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AZ492FT5823Astro XTL5000

Motorola Solutions, Inc.
Astro XTL5000 - FCC ID AZ492FT5823 - Motorola Solutions, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
May 08, 2003
Application Purpose
Original Equipment
Date of Application
May 08, 2003
Equipment Note
Astro XTL5000
Frequency Range
764.00000000 - 870.00000000
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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Parts List/Tune Up Info

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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

W4, W5, W7, W9 Control Heads User's Guide ASTRO ® XTL TM 5000 Digital Mobile Radio ASTRO ® XTL™ 5000 Digital Mobile Radio with W4 Control Head Quick Reference Card BASIC OPERATIONTurn the Radio On and OffSet the Volume and SquelchChange ModesTransmitTransmit (Conventional Modes) Activate ScanProgram a Scan ListSelect Scan Mode Priority PHONE PAGE or SECURE or EMERGENCY Page Emer CALL DIRECT XMIT BUSY Mode Volume Pwr Phon Call Sel Scan Mic Home Dim H/L Dir Mon SCAN SELECT MONITOR MODE KNOB POWER ON/OFF/ VOLUME KNOB HOME HORN/ IGHTS PRIORITY/ NON-PRIORITY INDICATORS DIRECT INDICATOR Rotate the Vol (Volume) knob clockwise. 1 Turn the Vol knob clockwise to increase volume or counterclockwise to decrease volume as desired. 2 On conventional modes with Private-Line or Digital Private-Line, press Mon or remove the microphone from the hang-up clip to defeat the coded squelch. 3 Press Mon again, or replace the microphone on the hang-up clip to return to coded-squelch operation. 4 To adjust squelch level, hold Mon until a tone sounds. 5 Turn Mode knob to select squelch level. 6 Press Home . Turn the Mode knob to select the desired mode ORPress Home to access the preprogrammed Home mode. 1 Press and hold the microphone PTT button. 2 When the transmit light comes on solid and no alert tones sound (or a talk-permit tone or ID sidetone sounds), speak into the microphone in a normal voice. 3 State your FCC call sign at the beginning of each transmission. 1 Press Dir (Direct). The Dir indicator lights. 2 Press Dir again to return to repeater operation. 1 Press Scan to start a scan. If no activity exists, the display shows your selected mode. When a scanned channel or talkgroup becomes active, the display shows the active mode name. The PRI and NPRI indicators show priority. 2 Press Scan again to stop scanning. 1 Hold Scan until a tone sounds and the scan indicator blinks. 2 Turn the Mode knob to select the mode you want to program. 3 Press the Sel button as indicated in the table below to add or remove the displayed mode from the scan list. 4 Repeat the previous steps to continue editing the list. 5 Press Home or Scan to exit. Press Sel Mode Indicator One time Non-Priority NPRI lit Two times Second Priority PRI lit Three times First Priority PRI blinks Four times Delete from List No indicator 1 Press the Sel button as indicated in the table above to designate up to tw o modes as priorities. 2 Press Home or Scan to end scan list selection. Send an Emergency Alarm or Call Send a Status TransmissionSend a Direct-Entry Keyboard Status TransmissionSend a Direct-Entry Enhanced Private Conversation Call Initiate a Call Alert PageAnswer a Call Alert Page Press the emergency actuator ( Emer button, footswitch, hidden pushbutton) to begin an emergency transmission.For conventional modes, a silent or non-silent emergency alarm data transmission is sent.For trunked modes, emergency call (priority access to a voice channel), silent or non-silent emergency alarm, or emergency alarm and call is entered.Depending on your radio’s programming, one of the emergency sequences described in the table below occur. Alarm Type Indications/Actions Non-Silent A tone sounds and the display alternates between EMERGNCY and the zone/channel. When acknowledged, four more tones sound and the display shows ACK RCVD , then the radio returns to normal operation. Silent The audio is muted and no display changes take place during the alarm. Press the PTT button, or press and hold the emergency button to stop the emergency condition and unmute the radio. Call (Trunked Modes only) A tone sounds and the display alternates between EMERGNCY and the zone/channel.Press the PTT button and talk. After completing the call, press and hold the emergency actuator until a tone sounds to return to normal operation. Alarm and Call After ACK RCVD (see Non-Silent Alarm above) is displayed, the radio has priority voice-channel access.Press the PTT button and talk. After completing the call, press and hold the emergency actuator until a tone sounds to return to normal operation. 1 Press Sts . The display shows the last acknowledged status or first status name. 2 Rotate Mode to select other statuses. 3 Press Sel to send the transmission. The display flashes the selected status/message name until the dispatcher acknowledges, at which time alert tones sound and the display shows ACK RCVD . The radio then returns to normal operation. Press the appropriate Sts # button you wish to send. The associated indicator blinks until an acknowledgment is received, then it lights steadily. 1 Press Sel or the PTT button. A single tone sounds and the display changes to PLS WAIT , followed by telephone-type ringing if the receiving unit is in service. Alarm Type Indications/Actions 2 If the receiving unit answers, press the PTT button to identify yourself and proceed with your call.ORIf the called unit does not respond, press Sel or the PTT button again to leave a Call Alert page message and your ID.A single tone followed by four tones sounds if the called unit acknowledges the page. 1 Press the Page button. 2 Follow the instructions for initiating a Private Conversation to select a unit ID. 3 Press Sel or the PTT button to send a Call Alert page to the displayed ID, ORTo send a Call Alert page following an Enhanced Private Conversation attempt, follow the instructions for sending a direct-entry Enhanced Private Conversation call.Four tones sound and PAGE RCV flashes on the display. The tone and display repeat every five seconds. 1 Press the PTT button, ORInitiate an Enhanced Private Conversation call to the caller. Select a Zone/Mode (Optional)Select a Home Zone/Home ModeSelect Secure ModeSelect an Encryption Key Select a Key IndexErase an Encryption Key DISPLAY AND LIGHT INDICATORS 1 Press the Zone Up $ button or Zone Down % button to scroll to the desired zone. 2 Turn the Mode knob to select the mode. Press the Home button. Press and release the D button. The D indicator ligh…

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Attestation Statements

MOTOROLA INC FCC ID: AZ492FT5823 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) 4.5 years experience in the development, testing and certification of Land Mobile Communications Products NAME: Anbuselvan Kuppusamy DATE: 05 May 2003 POSITION: Senior 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: 05 May 2003 POSITION: Engineering Manager

Cover Letter(s)

Applicant: Motorola Inc. FCC ID: AZ492FT5823 Motorola Inc., 8000 W. Sunrise Blvd., Plantation, FL 33322 Page: 13-a REQUEST FOR CONFIDENTIALITY 7th May 2003 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Application for Type Acceptance of Transmitter with FCC ID: AZ492FT5823. Gentlemen; Motorola is requesting that Exhibit 4 (Circuit Description), Exhibit 5 (Schematic Diagrams), and Exhibit 10 (Semiconductor/Active Device List) not be made routinely available for public inspection. Motorola has licensed the technology and has a number of Patent applications. Please mark Exhibit 4, 5 and 10 as Confidential. Contact me at (954) 723-5793 if you require any additional information. Regards, /s/ Mike Ramnath (signed) FCC Liaison Email: [email protected]

Cover Letter(s)

FCC ID: AZ492FT5823 ______________________________________________________________________________ 8000 West Sunrise Boulevard, Fort Lauderdale, Florida 33322. (954) 723-5793 7 th May 2003 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Application for Certification of Transmitter with FCC ID: AZ492FT5823. 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 Radio environment with capabilities for clear and coded communications with a variable transmit power of 2-42 Watt. The FCC Rules allow the transmitter to operate in the following frequency bands: 764-767 MHz, 773-776 MHz, 794-797 MHz, 803- 806 MHz and 806-824 MHz, 851-869 MHz. However, to aid equipment authorization in foreign countries which accept United States FCC Grant for equipment authorization, Motorola is asking the FCC to list on the FCC Grant the following frequencies: 764-870 MHz. We are requesting Certification under Part 22, 74 and 90 of the Commission’s Rules to allow operation of this equipment. 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 Mike Ramnath at (954) 723-5793 Sincerely, /s/ Mike Ramnath (signed) Mike Ramnath FCC Liaison Email: [email protected] EXHIBIT 13

External Photos

MOTOROLA INC. FCC ID: AZ492FT5823 EXTERNAL PHOTOGRAPHS The following photographs are attached. 1. Front view (Controls) 2. Back view 3. Top view 4. RF exposure label (Close view) 5. Bottom view (FCC label location) 6. FCC label (Close view) 7. Side view (Left) 8. Side view (Right) MOTOROLA INC. FCC ID: AZ492FT5823 FRONT VIEW (CONTROLS) EXHIBIT 3-1 MOTOROLA INC. FCC ID: AZ492FT5823 BACK VIEW EXHIBIT 3-2 MOTOROLA INC. FCC ID: AZ492FT5823 TOP VIEW EXHIBIT 3-3 MOTOROLA INC. FCC ID: AZ492FT5823 RF EXPOSURE LABEL (CLOSE VIEW) EXHIBIT 3-4 MOTOROLA INC. FCC ID: AZ492FT5823 BOTTOM VIEW (FCC LABEL LOCATION) EXHIBIT 3-5 MOTOROLA INC. FCC ID: AZ492FT5823 FCC LABEL (CLOSE VIEW) EXHIBIT 3-6 MOTOROLA INC. FCC ID: AZ492FT5823 SIDE VIEW (LEFT) EXHIBIT 3-7 MOTOROLA INC. FCC ID: AZ492FT5823 SIDE VIEW (RIGHT) EXHIBIT 3-8

ID Label/Location Info

MOTOROLA INC FCC ID: AZ492FT5823 LIST OF EXHIBITS DESCRIPTION EXHIBIT REFERENCE I. Identification label information 1 2.1033-(c) 11 & General Information 1a 1. Production Plans 2.1033-(c) 2. Application References 2.1061 3. Data Submittal Procedure II. Certification of Data 2 III. External Photographs 3 2.1033-(c) 12 IV. Block Diagrams (Circuit Diagrams) 4 V. Schematic Diagrams 5 2.1033-(c)-10 VI. Test Report 6 1. Data Index 6 2. RF Output Data 6A 2.1046 3. Modulation Characteristics 2.1047 A. Audio Response & Low Pass Filter Response 6B B. Low Pass Filter Response 6C C. Modulation Limiting 6D 4. Occupied Bandwidth 6E 2.1049 5. Adjacent Channel Coupled Power Ratio 6F 90.543 6. Conducted Spurious Emissions 6G 2.1051 7. Radiated Spurious Emissions 6H 2.1053 8. 1559 – 1610 Radiated Spurious 6I 90.543-(e) 9. Frequency Stability (Temperature & Supply Voltage) 6J-1, 6J-2 2.1055 VII. Test Set-up Procedures 7 2.1041 VIII. Instruction Manual 8 2.1033-(c) 3 IX. Internal Photographs. 9 2.1033-(c) 11, 12 X. Parts List and Tune-Up procedures 10 2.1033-(c) 9, 10 XI. RF Exposure Information 11 2.1091 XII. Operational Description 12 2.1033-(c) 4, 5 1. Technical Characteristics 2. Application XIII. Cover Letter 13 MOTOROLA INC FCC ID: AZ492FT5823 IDENTIFICATION LABEL LOCATION See the Attached Photograph or Sketch X Back Of Radio Back Of Radio under Belt Clip TYPE X The label is a paper polyester film laminate with a pressure sensitive adhesive backing. The adhesive is a permanent type acrylic with a minimum peel strength of 40 oz/inch. MARKINGS (TEXT) X See the Attached Photograph and Exhibit 3-5 for the actual location of the FCC label on the device. Label Attached Below. See Attached Drawing. EXHIBIT 1 MOTOROLA INC FCC ID: AZ492FT5823 GENERAL INFORMATION I. Production Plans -- Pursuant 2.1033 (c) Quantity production is planned. II. Application References -- Pursuant 2.1061 Reference is made to the following Motorola "Application References" 1. Mobile Products and their application. 2. Mobile Products Transmitter Modulations Methods. 3. Plantation, Florida Antenna Range. III. Data Submittal Procedure: Data is supplied in accordance with Part 2, Sub-part J of the Commissions’ rules. Necessary Bandwidth Computation for 8K10F1E Emission Designator The FCC Rule & Regulations Part 2, §2.202(b) defines Necessary Bandwidth as the minimum value of the occupied bandwidth sufficient to ensure that transmission of information at the rate and with the quality required for the system employed. §2.202(c) lists four methods of determining the necessary bandwidth, including the use of formulas in §2.202(g), and measurement in cases where the other methods of §2.202(c) do not apply. It is felt that while these formulas apply well to voice and many older digital modulation systems, the formulas do not apply to the high performance digital modulation employed in the system submitted for Certification because of difficulties determining representative values for the factors K and M. We have, therefore, used the measurement criteria of §2.202(c)(4). The value cited, 8K10, is the bandwidth that contains 99% of the total transmitted power. The 99% value was chosen because §2.202(b) defines Necessary Bandwidth as the minimum value of the occupied bandwidth . In turn, §2.202(b) defines Occupied Bandwidth as the frequency bandwidth such that, below its lower and above its upper frequency limits, the mean powers radiated are each equal to 0.5% of the total mean power radiated by a given emission, i.e., contains 99% of the total transmitted power. IV. Applicable References: • Reference Certification FCC ID: AZ489FT5806 • EIA/TIA-603A Land Mobile FM or PM Communications Equipment Measurement and Performance Standards • FCC Federal Regulations Part 47 Sec. 2.1033 – 2.1055 • FCC Federal Regulations Part 90 Sec.90.210 EXHIBIT 1A

Internal Photos

MOTOROLA INC. FCC ID: AZ492FT5823 INTERNAL PHOTOGRAPHS The following photographs are attached. 1. Radio board (Top view) 2. Radio board (Bottom view) 3. Radio board, less shields (Top view) 4. Radio board, less shields (Bottom view) EXHIBIT 9 MOTOROLA INC. FCC ID: AZ492FT5823 RADIO BOARD (TOP VIEW) EXHIBIT 9-1 MOTOROLA INC. FCC ID: AZ492FT5823 RADIO BOARD (BOTTOM VIEW) EXHIBIT 9-2 MOTOROLA INC. FCC ID: AZ492FT5823 RADIO BOARD, less shields (TOP VIEW) EXHIBIT 9-3 MOTOROLA INC. FCC ID: AZ492FT5823 RADIO BOARD, less shields (BOTTOM VIEW) EXHIBIT 9-4

Parts List/Tune Up Info

MOTOROLA INC. FCC ID: AZ492FT5823 EXHIBIT 10 - 1 CONFIDENTIALITY REQUESTED Function of RF Semiconductors & Other Active Devices Part Number Ref. Designator Application Description 4802233J09 D6751 Charge pump diode ROHM IMN10T108 diode triple 4802233J09 D6752 Charge pump diode ROHM IMN10T108 diode triple 4802482J02 D6701 Antenna switch M/A-Com MA4P959 PIN diode 4802482J02 D6702 Antenna switch M/A-Com MA4P959 PIN diode 4805218N57 D6730 Tx forward power detector ROHM RB715f dual Schottky diode 4805218N57 D6731 Tx reverse power detector ROHM RB715f dual Schottky diode 4805921T04 Q6753 VCO dc power switch ROHM FMC1AT148 Transistor 4805921T04 Q6755 VCO dc power switch ROHM FMC1AT148 Transistor 4805921T04 Q6756 VCO dc power switch ROHM FMC1AT148 Transistor 4805921T04 Q6760 VCO dc power switch ROHM FMC1AT148 Transistor 4809527E01 RX VC0, Q1 Rx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 RX VC0, Q2 Rx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 RX VC0, Q3 Rx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 RX VC0, Q4 Rx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 TX VC0, Q1 Tx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 TX VC0, Q2 Tx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 TX VC0, Q3 Tx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E01 TX VC0, Q4 Tx VCO amplifier California Eastern Labs NE85633 Transistor 4809527E41 Q6761 Prescalar buffer amplifier Infineon IRF949TE6700 Transistor 4809527E41 Q6762 Rx buffer amplifier Infineon IRF949TE6700 Transistor 4809527E41 Q6764 Tx buffer amplifier Infineon IRF949TE6700 Transistor 4809527E41 Q6765 Tx buffer amplifier Infineon IRF949TE6700 Transistor 4809527E41 Q6766 Tx buffer amplifier Infineon IRF949TE6700 Transistor 4809579E16 Q0954 Power control Vishay TN0200T-T1 N-channel MOSFET 4809579E16 Q0955 Power control Vishay TN0200T-T1 N-channel MOSFET 4813824A10 Q6757 Charge pump amplifier On Semiconductor MMBT3904LT1 Transistor MOTOROLA INC. FCC ID: AZ492FT5823 EXHIBIT 10 - 2 4813824A10 Q6758 Charge pump amplifier On Semiconductor MMBT3904LT1 Transistor 4813824A17 Q6759 Charge pump amplifier On Semiconductor MMBT3904LT1 Transistor 4813828A09 Q6520 Tx driver amplifier Motorola MRF1517T1 LDMOS amplifier 4813828C46 Q6540 Tx power amplifier Motorola MRF9045MDR1 LDMOS amplifier 4813828C46 Q6541 Tx power amplifier Motorola MRF9045MDR1 LDMOS amplifier 4813830A14 VR0950 Power control ON Semiconductor MMBZ5231BLT1 zener diode 4813833C02 D0950 Power control ON Semiconductor MMBD6100LT1 diode 4813833C02 D0951 Power control ON Semiconductor MMBD6100LT1 diode 4813833C02 D0952 Power control ON Semiconductor MMBD6100LT1 diode 4813833C02 D6750 Power control ON Semiconductor MMBD6100LT1 diode 4862824C01 RX VCO, D1 Rx VCO varactor diode Toshiba 1SV229(TPH3) Diode 4862824C01 RX VCO, D1 Rx VCO varactor diode Toshiba 1SV229(TPH3) Diode 4862824C01 TX VCO, D1 Tx VCO varactor diode Toshiba 1SV229(TPH3) Diode 4862824C01 TX VCO, D1 Tx VCO varactor diode Toshiba 1SV229(TPH3) Diode 4880048M01 Q0951 Power control ROHM DTC144EK NPN switching transistor 4885844C01 Q0952 Power control Vishay P-channel MOSFET 5105492X03 U6752 Reference oscillator buffer Toshiba TC7SH04FU(T5LMOT) Not gate 5113819A14 U0955 Power control ON Semiconductor MC33204 operational amplifier 5113819A14 U0957 Power control ON Semiconductor MC33204 operational amplifier 5113819A14 U0960 Power control ON Semiconductor MC33204 operational amplifier 5185130C65 U6500 Tx predriver amplifier Motorola VHF/UHF/800 MHZ LDMOS driver amplifier 5185143E05 U0959 Power control Maxim MAX5258 digital to analog converter 5185143E07 Y6750 16.8 MHz reference oscillator Toyocom ISD4-2A-5624 Reference oscillator IC 5185143E16 U0953 Power control Analog Devices AD7812 analog to digital converter 5185353D35 U0952 Power control Maxim MAX5452 digital potentiometer 5185353D92 U6541 Current sensor Texas Instruments INA138 current shunt monitor MOTOROLA INC. FCC ID: AZ492FT5823 EXHIBIT 10 - 3 5185956E24 U0956 Power control National Semiconductor LM6484 operational amplifier 5185963A15 U6540 Temperature sensor National Semiconductor LM50C temperature sensor 5185963A27 U6751 Frequency synthesizer Atmel AT25016-0T2T frequency synthesizer IC 5186258W01 Q6763 Rx buffer amplifier M/A-Com MAALSS0017TR Transistor COMMENTS: The Motorola designators are special code numbers for active devices used in Motorola radios. These devices are either identical or derived from the device family listed under Source, by the manufacturer or are proprietary to Motorola. Service people do not have access to any cross- references or given any information on proprietary devices and are prevented from making unauthorized substitution. MOTOROLA INC. FCC ID: AZ492FT5823 EXHIBIT 10 - 4 TUNE-UP PROCEDURE Setup Procedures 1. Connect radio to the computer using programming cable. 2. Connect radio antenna port to Modulation Analyzer. 3. Power up radio and all equipment. 4. Launch the XTL 5000 radio tuner software and click on the “read device” icon. A window will open with a list of the various parameters that may be tuned on this radio. Double click on the parameter to be tuned and follow the instructions below. Transmitter Alignment Procedure PA Bias 1 1. Set power supply voltage and current limit. 2. Enter PA Bias 1 alignment screen. When screen is entered, radio enters special bias tune mode and radio current increases by approximately 100 mA. 3. Read baseline current from current meter on power supply. 4. Add baseline current to device bias current to calculate target current. 5. Left-click the Bias Toggle button to apply bias to gate of device. 6. Adjust softpot value until target current is achieved. 7. Left-click the Bias Toggle button to remove bias from gate of device. 8. Left-click the Program All button to save tuned value. 9. Left-click Close button to close the screen and return to the Transmitter Alignment menu.…

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RF Exposure Info

English Product Safety and RF Exposure for Mobile Two-Way Radios Installed in Vehicles or as Fixed Site Control Stations The information provided in this document supersedes the general safety information contained in user guides published prior to February 2002. Compliance with RF Energy Exposure Standards NOTICE: This radio is intended for use in occupational/controlled applications where users have been made aware of the potential for exposure and can exercise control over their exposure. This radio device is NOT authorized for general population, consumer or similar use. 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. ! C a u t i o n © Motorola, Inc. 2002. Commercial, Government and Industrial Solutions Sector 8000 W. Sunrise Blvd., Ft. Lauderdale, FL 33322 Printed in U.S.A. 07/02. All Rights Reserved.  68P81095C99-O 2 English Federal Communication Commission Regulations The FCC has established limits for safe exposure to radio frequency (RF) emissions from mobile two-way radios. The FCC requires manufacturers to demonstrate compliance with RF exposure limits before mobile two-way radios can be marketed in the U.S. When two-way radios are approved for occupational/controlled environment exposure limits, the FCC requires users to be fully aware of, and exercise control over, their exposure. Awareness and control of RF exposure can be accomplished by education or training through appropriate means such as information and instructions in user manuals or safety booklets, or other appropriate means. This user safety booklet includes useful information about RF exposure and helpful instructions on how to control your RF exposure. 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 (FCC) and ICNIRP exposure limits for occupational/controlled RF exposure environments at usage factors of up to 50% talk–50% listen. In terms of measuring RF energy for compliance with FCC exposure guidelines, your radio radiates measurable RF energy only while it is transmitting (during talking), not when it is receiving (listening) or in standby mode. 3 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, 2001 • ANATEL, Brasil Regulatory Authority, Resolution 256 (April 11, 2001) “additional requirements for SMR, cellular and PCS product certification.” 4 English Compliance and Control Guidelines and Operating Instructions for Mobile Two-Way Radios Installed in Vehicles To control your exposure and ensure compliance with the occupational/ controlled environment exposure limits, always adhere to the following procedures: •To transmit (talk), push the Push-To-Talk (PTT) button; to receive, release the PTT button. Transmit only when people outside the vehicle are at least the minimum lateral distance away (as shown in the table below) from a properly installed, externally-mounted antenna. The table below lists the minimum lateral distance for bystanders in an uncontrolled environment from the transmitting antenna at several different ranges of rated radio power for mobile radios installed in a vehicle. • Install mobile antennas at the center of the roof or the center of the trunk deck. These mobile antenna installation guidelines are limited to metal body vehicles. The antenna installation must additionally be in accordance with: - The requirements of the antenna manufacturer/supplier - Instructions in the Radio Installation Manual Rated Power of Vehicle-Installed Mobile Two-way Radio Minimum Lateral Distance from Transmitting Antenna Less than 7 watts8 inches (20 centimeters) 7 to 15 watts1 foot (30 centimeters) 16 to 50 watts2 feet (60 centimeters) 51 to 110 watts3 feet (90 centimeters) 5 English Use only the Motorola-approved, supplied antenna or a Motorola- approved replacement antenna. Use of non–Motorola-approved antennas, modifications, or attachments could damage the radio and may violate FCC regulations. • For a list of Motorola-approved antennas, visit the following web site: http://www.motorola.com/cgiss/twowayradio.shtml . For additional information on exposure requirements or other training information, visit http://www.motorola.com/rfhealth . Compliance and Control Guidelines and Operating Instructions for Mobile Two-Way Radios Installed as Fixed Site Control Stations If mobile radio equipment is installed at a fixed location and operated as a control station or as a fixed unit, the antenna installation must comply with the following requirements in order to ensure optimal performance and compliance with the RF energy exposure limits in the standards and guidelines listed on page 3: • The antenna should be mounted outside the building on the roof or a tower if at all possible. • As with all fixed site antenna installations, it is the responsibility of the licensee to manage the site in accordance with applicable regulatory requirements and may require additional compliance actions such as site survey measureme…

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RF Exposure Info

Certificate Number: 1449-02 CGISS EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 EME Compliance Test Report Date of Report: May 5, 2003 Report Revision(s): Rev. O Device Manufacturer: Motorola Device Description: 3.5-35W Mobile Transceiver 764-870MHz Classification: Occupational/Controlled Exposure FCC ID: AZ492FT5823 Device Model: M20URS9PW1AN Test Period: 4/29/03 Test Engineer: Jim Fortier (Principle Staff Engineer) Author: Michael Sailsman (Global EME Regulatory Affairs Liaison) Note: 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 all applicable national and international reference standards and guidelines. Signature on File 5/5/03 Ken Enger Date Approved Senior Resource Manager, Laboratory Director, CGISS EME Lab Phone: 954-723-6299 Fax: 954-723-3803 Note: This report shall not be reproduced in part without written approval from an authorized representative of the Motorola CGISS EME Laboratory. Form-MPE rpt. Rev 1.00 Page 1 of 24 TABLE OF CONTENTS 1.0 Product Description 2.0 Offered Options and Accessories 3.0 Measurement Standards 4.0 Data Collection Consideration 5.0 Measurement System Uncertainty Levels 6.0 Method of Measurement 6.1 EME measurements made on trunk mounted antennas 6.1.1 External vehicle EME measurement 6.1.2 Internal vehicle EME measurement 6.2 EME Measurements made on center roof mounted antennas 6.2.1 External vehicle EME measurements 6.2.2 Internal vehicle EME measurement 7.0 Test Site 8.0 Measurement System/Equipment 9.0 Test Unit Description 10.0 Test Set-Up Description 11.0 Test Results Table 1 – 764.0875 MHz external assessment at the trunk w/ antenna model HAF4016A Table 2 – 794.0875 MHz external assessment at the trunk w/ antenna model HAF4016A Table 3 – 823.9875 MHz external assessment at the trunk w/ antenna model HAF4016A Table 4 – 868.9875 MHz external assessment at the trunk w/ antenna model HAF4016A Table 5 – 764.0875 MHz external assessment at the trunk w/ antenna model HAF4014A Table 6 – 794.0875 MHz external assessment at the trunk w/ antenna model HAF4014A Table 7 – 823.9875 MHz external assessment at the trunk w/ antenna model HAF4014A Table 8 – 868.9875 MHz external assessment at the trunk w/ antenna model HAF4014A Table 9 – 764.0875 MHz external assessment at the trunk w/ antenna model HAF4013A Table 10 – 794.0875 MHz external assessment at the trunk w/ antenna model HAF4013A Table 11 – 823.9875 MHz external assessment at the trunk w/ antenna model HAF4013A Table 12 – 868.9875 MHz external assessment at the trunk w/ antenna model HAF4013A Table 13 – 764.0875 MHz external assessment at the trunk w/ antenna model HAF4017A Table 14 – 794.0875 MHz external assessment at the trunk w/ antenna model HAF4017A Table 15 – 823.9875 MHz external assessment at the trunk w/ antenna model HAF4017A Table 16 – 868.9875 MHz external assessment at the trunk w/ antenna model HAF4017A Table 17 – 809.0125 MHz external assessment at the trunk w/ antenna model HAF4002A Table 18 – 859.0125 MHz external assessment at the trunk w/ antenna model HAF4002A Form-MPE rpt. Rev 1.00 Page 2 of 24 Table 19 – 868.9875 MHz external assessment at the trunk w/ antenna model HAF4002A Table 20 – 809.0125MHz external assessment at the trunk w/ antenna model RRA4914B Table 21 – 859.0125MHz external assessment at the trunk w/ antenna model RRA4914B Table 22 – 823.9875 MHz external assessment at the roof w/ antenna mod…

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Contact Information

Applicant

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

Test Firm

MotorolaWilliam Elliott
[email protected]954-723-5480Fax: 954-723-6383

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
522,74,9764 MHz - 870 MHz42 W20K0F1E1.5 ppm
Confidentiality
Long Term
Grant Notes
Output power is conducted maximum. Nominal output power is 35 W. RF exposure compliance was evaluated at 42 W only using 0 dBi or 3.0 dBi vehicle-mount antennas only. Qualified end-users of this device must have the knowledge to control the exposure conditions of vehicle passengers, and of bystanders to ensure a minimum separation distance of 60 cm is maintained between the antenna and persons outside of the vehicle for satisfying MPE compliance. The antenna(s) used for this transmitter must be installed to provide a separation distance of at least 40 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. This device must be used with a maximum transmitting duty factor not exceeding 50% for satisfying RF exposure compliance. The operation of this transmitter must satisfy the requirements of Occupational/Controlled Exposure Environment, for work related use only. End-users must be provided with specific training instructions for meeting Occupational/Controlled Exposure Environment requirements.

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