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OWDTR-0016-EPortable UHF PTT Radio Transceiver

HARRIS CORPORATION
Portable UHF PTT Radio Transceiver - FCC ID OWDTR-0016-E - HARRIS CORPORATION
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Application Details

Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Date of Grant
May 20, 2003
Application Purpose
Original Equipment
Date of Application
May 20, 2003
Equipment Note
Portable UHF PTT Radio Transceiver
Frequency Range
378.00000000 - 430.00000000
Company
HARRIS CORPORATION
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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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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Schematics

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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

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 50 of 63 APPENDIX G: MANUAL Please refer to the following pages. Operators Manual MM101332V1 R3A P7100 IP Series Portable Radios 2 TABLE OF CONTENTS Page SAFETY TRAINING INFORMATION ........................................... 3 OPERATING RULES AND REGULATIONS ................................ 7 OPERATING TIPS............................................................................ 9 BATTERY DISPOSAL ................................................................... 13 SCOPE OF THIS MANUAL .......................................................... 14 OPTIONS AND ACCESSORIES ................................................... 15 USER INTERFACE ........................................................................ 18 STATUS MESSAGES..................................................................... 25 BASIC OPERATION ...................................................................... 28 TRANSMITTING A CALL IN TRUNKED MODE...................... 34 RECEIVING A CALL IN TRUNKED MODE .............................. 35 CONVENTIONAL OPERATION .................................................. 36 OPERATION FOLLOWING WATER CONTACT....................... 37 CHANGING THE BATTERY PACK ............................................ 43 BATTERY WARRANTY ............................................................... 45 WARRANTY................................................................................... 46 The software contained in this device is copyrighted by M/A-COM, Inc. Unpublished rights are reserved under the copyright laws of the United States. NOTICE! This manual is published by M/A-COM, Inc., without any warranty. Improvements and changes to this manual necessitated by typographical errors, inaccuracies of current information, or improvements to programs and/or equipment, may be made by M/A- COM, Inc., at any time and without notice. Such changes will be incorporated into new editions of this manual. No part of this manual may be reproduced or transmitted in any form or by any means, electronic or mechanical, including photocopying and recording, for any purpose, without the express written permission of M/A-COM, Inc. Copyright © 2003 M/A-COM, Inc. All rights reserved. 3 SAFETY TRAINING INFORMATION WARNING The M/A-COM P7100 IP portable radio generates RF electromagnetic energy during transmit mode. This radio is designed for and classified as “Occupational Use Only,” meaning it must be used only during the course of employment by individuals aware of the hazards and the ways to minimize such hazards. This radio is NOT intended for use by the “General Population” in an uncontrolled environment. The P7100 IP portable radio has been tested and complies with the FCC RF exposure limits for “Occupational Use Only.” In addition, this M/A-COM radio complies with the following Standards and Guidelines with regard to RF energy and electromagnetic energy levels and evaluation of such levels for exposure to humans: • FCC OET Bulletin 65 Edition 97-01 Supplement C, Evaluating Compliance with FCC Guidelines for Human Exposure to Radio Frequency Electromagnetic Fields. • American National Standards Institute (C95.1 – 1992), IEEE Standard for Safety Levels with Respect to Human Exposure to Radio Frequency Electromagnetic Fields, 3 kHz to 300 GHz. 4 • American National Standards Institute (C95.3 – 1992), IEEE Recommended Practice for the Measurement of Potentially Hazardous Electromagnetic Fields – RF and Microwave. RF EXPOSURE GUIDELINES CAUTION To ensure that exposure to RF electromagnetic energy is within the FCC allowable limits for occupational use, always adhere to the following guidelines: • DO NOT operate the radio without a proper antenna attached, as this may damage the radio and may also cause the FCC RF exposure limits to be exceeded. A proper antenna is the antenna supplied with this radio by M/A-COM or an antenna specifically authorized by M/A-COM for use with this radio. (Refer to Table 2 – Options and Accessories.) • DO NOT transmit for more than 50% of total radio use time (“50% duty cycle”). Transmitting more than 50% of the time can cause FCC RF exposure compliance requirements to be exceeded. The radio is transmitting when the “TX” indicator appears in the display. The radio will transmit by pressing the “PTT” button. 5 • Always transmit using low power (refer to High/Low Power Adjustment section) when possible. In addition to conserving battery charge, low power can reduce RF exposure. • ALWAYS use M/A-COM authorized accessories (antennas, batteries, belt clips, speaker/mics, etc). Use of unauthorized accessories may cause the FCC Occupational/Controlled Exposure RF compliance requirements to be exceeded. (Refer to Table 2 – Options and Accessories.) • ALWAYS keep the device and its antenna at least 2 cm (0.8 inches) from the body and at least 5 cm (2 inches) from the face when transmitting to ensure FCC RF exposure compliance requirements are not exceeded. This radio has been tested for RF exposure compliance at the distances listed in Table 1. However, to provide the recipients of your transmission the best sound quality, hold the antenna at least 5 cm (2 inches) from mouth, and slightly off to one side. 6 Table 1 - RF Exposure Compliance Testing Distances TESTED DISTANCES (worst case scenario) RADIO FREQUENCY Body Face 800 MHz 1.6 cm 2.5 cm VHF (136-174 MHz) 1.1 cm 2.5 cm UHF-H (450-512 MHz) 1.1 cm 2.5 cm UHF-L (378-430 MHz) 1.1 cm 2.5 cm The information in this section provides the information needed to make the user aware of a RF exposure, and what to do to assure that this radio operates within the FCC RF exposure limits of this radio. ELECTROMAGNETIC INTERFERENCE/COMPATIBILITY During transmissions, this M/A-COM radio generates RF energy that can po…

Text truncated - open the document above for the full version.

Block Diagram

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 49 of 63 APPENDIX F: BLOCK DIAGRAM Please refer to the following pages.

Cover Letter(s)

M/A-COM, Inc. 221 Jefferson Ridge Parkway Lynchburg, VA 24501 April 10, 2003 Federal Communications Commission Authorization & Evaluation Division 7435 Oakland Mills Road Columbia Maryland 21046 Attention: Equipment Authorization Branch Subject: Type Acceptance FCC ID: OWDTR-0016-E Members of the Commission M/A Com Private Radio Systems Inc. requests the Type Acceptance of the OWDTR-0016-E portable tra nsceiver. The OWDTR- 0016-E is a trunking radio that operates in the 378-430 MHz band. The OWDTR-0016-E has a maximum power rating of about 4.40 Watt s conducted. The OWDTR-0016-E was evaluated for RF safety and found to comply with FCC SAR limits. Bryan McWatters [email protected] Regulatory Manager Telephone: (434) 455-9377 Fax: (434) 455-9377

Cover Letter(s)

American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 May 20, 2003 RE: FCC ID: OWDTR-0016-E Attention: I have a few comments on this Application. 1. Please note that Part 90 licensed devices are to use antenna substitution method for radiated spurious emissions. While section 9 appears to be the substitution method, sections 4 and 6 are not. Please explain. 2. Please note that the test date on the report is April, 2003 and the cal due date for the power meter and power sensor is Feb 2003. Please provide data using calibrated equipment. 3. Is the output power continuously variable? If so, by how much? Dennis Ward mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.

Cover Letter(s)

American Telecommunications Certification Body Inc. 6731 Whittier Ave, McLean, VA 22101 May 19, 2003 RE: FCC ID: OWDTR-0016-E Attention: I have a few comments on this Application. 1. Please note that Part 90 licensed devices are to use antenna substitution method for radiated spurious emissions. While section 9 appears to be the substitution method, sections 4 and 6 are not. Please explain. Response : This was an error. Please refer to the revised test report uploaded with this response. 2. Please note that the test date on the report is April, 2003 and the cal due date for the power meter and power sensor is Feb 2003. Please provide data using calibrated equipment. Response : The calibration date was incorrect. Please refer to the revised test report uploaded with this response. 3. Is the output power continuously variable? If so, by how much? Response : The output power is not continuously variable. Dennis Ward mailto:[email protected] The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information may result in application termination. Correspondence should be considered part of the permanent submission and may be viewed from the Internet after a Grant of Equipment Authorization is issued. Please do not respond to this correspondence using the email reply button. In order for your response to be processed expeditiously, you must submit your documents through the AmericanTCB.com website. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the sender.

External Photos

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 52 of 63 APPENDIX I: EXTERNAL PHOTOGRAPHS PHOTOGRAPH 4: UHF-L P7100 IP FRONT VIEW Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 53 of 63 PHOTOGRAPH 5: UHF-L P7100 IP SIDE VIEW Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 54 of 63 PHOTOGRAPH 6: UHF-L P7100 IP SIDE VIEW Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 55 of 63 PHOTOGRAPH 7: UHF-L P7100 IP VIEW OF REAR CASTING

ID Label/Location Info

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 45 of 63 APPENDIX C: LABEL INFORMATION Please refer to the following pages for a label sample and a photograph of the label location. Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 46 of 63 PHOTOGRAPH 1: LABEL LOCATION ON BACK OF EUT WITH BATTERY REMOVED FCC ID/ IC LABEL HERE

Internal Photos

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 56 of 63 APPENDIX J: INTERNAL PHOTOGRAPHS PHOTOGRAPH 8: UHF-L P7100 IP VIEW OF INSIDE OF FRONT COVER Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 57 of 63 PHOTOGRAPH 9: UHF-L P7100 IP VIEW OF TOP OF INTERFACE BOARD AND RF SHIELD Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 58 of 63 PHOTOGRAPH 10: UHF-L P7100 IP VIEW OF TOP OF INTERFACE BOARD Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 59 of 63 PHOTOGRAPH 11: UHF-L P7100 IP VIEW OF BOTTOM OF INTERFACE BOARD Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 60 of 63 PHOTOGRAPH 12: UHF-L P7100 IP VIEW OF TOP OF RF SHIELD WITH INTERFACE BOARD REMOVED Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 61 of 63 PHOTOGRAPH 13: UHF-L P7100 IP VIEW OF TOP OF MAIN BOARD WITH RF SHIELD REMOVED Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 62 of 63 PHOTOGRAPH 14: UHF-L P7100 IP VIEW OF BOTTOM OF MAIN BOARD Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 63 of 63 PHOTOGRAPH 15: UHF-L P7100 IP VIEW OF INSIDE WALL OF REAR CASTING WITH MAIN BOARD REMOVED

Operational Description

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 44 of 63 APPENDIX B: OPERATIONAL DESCRIPTION Please see the following pages. 7 CIRCUIT ANALYSIS The UHF-L P7100 IP is a dual-conversion super heterodyne FM transceiver (see Table 1 for model number and frequency band information). 7.1 VOLTAGE REGULATOR / BIAS SUPPLY OVERVIEW U402 provides the +5.5V bias (VSYN) for the Tx & Rx VCO’s, the main charge pump on the PLL IC, the reference oscillator, and analog gates U304 & U309. U403 provides the +5.5V bias (VRX) for the receiver circuitry, plus supplies the bias for the “SW-5V” signal. [Note that U403 remains powered on during both Rx & Tx states because “RXON” remains high.] The “SW-5V” signal is provided by the “DPTT” signal from Hillary being input into a dual driver & pass transistor, Q402. The “SW-5V” signal provides the bias for the pre-driver amplifier (U202), the transmit power control circuitry (U404) and reference voltage into the directional coupler within antenna switch module (Z302). U405 provides the +3.0V bias (VSYN-2) for the PLL IC’s digital logic, internal oscillator, & divider chain. The “SW-B” signal is a switched on battery voltage. It is provided by the “DPTT” signal from Hillary being input into driver transistor & pass transistor Q403. The “SW-B” signal provides the bias into the antenna switch module (Z302) to turn on or off the pin diodes in the Tx/Rx antenna switch. During Rx mode, U406 takes the VSYN output voltage and doubles it to ~ 11 VDC. This provides the bias for the U104 op-amps. U900 provides the +5V bias to drive the analog portion of the baseband circuitry. U902 provides the +3V bias to drive the DSP portion of the logic circuitry. U903 provides the +1.5V bias to drive the “core” portion of the DSP. U904 provides the +5V bias to drive the 5 V logic circuitry. Note: All of the voltage regulators are linear regulators except for U406 & U904, which are switching voltage regulators. Transistors Q703-Q705 provide a current limited, switched battery voltage to the UDC connector for bias of external audio accessories. 7.2 RECEIVER CIRCUITS The UHF-L P7100 IP receiver is designed for operation in the 378.000-430.000 MHz frequency range. The receiver has intermediate frequencies (IF) of 115.65 MHz and 450 kHz. Adjacent channel selectivity is obtained by using band pass filters- a 115.65 MHz crystal filter and two 450 kHz ceramic filters. The receive demodulator is the phase digitizer located within Hillary (U700). 7.2.1 Receiver Front End A RF signal from the antenna is coupled through the Tx low pass filter & antenna switch in the antenna switch module (Z302), and the bandpass filter (FL101A) to the input of low noise RF pre-amplifier Q101. The output of Q101 is coupled through another bandpass filter (FL101B) to an attenuator pad. Its output is routed through an elliptic filter (C106, C126, C127, C148-C151, L110, L153, L155, L157, & R127) to the input of first mixer Z101. Front End selectivity is provided by the bandpass & elliptic filters. The bandpass filters are tunable. The “BPFcontV” from U500-62 (“Patti’s” DAC01) output is input into a buffer amplifier (U104A) and then a voltage doubler (U104B). This voltage is then input into FL101, pins 3 & 7, to optimally tune the bandpass filters for suppression of undesired spurious responses. Figure 8 – UHF-L P7100 IP Receiver Bandpass Filter and Circuit Diagram 7.2.2 First Mixer Circuit The first mixer is a Double-Balanced-Mixer (Z101) that converts a RF signal in the 378-430 MHz range to the 115.65 MHz first IF frequency. The Rx L.O. signal is derived from the Rx VCO, amplified by Q103, and input into Z101, pin 6. The signal at the output of Z101 is provided to the input of the first IF amplifier, Q102. 7.2.3 First IF Circuit The first IF signal from the output of the first Mixer is coupled through first IF amplifier Q102 to crystal filter FL103. The highly selective crystal filter provides the first portion of the receiver IF selectivity. The output of the filter is coupled through an impedance-matching network to the Rx back end IC (U101). Figure 9 – UHF-L P7100 IP First Mixer and First I.F. Circuit Diagram 7.2.4 Second Mixer, Second IF Filters and Second IF Amplifier The receiver back end IC (U101) is a single chip digital communication systems IC. It includes the second mixer, second IF amplifier and the limiter amplifier. Within the internal circuits of U101, the first IF signal is amplified and applied to the input of the second mixer. The second local injection frequency, 115.2 MHz, is applied from the second L.O. amplifier (Q106) to the local oscillator input of the second mixer. [Note that the 115.2 MHz second L.O. signal is the sixth harmonic of the 19.2 MHz reference oscillator.] The second mixer converts the first IF signal (115.65 MHz) down to the second IF frequency, 450 kHz. The second IF signal is applied to Ceramic Filter FL105 (wideband mode) or FL106 (narrowband or Project 25 mode), which provide the first part of the 450 kHz selectivity. Selection of FL105 or FL106 filters are controlled by the IF.NARROW signal from the microcomputer (“Hillary”, i.e. U700). The output of the second IF filter is amplified through the second IF amplifier and back to ceramic filter FL104 (wideband or narrowband mode) or FL107 (Project 25 mode), which provide the second part of the 450 kHz selectivity. Selection of FL104 or FL107 filters are controlled by the C4FM.DATA signal from the microcomputer (“Hillary”: U700). The output is then run to a limiter amplifier where the IF signal is amplified/limited, balanced, and output at RXIF and RXIF (bar). These two lines, one with a positive phase and the other with a negative phase, are used to cancel out any noise that might be on the line. These balanced outputs are applied to the phase digitizer …

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Parts List/Tune Up Info

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 47 of 63 APPENDIX D: PARTS LIST Please refer to the following pages. P7100 UHF-L (4W) PARTS LIST 1/10 5/16/2003 SYMBOLKDE_PARTS_No.PARTS_NAMEPARTS_DESCRIPTIONVENDOR_ITEM_NBRQ'tyVENDOR_NAMEREMARKS C101CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C102CN 8050CAPACITORCERAMIC CHIP8 pF50VGRM36CH080D50-PT1MURATA C103CN 8030CAPACITORCERAMIC CHIP6 pF50VGRM36CH060D50-PT1MURATA C104CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C105CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C106CN 8020CAPACITORCERAMIC CHIP5 pF50VGRM36CH050C50-PT1MURATA C107GRM360MURATANot Used C108CN 8020CAPACITORCERAMIC CHIP5 pF50VGRM36CH050C50-PT1MURATA C109GRM360MURATANot Used C111CN 8100CAPACITORCERAMIC CHIP18 pF50VGRM36CH180J50-PT1MURATA C112CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C113CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C114CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C115GRM360MURATANot Used C116CN 8040CAPACITORCERAMIC CHIP7 pF50VGRM36CH070D50-PT1MURATA C117CN 7820CAPACITORCERAMIC CHIP2 pF50VGRM36CK020C50-PT1MURATA C119CN 7910CAPACITORCERAMIC CHIP3 pF50VGRM36CJ030C50-PT1MURATA C120GRM360MURATANot Used C121CN 8020CAPACITORCERAMIC CHIP5 pF50VGRM36CH050C50-PT1MURATA C122CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C124CN 6630CAPACITORCERAMIC CHIP0.1 uF10VGRM36B104K10-PT1MURATA C125CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C126CN 8010CAPACITORCERAMIC CHIP4 pF50VGRM36CH040C50-PT1MURATA C127CN 7820CAPACITORCERAMIC CHIP2 pF50VGRM36CK020C50-PT1MURATA C128GRM360MURATANot Used C129GRM360MURATANot Used C130GRM360MURATANot Used C131CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C132CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C133CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C134CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C135CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C136CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C137CN 6630CAPACITORCERAMIC CHIP0.1 uF10VGRM36B104K10-PT1MURATA C138CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C139CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C140CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C141CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C142CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C143CN 8070CAPACITORCERAMIC CHIP10 pF50VGRM36CH100D50-PT1MURATA C144CN 6630CAPACITORCERAMIC CHIP0.1 uF10VGRM36B104K10-PT1MURATA C145CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C146CT 8860CAPACITORTANTALUM CHIP1 uF10VTEMSVA21A105M-8R1NEC C148CN 8080CAPACITORCERAMIC CHIP12pF50VGRM36CH120J50-PT1MURATA C149GRM360MURATANot Used C150GRM360MURATANot Used C151CN 8090CAPACITORCERAMIC CHIP15 pF50VGRM36CH150J50-PT1MURATA C152CN 8100CAPACITORCERAMIC CHIP18 pF50VGRM36CH180J50-PT1MURATA C153CN 8090CAPACITORCERAMIC CHIP15 pF50VGRM36CH150J50-PT1MURATA C154CN 8060CAPACITORCERAMIC CHIP9 pF50VGRM36CH090D50-PT1MURATA C155CN 8010CAPACITORCERAMIC CHIP4 pF50VGRM36CH040C50-PT1MURATA C156CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C157CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C158CN 8090CAPACITORCERAMIC CHIP15 pF50VGRM36CH150J50-PT1MURATA C159CN 8070CAPACITORCERAMIC CHIP10 pF50VGRM36CH100D50-PT1MURATA C160GRM360MURATANot Used C162GRM360MURATANot Used C163GRM360MURATANot Used C164GRM360MURATANot Used C167GRM360MURATANot Used C168CN 5630CAPACITORCERAMIC CHIP39 pF50VGRM39CH390J50-PT1MURATA C169CN 5910CAPACITORCERAMIC CHIP3 pF50VGRM39CJ030C50-PT1MURATA C170CN 5580CAPACITORCERAMIC CHIP24 pF50VGRM39CH240J50-PT1MURATA C171CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C172CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C173CN 8170CAPACITORCERAMIC CHIP47 pF50VGRM36CH470J50-PT1MURATA C174CN 8070CAPACITORCERAMIC CHIP10 pF50VGRM36CH100D50-PT1MURATA C175CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C176CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C177CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C178CN 6070CAPACITORCERAMIC CHIP2 pF50VGRM39CK020C50-PT1MURATA C179CN 5480CAPACITORCERAMIC CHIP9 pF50VGRM39CH090D50-PT1MURATA C180CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C181CN 7710CAPACITORCERAMIC CHIP0.01 uF16VGRM36B103K16-PT1MURATA C182CN 8120CAPACITORCERAMIC CHIP82 pF50VGRM36CH820J50-PT1MURATA C183CN 9830CAPACITORCERAMIC CHIP0.1 uF16VGRM36F104Z16-PT1MURATA C185CN 7540CAPACITORCERAMIC CHIP680 pF50VGRM36B681K50-PT1MURATA C186GRM360MURATANot Used C187GRM360MURATANot Used C188CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C189CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C201CS 1490CAPACITORCERAMIC CHIP1 uF10VC1608JB1A105KT1TDK C202CN 8070CAPACITORCERAMIC CHIP10 pF50VGRM36CH100D50-PT1MURATA C205CN 6630CAPACITORCERAMIC CHIP0.1 uF10VGRM36B104K10-PT1MURATA C210GRM390MURATANot Used C218CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C222CN 7820CAPACITORCERAMIC CHIP2 pF50VGRM36CK020C50-PT1MURATA C223CN 7910CAPACITORCERAMIC CHIP3 pF50VGRM36CJ030C50-PT1MURATA C224CN 7910CAPACITORCERAMIC CHIP3 pF50VGRM36CJ030C50-PT1MURATA C226CN 8200CAPACITORCERAMIC CHIP100 pF50VGRM36CH101J50-PT1MURATA C229CN 9410CAPACITORCERAMIC CHIP180 pF25VGRM36CH181J25-PT1MURATA C230CN 7550CAPACITORCERAMIC CHIP1000 pF50VGRM36B102K50-PT1MURATA C231CN 8020CAPACITORCERAMIC CHIP5 pF50VGRM36CH050C50-PT1MURATA C232GRM360MURATANot Used C233GRM360MURATANot Used C234GRM360MURATANot Used C235GRM390MURATANot Used C236CN 7330CAPACITORCERAMIC CHIP8 pF50VGRM39CH080C50-PT1MURATA FUNCTION DESIGNATION PARTS LIST : P7100 UHF-L (4W) MAIN BOARD Design K.Sugimoto Document No. G3UD07607-5 Rev.5 P7100 UHF-L (4W…

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RF Exposure Info

Rhein Tech Laboratories Client: M/A COM, Inc. 360 Herndon Parkway Model: P7100 (IP) UHF-L Radio Suite 1400 Standards: FCC Part 90/IC RSS-119 Herndon, VA 20170 Report Number: 2003046 http://www.rheintech.com Date: April 10, 2003 43 of 63 APPENDIX A: FCC PART 1.1307, 1.1310, 2.1091, 2.1093: RF EXPOSURES Please refer to the SAR Evaluation that follows. Test Report S/N: 040403-326OWD Test Date(s): April 21-23, 2003 FCC/IC SAR Evaluation © 2003 Celltech Labs Inc.1 of 24 Celltech Labs Inc. declares under its sole responsibility that this device was found to be in compliance with the Specific Absorption Rate (SAR) RF exposure requirements specified in FCC 47 CFR §2.1093 and Health Canada’s Safety Code 6. The device was tested in accordance with the measurement standards and procedures specified in FCC OET Bulletin 65, Supplement C (Edition 01-01) and Industry Canada RSS-102, Issue 1 (Provisional) for the Occupational / Controlled Exposure Environment. All tests described in this test report were performed in accordance with SAR system manufacturer recommendations. I attest to the accuracy of data. All measurements were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. This test report shall not be reproduced partially, or in full, without the prior written approval of Celltech Labs Inc. The results and statements contained in this report pertain only to the device(s) evaluated. Russell Pipe Senior Compliance Technologist Celltech Labs Inc. DECLARATION OF COMPLIANCE SAR EVALUATION Test Lab CELLTECH LABS INC. Testing and Engineering Lab 1955 Moss Court Kelowna, B.C. Canada V1Y 9L3 Phone:250 - 448-7047 Fax:250 - 448-7046 e-mail:[email protected] web site:www.celltechlabs.com Applicant Information M/A-COM, INC. 221 Jefferson Ridge Parkway Lynchburg, VA 24501 Rule Part(s):FCC 47 CFR §2.1093; IC RSS-102 Issue 1 (Provisional) Test Procedure(s):FCC OET Bulletin 65, Supplement C (Edition 01-01) Device Classification:Licensed Non-Broadcast Transmitter Held to Face (TNF) Device Type:Portable UHF PTT Radio Transceiver (P/Ns: T1-LSAR01, T1-LSAR02) FCC ID:OWDTR-0016-E Model Name / No.:P7100(IP) Modulation:FM (UHF Band) Tx Frequency Range:378 - 430 MHz Max. Cond. Power Tested:4.41 Watts Antenna Part No.(s):KRE1011219/9 (378-403 MHz) / KRE1011219/10 (403-430 MHz) / KRE1011223/10 (378-430 MHz) Antenna Type(s):Helical Coil (KRE1011219/9, KRE1011219/10), Quarter-Wave Whip (KRE1011223/10) Battery Type(s) Tested:1. 7.5V Nickel Cadmium - Immersion - Non-Intrinsically Safe (BKB191210/3) 2. 7.5V Nickel Metal Hydride - Immersion - Non-Intrinsically Safe (BKB191210/4) 3. 7.5V Nickel Cadmium - Immersion - Intrinsically Safe (BKB191210/5) 4. 7.5V Nickel Metal Hydride - Immersion - Intrinsically Safe (BKB191210/6) Body-Worn Accessories Tested:1. Speaker Microphone Antenna Version Plus (KRY1011617/184R1A) 2. Speaker-Microphone (KRY1011617/183R1A) 3. Metal Belt-Clip (KRY1011647/1) 4. Leather Case (Belt-Loop type - KRY1011638/1) 5. Belt-Loop (KRY1011609/1) & Swivel (KRY1011608/2) 6. Leather Case (KRY1011639/1) with Belt-Loop (KRY1011609/1) & Swivel (KRY1011608/2) 7. Nylon (black) Case (KRY1011648/1) with Belt-Loop (KRY1011609/1) 8. Nylon “T” Strap Holder (KRY1011656/1) Max. SAR Measured:Face-held: 2.55 W/kg (50% Duty Cycle) Body-worn: 5.20 W/kg (50% Duty Cycle) Test Report S/N: 0404…

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Contact Information

Applicant

Thomas Camper, Jr.(Regulatory Manager)
[email protected]434-455-9367Fax: 434-455-6851

Technical Contact

M/A-Com, Inc.Bryan McWatters
[email protected](434)455-9377

221 Jefferson Ridge Parkway · Lynchburg, Virginia · United States

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
190.21378 MHz - 430 MHz4.4 W9K38F1E1.5 ppm
Grant Notes
Output is at the antenna terminal of the device and must not exceed that tested for SAR compliance. This transmitter may operate with the 3 antennas and one Microphone speaker antenna listed in the filing in Push-to-Talk and body-worn configurations. Body-worn SAR compliance is limited to the specific belt-clip and speaker/microphone configurations listed in the filing. This device must be restricted to work related operations in an Occupational/Controlled RF exposure Environment. All qualified end-users of this device must have the knowledge to control their exposure conditions and/or duration to comply with Occupational/Controlled SAR limit and requirements. A label must be displayed on the device to direct users to specific training information for meeting Occupational Exposure Requirements and users must be provided with the training information. The highest reported SAR values are - Head: 2.55 W/kg (50% duty cycle); Body-worn: 5.20 W/kg (50% duty cycle).

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