
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
516.80548.POM_REVA_Product_Owner's_Manual_M64780D25_FCCRpt.doc Page 1 of 44 ECN-5277 I I P P S S e e r r i i e e s s M M 6 6 4 4 7 7 8 8 0 0 D D 2 2 5 5 H H i i g g h h S S p p e e e e d d M M o o b b i i l l e e R R a a d d i i o o ( ( 7 7 9 9 4 4 t t o o 8 8 0 0 6 6 ) ) ( ( 8 8 0 0 6 6 t t o o 8 8 2 2 4 4 ) ) P P r r o o d d u u c c t t O O w w n n e e r r ’ ’ s s M M a a n n u u a a l l Date Released: February 22, 2007 Document #: 516.80548.POM Revision: A Copyright 2007 IPMobileNet, Inc. 16842 Von Karman Avenue, Suite 200 Irvine, CA 92606 Voice: (949) 417-4590 Fax: (949) 417-4591 516.80548.POM_REVA_Product_Owner's_Manual_M64780D25_FCCRpt.doc Page 2 of 44 ECN-5277 The term “IC”: before the radio certification number only signifies that Industry of Canada technical specifications were met. Operation is subject to the following two (2) conditions: (1) this devise may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of this device. The following U.S. Patents apply to this product: U.S. Patent numbers 5,640,695,6,018,647,6,243,393 Information contained in this document is subject to change without notice. All rights reserved. Reproductions, adaptations, or translation without prior written permission is prohibited, except as allowed under copyright laws. 516.80548.POM_REVA_Product_Owner's_Manual_M64780D25_FCCRpt.doc Page 3 of 44 ECN-5277 SECTION 1: OVERVIEW.......................................................................................................................... 3 Product Description.................................................................................................................... 3 M64780D25 Mobile Radio Section Descriptions...................................................................... 3 External Features........................................................................................................................ 4 SECTION 2: SETUP AND CONFIGURATION METHODS..................................................................... 5 High Speed Mobile Radio Setup Scenarios.............................................................................. 5 Mobile Radio-to-Mobile Computer Setup ......................................................................... 5 Mobile Radio-to-VIU-to-Mobile Computer Setup ............................................................. 6 SECTION 3: INSTALLATION INSTRUCITONS...................................................................................... 7 Installation Overview.................................................................................................................. 7 Installation Instructions.............................................................................................................. 9 Pre-Installation Guidelines ............................................................................................... 9 Mounting the High Speed Mobile Radio ........................................................................ 10 Serial Cable Connection and Routing ............................................................................ 11 Ethernet Setup ............................................................................................................... 11 Delay Timer Installation ................................................................................................. 11 Carling Switch Installation (DPST Heavy Duty Toggle) ................................................. 13 Mobile Radio Power Supply Installation ......................................................................... 14 Antenna Configuration ................................................................................................... 15 Measuring Return Loss ................................................................................... 16 Measuring Voltage Standing Wave Ratio ....................................................... 16 Measuring Insertion Loss ................................................................................ 17 Voice Interface Unit Connections ................................................................................... 17 Post Installation Checklist .............................................................................................. 19 Mobile Installation Layout Diagrams...................................................................................... 20 Preliminary Testing and Troubleshooting.............................................................................. 22 Checklist of Requirement Materials ............................................................................... 22 Base Station Setup for Testing ...................................................................................... 23 Preliminary Test Procedure and Troubleshooting................................................................ 24 Confirming High Speed Mobile Radio Receiver Sensitivity ........................................... 27 SECTION 4: FACTORY TEST PROCEDURE....................................................................................... 28 Equipment List ......................................................................................................................... 28 Programming and Configuring Mobile Radio........................................................................ 29 Adjustment / Alignment Procedures....................................................................................... 30 Receiver Injection ........................................................................................................... 30 Receiver 1 ...................................................................................................................... 30 Receiver 2 ...................................................................................................................... 30 Transmit Data .........................…
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Crystal LAN TM Ethernet Controller 1 Cirrus Logic, Inc.Copyright © Cirrus Logic, Inc. 2000 P.O. Box 17847, Austin, Texas 78760(All Rights Reserved) (512) 445 7222 FAX: (512) 445 7851 http://www.cirrus.com CS8900A OVERVIEW FEATURES •Single-Chip IEEE 802.3 Ethernet Controller •Maximum Current Consumption = 55 mA (5V Supply) •3 V Operation •Industrial Temperature Range •Comprehensive Suite of Software Drivers Available •Efficient PacketPage™ Architecture Operates in I/O and Memory Space and as DMA Slave •Direct Bus Interface •Full Duplex Operation •On-Chip RAM Buffers Transmit and Receive Frames •10BASE-T Port with Analog Filters, Provides: — Automatic Polarity Detection and Correction • AUI Port for 10BASE2, 10BASE5, and 10BASE-F •Programmable Transmit Features: — Automatic Re-transmission on Collision — Automatic Padding and CRC Generation The CS8900A is a true single-chip, full-duplex, Ethernet solution, incorporating all of the analog and digital circuitry needed for a complete Ethernet circuit. Major functional blocks include: a direct bus interface; an 802.3 MAC engine; integrated buffer memory; a serial EEPROM interface; and a com- plete analog front end with both 10BASE-T and AUI. The CS8900A is a low-cost Ethernet LAN Control- ler optimized for embedded applications and Per- Functional Block Diagram EEPROM RJ-45 10BASE- T Attachment Unit Interface (AUI) 20 MHz XTA L RAM Bus Logic Memory Manager 802.3 MAC Engine EEPROM Control Encoder/ Decoder & PL L 10BASE-T RX Filters & Receiver 10BASE-T TX Filters & Transmitter AUI Transmitter AUI Collision AUI Receive r Cloc k Power Manage r Boundary Scan Test Logic LED Contro l CS8900A Ethernet Controller Bus (cont.)(cont.) NOV ‘01 PI271PP2 Product Bulletin CS8900A Crystal LAN TM Ethernet Controller 2PI271PP2 OVERVIEW(Continued from Page 1) sonal Computers. Its highly-integrated design eliminates the need for costly external components required by other Ethernet controllers. The CS8900A includes on-chip RAM, 10BASE-T trans- mit and receive filters, and a direct Bus interface with 24 mA Drivers. In addition to high integration, the CS8900A offers a broad range of performance features and config- uration options. Its unique PacketPage architec- ture automatically adapts to changing network traffic patterns and available system resources. The result is increased system efficiency. The CS8900A is available in a 100-pin TQFP package ideally suited for small form-factor, cost-sensitive Ethernet applications. With the CS8900A, system engineers can design a complete Ethernet circuit that occupies less than 1.5 square inches (10 sq. cm)ofboardspace. Contacting Cirrus Logic Support For a complete listing of Direct Sales, Distributor, and Sales Representative contacts, visit the Cirrus Logic web site at: http://www.cirrus.com/corporate/contacts/ Preliminary product information describes products which are in production, but for which full characterization data is not yet available. Advanceproduct infor- mation describes products which are in development and subject to development changes. Cirrus Logic, Inc. has made best efforts to ensure that the information contained in this document is accurate and reliable. However, the information is subject to change without notice and is provided “AS IS” without warranty of any kind (express or implied). No responsibility is assumed by CirrusLogic, Inc. for the use of this information, nor for infringements of patents or other rights of third parties. This document is the property of Cirrus Logic, Inc. and implies no license under patents, copyrights, trademarks, or trade secrets. No part of this publi- cation may be copied, reproduced, stored in a retrieval system, or transmitted, in any form or by any means (electronic, mechanical, photographic, orotherwise) without the prior written consent of Cirrus Logic, Inc. Items from any Cirrus Logic website or disk may be printed for use by the user. However, no part ofthe printout or electronic files may be copied, reproduced, stored in a retrieval system, or transmitted, in any form or by any means (electronic, mechanical, photo- graphic, or otherwise) without the prior written consent of Cirrus Logic, Inc.Furthermore, no part of this publication may be used as a basis for manufacture or sale of any items without the prior written consent of Cirrus Logic, Inc. The names of products of Cirrus Logic, Inc. or other vendors and suppliers appearing in this document may be trademarks or service marks of their respective owners which may be registered in some jurisdictions. A list of Cirrus Logic, Inc.trade- marks and service marks can be found at http://www.cirrus.com. FEATURES(Continued from Page 1) •Programmable Receive Features: — Stream Transfer™ for Reduced CPU Overhead — Auto-Switch Between DMA and On-Chip Memory — Early Interrupts for Frame Pre-Processing — Automatic Rejection of Erroneous Packets • EEPROM Support for Jumperless Configuration •Boot PROM Support for Diskless Systems •Boundary Scan and Loopback Test •LED Drivers for Link Status and LAN Activity •Standby and Suspend Sleep Modes •All the most popular drivers are available, including: — LINUX —Microsoft •NDIS2DOSdriver • NDIS 2 OS/2 driver • NDIS 3 drivers for Windows NT, Windows for Work- groups, Windows 95, and Windows CE • Novell •ODI DOS driver •ODI OS/2 driver •ODI Server •Packet Driver (TCP/IP) •pSOS •Real-time OS drivers •RIPL (Remote Initial Program Load) for ODI and NDIS 2 •RTOS/NCOS (ARM and Oracle) - In development •SCO •Setup/installation Utility: EEPROG Utility (EEPROM programming utility) •UNIX •VxWorks NOTE:To inquire about additional drivers, see“Order- ing Information” on page 3 CONFIDENTIAL DRAFT CS8900A Crystal LAN TM Ethernet Controller 3PI271PP2 OVERVIEW(cont.) CONFIDENTIAL DRAFT Key Benefits Very Low Cost The CS8900A is designed to provide the lowest- cost Ethernet solution available for embedded applications, portable motherboards, and adapter cards. Cost-saving features include: •Int…
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Trimble Key Features and Benefits • 3.3 V for battery powered applications • Programmable power management • Sized for portable devices Lassen LP GPS Low power module for portable applications Trimble’s new Lassen ™ LP GPS is a low power miniature GPS receiver module that is ideal for power-conscious portable appli- cations. It is intended specifically for system designers and integra- tors who are developing the next generation of portable devices. This embedded technology gives the system developer the programming flexibility to achieve a significant reduction in power consumption. Power management The Lassen LP GPS features a new set of power management tools that puts the power budget decision in the developer’s hands. The developer now can deter- mine the best balance between operational frequency and power conservation for a particular application. In Schedule Track ™ operat- ing mode, the developer can program the unit to power up, quickly acquire satellites and out- put position to a schedule. After gathering satellite data and com- puting its location, the receiver may be directed to power down to a minimal mode of operation for a programmed interval or until awakened by a hardware interruption. Schedule Track provides hot start performance at a programmed interval or in response to a hardware event. Schedule Track mode provides an advantage over normal battery-backed fast start modes with automatic wakeup to maintain current satellite data for fastest possible acquisition. Schedule Track offers the lowest power consumption in a deep sleep mode but provides position data as quickly as possible when needed. Ease of integration Lassen LP GPS provides a choice of data protocols for maximum flexibility. The TSIP binary data protocol incorporates new power management features and provides maximum control over system operation. The TAIP and NMEA protocols are available where ASCII data is preferred. A secondary serial input port is available for RTCM SC-104 differential correction data for high accuracy applications. The Lassen LP GPS also incorporates Trimble’s antenna detection and protection circuit to monitor the condition of the antenna system. And a new high performance, miniature 3.3 V antenna is available for the Lassen LP GPS. Getting started The Starter Kit makes it easy to evaluate the Lassen LP GPS and begin development. Actual size Lassen LP GPS Low power module for portable applications PHYSICAL CHARACTERISTICS Dimensions2.605′′L×1.250′′W×0.475′′H (66.167 mm×31.750 mm×12 mm) Weight0.4 oz. (12.5 grams) ConnectorsRF:right angle MCX Power, I/O:8-pin (2×4), 2 mm header ACCESSORIES GPS antennaCompact, 3.3 V active micropatch antenna with 5-meter cable and magnetic mount. 1.65′′×1.99′′×0.55′′high (42 mm×50.5 mm×13.8 mm) ORDERING INFORMATION Module Lassen LP GPS Module, Extended Temperature, TSIP (binary) protocol, NMEA 0183 (ASCII) protocol and TAIP (ASCII) protocol, DGPS ready Antennas 3.3 V antenna, 5-meter cable with MCX connector Starter Kit Includes Lassen LP GPS module mounted on interface motherboard in a durable metal enclosure with dual DB9, RS232 interface, AC/DC power converter, magnetic-mount 3 V antenna, TSIP, NMEA and TAIP protocols, software toolkit for TSIP, interface cable and manual. Manual Lassen LP GPS Module System Designer Reference Guide © Copyright 1999, Trimble Navigation Limited. All rights reserved. The Trimble logo with Trimble is a trademark of Trimble Navi gation Limited registered in the United States Patent and Trademark Office. Lassen and Schedule Track are trademarks of Trimble Navigation Limited. All other marks are the property of their respective own ers. TID11547C (11/99) PERFORMANCE SPECIFICATIONS GeneralL1 frequency, C/A code (SPS), 8-channel, continuous tracking receiver, 32 correlators Update rateTSIP @ 1 Hz NMEA @ 1 Hz TAIP @ 1 Hz Accuracy Position 25 m CEP (50%) w/o SA Velocity0.1 m/sec without SA Time±95 nano-seconds (over-determined clock mode) DGPS accuracy Position 2 m CEP (50%) Velocity0.05 m/sec Acquisition (typical)Cold start*:< 130 seconds (90%) Warm start**:< 45 seconds (90%) Hot start***:< 20 seconds (90%) Reacquisition after signal loss< 2 seconds (90%) Dynamics Acceleration 4 g (39.2 m/sec 2 ) Motional Jerk20 m/sec 3 Operational limitsAltitude <18,000 m or velocity < 515 m/sec either limit may be exceeded but not both ENVIRONMENTAL SPECIFICATIONS Operating temp–40°C to +85°C (standard) Storage temp–55°C to +100°C Vibration0.008 g 2 /Hz5 Hz to 20 Hz 0.05 g 2 /Hz20 Hz to 100 Hz –3 dB/octave100 Hz to 900 Hz Operating humidity5% to 95% R.H. non-condensing, + 60°C Altitude–400 m to +18,000 m TECHNICAL SPECIFICATIONS Prime power+3.3 V DC, ± 0.3 V Power consumption Normal operation GPS board only: 55 mA, 0.182 W with antenna: 67 mA, 0.221 W Deep sleep8 mA, board only Backup power+3.0 to +3.6 V DC 2–5 μA at +25°C (nominal) Serial ports/1PPSCMOS TTL levels I/O ProtocolsTSIP (binary data) NMEA 0183 v2.1 (ASCII data) TAIP (ASCII data) NMEA messagesGGA, VTG, GLL, ZDA, GSA, GSV and RMC messages selectable by TSIP command; selection stored in non-volatile memory. Antenna power3.3 V at 12 mA, feedline fault detect/protect * Cold start requires no initialization ** Warm start implies last position, time and almanac are saved in battery-backed memory *** Hot start implies ephemeris also saved. All GPS receivers are subject to degradation of position and velocity accuracies under Department of Defense imposed Selective Availability (SA). Visit our website at www.trimble.com/oem Specifications subject to change without notice. Trimble Navigation Limited Corporate Headquarters 645 North Mary Avenue Sunnyvale, CA 94086 +1-408-481-8940 +1-408-481-7744 Fax www.trimble.com Trimble Navigation Europe Limited Trimble House Meridian Office Park Osborne Way Hook, Hampshire RG27 9HX U.K. +44 1256-760-150 +44 1256-760-148 Fax Trimble Navigation Singapore PTE Limited 79 Anson Road #05-02 Singapore 079906 SINGAPORE +65-325-5668 +65-225-9989 Fax
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 ........................................................…
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Non-Conformities FCC ID : MI7-M64780D25 (CKC CS Ref # E07-000013-01) The items listed below represent requests for information following review of this application for certification under United S tates (FCC) regulations. . Further question may arise pending review of responses to these items. OK # Non-Conformity or Co mment Submitted Response Respondent / Date of Response X 1 Please supply the dc voltages applied to and dc currents into the several elements of the final radio frequency amplifying device for normal operation over the power range provided Additional information provided in operational description exhibits CKC Labs 5/1/07 X 2 FCC 15.209 data is supplied in the report; this rule part is not applicable to licensed equipment. Please expl ain the purpose of this data. Updated test report provided CKC Labs 5/1/07 X 3 Please provide updated internal phot os with sufficient detail to identify component placement. Updated internal photos provided. CKC Labs 5/1/07 X 4 90.543(c) emissions appear to have been met, however 90.543(e) emissions do not appear to have been met. Please provide data demonstrating compliance to 90.543(e) as noted, an antenna of typical use must be used during testing. : ”(e) For operations in the 764 to 776 MHz and 794 to 806 MHz bands, all emissions including harmonics in the band 1559-1610 MHz shall be limited to -70 dBW/MHz equivalent isotropically radiated power (EIRP) for wideband signals, and -80 dBW EIRP for discrete emissions of less than 700 Hz bandwidth. For the purpose of equipment authorization, a transmitter shall be tested with an antenna that is representative of the type that will be used with the equipment in normal operation.” Updated test report provided demonstrating compliance with this rule part. CKC Labs 5/1/07 X 5 Please clarify which ACCP requirements have been tested: test report does not state the mask used Updated test report provided. CKC Labs 5/1/07 X 6 ACCP test of upper frequency offset on page 53 indicates failing data. Please explain. Updated test report provided. CKC Labs 5/1/07 Xx 7 Each test for ACCP appears to have duplicated plots for each frequency tested. Please explain the purpose of these plots. Plots provided are for upper and lower frequency offsets CKC Labs 5/1/07 X 8 ACCP requirements for Receive band are unclear: Pages 69-74 seem to indicate testing was performed, however demonstration of compliance was not provided. Please clarify. Two plots per channel were made due to limitations of dynamic range on the measuring equipment. One plot for each channel shows the fundamental transmission and one plot for each CKC Labs 5/1/07 channel shows the paired receive band. The delta between the two gives the passing ACCP reading. X 9 Power output listed on form 731 should be that of the nominal temperature. Please confirm correct power output rating. Should list 23.7 Watts, per test lab. CKC Labs 5/1/07 X 10 Please confirm compliance with intero perability requirements of 90.547(a)(2) and that device meets interoperability technical standards as listed in 90.548. Excerpt of 90.547“(a) Except as noted in this section, mobile and portable transmitters operating on narrowband channels in the 764-776 MHz and 794-806 MHz frequency bands must be capable of operating on all of the designated nationwide narrowband Interoperability channels pursuant to the standards specified in this part. (2) Mobile and portable transmitters that are designed to operate only in the data mode must be capable of operation on the data Interoperability channels specified in §90.531(b)(1)(i); but need not be capable of voice operation on other Interoperability channels” “ The radio is capable of operating on the Data Interoperability channels.” CKC Labs 5/1/07 x 11 MPE Calculations provided for 794-806MHz frequency band are inadequate. Calculations must be provided in EIRP, not conducted measurement. Additionally, this device operates on 806-824 SMR frequency bands which require RF exposure evaluation for power output above 1.5 Watts ERP (ref 2.1091) RF Exposure report from previous certification may be used, if maximum antenna gain and power output are the same. Antenna gain used for previous report is 3dBi. – Please clarify max antenna gain for use with M64780D25 CKC Notes power output for M64800D25 was 23.8, power output for M64780D25 us 23.7 Watts. RF Exposure information updated CKC Labs 5/2/07 X 12 Please provide manufacturers statement in the form of a cover letter regarding the equivalency of the M64800D25 and M64780D25 in order to justify use of reports from the M64800D25 with this application filing. Please provide detailed description of the differences in the products (this description may be held in the operational descriptions exhibit type if it contains confidential information).. Statement provided. CKC Labs 5/1/07
M64780D25-Top M64780D25-Bottom M64780D25-Side M64780D25-Connectors-1 M64780D25-Connectors-2
M64780D25_Internal-1 M64780D25_Internal-2 new M64780D25_Internal-2 M64780D25-Internal-2
SECTION 4: FACTORY TEST PROCEDURE 516.80548.POM_REVA_Product_Owner's_Manual_M64780D25_FCCRpt.doc Page 29 of 44 ECN-5277 44 Equipment List The following table lists the equipment required to perform the M64780D25 Mobile Radio Factory Test Procedure: TABLE 10: EQUIPMENT REQUIRED TO PEREFORM FACTORY TEST PROCEDURE QTY DESCRIPTION MANUFACTURER MODEL 2 PC’s One for Mobile One for Base Windows 9X w/ IPMessage AVR 1 Service Monitor – Communication Test Set HP HP8920B or equivalent 1 Digital multi-meter Tektronix Fluke 77 or equivalent 1 DC power supply w/ ammeter, 13.8V, 23 Amps or more Astron RM35A 1 4-Channel Scope Tektronix TDS 460A 1 M64780D25 Mobile Radio 1 B32800N25 Calibrated Base Station 1 Internet Protocol Network Controller (IPNC) 1 100 watt dummy load/attenuator Pasternack PE7021-40 or equivalent 2 UHF Antennas (generic mag mount) 1 Serial cable DB9M-DB9F connectors IPMN p/n: 156-0245-020 1 IP power cable IPMN p/n: 502-82017-52 1 3-foot RF jumper cable with…
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5046 Sierra Pines Dr. · Mariposa, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90,90 | 794 MHz - 824 MHz | 23.7 W | 20K0F1D | 1.2000000000 ppm |

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