
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
I I N N V V A A D D R R t t m m I I P P 1 1 H H P P V V D D a a t t a a T T r r a a n n s s c c e e i i v v e e r r Owner’s Manual Date Prepared: October 25, 2001 (Revised: September 24, 2001) Document Control #: DC-42 Version: C-2 (Special Release) Copyright 2001 IPMobileNet, Inc. 11909 East Telegraph Road Santa Fe Springs, CA 90670-3785 Voice: (562) 946-9493 Fax: (562) 949-0223 TABLE OF CONTENTS ~\Technical Documentation\System Manuals\FCC-Reports\IP1HPV\IP1HPV-FCCRpt.doc Page 2 SECTION 1: THEORY OF OPERATION................................................................................. 3 General Block Diagram................................................................................................ 3 General Block Diagram Definitions ..................................................................... 3 Microcontroller .................................................................................................... 5 Support Circuitry ................................................................................... 5 Input/Output ........................................................................................................ 5 Injection Synthesizer .......................................................................................... 6 Transmitter/TR Switch ........................................................................................ 6 Receiver 1 Front-End ......................................................................................... 6 Receiver 1 IF ...................................................................................................... 7 Transmit Modulation ........................................................................................... 7 Baseband Routing .............................................................................................. 7 Power and Analog Ground ................................................................................. 8 Receiver 2 Front-End ......................................................................................... 8 Receiver 2 IF ...................................................................................................... 8 Modem .............................................................................................................. 8 VLogic and Digital Ground ................................................................................. 9 SECTION 2: FACTORY TEST PROCEDURE....................................................................... 10 Equipment List........................................................................................................... 10 Programming and Configuring Mobile Radio.......................................................... 11 Adjustment / Alignment Procedures........................................................................ 12 Receiver Injection ............................................................................................. 12 Receiver 1 ........................................................................................................ 12 Receiver 2 ........................................................................................................ 13 Transmit Data ................................................................................................... 14 Transmit Power Control .................................................................................... 14 Receive Data .................................................................................................... 15 Final Test .......................................................................................................... 15 Uplink Hardware Timing Verification ................................................................ 17 Downlink Hardware Timing Verification ............................................................ 19 SECTION 3: LABEL AND LABEL PLACEMENT INVADR IP1 HPV Data Transceiver FCC Label Placement................................................ 21 INVADR IP1 HPV Data Transceiver FCC Label................................................................... 21 APPENDIX A: IP1 HPV CIRCUIT BOARD DIAGRAM.......................................................... 22 APPENDIX B: IP1 HPV TEST DATA SHEET........................................................................ 23 SECTION 1: THEORY OF OEPRATION ~\Technical Documentation\System Manuals\FCC-Reports\IP1HPV\IP1HPV-FCCRpt.doc Page 3 General Block Diagram General Block Diagram Definitions For increased data security, the modem supports the U.S. Government developed Digital Encryption Standard (DES) data encryption and decryption protocols. This capability requires installation of third party, Internet Protocol (IP) compliant DES encryption and decryption software on the system. The standard IP circuit board contains ten (10) sections defined below. The IP1 circuit board contains additional sections than those listed in this section. These added sections will be discussed in Section 4 of this document. Input/Output Circuitry associated with the radio’s DB9 data connector providing all the RS232 data and handshake functions, including the necessary level changes. Microcontroller Manages the operation of the radio loading the selected transmit/receive frequencies into the injection synthesizer, controls the operation of the modem, and determines which receiver provides a better signal from a given transmission. Also provides transmit time-out protection in the event a fault causes the radio to halt in the transmit mode. Transmit Processing Circuitry that amplifies the analog audio signal from the modem and uses it to modulate the voltage controlled oscillator (VCO) and 10 MHz reference oscillator in the injection synthesizer section. Modulating the VCO and reference oscillator simultaneously results in a higher quality FM signal. Modem Converts serial data into an analog audio waveform for transmission and analog audio fr…
Text truncated - open the document above for the full version.
INSTALLATION GUIDE INVADR tm MOBILE RADIO SYSTEM INSTALLATION GUIDE CONTENTS: Section Title Page • INVADR tm Mobile Radio Illustration....................................2 • Installation Overview and Safety Reminder.......................2 • Installation Requirements...................................................3 • Pre-Installation Guidelines..................................................5 • Mounting the INVADR tm Mobile Radio................................5 • Serial Cable Connection and Routing................................5 • EMI Filter Installation..........................................................6 • Power Supply Installations.................................................6 • Switch Installation...............................................................7 • Delay Timer Installation......................................................7 • Antenna Installation............................................................8 • VIU (Vehicle Interface Unit) Connections...........................8 • Testing and Installation Checklist .......................................9 • Vehicle Unit Wiring Interconnection Layout......................10 • Diversity Antenna Vehicle Installation Detail Diagram.....11 • Mobile Antenna Distance Matrix.......................................12 • Vehicle Unit Wiring Interconnection Layout with VIU (Voice Interface Unit)........................................................13 • Vehicle Unit Wiring Interconnection Layout with Data911 and VIU (Voice Interface Unit)...........................14 IPMN p/n: 516-80307 Document Control #: DC-10 Version: C-1 11909 East Telegraph Road, Santa Fe Springs, CA 90670-3785 Voice: (562) 946-9493 Fax: (562) 949-0223 Copyright 2001 IPMobileNet, Inc. Notice: While reasonable efforts were made to ensure that the information in this document was complete and accurate at the time of printing, IPMobileNet, Inc. can assume no responsibility for any inaccuracies. Changes and corrections to the inforrmation within this document may be incorporated into future releases. ~\Technical Documentation\Install_Guides\MR-Guide\28-Jun-01 Page 1 of 14 INVADR tm Mobile Radio Illustration xxxxxxxx xxxxwweddd xxxxxxxxxxx xxxxwweddd TX FCC ID M17-EC8DT450TX Mounting Bracket Power Cable Serial Cable DB9 RX2 TX/RX1 Red Black Installation Overview This guide will provide standard steps involved in the installation process of an INVADR tm Mobile Radio. This guide includes wire routing and connections between the radio, other components, and the vehicle’s power. Safety Reminder 1. To prevent personal injury and vehicle damage, exercise extreme caution throughout this installation process. Follow safety precautions for handling wiring, tools, and a vehicle’s engine. Handle the vehicle’s battery with extreme caution to avoid burns. Do not alter the components listed in the Installation Requirements on page 3 unless substitutions are noted within this document. ~\Technical Documentation\Install_Guides\MR-Guide\28-Jun-01 Page 2 of 14 INSTALLATION REQUIREMENTS PL502-82019-51 - INVADR MOBILE ACCESSORY KIT -- An INVADR Mobile Radio includes the following components (part of mobile top assembly): Qty Description IPMN Part Number 1 Cable, Power Extension 502-82020-53 2 ‘L’ Brackets 50026749 2 Screws Skt Cap Button Head 10-32 X 5/8 37081032-10 6 Washers Split Lock #10 271-0062-010 2 Washers Fender 1” O.D. X .28 I.D. X .05 THK 271-0059-001 4 Washers Rubber 1” O.D. X .65 I.D. X .12 THK 36040001 2 Hoses, Rubber Black .380 O.D. X .191 I.D. X .3 34010295 4 Screws Self-Tapping #10 X 5/8 37040010-10 0 Installation Manual 516-80307 0 Technical Manual 516-82025 PL502-80208-51 - INSTALLATION KIT – The following components are required for an INVADR Mobile Radio Installation and are available for purchase through IPMobileNet, Inc. Qty Description IPMN Part Number 1 EMI Filter 127-0020-001 1 Timer, 2 hours 150-0127-001 1 Relay 128-0117-001 1 Relay Socket 128-0116-001 2 Butt Connectors #8 AWG 120-0256-001 1 Terminal, Ring #8 AWG, #10 Screw Insulated 120-0127-001 4 Terminal, Ring #18-22 AWG, #10 Screws Insulated 120-0250-004 4 Terminal, Ring #10-12 AWG, #10 Screws Insulated 120-0250-005 4 Terminal, Disconnect #14-16 F 120-0244-002 18 Terminal, Disconnect #10-12 F 120-0244-003 2 Disconnect Tab, Quad Male 200-1377-001 1 Wire, 12 AWG Black, order 5 ft. 156-0242-001 1 Wire, 12 AWG Red, order 44 ft. 156-0242-003 1 Fuse, 30 AMPS ATO 122-0042-001 1 Fuse Holder, 30 AMPS 120-0253-001 1 Switch, Toggle DPST 144-0136-001 1 Diagram, Mobile Installation without VIU 502-80259 1 Diagram, Mobile Installation with VIU 502-80260 1 Diagram, Mobile Installation with Data 911 and VIU 502-80306 ~\Technical Documentation\Install_Guides\MR-Guide\28-Jun-01 Page 3 of 14 OPTIONAL INSTALLATION SUPPLIES – Order each item individually: Qty Description IPMN Part Number 1 Serial Cable (DB9MF), 20 ft. 156-0245-020 1 Wire, 8 (133/29) AWG VW-1 Red, by foot, order 19.5 ft. 156-0243-003 1 Wire, 8 (133/29) AWG VW-1 Black, by foot, order 19.5 ft. 156-0243-001 2 RG58U Cable and Mount, VHF, 17 ft. (incl ¾” Brass Mount and N Male Crimp) 102-0200-001 2 RG8X Cable and Mount, UHF & 800 MHz, 17 ft. (incl ¾“ Brass Mount & N Male Crimp) 102-0200-002 2 Antenna, Radome Type, 142-164 MHz, Unity Gain (requires 1 MB8UN for ea antenna) 102-0205-001 2 Antenna, Radome Type, 150-174 MHz, Unity Gain (requires 1 MB8UN for ea antenna) 102-0205-002 2 Antenna, Radome Type, 410-430 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0206-001 2 Antenna, Radome Type, 430-450 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0206-002 2 Antenna, Radome Type, 450-470 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0206-003 2 Antenna, Radome Type, 470-490 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0206-004 2 Antenna, Radome type, 806-866 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0207-001 2 Antenna, Radome Type 821-896 MHz, 3dB Gain (requires 1 MB8XN for ea antenna) 102-0207-002 2 Antenna, 5/8 Wav…
Text truncated - open the document above for the full version.
FCC Review Person, 1. There were a few changes that needed to be made after the upload: 2. Our client has requested confidentiality after the application was uploaded. Per section 0.457(d)(2) pertaining to confidential material, IP Mobilenet would like the following documents regarding this submission for FCC ID: M17-IPMNIP1 to be kept confidential: Schematics The above material contains trade secrets or technical data, which would customarily be guarded from competitors. IP Mobilenet does not want this document to be accessible to the general public. A separate confidentiality letter has been uploaded. 3. The schematics were included in the manual so in order to declare the schematics as confidential the manual was revised by removing the schematics. Please refer to the revised manual. 4. While looking at the schematics it was discovered that the schematics uploaded should have had 14 pages. Page 1 of 14 was missing and the file starts with 2 of 14. A revised schematics file has been uploaded to include all 14 pages. 5. A revised CKC Test Report, FC01-064A was uploaded. Please use the addendum A report instead of FC01-064. So sorry for the confusion. Hopefully this will help guide you to the correct files to use. Joyce Walker CKC Laboratories, Inc. Agent for IP Mobilenet
INVADR IP1 HPV Data Transceiver FCC Label Placement INVADR IP1 HPV Data Transceiver FCC Label
COMMUNICATION SEMICONDUCTORS MX919B DATA BULLETIN 4-Level FSK Modem Data Pump ©2001 MX•COM, INC. www.mxcom.com Tele: 800 638 5577 336 744 5050 Fax: 336 744 5054 Doc. # 20480170.003 4800 Bethania Station Road, Winston-Salem, NC 27105-1201 USA All trademarks and service marks are held by their respective companies. PRELIMINARY INFORMATION Features Applications • 4-Level Root Raised Cosine FSK Modulation • Half Duplex, 4800 to 19.2kbps • Increase Channel Bit Rate/Hz • Full Data Packet Framing • Impulse and NRZ Signal Modes • Enhanced Performance in Noisy Conditions • Error Detection and Error Correction • Low Power 3.3V/5.0V Operation • Wireless Data Terminals • Two Way Paging Systems • Digital Radio Systems • Wide Area Wireless Data Broadcasts • Point to Point Wireless Data Links MODEM DATA PUMP MX919B ANALOG TX DATA AND CONTROL BUS ANALOG RX RF RADIO DISCRIMINATOR MODULATOR SYSTEM APPLICATION PROCESSING HOST Cμ The MX919B is a low voltage CMOS device containing all of the baseband signal processing and Medium Access Control (MAC) protocol functions required for a high performance 4-level FSK Wireless Packet Data Modem. It interfaces with the modem host μC and the radio modulation/demodulation circuits to deliver reliable two-way transfer of the application data over a wireless link. The MX919B assembles application data received from the host μC, adds forward error correction (FEC) and error detection (CRC) information, and interleaves the result for burst-error protection. After automatically adding symbol and frame sync codewords, the data packet is converted into filtered 4-level analog signals for modulating the radio transmitter. In receive mode, the MX919B performs the reverse function using the analog signals from the receiver discriminator. After error correction and removal of the packet overhead, the recovered application data is supplied to the host μC. CRC detected residual uncorrected data errors will be flagged. A readout of the SNR value during receipt of a packet is also provided. The MX919B uses data block sizes and FEC/CRC suitable for applications where high-speed transfer of data over narrow-band wireless links is required. The device is programmable to operate at standard bit rates from a wide range of Xtal/clock frequencies. The MX919B may be used with a 3.0V to 5.5V power supply and is available in the following package styles: 24-pin SSOP (MX919BDS), 24-pin SOIC (MX919BDW), 24-pin PLCC (MX919BLH), and 24-pin PDIP (MX919BP). 4-Level FSK Modem Data Pump Page 2 of 47 MX919B PRELIMINARY INFORMATION ©2001 MX•COM, INC. www.mxcom.com Tele: 800 638 5577 336 744 5050 Fax: 336 744 5054 Doc. # 20480170.003 4800 Bethania Station Road, Winston-Salem, NC 27105-1201 USA All trademarks and service marks are held by their respective companies. CONTENTS Section Page 1. Block Diagram ............................................................................................................... 6 2. Signal List ...................................................................................................................... 7 3. External Components ................................................................................................... 8 4. General Description ...................................................................................................... 9 4.1 Description of Blocks ......................................................................................................... 9 4.1.1 Data Bus Buffers..................................................................................................................... 9 4.1.2 Address and R/W Decode ...................................................................................................... 9 4.1.3 Status and Data Quality Registers.......................................................................................... 9 4.1.4 Command, Mode, and Control Registers ............................................................................... 9 4.1.5 Data Buffer.............................................................................................................................. 9 4.1.6 CRC Generator/Checker ........................................................................................................ 9 4.1.7 FEC Generator/Checker ......................................................................................................... 9 4.1.8 Interleave/De-Interleave Buffer............................................................................................... 9 4.1.9 Frame Sync Detect ................................................................................................................. 9 4.1.10 Rx Input Amp ........................................................................................................................ 10 4.1.11 RRC Low Pass Filter ............................................................................................................10 4.1.12 Tx Output Buffer.................................................................................................................... 11 4.1.13 Rx Level/Clock Extraction ..................................................................................................... 12 4.1.14 Clock Oscillator and Dividers................................................................................................ 12 4.2 Modem - μC Interaction ................................................................................................... 12 4.3 Binary to Symbol Translation ........................................................................................... 13 4.4 Frame Structure............................................................................................................... 14 4.5 The Programmer’s View................................................................................................... 15 4.5.1 Data Block Buffer ........................................................…
Text truncated - open the document above for the full version.
5473A Clouds Rest Road : Mariposa, CA 95338 : Phone 209-966-5420 : Fax 209-742-6133 Maximum Permissible Exposure Calculations Date of Report: October 17, 2001 Calculations prepared for: IP Mobile Net 11909 East Telegraph Road Santa Fe Springs, CA 90670 Calculations prepared by: Dustin Oaks CKC Laboratories, Inc. 5473A Clouds Rest Road Mariposa, CA 95338 Model Number:IP1 FCC Identification:MI7-IPMNIP1 Fundamental Operating Frequency:150MHz - 156MHz Maximum Rated Output Power:60.00 Watts Measured Output Power:60.25 Watts Power Output and Operating Frequency Information used for these calculations were from: CKC Laboratories, Test Report # FC01-064A MPE Limit in accordance with 1.1310(b): Limits for general population/uncontrolled exposure MPE Limit = 0.2mW/cm 2 or 27.5V/M Power Output (Watts) Distance (Meters) V/MPower Density (mW/cm 2 ) Result 60.252.021.2580.1198PASS 60.251.626.5730.1873PASS Power Density (W/M 2 ) = (30 * P t * G) / (d 2 * Zo) P t = Power Delivered to the Antenna G = Antenna Gain d = Distance in meters Zo = Impedance of Free Space Under normal operating conditions, the antenna is designed to maintain a separation distance of 2 meters from all persons. As can be seen from the MPE results, this device passes the limits specified in 1.1310 at a distance of 1.6 Meters and at the measured output power of 60.25 Watts.
5473A Clouds Rest Road : Mariposa, CA 95338 : Phone 209-966-5420 : Fax 209-742-6133 Maximum Permissible Exposure Calculations Date of Report: January 9, 2002 Calculations prepared for: IP Mobile Net 11909 East Telegraph Road Santa Fe Springs, CA 90670 Calculations prepared by: Dustin Oaks CKC Laboratories, Inc. 5473A Clouds Rest Road Mariposa, CA 95338 Model Number:IP1 FCC Identification:MI7-IPMNIP1 Fundamental Operating Frequency:150MHz - 156MHz Maximum Rated Output Power:60.00 Watts Measured Output Power:60.25 Watts Power Output and Operating Frequency Information used for these calculations were from: CKC Laboratories, Test Report # FC01-064A In accordance with 47CFR2.1093(d)(2), source based time averaging is allowed for this type of device: Source Based Time Averaging = 20LOG(ON time/TOTAL time) = 20LOG(372mS/992mS) = -8.6dB Therefore the Power Output = 47.8dBm (60.25W) - 8.6dB = 39.2dBm ( 8.32W ) MPE Limit in accordance with 1.1310(b): Limits for general population/uncontrolled exposure MPE Limit = 0.2mW/cm 2 or 27.5V/M Power Output (Watts) Distance (Meters) Power Density (mW/cm 2 ) Result 8.321.00.0662PASS 8.320.60.1839PASS Power Density (W/M 2 ) = (30 * P t * G) / (d 2 * Zo) P t = Power Delivered to the AntennaG = Antenna Gain d = Distance in metersZo = Impedance of Free Space The typical vehicle used by police was measured, and a separation distance of 1 meter was found to be an appropriate distance. Under normal operating conditions, the antenna will maintain a separation of 1 meter from all persons. As can be seen from the MPE results, this device passes the limits specified in 1.1310 at a distance of 0.6 Meters ( 23.5 Inches).
5473A Clouds Rest Road : Mariposa, CA 95338 : Phone 209-966-5420 : Fax 209-742-6133 Maximum Permissible Exposure Calculations Date of Report: January 9, 2002 Calculations prepared for: IP Mobile Net 11909 East Telegraph Road Santa Fe Springs, CA 90670 Calculations prepared by: Dustin Oaks CKC Laboratories, Inc. 5473A Clouds Rest Road Mariposa, CA 95338 Model Number:IP1 FCC Identification:MI7-IPMNIP1 Fundamental Operating Frequency:150MHz - 156MHz Maximum Rated Output Power:60.00 Watts Measured Output Power:60.25 Watts Power Output and Operating Frequency Information used for these calculations were from: CKC Laboratories, Test Report # FC01-064A In accordance with 47CFR2.1093(d)(2), source based time averaging is allowed for this type of device: Source Based Time Averaging = 20LOG(ON time/TOTAL time) = 20LOG(389mS/(389+310 = 699mS) = -5.09dB Therefore the Power Output = 47.8dBm (60.25W) - 5.09dB = 42.71dBm ( 18.66W ) MPE Limit in accordance with 1.1310(b): Limits for general population/uncontrolled exposure MPE Limit = 0.2mW/cm 2 or 27.5V/M Power Output (Watts) Distance (Meters) Power Density (mW/cm 2 ) Result 18.661.00.1485PASS 18.660.870.1962PASS Power Density (W/M 2 ) = (30 * P t * G) / (d 2 * Zo) P t = Power Delivered to the AntennaG = Antenna Gain d = Distance in metersZo = Impedance of Free Space The typical vehicle used by police was measured, and a separation distance of 1 meter was found to be an appropriate distance. Under normal operating conditions, the antenna will maintain a separation of 1 meter from all persons. As can be seen from the MPE results, this device passes the limits specified in 1.1310 at a distance of 0.87 Meters ( 34.25 Inches).
IP MobileNet transmit timing The IP MobileNet system utilizes TDMA to transmit voice packets and slotted Aloha for data transmission. Voice slots are 248 ms long and repeat at 992 ms intervals. Mobiles are allowed to use only one voice slot at a time. Data time slots are 62 ms long and the number of slots varies by the size of the data packet. Over the air data rate is 19.2 kbps on 25 KHz channels. In addition to payload data, CRC bits and FEC bits are added to all packets that are actually transmitted. The data is also interleaved for improved transmission reliability. IP MobileNet commissioned a study, done by an independent consultant, that predicted communications reliability for various channel loading scenarios. That study predicted the First Time Data Success Probability and Expected Delay Until Transmission Successful based on the number of voice time slots occupied. Average expected data payload was 57.4 bytes, requiring 94 ms of transmit time. It is possible, under unusual circumstances, for the mobile to upload large data files. These transmissions are not typical, because reliable communications cannot be supported if transmissions of this length are allowed. The worst-case mobile transmission time is limited to 389 ms. The limit of 389 ms is achieved by placing an MTU limit of 576 bytes on the associated PC using the system for communications. If a large amount of data were to uploaded from the mobile computer, the data would be broken down into packets that would require 389 ms to transmit. After the full packet is received by the base station, the data is de-interleaved, CRC and FEC codes are removed and the data is sent over an RS 232 serial link at 115.2 kbps to an IPNC (internet protocol network controller) for routing to the server application. After the server application receives the data, it will send an acknowledgement back to the IPNC confirming that the data was received properly. The IPNC routes the acknowledgement back to the base station over the RS 232 link. When the base station receives the acknowledgement, it will be placed in cue for transmission in the next available time slot. Acknowledgements require 1 data time slot to transmit. The turn around time required from receiving a packet to the completion of the acknowledgement transmission is 5 data time slots or 310 ms. After the acknowledgement is received, the next packet can be uploaded. Therefore the worst case duty cycle of the mobile is 389 ms on and 310 ms off, or transmission 53.4% of the time.
Page 1 of 54 Report No.: FC01-064A IP MOBILENET, INC. ADDENDUM TO FC01-064 FOR THE VHF LAND MOBILE TRANSCEIVER, IP1 FCC PART 90 SUBPART I AND FCC PART 15 SUBPART B SECTIONS 15.109 CLASS B & 15.111 COMPLIANCE DATE OF ISSUE: OCTOBER 15, 2001 PREPARED FOR: IP MobileNet, Inc. 11909 E. Telegraph Rd. Santa Fe Springs, CA 90670 PREPARED BY: Joyce Walker CKC Laboratories, Inc. 5473A Clouds Rest Mariposa, CA 95338 P.O. No.: 001286-00 W.O. No.: 77374 Date of test: August 7-28 and October 3, 2001 Report No.: FC01-064A This report contains a total of 54 pages and may be reproduced in full only. Partial reproduction may only be done with the written consent of CKC Laboratories, Inc. Page 2 of 54 Report No.: FC01-064A TABLE OF CONTENTS Administrative Information ............................................................................................. 3 Summary of Results......................................................................................................... 4 Modifications Required for Compliance ......................................................................... 4 Approvals......................................................................................................................... 4 Equipment Under Test (EUT) Description...................................................................... 5 Equipment Under Test..................................................................................................... 5 Peripheral Devices ........................................................................................................... 5 2.1033(c)(3) User’s Manual ............................................................................................ 6 2.1033(c)(4) Type of Emissions ...................................................................................... 6 2.1033(c)(5) Frequency Range ........................................................................................ 6 2.1033(c)(6) Operating Power ......................................................................................... 6 2.1033(c)(7) Maximum Power Rating............................................................................. 6 2.1033(c)(8) DC Voltages ............................................................................................... 6 2.1033(c)(9) Tune-Up Procedure .................................................................................... 6 2.1033(c)(10) Schematics and Circuitry Description ...................................................... 6 2.1033(c)(11) Label and Placement................................................................................. 7 2.1033(c)(12) Submittal Photos....................................................................................... 7 2.1033(c)(13) Modulation Information ........................................................................... 7 2.1033(c)(14)/2.1046/90.205(d) - RF Power Output...................................................... 8 2.1033(c)(14)/2.1047(b) - Modulation Characteristics - Audio Frequency Response........ 10 2.1033(c)(14)/2.1047(b) - Modulation Characteristics - Modulation Limiting Response .. 10 2.1033(c)(14)/2.1049(i)/90.209 & 90.210(c) - Occupied Bandwidth ............................. 11 2.1033(c)(14)/2.1051/90.210(c) - Spurious Emissions at Antenna Terminal ................. 18 2.1033(…
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90 | 150 MHz - 174 MHz | 60.25 W | 20K0F1D | 680.0000000000 Hz |

700/800 MHz 32k Fixed Radio
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
EzPro P-25 Base Station radio/repeater
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Base Station for Mobile Data System
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
High Speed Mobile Radio
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
High Speed Mobile Radio
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter