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ABZ89FC5800Non-Broadcast Transmitter

Motorola Solutions, Inc.
Non-Broadcast Transmitter - FCC ID ABZ89FC5800 - Motorola Solutions, Inc.
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Feb 10, 2003
Application Purpose
Original Equipment
Date of Application
Feb 10, 2003
Equipment Note
Non-Broadcast Transmitter
Frequency Range
764.00000000 - 776.00000000
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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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

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 9 TUNE-UP PROCEDURE There is no field tune-up procedure. All adjustments are software controlled and are pre-set at the factory. Certain station operating parameters can be changed via Man Machine Interface (MMI) through the BRC RS232 port within predetermined limits. Examples include transmit / receiver operating frequencies and power level. APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 9 Tune Up Procedure This exhibit contains the tune-up procedure as it will appear in the Astro® 25 system release 6.2 Simulcast Configuration Manual. The following adjustments comprise the transmitter setups. 1. Reference oscillator installation 2. Setting transmitter frequency and power level. 3. Measuring channel interference 4. Measuring the transmitter metering points 5. Measuring the transmitter frequency error Test Equipment Description Recommended Model Service Monitor Motorola R-2001 or equivalent PC with CSS Software Procedure CSS Port: 9-pin serial cable with D connector is provided on the station control module front panel to allow service personnel to connect a PC loaded with the Configuration Service Software (CSS) and perform programming and maintenance tasks via the RS232 port. The following pages of this exhibit show the important alignment screens. Exhibit Description 9A Installing reference oscillator 9B Configuring channel frequency and power level 9C Measuring channel interference 9D Measuring the transmitter metering points 9E Measuring the transmitter frequency error 3-468P8100XYXX-OAPRIL 2003 PRELIMINARY Internal Review (First Draft - 50% to 60% Complete) RF SITE EQUIPMENT CONFIGURATIONCHAPTER 3: SIMULCAST REMOTE SITE CONFIGURATION . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . RF SITE EQUIPMENT CONFIGURATION The following sections provide information about programming the devices that provide the RF interface (simulcast base radio) to the subscriber radios in your system and the devices that support the RF interface. TRAK 9100 SIMULCAST SITE REFERENCE See “TRAK 9100 Simulcast Site Reference Configuration” on page 2-20 for a full description of the configuration procedures that cover the general configuration points. This section provides only the specific settings required for the remote site device. At the digital simulcast subsystem remote sites, the TRAK 9100 provides 1 pps + 5 Mpps composite signals to the simulcast base radio. For a total of 30 channels, a TRAK 9100 SSR with two Digital Distribution Modules (DDM) configured for composite signals is required. Each composite signal can drive up to six STR 3000 Base Radios. A 50 ohm impedance must terminate the end of a daisy chain. The 50 ohm load is installed at the STR 3000 Base Radio’s composite input terminal. STR 3000 SIMULCAST BASE RADIO The information provided in this section is for all simulcast base radios installed in the digital simulcast subsystem at remote and co-located remote sites. Using the TTY port, connect to the simulcast base radios, and program the IP address required for this particular station on this channel number at this subsite. IP address information should be obtained from your Motorola Field Representative. Using Configuration/Service Software (CSS), program the proper operating frequency for the station and verify proper RF alignment. Do this for all channels at all subsites. Table 3-1 gives an overview of information that is configured. Using the CSS Station Configuration tab, set Simulcast Operation to Enabled. NOTE Some fields in the CSS dialog boxes are marked with an asterisk (*). This indicates a field that can be overwritten from the User Configuration Manager (UCM). 3-668P8100XYXX-OAPRIL 2003 PRELIMINARY Internal Review (First Draft - 50% to 60% Complete) RF SITE EQUIPMENT CONFIGURATIONCHAPTER 3: SIMULCAST REMOTE SITE CONFIGURATION FIGURE 3-7 BASE RADIO HARDWARE CONFIGURATION SCREEN Station Configuration ScreenProvides for the simulcast base radio’s specific station configuration. See the online documentation provided with the CSS for specific procedures. F IGURE 3-8 BASE RADIO STATION CONFIGURATION SCREEN TABLE 3-1 SIMULCAST BASE RADIO CONFIGURATION SCREENS IN CSS (CONTINUED) ScreenDescription 68P8100XYXX-OAPRIL 20033-9 PRELIMINARY Internal Review (First Draft - 50% to 60% Complete) SIMULCAST CONFIGURATION ILLEGAL CARRIER DETERMINATION AND BASE RADIO MEASUREMENT MEASURING CHANNEL INTERFERENCE The STR 3000 Simulcast Base Radios log interfering carrier levels that surpass the RF threshold value to the station error log. These logs can be used to determine periodic interfering carriers that are not present long enough to trigger the Carrier Malfunction Timer. These logs should also be checked after any changes are made to the site that affect the site noise floor. An example of this type of change would be seen when a new customer in the immediate area is using the same frequency band. SETTING THE STR 3000 SIMULCAST BASE RADIO RF T HRESHOLD VALUE FIELD The RF Threshold Value field appears on the Station Configuration tab of the STR 3000 Simulcast Base Radio window. This field defines the level (in dBm) above which the received signal is considered to be an illegal carrier, if this STR 3000 Simulcast Base Radio is not assigned to a call. Procedure 3-1 describes the steps to set the RF Threshold Value field. P ROCEDURE 3-1 HOW TO SET THE STR 3000 SIMULCAST BASE RADIO RF THRESHOLD V ALUE FIELD 1In the CSS application, select STR 3000 Simulcast Base Radio. Result: The STR 3000 Simulcast Base Radio window appears (Figure 3-10). F IGURE 3-10 STR 3000 SIMULCAST BASE RADIO WINDOW SCREEN 3-2068P8100XYXX-OAPRIL 2003 PRELIMINARY Internal Review (First Draft - 50% to 60% Complete) ILLEGAL CARRIER DETERMINATION AND BASE RADIO MEASUREMENTCHAPTER 3: SIMULCAST REMOTE SITE CONFIGURATION MONITORING THE TRANSMITTER METERING POINTS Perform Procedure 3-4 to monitor the transmitter metering points. P ROCEDURE …

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Users Manual

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 8 INSTRUCTION MANUALS The Preliminary Installation manual for this base radio is provided. Upon request, final manuals will be sent to the commission and/or telecommunication certification body (TCB) as soon as they become available. All of the descriptions and schematics in this filing are up to date and will be included in the instruction and/or service manuals. APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 8 INSTRUCTION MANUALS Draft copy of the of the front matter of the following instruction manual is enclosed with this submission: 68P81003Y71-O ........................................................ 6.2 First Draft for Simulcast Hardware Installation Other system and radio / configuration service software manuals are available to support the product and system in operation. They can be provided to the Commission upon request. 6.2 First Draft for Simulcast Ha rdw a r e I n s t a l l a t i o n © November 2002 Motorola, Inc.68P81003Y71-O All Rights ReservedNovember 2002 Pr inted in U.S.A. Computer Software Copyrights The Motorola products described in this document include a copyrighted Motorola computer program. Laws in the United States and other countries, as well as International Treaties, preserve for Motorola the exclusive rights for Motorola’s copyrighted computer programs, including the exclusive right to copy, repro- duce, distribute, or otherwise transfer said computer program(s). Accordingly, the copyrighted Motorola computer programs contained in this document may not be copied, decompiled, reverse engineered, or reproduced in any manner and on or within any media without the express written permission of Motorola. Furthermore, the purchase of Motorola products shall not be deemed to grant either directly or by implication, estoppel, or otherwise, any license under the copyrights, patents, or patent applications of Motorola, except for the normal non-exclusive, royalty-free license to use that arises by operationof law in the sale of a product. Document Copyrights © Motorola, Inc. All rights reserved. No duplication or distribution of this document or any portion thereof shall take place without the express written permission of Motorola. No part ofthis document may be reproduced, distributed, or transmitted in any form or by any means, electronic or mechanical, for any purpose without the express written permission of Motorola. To order additional copies of this document contact your Motorola sales representative. Disclaimer The information in this document is carefully examined, and is believed to be entirely reliable. However, no responsibility is assumed for inaccuracies. Further- more, Motorola reserves the right to make changes to any products herein to improve readability, function, or design. Motorola does not assume any liability arising out of the applications or use of any product or circuit described herein; neither does it cover any license under its patent rights nor the rights of others. Trademark Information The following are registered trademarks of Motorola, Inc.: ASTRO, ASTRO-TAC, ASTRO 25, EMBASSY, FLASHport, FullVision, INTELLIREPEATER, MAXTRAC, Motorola, the Motorola logo, MSF 5000, QUANTAR, QUANTRO, SECURENET, SMARTNET, SMARTZONE, SPECTRA, and STARTSITE. The following are Motorola trademarks: CENTRACOM Series, CENTRACOM Gold Series, CENTRACOM Series II, CENTRACOM Series II Plus, Cisco, CoveragePLUS, DIGITAC, DVP, Max-Fax, MDC-600, Micor, MOSCAD, MSF10000, MTS 2000, OmniLink, Private Conversation, SABER, SMARTNET II, SmartWorks, and Wireless Network Gateway. HP, HP-UX, and Hewlett Packard are registeredtrademarks of Hewlett-Packard Corporation. UNIX is a registered trademark of The Open Group in the United States and other countries. Any other brand or product names are trademarks or registered trademarks of their respective holders. WARRANTY Limited Software Warranty For the first ninety (90) days following its initial shipment, Motorola warrants that when properly used, its software will be free from reproducibledefects that cause a material variance from its published specification. However, Motorola does not warrant that program operation will be uninterrupted or error- free, that each defect will be corrected, or that any program will meet Licensee’s particular requirements. This warranty does not cover an item of Software (i) used in other than its normal and customary manner; (ii) subjected to misuse; or (iii) subjected to modi- fications by Licensee or by any party other than Motorola without the prior written consent of Motorola. Limited Media Warranty For the first ninety (90) days following its initial shipment, Motorola warrants that the media carrying the software will be free from defects that damage the performance of the software. Motorola will replace any damaged media free of charge during the warranty period. Warranted media is limited to that which is used to transport the software (such as floppy disks and authorization key). PROMs that may store the software in equipment are not covered under this warranty. Limitation of Liability Motorola’s total liability and Licensee’s sole remedy for any warranted software shall be limited to, at Motorola’s option, software replacement orthe payment of Licensee’s actual damages, not to exceed the total licensed charge paid by Licensee to Motorola for the item of software that caused the damage. The warranties set forth above extendonly to the first licensee. Subsequent transferees accept these programs "as is" and without warranties of any kind.This warranty is given in lieu of all other warranties, express or implied, including, without limitation, the warranties of merchantability and fitnessfor a particular purpose. In no event shall Motorola be liable for special, incidental, or consequential damages (including, without limitation, loss of use, time or data, inconvenience, commercial loss, and lost profits or sav…

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Users Manual

Simulcast Hardware InstallationEquipment Inspection and Inventory Equipment Inspection and Inventory Motorola recommends that an inventory of all equipment is taken with a Motorola representative to ensure that the order is complete. Carefully inspect all equipment and accessories to verify they arrived in good condition. Promptly report any damaged or missing items to a Motorola representative. Placement Recommendations The following are recommendationsfor placing equipment at a site: •Secure each rack on a firm, and level floor. •Use the correct mounting hardware to prevent rack movement. •Use strain relief when installing and positioning cables and cords to help ensure that no interruption of service occurs. •Allow at least 1 m (3 ft.) of space at the front and rear of the system to allow for proper air flow, cooling,and safe access to equipment. The system components require an ambient air temperature of 0º C to 50º C (32º to 122º F). •Locate the site racks and other equipment with enough spacing to allow access for service. Service personnel require access toboth the front and rear of the racks. •Locate the system in an area that is free of dust, smoke, and electrostatic discharge (ESD). •Ground the racks according to theStandards and Guidelines for Communication Sites(68P81089E50). Spacing Requirements Proper spacing of equipment is essential for ready access to equipment, ease of maintenance, and safety of personnel. Spacing requirements have been established to meet the National Fire Protection Associations (NFPA) Code, and the American Society of Heating,Refrigerating, and AirConditioning Engineers (ASHRAE) standards. Also, adhere to any local regulations that apply to spacing requirements. See theStandards and Guidelines for Communication Sites(68P81089E50) for details on these space requirements. Weight Distribution Within a Rack To avoid hazards or damage from uneven loading of a rack, distribute the weight of equipment evenly in the rack, and consider the limitations of equipment and cables. When possible, mount the heaviest components in the bottom of the rack. 68P81003Y71-O November 20022-9 Rack RequirementsChapter 2: Installing the Simulcast Subsystem Hardware Rack Requirements Most communications equipment is installed in a standard 48.26 cm (19-in.) EIA rack or enclosed cabinet. Refer to the manufacturer’s instructions when installing racks or cabinets, and installing equipment into the rack or cabinet. Use all supplied bracing hardware wheninstalling a rack or cabinet and secure all equipment within a rack or cabinet. If additional equipment needs to be installed, refer to the system design document provided by the Field Engineer or consult theMotorola Field Representative. Bonding and Grounding Cabinets and equpment racks include a rack grounding bar (RGB) with the capacity to terminate numerous solid or stranded 6 AWG copper ground wires, which are associated with internal metallic or fiber optic cables and external grounding to power company equipment. You must ground all doors of a metal cabinet by bonding the door to the main cabinet using a 6 AWG (minimum) copper wire. The RGB is shipped with dual-hole lugs to terminate 2 AWG ground wires. The minimum number of dual-hole attachments is system dependent and is specifiedby the customer. This bar provides electrical continuity between all bonds and ground wire with a current carrying capacity equal to or exceeding that of a 6 AWG copper wire. See theStandards and Guidelines for Communication Sites(68P81089E50) for more information on proper bonding and ground at a site. Power Requirements TheStandards and Guidelines for Communication Sites(68P81089E50) defines the guidelines and requirements for cabinets, which house equipment that requires AC power input. Some of the guidelines and requirements are as follows: •The cabinet is designed to accept 120/240 V, single-phase power with an amperage service as required by the electronic equipment. •Cabinets serviced by commercial power must be equipped with a nationally recognized test laboratory (NRTL) certified power distribution panel that contains a main circuit breaker or individual circuit breakers of the correct size as required for the electronic equipment or specified by the customer. •A decal showing an electrical schematic of the power wiring must be affixed to the inside surface of the cabinet. •All AC power equipment and electrical components must conform to National Electrical Manufacturers Association (NEMA) and National Electrical Code (NEC).ThesemustalsobelistedbyanNRTL. 2-10 68P81003Y71-O November 2002 Simulcast Hardware InstallationAntenna Requirements •A surge protector, designed to protect equipment systems from surges at a 120/240 V service and load center, must be placed on the power feed ahead of all individual load center circuit breakers. This protector mustbe listed by an NRTL for the purpose intended. •Selection of a surge protector is based on the susceptibility of the equipment powered by the electrical service, with margin provided for locally generated disturbances. See ANSI/IEEEC62.41 for more details. •At least one 120 VAC, 15 A duplex convenience outlet equipped with ground fault interrupter (GFI) protection must be provided in the electronic equipment compartment. Table 2-2 lists the required wire gauges for various installations. The “loop length” refers to the combined length of the -48 VDC (hot) lead and the DC return lead. For example, a cabinet installation that needs 16 feet of wire to reach the power supply rack has a total loop length of 32 feet. For a standard installation, the equipment cabinet is located adjacent to the power supply rack with a cable loop length less than 10.6 m (35 ft.). Wire used for the cabinet power connection to the breaker panel shall not be less than 6 AWG. Total cable loop (from the power supply rack breakers to the STR 3000 cabinet) voltage drop shall not exceed 500 mV for the cabling of the -48 VDC (h…

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External Photos

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12B Linear Simulcast Station Base Radio -- Front View

ID Label/Location Info

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 2 IDENTIFICATION LABEL LOCATION X See The Attached Photographs (EXHIBIT 12A-1, EXHIBIT 12A-2) X Back Of Radio APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12A-1 Rear of Station Including Location of the FCC ID Label APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12A-2 FCC Identification Label

Internal Photos

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12C Exciter Module, Component Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12D-1 Power Amplifier Module, Top View, Shields Removed APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12D-2 Power Amplifier Module, Heat Sink View APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12E-1 Power Supply Module, Cover Removed APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12E-2 Power Supply Module, Component Side, Sub Board Removed APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12E-3 Power Supply Module, Sub Board Top Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12E-4 Power Supply Module, Sub Board Bottom Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12G-1 Base Radio Control Module, Component Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12G-1 Backplane Board, Front Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12G-2 Backplane Board, Back Side APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 12H Transmit Combiner: (2:1 Shown)

Parts List/Tune Up Info

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 9 TUNE-UP PROCEDURE There is no field tune-up procedure. All adjustments are software controlled and are pre-set at the factory. Certain station operating parameters can be changed via Man Machine Interface (MMI) through the BRC RS232 port within predetermined limits. Examples include transmit / receiver operating frequencies and power level. APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 9 Tune Up Procedure This exhibit contains the tune-up procedure as it will appear in the Astro® 25 system release 6.2 Simulcast Configuration Manual. The following adjustments comprise the transmitter setups. 1. Reference oscillator installation 2. Setting transmitter frequency and power level. 3. Measuring channel interference 4. Measuring the transmitter metering points 5. Measuring the transmitter frequency error Test Equipment Description Recommended Model Service Monitor Motorola R-2001 or equivalent PC with CSS Software Procedure CSS Port: 9-pin serial cable with D connector is provided on the station control module front panel to allow service personnel to connect a PC loaded with the Configuration Service Software (CSS) and perform programming and maintenance tasks via the RS232 port. The following pages of this exhibit show the important alignment screens. Exhibit Description 9A Installing reference oscillator 9B Configuring channel frequency and power level 9C Measuring channel interference 9D Measuring the transmitter metering points 9E Measuring the transmitter frequency error

RF Exposure Info

Simulcast Hardware InstallationOSHA Related Safety Requirements OSHA Related Safety Requirements The United States Department of Labor, through the provisions of the Occupational Safety and Health Act (OSHA) of 1970, has established an electromagnetic energy safety standard that applies to the use of this equipment. Proper use of this equipment will result in exposure below the OSHA limit. Human Exposure Compliance for RF Energy STR 3000 Simulcast Base Radios are designed to generate and radiate RF energy by means of an external antenna. When terminated into a non-radiating RF load, the base radio equipment is certified to comply with Federal Communications Commission (FCC) regulations pertaining to human exposure of RF radiation in accordance with the FCC Rules Part 1 section 1.1310 as published in title 47 code of federal regulations and procedures established inTIA/EIA TSB92, Report on EME Evaluation for RF Cabinet Emissions Under FCC MPE Guidelines. Compliance to FCC regulations of the final installation should be assessed and take into account site specific characteristics, such as type and location of antennas, as well as site accessibility of occupational personnel (controlled environment) and general public (uncontrolled environment). This equipment should only be installed and maintained by trained technicians. Licensees of the FCC using this equipment are responsible for ensuring that its installation and operation comply with FCC regulations Part 1 section 1.1310 as published in title 47 code of federal regulations. Whether a given installation meets FCC limits for human exposure to radio frequency radiation may depend not only on this equipment, but also onwhether the “environments” being assessed are being affected by radio frequency fields from other equipment, the effects of which may add to the level of exposure. Accordingly, the overall exposure may be affected by radio frequency generating facilities that exist at the time the licensee’s equipment is being installed or even by equipment installed later. Therefore, the effect of any such facilities must be considered in site selection and in determining whether a particular installation meets the FCC requirements. FCC OET Bulletin 65 provides materials to assist in making determinations if a given facility is compliant with the human exposure to RF radiation limits. Determining the compliance of transmitter sites of various complexities may be accomplished by means of computational methods. In general, observe the following guidelines when working in or around radio transmitter sites: •Ensure that all personnel have electromagnetic energy awareness training. •Ensure that all personnel entering the site are authorized. •Obey all posted signs. •Assume all antennas are active. •Beforeworkingonantennas,notifyowners and disable appropriate transmitters. •Maintain minimum of 1 m (3 ft.) clearance from all antennas. •Do not stop in front of antennas. •Use personal RF monitors while working near antennas. •Never operate transmitters without shields during normal operation. •Do not operate base station antennas in equipment rooms. 68P81003Y71-O November 20022-15

Test Report

APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 1 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: College Degree: BSEE, Texas Tech University, Lubbock, TX, USA MSEE, University of Texas at Arlington, Arlington, TX, USA __2___ years of Design and Development experience in the field of two-way radio communication. __6___ years of Design and Development experience in the field of Cellular/PCS communication. NAME: Michael Graham SIGNATURE: ___________________________ DATE: November 5, 2002 POSITION: Senior Staff 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 Pieper SIGNATURE: ___________________________ DATE: November 5, 2002 POSITION: Engineering Manager APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 11 SUBMITTED MEASURED DATA -- INDEX EXHIBIT DESCRIPTION 11A RF Output-Data 11B Adjacent Channel Coupled Power (ACCP) Requirements 11 B-1 ACCP Results ≤400 kHz for QPSK and C4FM Modulation at 764 & 776 MHz 11B-2 ACCP Results >400 kHz at 764 MHz 11B-3 ACCP Results >400 kHz at 776 MHz 11C Conducted Spurious Emissions: Setup, Specifications, Index 11C-1 Conducted Spurious Harmonic Emissions, Power Output at 55 Watts 11C-2 Conducted Spurious Harmonic Emissions, Power Output at 2.5 Watts 11C-3 Conducted Spurious Close-In Emissions, 764 MHz at Power Output of 55 Watts and 2.5 Watts 11C-4 Conducted Spurious Close-In Emissions, 776 MHz at Power Output of 55 Watts and 2.5 Watts 11D Radiated Spurious Emissions: Setup, Specifications, Index 11D-1 Radiated Spurious Emissions, Power Output at 55 Watts 11D-2 Radiated Spurious Emissions, Power Output at 2.5 Watts 11E Frequency Stability: Setup, Specifications, Index 11E-1 Frequency Stability Vs Temperature 11E-2 Frequency Stability Vs Voltage 11F Protection of the 1559-1610 MHz Band APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 11A RF POWER OUTPUT DATA The RF power output was measured with the indicated voltage applied to and current into the final RF amplifying device. Measured RF output 55 Watts Normal DC Voltage 28.0 Volts Normal DC Current 13.5 Amperes DC Input power for final RF amplifying device(s) 385 Watts Primary Supply Voltage 48 Volts DC Minimum Measured RF output 2.5 Watts Normal DC Voltage 28.0 Volts Normal DC Current 3.1 Amperes DC Input power for final RF amplifying device(s) 88 Watts Primary Supply Voltage 48 Volts DC APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 11B ACCP Requirements Modulation Type: Widepulse QPSK – 9600 bps Random Data Emission Designator: 8K70D1W Modulation Type: C4FM - 9600 bps Random Data Emission Designator: 8K10F1E Channelization: 12.5 kHz SPECIFICATION REQUIREMENT: § 90.543 Emission limits: For operation in the 764-776 MHz Band For base transmitters designed to operate with a 12.5 kHz channel bandwidth, the ACCP shall be in accordance to the following table. 12.5 KHz Base Transmitter ACCP Requirements for 90.543(b) Offset from Center Frequency (kHz) Measurement Bandwidth (kHz) Maximum ACCP (dBc) 9.375 6.25 -40 15.625 6.25 -60 21.875 6.25 -60 37.5 25 -60 62.5 25 -65 87.5 25 -65 150 100 -65 250 100 -65 >400 to receive band 30(s) -80 (continues at –6dB/Octave In the receive band 30(s) -100 Measurement Procedure, per 90.543(b): Setting the Reference Level, per 90.543(b)(1): Using a spectrum analyzer capable of ACCP measurements set the measurement bandwidth to the channel size, (12.5 kHz). Set the frequency offset of the measurement to zero and adjust the center frequency of the spectrum analyzer to give the power level in the measurement bandwidth. Record this power level as the reference power level. Measuring the power Level at frequency offset <600 kHz, per 90.543(b)(2): Using a spectrum analyzer capable of ACCP measurements set the measurement bandwidth as shown in the table. Measure the ACCP in dBm. These measurements should be made at maximum power. Calculate the coupled power by subtracting the measurements made in this step from the reference power level. The absolute ACCP values must be less than the values given in the table for each condition. Measuring the power Level at frequency offset >600 kHz, per 90.543(b)(3): Set the spectrum analyzer to 30 kHz resolution bandwidth, 1 MHz video bandwidth and sample mode detection. Sweep ±6 MHz from the carrier APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 11B frequency. Set the reference level to the RMS value of the transmitter power and note the power. The response at frequencies >600 kHz must be less than the values listed in the table. Measurement results, per 90.543(b): For measurements ≤400 kHz offset from center frequency the ACCP results are shown in Tabular format. For measurements >400 kHz offset from center frequency the ACCP results are shown in Graphical format. The ACCP test results for >400 kHz offsets are shown for QPSK modulation only, as this represents the worse case of the two supported modulation techniques. ACCP Data: EXHIBIT DESCRIPTION 11B-1 ACCP Results ≤400 kHz for QPSK and C4FM Modulation 11B-2 ACCP Results >400 kHz at 764 MHz 11B-3 ACCP Results >400 kHz at 776 MHz APPLICANT: MOTOROLA INC. EQUIPMENT TYPE: ABZ89FC5800 EXHIBIT 11B-1 ACCP Test Results for offset frequencies ≤ ≤≤ ≤ 400 kHz ACCP Test Results: QPSK Modulation, Pout = 55 Watts FCC Require…

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Contact Information

Applicant

Matthew Nawrocki
[email protected]847-812-5841Fax: 847-576-0903

Technical Contact

Motorola, Inc.Michael R Graham
[email protected]817-245-7140

5555 N. Beach St. · Fort Worth, Texas · United States

Non-Technical Contact

Motorola, Inc.Steven Noskowicz
847-632-5075

Test Firm

Motorola, Inc.William Bily
847-576-2238Fax: 847-538-3905

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
29764 MHz - 776 MHz55 W8K70D1W0.1 ppm
Confidentiality
Long Term
Grant Notes
The antenna(s) used for this transmitter must be fixed-mounted on outdoor permanent structures. RF exposure compliance is addressed at the time of licensing, as required by the responsible FCC Bureau(s), including antenna co-location requirements of 1.1307(b)(3).

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