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QS3WBCII1PCMCIA Wireless LAN Card

TwinMOS Technologies Inc.
PCMCIA Wireless LAN Card - FCC ID QS3WBCII1 - TwinMOS Technologies Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Feb 17, 2003
Application Purpose
Original Equipment
Date of Application
Feb 13, 2003
Equipment Note
PCMCIA Wireless LAN Card
Frequency Range
2412.00000000 - 2462.00000000
Company
TwinMOS Technologies Inc.
Country
Taiwan

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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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

TwinMOS PCMCIA 802.11b PCMCIA Wireless LAN Card User’s Manual TwinMOS ® TwinMOS Laputa PCI TwinMOS Page 1 Contents PACKAGE CONTENTS..............................................................1 INTRODUCTION..........................................................................2 WIRELESS NETWORK OVERVIEW............................................3 LAPUTA PCI WIRELESS NETWORK SCENARIOS...........6 INSTALLATION FOR WINDOWS..................................................9 CONFIGURATION UTILITY.........................................................19 TROUBLESHOOTING.........................................................25 TECHNICAL SPECIFICATIONS............................................26 TwinMOS Laputa PCI TwinMOS Page 2 PACKAGE CONTENTS Unpack your Laputa PCMCIA kit and verify that all items are present. z Laputa PCMCIA Wireless LAN Adapter z Coaxial Cable of Antenna (Option) z External Antenna (Option) z User’s Manual (on CD) z Driver (on CD) If any of the items described appear to be damaged or missing, please contact your reseller. TwinMOS Laputa PCI TwinMOS Page 3 INTRODUCTION The Laputa PCMCIA adapter is a wireless network client that complies with the IEEE 802.11b standard on wireless LANs. The IEEE 802.11b standards compliance means this adapter gives you the flexibility to connect it to any 802.11b network. The IEEE802.11b Ethernet standard allows you to connect computers and devices at speeds up to 11Mbps, dependent upon the distance between wireless adapters, the configuration of your working environment, or the capabilities or limitations of your computer systems. This Laputa PCMCIA Adapter is z Wi-Fi certified by the WECA. This means that your Laputa PCMCIA adapter is compatible with other supplier’s IEEE 802.11b compliant WLAN products. z Fully compatible with any other WLAN system base on Direct Sequence Spread Spectrum (DSSS) radio technology. This Laputa PCMCIA Adapter supports following WLAN features z Automatic transmit data rate select mechanism in the transmit range of 1, 2, 5.5 and 11 Mbps. z Center frequency channel selection (2.4 GHz) z Roaming over multiple channels. z Power Management. z 128-bit Wired Equivalent Privacy (WEP) data encryption. This Laputa PCMCIA comes with software drivers for the most popular Microsoft Windows operating systems and can be integrated into a larger network, running Windows XP, Windows 2000, Windows ME, or Windows 98 in either Peer-to-Peer mode or Infrastructure mode. This manual provides a quick introduction to wireless technology and its application as it relates to networking. Take a moment to read through this manual and familiarize you with wireless technology. You should also give yourself some time to become familiar with your new wireless network. TwinMOS Laputa PCI TwinMOS Page 4 WIRELESS NETWORK OVERVIEW A wireless local area network (LAN) is a flexible data communications system implemented as an extension to, or as an alternative for, a wired LAN. Using radio frequency (RF) technology, wireless LANs transmit and receive data over the air, minimizing the need for wired connections. Thus, wireless LANs combine data connectivity with user mobility. A local area network that transmit and receive over the air typically in an unlicensed frequency such as the 2.4GHz band. A wireless LAN does not require lining up devices for line of sight transmission like IrDA. Wireless access points (base stations) are connected to an Ethernet hub or server and transmit a radio frequency over an area of several hundred to a thousand feet which can penetrate walls and other nonmetal barriers. Roaming users can be handed off from one access point to another like a cellular phone system. Laptops use wireless modems that plug into an existing Ethernet port or that are self contained on PC cards, while stand-alone desktops and servers use plug-in cards (ISA, PCI, etc.). Wireless LANs offer the following productivity, convenience, and cost advantages over traditional wired networks Mobility - WLAN provide LAN users to access data in any location within the operating range of the WLAN. Ad-hoc management decisions based on real-time information can significantly improve worker efficiency. Installation Speed and Simplicity - Installing a wireless LAN system can be fast and easy and can eliminate the need to pull cable through walls and ceilings. Installation Flexibility - Wireless technology allows the network to go where wire cannot go. Reduced Cost-of-Ownership - While the initial investment required for wireless LAN hardware can be higher than the cost of wired LAN hardware, overall installation expenses and life-cycle costs can be significantly lower. Long-term cost benefits are greatest in dynamic environments requiring frequent moves and changes. Scalability - Wireless LAN systems can be configured in a variety of topologies to meet the needs of specific applications and installations. Configurations are easily changed and range from peer-to-peer networks suitable for a small number of users to full infrastructure networks of thousands of users that enable roaming over a broad area. Installation Considerations Designed to go up to 300 feet (100 meters) indoors and up to 900 feet (273 meters) outdoors, Laputa PCMCIA lets you access your network from virtually anywhere you want. Keep in mind, however, that the number and thickness of walls, ceilings or other objects that the wireless signals must pass thru may limit range. Typical ranges vary depending on the types of materials and background RF noise in your TwinMOS Laputa PCI TwinMOS Page 5 home or business. The key to maximizing range is to follow these basic principles: TwinMOS Laputa PCI TwinMOS Page 6 Keep the number of walls and ceilings between the access point and your receiving device to a minimum - Each wall or ceiling can reduce your TwinMOS Laputa Wireless product’s range from 3-90 feet (1-30 meters.) For some businesses or for a large residential home deployment, it may be…

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External Photos

Company : TwinMOS Technologies Inc. Model: 73-TMWBC-001 Product : PCMCIA Wireless LAN CardPage: 1 of 2 Company : TwinMOS Technologies Inc. Model: 73-TMWBC-001 Product : PCMCIA Wireless LAN CardPage: 2 of 2

ID Label/Location Info

Company : TwinMOS Technologies Inc.Model : 73-TMWBC-001 Product : PCMCIA Wireless LAN Card PCMCIA Wireless LAN Card Model No: 73-TMWBC-001 FCC IDQS3WBCII1 This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: [1] this device may not cause harmful interference and [2] this device must accept any interference received, including interference that may cause undesired operation. S/N Made in Taiwan

Internal Photos

Company : TwinMOS Technologies Inc. Model: 73-TMWBC-001 Product : PCMCIA Wireless LAN CardPage: 1 of 3 Company : TwinMOS Technologies Inc. Model: 73-TMWBC-001 Product : PCMCIA Wireless LAN CardPage: 2 of 3 Company : TwinMOS Technologies Inc. Model: 73-TMWBC-001 Product : PCMCIA Wireless LAN CardPage: 3 of 3

Operational Description

Description of Operation EUT is a PCMCIA Wireless LAN Card with 11 channels. This device provided four kind of transmitting speed 1,2,5.5 and 11Mbps. The device of RF carrier is DQPSK,DB PSK and CCK. The device adapts direct sequence spread spectrum modulation. The Connector antenna was scolded on PCB provided diversity function to improve the receiving function. This PCMCIA Wireless LAN Card is an IEEE 802.11b Wireless LAN adapter. It allows your computer to connect to a wireless network and to share resources, such as files or printers without being bound to the network wires. Operation in 2.4GHz Direct Sequence Spread Spectrum (DSSS) radio transmission, the PCMCIA Wireless LAN Card transfers data at speeds up to 64/128-bit Wired Equivalent Protection(WEP) algorithm is used. In addition, its standard compliance ensures that it can communicate with any 802.11b network.

Test Report

FCC ID :QS3WBCII1 Report No.:510-9112-027F Page 1 of 39 Industrial Technology Research Institute Electronics Research & Service Organization Bldg. 17, 195-4 Sec. 4, Chung Hsing Rd., Chutung,Hsinchu, 310 Taiwan,Republic Of China TEL : 886-3-5917069 FAX : 886-3-5825720 ELECTROMAGNETIC COMPATIBILITY TEST REPORT Company : TwinMOS Technologies Inc. Address : 303 No.3,Tzu Chiang Rd.,Hu Kou Xiang,Hsin Chu, Taiwan,R.O.C . Product name : PCMCIA Wireless LAN Card Model name : 73-TMWBC-001 Date Received : DEC. 23, 2002 Date Tested : DEC. 24-25, 2002 MEASUREMENT REQUIREMENT USED : 47 CFR Part 15, Subpart B and Subpart C (Section 15.247), ANSI C63.4-1992 WE HEREBY CERTIFY THAT: The measurements shown in the attachment were made in accordance with the procedures indicated, and the energy emitted by the equipment was found to be within the limits applicable. We assume full responsibility for the accuracy and completeness of these measurements and vouch for the qualifications of all persons taking them. Notes : 1. This report will be invalid if duplicated or photocopied in part. 2. This report refers only to the specimen(s) submitted to test, and is invalid as seperately used. 3. This report is invalid without examination stamp and signature of this institute. 4. The tested specimen(s) will be preserved for thirty days from the data issued. 5. The report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government. FCC ID :QS3WBCII1 Report No.:510-9112-027F Page 2 of 39 Industrial Technology Research Institute Electronics Research & Service Organization Bldg. 17, 195-4 Sec. 4, Chung Hsing Rd., Chutung,Hsinchu, 310 Taiwan,Republic Of China TEL : 886-3-5917069 FAX : 886-3-5825720 TABLE OF CONTENTS TITLEPAGE NO. 1. GENERAL INFORMATION ...................................................................................................... 4 1.1 GENERAL STATEMENT ................................................................................................ 4 1.2 GENERAL DESCRIPTION OF EUT & POWER ............................................................ 4 1.3 DESCRIPTION OF PERIPHERALS ................................................................................ 5 1.4 EUT & PERIPHERALS SETUP DIAGRAM ................................................................... 6 1.5 EUT OPERATING CONDITION ..................................................................................... 6 1.6 DESCRIPTION OF TEST SITE........................................................................................ 7 1.7 SUMMARY OF TEST RESULTS .................................................................................... 7 2. CONDUCTED POWERLINE TEST .......................................................................................... 8 2.1 TEST EQUIPMENTS........................................................................................................ 8 2.2 TEST SETUP ..................................................................................................................... 8 2.3 CONDUCTED POWER LINE EMISSION LIMIT .......................................................... 9 2.4 TEST PROCEDURE ......................................................................................................... 9 2.5 UNCERTAINTY OF CONDUCTED EMISSION............................................................ 9 2.6 CONDUCTED RF VOLTAGE MEASUREMENT.......................................................... 10 2.7 PHOTOS OF CONDUCTION TEST ................................................................................ 11 3. RADIATED EMISSION TEST................................................................................................... 12 3.1 TEST EQUIPMENTS........................................................................................................ 12 3.2 TEST SETUP ..................................................................................................................... 12 3.3 RADIATION LIMIT ......................................................................................................... 13 3.4 TEST PROCEDURES ....................................................................................................... 14 3.5 UNCERTAINTY OF RADIATED EMISSION................................................................ 14 3.6 RADIATED RF NOISE MEASUREMENT ..................................................................... 15-23 3.7 PHOTOS OF OPEN SITE ................................................................................................. 24-25 4. 6dB BANDWIDTH MEASUREMENT ...................................................................................... 26 4.1 TEST EQUIPMENTS........................................................................................................ 26 4.2 TEST SETUP ..................................................................................................................... 26 4.3 LIMITS OF 6dB BANDWIDTH MEASUREMENT ....................................................... 26 4.4 TEST PROCEDURE ......................................................................................................... 26 4.5 UNCERTAINTY OF CONDUCTED EMISSION............................................................ 26 4.6 TEST RESULTS................................................................................................................27 4.7 PHOTO OF 6DB BANDWIDTH MEASURERMENT .................................................... 28 5. MAXIMUM PEAK OUTPUT POWER...................................................................................... 29 5.1 TEST EQUIPMENTS........................................................................................................ 29 5.2 TEST SETUP ..................................................................................................................... 29 5.3 LIMITS OF MAXIMUM PEAK OUTPUT POWER ..................…

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Test Setup Photos

FCC ID QS3WBCII1 Report No.510-9112-027F Page 1 of 3 Industrial Technology Research Institute Electronics Research & Service Organization Bldg. 17, 195-4 Sec. 4, Chung Hsing Rd., Chutung,Hsinchu, 310 Taiwan,Republic Of China TEL : 886-3-5917069 FAX : 886-3-5825720 2.7 PHOTOS OF CONDUCTION TEST FCC ID QS3WBCII1 Report No.510-9112-027F Page 2 of 3 Industrial Technology Research Institute Electronics Research & Service Organization Bldg. 17, 195-4 Sec. 4, Chung Hsing Rd., Chutung,Hsinchu, 310 Taiwan,Republic Of China TEL : 886-3-5917069 FAX : 886-3-5825720 3.7 PHOTOS OF OPEN SITE FCC ID QS3WBCII1 Report No.510-9112-027F Page 3 of 3 Industrial Technology Research Institute Electronics Research & Service Organization Bldg. 17, 195-4 Sec. 4, Chung Hsing Rd., Chutung,Hsinchu, 310 Taiwan,Republic Of China TEL : 886-3-5917069 FAX : 886-3-5825720 3.7 PHOTOS OF OPEN SITE

Contact Information

Applicant

Sam Hsu(Manager)
[email protected]+886-3-597-1755Fax: +886-3-597-8422

Test Firm

Compliance Certification Services Inc.Paul Liau
[email protected]886-3-5915994Fax: 886-3-5825720

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz14.00 mW
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. This is a portable device. The antenna used for this transmitter 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.

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