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BCR-RPT-MR701REPEATER

Andrew Wireless Innovations Group
REPEATER - FCC ID BCR-RPT-MR701 - Andrew Wireless Innovations Group
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Nov 09, 1999
Application Purpose
Original Equipment
Date of Application
Aug 24, 1999
Equipment Note
REPEATER
Frequency Range
1930.00000000 - 1990.00000000
Company
Andrew Wireless Innovations Group
Country
United States

Documents & Files

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Users Manual

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Block Diagram

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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 102-JUNE-99 User’s manual for band or channel selective Repeater MR801B Power (Id.-No. 148613) Author:Approved:QA: User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 202-JUNE-99 Table of Contents LIST OF UNIT SPECIFIC ABBREVIATIONS6 CONTENTS OF DELIVERY9 HEALTH AND SAFETY WARNING 10 PREAMBLE11 1INTRODUCTION13 1.1Intended purpose13 1.2About the MR801B POWER13 2FUNCTIONAL DESCRIPTION14 2.1General15 2.2RF modules15 2.3Mother board17 2.4Control module SM 200918 2.5Duplexer19 2.6Active combiner20 2.7Measuring aids20 2.8Power supply21 2.9Feed forward amplifier22 3FUNCTIONS AND FEATURES23 3.1Band and channel selectivity23 3.2Gain setting23 3.3ALC24 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 302-JUNE-99 3.4BITE and alarms24 3.4.1Handling of alarms26 3.4.2Status report27 3.4.3Severity levels28 4OPTIONAL EQUIPMENT30 4.1VSWR module30 4.2External alarms30 4.3Modem32 4.4Battery backup module32 5SPECIFICATION34 5.1Electrical specification34 5.2Mechanical specification36 5.3Environmental and safety36 5.4External electrical interfaces36 5.4.1Electrical power36 5.4.2RF connections37 5.5External RF output39 6INSTALLATION40 6.1Mechanical installation41 6.2Electrical installation44 6.2.1Grounding44 6.2.2Power connection45 6.2.3Connection of the antenna cables45 7SETTING TO WORK46 7.1Preparation46 7.2Setting of operational parameters47 7.2.1Manual settings by means of rotary switches47 7.2.2Settings via personal computer as terminal49 7.2.3Settings via modem52 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 402-JUNE-99 8TROUBLE SHOOTING53 8.1Error indication53 8.2Boot process53 8.3Alarm monitoring with the STATUS HIST command54 8.4Power supply54 8.5General remarks54 9MAINTENANCE55 9.1General55 9.2Replacement of the fuses (mains)55 9.3Replacement of the power supply fuse56 9.4Replacement of the mains cable56 9.5Replacement of the RAM / RTC battery57 9.6Replacement of the dummy battery backup module58 9.7Replacement of duplexers59 9.8Replacement of RF modules60 9.9Replacement of the control module SM 200962 9.10Replacement of power supplies63 9.11Replacement of active combiner modules64 9.12Replacement of feed forward amplifiers65 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 502-JUNE-99 10SPARE PARTS LIST68 11APPENDIX70 11.1Installation drawing of the Repeater70 11.2Top view of the Repeater (left side , one channel configuration)71 11.3Top view of the Repeater (right side, one channel configuration)72 11.4One channel configuration – cabling and block diagram73 12INDEX75 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 602-JUNE-99 LIST OF FIGURES AND TABLES table 1-1 List of international sales offices............................................................................12 figure 2-1 Block diagram of MR801B Power.......................................................................14 figure 2-2 Top view of an RF module...................................................................................16 figure 2-3 Top view of a mother board.................................................................................17 figure 2-4 Top view of the control module............................................................................18 figure 2-5 Top view of the duplexers....................................................................................19 figure 2-6 Top view of the active combiner module..............................................................20 figure 2-7 Mounting position of power supplies....................................................................21 figure 2-8 ON / OFF position of external switch...................................................................22 figure 2-9 Top view of the feed forward amplifier................................................................22 figure 3-1 Position of rotary switches...................................................................................23 figure 3-2 Position of failure LEDs.......................................................................................24 figure 3-3 Status hist report..................................................................................................25 table 3-4 List of all available alarms.....................................................................................26 figure 3-5 Example of a GET1 report...................................................................................27 figure 3-6 Example of a STATUS report..............................................................................28 figure 4-1 Clamps for external alarms...................................................................................30 figure 4-2 Cable configuration and installation position........................................................32 figure 4-3 Mounting position of batteries..............................................................................33 figure 5-1 Screw terminal for mains cable............................................................................37 figure 5-2 Connector panel layout........................................................................................37 figure 5-3 Position of external RF output..............................................................................39 figure 6-1 System description...............................................................................................40 figure 6-2 Wall mounting brackets.......................................................................................42 figure 6-3 Clearance distance................................................................................................43 figure 6-4 Grounding kit.......................................................................................................44 figure 6-5 Screw terminal..............................................…

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Users Manual

REP1009V1.xx M0062A0B.docId.-No. 148964Page 16-Apr-99 REP1009V1.xx ( Id.-No. 147127 ) Software manual for band/channel selective Repeater Copyright  MIKOM, Buchdorf 1998 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 M0062A0B.docId.-No. 148964Page 211.12.98 Table of contents LIST OF UNIT SPECIFIC ABBREVIATIONS4 1INTRODUCTION5 2INSTALLATION6 3SOFTWARE DOWNLOAD7 3.1Download procedure in local mode7 3.1.1Download procedure in local mode, software controlled:7 3.1.2Download procedure in local mode, manually controlled:8 4RUNNING THE SOFTWARE10 4.1Via PC or Laptop as terminal10 4.2Via modem12 4.2.1PSTN modem12 4.2.2Siemens M1 modem for GSM90014 4.2.3Motorola mobile ( CELLect1 card )14 5DESCRIPTION OF THE COMMANDS15 5.1Instruction modes15 5.2Conventions15 5.3Description of SET commands16 5.3.1SET ALARMMASK, definition of the severity level for an alarm17 5.3.2SET ALCTHR, setting of the ALC threshold18 5.3.3SET ALIAS*, enter name strings for external alarms 1 ... 419 5.3.4SET ATT, sets attenuation in uplink or downlink path19 5.3.5SET BAUD, definition of baudrate used19 5.3.6SET CF, setting of the center frequency20 5.3.7SET CFO, setting of the frequency offset20 5.3.8SET DIALMETH, setting of the dialing method20 5.3.9SET ID, Repeater identification20 5.3.10SET ILA, definition of a limit for invalid login attempts21 5.3.11SET INITSTR, definition of a initialisation string21 5.3.12SET LMT, to change timeout for local maintenance interface21 5.3.13SET LOGIC, definition of the I/O port logic for the external alarms22 5.3.14SET NUM, definition of 2 phone numbers used for the automatic dial out22 5.3.15SET PAR, definition of parity22 5.3.16SET PWD, to change password22 5.3.17SET PWRDOWN, to switch off band modules23 5.3.18SET REP, definition of waiting time between alarm call trials23 5.3.19SET TIME, to change actual time and date24 5.3.20SET UID, changes user identification24 REP1009V1.xx M0062A0B.docId.-No. 148964Page 311.12.98 5.4Description of the GET commands25 5.4.1GET ALARMMASK, displays the set severity level for an alarm27 5.4.2GET ALCTHR, displays the set value for the ALC threshold27 5.4.3GET ALIAS*, name strings for external alarms27 5.4.4GET ATT, gain setting28 5.4.5GET BAUD, baudrate28 5.4.6GET CF, set centre frequency in the GSM900 / GSM1800 band28 5.4.7GET CFO, frequency offset29 5.4.8GET ID, Repeater identification29 5.4.9GET ILA, displays stored number of invalid login attempts29 5.4.10GET INITSTR, displays the string which is used to initialize the modem29 5.4.11GET LMT, timeout for local interface30 5.4.12GET LOGIC, displays the logic of the I/O ports30 5.4.13GET NUM, displays stored phone numbers30 5.4.14GET PAR, modem parity30 5.4.15GET PWRDOWN, displays power down status of the modules30 5.4.16GET REP, defines waiting time between trials for automatic alarm call31 5.4.17GET TIME, to get the actual time and date31 5.5Status commands32 5.5.1STATUS ALC, displays the actual status33 5.5.2STATUS AMPBIAS, current consumption of the RF modules33 5.5.3STATUS DOOR, door open / closed33 5.5.4STATUS HIST, list of all occurred alarms33 5.5.5STATUS I2C , displays the status of the I²C bus35 5.5.6STATUS LBATT, response information about Lithium battery35 5.5.7STATUS PWR, status of the power supplies35 5.5.8STATUS SYNTH, modules in operation35 5.5.9STATUS TEMP, temperature36 5.6Optional status commands37 5.6.1STATUS ACCU, response voltage value of backup battery37 5.6.2STATUS EXTALARM, status of external alarms37 5.6.3STATUS VSWR, displays the DL antenna VSWR37 5.7Action commands38 5.7.1ALARMACKN, acknowledgement of all alarms.38 5.7.2BYE, disconnect Repeater from telephone line in remote mode38 5.7.3BYE, disconnect Repeater from local maintenance interface39 5.7.4DNLOAD, starts software download39 5.7.5VER, displays the version of software and hardware39 5.8Optional action commands40 5.8.1ACCUDIS, starts discharge of accumulator40 5.8.2STOPDIS, stops battery discharging immediately40 5.9Error messages41 5.9.1SYNTAX ERROR41 5.9.2VALUE ERROR41 5.9.3I²C-BUS ERROR41 5.10Features41 6INDEX42 REP1009V1.xx M0062A0B.docId.-No. 148964Page 411.12.98 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 M0062A0B.docId.-No. 148964Page 511.12.98 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 w…

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Users Manual

M0050A0B.docId.-No. 148222Page 1 of 1211-Mar-99 Functional description and integration instructions for Repeater using band modules with variable bandwidth. M0050A0B.docId.-No. 148222Page 2 of 1211-Mar-99 Contents 1Functional description........................................................................................3 2Integrating a conversion module and programming communication bus address......................................................................................................................5 2.1What you have to know of your system before the setting.....................................5 2.2Setting the bus address of the module.....................................................................6 2.3Which CF to set?.....................................................................................................7 2.4Attenuation setting..................................................................................................8 2.5Required software commands.................................................................................9 3Example.............................................................................................................10 4Quick reference for experienced users...........................................................12 4.1Frequency adjustment in UL and DL in module 1...............................................12 4.2Frequency adjustment in UL and DL in modules 2/3/4.......................................12 4.3Attenuation............................................................................................................12 M0050A0B.docId.-No. 148222Page 3 of 1211-Mar-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 Fig. 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. Fig. 1Fig. 2 M0050A0B.docId.-No. 148222Page 4 of 1211-Mar-99 In Fig. 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 fig. 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. M0050A0B.docId.-No. 148222Page 5 of 1211-Mar-99 2 Integrating a conversion module and programming communication bus address 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. (Can be gained using the VER command.) 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 Start is the start frequency of the desired band (lower frequency) BW filter is the bandwidth of the two filters of the module (can be gained with VER command) BWBW/2 f Start CF1 f Stop CF2 M0050A0B.docId.-No. 148222Page 6 of 1211-Mar-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 insert a module into a Main Unit or Extension Unit as the hex-coded rotary switches have to be set according to the Unit. If the module was inserted in the 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 DLFilter 2 in DL back side of the module Filter 1 in ULFilter 2 in UL Rotary switch positions: Filter 1Filter 2 ULDLULDL Main Unit0123 Extension Unit 14567 Extension Unit 289AB Extension Unit 3CDEF Example: Rotary switch for filter 2 UL (right hand side at the bottom) in Extension Unit 2 has to be set to A. Note:Extension Unit 1 can also be the second module in an 8K cabinet. Extension Unit 2 can also be the third module in an 8K cabinet. Extension Unit 3 can also be the fourth module in an 8K cabinet. M0050A0B.docId.-No. 148222Page 7 of 1211-Mar-99 2.3 Which CF to set? When setting the centre frequency the software queries for a band module (1-8). This number has to be considered carefully because the band module with variable bandwidth contains two filters that can be shifted independently whereas in the standard band module only one centre frequency can be shifted. That means that one band …

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Users Manual

User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 102-JUNE-99 User’s manual for band or channel selective Repeater MR801B Power (Id.-No. 148613) Author:Approved:QA: User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 202-JUNE-99 Table of Contents LIST OF UNIT SPECIFIC ABBREVIATIONS6 CONTENTS OF DELIVERY9 HEALTH AND SAFETY WARNING 10 PREAMBLE11 1INTRODUCTION13 1.1Intended purpose13 1.2About the MR801B POWER13 2FUNCTIONAL DESCRIPTION14 2.1General15 2.2RF modules15 2.3Mother board17 2.4Control module SM 200918 2.5Duplexer19 2.6Active combiner20 2.7Measuring aids20 2.8Power supply21 2.9Feed forward amplifier22 3FUNCTIONS AND FEATURES23 3.1Band and channel selectivity23 3.2Gain setting23 3.3ALC24 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 302-JUNE-99 3.4BITE and alarms24 3.4.1Handling of alarms26 3.4.2Status report27 3.4.3Severity levels28 4OPTIONAL EQUIPMENT30 4.1VSWR module30 4.2External alarms30 4.3Modem32 4.4Battery backup module32 5SPECIFICATION34 5.1Electrical specification34 5.2Mechanical specification36 5.3Environmental and safety36 5.4External electrical interfaces36 5.4.1Electrical power36 5.4.2RF connections37 5.5External RF output39 6INSTALLATION40 6.1Mechanical installation41 6.2Electrical installation44 6.2.1Grounding44 6.2.2Power connection45 6.2.3Connection of the antenna cables45 7SETTING TO WORK46 7.1Preparation46 7.2Setting of operational parameters47 7.2.1Manual settings by means of rotary switches47 7.2.2Settings via personal computer as terminal49 7.2.3Settings via modem52 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 402-JUNE-99 8TROUBLE SHOOTING53 8.1Error indication53 8.2Boot process53 8.3Alarm monitoring with the STATUS HIST command54 8.4Power supply54 8.5General remarks54 9MAINTENANCE55 9.1General55 9.2Replacement of the fuses (mains)55 9.3Replacement of the power supply fuse56 9.4Replacement of the mains cable56 9.5Replacement of the RAM / RTC battery57 9.6Replacement of the dummy battery backup module58 9.7Replacement of duplexers59 9.8Replacement of RF modules60 9.9Replacement of the control module SM 200962 9.10Replacement of power supplies63 9.11Replacement of active combiner modules64 9.12Replacement of feed forward amplifiers65 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 502-JUNE-99 10SPARE PARTS LIST68 11APPENDIX70 11.1Installation drawing of the Repeater70 11.2Top view of the Repeater (left side , one channel configuration)71 11.3Top view of the Repeater (right side, one channel configuration)72 11.4One channel configuration – cabling and block diagram73 12INDEX75 User’s manual for Repeater MR801B Power M0067A0A.docId.-No 151111Page 602-JUNE-99 LIST OF FIGURES AND TABLES table 1-1 List of international sales offices............................................................................12 figure 2-1 Block diagram of MR801B Power.......................................................................14 figure 2-2 Top view of an RF module...................................................................................16 figure 2-3 Top view of a mother board.................................................................................17 figure 2-4 Top view of the control module............................................................................18 figure 2-5 Top view of the duplexers....................................................................................19 figure 2-6 Top view of the active combiner module..............................................................20 figure 2-7 Mounting position of power supplies....................................................................21 figure 2-8 ON / OFF position of external switch...................................................................22 figure 2-9 Top view of the feed forward amplifier................................................................22 figure 3-1 Position of rotary switches...................................................................................23 figure 3-2 Position of failure LEDs.......................................................................................24 figure 3-3 Status hist report..................................................................................................25 table 3-4 List of all available alarms.....................................................................................26 figure 3-5 Example of a GET1 report...................................................................................27 figure 3-6 Example of a STATUS report..............................................................................28 figure 4-1 Clamps for external alarms...................................................................................30 figure 4-2 Cable configuration and installation position........................................................32 figure 4-3 Mounting position of batteries..............................................................................33 figure 5-1 Screw terminal for mains cable............................................................................37 figure 5-2 Connector panel layout........................................................................................37 figure 5-3 Position of external RF output..............................................................................39 figure 6-1 System description...............................................................................................40 figure 6-2 Wall mounting brackets.......................................................................................42 figure 6-3 Clearance distance................................................................................................43 figure 6-4 Grounding kit.......................................................................................................44 figure 6-5 Screw terminal..............................................…

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Attestation Statements

Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 USA Authority to Act as Agent to the Federal Communications Commission On our behalf, I appoint KTL Ottawa to act as agent in the preparation of this application for equipment authorization to the Federal Communications Commission. I certify that submitted Exhibits properly describe the device or system for which equipment authorization is sought. I also certify that each unit manufactured, imported or marketed, as defined in the Commission's regulations will have affixed to it a label identical to that submitted for approval with this application. Dated this__9__Day of___August_____1999 Agency agreement expiration date: By:_________________Sydney J Ludwig Title: Manager Documentation Administration Telephone: 1-804-386-5215 Applicant: Allen Telecom Systems

Operational Description

Date sent: Fri, 29 Oct 1999 08:40:35 -0400 From: [email protected] <mailto:[email protected]> (OET) Subject: To: [email protected] <mailto:[email protected]> To: RUSSELL GRANT, KTL OTTAWA From: Frank Coperich [email protected] <mailto:[email protected]> FCC Application Processing Branch Re: FCC ID BCR-RPT-MR701 Applicant: Allen Telecom Systems Correspondence Reference Number: 10463 731 Confirmation Number: EA95244 Date of Original E-Mail: 10/29/1999 FCC questions are shown in italics; Allen Telecom/KTL responses are shown in bold. 1.) You have indicated that this unit is designed for multichannel operation. We need 3 channel intermodulation (IM) measurement data taken for each emission mode - with appropriate resolution bandwidth setting for each emission mode. Normally this is 1 % of the actual occupied bandwidth of the modulated signal. KTL responses needed here – reference Frank C. Email 2.) We are unclear as to the number of channels per module and how they affect the total RF output power and the RF output power per channel. We will use this information to complete the grant. The MR701 Repeater duplexers covers the three blocks in both uplink and downlink of the PCS band. Either ADB or EFC duplexers are used. The MR 701B repeater family has a modular IF filter design and can be configured with different module types ( See below for module types). The MR801B Power repeater configuration is the high power configuration and can have 6 modules installed. The MR701B repeater is the low power configuration and can have 8 modules installed. The output of all modules are combined and amplified by the multicarrier PA. The module types are as follows: Module TypeBandwidthModulation Type# of Channels CDMA modules1.23 MHzCDMA OnlySingle channel TDMA modules30 kHzTDMA OnlySingle channel GSM modules200kHzGSM Only Variable Bandwidth 0.1 to 15 MHzCDMA, TDMA, Multiple channels & GSM(any channels within the bandwidth selected by the repeater software) In order to protect the repeater amplifiers from overload and to prevent the system from spurious emission, the repeater has an Automatic Level Control, designed to limit the output power to a defined level. The power amplifiers are limited by the spurious output that they produce given the peak power of the composite input signal. The allowable power per carrier must, therefore, decrease as the number of RF carriers from the donor system increases. It is also dependent on the modulation format of the donor system since certain modulation types have a higher peak-to-average ratio than others. We have issued guidelines for output power versus number of carriers (up to 8) in the specification of the repeater. Table 5 indicates RF output power versus number of carriers per modulation format. We are unclear as to the intended uses for the amplifier especially with respect to number of channels for each emission and the use of the amplifier as a booster, repeater, and extender. We will also use this information to complete the grant. Please resolve these issues. This product is strictly used as a repeater. The repeater is a wide-band device when the Variable Bandwidth Module is installed. The repeater software controls bandwidth of the Variable Bandwidth Module is adjusted through the user inputs. The user must determine what frequency range to amplify and set the filter accordingly. The Variable bandwidth module has a bandwidth range from minimum of 0.1MHz to a maximum of 15 MHz. All data was taken with the Variable Bandwidth Module set at 15 MHz that is worst-case . The repeater is a narrow-band device when the Channel Modules are installed. The RF power output is dependent on the number of RF channels amplified (See Table 5) . The items indicated above must be submitted before processing can continue on the above referenced application. Failure to provide the requested information within 60 days of the original e-mail date may result in application dismissal pursuant to Section 2.917 (c) and forfeiture of the filing fee pursuant to section 1.1108. DO NOT reply to this e-mail by using the Reply button. In order for your response to be processed expeditiously, you must upload your response via the Internet at www.fcc.gov <http://www.fcc.gov>, Electronic Filing, OET Equipment Authorization Electronic Filing. If the response is submitted through Add Attachments,in order to expedite processing, a message which informs the processing staff that a new exhibit has been submitted must also be submitted via Submit Correspondence. Also, please note that partial responses increase processing time and should not be submitted. Any questions about the content of this correspondence should be directed to the e-mail address listed below the name of the sender.

Operational Description

Table 5: Output Power MR701 repeater # of carriers GSM, (dBm): high pwr CDMA, (dBm): high pwr TDMA, (dBm): high pwr 1403740 2373134 4332830 per carrier Output Power for each communication format 8292527 Note: The high power amplifier is a correcting feed-forward design. Hence, the backoffs will not necessarily be identical.

Operational Description

Response to Fcc questions Re: Fcc ID BCR-RPT-MR70…

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Contact Information

Applicant

Michael Shumate(Director, North American Operations)
[email protected]919 329-8940Fax: 919 329-8950

Technical Contact

KTL OTTAWARUSSELL GRANT
[email protected]800-563-6336

3325 RIVER ROAD · OTTAWA · Canada

Non-Technical Contact

KTL OTTAWARUBY C DULMAGE
[email protected]800-563-6336

Test Firm

Nemko Canada Inc.Stuart Beck
[email protected]613-737-9680Fax: 613-737-9691

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
624E1.93 GHz - 1.99 GHz5 WDXW

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