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ABZ89FC5823Non Broadcast Transmitter

Motorola Solutions, Inc.
Non Broadcast Transmitter - FCC ID ABZ89FC5823 - Motorola Solutions, Inc.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
May 12, 2011
Application Purpose
Original Equipment
Date of Application
May 12, 2011
Equipment Note
Non Broadcast Transmitter
Frequency Range
940.00000000 - 941.00000000
Company
Motorola Solutions, Inc.
Country
United States

Documents & Files

Select a file to view

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

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D User / Operational Manual Operational or User’s Manual The manual should include instruction, installation, operator, or technical manuals with required ‘information to the users’. This manual should include a statement that cautions the user that changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. The manual shall include RF Hazard warning statements, if applicable. Draft copy of some of the manual information has been assembled and has been included as part of this filing package. Upon request, published and/or printed manuals will be sent to the commission and/or telecommunication certification body (TCB). All of the descriptions, block diagrams, and schematics that are included in this filing package are current as of the package submittal date. EXHIBIT DESCRIPTION D1-1 Manual Front Matter (Draft) D1-2 Specifications (Draft) D1-3 Field Replaceable Units and Orderable Parts (Draft) D1-4 Tune-Up Procedure D1-5 Racking Configurations D1-6 Functional Description / Operation of Modules (Draft) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-1 User / Operational Manual Manual Front Matter (Draft) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-1 User / Operational Manual Manual Front Matter (Draft, Continued) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-1 User / Operational Manual Manual Front Matter (Draft, Continued) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-1 User / Operational Manual Manual Front Matter (Draft, Continued) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-2 User / Operational Manual Specifications (Draft) General Performance ModelT7039 H x W x D5.25" x 19" x 18" (133x483x457mm) Weight46 lbs (21 kg) Power Requirements AC: 90-264 VAC, 47-63 Hz DC: 43.2-60 VDC Temperature Range-30 to 60C (-22 to 140F) Input / Output Impedance50 ohms Antenna Connectors Transmit: N female Receive: N female Modulation IV&D Transmit / Receive: C4FM, LSM, H-DQPSK TDMA Analog: Frequency Modulation Frequency StabilityExternal Reference Channel Spacing Digital - C4FM, Linear Modulations: 12.5 kHz Analog Frequency Modulation: 12.5 kHz, 25 kHz Transmitter Frequency Range935-941 MHz Power output C4FM Digital and Analog: 2-120 Watts Linear Digital Modulations: 2-120 Watts (Average) Electronic BandwidthFull Bandwidth Intermodulation Attenuation55 dB Spurious and Harmonic Emissions Attenuation 90 dB FCC Type Acceptance FCC Designation:Frequency RangeTypePower Output ABZ89FC5823935-941 MHzTransmitter (FM)Variable 2-120 W Transmitter (Linear)Variable 2-120 W (Avg) ABZ89FR5824896-902 MHzReceiverN/A APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-3 User / Operational Manual Field Replaceable Units and Orderable Parts (Draft) Field replaceable units, or FRUs, include special packaging to allow shipment to customers. Parts and FRUs available for customer order are listed in this section. All parts and FRUs are sourced through the Radio Products and Service Division (RPSD). 900 MHz Product OfferingP/N900 MHz PA – Power Amplifier CLF1853A Output Board / Low Pass Filter CLF6556A LDM – Linear driver module CLF6506F Distribution CLF6542C LFM – Final Module CLF6555A Transceiver 900 MHz PCUF1006A Add Cabinet RMC, 6 Base Capability CA00861AA Add Site/Cabinet RMC, 7-24 Base Capability CA00862AA Add Cabinet RMC for Expansion Rack CA00877AA 900 MHz BR – Base Radio T7039A 900 MHz – 6 pack includes expansion rack T7054A PMU – Power Monitoring Unit 0171259H01 Model/Option Description FRU Description CA00290AF INC: 900 MHz TRANSCEIVER DLN6568A FRU: AC / 48V DC Power Supply (W12) CA00292AF INC: 900 MHz High Power PA 5985167Y02 FRU: Power Supply Fan Module CA01823AA ADD: 900 6-PORT CAVITY COMBINER DLN6569A FRU: Site Controller CA01824AA ADD: 900 HYBRID SINGLE OUTPUT 2-WAY DLN6636A FRU: Expansion HUB CA01825AA INC: 900 HYBRID SINGLE OUTPUT 3-WAY DLN1380A FRU: Cabinet RMC Pass Through Module CA01826AA INC: 900 HYBRID SINGLE OUTPUT 4-WAY DLN1338A FRU: Fan Module CA01827AA INC: 900 HYBRID SINGLE OUTPUT 5-WAY DLN1329A FRU: Site Controller Backplane CA01828AA ADD: 900 HYBRID SINGLE OUTPUT 6-WAY DLN1330A FRU: Base Radio Backplane CA01829AA ADD: 900 HYBRID DUAL OUTPUT 2-WAY DLN1343A FRU: Expandable Site Subsystem Backplane CA01830AA ADD: 900 HYBRID DUAL OUTPUT 3-WAY DLN1339A FRU: AC Power Distribution Module CA01837AA INC: 900 MHz PRESELECTOR / POST FILTER CA01838AA INC: 900 HYBRID POST FILTER DLN6778A FRU: Transceiver 900 MHz CA01873AA INC: 900 MHz PRESELECTOR DLN6779A FRU: 900 MHz High Power PA CA01872AA INC: 900 HYBRID PRESELECTOR / POST FILTER DLN6780A FRU: Hybrid Combiner Fan Module T7321A GCM 8000 COMPARATOR DLN6781A FRU: Power Supply (W14) CA01183AA GCM 8000 COMPARATOR DLN6782A FRU: Hybrid Combiner 1/2 - 1/2 X153AW Rack Mount Hardware DLN6783A FRU: Hybrid Combiner 2/3 - 1/3 DLN6784A FRU: Hybrid Combiner 3/5 - 2/5 Customer Replaceable Power Cables for Standalone Base Radio Other Customer Replaceable Parts Part Number Description Part Number Description TRN7663A Power Cable, North America 3084827Y01 Battery Temperature Sensor Extension Cable TRN7755A Power Cable, Continental Europe 6484850Y01 Junction Panel (Cabinet Mounting) TTN5049A Power Cable, UK / Ireland 6485367Y01 Junction Panel (Rack Mounting) TTN5103A Power Cable, Australia APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-3 User / Operational Manual Field Replaceable Units and Orderable Parts (Draft) (Continued) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-4 User / Operational Manual 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) commands, within predetermined limits. Examples include transmit / receiver operating frequencies and transmitter power level. APPLICANT:…

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External Photos

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C1-1 Photographs of the Device External Front View of Base Radio APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C1-2 Photographs of the Device External Front View of Base Radio, Front Panel Removed APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C1-3 Photographs of the Device External Front View of Base Radio, Alternate Racking of Base Radio in ‘GTR 8000 Expandable Site Sub-system’ Configuration APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C2-1 Photographs of the Device External Back View of Base Radio

ID Label/Location Info

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT A1 Equipment Label FCC / IC Identification Numbers The FCC Identifier (FCC ID) is made up of the Grantee Code, supplied by the FCC, and an Equipment Product Code. This equipment product code may be to 14 characters in length, and is assigned by the grantee (applicant). The Grantee Code for this product is ABZ The Equipment Product Code for this product is 89FC5823 The entire FCC ID number is ABZ89FC5823 The Industry Canada (IC) identification consists of the certification / registration number as well as the IC model number. The certification / registration number is made up of Company Number (CN) assigned by Industry Canada, and the Unique Product Number (UPN) assigned by Motorola. The IC model number is the unique model number of the radio assigned by Motorola. The Company Number is 109AB The Certification / Registration Number for this product is 109AB-5823 The IC Model Number is T7039-900 APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT A2-1 Equipment Label FCC / IC Identification Label A representative image of the FCC / IC Identification label is shown below. This label is generated as part of the standard manufacturing process and is printed in the factory. Much of the information that is on the label, such as serial number, model number, etc. is driven by the ordering process and is unique per customer order. Se r ia l N o: F.O. Page No: Item No: Model No. T 7039A TX FCC ID: ABZ 89F C5823 RX F CC ID: ABZ89FR 5824 IC: 109AB-5823 IC Model No: T 7039-900 This device complies with Part 15 of the FCC Rules. Operation is subject to the condition that this device does not cause harmful inter ference. 90-230V 10A Max. 50/60 Hz 48V 18A I.T.E. 31 NH FCC / IC Identification Label APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT A2-2 Equipment Label FCC / IC ID Label The location of the identification label is on the back of the radio, as shown in the photograph below. Location of FCC / IC Identification Label

Internal Photos

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-1.1 Photographs of the Device Internal Front View – Transceiver Module Transceiver Module without the Supplementary Audio Card (SAC) Transceiver Module with the Supplementary Audio Card (SAC) Installed Front View of Base Radio Showing Transceiver Module with SAC Installed and Identifying Connections APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-1.2 Photographs of the Device Internal Front View – Transceiver Module Circuit Board Top View APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-1.3 Photographs of the Device Internal Front View – Transceiver Module, Control Section APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-1.4 Photographs of the Device Internal Front View – Transceiver Module, Exciter Section APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-1.5 Photographs of the Device Internal Front View – Transceiver Module, Receiver Section APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-2 Photographs of the Device Internal Front View – Power Amplifier Module, Cover Removed APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-3.1 Photographs of the Device Internal Front View – Power Supply Module APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-3.2 Photographs of the Device Internal Front View – Power Supply Module, Circuit Boards, Top View APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-4 Photographs of the Device Internal Front View – Backplane APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C3-5 Photographs of the Device Internal Front View – Supplementary Audio Card (SAC) APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C4-1 Photographs of the Device Internal Back View – Transceiver Module APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C4-2 Photographs of the Device Internal Back View – Power Amplifier Module APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C4-3 Photographs of the Device Internal Back View – Power Supply Module, Circuit Boards, Back View APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C4-4 Photographs of the Device Internal Back View – Backplane APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT C4-5 Photographs of the Device Internal Back View – Supplementary Audio Card (SAC)

Parts List/Tune Up Info

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT D1-4 User / Operational Manual 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) commands, within predetermined limits. Examples include transmit / receiver operating frequencies and transmitter power level.

RF Exposure Info

Motorola Solutions Canada, Inc. UPN Number: 5823 Company Number: 109AB Model Number: T7039-900 Page 1 RF Exposure Technical Brief This Technical Brief calculates the minimum separation distance from an antenna, connected to the subject base station, such that the power density values listed in RSS-102, Radio Frequency (RF) Exposure Compliance of Radiocommunications Apparatus (All Frequency Bands) Table 4.2 and Table 4.4 are not exceeded. The analysis is for a typical installation using a structure mounted antenna. Within the frequency range that the subject equipment operates, the maximum permitted exposure limit for uncontrolled environments is a power density of f/150 (W/m 2 ), where "f" is the frequency expressed in MHz, and measurements are averaged over a period of 6 minutes. The maximum permitted exposure limit for controlled environments is f/30 W/m 2 , with measurements averaged over 6 minutes. For the above limits the lowest operating frequency of the equipment will be used for the calculations because minimizing f results in the largest separation distance. Table 1 lists the maximum permitted exposure limits by environment type for the lowest operating frequency of the equipment. Table 1 - Maximum Permissible Exposure Limits Uncontrolled Environment Controlled Environment Frequency 935 MHz 935 MHz Limit 6.23 W/m 2 31.2 W/m 2 Example Calculations for GTR8000, 900 MHz Band Transmitter: The example configuration is a single frequency site, with no RF network losses between the transmitter output connector and the antenna input connector. The antenna is an omni directional type with the largest dimension of the antenna mounted in a vertical orientation. The antenna gain was selected to realize a short antenna length which results in a higher power density over the analyzed surface area. This configuration results in a conservative separation distance, i.e., larger distance. Table 2 - Transmitter Configuration Frequency 935 MHz Base Station Output Power 120 W RF Network Loss 0 dB Antenna Type RFS P-1108-3 6 dBd / 8.14 dBi (Omni) Antenna height 1.66 m Using Equation 1 the spatially averaged plane-wave equivalent power densities parallel to the antenna may be estimated by dividing the net input power to the antenna by the surface area of an imaginary cylinder at a distance R from the antenna, with the height of the cylinder equal to the length of the antenna 1 . 1 Federal Communications Commission Office of Engineering & Technology, OET Bulletin 65, “Evaluating Compliance with FCC Guidelines for Human Exposure to Radiofrequency Electromagnetic Fields”, Edition 97-01, page 32, Tell’s cylindrical model. Motorola Solutions Canada, Inc. UPN Number: 5823 Company Number: 109AB Model Number: T7039-900 Page 2 Rh Pnet S 2  (1) Where: S = power density, W/m2 Pnet = net input power to the antenna, W R = radial distance from the antenna, m h = height of the antenna, m The minimum separation distance can be found by solving Equation 1 for R and setting S to the maximum power density for the environment per Table 1. Uncontrolled environment: 9.1 23.666.12 120 2    hS Pnet R m (2) Controlled environment: 4.0 2.3166.12 120 2    hS Pnet R m (3) For the example site configuration the minimum separation distance for an uncontrolled environment is 1.9 m and the minimum separation distance for the controlled environment is 0.4 m.

Test Report

APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT E Report on Test Measurements Measurements Report The measurement report shows compliance information against the pertinent technical standards. Each section of the report contains either verbiage or graphs which show compliance to applicable standards as required. Each section also explains testing method and indicates what the applicable specification is. A list of test equipment for all sections, and certification signoff page are included at the end of the measurement report. SUBMITTED MEASURED DATA -- INDEX EXHIBIT DESCRIPTION E1-1 RF Output-Data E1-2 Occupied Bandwidth – Digital Modulations: Setup, Specifications, and Index E1-2.1 Linear Simulcast Modulation (LSM) E1-2.2 H-DQPSK, P25 Two Slot TDMA Digital Modulation E1-2.3 Compatible 4-Level Frequency Modulation (C4FM) E1-3 Conducted Spurious Emissions: Setup, Specifications, and Index E1-3.1 LSM Conducted Spurious Emissions, Harmonics, Power 120 Watts, Multiple Frequencies E1-3.2 LSM Conducted Spurious Emissions, Harmonics, Power 2 Watts, Multiple Frequencies E1-3.3 H-DQPSK Conducted Spurious Emissions, Harmonics, Power 120 Watts, Multiple Frequencies E1-3.4 H-DQPSK Conducted Spurious Emissions, Harmonics, Power 2 Watts, Multiple Frequencies E1-3.5 C4FM Conducted Spurious Emissions, Harmonics, Power 120 Watts, Multiple Frequencies E1-3.6 C4FM Conducted Spurious Emissions, Harmonics, Power 2 Watts, Multiple Frequencies E1-3.7 Analog Conducted Spurious Emissions, Harmonics, Power 120 Watts, Multiple Frequencies E1-3.8 Analog Conducted Spurious Emissions, Harmonics, Power 2 Watts, Multiple Frequencies E1-3.9 Conducted Spurious Emissions, Close-In, 100 MHz Span, Power Output at 120 Watts, LSM E1-3.10 Conducted Spurious Emissions, Close-In, 100 MHz Span, Power Output at 120 Watts, H-DQPSK E1-3.11 Conducted Spurious Emissions, Close-In, 100 MHz Span, Power Output at 120 Watts, C4FM E1-3.12 Conducted Spurious Emissions, Close-In, 100 MHz Span, Power Output at 120 Watts, Analog E1-4 Radiated Spurious Emissions: Setup, Specifications, and Index E1-4.1 LSM Radiated Spurious Emissions, Harmonics, Power 120 Watts, Representative Frequency E1-4.2 LSM Radiated Spurious Emissions, Harmonics, Power 2 Watts, Representative Frequency E1-5 Frequency Stability: Setup, Specifications, and Index E1-5.1 Frequency Stability Vs Temperature E1-5.2 Frequency Stability Vs Voltage APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT E Report on Test Measurements Measurements Report SUBMITTED MEASURED DATA – INDEX (Continued) EXHIBIT DESCRIPTION E1-7 Audio Frequency Response – Modulation Characteristics: Setup, Specifications, Index E1-7.1 Audio Frequency Response – Modulation Characteristics, 25 kHz Channels E1-7.2 Audio Frequency Response – Modulation Characteristics, 12.5 kHz Channels E1-8 Audio Modulation Limiting – Modulation Characteristics: Setup, Specifications, Index E1-8.1 Audio Modulation Limiting – Modulation Characteristics, 25 kHz Channels E1-8.2 Audio Modulation Limiting – Modulation Characteristics, 12.5 kHz Channels E1-9 Analog Occupied Bandwidth Description – 25 kHz Analog Modulation E1-9 Analog Occupied Bandwidth Description – 12.5 kHz Analog Modulation E1-9.1 Occupied Bandwidth Plot – Analog, no sub audible signaling, 25 kHz Channels E1-9.2 Occupied Bandwidth Plot – Analog, Private Line signaling, 25 kHz Channels E1-9.3 Occupied Bandwidth Plot – Analog, Digital Private Line signaling, 25 kHz Channels E1-9.4 Occupied Bandwidth Plot – Analog, no sub audible signaling, 12.5 kHz Channels E1-9.5 Occupied Bandwidth Plot – Analog, Private Line signaling, 12.5 kHz Channels E1-9.6 Occupied Bandwidth Plot – Analog, Digital Private Line signaling, 12.5 kHz Channels E1-11 Test Equipment Used E1-12 Statement of Certification APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT E1-1 Report on Test Measurements RF Power Output Data The RF power output was measured with the indicated voltage applied to and current into the final RF amplifying device. The DC current indicated is the total for the final RF amplifier stage, consisting of six parallel power transistors. Linear Modulation Mode: Measured RF output 120 Watts, Average DC Voltage 27.6, 25.5 Volts * DC Current 0.8, 8.0 Amperes * Input power for final RF amplifying device(s) 226.1 Watts * Primary Radio Input Supply Voltage 120 Volts AC Minimum Measured RF output 2 Watts, Average Normal DC Voltage 27.6, 21.0 Volts * Normal DC Current 0.45, 2.0 Amperes * Input power for final RF amplifying device(s) 54.4 Watts * Primary Radio Input Supply Voltage 120 Volts AC * Note: there are two final modules in the 900 MHz power amplifier, two numbers shown represent the current to the first stage and second stage, respectively Frequency Modulation and Compatible 4-Level Frequency Modulation Mode: Measured RF output 120 Watts DC Voltage 27.6, 21.0 Volts * DC Current 0.8, 8.25 Amperes * Input power for final RF amplifying device(s) 195.3 Watts * Primary Radio Input Supply Voltage 120 Volts AC Minimum Measured RF output 2 Watts Normal DC Voltage 27.6, 21.0 Volts * Normal DC Current 0.45, 2.0 Amperes * Input power for final RF amplifying device(s) 54.4 Watts * Primary Radio Input Supply Voltage 120 Volts AC * Note: there are two final modules in the 900 MHz power amplifier, two numbers shown represent the current to the first stage and second stage, respectively APPLICANT: MOTOROLA EQUIPMENT TYPE: ABZ89FC5823 EXHIBIT E1-2 Report on Test Measurements Occupied Bandwidth –Digital Modulation, 12.5 kHz Channel Spacing There is one exhibit shown for each of the digital modulations available: Linear Simulcast Modulation or LSM, Compatible 4-Level Frequency Modulation, C4FM; and H-DQPSK, P25 Two Slot TDMA Digital Modulation. Each of these can be used in system configurations based upon channel usage as described in Exhibit B. The occupied bandwidth plots reference the following setup and specification requirements. Modulation Type Emission Designator Channelization …

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Contact Information

Applicant

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

Non-Technical Contact

Motorola Solutions, Inc.Greg Alms
[email protected]8475768450

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1124D,9940 MHz - 941 MHz120 W16K0F3E0.1 ppm
Confidentiality
Long Term
Grant Notes
Power Output is conducted. The antenna(s) used for this transmitter must be installed to provide a minimum separation distance of 1.9 meters from all persons during normal operation to satisfy General Population/Uncontrolled exposure limit. The antenna(s) used for this transmitter must be installed to provide a minimum separation distance of 0.4 meters from all persons during normal operation to satisfy Occupational/Controlled exposure limit. The antenna(s) used for this transmitter must not be co-located with any other transmitters except in accordance with FCC multi-transmitter product procedures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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