, C126, C128, C132, C135, C138 .1Part600-0306-001A1CAP, C0G, 1.0pF, +/-.25pF, 50V, 0402, T=0.60mm MAX 241C51 .1Part600-0171-001A2CAP, X7R, 0.1uF, 10%, 16V, 0603, T=0.035"MAX251C45 .1Part601-0012-001A5CAP, TANT, 10uF, 10%, 6.3V, 1206, EIA 3216 (A)261C86 .1Part601-0011-001A6CAP, TANT, 4.7uF, 20%, 10V, 1206, EIA 3216 (A)271C34 .1Part420-0100-001ADIODE, PIN, 100V, 1A, HSMP-389C, SOT-323282D1, D2 .1Part2000587A1DIODE, SW, ARY, BAV99, SOT23291D7 .1Part702-0044-001AFILTER, BANDPASS, 5.3GHz, SMD-3301F1 .1Part240-0386-001ACONN, RCPT, 5GHz COAX, RA, SMD311J4 Page 2 of 5 2/11/2002 8:03:17 AM Company Proprietary Created by: Robert Paxman 100-0920-004 BOM EXPLOSION REPORT PCBA,WM3A5000RICK,W/SHIELD FOR RICKSHAW 01 Part Number Part Description Part Revision LevelPart TypeItem NumberRevPart DescriptionFind Num QtyRef DesNotes .1Part535-0156-001AIND, 1.5uH, 2%, 330mA, 2.3 OHM, 1008324L1, L7, L9, L22 .1Part535-…

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Contact Information

Applicant

Robert W. Paxman(Compliance Engineer)
[email protected]805-376-9300Fax: 805-376-9311

Technical Contact

Elliott Laboratories, Ltd.Juan Martinez
[email protected]408 245 7800

684 West Maude Avenue · Sunnyvale, California · United States

Test Firm

Elliott Laboratories LLCDavid Bare
[email protected]408-245-7800Fax: 408-245-3499

Technical Specifications

#Rule PartsFrequency RangePower OutputTolerance
215E5.25 GHz - 5.32 GHz126.00 mW20 ppm
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. 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. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

Other Applications from Xircom

WLAN Accesspoint - FCC ID J3OWSAP2000 - Xircom
J3OWSAP2000

WLAN Accesspoint

Jun 09, 2002

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
LAN Access Point - FCC ID J3OWDAP5000 - Xircom
J3OWDAP5000

LAN Access Point

May 28, 2002

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter
Mini PCI Card - FCC ID J3OWM3A5000 - Xircom
J3OWM3A5000

Mini PCI Card

May 23, 2002

Equipment Class

NII - Unlicensed National Information Infrastructure TX
Intel PRO/ Wireless 5000 Cardbus Adapter - FCC ID J3OWCB5000A - Xircom
J3OWCB5000A

Intel PRO/ Wireless 5000 Cardbus Adapter

Apr 18, 2002

Equipment Class

NII - Unlicensed National Information Infrastructure TX
Spread Spectrum PCI Card Transceiver Module - FCC ID J3OM3AWEB56GA - Xircom
J3OM3AWEB56GA

Spread Spectrum PCI Card Transceiver Module

Dec 25, 2001

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter