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AZ492FT4897Mobile 2-Way Radio

Motorola Solutions, Inc.
Mobile 2-Way Radio - FCC ID AZ492FT4897 - Motorola Solutions, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Nov 21, 2010
Application Purpose
Original Equipment
Date of Application
Aug 10, 2010
Equipment Note
Mobile 2-Way Radio
Frequency Range
380.00000000 - 470.00000000
Company
Motorola Solutions, Inc.
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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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

APX 7500 User Guide O9 Control Head 68007024014-A English mASTRO ® APX™ 7500 Series Digital Mobile RadiosQuick Reference Card Product Safety and RF Exposure Compliance ATTENTION! This radio is restricted to occupational use only to satisfy FCC RF energy exposure requirements. Before using this product, read the RF energy awareness information and operating instructions in the Product Safety and RF Exposure booklet enclosed with your radio (Motorola Publication part number 6881095C98) to ensure compliance with RF energy exposure limits. Radio On/OffAdjusting VolumeSelecting a Zone Selecting a ChannelRadio Controls Receiving and Transmitting Before using this product, read the operating instructions for safe usage contained in the Product Safety and RF Exposure booklet enclosed with your radio. Press the Power On/Off button to toggle the power on or off. Turn the Volume knob clockwise to increase volume or counterclockwise to decrease the volume. 1 > or < to Zone . Press the Menu Select button directly under the Zone . 2 U or D button until the desired zone is displayed. 3 Press the Menu Select button directly below Select to confirm the displayed zone. 4 Press the PTT button to begin transmitting on the displayed zone channel. !  1 > or < to Channel . Press the Menu Select button directly under the Channel . 2 U or D button until the desired channel is displayed. 3 Press the Menu Select button directly below Select to confirm the selected channel. 4 Press the PTT button to begin transmitting on the displayed zone channel. 1 Turn the Mode Knob to scroll to the required channel. 2 Press PTT button to transmit on the selected zone channel. 5 4 1 2 3 6789 11 10 12 13 14 15 16 17 18 Siren Control ButtonsProgrammable Buttons (Top)Response SelectorDirectional ButtonsOrange ButtonPublic Address ButtonKeypadData Feature ButtonMode Knob4-Way Navigation ButtonHome ButtonSatus IconsProgrammable Buttons (Bottom)Menu Select ButtonsVolume KnobDisplay Backlight Control ButtonsLED IndicatorsPower On/Off Button 1 Take the microphone off hook. 2 Select zone/channel. 3 Listen for a transmission.ORTurn the Volume Knob . OR> or < to Monitor then press the Menu Select button directly below Monitor and listen for activity. 4 Adjust volume, if necessary. 5 Press the PTT button to transmit; release to receive. 12 3 456789 10 11 12131415161718 *68007024034* 68007024034-A © 2010 by Motorola, Inc. All Rights Reserved. 05/101301 E. Algonquin Rd., Schaumburg,IL 60196-1078, U.S.A. English Sending an Emergency Alarm To exit emergency at any time, press and hold the Emergency button. Sending an Emergency Call (Trunking Only) To exit emergency at any time, press and hold the Emergency button. Sending a Silent Emergency Alarm If silent emergency alarm is used with emergency call, pressing the PTT button exits the silent mode and initiates the emergency call. Display Status Icons 1 Press the Emergency button. A tone sounds and the display shows EMERGENCY and the current zone or channel. 2 A dispatcher acknowledgment ACK RECEIVED display follows. AND, Trunking Only:A high-pitched tone indicates that the alarm has been received by the trunked system’s central controller. 3 Press and hold the emergency button or the PTT button to return to normal operation. 1 Press the Emergency button. 1 A tone sounds and the display shows EMERGENCY and the current zone or channel. ORA talk prohibited tone sounds when the selected channel does not support emergency. 2 Press and hold the PTT button. Speak clearly into the microphone. 3 Release the PTT to end the transmission. 1 Press the Emergency button to activate the silent alarm feature. 2 The display does not change; the LED does not light up, and there is no tone. Receiving a call or dataTransmitting a call or dataReceived an Individual Call.The more stripes, the stronger the signal strength for the current site (trunking only).Direct radio to radio communication or connected through a repeater.On = Direct Off = Repeater This channel is being monitored.Voice muting the affiliated trunking talkgroup or selected conventional channel.On = Enabled Off = Disabled L = Radio is set at Low power. H = Radio is set at High power. Scanning a scan list.Blinking dot = Detects activity on the Priority-One Channel during scan. Steady dot = Detects activity on the Priority-Two Channel during scan. F O M K H OR . i Radio is in the view or program mode.On steady = View mode. Blinking = Program mode. The vote scan feature is enabled.On = Secure operation. Off = Clear operation. Blinking = Receiving an encrypted voice call. On = AES Secure operation. Off = Clear operation. Blinking = Receiving an encrypted voice call. On = Location feature enabled, and location signal available. Off = Location feature disabled. Blinking = Location feature enabled, but location signal unavailable. On = User is currently associated with the radio. Off = User is currently not associated with the radio. Blinking = Device registration or user registration with the server failed due to an invalid username or pin. Data activity is present.Indicates that the text entry is currently in hexadecimal mode.Alternates between red and blue when the lightbar is on. k m l G no Menu Navigation < or > to Menu Entry. - directly below Menu Entry to select. U or D to scroll through sub-list. - directly below Menu Entry to select. H to exit. Declaration of Conformity English i Declaration of Conformity This declaration is applicable to your radio only if your radio is labeled with the FCC logo shown below. DECLARATION OF CONFORMITYPer FCC CFR 47 Part 2 Section 2.1077(a)Responsible Party Name: Motorola, Inc.Address: 1301 East Algonquin Road, Schaumburg, IL 60196-1078, U.S.A.Phone Number: 1-800-927-2744Hereby declares that the product: Model Name: APX 7500 conforms to the following regulations: FCC Part 15, subpart B, section 15.107(a), 15.107(d) and section 15.109(a) Class B Digital DeviceAs a personal computer peripheral, this device compli…

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Users Manual

English Product Safety and RF Energy Exposure Booklet for Mobile Two-Way Radios Installed in Vehicles or as Fixed Site Control Stations ATTENTION! The information provided in this document supersedes the general safety information contained in user guides published prior to February 2002. BEFORE USING THIS RADIO, READ THIS BOOKLET WHICH CONTAINS IMPORTANT OPERATING INSTRUCTIONS FOR SAFE USAGE AND RF ENERGY AWARENESS AND CONTROL INFORMATION FOR COMPLIANCE WITH RF ENERGY EXPOSURE LIMITS IN APPLICABLE NATIONAL AND INTERNATIONAL STANDARDS. © Motorola, Inc. 2005 8000 W. Sunrise Blvd., Ft. Lauderdale, FL 33322 *6881095C99* 68P81095C99-E 2 English RF Energy Exposure Awareness and Control Information, and Operational Instructions for FCC Occupational Use Requirements NOTICE: This radio is intended for use in occupational/controlled conditions, where users have full knowledge of their exposure and can exercise control over their exposure to meet FCC limits. This radio device is NOT authorized for general population, consumer, or any other use. This 2-way radio uses electromagnetic energy in the radio frequency (RF) spectrum to provide communications between two or more users over a distance. It uses radio frequency (RF) energy or radio waves to send and receive calls. RF energy is one form of electromagnetic energy. Other forms include, but are not limited to, sunlight and x-rays. RF energy, however, should not be confused with these other forms of electromagnetic energy, which when used improperly, can cause biological damage. Very high levels of x-rays, for example, can damage tissues and genetic material. Experts in science, engineering, medicine, health, and industry work with organizations to develop standards for safe exposure to RF energy. These standards provide recommended levels of RF exposure for both workers and the general public. These recommended RF exposure levels include substantial margins of protection. All Motorola 2-way radios are designed, manufactured, and tested to ensure they meet government-established RF exposure levels. In addition, manufacturers also recommend specific operating instructions to users of 2-way radios. These instructions are important because they inform users about RF energy exposure and provide simple procedures on how to control it. 3 English Please refer to the following Web sites for more information on what RF energy exposure is and how to control your exposure to assure compliance with established RF exposure limits. http://www.fcc.gov/oet/rfsafety/rf-faqs.html http://www.osha.gov/SLTC/radiofrequencyradiation/index.html Federal Communication Commission Regulations The FCC rules require manufacturers to comply with the FCC RF energy exposure limits for mobile 2-way radios before they can be marketed in the U.S. When 2-way radios are used as a consequence of employment, the FCC requires users to be fully aware of and able to control their exposure to meet occupational requirements. Exposure awareness can be facilitated by the use of a label directing users to specific user awareness information. Your Motorola 2-way radio has a RF exposure product label. Also, your Motorola user manual, or separate safety booklet, includes information and operating instructions required to control your RF exposure and to satisfy compliance requirements. Compliance with RF Exposure Standard Your Motorola two-way radio is designed and tested to comply with a number of national and international standards and guidelines (listed below) regarding human exposure to radio frequency electromagnetic energy. This radio complies with the IEEE and ICNIRP exposure limits for occupational/controlled RF exposure environment at duty factors of up to 50% talk-50% listen and is authorized by the FCC for occupational use. In terms of measuring RF energy for compliance with the FCC exposure guidelines, your radio antenna radiates measurable RF energy only while it is transmitting (during talking), not when it is receiving (listening) or in standby mode. 4 English Your Motorola two-way radio complies with the following RF energy exposure standards and guidelines: • United States Federal Communications Commission, Code of Federal Regulations; 47CFR part 2 sub-part J • American National Standards Institute (ANSI) / Institute of Electrical and Electronic Engineers (IEEE) C95. 1-1992 • Institute of Electrical and Electronic Engineers (IEEE) C95.1-1999 Edition • International Commission on Non-Ionizing Radiation Protection (ICNIRP) 1998 • Ministry of Health (Canada) Safety Code 6. Limits of Human Exposure to Radiofrequency Electromagnetic Fields in the Frequency Range from 3 kHz to 300 GHz, 1999 • Australian Communications Authority Radiocommunications (Electromagnetic Radiation - Human Exposure) Standard, 2003 • ANATEL, Brasil Regulatory Authority, Resolution 256 (April 11, 2001) “additional requirements for SMR, cellular, and PCS product certification.” RF Exposure Compliance and Control Guidelines and Operating Instructions To control exposure to yourself and others and to ensure compliance with the RF exposure limits, always adhere to the following procedures. Guidelines: • User awareness instructions should accompany device when transferred to other users. • Do not use this device if the operational requirements described herein are not met. Instructions: •Transmit no more than the rated duty factor of 50% of the time. To transmit (talk), push the Push-To-Talk (PTT) button or, for radios equipped with VOX, speak into the microphone. The red LED will illuminate when the radio is 5 English transmitting. To receive calls, release the PTT button, or, for radios equipped with VOX, stop talking. The red LED will extinguish when the radio stops transmitting. Transmitting 50% of the time, or less, is important because this radio generates measurable RF energy exposure only when transmitting (in terms of measuring for standards compliance). •Transmit only when people outside the vehicle are at l…

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Attestation Statements

MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 2 STATEMENT OF CERTIFICATION The technical data supplied with this application, having been taken under my supervision is hereby duly certified. The following is a statement of my qualifications: 1) MSEE University of South Florida 2) 11.5 years experience in the development, testing and certification of Land Mobile Communications Products NAME: Anbuselvan Kuppusamy DATE: 09 August 2010 POSITION: Senior Staff Electrical Engineer I hereby certify that the above application was prepared under my direction and that to the best of my knowledge and belief, the facts set forth in the application and accompanying technical data are true and correct: NAME: Michael Lenzen DATE: 09 August 2010 POSITION: Engineering Manager

Cover Letter(s)

FCC ID: AZ492FT4897 EXHIBIT 13a ______________________________________________________________________________ 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. 11 th August 2010 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Application for Certification of Transmitter with FCC ID: AZ492FT4897, APX7500. Gentlemen: Motorola Inc, 8000 West Sunrise Boulevard, Fort Lauderdale, Florida, herein submits application for Certification of the subject transmitter. This transmitter is intended for use in a Mobile Transmitter environment with capabilities for clear and coded communications with a variable transmits power of 25-100 Watts in the frequency ranges of 380-470 MHz. We are requesting Certification under Part 22, 74 and 90 of the Commission’s Rules to allow operation of this equipment in UHF Range 1 bands. The subject transmitter complies with Section 90.203 of the Rules in that the operator cannot directly program transmit frequencies using the unit's normally accessible external controls. A complete Certification application is enclosed. If you require any additional information, please contact me at (954) 723-5793. Sincerely, /s/ Mike Ramnath (signed) Mike Ramnath Manager, Regulatory Compliance Email: [email protected]

Cover Letter(s)

FCC ID: AZ492FT4897 EXHIBIT 13b ______________________________________________________________________________ Motorola Inc. 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. Date: 11 th August 2010 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Confidentiality Request for Transmitter with FCC ID: AZ492FT4897. Dear Sir or Madam: Motorola is requesting that Exhibit 4 (Circuit Descriptions), Exhibit 5 (Schematic Diagrams), Exhibit 10 (Parts List and Tune-up Procedures), and Exhibit 12 (Operational Description) not be made routinely available for public inspection. Motorola considers the information in these exhibits to be classified as trade secrets, pursuant to 47 CFR Section 0.457(d) and Section 552(b)(4) of the Freedom of Information Act. Please mark Exhibits 4, 5, 10, and 12 as “Confidential”. Please contact me if you require any additional information. Sincerely, /s/ Mike Ramnath (signed) Manager, Regulatory Compliance Tel: (954) 723-5793 E-mail: [email protected]

Cover Letter(s)

FCC ID: AZ492FT4897 ______________________________________________________________________________ 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. EXHIBIT 13c 11 th August 2010 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Extended Frequencies Justification. Gentlemen: The APX7500 Mobile 2-Way UHF Range 2 radio was designed to operate in the frequency bands 380-470 MHz. To aid equipment authorization in other countries that accept the United States FCC Grant for Certification, Motorola is requesting that the FCC list the frequencies 380-470 MHz under FCC Rule Parts 22, 74 and 90 on the FCC Grant. For the FCC’s Rule Parts 90 applications, this radio is used in systems by Federal and Public Safety agencies including Police, Fire, and Emergency Medical Services, etc. as indicated in the table below. Equipment programming is the responsibility of Authorized Service Personnel. In addition, the radio complies with 47 CFR Part 90.203(e), in that the operator cannot directly program the transmit frequencies using the normally accessible external controls. Per ”FCC-OET KDB Publication 634817” guidance, the grantee acknowledges that device operations on unauthorized frequencies are a violation of FCC Rules. Frequency Range (MHz) Part 90 Part 22 Part 74 Feds 380-406 x 406.1-454 x x 454-456* x x 467.7375-470 x Sincerely, /s/ Mike Ramnath (signed) Mike Ramnath Manager, Regulatory Compliance Email: [email protected]

External Photos

MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-1 EXTERNAL PHOTOGRAPHS The following photographs are attached. 1. Front view (Controls) 2. Back view 3. Top view (FCC label location) 4. FCC label (Close view) 5. RF exposure label (Close view) 6. Bottom View 7. Side view (Left) 8. Side view (Right) 9. Top view with microphone, control head and cables MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-2 FRONT VIEW (CONTROLS) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-3 BACK VIEW MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-4 TOP VIEW (FCC LABEL LOCATION) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-5 FCC LABEL (CLOSE VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-6 RF EXPOSURE LABEL (CLOSE VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-7 BOTTOM VIEW MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-8 SIDEVIEW (LEFT) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-9 SIDE VIEW (RIGHT) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 3-10 TOP VIEW WITH MICROPHONE, CONTROL HEAD AND CABLES Note : 1. Cables from the connector are wrapped and placed on the radio. 2. RF exposure label placed at the end of the Microphone cable.

ID Label/Location Info

MOTOROLA FCC ID: AZ492FT4897 IDENTIFICATION LABEL LOCATION See the Attached Photograph or Sketch X Bottom of Radio Top of Radio Back of Radio Back of Radio under Belt Clip TYPE X The label is a polyester film laminate with a pressure sensitive adhesive backing. The adhesive is a permanent type acrylic with the minimum peel strength of 32 oz/inch. MARKINGS (TEXT) X See the Attached Photograph and Exhibit 3-5 for the actual location of the FCC label on the device. X Label Attached Below. See Attached Drawing. EXHIBIT 1 MOTOROLA FCC ID: AZ492FT4897 RF EXPOSURE LABEL LOCATION See the Attached Photograph or Sketch X On Microphones Cord Back Of Radio under Belt Clip MARKINGS (TEXT) X See the Attached Photograph and Exhibit 3 for the actual location of the RF Exposure Label on Microphones Cord. X Label Attached Below. See Attached Drawing. EXHIBIT 1A

Internal Photos

MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-1 INTERNAL PHOTOGRAPHS The following photographs are attached. 1. RF board (Top view) 2. RF board (Bottom view) 3. Controller board (Top view) 4. Controller board (Bottom view) 5. RF board, less shields (Top view) 6. RF board, less shield (Bottom view) 7. Controller board, less shield (Bottom view) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-2 RF BOARD (TOP VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-3 RF BOARD (BOTTOM VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-4 CONTROLLER BOARD (TOP VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-5 CONTROLLER BOARD (BOTTOM VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-6 RF BOARD, LESS SHIELD (TOP VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-7 RF BOARD, LESS SHIELD (BOTTOM VIEW) MOTOROLA FCC ID: AZ492FT4897 EXHIBIT 9-8 CONTROLLER BOARD, LESS SHIELD (BOTTOM VIEW)

RF Exposure Info

SR8369 Form-MPE Vehicle rpt. Rev 6.00 Page 1 of 23 TESTING CERT # 2518.01 DECLARATION OF COMPLIANCE: MPE ASSESSMENT Enterprise Mobility Solutions EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 Date of Report: August 6, 2010 Report Revision: O Report ID: SR8369_MPE rpt_APX7500_UHFR1_100W Mobile_Rev O_100806 Responsible Engineer: Stephen C. Whalen (Principal Staff EME Test Engineer) Report author: Kim Uong ((Principal Staff EME Test Engineer) Date/s Tested: 5/26/2010, 6/2/2010 & 6/3/2010; 6/25/2010; 7/14/2010 Manufacturer/Location: Motorola, Schaumburg, IL Date submitted for test: 5/18/2010 DUT Description: APX7500 Single Band UHF R1 100W, 380 - 470 MHz Test TX mode(s): CW Max. Power output: 120 Watts TX Frequency Bands: 380-470MHz Signaling type: Analog, APCO 25, and TDMA 1:2 (F2) Model(s) Tested M30QTS9PW1AN Model(s) Certified: M30QTS9PW1AN Serial Number(s): 123ABC4567 Classification: Occupational/Controlled Environment Regulatory Identifications: FCC ID: AZ492FT4897 – Part 22 & 90 (406.1-470 MHz), MPE results outside of Part 90 are not applicable for FCC compliance demonstration. Approved Accessories: Antenna(s): HAE4003A (Vehicular Roof Mount, 450-470 MHz, ¼ Wave, 2.15dBi) HAE6012A (Vehicular Roof Mount, 380-433 MHz, ¼ Wave, 2.15dBi) HAE4011A (Vehicular Mount, 450-470 MHz, ½ Wave, 5.65dBi) HAE6010A (Vehicular Mount, 380-433 MHz, ½ Wave, 5.65dBi) HAE6013A (Vehicular Mount, 380-470 MHz, ½ Wave, 4.15dBi) HAE6031A (Vehicular Mount, 380-520 MHz, ½ Wave, 4.15dBi) HAE6011A (Vehicular Roof Mount, 380-433 MHz, 5/8 Wave, 7.15dBi) RAE4014ARB (Vehicular Mount, 445-470 MHz, 5/8 Wave, 7.15dBi) Based on the information and the testing results provided herein, the undersigned certifies that when used as stated in the operating instructions supplied, said product complies with the national and international reference standards and guidelines listed in section 4.0 of this report. This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. I attest to the accuracy of the data and assume full responsibility for the completeness of these measurements. This reporting format is consistent with the suggested guidelines of the TIA TSB-159 April 2006 The results and statements contained in this report pertain only to the device(s) evaluated herein. Signature on file – Kim Uong Deanna Zakharia EMS EME Lab Senior Resource Manager, Laboratory Director, Approval Date: 8/6/2010 Certification Date: 8/6/2010 Certification No.: L1100820P SR8369 Form-MPE Vehicle rpt. Rev 6.00 Page 2 of 23 TABLE OF CONTENTS 1.0 Product and System Description 2.0 Abbreviations / Definitions 3.0 Additional Options and Accessories 4.0 Measurement and Limit Standards 5.0 Measurement System Uncertainty Levels 6.0 Method of Measurement 6.1 EME measurements made with trunk mounted antenna(s) 6.1.1 External/Bystander vehicle EME measurement 6.1.2 Internal/Passenger vehicle EME measurement 6.2 EME measurements made with roof mounted antenna(s) 6.2.1 External/Bystander vehicle EME measurement 6.2.2 Internal/Passenger vehicle EME measurement 7.0 Test Site 8.0 Measurement System/Equipment 9.0 DUT Output Power 10.0 Test Set-Up Description 11.0 Test Results Summary 12.0 Conclusion APPENDIX A: Illustration of Antenna Location and Test Distances APPENDIX B: Meter/Probe Calibration Certificates APPENDIX C: Photo of Assessed Antennas APPENDIX D: SAR Simulation Report REVISION HISTORY Date Revision Comments 8/6/2010 O Initial release SR8369 Form-MPE Vehicle rpt. Rev 6.00 Page 3 of 23 1.0 Product and System Description Model M30QTS9PW1AN is a mobile transceiver that utilizes analog, APCO 25 & F2 digital two-way radio communications. The analog modulation scheme uses Frequency Modulation (FM). APCO 25 & F2 digital modes use C4FM of CQPSK family of modulation (Compatible 4-Level Frequency Modulation of Compatible Quadrature Phase Shift Keying). F2 is a TDMA 1:2 protocol that allocates portions of the RF signal by dividing time into two slots (2 slots TDMA). Transmission from a unit or base station is accommodated in time-slot lengths of 30 milliseconds and frame lengths of 60 milliseconds. This product supports voice in analog mode, and both voice and data modes in digital mode. The maximum duty cycle for TDMA is 1:2 (50%) and is controlled by software. The FM signal is continuous. However, because of hand shaking or Push-To-Talk (PTT) between users and/or base stations a conservative 50% duty cycle is applied. The TDMA mode was not tested because its duty cycle is inherently 50% and would include an additional 50% duty cycle for PTT. The intended use of the radio is PTT while the device is properly installed in a vehicle with an external antenna mounted at the center of the roof or trunk. This device will be marketed to and used by employees solely for work-related operations, such as public safety agencies, e.g. police, fire and emergency medical. User training is the responsibility of these agencies which can be expected to employ the usage instructions, safety information and operational cautions set forth in the user's manual, instructional sessions or other means. Accordingly this product is classified as Occupational/Controlled Exposure. However, in accordance with FCC requirements, the passengers inside the vehicle and the bystanders external to the vehicle are evaluated to the General Population/Uncontrolled Exposure Limits. (Note that “Bystanders” as used herein mean people other than operator) 2.0 Abbreviations / Definitions APCO: Association of Public-Safety Communications Officials C4FM: Compatible 4-Level Frequency Modulation CNR: Calibration Not Required CQPSK: Compatible Quadrature Phase Shift Keying CW: Continues Wave DUT: Device Under Test F2: 2 slot Time Division Multiple Access FM: Frequency Modulation NA: Not Applicable PTT: Push to Talk TDMA: Time Division Multiple Access MPE: Maximum Permissible Exposure EME: Electromagnetic Energy SR836…

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RF Exposure Info

SR 8369 EMS EME Form-SAR-Rpt Ex7B-Rev. 7.00 Page 1 of 2 TESTING CERT # 2518.01 Exhibit 7B: MPE Test Report Photographs Enterprise Mobility Solutions EME Test Laboratory 8000 West Sunrise Blvd. Fort Lauderdale, FL. 33322 Signature on file – Kim Uong Deanna Zakharia EMS EME Lab Senior Resource Manager, Laboratory Director Approval Date: 8/6/2010 SR 8369 EMS EME Form-SAR-Rpt Ex7B-Rev. 7.00 Page 2 of 2 1.0 Antenna Photographs for UHF band: Antenna kit numbers, from left to right; HAE6010A, HAE6011A, HAE4011A, RAE4014ARB, HAE6013A, HAE6031A, HAE6012A & HAE4003A

RF Exposure Info

1 COMPUTATIONAL EME COMPLIANCE ASSESSMENT OF THE APX7500 SINGLE BAND UHF R1, MODEL #M30QTS9PW1AN MOBILE RADIO August 3, 2010 Giorgi Bit-Babik, Ph.D., and Antonio Faraone, Ph.D. Motorola Corporate EME Research Lab, Plantation, Florida Introduction This report summarizes the computational [numerical modeling] analysis performed to document compliance of the APX7500 Single Band UHF R1, Model Number M30QTS9PW1AN, Mobile Radio and vehicle-mounted antennas with the Federal Communications Commission (FCC) guidelines for human exposure to radio frequency (RF) emissions. The radio operates in the 380 - 470 MHz frequency band. This computational analysis supplements the measurements conducted to evaluate the FCC maximum permissible exposure (MPE) limits for this mobile device. All test conditions (26 in total) that did not conform with applicable MPE limits were analyzed to determine whether those conditions complied with the specific absorption rate (SAR) limits for general public exposure (1.6 W/kg averaged over 1 gram of tissue and 0.08 W/kg averaged over the whole body) set forth in FCC guidelines, which are based on the IEEE C95.1-1999 standard [1]. In total 52 independent simulations have been performed. Thirty two simulations are addressing exposure of passenger and another twenty simulations are addressing exposure of bystander to the UHF mobile radios with trunk- mount antennas. For all simulations a commercial code based on Finite-Difference-Time- Domain (FDTD) methodology was employed to carry out the computational analysis. It is well established and recognized within the scientific community that SAR is the primary dosimetric quantity used to evaluate the human body’s absorption of RF energy and that MPEs are in fact derived from SAR. Accordingly, the SAR computations 2 provide a scientifically valid and more relevant estimate of human exposure to RF energy. Method The simulation code employed is XFDTD™ v6.4, by Remcom Inc., State College, PA. This computational suite features a heterogeneous full body standing model (High Fidelity Body Mesh), derived from the so-called Visible Human [4], discretized in 5 mm voxels. The dielectric properties of 23 body tissues are automatically assigned by XFDTD™ at any specific frequency. The “seated” man model was obtained from the standing model by modifying the articulation angles at the hips and the knees. Details of the computational method and model are provided in the Appendix to this report. The car model has been imported into XFDTD™ from the CAD file of a sedan car having dimensions 4.98 m (L) x 1.85 m (W) x 1.18 m (H), and discretized in 5mm voxels. This CAD models has been incorporated into the IEEE 1528.2 draft standard. For bystander exposure, the antenna position is in the center of the trunk, so as to replicate the experimental conditions used in MPE measurements. For passenger exposure, the antenna position is on the trunk and/or in the center of the roof and the distance of trunk mounted antennas from the passenger head when the passenger is located in the center of the back seat was set at 85 cm, also to replicate the experimental conditions used in MPE measurements. Figures 1 and 2 show the XFDTD™ computational models used for bystander exposure. According to the IEEE 1528.2 draft standard (January, 2010) for bystander exposure simulations from vehicle mount antennas the lossy dielectric slab with 30 cm thickness, dielectric constant of 8 and conductivity of 0.01 S/m has been introduced in the computational model to properly account for the effect of the ground (pavement) on exposure. Figure 3 shows some of the XFDTD™ computational models used for passenger exposure to trunk mounted antennas. 3 Figure 1: Bystander model exposed to a trunk-mount antenna: Bystander is located at the back, on the side or at the corner of the car replicating the measurement conditions. The antenna is mounted in the center of the trunk. The dielectric sl…

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Contact Information

Applicant

Deanna Zakharia(Regulatory Compliance Manager)
[email protected]9547234707Fax: --

Technical Contact

MotorolaMike Ramnath

8000 West Sunrise Blvd · Plantation, Florida · United States

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
622,74,9380 MHz - 470 MHz100 W20K0F1E2 ppm
Confidentiality
Long Term

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