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AZ489FT4878HANDHELD PORTABLE 2-WAY RADIO

Motorola Solutions, Inc.
HANDHELD PORTABLE 2-WAY RADIO - FCC ID AZ489FT4878 - Motorola Solutions, Inc.
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Application Details

Equipment Class
TNF - Licensed Non-Broadcast Transmitter Held to Face
Date of Grant
Dec 19, 2006
Application Purpose
Original Equipment
Date of Application
Dec 07, 2006
Equipment Note
HANDHELD PORTABLE 2-WAY RADIO
Frequency Range
490.00000000 - 512.00000000
Company
Motorola Solutions, Inc.
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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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

PRODUCT SAFETY AND RF EXPOSURE COMPLIANCE ATTENTION! This radio is restrict ed to occupational use only to satisfy FCC RF energy exposure requirements. Before using this product, read the RF energy awareness info rmation and operating instructions in the Product Safety and RF Exposu re booklet enclosed with your radio (Motorola Publication part number 6881095C98) to ensure compliance with RF energy exposure limits.For a list of Motorola-approved an tennas, batteries, and other accessories, visit the following web site which lists approved accessories: http ://www.motorola.com/gov ernmentandenterprise Mag One™ by Motorola is registered in the U.S. Patent and Trademark Office. All other products and service names are the property of their own respective owners. © Motorola, Inc. 2005, 20061301 E. Algonquin Rd., Schaumburg, IL 60196Printed in China. 07/06. All Rights Reserved. Before using this product, read the operating instructions for safe usage contained in the Product Safety and RF Exposure booklet enclosed with your radio. *6881098C61* 6881098C61-D Attaching and Removing the AntennaTo Attach AntennaTo Remove Antenna 1. Fasten the antenna to the radio by placing the threaded end of the antenna into the Antenna Connector. 2. Rotate the antenna clockwise until tight. 1. Turn the antenna in a counter-clockwise direction until it dise ngages from the radio. Threaded End of Antenna Antenna Connector Attaching and Removing the BatteryTo Attach BatteryTo Remove Battery 1. Align and fit the battery tongue into the groove of the chassis of the radio. 2. Secure the latch at the bottom of the radio. 1. Unlatch the battery clasp at the bottom of the radio. 2. Gently lift the hilt of the battery nearest to the battery latch away from the housing. 3. Slide battery downw ards to remove. Attaching and Removing the Belt Clip To Attach Belt ClipTo Remove Belt Clip 1. Align mounting rails of the radio with the grooves of the belt clip. 2. Slide the belt clip dow nwards until it clicks into place. 1. Lift the release tab. 2. Slide the belt clip upwards. Release Tab Charging your Radio 1. Turn off your radio and the A/C power sup-ply to your charger (if they are turned on). 2. Place your radio in the charger pocket. 3. Turn on the charger’s A/C power supply. 4. While charging your radio, the charger’s LED shows a steady red light. The radio should be charged at least 16 hours initially before decreasing charging time to 12 hours. 5. Turn off the charger’s A/C power supply, and remove the radio from the charger pocket. 6. For more details, re fer to the Charger Manual (6881013Y27). Charger Pocket LED Indicators Colour State Indication Red Illuminated Radio is transmitting. Blinking Battery voltage is low. Green Illuminated Radio is receiving with PL/DPL disabled. Blinking Radio is in active scanning mode. Orange Illuminated Radio is receiving with PL/DPL enabled. Blinking An error has occured. On/Off and Volume Knob• Turn clockwise to turn radio ON and increase volume. • Turn counter-clockwise to decrease volume and turn radio OFF. Push-to-Talk (PTT) button• Press to transmit and release to receive messages. Speaker• Where received messages are heard. Microphone• Speak into microphone when send- ing message. Accessory Connector• To connect comp atible acces- sories to radio. Programming Port• To program the radio. Accessories*Caution: Your radio does not support the VOX feature. Please set the accessory switch to ‘PTT’. If the accessory switch is set to ‘VOX’, your radio transmits constantly and never receives. Types Part No. Description Antenna PMAD4051_R Mag One 150-174MHz Antenna PMAE4020_R Mag One 450-470MHz Antenna PMAE4028_R Mag One 490-512MHz Antenna Audio Accessory PMMN4008_ Remote Speaker Microphone PMLN4442_ Earbud with in-line mic and PTT/VOX * Switch PMLN4443_ Ear Receiver with in-line mic and PTT/VOX * Switch PMLN4445_ Ultra Lightweight Headse t with In-line PTT/VOX * Switch PMLN4294_ Earbud with Microphone & PTT Combined PMLN4605_ Clear Acoustic Kit PMLN4606_ 2-Wire Surveillance Kit with Clear Acoustic Tube PMLN4658 _ D-shell Earset with Boom Mic with PTT/VOX * Switch PMMN4013_ RSM with Jack PMLN5011_ Temple Transducer Headset (2 pin) Battery PMNN4071_R Mag One NiMH batt 1200mAH Carry Accessory PMLN4743_ Mag One Spring Belt Clip PMLN4691_R Mag One Belt Clip PMLN4741_ Mag One Soft Leather Carry Case PMLN4742_ Mag One Hard Leather Carry Case Charger PMLN4685_R Mag One Mid-rate Charger Base Only PMLN4738_R Mag One Mid-rate Charger Kit, 120 V PMLN4682_R Mag One Slow Charger Base Only PMLN4683_R Mag One Slow Charger Kit, 120 V PMLN4829_R Mag One Mid-rate Transformer, 120 V PMLN4822_R Mag One Slow Transformer, 120 V Channel Knob• Turn knob to change channel. Programmable Buttons• Frequently used features can be programmed here. LED Indicator• Colors indicate various states of the radio Programmable Buttons• The following functions can be assi gned as short press (press and rele ase) or long press (press and hold for 1 second) in the programmable buttons. † In Chirp Tone * Out Chirp Tone • Your radio’s default functions ar e described below. If re-progra mmed, enter the new functions . Button Function High/Low Power Selects desired power level to High † or Low * . Volume Set Allows you to check the audio and alert tone volume level. Monitor Allows you to monitor th e current channel for activity; disables squelch. Sticky Monitor * The radio monitors continually until you press this button again. Scan Starts * or Stops † channel scan. Nuisance Channel Delete † Removes unwanted channel(s) temporarily from scan list during scan. Repeater/Talkaround Toggles radio between functioning in Repeater mode † or Talkaround mode * . PL/DPL Enables † /Disables * radio from requiring matching PL/DPL to receive messages. Button Lock Locks * or unlocks † all buttons except PTT, Channel Knob and On/Off/Volume Knob . Battery Save Mode Toggles between functioning with Battery Saver ON * or Battery Saver OFF † . Squelch …

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Users Manual

English Product Safety and RF Energy Exposure Booklet for Portable Two-Way Radios 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 AND OPERATIONAL INSTRUCTIONS FOR COMPLIANCE WITH RF ENERGY EXPOSURE LIMITS IN APPLICABLE NATIONAL AND INTERNATIONAL STANDARDS. ALSO READ THE OPERATIONAL INSTRUCTIONS FOR SAFE USAGE. FOR RADIOS THAT HAVE BEEN APPROVED AS INTRINSICALLY SAFE, READ THE INSTRUCTIONS AND INFORMATION ON INTRINSIC SAFETY ON PAGE 10 OF THIS BOOKLET. ! C a u t i o n © Motorola, Inc. 2003 8000 W. Sunrise Blvd., Ft. Lauderdale, FL 33322 Printed in U.S.A. 7/04. 68P81095C98 68P81095C98-C 2 English RF Energy Exposure Awareness and Control Information and Operational Instructions for Occupational Use 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 the occupational limits in FCC and International standards. This radio device is NOT authorized for general population consumer use. This two-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 two-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 two-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 websites 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 (FCC) Regulations The FCC rules require manufacturers to comply with the FCC RF energy exposure limits for portable two-way radios before they can be marketed in the U.S. When two-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 product label directing users to specific user awareness information. Your Motorola two-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 Standards Your Motorola two-way radio is designed and tested to comply with a number of national and International standards and guidelines (listed below) for 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 operating duty factors of up to 50% talk-50% listen and is authorized by the FCC for occupational use only. In terms of measuring RF energy for compliance with these exposure guidelines, your radio generates measurable RF energy only while it is transmitting (during talking), not when it is receiving (listening) or in standby mode. NOTE:The approved batteries, supplied with this radio, are rated for a 5-5-90 duty factor (5% talk-5% listen-90% standby) even though this radio complies with FCC occupational exposure limits and may operate at duty factors of up to 50% talk. 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 ANNEX to Resolution No. 303 of July 2, 2002 "Regulation of limitation of exposure to electrical, magnetic and electromagnetic fields in the radio frequency range between 9 KHz and 300 GHz" and "Attachment to resolution # 303 from July 2, 2002" RF Exposure Compliance and Control Guidelines and Operating Instructions To control your exposure and ensure compliance with the occupational/controlled environment exposure limits, always adhere to the following procedures. Guidelines: • Do not remove the RF Exposure Label from the device. • User awareness instructions should accompany device when transferred to other users. • Do not use this device if the operational requirements described herein are …

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Cover Letter(s)

EXHIBIT 13A SHEET 1 FCC ID: AZ489FT4878 6 th December 2006 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Application for Certification of Transmitter with FCC ID: AZ489FT4878 Dear Sir / Madam, Motorola Inc., 8000 West Sunrise Blvd., Fort Lauderdale, FL, herein submits its application for Certification of the equipment identified by FCC ID number AZ489FT4878. This transmitter is primarily intended for use in a portable radio application with capabilities for conventional communications with a conducted transmit power which is adjustable from 1 Watts to 4.5 Watts. The subject transmitter complies with CFR Title 47, Section 90.203, in that the operator cannot directly program the transmit frequencies using only the normally accessible external controls of the unit. Enclosed is a complete Certification Application. Please contact me if you require any additional information. Sincerely, /s/ Mike Ramnath (signed) Mike Ramnath Manager, Regulatory Compliance Email: [email protected]

Cover Letter(s)

KDB Inquiry Tracking Number - 259731

Cover Letter(s)

KDB Inquiry Tracking Number - 259731

External Photos

Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 3 SHEET 1 OF 5 EXHIBIT 3 EXTERNAL PHOTOGRAPHS - Pursuant to 47 CFR 2.1033(c) 12 Figure 3-1: Front view of complete radio Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 3 SHEET 2 OF 5 Figure 3-2: Back view of complete radio Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 3 SHEET 3 OF 5 Figure 3-3: Right side (side connector) view of complete radio Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 3 SHEET 4 OF 5 Figure 3-4: Left side (PTT) view of complete radio Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 3 SHEET 5 OF 5 Figure 3-5: Rear view of complete radio showing FCC Label & RF Safety Label location FCC Label Location RF Safety Label Location

ID Label/Location Info

EXHIBIT 13C SHEET 1 FCC ID: AZ489FT4878 Date: 6 th December 2006 Authorization & Evaluation Division Federal Communications Commission Laboratory 7435 Oakland Mills Road Columbia, MD 21046 Subject: Labelling Proposal for Transmitter with FCC ID: AZ489FT4878. Dear Sir / Madam, Motorola Inc., 8000 West Sunrise Blvd., Fort Lauderdale, FL, herein submits it’s Labelling Proposal for the Transmitter with FCC ID: AZ489FT4878. Motorola complies to FCC Rule Part 2.925 (d) that the label is permanently affixed and is readily visible to the purchaser at the time of purchase”. Further, at the time of purchase, batteries are shipped in another section or compartment of the radio packaging and are not attached to the radio. In some instances they may be shipped in separate boxes. So, the customer needs to physically install the battery by removing the battery cover, if any, or attach the battery before using the radio. Hence, the FCC label would be visible to the user every time he goes through that exercise! Thus meeting the requirement of FCC Rule Part 2.925 (d). Please contact me at 954-723-5793 if you require any additional information. Sincerely, /s/ Mike Ramnath (signed) Mike Ramnath Manager, Regulatory Compliance Email: [email protected]

ID Label/Location Info

Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 1 SHEET 1 OF 1 EXHIBIT 1 IDENTIFICATION LABEL - Pursuant to 47 CFR 2.925(a), 2.1033(c), 2.0165 EXHIBIT 1A - LABEL LOCATION A nameplate of the type presented below will be affixed to every transmitter. It will be placed on the bottom of the unit near the front. Shown below is a photo of the actual label affixed to the cast chassis of the transmitter. Please note that Motorola complies with FCC Rule Part 2.925 (d) that the label is permanently affixed and is readily visible to the purchaser at the time of purchase” Figure 1-1: FCC Label EXHIBIT 1B - GENERAL INFORMATION 1. Application References: TIA/EIA-603B Land Mobile FM or PM Communications Equipment Measurement and Performance Standards Code of Federal Regulations Title 47, Part 2, Sec. 2.1033-2.1057 and Part 90, Section 90.210. 2. Data Submittal Procedure: Data is supplied in accordance with Part 2, Sub-part J of the Commission’s rules. The intended use of this transceiver includes applications covered in the Code of Federal Regulations Title 47 and Part 90. Maximum transmitter power shall not be adjustable by the user. 3. Applicable Reference • Reference Certification FCC ID: AZ489FT4878 • EIA/TIA-603 Land Mobile FM or PM Communications Equipment Measurement and Performance Standards. • FCC Federal Regulations Part 47 Sec. 2.1033-2.1057 • FCC Federal Regulations Part 90 Sec.90.210

Internal Photos

Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 9 SHEET 1 OF 1 EXHIBIT 9 INTERNAL PHOTOGRAPHS - Pursuant to 47 CFR 2.1033(c) 12 Figure 9-1: Top Side of PCB. Figure 9-2: Bottom Side of PCB.

RF Exposure Info

FCC ID: AZ489FT4878 SR4464 N&E EME Form-SAR-Rpt-Rev. 5.04 Page 1 of 53 Certificate Number: 2518.01 FCC ID: AZ489FT4878 DECLARATION OF COMPLIANCE SAR ASSESSMENT Networks & Enterprise EME Test Laboratory 8000 West Sunrise Blvd Fort Lauderdale, FL. 33322 Date of Report: 10/11/06 Report Revision: 0 Report ID: BPR40_Rev O_061011_SR4464 Responsible Engineer: Kim Uong (EME lead Eng.) Date/s Tested: 10/3/06 – 10/6/06 Manufacturer/Location: Penang Sector/Group/Div.: GEMS/GTDG Date submitted for test: 9/26/06 DUT Description: BPR40 490-512MHz 4W 12.5/25K-16CH Test TX mode(s): CW Max. Power output: 4.5W Nominal Power: 4.0W Tx Frequency Bands: 490-512MHZ Signaling type: FM Model(s) Tested: AAH84TCJ8AA1AN Model(s) Certified: AAH84TCJ8AA1AN Serial Number(s): 0278GR1143 Classification: Occupational/ Controlled Rule Part(s): 90 Approved Accessories: Antenna(s): PMAE4028A (490-512MHz 1/4 wave -3dBi) Battery(ies): PMNN4071A (1200mAH NiMH ), PMNN4075A (1500mAH Li-Ion) Body worn accessory(ies): PMLN4743A (Spring Belt Clip), PMLN4741A (Soft Leather Carry Case) , PMLN4742A (Hard Leather Carry Case). Audio/Data cable accessory(ies): PMMN4013A (Yoda RSM with Jack), PMLN5011A (Temple Transducer Headset -2 pin), PMMN4008A (Remote Speaker) , PMLN4442A (Earbud with in-line mic and PTT/VOX), PMLN4443A (Ear Receiver with in-line mic and PTT/VOX switch), PMLN4444A (Earphone Boom mic with in-line mic and PTT/VOX switch), PMLN4445A (Ultra Lightweight Headset with in-line PTT/VOX Switch), PMLN4294D (Earbud with Microphone & PTT Combined), PMLN4606A (2-Wire Surveillance Kit with Clear Acoustic Tube), PMLN4605A (Clear Acoustic Kit), MLN4658A (D-shell Earset with Boom Mic with PTT/VOX Switch). Max. Calc. : 1-g Avg. SAR: 6.99 W/kg (Body); 10-g Avg. SAR: 5.06 W/kg (Body) Max. Calc. : 1-g Avg. SAR: 6.34 W/kg (Face); 10-g Avg. SAR: 4.59 W/kg (Face) 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 2.0 of this report. This report shall not be reproduced without written approval from an officially designated representative of the Motorola EME Laboratory. This reporting format is consistent with the test report guidelines of the TIA TSB-150 December 2004 The results and statements contained in this report pertain only to the device(s) evaluated. Signature on file – Ken Enger Ken Enger N&E EME Lab Senior Resource Manager, Laboratory Director, Approval Date: 10/11/06 Certification Date: 10/11/06 Certification No.: L1061022 FCC ID: AZ489FT4878 SR4464 N&E EME Form-SAR-Rpt-Rev. 5.04 Page 2 of 53 Part 1 of 2 1.0 Introduction and Overview...................................................................................... 3 2.0 Referenced Standards and Guidelines ..................................................................... 3 2.1 SAR Limits ................................................................................................... 4 3.0 Description of Device Under Test (DUT) ............................................................... 4 4.0 Description of Test System ..................................................................................... 5 4.1 Description of Robotics/Probes/Readout Electronics ................................... 5 4.2 Description of Phantom(s) ............................................................................ 5 4.2.1 Flat Phantom................................................................................... 5 4.2.2 SAM Phantom ................................................................................ 5 4.3 Description of Equivalent Tissues ................................................................ 6 5.0 Additional Test Equipment...................................................................................... 7 6.0 SAR Measurement System Verification.................................................................. 7 6.1 Equivalent Tissue Test results ...................................................................... 7 6.2 System Check Test results ............................................................................ 8 7.0 DUT Test Strategy and Methodology ..................................................................... 8 7.1 DUT Configuration(s) .................................................................................. 8 7.2 Device Positioning Procedures ..................................................................... 9 7.2.1 Body ............................................................................................... 9 7.2.2 Head ............................................................................................... 9 7.2.3 Face .............................................................................................. 10 8.0 Environmental Test Conditions ............................................................................. 10 9.0 Test Results Summary ........................................................................................... 10 9.1 Highest SAR results calculation methodology ........................................... 12 10.0 Conclusion............................................................................................................. 13 APPENDICES A Measurement Uncertainty ..................................................................................... 14 B Probe Calibration Certificates ............................................................................... 17 C Dipole Calibration Certificates.............................................................................. 29 D Test System Verification Scans ............................................................................. 36 E DUT Scans (Shortened Scans and Highest SAR configurations) ........................ 42 F DUT Supplementary Data (e.g. Power Slump) .................................…

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Test Report

Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 6 SHEET 1 OF 31 EXHIBIT 6 INDEX OF SUBMITTED MEASURED DATA This exhibit contains the measured data for this equipment as follows: EXHIBIT 6A – RF Power Output (Table) EXHIBIT 6B – Transmit Audio Response (2 Graphs) 6B-1 – 12.5 kHz Channel Spacing 6B-2 – 25 kHz Channel Spacing EXHIBIT 6C – Transmit Audio Post Limiter Low pass Filter Response (2 Graphs) 6C-1 – 12.5 kHz Channel Spacing 6C-2 – 25 kHz Channel Spacing EXHIBIT 6D – Modulation Limiting Characteristics (6 Graphs) 6D-1 – 12.5 kHz Channel Spacing, Carrier Squelch Mode 6D-2 – 12.5 kHz Channel Spacing, Tone Private Line (TPL) Mode 6D-3 – 12.5 kHz Channel Spacing, Digital Private Line (DPL) Mode 6D-4 – 25 kHz Channel Spacing, Carrier Squelch Mode 6D-5 – 25 kHz Channel Spacing, Tone Private Line (TPL) Mode 6D-6 – 25 kHz Channel Spacing, Digital Private Line (DPL) Mode EXHIBIT 6E – Occupied Bandwidth (6 Spectrum Analyzer Plots) 6E-1 - 12.5 kHz Channel Spacing, 2500 Hz Audio Modulation Only 6E-2 - 12.5 kHz Channel Spacing, 2500 Hz Audio and PL Tone Modulation 6E-3 - 12.5 kHz Channel Spacing, 2500 Hz Audio and DPL Tone Modulation 6E-4 - 25 kHz Channel Spacing, 2500 Hz Audio Modulation Only 6E-5 - 25 kHz Channel Spacing, 2500 Hz Audio and PL Tone Modulation 6E-6 - 25 kHz Channel Spacing, 2500 Hz Audio and DPL Tone Modulation EXHIBIT 6F – Conducted Spurious Emissions (12 Graphs) 6F-1 – 1 Watts, Harmonic of Carrier 490.025 MHz, 12.5 kHz Channel Spacing 6F-2 – 1 Watts, Harmonic of Carrier 501.025 MHz, 12.5 kHz Channel Spacing 6F-3 – 1 Watts, Harmonic of Carrier 511.975 MHz, 12.5 kHz Channel Spacing 6F-4 – 4.5 Watts, Harmonic of Carrier 490.025 MHz, 12.5 kHz Channel Spacing 6F-5 – 4.5 Watts, Harmonic of Carrier 501.025 MHz, 12.5 kHz Channel Spacing 6F-6 – 4.5 Watts, Harmonic of Carrier 511.975 MHz, 12.5 kHz Channel Spacing 6F-7 – 1 Watts, Harmonic of Carrier 490.025 MHz, 25 kHz Channel Spacing 6F-8 – 1 Watts, Harmonic of Carrier 501.025 MHz, 25 kHz Channel Spacing 6F-9 – 1 Watts, Harmonic of Carrier 511.975 MHz, 25 kHz Channel Spacing 6F-10 – 4.5 Watts, Harmonic of Carrier 490.025 MHz, 25 kHz Channel Spacing 6F-11 – 4.5 Watts, Harmonic of Carrier 501.025 MHz, 25 kHz Channel Spacing 6F-12 – 4.5 Watts, Harmonic of Carrier 511.975 MHz, 25 kHz Channel Spacing Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 6 SHEET 2 OF 31 EXHIBIT 6G – Radiated Spurious Emissions (12 Graphs) 6G-1 – 4 Watts, 490.025 MHz, 12.5 kHz Channel Spacing & 4 Watts, 501.025 MHz, 12.5 kHz Channel Spacing 6G-2 – 4 Watts, 511.975 MHz, 12.5 kHz Channel Spacing 6G-3 – 4 Watts, 490.025 MHz, 25 kHz Channel Spacing & 4 Watts, 501.025 MHz, 25 kHz Channel Spacing 6G-4 – 4 Watts, 511.975 MHz, 25 kHz Channel Spacing 6G-5 – 1 Watts, 490.025 MHz, 12.5 kHz Channel Spacing & 1 Watts, 501.025 MHz, 12.5 kHz Channel Spacing 6G-6 – 1 Watts, 511.975 MHz, 12.5 kHz Channel Spacing 6G-7 – 1 Watts, 490.025 MHz, 25 kHz Channel Spacing & 1 Watts, 501.0250 MHz, 25 kHz Channel Spacing 6G-8 – 1 Watts, 511.975 MHz, 25 kHz Channel Spacing EXHIBIT 6H – Frequency Stability (2 Graphs) 6H-1 – Frequency Stability vs. Temperature 6H-2 – Frequency Stability vs. Voltage EXHIBIT 6I – Transient Frequency Behavior (8 Graphs) 6I-1 – 4 Watts, 12.5 kHz Key-Up Attack Time 6I-2 – 4 Watts, 12.5 kHz De-Key Decay Time 6I-3 – 4 Watts, 25 kHz Key-Up Attack Time 6I-4 – 4 Watts, 25 kHz De-Key Decay Time 6I-5 – 1 Watts, 12.5 kHz Key-Up Attack Time 6I-6 – 1 Watts, 12.5 kHz De-Key Decay Time 6I-7 – 1 Watts, 25 kHz Key-Up Attack Time 6I-8 – 1 Watts, 25 kHz De-Key Decay Time EXHIBIT 6J – Power Line Conducted Spurious Emissions (4 Graphs) 6J-1 – Radio off Line/Neutral 6J-2 – Radio on Rx Line/Neutral 6J-3 – Radio on Tx Line/Neutral Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 6 SHEET 3 OF 31 EXHIBIT 6A RF Conducted Power Output Data -- Pursuant 47 CFR 2.1046(a), 2.1033(c)(6), 2.1033(c)(7) and 2.1033(c)(8) The RF power output was measured with the indicated voltage applied to and current into the final RF amplifying device (Q403). At maximum output power setting, Frequency 490.025 MHz: Output RF power 4.11 Watts DC Voltage 7.50 Volts DC Current 1.15 A RF PA Input Power 8.625 Watts At minimum output power setting, Frequency 490.025 MHz: Output RF power 0.95 Watts DC Voltage 7.50 Volts DC Current 0.50 A RF PA Input Power 3.75 Watts At maximum output power setting, Frequency 501.025 MHz: Output RF power 4.13 Watts DC Voltage 7.50 Volts DC Current 1.16 A RF PA Input Power 8.70 Watts At minimum output power setting, Frequency 501.025 MHz: Output RF power 0.98 Watts DC Voltage 7.50 Volts DC Current 0.50 A RF PA Input Power 3.75 Watts At maximum output power setting, Frequency 511.975 MHz: Output RF power 4.12 Watts DC Voltage 7.50 Volts DC Current 1.16 A RF PA Input Power 8.70 Watts At minimum output power setting, Frequency 511.975 MHz: Output RF power 0.89 Watts DC Voltage 7.50 Volts DC Current 0.50 A RF PA Input Power 3.75 Watts Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 6 SHEET 4 OF 31 EXHIBIT 6B Transmit Audio Response - Pursuant 47 CFR 2.1047 and 2.1033(c)(13) TX Audio Frequency Response 12.5 Channel Spacing -20.00 -15.00 -10.00 -5.00 0.00 5.00 10.00 15.00 100.01000.010000.0 Audio Frequency in Hz Modulation L evel in dB Aud.Freq.Response(dB) Upper Limit Low er Limit Figure 6B-1: 12.5 kHz Channel Spacing, 501.025 MHz, Transmit Audio Frequency Response TX Audio Frequency Response 25 Channel Spacing -20.00 -15.00 -10.00 -5.00 0.00 5.00 10.00 15.00 100.01000.010000.0 Audio Frequency in Hz Modulation L evel in dB Aud.Freq.Response(dB) Upper Limit Low er Limit Figure 6B-2: 25 kHz Channel Spacing, 501.025 MHz, Transmit Audio Frequency Response Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 6 SHEET 5 OF 31 EXHIBIT 6C Transmit Audio Post Limiter Low pass Filter Response - Pursuant 47 CFR 2.1047 and 2.1033(c) (13) freq Hz 1000 10000 100000 Attenuation dB -20 -10 0 -30 -40 -50 -60 -70 -80 AUDIO LOW PASS FILTER RESPONSE 12.5KHz 12.5 KHz limits -90 Figure 6C-1: 12.5 kHz…

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Test Report

Applicant: Motorola Inc. FCC ID: AZ489FT4878 EXHIBIT 7 SHEET 1 OF 4 EXHIBIT 7 MEASUREMENT PROCEDURES USED FOR SUBMITTED DATA EXHIBIT 7A - RF Output Power vs. DC Power Input - Pursuant to 47 CFR 2.1046 The transmitter is operated under normal conditions at the specified nominal DC input voltage. The antenna output is terminated in 50 ohms. The DC supply path to the final stage only is interrupted to allow insertion of the DC ammeter in series with the DC supply. The DC voltage drop of the ammeter is negligible. A DC voltmeter is computed as the product of the DC current (in amps) times the DC voltage (in volts). This measurement is performed at the upper, middle and lower limits of the frequency range. At each frequency, the measurement is performed at the upper and lower limits of the specified adjustable power range. EXHIBIT 7B - Transmit Audio Frequency Response – Pursuant to 47 CFR 2.1047(a) The transmitter output is monitored with an HP8901B modulation analyzer, whose FM demodulator output is fed to an HP8903B audio analyzer. De-emphasis or filtering within the test equipment is not used. An audio oscillator signal, derived from the HP8903B Audio Analyzer, is connected to the microphone audio input of the transmitter. At a frequency…

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Contact Information

Applicant

Arine Lee(Certification Manager)
[email protected]+602240258Fax: --

Test Firm

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

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
29490 MHz - 512 MHz4.5 W11K0F3E2.5 ppm
Confidentiality
Long Term
Grant Notes
Power listed is conducted. This device must be restricted to work related operations in an Occupational/Controlled RF exposure Environment, not exceeding a maximum transmitting duty factor of 50%. All qualified end-users of this device must have the knowledge to control their exposure conditions and/or duration to comply with the Occupational/Controlled MPE limit and requirements. A label, as described in this filing, must be displayed on the device to direct users to specific training information for meeting Occupational Exposure Requirements. SAR compliance for body-worn operating configurations is limited to the specific belt-clip/holster/accessories tested for this filing. Use of other accessories for body-worn operations requires no metallic component in the assembly and must provide at least 2.5 cm separation between the device, including its antenna, and the users body. End-users must be informed of the body-worn operating requirements for satisfying RF exposure compliance. The highest reported SAR levels are: Head: 6.34 W/kg for 50% Duty Cycle; Body: 6.99 W/kg for 50% Duty Cycle. Power output is continuously variable from the value listed to 0.8W.

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