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H9P4111CDMAData Terminal with 3 Radios

Symbol Technologies Inc
Data Terminal with 3 Radios - FCC ID H9P4111CDMA - Symbol Technologies Inc
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Application Details

Equipment Class
PCT - PCS Licensed Transmitter worn on body
Date of Grant
Nov 11, 2003
Application Purpose
Original Equipment
Date of Application
Nov 11, 2003
Equipment Note
Data Terminal with 3 Radios
Frequency Range
824.70000000 - 843.31000000
Company
Symbol Technologies Inc
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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RF Exposure Info

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Test Report

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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

DIAD IV Terminal P r e l i m i n a r y DIAD IV Te r m i n a l © 2003 SYMBOL TECHNOLOGIES, INC. All rights reserved. Symbol reserves the right to make changes to any product to improve reliability, function, or design. Symbol does not assume any product liability arising out of, or in connection with, the application or use of any product, circuit, or application described herein. No license is granted, either expressly or by implication, estoppel, or otherwise under any patent right or patent, covering or relating to any combination, system, apparatus, machine, material, method, or process in which Symbol products might be used. An implied license only exists for equipment, circuits, and subsystems contained in Symbol products. Symbol, the Symbol logo, and Spectrum24 are registered trademarks of Symbol Technologies, Inc. Other product names mentioned in this manual may be trademarks or registered trademarks of their respective companies and are hereby acknowledged. Symbol Technologies, Inc. One Symbol Plaza Holtsville, N.Y. 11742-1300 http://www.symbol.com Patents This product is covered by one or more of the following U.S. and foreign Patents: U.S. Patent No. 4,593,186; 4,603,262; 4,607,156; 4,652,750; 4,673,805; 4,736,095; 4,758,717; 4,760,248; 4,806,742; 4,816,660; 4,845,350; 4,896,026; 4,897,532; 4,923,281; 4,933,538; 4,992,717; 5,015,833; 5,017,765; 5,021,641; 5,029,183; 5,047,617; 5,103,461; 5,113,445; 5,130,520; 5,140,144; 5,142,550; 5,149,950; 5,157,687; 5,168,148; 5,168,149; 5,180,904; 5,216,232; 5,229,591; 5,230,088; 5,235,167; 5,243,655; 5,247,162; 5,250,791; 5,250,792; 5,260,553; 5,262,627; 5,262,628; 5,266,787; 5,278,398; 5,280,162; 5,280,163; 5,280,164; 5,280,498; 5,304,786; 5,304,788; 5,306,900; 5,324,924; 5,337,361; 5,367,151; 5,373,148; 5,378,882; 5,396,053; 5,396,055; 5,399,846; 5,408,081; 5,410,139; 5,410,140; 5,412,198; 5,418,812; 5,420,411; 5,436,440; 5,444,231; 5,449,891; 5,449,893; 5,468,949; 5,471,042; 5,478,998; 5,479,000; 5,479,002; 5,479,441; 5,504,322; 5,519,577; 5,528,621; 5,532,469; 5,543,610; 5,545,889; 5,552,592; 5,557,093; 5,578,810; 5,581,070; 5,589,679; 5,589,680; 5,608,202; 5,612,531; 5,619,028; 5,627,359; 5,637,852; 5,664,229; 5,668,803; 5,675,139; 5,693,929; 5,698,835; 5,705,800; 5,714,746; 5,723,851; 5,734,152; 5,734,153; 5,742,043; 5,745,794; 5,754,587; 5,762,516; 5,763,863; 5,767,500; 5,789,728; 5,789,731; 5,808,287; 5,811,785; 5,811,787; 5,815,811; 5,821,519; 5,821,520; 5,823,812; 5,828,050; 5,848,064; 5,850,078; 5,861,615; 5,874,720; 5,875,415; 5,900,617; 5,902,989; 5,907,146; 5,912,450; 5,914,478; 5,917,173; 5,920,059; 5,923,025; 5,929,420; 5,945,658; 5,945,659; 5,946,194; 5,959,285; 6,002,918; 6,021,947; 6,029,894; 6,031,830; 6,036,098; 6,047,892; 6,050,491; 6,053,413; 6,056,200; 6,065,678; 6,067,297; 6,082,621; 6,084,528; 6,088,482; 6,092,725; 6,101,483; 6,102,293; 6,104,620; 6,114,712; 6,115,678; 6,119,944; 6,123,265; 6,131,814; 6,138,180; 6,142,379; 6,172,478; 6,176,428; 6,178,426; 6,186,400; 6,188,681; 6,209,788; 6,209,789; 6,216,951; 6,220,514; 6,243,447; 6,244,513; 6,247,647; 6,308,061; 6,250,551; 6,295,031; 6,308,061; 6,308,892; 6,321,990; 6,328,213; 6,330,244; 6,336,587; 6,340,114; 6,340,115; 6,340,119; 6,348,773; 6,380,949; 6,394,355; D305,885; D341,584; D344,501; D359,483; D362,453; D363,700; D363,918; D370,478; D383,124; D391,250; D405,077; D406,581; D414,171; D414,172; D418,500; D419,548; D423,468; D424,035; D430,158; D430,159; D431,562; D436,104. Invention No. 55,358; 62,539; 69,060; 69,187, NI-068564 (Taiwan); No. 1,601,796; 1,907,875; 1,955,269 (Japan); European Patent 367,299; 414,281; 367,300; 367,298; UK 2,072,832; France 81/03938; Italy 1,138,713 rev. 06/02 P r e l i m i n a r y 1 Quick Reference Introduction The DIAD IV Terminal is a durable hand-held or vehicle-mount radio data terminal. You can enter data by using the custom keypad, bar code scanner, or a combination of the two. You can transmit data from the terminal immediately by the radio link to a host computer. The main features of this terminal include: •Ergonomic design with illuminated color LCD display •Windows ® CE Operating System •Intel XScale TM application processor technology •Wireless Personal Area Network (WPAN), Wireless Local Area Network (WLAN) and optional Wireless Wide Area Net- work (WWAN) radios •1-Dimensional scanning capability •Color TFT LCD display •Touch screen •Printing support •IrDA-compliant interface for printing and communications. •Speaker and Microphone •Acoustic Modem and Dialer •Indicator •Power Management •Diagnostics •Application Software Loader •Systems Software Loader •Application Program Interfaces. P r e l i m i n a r y 2 DIAD IV Terminal About This Guide This guide provides instructions for the set up and operation of the terminal. The following topics are included: •Accessories on page 2 •Parts of the Terminal on page 3 •Getting Started on page 3 •Charging the Internal Battery on page 4 •Operating the Terminal on page 4 •Maintaining the Terminal on page 5 •Troubleshooting on page 6 •Regulatory Information on page 8. Accessories The following optional accessories are available from Symbol Technologies: •Belt Attachment •DIAD IV Depot Charger •Stylus •DIAD IV Vehicle Holder. P r e l i m i n a r y 3 Quick Reference Parts of the Terminal Note:The battery status LED lights only when the battery is charging in the DIAD IV Depot Charger. When the ter- minal is not charging, this LED is application depen- dent. Getting Started Before the terminal is used for the first time: 1. Remove the protective film covers from the LCD display and battery charging contacts. 2. Charge the internal battery using the DIAD IV Depot Charg- er. Before using the terminal for the first time, a full charge cycle is recommended. This can take up to six hours. Exit window LCD display Scan keys Stop complet e key Key state key Escape key Delete key Speaker Key state indicator Photo sensor Battery status LED Microphone Space key Backspace key Soft key cycle k…

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Users Manual

DIAD IV Terminal Regulatory Information Patents This product is covered by one or more of the following U.S. and foreign Patents: U.S. Patent No. 4,593,186; 4,603,262; 4,607,156; 4,652,750; 4,673,805; 4,736,095; 4,758,717; 4,760,248; 4,806,742; 4,816,660; 4,845,350; 4,896,026; 4,897,532; 4,923,281; 4,933,538; 4,992,717; 5,015,833; 5,017,765; 5,021,641; 5,029,183; 5,047,617; 5,103,461; 5,113,445; 5,130,520; 5,140,144; 5,142,550; 5,149,950; 5,157,687; 5,168,148; 5,168,149; 5,180,904; 5,216,232; 5,229,591; 5,230,088; 5,235,167; 5,243,655; 5,247,162; 5,250,791; 5,250,792; 5,260,553; 5,262,627; 5,262,628; 5,266,787; 5,278,398; 5,280,162; 5,280,163; 5,280,164; 5,280,498; 5,304,786; 5,304,788; 5,306,900; 5,324,924; 5,337,361; 5,367,151; 5,373,148; 5,378,882; 5,396,053; 5,396,055; 5,399,846; 5,408,081; 5,410,139; 5,410,140; 5,412,198; 5,418,812; 5,420,411; 5,436,440; 5,444,231; 5,449,891; 5,449,893; 5,468,949; 5,471,042; 5,478,998; 5,479,000; 5,479,002; 5,479,441; 5,504,322; 5,519,577; 5,528,621; 5,532,469; 5,543,610; 5,545,889; 5,552,592; 5,557,093; 5,578,810; 5,581,070; 5,589,679; 5,589,680; 5,608,202; 5,612,531; 5,619,028; 5,627,359; 5,637,852; 5,664,229; 5,668,803; 5,675,139; 5,693,929; 5,698,835; 5,705,800; 5,714,746; 5,723,851; 5,734,152; 5,734,153; 5,742,043; 5,745,794; 5,754,587; 5,762,516; 5,763,863; 5,767,500; 5,789,728; 5,789,731; 5,808,287; 5,811,785; 5,811,787; 5,815,811; 5,821,519; 5,821,520; 5,823,812; 5,828,050; 5,848,064; 5,850,078; 5,861,615; 5,874,720; 5,875,415; 5,900,617; 5,902,989; 5,907,146; 5,912,450; 5,914,478; 5,917,173; 5,920,059; 5,923,025; 5,929,420; 5,945,658; 5,945,659; 5,946,194; 5,959,285; 6,002,918; 6,021,947; 6,029,894; 6,031,830; 6,036,098; 6,047,892; 6,050,491; 6,053,413; 6,056,200; 6,065,678; 6,067,297; 6,082,621; 6,084,528; 6,088,482; 6,092,725; 6,101,483; 6,102,293; 6,104,620; 6,114,712; 6,115,678; 6,119,944; 6,123,265; 6,131,814; 6,138,180; 6,142,379; 6,172,478; 6,176,428; 6,178,426; 6,186,400; 6,188,681; 6,209,788; 6,209,789; 6,216,951; 6,220,514; 6,243,447; 6,244,513; 6,247,647; 6,308,061; 6,250,551; 6,295,031; 6,308,061; 6,308,892; 6,321,990; 6,328,213; 6,330,244; 6,336,587; 6,340,114; 6,340,115; 6,340,119; 6,348,773; 6,380,949; 6,394,355; D305,885; D341,584; D344,501; D359,483; D362,453; D363,700; D363,918; D370,478; D383,124; D391,250; D405,077; D406,581; D414,171; D414,172; D418,500; D419,548; D423,468; D424,035; D430,158; D430,159; D431,562; D436,104. Invention No. 55,358; 62,539; 69,060; 69,187, NI-068564 (Taiwan); No. 1,601,796; 1,907,875; 1,955,269 (Japan); European Patent 367,299; 414,281; 367,300; 367,298; UK 2,072,832; France 81/03938; Italy 1,138,713 rev. 06/02 2003 SYMBOL TECHNOLOGIES, INC. All rights reserved. Symbol and UPS’ rights and obligations with relation to the DIAD IV product, including without limitation product liability and license grants, will be in accordance with Purchase Agreements number: 2001 - 11204 - 01, 2001 - 11204 - 02 and 2001 - 11204 - 03, dated February 13, 2003. Symbol reserves the right to make changes to any product to improve reliability, function, or design. Symbol and the Symbol logo are registered trademarks of Symbol Technologies, Inc. Other product names mentioned in this manual may be trademarks or registered trademarks of their respective companies and are hereby acknowledged. Symbol Technologies, Inc. One Symbol Plaza Holtsville, N.Y. 11742-1300 http://www.symbol.com 72-63596-01 Revision B — September 2003 For Vehicle installations and use 1.An air bag inflates with great force. DO NOT place objects, including ei- ther installed or portable wireless equipment, in the area over the air bag or in the air bag deployment area. If in-vehicle wireless equipment is im- properly installed and the air bag inflates, serious injury could result. 2.Position your device within easy reach. Be able to access your device without removing your eyes from the road. 3.Do not take notes or use the device while driving to the point of distracting from driving. Reading or Jotting down text takes attention away from your primary responsibility, driving safely. Cell Phone/Terminal Warnings Effect on Vehicles RF signals may affect improperly installed or inadequately shielded electronic systems in motor vehicles (including safety systems). Check with the manufacturer or its representative regarding your vehicle. You should also consult the manufacturer of any equipment that has been added to your vehicle. Safety on Aircraft You are required to switch OFF mobile phones when on board an aircraft as operation may be dangerous and illegal. Pacemakers It is recommended by pacemaker manufacturers that a minimum of 15cm (6 inches) be maintained between a handheld wireless phone and a pacemaker to avoid any possible interference with the pacemaker. These recommendations are consistent with independent research and recommendations by Wireless Technology Research. Persons with Pacemakers: • Should ALWAYS keep the device more than 15cm (6 inches) from their pacemaker when turned ON • Should not carry the device in a breast pocket • Should use the ear furthest from the pacemaker to minimise the potential for interference. • If you have any reason to suspect that interference is taking place, turn OFF your device. Regulatory Information All Symbol devices are designed to be compliant with rules and regulations in the countries listed in sections 4.5 of Exhibit 2 of the Agreement and will be labeled as required. Any changes or modifications to Symbol Technologies equipment, not expressly approved by Symbol Technologies, could void the user's authority to operate the equipment. Antenna's, use only the supplied or an approved replacement antenna. Unauthorized antennas, modifications, or attachments could cause damage and may violate regulations. Radio Modules This device contains approved radio modules. These modules are identified below. • Symbol Compact Flash RLAN (11Mbps DSSS) radio card, Type: LA-4137 • Motorola Triband GSM GPRS G18 module…

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Users Manual

SYMBOL TECHNOLOGIES. Symbol Place, Winnersh Triangle, Berkshire, England RG41 5TP Telephone: +44 (0) 118 945 7000 Fax: +44 (0) 118 945 7500 Web site: www.symbol.com Registered Office: Symbol Place, Winnersh Triangle, Berkshire RG41 5TP Registration No. 1096253 - England MB/4111-CDMA/Position EMEA Division 6 th January 2004 BABT 34 Molesey Road WALTON-ON-THAMES Surrey KT12 4RQ 4111-CDMA Hand held Data terminal The 4111-CDMA is a ‘hand held’ data terminal, as per its description it is designed to be used in the hand. UPS-BCS5000: Belt Clip The UPS-BCS5000 is a ‘belt clip’ (Fig 1). The terminal and belt clip is attached to the users belt as shown in fig 2. Fig 1 Fig 2 z Page 2 January 7, 2004 UPS-POUCH5000: Holster The UPS-POUCH5000 is a ‘holster’ designed to be attached the users using the belt clip located at the rear of the holster (Fig 3). The terminal is placed in the pouch when not in use (Fig 4). Fig 3 Fig 4 I trust this clarifies the terminal position Yours sincerely, Marco Belli Symbol Regulatory Compliance

Cover Letter(s)

4 th September, 2004 To whom it may concern, Symbol Technologies Inc. may use the following documents of c18 – CDMA OEM cellular modem, prepared by Motorola for FCC submission (FCC ID: IHDT56CW1). 1. FCC identification (nameplate) information 2. c18 External Photos 3. c18 Internal Photos 4. c18 Developer Kits Manual 5. Transceiver Adjustments/Tune-Up Procedure 6. SAR Test Report for Motorola Mobile Cellular Phone FCC ID IHDT56CW1 7. Specification Compliance Statement 8. EMC Test Report Number – 9491-1 9. c18 FCC Grant - FCC Identifier: IHDT56CW1 10. Request for additional information (FCC ID: IHDT56CW1) Yours faithfully, Emile Saul Motorola Israel Motorola Israel Next 2 Core Solutions Division Tel: +972 (03) 565 81 64 Fax: +972 (03) 565 85 01 e-mail: [email protected]

Cover Letter(s)

1 Hilton Carr From: Alex Miller Sent: 08 January 2004 16:03 To: Maggie Glasspool; 'Marco Belli (E-mail)' Cc: Phil Dolling Subject: RE: audit 4111-CDMA Urgent reply need by 8th Jan Report Number WS611456 – 002 i... IEEE_Flat_Phantom_F. pdf Maggie/Hilton (Hilton, please cut and paste responses as they are especially for item 8) Item 6) - I have generated a new page in all test data is now tabulated, please see attached 'Report Number WS611456 002 issue 2.0 page 7 of 57.doc'dated 6th January 2004'. Item 7) - Acknowledged this statement is now included in all new reports as of 01/01/2004. Item 8) - Although the device is almost as large as the flat phantom it was assessed against, the phantom size was sufficient to cover the whole area of the device tested and the device's active area was measured to be significantly smaller due to the nature of the frequencies being employed in the transmitter modules. The testing of this device was carried out using the following protocol. Prior to full SAR assessment, the device was placed into the appropriate test mode and initially using a 'Sniffer probe' and a spectrum analyzer the device was scanned to locate the maximum rf energy. Then the device was placed against the Flat phantom which was filled with the appropriate fluid simulant and an area scan was performed on each face of the device to confirm the location of the transmitter to enable the SAR testing to be performed on the appropriate face. This was performed for each Radio Module fitted. This was carried out with and without both the Headset and Holster in position for the body assessment. This showed that there was no difference in SAR values and therefore testing was carried out without the headset or holster being used. The device was positioned so that the central location of the maximum RF energy location was centrally positioned against the 2mm side of the flat phantom. The actual RF distribution, recorded during the SAR scan showed that there was no potential secondary peak and that there were no significant boundary effects caused by the phantom size. Your question raises issues about the size of phantom which would be required to assess a laptop device with embedded RF transmitters. I believe that the process descibed above more than adequately covers the requirements for assessing localised SAR distributions on larger devices. Please find attached the following paper 'Flat Phantom Setup for the performance Check and System Validation of measurement systems according to IEEE1528 and IEC62209 - Andreas Christ and Niels Kuster May 13, 2002' which suggests that the size of phantom used is quite adequate for the transmit frequency of the device under test since our procedure additionally checked that the SAR field distribution was well-contained within the volume of the phantom. Best Regards Alex Miller Senior Engineer SAR TEST BABT Segensworth Road - Fareham - Hampshire - PO15 5RH - United Kingdom Tel: +44 (0) 1329 443548 Fax: +44 (0) 1329 443500 Website: www.tuvps.co.uk Email: <mailto:[email protected]> Total Compliance Solutions - Consultancy, Testing, Certification, International Compliance Management, Quality Assurance, Regulatory Services, Billing System Assessment, Training. -------------------------------------------------------------------------------------------------------------- 2 -----Original Message----- From: Maggie Glasspool Sent: 06 January 2004 10:10 To: Alex Miller; Marco Belli (E-mail) Cc: Phil Dolling Subject: FW: audit 4111-CDMA Urgent reply need by 8th Jan Importance: High Hi Alex/Marco, Hilton needs some responses to the questions below, following an audit by Tim Harrington of the FCC. Alex please supply details for items 6, 7 and 8. Marco please supply details for items 4, 5 and 9. Thanks Maggie To:Hilton Carr From:Tim Harrington [email protected] FCC Equipment Authorization Branch Re:FCC ID:H9P4111CDMA Applicant: Symbol Technologies Inc Correspondence Reference Number: 10488 731 Confirmation Number: TC793915 Date of Original Email: 12/12/2003 Subject: audit 1) FYI in future filings in general a Bluetooth DSS and a LAN DSS can go on the same application/grant-certifcate 2) Please revise grant note to use standard Suppl C body-worn text and SAR number formats, as described in May03 and Oct03 TCB training notes and elsewhere. Contact Tim Harrington at FCC Lab if you need those notes. 3) It is very inconvenient in application review and verification for Internal and External Photo exhibits to be cross- referenced to test reports. I strongly request and urge you to submit separate internal and external photo exhibits, in addition to or in place of having these photos in test reports. 4) Please submit at least any sections of complete operating instructions which instruct/describe/show usage positions (body-worn, handheld, etc) 5) Please submit at least any sections of complete operating instructions which describe how LAN does not operate when BT and CDMA are on. 6) Besides the summary results on 7 of 57 of SAR report, it is useful to include tabular list corresponding to all test positions, freqs, plots - please submit here and in future filings. 7) fyi SAR pg 4 of 57 CFR citation more approriately should be: US Federal Government, Code of Federal Regulations, Title 47 Telecommunication, Chapter I Federal Communications Commission, part 2, section 1093 8) SAR pg 9 of 57 states "Flat Phantom box 2mm side(200mm cube)." Suppl C states: "Body-worn operating configurations should be tested using a flat phantom. The length and width of the phantom should be at least twice the corresponding dimensions of the test device, including its antenna." TCB applications are required to apply Suppl C. Please comment and/or revise and/or re-test. 9) LAN test report folder contains "Compact Flash Dipole (CF Dipole)" spec sheet - is that used in this handheld device? If no, why is it submitted? 3 The items indicated above must be submitted before processing can continue on the…

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Cover Letter(s)

Flat Phantom Setup for the Performance Check and System Validation of Measurement Systems according to IEEE 1528 and IEC 62 209 Andreas Christ and Niels Kuster May 13, 2002 1 Introduction According to the recommendations of the proposed IEEE1528 Standard for determining the Specific Absorption Rate (SAR) in the human body due to mobile communications equipment (MTE) [1], the performance of the measurement system for compliance testing must be verified before it is used for the actual device testing. For this purpose, the standard suggests a simplified phantom setup which allows rapid validation that the measurement equipment is operating within its specifications with respect to, e. g., component drift or liquid parameters. The setup consists of a flat-bottomed vessel filled with tissue simulating liquid and a calibrated dipole antenna (see Section 3). 2Objectives Within the framework of this study the following open issues were investigated in order to provide reference data for [1]: •determination of the length of the dipoles for the frequencies 300MHz, 450MHz, 2.0GHz, 2.45GHz and 3.0 GHz (Annex F of [1]) •calculation of the 1 g and 10 g averaged SAR maxima in the flat phantom for the frequencies specified in Table 7.1 of [1] •verification of whether the necessary minimum phantom dimensions as assessed in [2] are valid for the frequency range from 300MHz to 3GHz •validation of the simulation results with measurements 3 Flat Phantom Setup 3.1 Setup Configuration The flat phantom setup consists of a a resonant half-wave dipole antenna placed underneath a dielectric vessel ( r =3.7) with a flat bottom filled with tissue simulating liquid. The setup is described in detail in [1]. Its main characteristics are summarized in Table 1 and Figure 1. 1 2 s 4mm h d t l Figure 1: Dimensions of the flat phantom setup. [1] recommends that the minimum dimensions of the surface be at least 0.6×0.4λ 0 . 1 In [2], it is shown that the uncertainty of the averaged peak SAR can be kept below 1 % for a frequency of 835MHz if the phantom size does not fall below these dimensions. Both a full size phantom whose surface size significantly exceeds the given limit and a phantom with dimensions reduced to the limit given in [1] were investigated. The surface dimensions of the two phantoms are given in Table 2. Freq. [MHz] r σ[S/m]t [mm]d [mm]l [mm]h [mm]s [mm] 30045.30.8766.339625015 45043.50.8766.3270166.715 83541.50.923.616189.815 90041.50.9723.614983.315 145040.51.223.689.151.710 150040.41.2323.686.25010 164040.21.3123.67945.710 1800401.423.67241.710 1900401.423.66839.510 2000401.423.664.537.510 245039.21.823.651.530.410 300038.52.423.641.52510 Table 1: Dielectric parameters of the tissue simulating liquid and geometric dimensions of the flat phantom setup. 3.2 Simulations All numerical simulations were carried out with SEMCAD V1.4. The phantom dimensions for the full size phantom were chosen such that they significantly exceeded the minimum surface dimensions given in [1]. The liquid level was 150 mm. The dielectric bottom of the shell ( r =3.7) was assumed to be lossless and the dipole material to be perfectly conducting. The accurate dimensions of the dipole were simulated including theλ/4-stub. The flat phantom setups were discretized with nonuniform meshes. The maximum cell size was chosen such that the limit ofλ/15 was never exceeded for all frequencies and dielectrics. In the regions of the antenna feedpoint, the antenna tips and the SAR maxima, the cell size was reduced to approximately 0.25mm 3 . Depending on the simulation frequency and the setup dimensions, this led to overall mesh 1 λ 0 is the freespace wave length. 3 full size phantomreduced dimensions Freq. [MHz]x [mm]y [mm]x [mm]y [mm] 3001000800600400 450700600400267 835360300216144 900360300200133 145024020012483 150024020012080 164024020011073 180022020010067 19002202009563 20001601409060 24501801207349 30002001606040 Table 2: Dimensions of the flat phantom surface parallel (x) and normal (y) to the dipole. sizes between three and twelve million cells. The mesh was truncated with PML absorbing boundary conditions. 3.3 Measurements In order to verify the numerical results, the flat phantom setup was measured with the DASY 4 near-field scanner using the flat section in the center of the Generic Twin Phantom [3]. The frequencies 450MHz, 835MHz, 900 MHz, 1 450MHz, 1 800MHz and 1 900MHz were evaluated. DASY4 applies a boundary error compensation algorithm which was not utilized in DASY3. The impedance was measured with the network analyzer Agilent HP8753E which was calibrated at the feedpoint of the dipole. 4 Results and Discussion 4.1 Numerical Results 4.1.1 Dipole Dimensions According to the requirements of [1], the input reflection coefficient S 11 of the dipole antennas must be -20dB or better. The dipoles for the frequencies 300MHz, 450MHz, 2.0GHz, 2450MHz and 3GHz were matched to meet this condition by modifying their lengths. The assessed dipole lengths are given in Table 1. For all investigated frequencies, reflection coefficients of much better than the required -20dB could be obtained. Figures 2 and 3 show the calculated reflection coefficients. The feedpoint impedances are given in Table 3. 4.1.2 SAR Distribution The 1 g and 10 g averaged peak SAR were calculated in cubical volumes containing the respective masses of tissue simulating liquid. The volumes are located above the antenna feedpoint. In order to avoid uncertainties in determining the accurate averaging mass, the grid was discretized such that an integer number of cells fit into the volumes. Table 4 shows the calculated averaged peak SAR values and the non-averaged SAR maxima normalized both to an antenna input power of 1 W and to a feedpoint current of 100mA RMS . Figure 4 shows the SAR inside the phantom immediately above the feedpoint as a function of the distance to the shell. In Figure 5, the SAR is displayed along an imaginary line normal to the shell surface with an o…

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External Photos

Exhibit 3: External Photographs Refer to test report OR611456/02

ID Label/Location Info

Regulatory compliance Symbol Technologies, Inc. Page 1 of 1 4111-CDMA Label/01 Symbol 4111-CDMA terminal – product label Type: 4111-CDMA

ID Label/Location Info

Label Position S ca nner L a beling 630-680nm LASER 1.0 mW MAX OUTPUT CLASS II LASER PRODUCT LASER LIGHT-DO NOT STARE INTO BEAM LASER LIGHT- DO NOT STARE INTO BEAM CLASS 2 LASER PRODUCT LASERLICHT - NICHT IN DEN STRAHL BLICKEN LASER KLASSE 2 LUMIERE LASER - NE PAS REGARDER DANS LE FAISCEAU APPAREIL À LASER DE CLASSE 2 630-680nm, 1mW THIS DEVICE CONTAINS APPROVED RADIO MODULES MADE IN XXXXX XXXX MODEL NUMBER: 4111-GPRS1 SERIAL NUMBER: XXXXXXXXXXXXXXX IMEI: XXXXXXXXXXXXXXX SN BAR CODE MOD BAR CODE MFD: XXXXXXXXX , XXXX TYPE: 4111-GPRS FCC ID:H9P4111GPRS IC: 1549D-4111GPRS MANUFACTURED FOR UPS, ATLANTA ,GEORGIA BY SYMBOL TECHNOLOGIES R 0168

Internal Photos

Exhibit 9: Internal Photographs Refer to test report OR611456/02

Internal Photos

APPLICANT: MOTOROLA INC. FCC ID: IHDT56CW1 EXHIBIT 9 1 Front View (Shields Removed) Rear View (Shields Removed) APPLICANT: MOTOROLA INC. FCC ID: IHDT56CW1 EXHIBIT 9 2 Front View (With Shield)Rear View (With Shield)

Operational Description

Regulatory compliance Symbol Technologies, Inc. Page 1 of 1 4111-CDMA Antenna Information/01 Antenna Information Product Type number: 4111-CDMA Symbol Part number: 10-64160-01 Manufacturer: TYCO Part Number: 1513528-1 Description: Range star 100220 rev 3 RLAN/BT - Antenna Type: PCB - Polarization: Linear - Antenna Gain: -4dBi (Total Gain avg), 0dBi peak RLAN - Antenna Type: PCB - Polarization: Linear - Antenna Gain: -4dBi (Total Gain avg), 0dBi peak CDMA 850 / 1900 - Antenna Type: PCB - Polarization: Linear - Antenna Gain: -5dBi (Total Gain avg), 0dBi peak

Operational Description

Photographs of 4111-CDMA Antenna Assemblies Antenna Assemblies – General Position within 4111-CDMA Hand Held Terminal Photograph 1 OR611456 4111-CDMA Page 1 of 5 Photographs of 4111-CDMA Antenna Assemblies 2.4GHz RLAN/Bluetooth Antenna 2.4GHz RLAN Antenna Photograph 2 OR611456 4111-CDMA Page 2 of 5 Photographs of 4111-CDMA Antenna Assemblies 1900/850MHz Antenna Photograph 3 OR611456 4111-CDMA Page 3 of 5 Photographs of 4111-CDMA Antenna Assemblies Photograph 4 OR611456 4111-CDMA Page 4 of 5 Photographs of 4111-CDMA Antenna Assemblies 1900/850MHz Antenna 2.4GHz RLAN/Bluetooth Antenna 2.4GHZ RLAN Antenna Photograph 5 OR611456 4111-CDMA Page 5 of 5

Operational Description

SYMBOL TECHNOLOGIES. Symbol Place, Winnersh Triangle, Berkshire, England RG41 5TP Telephone: +44 (0) 118 945 7000 Fax: +44 (0) 118 945 7500 Web site: www.symbol.com Registered Office: Symbol Place, Winnersh Triangle, Berkshire RG41 5TP Registration No. 1096253 - England MB/4111-CDMA/Simultanious TX EMEA Division 23 rd December 2003 BABT 34 Molesey Road WALTON-ON-THAMES Surrey KT12 4RQ Attestation: Simultaneous Transmit CDMA / RLAN This is to confirm that the Software drivers for the WWAN (CDMA) and WLAN (RLAN 802.11b) prevent both transmitters from being active at the same time, an attempt to turn either on while the other is already on will fail. The UPS 4111-CDMA terminal has been programmed will transition between WAN and LAN when External power is detected. This system prevents the CDMA and RLAN signals transmitting simultaneously. Bluetooth / RLAN Both 802.11b and Bluetooth operate in the same 2.4 GHz unlicensed frequency band. Therefore, there is a mutual interference between the two wireless systems that may result in severe performance degradation. Coexistence is a method that allows the two radio systems to share the same RF spectrum without interfering with each other. The Symbol-defined coexistence mechanism between Bluetooth and 802.11b is Alternating Wireless Medium Access (AWMA). In this mechanism there is synchronization between the Bluetooth and 802.11b radio systems, which is provided by a handshaking signal called Media Free (MF). MF is generated by the 802.11b radio and synchronous to the 802.11b AP beacon (AP output over radio waves). The MF signal produces a Bluetooth quantum (time interval that Bluetooth can be on-the-air) once every beacon period. The remainder of the period is for 802.11b use. The RF output from the BT module is routed to an RF mux/switch. This provides for a shared antenna between …

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Contact Information

Applicant

Qianlin Zhou(Regulatory Specialist)
[email protected]346-260-3543Fax: 631-627-7178

Test Firm

TUV SUD Product ServiceJensen Adams
[email protected]44-1489-558252Fax: 44-11489-558101

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
222H824.7 MHz - 843.31 MHz320.00 mW1M25F9W150 Hz
Confidentiality
Long Term
Grant Notes
Output is peak conducted. This device and its antenna(s) must not be co-located or operated in conjunction with any other antenna or transmitter not described in this application. SAR compliance for body-worn operating conditions must be restricted to belt-clips and holsters that have no metallic component in the assembly The highest reported SAR for 1900 transmissions 1.332 W/kg The highest reported SAR for 850 transmissions 0.951 W/kg

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