
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
MDCMR-Guide.doc\4-Sep-03 Page 1 of 20 INSTALLATION GUIDE Mobile Data Computer for Communication with the IPSeries Mobile Radio INSTALLATION GUIDE CONTENTS: Section Title Page MDC-to-Mobile Radio Illustration ............................................. 2 Installation Requirements......................................................... 2 SLIP2IPMN Dial-up Installation ................................................ 3 Modem Settings ....................................................................... 6 SLIP2IPMN Dial-up Settings for Win 98/Me............................. 7 Creating a SLIP2IPMN Shortcut for Win 98/Me ....................... 9 SLIP2IPMN Dial-up Settings for Win 2000............................. 10 SLIP2IPMN Dial-up Settings for Win NT................................ 13 Creating a SLIP2IPMN Shortcut for Win NT .......................... 15 SLIP2IPMN Dial-up Settings for Win XP ................................ 16 MDC-To-Radio Connection and Settings ............................... 17 DHCP Setting for IPMN Mobile Radio without Ethernet Port. 17 Mobile Radio-to-VIU-to-MDC Illustration ................................ 19 Mobile Radio-to-VIU-to-MDC Connection .............................. 19 VIU Address Programming..................................................... 20 IPMN p/n: 516.80310.IG Version: A 16842 Von Karman Avenue, Suite 200, Irvine, CA 92606 Voice: (949) 417-4590 Fax: (949) 417-4591 Copyright 2001-2003 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 information within this document may be incorporated into future releases. MDCMR-Guide.doc\4-Sep-03 Page 2 of 20 Mobile Data Computer-to-Mobile Radio Illustration Installation Requirements Mobile Radio-to-MDC • MDC (Mobile Data Computer) with an available serial communication port and Windows 98 tm or greater installed • IPMobileNet (IPMN) IPSeries Mobile Radio • 20-foot serial cable DB9F – DB9M (BlackBox p/n: EDN12J-0020-MF) to connect MDC to the mobile radio • IPMobileNet Radio SLIP Port Driver Installation diskette (SLIP2IPMN.exe) • IPNC (Internet Protocol Network Controller) VoiceServer Address Mobile Radio-to-VIU-to-MDC (Refer to illustration and instructions on pages 18-19) In addition to the above, the following components will be required for adding a Voice Interface Unit (VIU) to the configuration: • VIU (Voice Interface Unit) • 10-foot serial cable DB9F – DB9M (BlackBox p/n: EDN12J-0010-MF) to connect VIU to the mobile radio (included) NOTE: IP Addressing is site-dependent. MDCMR-Guide.doc\4-Sep-03 Page 3 of 20 SLIP2IPMN Dial-up Network Connection Installation This section provides step-by-step instructions on how to install the IPMN Radio SLIP Port Driver onto the MDC for connection to an IPMN IPSeries Mobile Radio. This setup will also facilitate adding a VIU to the configuration. It will also provide instructions on configuration and settings for the SLIP port to function properly. NOTE : The screens shown were captured using Windows 98 tm . Differences between Windows versions will be noted. Step 1 At the computer desktop, double click on the MyComputer icon. Step 2 Insert the IPMN Radio SLIP Port Driver Installation diskette labeled SLIP2IPMN.exe in the floppy drive. Step 3 Double click on the A:\ drive. Step 4 Double click on the SLIP2IPMN file. Step 5 At the WinZip Self-Extractor window, click on the U nzip button to begin the unzip process. NOTE : The zipped file will self-extract and install the radio port driver files on the MDC. Step 6 Click on the OK button after self-extraction is complete. Step 7 Click on the C lose button to continue. Step 8 Close the A:\ drive folder by clicking on the ⌧ at the top right-hand corner of the window. 6 file(s) unzipped successfully SLIP2IPMN MDCMR-Guide.doc\4-Sep-03 Page 4 of 20 Step 9 At the desktop click on the Start button, select Settings, and C ontrol Panel. Step 10 Double click on the Modems icon. For Windows 2000 & XP, click on the Phone and Modem Options icon. Step 11 In the Modem Properties window, under the General tab, click on the A dd... button to add a modem. For Windows 2000 & XP, on the Phone and Modem Options window, under the Modems tab, click on the Add... button. For Windows Me, 2000, XP & NT , skip to Step 13 on this page. Step 12 On the Install New Modem window, select O ther, then click on the Next > button. Step 13 On the next Install New Modem window, select D on't detect my modem, then click on the Next> button. Step 14 On the next Install New Modem window, click on the H ave Disk... button. Dial-Up Networking Parallel Cable between 2 PCs Dial-Up Networking Serial Cable between 2 PCs Standard 300 bps Modem Standard 1200 bps Modem Standard 2400 bps Modem Standard 9600 bps Modem Standard 14400 bps Modem MDCMR-Guide.doc\4-Sep-03 Page 5 of 20 Step 15 On the Install From Disk window, click on the Browse... button. Step 16 In the Open window, select the following path: C:\Program Files\IPMobileNet Click on the NullModemFast.inf file, then click on the OK button (or in some cases the Open button). Step 17 On the Install From Disk window, click on the OK button. Step 18 On the Install New Modem window (or in some cases Add New Hardware Wizard window), click on the Next> button to continue. Step 19 On the next Install New Modem window, under Select the port to use with this modem: select Communication Port (COM1) or the next available COM port, then click on the Next> button. For Windows 2000 & XP , a Digital Signature message may display. Click on the Yes button to continue. Step 20 On the next Install New Modem window, once install is complete, click on the Finish button. Step 21 On the Modems Properties window, under the General tab, under The following modems are set up on the computer: select IPMob…
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I I P P S S e e r r i i e e s s M M 6 6 4 4 7 7 0 0 0 0 G G 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 ( ( 8 8 0 0 6 6 t t o o 8 8 2 2 1 1 ) ) 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: October 1, 2004 Document #: 516.80535.POM Revision: A Copyright 2004 IPMobileNet, Inc. 16842 Von Karman Avenue, Suite 200 Irvine, CA 92606 Voice: (949) 417-4590 Fax: (949) 417-4591 M64700G25-FCCRpt.doc Page ii 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. TABLE OF CONTENTS M64700G25-FCCRpt.doc Page 2 SECTION 1: OVERVIEW.......................................................................................................................... 3 Product Description.................................................................................................................... 3 M64700G25 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 ................................................................................................................. 31 Power Setting ................................................................................................................. 31…
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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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Response to E04-000103-1 1. The test report has been revised on page 29. 2. The frequency tolerance on the 731 form should be 0.12358 ppm. 3. The test report has been revised on pages 6 and 7. 4. A revised confidentiality letter has been uploaded. 5. The customer does not want to keep the block diagram confidential. 6. The test plan for this EUT indicates the lowest frequency used in this device is 8 MHz. Per 2.1057 that is all that is required.
SECTION 5: FCC LABEL M64700G25 Data Transceiver FCC Label Placement M64700G25 Data Transceiver FCC Label SECTION 5: FCC LABEL
Equipment List The following table lists the equipment required to perform the M64700G25 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 M64700G25 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 type N connectors (generic) 1 Scope test probe (generic, X1 attenuation) 1 Ceramic tuning tool IPMN p/n: 44010006 1 ea #0, #1, and #2 Phillips screwdrivers (generic) Programming and Configuring Mobile Radio Once the appropriate equipment for performing the factory test are gathered, perform the following steps to program and configure an M64700G25 Mobile Radio: Step 1 Enter the mobile radio serial number, date test being performed, and tester’s name on the Test Data Sheet (see Appendix B). Step 2 Program the radio to the current Firmware revision using the AVR programming utility. Step 3 Connect a PC to the radio and launch the IPMessage program. In the IPMessage window, type factory default, press [ENTER], and the radio displays the radio’s default values. Step 4 Enter the appropriate values for the radio's frequency band. The following values were used for a 806 to 821 MHz mobile radio: Adjustment / Alignment Procedures Receiver Injection Perform the following steps to adjust the receiver injection and injection frequency: Step 1 While monitoring the receiver injection frequency at RXINJ1, input the value for the DAC frequency control for minimum frequency error (+/- 100Hz). Record this value on the Test Data Sheet. Step 2 While monitoring the 44.545 MHz 2nd injection frequency at U6 pin 4, adjust trimmer capacitor CV22 for the maximum amplitude of this injection frequency. The maximum amplitude must be between -3 to -5 dBm. Record this value on the Test Data Sheet. Step 3 Repeat Step 2 by monitoring U9 pin 4 and adjusting CV20 for Receiver2 IFLO. Record this value on the Test Data Sheet. Receiver 1 Perform the following steps to adjust receiver 1: Step1 Inject an on-frequency carrier signal with amplitude of -80 dBm, modulated with a 1 kHz test tone at +/- 5.0 kHz deviation into receiver 1's antenna port. Step 2 While monitoring the voltage at RSSI1 Test Point with a DMM, adjust trimmer capacitor CV15 and C16 to midway between the points where the oscillation stops. Step 3 While monitoring the DC level of the recovered modulation; adjust potentiometer RV6 for a reading of 2.500 VDC +/- 1 mV DC. Step 4 While monitoring the amplitude of the recovered audio signal, adjust potentiometer RV5 and RV6 for a reading of 350 mV RMS and 2.500 VDC. Step 5 Steps 3 and 4 are interactive adjustments, therefore repeat steps 3 and 4 until further adjustment is no longer required (i.e. when 350 mV RMS and 2.500 VDC are realized). Step 6 While monitoring the recovered audio signal at TP1, verify the distortion is less than 3% adjust CV15 and CV16 if necessary to achieve less than 3% distortion. Record this value on the Test Data Sheet. Step 7 While monitoring the recovered audio signal at TP1, verify the SINAD is -118 dBm or better. Record this value on the Test Data Sheet. Receiver 2 Perform the following steps to adjust receiver 2: Step 1 Inject an on-frequency carrier signal with amplitude of -80 dBm, modulated with a 1 kHz test tone at +/- 5.0 kHz deviation into Receiver 2's antenna port. Step 2 While monitoring the voltage at RSSI2 Test Point with a DMM, adjust trimmer capacitor CV6 and CV7 to midway between the points where the oscillation stops. Step 3 While monitoring the DC level of the recovered modulation, adjust potentiometer RV4 for a reading of 350 mV (+/-10 mV) RMS. Step 4 While monitoring the amplitude of the recovered audio signal, adjust potentiometer RV3 for a reading of 2.500 (+/-10 mV) VDC. Step 5 Steps 3 and 4 are interactive adjustments, therefore repeat steps 3 and 4 until further adjustment is no longer required (i.e. when 350 mV RMS and 2.500 VDC are realized). Step 6 While monitoring the recovered audio signal at TP1, verify the distortion is less than 3%, adjust CV3 if necessary to achieve less than 3% distortion. Record this value on the Test Data Sheet. Step 7 While monitoring the recovered audio signal at TP1, verify the SINAD is -118 dBm or better. Record this value on the Test Data Sheet. Transmit Data Perform the following steps to adjust transmit data: Step 1 Use IPMessage to set the transmit power to 0. Step 2 Using the x=1400,n command of IPMessage to generate transmit data messages while observing the transmitted signal on the HP RF communications test set, adjust pot R33 for minimum frequency error while transmitting data messages. Step 3 Turn potentiometer RV1 fully counterclockwise. Step 4 Adjust RV2 for deviation of 4.9 kHz. Step 5 Using calibrated base station, and monitoring the uplink received data quality on the base station's Hyperterminal screen, slowly turn RV1 clockwise until consistent data quality readings of 240 - 248 are achieved using 1400 character test messages. Data quality reading should not be less than 240 for 1400 character messages. If unable to reach the data quality readings then ask for Technical Support. Poor data quality readings are indicative of poor group delay performance, or other defect. Step 6 Verify transmit deviation, frequency error, and transmitting data messages quality and record this data on the Test Data Sheet. Power Setting Perform the following steps to adjust the transmit power co…
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Page 1 of 15 Report No: FC04-081- R MPE EVALUATION REPORT FOR THE MOBILE DATA RADIO TRANSCEIVER, MODEL M64700G25 FCC OET BULLETIN 65, EDITION 97-01, ANSI / IEEE C95.1-1992, AND ANSI / IEEE C95.3-1992 RF EXPOSURE COMPLIANCE DATE OF ISSUE: DECEMBER 1, 2004 PREPARED FOR: IP MobileNet 16842 Von Karman Avenue Suite 200 Irvine, CA 92606 PREPARED BY: Stuart Yamamoto CKC Laboratories, Inc. 5473A Clouds Rest Mariposa, CA 95338 W.O. No.: 82889Date of test: November 11, 2004 Report No.: FC04-081-R This report contains a total of 15 pages and may be reproduced in full only. Partial reproduction may only be done with the written consent of CKC Laboratories, Inc. The results in this report apply only to the items tested, as identified herein. Page 2 of 15 Report No: FC04-081- R TABLE OF CONTENTS Administrative Information .............................................................................................3 Summary of Results .........................................................................................................3 Approvals .........................................................................................................................4 Equipment Under Test .....................................................................................................5 Peripheral Devices ...........................................................................................................5 Specifications and Requirements .....................................................................................6 Summary of RF Exposure Conditions .............................................................................7 Report of Measurements ..................................................................................................8 Test Configuration ...........................................................................................................9 Test Procedure .................................................................................................................9 Reference Documents ......................................................................................................13 Appendix A: Photographs of the Test Setup Used ..........................................................14 Appendix B: Test Equipment List ...................................................................................15 Page 3 of 15 Report No: FC04-081- R ADMINISTRATIVE INFORMATION PURPOSE OF TEST: To demonstrate the compliance of the Mobile Data Radio Transceiver, Model M64700G25 with the RF Exposure Requirements for mobile devices. REPRESENTATIVE: Eric Tanner SUMMARY OF RESULTS VEHICLE MOUNTED ANTENNA For General Population / Uncontrolled Exposure, the Maximum Permissible Exposure (MPE) limit for the operating frequency range (806 MHz to 821 MHz) is 0.537 mW/cm 2 . The data in this report demonstrates that this device complies with the Maximum Permissible Exposure (MPE) requirements set forth in 47 CFR §2.1091, §1.1310, and OET Bulletin 65, Edition 97-01 for General Population / Uncontrolled Exposure environment at a minimum distance of 10 cm through a ground plane from the vehicle mounted antenna (operator requirement), and for General Population / Uncontrolled Exposure environment at a minimum distance of 40 cm laterally from the vehicle mounted antenna (bystander requirement). Page 4 of 15 Report No: FC04-081- R APPROVALS Steve Behm, Director of Engineering Services QUALITY ASSURANCE:TEST PERSONNEL: Joyce Walker, Quality Assurance Administrative Manager Stuart Yamamoto, EMC Engineer Page 5 of 15 Report No: FC04-081- R EQUIPMENT UNDER TEST (EUT) Mobile Data Radio Transceiver Manuf: IP MobileNet Model: M64700G25 Serial: 04363311 FCC ID: pending Antenna Used with Magnetic Mount Manuf: Maxrad Model: (B)MFT800 Serial: NA FCC ID: NA Vehicle Magnetic Mount for Antenna Manuf: Antenex, Inc. Model: G8UNS Serial: NA FCC ID: NA PERIPHERAL DEVICES The EUT was tested with the following peripheral device(s): Laptop Computer Manuf: Dell Corporation Model: PP02L Inspiron I2500 Serial: 5TZ6611 FCC ID: DoC GPS Antenna Manuf: San Jose Navigation, Inc. Model: SM-25 Serial: 2569918 FCC ID: NA DC Power Supply Manuf: Samlex America Model: SEC 1223 Serial: 03061-0D01-0632 FCC ID: DoC Page 6 of 15 Report No: FC04-081- R SPECIFICATIONS AND REQUIREMENTS The following summarizes the specifications and requirements for Maximum Permissible Exposure for mobile devices applied during RF exposure evaluation. Excerpt from 47 CFR §1.1310 Radio Frequency radiation exposure limits Table 1. - Limits for Maximum Permissible Exposure (MPE) (A) Limits for Occupational/Controlled Exposures Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (V/m) Power Density (mW/cm 2 ) Averaging Time (Minutes) 0.3-3.06141.63*(100)6 3.0-301842/f4.89/f*(900/f2)6 30-30061.40.16316 300-1500------f/3006 1500- 100,000------56 (B) Limits for General Population/Uncontrolled Exposure Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (V/m) Power Density (mW/cm 2 ) Averaging Time (Minutes) 0.3-1.346141.63*(100)30 1.34-30824/f2.19/f*(180/f2)30 30-30027.50.0730.230 300-1500------f/150030 1500- 100,000 ------130 f = frequency in MHz * = Plane-wave equivalent power density NOTE 1 to Table 1: Occupational/controlled limits apply in situations in which persons are exposed as a consequence of their employment provided…
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5473-A Clouds Rest · Mariposa, California · United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 1 | 90 | 806 MHz - 821 MHz | 20 W | 14K7F1D | 0.1250000000 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