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KBCIX260-PROAC750GoBook II computer with PCS and WLAN

General Dynamics Itronix Corporation
GoBook II computer with PCS and WLAN - FCC ID KBCIX260-PROAC750 - General Dynamics Itronix Corporation
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Oct 16, 2004
Application Purpose
Original Equipment
Date of Application
Oct 16, 2004
Equipment Note
GoBook II computer with PCS and WLAN
Frequency Range
2412.00000000 - 2462.00000000
Company
General Dynamics Itronix Corporation
Country
United States

Documents & Files

Select a file to view

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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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(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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Users Manual

Radio Specific Safety Information License Agreement. Itronix hardware products may be reconditioned, or be manufactured from parts and components that may be new, used, rebuilt, or recycled and in some cases, the hardware product may not be new and may have been previously installed. In any event, Itronix warranty terms apply . Trademark and Patent Notice Itronix is a registered trademark of Itronix Corporation. GoBook II is a registered trademark of Itronix Corporation Microsoft, MS, Windows, and MS-DOS are registered trademarks of Microsoft Corporation. IBM is a trademark of International Business Machines Corporation. Warnings and Safety Information WARNING It is important that only authorized Itronix personnel attempt repairs on Itronix equipment as this might void any maintenance contract with y our company . Unauthorized service personnel might be subject to shock hazard on some Itronix equipment if removal of protective covers is attempted. Changes or modifications not expressly approved by the party responsible for compliance could void the users authority to operate the equipment. Internal radio may have an individual FCC Identifiers which are not applicable to this configuration. Only the FCC ID: (KBCIX260-PROAC750) shown on the label located on the bottom of the IX260 Laptop PC is applicable. The IX260 Laptop PC must not be co-located or operating in conjunction with any other antenna or transmitter than specified in the filing . This FCC identifier does include PAN ,WLAN and WAN Radio's. Cradle option does support External WAN Antenna's for this FCC Identifier. Safety Information This device contains a WLAN radio transmitter. When using the WLAN transmitter, a minimum separation distance of 20 cm must be maintained between the upper right edge of the display screen and all users/by standers. The WLAN transmitter should be turned off before carrying the Laptop PC order to comply with FCC RF exposure requirements. This device contains a WAN radio transmitter. When using the WAN transmitter, a minimum separation distance of 20 cm must be maintained between the upper right edge of the display screen and all users/by standers. The WAN transmitter should be turned off before carrying the Laptop PC order to comply with FCC RF exposure requirements . This device contains a PAN radio transmitter. When using the PAN transmitter, a minimum separation distance of 20 cm must be maintained between the upper left edge of the display screen and all users/by standers. The WLAN transmitter should be turned off before carrying the Laptop PC order to comply with FCC RF exposure requirements . Radio Specific Information July 6th 2004 Page 1

Cover Letter(s)

EXHIBIT XIII - Cover Letters New Certification Report for the FCC ID: KBCIX260-PROAC750 Cover Letter 1.) Certification Action Requested Cover Letter 2.) Request for Confidentiality under Part 0.459. Cover Letter 3.) ITRONIX Agent Authorization letter allowing Rod Munro to sign FCC Form 731 on behalf of ITRONIX, Corp. Exhibit 13

External Photos

Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 Exhibit 3 External Photos I INTEL Pro Model: WM3B2200BG, WLAN location in IX260 EXHIBIT 3 1 Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 INTEL Pro Model: WM3B2200BG, with labels front and back INTEL Pro Model: WM3B2200BG, without labels front and back EXHIBIT 3 2

External Photos

© 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem co-located with WLAN & Bluetooth Transmitter Test Report S/N: 071603-405/406/407KBC EXTERNAL EUT PHOTOGRAPHS © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem co-located with WLAN & Bluetooth Transmitter Test Report S/N: 071603-405/406/407KBC EXTERNAL EUT PHOTOGRAPHS © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem co-located with WLAN & Bluetooth Transmitter Test Report S/N: 071603-405/406/407KBC EXTERNAL EUT PHOTOGRAPHS © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem co-located with WLAN & Bluetooth Transmitter Test Report S/N: 071603-405/406/407KBC EXTERNAL EUT PHOTOGRAPHS with Vehicle Cradle & 3 dBi Gain Vehicle Antenna (MaxRad P/N: WMLPVDB800/1900) © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem co-located with WLAN & Bluetooth Transmitter Test Report S/N: 071603-405/406/407KBC EXTERNAL EUT PHOTOGRAPHS Vehicle Cradle

ID Label/Location Info

Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 LIST OF EXHIBITS DESCRIPTION EXHIBITS REFERENCE I. Identification label Information 1 2.1033 (b) 7 & 2.925 & General Information 1A 1. Production Plans 2.1031 2. Application References N/A 3. Data submittal Procedure 4. Similar Certified Transmitter II. Certification Data 2 III. External Photographs 3 2.1033 (b) 7 IV. Block Diagrams (Circuit Diagrams) -confidential 4 2.1033 (b) 5 V. Schematic Diagrams & Antenna Assembly -confidential 5 2.1033 (b) 5 VI. Supplemental Test Report WLAN 6 2.1033 (b) 6 Part 15.247 – DTS, WLAN IX 260 Supplemental EMC Test Report, For a previously Certified WLAN Intentional Radiator Module INTEL, Corp. FCC ID: PD9WM3B2200BG with the Rangestar antenna 1) Reference Conducted RF Power Output Part 15.247(b) and Equivalent Isotropic Radiated Power 2) Field Strength of Three Fundamental Operating Frequencies 3) Radiated Harmonics and Spurious Emissions 802.11(b) mode 4) Radiated Harmonics and Spurious Emissions 802.11(g) mode 5) Band Edge measurements 802.11(b) mode 6) Band Edge measurements 802.11(g) mode 7) AC Power Line Conducted Emissions 150 kHz – 30 MHz, Part 15.107(a) 8) Radiated Spurious Emissions 30 – 1000 MHz, Part 15.209 (a) Note: We reference some of the original test report exhibits for items Required by Part 15.247 (a), (b (1)), (d). Exhibit 1 1 Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 DESCRIPTION EXHIBITS REFERENCE VII. Test Set-up Procedures 7 2.1041 VIII. Instruction Manual 8 2.1033 (b) 3 IX. Internal Photographs 9 2.1033 (b) 7 X. Part List and Tune Up Procedures -confidential 10 2.1033 XI. MPE RF Exposure Information 11 2.1093 & 15.247 (b)4 XII. Operational Description -confidential 12 2.1033 (b) 1, 2, 4, 8 Antenna Requirements 12 15.203 XIII. Cover Letter, Action Requested 13 Cover Letter, Request For Confidentiality 13 Cover Letter, Authorization to sign FCC Form 731 13 Please NOTE: Exhibits 4, 5 and 10 & 12 are requested to held confidential EXHIBIT 1. FCC and INDUSTRY CANADA IDENTIFICATION LABEL The FCC Identifier label required under Section: 47 CFR, 2.1033(c) 11 for the FCC ID: KBCIX260-PROAC750 is located on page following. The IC Identifier required by RSP-100 is also displayed. Exhibit 1 2 Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 FCC ID label location on the bottom side of IX260 PC FCC ID label is the large label, with a silver background and black lettering, located right of center, between the covers labeled RAM and BATTERY. II II V Note: Part 15.19 labeling requirement and compliance statement, located in upper left side, black label. Sample of the label text is below. Exhibit 1 3

Internal Photos

Top View “Shielding removed”

Internal Photos

© 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem, WLAN, & Bluetooth Transmitter Test Report S/N: 071603-407KBC INTERNAL EUT PHOTOGRAPHS Cradle Contact Board © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem, WLAN, & Bluetooth Transmitter Test Report S/N: 071603-407KBC INTERNAL EUT PHOTOGRAPHS Sierra Wireless AirCard 750 PCS GPRS PCMCIA Modem Card © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem, WLAN, & Bluetooth Transmitter Test Report S/N: 071603-407KBC INTERNAL EUT PHOTOGRAPHS Sierra Wireless AirCard 750 PCS GPRS PCMCIA Modem Card © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem, WLAN, & Bluetooth Transmitter Test Report S/N: 071603-407KBC INTERNAL EUT PHOTOGRAPHS Sierra Wireless AirCard 750 PCS GPRS PCMCIA Modem Card © 2003 Celltech Labs Inc. ITRONIX CORPORATION FCC ID: KBCIX260A750MPIBT (Model: IX260) Rugged Laptop PC with PCS GSM/GPRS Modem, WLAN, & Bluetooth Transmitter Test Report S/N: 071603-407KBC INTERNAL EUT PHOTOGRAPHS Sierra Wireless AirCard 750 PCS GPRS PCMCIA Modem Card

RF Exposure Info

Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 EXHIBIT 11 - MPE CALCULATION DATA FCC ID: KBCIX260-PROAC750 Applicant: ITRONIX, Corp. Model: IX260 with the two co-located transmitters listed below 1.)Sierra Wireless, AirCard 750, WAN with IX260 blade antenna Tx Freq: 1880.00 MHz Source based time averaged conducted Power @ antenna terminal input: 28.12 Antenna Gain: 2.6 dBi -supporting MPE calculations on page 3. 2.) INTEL PRO WM3B2200BG, WLAN with Rangestar antenna PN: 100929 Tx Freq: 2437 MHz Max Peak Power @ antenna terminal input: 17.41 dBm Antenna Gain: 4.5 dBi -supporting MPE calculations on page 3. Exhibit 11 1 Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 Prediction of MPE Limit OET Bulletin 65, Edition 97-01 ________ S = PG/4 πR 2 R = √ PG/4πS S= power density P= power input to the antenna G= power gain of the antenna in the direction of interest relative to an isotropic radiator R= distance to the center of radiation of the antenna The AirCard 750 WAN and the WLAN do not transmit at the same time, so multiple frequency exposure information is not provided for this device. Individual calculations were made for the: 1.) IX260 with the AirCard 750 with the IX260 blade antenna, 2.) IX260 with the AirCard 750 with the MaxRad 3 dBi Gain - Vehicular Antenna mount (P/N:WMLPVDB800/1900). 3.) IX260 with the INTEL PRO WM3B2200BG, WLAN with the Rangestar antenna, 4.5 dBi Gain, PN: 100929 MPE calculations for general population/uncontrolled limits are on the following pages. Exhibit 11 2 Applicant: ITRONIX, Corp. FCC ID: KBCIX260-PROAC750 MPE General Population/Uncontrolled AirCard 750 GSM GPRS Tx Frequency: 1880.00 MHz Max. Peak Power Antenna Input Terminal: 28.12 dBm Antenna gain: 2.60 dBi S= 5.00 (mW/cm^2) P= 648.6344 (mW) G= 1.82 (numeric) R = 9.69 (cm) Field Density S (mw/cm^2) at 20cm = 0.234562924 (mw/cm^2) AirCard 750 GSM GPRS With MaxRad 3 dBi Gain - Vehicular Mount Antenna (P/N:WMLPVDB800/1900) Tx Frequency: 1880.00 MHz Max. Peak Power Antenna Input Terminal: 28.12 dBm 3 dBi Antenna gain (2.8 dB cable loss, in 17feet 3.0 dBi is not included). S= 1.00 (mW/cm^2) P= 648.6344 (mW) G= 2.0 (numeric) R = 10.15 (cm) Field Density S (mw/cm^2) at 20cm = 0.257193132 (mw/cm^2) INTEL PRO WLAN Tx. Frequency: 2437.00 MHz Max. Peak Power Antenna Input Terminal: 17.41 dBm Antenna gain: 4.5 dBi S= 1.00 (mW/cm^2) P= 55.0808 (mW) G= 2.82 (numeric) R = 3.51 (cm) Exhibit 11 3 Field Density S (mw/cm^2) at 20cm = 0.030850298 (mw/cm^2)

Test Report

Page 1 of 15 Report Number: INTEL-031111F FCC ID: PD9WM3B2200BG Modular Approval Test Report And Application for Grant of Equipment Authorization Pertaining To: EUT FCC ID: 802.11b/g MiniPCI Type 3B Wireless Adapter, MN: WM3B2200BG PD9WM3B2200BG Configuration 802.11b / 802.11g 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-031111F APPENDICES REPORT BODY A TOTAL PAGES PAGES 15 81 96 Test Report Revision: Rev. C, 12-12-2003 The contents of this report shall not be reproduced except in full, without the written approval of Aegis Labs, Inc. Page 2 of 15 Report Number: INTEL-031111F FCC ID: PD9WM3B2200BG 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............................................................................. 10 5.0 TEST EQUIPMENT AND TEST SETUPS............................................................... 11 5.1 AC Power Line Conducted Emissions............................................................ 11 5.2 Spurious Radiated Emissions...................................................................... 12 5.3 Conducted Emissions At The Antenna Port.................................................................... 12 5.4 Test and Measurement Equipment Used......................................................... 13 6.0 SAMPLE CALCULATIONS.......................................................................................... 14 7.0 MODIFICATIONS AND RECOMMENDATIONS........................................ 15 APPENDICES A Test Data Page 3 of 15 Report Number: INTEL-031111F FCC ID: PD9WM3B2200BG 1.0 CERTIFICATION OF TEST DATA Aegis Labs, Inc. operates as both a Nevada and California Corporation with no organizational or financial relationship with any company, institution, or private individual. Testing and engineering functions provided by Aegis Labs are furnished through the use of part-time, full-time or consulting engineers with the appropriate qualifications to carry out their duties. The intended purpose of this test report is to describe the measurement procedure and to determine whether the equipment under test “EUT” complies with both the conducted and radiated limits. Limits for emissions testing are described under Subpart C of Part 15 of the FCC rules. The data, data evaluation and equipment configuration represented herein are a true and accurate representation of the Equipment Under Test (EUT) under the requirements specified in the emissions standard as described below. The test results contained in this report are only representative of the test sample tested as described in Section 3.0 of this report. Certification of the EUT is required as a prerequisite to marketing as defined in Part 2 of the FCC Rules. Prepared By: ________________________11/19/03 Rick Candelas Date: Staff Engineer Aegis Labs, Inc. Report Approved By: ________________________11/19/03 Steve J. Kuiper Date: Quality Assurance Manager Aegis Labs, Inc. Page 4 of 15 Report Number: INTEL-031111F FCC ID: PD9WM3B2200BG 2.0 SUMMARY OF TEST RESULTS The test results provided within this report, indicate that the EUT has been found to be in COMPLIANCE with the test specifications based upon the following RF compliance standards: Pass/Fail determination is based upon the nominal values of the test data. EMISSIONS STANDARD FCC Part 15 Section Description Results Comments 15.247(a)(2) The minimum 6dB bandwidth shall be at least 500 kHz. PASSED See Data Sheets 15.247(b)(1) The maximum peak output power of the intentional radiator shall not exceed 1 watt. PASSED See Data Sheets 15.247(b)(4) The intentional radiator shall be operated in a manner that ensures that the public is not exposed to radio frequency energy levels in excess of the FCC guidelines per Section 1.1307(b)(1). PASSED Refer to MPE Calculations Exhibit 15.247(c) In any 100 kHz bandwidth outside the frequency band in which the spread spectrum intentional radiator is operating, the radio frequency power that is produced by the intentional radiator shall be at least 20 dB below that in the 100 kHz bandwidth within the band that contains the highest level of the desired power. PASSED See Data Sheets 15.247(c) Radiated emissions, which fall in the restricted bands, as defined in Sec. 15.205(a), must also comply with the radiated emission limits specified in Sec. 15.209(a). All others must be < -20dBc. PASSED See Data Sheets 15.247(d) T…

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Test Report

Exhibit VI EXHIBIT VI. Test Report FCC ID: KBCIX260-PROAC555 IX260 GoBook PC This Supplemental Test Report For The WLAN Intentional Radiator Under Part 15.247 DTS Co-located with a Sierra Wireless AirCard 555 NOTE: The transmitters do not transmit at the same time Prepared On Behalf Of ITRONIX, Corporation 801 South Stevens Street Spokane, WA 99204 By Spectrum Technology, Inc., 209 Dayton Street, Suite 205 Edmonds, WA 98020 425 771-4482 June 28, 2004 Applicant: ITRONIX, Corporation FCC ID: KBCIX260-PROAC555 Exhibit VI 2 Supplemental Test Report TABLE OF CONTENTS Cover Page1 Table of Contents2 Reference Conducted RF Power Output Part 15.247(b) 3 & Equivalent Isotropic Radiated Power Field Strength of Three Fundamental Operating Frequencies4 Radiated Harmonics and Spurious Emissions 802.11(b) mode5 – 6 Radiated Harmonics and Spurious Emissions 802.11(g) mode 7 - 8 Band Edge measurements 802.11(b) mode9 - 12 Band Edge measurements 802.11(g) mode13 -16 AC Power Line Conducted Emissions 150 kHz – 30 MHz17 - 20 Radiated Spurious Emissions 30 – 1000 MHz Part 15.209 (a)21 - 23 Note: Equipment list and EUT test set up photos are located in Exhibit 7 Note: Please refer to the OEM Certification exhibits under FCC ID: WM3B2200BG, Intel Model: WM3B2200BG for original test report data and confidential exhibits where appropriate. The original test report is uploaded as a supporting exhibit along with this report. Applicant: ITRONIX, Corporation FCC ID: KBCIX260-PROAC555 Exhibit VI 3 EXHIBIT 6A - TEST: CONDUCTED RF POWER OUTPUT Applicant:ITRONIX, Corporation Model: IX260 with AirCard 555 (WAN), & INTEL PRO WM3B2200BG, (WLAN) Minimum Standard Specified:Part 15.247(b) (1) is 1 Watt for DTS Test Results:The measured output power level shows compliance with the Limit and the power granted for the OEM module. Authorization Procedure: Part 2.1046 Maximum Conducted Power Output:17.41dBmor 0.05508 mW Please be advised that we wish to reference the conducted power output in the original Intel Report Number: INTEL- 031111F. Specifically, on page 60 of the report the Maximum conducted output power for either (b) or (g) mode of operation is reported. This power level is representative of the maximum conducted power output for this Intentional Radiator module, the INTEL PRO WM3B2200BG, (WLAN). A copy of this referenced INTEL test report was uploaded with this filing for the conducted measurements data applicable to this module. Conducted RF Output Power and EIRP with the Rangestar Antenna WLAN These conducted power output below are the maximum values from Page 60 the original Intel Report Number: INTEL-031111F. Frequency GHz Power dBm Cable lossCorrected Level dBm Ant. Gain dBi EIRP 2.41217.260.1517.414.521.91 2.43717.260.1517.414.521.91 2.46217.210.1517.214.521.71 Applicant: ITRONIX, Corporation FCC ID: KBCIX260-PROAC555 Exhibit VI 4 EXHIBIT 6G - TEST: FIELD STRENGTH OF FUNDAMENTAL OPERATING FREQUENCIES Applicant:ITRONIX, Corporation FCC ID: KBCIX260-PROAC555 Model: IX260 with AC555, (WAN), & INTEL PRO, WM3B2200BG, (WLAN) Minimum Standard Specified:Part 15.247(c), 15.205 & 15.209(a) Spectrum OATS at Fluke Park II Test Date: 06/21/04 Test Results:Equipment complies with standard Authorization Procedure: Part 2.1053 Test Equipment Set Up:See Block Diagram in Exhibit 7 WLAN:2412 – 2462 MHz band Field Strength for Low, Mid and High Channel WLAN 802.11(b) Channel & Frequency GHz 11 Mbps Ant. Vert/ Horz Spectrum Analyzer Reading dBuV + Ant Factor - Amp Gain + Cable Loss = dBuV/m @ 3 meters or uV/m @ 3 meters Ch. 1 Low 2.412 V 63.23 28.37 0 3.5695.1657280 Ch. 6 Mid 2.437 V 62.0 28.37 0 3.7694.1350874 Ch.11 High 2.462 V 60.30 28.37 0 3.8592.5242267 Ch. 1 Low 2.412 H 59.66 28.37 0 3.5691.5937975 Ch. 6 Mid 2.437 H 59.96 28.37 0 3.7692.0940225 Ch.11 High 2.462 H 57.77 28.37 0 3.8589.9931586 WLAN 802.11(g) Channel & Frequency GHz 54 Mbps Ant. Vert/ Horz Spectrum Analyzer Reading dBuV + Ant Factor - Amp Gain + Cable Loss = dBuV/m @ 3 meters or uV/m @ 3 meters Ch. 1 Low 2.412 V 61.16 28.37 0 3.5693.0945133 Ch. 6 Mid 2.437 V 60.45 28.37 0 3.7692.5842560 Ch.11 High 2.462 V 59.78 28.37 0 3.8592.039811 Ch. 1 Low 2.412 H 58.22 28.37 0 3.5690.1532174 Ch. 6 Mid 2.437 H 58.0 28.37 0 3.7690.1332100 Ch.11 High 2.462 H 57.28 28.37 0 3.8589.5029854 Note: 1. The gain was adjusted with the test software to the maximum conducted output power level for both modes of operation prior to starting the radiated emissions measurements. Applicant: ITRONIX, Corporation FCC ID: KBCIX260-PROAC555 Exhibit VI 5 EXHIBIT 6 TEST: FIELD STRENGTH OF SPURIOUS RADIATED EMISSIONS FCC ID: KBCIX260-PROAC555 Applicant: ITRONIX Corp. Model: IX260 with AC555, (WAN), INTEL PRO, WM3B2200BG (WLAN) Minimum Standard Specified:Part 15.247(c) Authorization Procedure: Part 2.1053 Frequency Range Observed: 0 to 25 GHz Date: 6/21/04 Test Equipment Setup: See block diagram and photos in Exhibit 7 NOTE: WLAN 802.11(b) set for maximum data transfer rate 11 Mbps and max. power output. RADIATED HARMONIC AND SPURIOUS EMISSIONS & RESTRICTED BANDS Frequency GHz Max. SA Rdg. dBu/V Ant. Vert. or Horz. Peak or Average Detector Antenna Factor dB Cable & filter loss dB Amp Gain Corrected Reading dBuV/m Limit 74 Peak 54 Avg. dBu/V Margin in dB below LIMIT Fo - 2.412 4.82440.93 VPeak32.453.9723.254.15 7419.85 4.82426.55 VAverage32.453.9723.239.77 5414.23 7.23638.39 VPeak36.773.4225.952.68 7421.32 7.236 25.08 VAverage36.773.4225.939.37 5414.63 9.64837.95 VPeak37.554.8624.555.86 7418.14 9.66827.84 VAverage37.554.8624.545.75 548.25 Fo – 2.437 4.87440.78 VPeak32.453.9723.254.00 7420.00 4.87425.81 VAverage32.453.9723.239.03 5414.97 7.31138.07 VPeak36.773.4225.952.36 7421.64 7.31124.84 VAverage36.773.4225.939.13 5414.87 9.74837.75 VPeak37.554.8624.755.46 7418.54 9.74827.55 VAverage37.554.8624.745.26 548.74 Fo – 2.462 4.92437.50 VPeak32.453.9723.250.72 7423.28 4.92423.89 VAverage32.453.9723.237.11 5416.89 7.38638.12 VPeak36.773.4225.952.41 7421.59 7.38624.92 VAverage36.773.4225.939.21 5414.79 9.84837…

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Test Report

TEST: CONDUCTED SPURIOUS EMISSIONS Manufacturer: ITRONIX, Corporation. Name: IX260 Laptop PC Model : IX260 with AirCard 750 (WAN), INTEL PRO WM3B2200BG (WLAN) Quasi peak Average *decreasing with the log of the frequency Part 15.107(a) & 15.207(a) limits: 66 -56 dBu/V 56 to 46dBuV * 0.15 to .5 MHz * 56 dBuV 46 dBuV .5 to 5 MHz 60 dBuV 50 dBuV 5 to 30 MHz The equipment complies with the Quasi-peak and Average limits. Note: Plot below is Line 2 Peak detector for reference only. Quasi-peak and Average values listed below. ITRONIX IX260 w/AC750 & PRO Ref 75 dB μ V#Atten 10 dB Mkr1 1.87 MHz 45.79 dB μ V Peak Log 10 dB/ Offst 10 dB Start 150 kHz Res BW 9 kHzVBW 30 kHz Stop 30 MHz Sweep 840 ms (401 pts) 1 Marker 1.870000 MHz 45.79 dB μ V SignalPeak Ampl Qp Ampl Avg Ampl (7) Freq dB μ V dB μ V dB μ V 1 528.3 kHz46.1844.6744.11 2 980.5 kHz45.9545.2044.88 3 1.056 MHz46.1345.4745.11 4 1.283 MHz46.1745.3845.01 5 1.66 MHz46.3345.…

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Contact Information

Applicant

Ray Garcia(Agency Manager)
[email protected]954.846.3350Fax: 954.846.3392

Technical Contact

Spectrum Technology, IncRod Munro
[email protected]425 771-4482

209 Dayton Street, Suite 205 · Edmonds, Washington · United States

Test Firm

Spectrum Technology Inc.Rod Munro
[email protected]425-771-4482Fax: 425-771-9283

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz55.00 mW
Confidentiality
Long Term
Grant Notes
Power Output listed is Conducted. The antenna used with this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be collocated or operating in conjunction with any other antenna or transmitter than specified in the filing. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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