
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 1 22-Jan-01 User ́s manual for band selective repeater MRx03P U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 2 22-Jan-01 Copyright MIKOM, Buchdorf 2001 All rights reserved. No parts of this publication may be reproduced, stored in a retrieval system, transmitted in any form or by any means, electronical, mechanical photocopying, recording or otherwise, without prior written permission of the publisher. U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 3 22-Jan-01 TABLE OF CONTENTS 1. GENERAL 7 1.1. LIST OF ABBREVIATIONS 7 1.2. HEALTH AND SAFETY WARNINGS 8 1.3. PREAMBLE 9 1.4. LIST OF INTERNATIONAL SALES OFFICES 10 2. FUNCTIONAL DESCRIPTION 11 2.1. GENERAL 11 2.2. REPEATER DESIGN 11 2.3. COMPONENTS OF THE MRX03P 12 2.3.1. Duplexer 12 2.3.2. Measuring Aids 12 2.3.3. Conversion Module 13 2.3.4. Final Amplifier 14 2.3.5. Control Module 15 2.3.6. Motherboard 16 2.3.7. Power Supply 17 3. OPTIONAL EQUIPMENT 18 3.1. MODEM 18 3.1.1. Initstrings 18 3.1.2. PSTN Modem 19 3.1.3. Wireless Modem 20 3.2. EXTERNAL ALARMS 21 3.3. BATTERY BACKUP 22 4. INSTALLATION 23 4.1. MECHANICAL INSTALLATION 23 4.1.1. General 23 4.2. WALL MOUNTING PROCEDURE 24 4.2.1. Pole Mounting Procedure 25 4.3. ELECTRICAL INSTALLATION 27 4.3.1. Grounding 27 4.3.2. Mains Power Supply 27 4.3.3. Antennas Connections 28 U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 4 22-Jan-01 5. COMMISSIONING 29 5.1. PREPARATION 29 5.1.1. General 29 5.1.2. BCCH-Channel 29 5.1.3. Antenna Isolation 30 5.2. BOOT PROCESS 31 5.3. DIP-SWITCHES 32 5.4. REMOTE SETTINGS 33 5.4.1. Local Login 33 5.4.2. Remote Login 35 5.5. MANUAL SETTINGS 36 5.6. LEVELLING OF THE REPEATER 38 6. ALARMS 39 6.1. BITE AND ALARMS 39 6.2. HANDLING OF ALARMS 39 6.3. STATUS REPORT 39 7. TROUBLE SHOOTING 40 7.1. ERROR INDICATION 40 7.2. BOOT PROCESS 41 7.3. ALARM MONITORING WITH THE ALARM HISTORY 41 7.4. POWER SUPPLY 41 7.5. GENERAL REMARKS 42 8. MAINTENANCE 43 8.1. GENERAL 43 8.2. REPLACEMENT OF THE FUSES 44 8.3. REPLACEMENT OF THE MAINS CABLE 44 8.4. REPLACEMENT OF THE RAM / RTC BATTERY 45 8.5. REPLACEMENT OF THE BATTERY BACKUP MODULE 47 8.6. DUPLEXER 48 U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 5 22-Jan-01 8.7. CONVERSION MODULE 48 8.8. CONTROL MODULE SM 2009 49 8.9. POWER SUPPLY 49 8.10. CONNECTING BOARD 50 9. APPENDIX 51 9.1. ELECTRICAL SPECIFICATIONS 51 9.1.1. Specifications of MR703P 51 9.1.2. Specifications of MR803P 52 9.2. MECHANICAL SPECIFICATION 53 9.3. ENVIRONMENTAL AND SAFETY SPECIFICATIONS 53 9.4. SPARE PARTS LISTS 54 9.4.1. Spare Parts List of MR703P 54 9.4.2. Spare Parts List of MR803P 55 9.5. INSTALLATION DRAWING OF THE REPEATER 56 9.6. LAYOUT OF THE REPEATER LID 57 9.7. LAYOUT OF THE REPEATER HEAT SINK 58 10. INDEX 59 U SER ́ S MANUAL FOR BAND SELECTIVE REPEATERS MR X 03P User'sManual.doc Id.-No.:154999 Page 6 22-Jan-01 LIST OF FIGURES AND TABLES figure 2-1 Configuration of a MRx03P...................................................................................11 figure 2-2 Duplexer.....................................................................................................................12 figure 2-3 Conversion module.................................................................................................13 figure 2-4 Final amplifier...........................................................................................................14 figure 2-5 Control module.........................................................................................................15 figure 2-6 Motherboard..............................................................................................................16 figure 2-7 Power supply............................................................................................................17 figure 1-1 Location of the PSTN Modem...............................................................................19 figure 1-2 Modem connection on the duplexer....................................................................20 figure 3-3 Location of external alarm clamps.......................................................................21 figure 3-4 Location of the battery backup module...............................................................22 figure 4-1 Installation drawings of a repeater.......................................................................24 figure 4-2 MIKOM pole mounting kits....................................................................................25 figure 4-3 Grounding bolt..........................................................................................................27 figure 4-4 Top view of antenna connections........................................................................28 figure 5-1 Control module – Position of LEDs......................................................................31 figure 5-2 Control module – Position of the DIP-switches.................................................32 figure 5-3 Motherboard..............................................................................................................36 figure 8-1 Fuse replacement....................................................................................................44 figure 8-2 Connecting board....................................................................................................44 figure 8-3 Cable gland...............................................................................................................45 figure 8-4 Position of RAM/RTC battery................................................................................46 figure 8-5 Battery backup module...........................................................................................47 figure 8-6 Connect…
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Block Diagram
Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 1 of 11 28-Oct-99 Functional description of and additional information on band modules with variable bandwidth. Copyright MIKOM, Buchdorf 1999 All rights reserved. No parts of this publication may be reproduced, stored in a retrieval system, transmitted in any form or by any means, electronical, mechanical photocopying, recording or otherwise, without prior written permission of the publisher. Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 2 of 11 28-Oct-99 Contents 1 Functional description......................................................................................................3 2 Integrating a conversion module and programming communication bus address.......................................................................................................................................5 2.1 What you have to know of your system before the setting.......................................5 2.2 Setting the bus address of the module..........................................................................6 2.3 Which CF to set?.............................................................................................................7 2.4 Attenuation setting..........................................................................................................8 2.5 Required software commands.......................................................................................9 3 Example................................................................................................................................10 Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 3 of 11 28-Oct-99 1 Functional description The band module with variable bandwidth can be set to a desired centre frequency and to a desired bandwidth. The explanation how it works is made with reference to the following figures and exemplary values for frequencies, bandwidths and levels. There are two filters in one link (UL or DL) in series in the band module which can be set to a defined centre frequency. In the example we have two filters with a bandwidth of 25 MHz each and for demonstration purposes the frequency range is 870 to 940 MHz. In figure 1 we see that filter 1 and filter 2 are both set to a centre frequency (CF) of 900 MHz. The resulting overall response of the module is thus a 25 MHz band with a centre frequency of 900 MHz (⇒ frequency range from 887.5 MHz to 912.5 MHz). The attenuation in the stop band of one filter was assumed to be 40 dB. Thus, the overall attenuation of the module is 80 dB. figure 1 figure 2 Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 4 of 11 28-Oct-99 In figure 2 we have the same filters but this time with different centre frequencies. The centre frequency of filter 1 is this time 912.5 MHz and the centre frequency of filter 2 is again 900 MHz. Consequently, we get another overall response of the module as can be seen in figure 2. Filter 1 limits the frequency range towards lower frequencies and filter 2 towards higher frequencies. The resulting response is thus an attenuation of 80 dB up to 881.25 MHz, 40 dB up to 893.25 MHz, 3 dB bandwidth is 12.5 MHz from 900 MHz to 912 MHz, 40 dB attenuation from 918.75 MHz and 80 dB from 931.25 MHz. (Values exemplary!) It is shown in the following how the centre frequency and the bandwidth of the module can be set to desired values. Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 5 of 11 28-Oct-99 2 Integrating a conversion module and programming communication bus address F Note: Do not use conversion modules with variable bandwidth together with conversion moduls with fixed bandwith on the same mother board. 2.1 What you have to know of your system before the setting Prerequisite for the adjustment is to know the bandwidth of the filters used in the module. (See the label on the conversion module.) With this bandwidth and the desired values the start frequency and stop frequency (and thus the bandwidth and centre frequency) of the band can be set. The following formula shows how to calculate the values that have to be entered. 2 1 filter Start BW fCF+= 2 2 filter Stop BW fCF−= ; where CF1 is the centre frequency of the first filter (to be entered) CF2 is the centre frequency of the second filter (to be entered) f Stop is the stop frequency of the desired band (upper frequency): f Stop = CF des + BW des /2 f Start is the start frequency of the desired band (lower frequency): f Start = CF des - BW des /2 (CF des and BW des are the desired center frequency and bandwidth of the desired band) BW filter is the bandwidth of the two filters of the module BW filter BW filter /2 f Start CF1 f Stop CF2 BW des CF des figure 3 Description of band modules with variable bandwidth FunctionalDescription.doc Id.-No. 148222 Page 6 of 11 28-Oct-99 2.2 Setting the bus address of the module Another thing to know is the allocation of the filters to the respective links. Each filter is allocated to a link and a filter number by means of hex-coded rotary switches. Each rotary switch can be set to positions from 0 to F (16 positions) by means of a small screw driver. This adjustment is important if you want to replace a module or upgrade your system. If the module was inserted in factory you don’t have to care about that. The following figure shows where the hex-coded rotary switches are located and the table shows the allocation. Filter 1 in DL Filter 2 in DL Filter 1 in UL Filter 2 in UL figure 4 Position of rotary switches at bottom side of the module Rotary switch positions: Filter 1 Filter 2 UL DL UL DL Socket one 0 1 0 1 Socket two 2 3 2 3 Socket three 4 5 4 5 Socket four 6 7 6 7 table 1: Rotary switch positions F Note: Depending on the constructional style (G-cabin…
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Q0257R2 A J:\ENQS\YR1\1L0016\RF-WIRELESS\Part 22\SubmissionDocs\Currents&Voltages.doc Page 1 of 3 Confidential: For Internal Use Only Development Specification for 4W Final Amplifier for MR803P-CE/TR Issue Change Date Name Approved A Initial Release 27.11.00 Mederle B Changed ICP3 & Gain 23.01.01 Mederle Q0257R2 A J:\ENQS\YR1\1L0016\RF-WIRELESS\Part 22\SubmissionDocs\Currents&Voltages.doc Page 2 of 3 Detailed description of changes Revision : A Initial Release B Changed the values of ICP3 and Gain Q0257R2 A J:\ENQS\YR1\1L0016\RF-WIRELESS\Part 22\SubmissionDocs\Currents&Voltages.doc Page 3 of 3 ID: 155191 Final-Amp. for MR803P-CE/TR Frequency Range Uplink 806-849MHz Frequency Range Downlink 851-894MHz Bandwidth 43Mhz Nominal Gain at ambient (CF) 29,5dB Gain Variation over Frequency + 0,3dB Gain Variation over Temp. + 1,5dB ICP3 Output 51dBm min Psat 37dBm typ. Return Loss Input 15dB min Return Loss Output 15dB min Nominal Impedance 50 Ohm Current Consumption 12,5V=2,5A + 0,2A Mech. Dwg. G0719Z0F Main DC-Connector Pin 1 ALC_set_value Pin 2 NC Pin 3 NC Pin 4 NC Pin 5 NC Pin 6 NC Pin 7 NC Pin 8 NC Pin 9/10 NC Pin 11/12 GND 12V Connector Pin 1 12,5V Pin 2 12,5V Environmentol Specifications Operating Temperature Range From -33° to +75° See environmental Data Sheet Outdoor use envsaf.doc
REP1009V1.xx M0062A0C.docId.-No. 148964Page 123.08.99 REP1009V1.xx ( Id.-No. 147127 ) Software manual for band/channel selective Repeater Copyright MIKOM, Buchdorf 1999 All rights reserved. No parts of this publication may be reproduced, stored in a retrieval system, transmitted in any form or by any means, electronical, mechanical photocopying, recording or otherwise, without prior written permission of the publisher. Author:Approved:QA: REP1009V1.xx M0062A0C.docId.-No. 148964Page 216-Aug-99 Table of contents LIST OF UNIT SPECIFIC ABBREVIATIONS4 1INTRODUCTION5 2INSTALLATION6 3RUNNING THE SOFTWARE7 3.1Via PC or Laptop as terminal7 3.2Via modem9 3.2.1PSTN modem9 3.2.2Siemens M1 modem for GSM90011 3.2.3Motorola mobile ( CELLect1 card )11 4DESCRIPTION OF THE COMMANDS12 4.1Instruction modes12 4.2Conventions12 4.3Description of SET commands13 4.3.1SET ALARMMASK, definition of the severity level for an alarm14 4.3.2SET ALCTHR, setting of the ALC threshold15 4.3.3SET ALIAS*, enter name strings for external alarms 1 ... 416 4.3.4SET ATT, sets attenuation in uplink or downlink path16 4.3.5SET BAUD, definition of baudrate used16 4.3.6SET CF, setting of the center frequency17 4.3.7SET CFO, setting of the frequency offset17 4.3.8SET DIALMETH, setting of the dialing method17 4.3.9SET ID, Repeater identification17 4.3.10SET ILA, definition of a limit for invalid login attempts18 4.3.11SET INITSTR, definition of a initialisation string18 4.3.12SET LMT, to change timeout for local maintenance interface18 4.3.13SET LOGIC, definition of the I/O port logic for the external alarms19 4.3.14SET NUM, definition of 2 phone numbers used for the automatic dial out19 4.3.15SET PAR, definition of parity19 4.3.16SET PWD, to change password19 4.3.17SET PWRDOWN, to switch off band/channel modules20 4.3.18SET REP, definition of waiting time between alarm call trials20 4.3.19SET TIME, to change actual time and date21 4.3.20SET UID, changes user identification21 4.4Description of the GET commands22 4.4.1GET ALARMMASK, displays the set severity level for an alarm23 4.4.2GET ALCTHR, displays the set value for the ALC threshold24 4.4.3GET ALIAS*, name strings for external alarms24 4.4.4GET ATT, gain setting25 REP1009V1.xx M0062A0C.docId.-No. 148964Page 316-Aug-99 4.4.5GET BAUD, baudrate25 4.4.6GET CF, set centre frequency in the GSM900 / GSM1800 band25 4.4.7GET CFO, frequency offset26 4.4.8GET ID, Repeater identification26 4.4.9GET ILA, displays stored number of invalid login attempts26 4.4.10GET INITSTR, displays the string which is used to initialize the modem26 4.4.11GET LMT, timeout for local interface27 4.4.12GET LOGIC, displays the logic of the I/O ports27 4.4.13GET NUM, displays stored phone numbers27 4.4.14GET PAR, modem parity27 4.4.15GET PWRDOWN, displays power down status of the modules27 4.4.16GET REP, defines waiting time between trials for automatic alarm call28 4.4.17GET TIME, to get the actual time and date28 4.5Status commands29 4.5.1STATUS ALC, displays the actual status30 4.5.2STATUS AMPBIAS, current consumption of the RF modules30 4.5.3STATUS DOOR, door open / closed30 4.5.4STATUS HIST, list of all occurred alarms30 4.5.5STATUS I2C , displays the status of the I²C bus32 4.5.6STATUS LBATT, response information about Lithium battery32 4.5.7STATUS PWR, status of the power supplies32 4.5.8STATUS SYNTH, modules in operation32 4.5.9STATUS TEMP, temperature33 4.6Optional status commands34 4.6.1STATUS ACCU, response voltage value of backup battery34 4.6.2STATUS EXTALARM, status of external alarms34 4.6.3STATUS VSWR, displays the DL antenna VSWR34 4.7Action commands35 4.7.1ALARMACKN, acknowledgement of all alarms.35 4.7.2BYE, disconnect Repeater from telephone line in remote mode35 4.7.3BYE, disconnect Repeater from local maintenance interface35 4.7.4DNLOAD, starts software download36 4.7.5VER, displays the version of software and hardware36 4.8Optional action commands37 4.8.1ACCUDIS, starts discharge of accumulator37 4.8.2STOPDIS, stops battery discharging immediately37 4.9Error messages38 4.9.1SYNTAX ERROR38 4.9.2VALUE ERROR38 4.9.3I²C-BUS ERROR38 4.10Features38 5INDEX39 REP1009V1.xx M0062A0C.docId.-No. 148964Page 416-Aug-99 LIST OF UNIT SPECIFIC ABBREVIATIONS ALCAutomatic Level Control DLDownlink EEPROMElectrical erasable programming read only memory I²C-BusInter Integrated Circuit Bus LMTLocal Maintenance Terminal MRMikom Repeater OMCOperation and Maintenance Center RFRadio Frequency RSSIReceive Signal Strength Indication ULUplink UPSUninterruptable Power Supply VSWRVoltage Standing Wave Ratio REP1009V1.xx M0062A0C.docId.-No. 148964Page 516-Aug-99 1 Introduction This manual describes the functions of the standard software REP1009V1.xx implemented in band/channel selective Repeaters of the second generation. These Repeaters can be set locally or remotely. A PCMCIA slot for modem operation is available. The design of the Repeater comprises a large number of functions which the operator may monitor via terminal emulation program or the MIKOM OMC software platform. An easy to understand and easy to learn communication language supports the operator to query status reports from the Repeater or to change settings. Your Repeater is equipped with the required software which enables the operator to communicate with the microprocessor of the control module. The communication with the microprocessor of the control module is realized with a VT100 compatible dialogue. The software is accessible in two different ways. n Locally n Remotely Both possibilities are described below. • The communication can be done locally by connecting a Laptop or a PC with VT100 emulation or a VT100 terminal via the control cable. Required equipment:- Laptop or PC with terminal program, e.g. PROCOMM - one serial RS232 cable: SUB-D9 (female) to SUB-D9 (female) Laptop or PC with terminal program figure 1-1 Repeater locally controlled REP1009V1.xx M0062A0C.docId.-No. 148964Page 616-Aug-99 • Furthermore the communication can be realized remotely…
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Prediction of MPE limit at a given distance Equation from page 18 of OET Bulletin 65, Edition 97-01 where:S = power density P = power input to the antenna G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna Maximum peak output power at antenna input terminal:34.60(dBm) Maximum peak output power at antenna input terminal: 2884.032(mW) Antenna gain(typical):0 (dBi) Maximum antenna gain:1 (numeric) Prediction distance:20(cm) Prediction frequency:850(MHz) MPE limit for uncontrolled exposure at prediction frequency: 0.533333(mW/cm^2) Power density at prediction frequency:0.57376(mW/cm^2) Maximum allowable antenna gain: -0.31731(dBi) 2 4R PG S π = This equipment is intended to operate with its antenna mounted on a permanent outdoor structure.
Nemko Test Report: 1L0016RUS2 Applicant: Allen Telecom Systems Equipment Under Test: MR803P-TR (E.U.T.) In Accordance With: FCC Part 90, Subpart I Private Land Mobile Repeater Tested By: Nemko Dallas Inc. 802 N. Kealy Lewisville, TX 75057-3136 Authorized By: Tom Tidwell, Wireless Group Manager Date: 12/13/01 Total Number of Pages: 49 Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 2 of 49 Table of Contents Section 1. Summary of Test Results.................................................................................................3 Section 2. General Equipment Specification......................................................................................5 Section 3. RF Power Output.............................................................................................................8 Section 4. Occupied Bandwidth........................................................................................................9 Section 5. Spurious Emissions at Antenna Terminals......................................................................18 Section 6. Field Strength of Spurious Emissions..............................................................................35 Section 7. Frequency Stability.........................................................................................................38 Section 8. Test Equipment List.......................................................................................................39 ANNEX A - TEST METHODOLOGIES............................................................................................40 ANNEX B - TEST DIAGRAMS.........................................................................................................46 Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 3 of 49 Section 1. Summary of Test Results Manufacturer: Allen Telecom Model No.: MR803P-TR Serial No.: 13 General: All measurements are traceable to national standards. These tests were conducted on a sample of the equipment for the purpose of demonstrating compliance with FCC Part 90, Subpart I. New Submission Production Unit Class II Permissive Change Pre-Production Unit THIS TEST REPORT RELATES ONLY TO THE ITEM(S) TESTED. THE FOLLOWING DEVIATIONS FROM, ADDITIONS TO, OR EXCLUSIONS FROM THE TEST SPECIFICATIONS HAVE BEEN MADE. See “ Summary of Test Data”. Nemko Dallas Inc. authorizes the above named company to reproduce this report provided it is reproduced in its entirety and for use by the company’s employees only. Any use which a third party makes of this report, or any reliance on or decisions to be made based on it, are the responsibility of such third parties. Nemko Dallas Inc. accepts no responsibility for damages, if any, suffered by any third party as a result of decisions made or actions based on this report. This report applies only to the items tested. Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 4 of 49 Summary Of Test Data NAME OF TEST PARA. NO. SPEC. RESULT RF Power Output 90.205 Audio Frequency Response TIA EIA-603.3.2.6 N/A N/A Audio Low-Pass Filter Response TIA EIA-603.3.2.6 N/A N/A Modulation Limiting TIA EIA-603.3.2.6 N/A N/A Occupied Bandwidth 90.210 Plots Complies Spurious Emissions at Antenna Terminals 90.210 -13 dBm Complies Field Strength of Spurious Emissions 90.210 -13 dBm Complies Frequency Stability 90.213 N/A N/A Transient Frequency Behavior 90.214 N/A N/A Footnotes For N/A’s: (1) Since the E.U.T. does not contain modulation circuitry modulation testing was not performed. (2) Since the E.U.T. is not a keyed carrier system, Transient Frequency Behavior was not performed. (3) The EUT is an F1-F1 repeater . Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 5 of 49 Section 2. General Equipment Specification Transmitter Supply Voltage Input: 115 Vac Frequency Range: Uplink 806-824 MHz Downlink 851-869 MHz Tunable Bands: 15 MHz 20 dB Passband: Type(s) of Modulation: F3E (Voice) F1D F2D D7W (QAM) Other Gain: 70 dB Output Impedance: 50 ohms RF Power Output (rated): Single: 34 dBm Channel Spacing(s): 12.5 kHz Operator Selection of Operating Frequency: Software Power Output Adjustment Capability: Software Frequency Translation: F1-F1 F1-F2 N/A Band Selection: Software Duplexer Change Fullband Coverage Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 6 of 49 Description of Modifications For Class II Permissive Change Modifications Made During Testing Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 7 of 49 Theory of Operation The repeater MRx03P is a band selective amplifier which bi-directionally amplifies signals between a base transceiver station and mobile stations in the corresponding network. It can provide highly selective amplification, thus enabling radio coverage in regions where satisfactory quality of communication is disabled. System Diagram Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 8 of 49 Section 3. RF Power Output NAME OF TEST: RF Power Output PARA. NO.: 2.985 TESTED BY: David Light DATE: 7/25/01 Test Results: Complies. Measurement Data: Downlink Frequency (MHz) Modulation Measured Power (dBm) Rated Power (dBm) Measured/Rated (dB) 851.6 IDEN 33.4 34 0.98/1 861.6 IDEN 34.0 34 1/1 868.6 IDEN 33.3 34 0.98/1 851.6 Voice 34.0 34 1/1 861.6 Voice 34.5 34 1/1 868.6 Voice 34.3 34 1/1 Uplink Frequency (MHz) Modulation Measured Power (dBm) Rated Power (dBm) Measured/Rated (dB) 806.6 IDEN 33.7 34 0.99/1 816.6 IDEN 34.1 34 1/1 823.6 IDEN 34.1 34 1/1 851.6 Voice 34.3 34 1/1 861.6 Voice 34.6 34 1/1 868.6 Voice 34.0 34 1/1 Nemko Dallas FCC PART 90, SUBPART I PRIVATE…
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Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 18 of 49 Section 5. Spurious Emissions at Antenna Terminals NAME OF TEST: Spurious Emissions @ Antenna Terminals PARA. NO.: 2.991 TESTED BY: Chinda Poy Date: 7/12/01 Test Results: Complies. Test Data: See attached graph(s). Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 19 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 20 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 21 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 22 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 23 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 24 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 25 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 26 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 27 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 28 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 29 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 30 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 31 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 32 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 33 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 34 of 49 Test Data – Spurious Emissions at Antenna Terminals Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 35 of 49 Section 6. Field Strength of Spurious Emissions NAME OF TEST: Field Strength of Spurious Emissions PARA. NO.: 2.993 TESTED BY: Chinda Poy DATE: 7/12/01 Test Results: Complies. Test Data: See attached table. Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 36 of 49 Test Data - Radiated Emissions Nemko Dallas FCC PART 90, SUBPART I PRIVATE LAND MOBILE REPEATER EQUIPMENT: MR803P-TR PROJECT NO.: 1L0016RUS2 Page 37 of 49 Photographs of Test Setup FRONT VIEW REAR VIEW Nemko Dallas FCC PART 90, SUBPAR…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 4 | 9 | 851 MHz - 869 MHz | 2.5 W | D7W | Amp |

ION-E
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
ION-M17P/26 EU
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
ION-B TFAH-US7/17
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
ION-B TFAH-US4B
Equipment Class
PCB - PCS Licensed Transmitter
ION-B TFBM17 FIBER OPTIC DISTRIBUTION REMOTE UNIT
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter