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OEUB8001900-1AWireless In-Vehicle Cellular Signal Enhancer

TRL Technologies, Inc.
Wireless In-Vehicle Cellular Signal Enhancer - FCC ID OEUB8001900-1A - TRL Technologies, Inc.
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Application Details

Equipment Class
PCB - PCS Licensed Transmitter
Date of Grant
Sep 21, 2004
Application Purpose
Original Equipment
Date of Application
Sep 21, 2004
Equipment Note
Wireless In-Vehicle Cellular Signal Enhancer
Frequency Range
1930.00000000 - 1990.00000000
Company
TRL Technologies, Inc.
Country
United States

Documents & Files

Select a file to view

Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Parts List/Tune Up Info

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RF Exposure Info

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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

MODEL B8001900 FCC ID: OEUB8001900-1A WIRELESS IN-VEHICLE CELLULAR SIGNAL ENHANCER OPERATIONAL MANUAL Note Some professional installation assistance may be required to properly install the In- ehicle Cellular Signal Enhancer permanently. V We recommend that individuals not accustomed to the installation of mobile electronics seek the services of a professional installer. I. Parts List Description Qty. o In-vehicle amplifier unit 1 o Front antenna 1 o Rear antenna (wing shaped or magnet mounted) 1 o DC power cable (15-ft.) 1 II. Installation Instructions o Step 1. Install the amplifier unit I nstall the amplifier unit within vehicle’s trunk, interior, or under seat. Choose a location where it rests flat and is not a hazard to driver. o tep 2. Install DC power cable S Attach one end of DC power cable to DC power source within vehicle. Attach remaining end of DC power cord to Amplifier Unit. Note Make sure to connect to a 12-Volt source that is not providing power when vehicle is turned off - or battery will drain. o Step 3. Examine LED light on the amplifier unit. The LED light on the amplifier unit indicates the level of signal hancement. en Attempt to achieve the optimal signal enhancement when positioning antennas before making the antenna placement permanent. Before any antenna is connected to the amplifier, the unit must be powered on. Both LEDs should be green. Be sure that all cell phones in e vicinity of the amplifier are turned off during installation. th Two green LEDs – Optimal signal enhancement One green, one yellow LED – Very good signal enhancement Two yellow LEDs – Good signal enhancement Any red LEDs – Poor signal enhancement Importance Unit must first be turned on without antennas connected for system calibration. Ensure that LED light on amplifier unit is green before connecting antennas. Amplifier unit must remain on while connecting antennas. o Step 4. Position the Rear antenna Important The Rear antenna needs to be installed at least 20 cm (or approximately 8-in) away from all persons during normal operation to comply with the FCC’s radiofrequency radiation exposure requirement. Position the Rear antenna within vehicle towards bottom of rear window on passenger side. Optimal position is 1-in. from bottom of window. Avoid contact with any metallic materials - including window heating coils. D o not use adhesive backing to permanently affix antenna until Step 6. For magnet mounted antenna, start by positioning the antenna outside, on top of the trunk, on the driver side. Move slowly toward the passenger side to locate the optimal position. Connect the Rear antenna to amplifier unit. Note Position the Rear antenna so that cord is hanging from bottom. There is only one location where Rear Antenna can be connected to Amplifier Unit. o Step 5. Position the Front antenna Important The Front antenna needs to be installed at least 20 cm (or approximately 8-in) away from all persons during normal operation to comply with the FCC’s radiofrequency radiation exposure requirement. Position the Front antenna within the interior of vehicle, above driver seat with adhesive pointed away from cell phone user. The Front antenna should be positioned as close to, and with the best unobstructed view to, where the cell phone would normally be used. Avoid placing this antenna behind any metallic objects (ie. mirror in sun visor). Do not make contact with any metal surface. Connect Front antenna to amplifier unit. Note There is only one location where the Front antenna can be connected to amplifier unit. o Step 6. Achieve Optimal Enhancement Once green or yellow LED light is obtained, permanently affix both the Rear and Front antennas. If you are receiving a red LED even after trying different antenna positions, try unplugging both antennas and turn the power off and on again before plugging the antennas in. If the antennas are connected and too close to each other when the amplifier is turned on, it will be impossible to achieve a green LED until you do the preceding. Two green LEDs – Optimal signal enhancement One green, one yellow LED – Very good signal enhancement Two yellow LEDs – Good signal enhancement Any red LEDs – Poor signal enhancement Typical Installation

Cover Letter(s)

September 7, 2004 Elite Electronic Engineering, Inc. TCB Certification Services 1516 Centre Circle Downers Grove IL 60515 Attn: Daniel Crowder FCC/Certification Department Group Leader Gentlemen, RES Ltd. is submitting application for equipment authorization for the Wireless In-Vehicle Cellular Signal Enhancer, FCC ID: OEUB8001900-1A under rule parts 22 & 24. This equipment is used to increase signal strength and reduced number of dropped calls in a car. It operates in the 800MHz and the 1900MHz band and covers AMP, GSM, TDMA and CDMA. Power Output Band Frequency Modulation dBm W Emission Designator AMP 25 0.3 D1F GSM 25 0.3 GXW TDMA 25 0.3 DXW 824 - 849 MHz (uplink) CDMA 25 0.3 F9W AMP 15 0.03 D1F GSM 15 0.03 GXW TDMA 15 0.03 DXW 800MHz 869 - 894 MHz (downlink) CDMA 15 0.03 F9W AMP 25 0.3 D1F GSM 25 0.3 GXW TDMA 25 0.3 DXW 1850-1910 MHz (uplink) CDMA 25 0.3 F9W AMP 15 0.03 D1F GSM 15 0.03 GXW TDMA 15 0.03 DXW 1900MHz 1930-1990 MHz (downlink) CDMA 15 0.03 F9W We request that the following exhibits to be held confidential and withheld from public inspection. They are RES Ltd.’s confidential proprietary information and are not normally released to the public. 1. Block Diagrams 2. Operational Description 3. Parts List 4. Schematic If you have any questions regarding this filing, please contact me at: Edwin Moreno RF Design Engineer RES Ltd. 2410 Vantage Dr. Elgin, IL 60123 Phone: (847) 844-4635 Fax: (847) 844-4650 Email: [email protected]

External Photos

External, Front External, Back Internal Board

Internal Photos

Internal Board

Parts List/Tune Up Info

PART LIST Item Qt yDescriptRef Desig 1 2 AMP 900 MHZ POWERU62 U72 2 2 AMP 1900 MHZ POWER AMPU42 U52 3 4FILTER 881.5 MHzFIL60 FIL61 FIL62 FIL63 4 4FILTER 1880 MHZFIL 50 FIL51 FIL52 FIL53 5 4FILTER 836.5 MHZFIL70 FIL71 FIL72 FIL73 6 4FILTER 1960 MHZFIL40 FIL41 FIL42 FIL43 7 3CAP 0.1UFC2 C6 C10 8 1CAP 1000pFC1 912CAP 100pF C41 C48 C49 C50 C58 C59 C61 C68 C69 C70 C78 C79 1012CAP 47nF C42 C43 C44 C52 C53 C54 C62 C63 C64 C72 C73 C74 11 12 CAP 4.7uF C45 C46 C47 C55 C56 C57 C65 C66 C67 C75 C76 C77 12 2CAP 22uF C5 C7 13 4CAP 1uFC40 C51 C60 C71 14 2CAP 1.5pFC22 C31 154DIRECTIONAL COUPLER-DETECTORU43 U53 U63 U73 16 2DUPLEXER AMPSFIL5-6 17 2DUPLEXER PCSFIL3-4 18 1REGULATOR 2.85VU2 19 4IND 2.2nHL44 L54 L64 L74 20 4IND 4.7nHL42 L52 L62 L72 21 8IND 33nHL41 L43 L51 L53 L61 L63 L71 L7 3 22 4IND100nHL40 L50 L60 L70 23 1REGULATOR ICU1 24 4OP AMPU12 U13 U14 U15 25 1LEDD10 26 2DIPLEXERFIL1 FIL2 27 1MICROCONTROLLERU10 28 1DIGITAL POTENTIOMETERU11 29 4RES 22OHMR40 R50 R60 R70 308RES 3.01KOHMR44 R45 R54 R55 R64 R65 R74 318RES 1.0KOHMR6 R10 R11 R12 R46 R56 R66 R76 32 4RES 100OHMR61 R63 R71 R73 33 4RES 4.75KOHMR13 R14 R15 R16 34 2RES 68OHMR62 R72 35 4RES 300OHMR41 R43 R51 R53 36 1RES 2.49KOHMR5 37 2RES 18OHMR42 R52 38 2RES 200OHMR17 R18 39 4VARIABLE GAIN BLOC KU41 U51 U61 U71 40 4GAIN BLOCKU40 U50 U60 U70

Parts List/Tune Up Info

TUNEUP PROCEDURE The wireless In-Vehicle Cellular Signal Enhancer requires no manual tuning. All settings are factory aligned and controlled by a microprocessor.

RF Exposure Info

SAR Test Report for Wireless In-Vehicle Cellular Signal Enhancer Model B8001900 FCC ID OEUB8001900-1A Prepared by: Tim Avicola, Director of Engineering, RES, Ltd. RES Ltd. has reviewed the Wireless In-Vehicle Cellular Signal Enhancer Model B8001900, FCC ID OEUB8001900-1A, for the need to conduct SAR evaluation. Due to the design and installation of this product, it qualifies for the exclusion called out in 2.1091. The Wireless In-Vehicle Cellular Signal Enhancer is operated as a mobile device as defined in 2.1091(b) bases on its design and installation. The unit is installed into a vehicle such that it is physically secured and is generally located more than 20cm from the end-user. In addition, the user manual is included a user reminder that there should be at least 20cm of separation between the vehicle’s occupants and the antennas during normal operation. The unit has a maximum transmitted conducted power of 0.3W (25dBm) in the uplink path, and 0.03W (15dBm) in the downlink path with unity antenna gain. There’s a minimum cable loss of 4.0 dB. Overall, the unit’s total ERP is less than 1W.

Test Report

Page 1 of 220 Engineering Test Report No. 34018-01 Measurement of RF Emissions from a Mobile Repeater, Model No. B8001900 For : RES Limited Elgin, IL P.O. No. : 780-0000001989 Date Received : August 30, 2004 Dates Tested : August 30 through September 7, 2004 Test Personnel : Daniel E. Crowder, EMC Engineer Specification : FCC "Code of Federal Regulations” Title 47 Parts 22 and 24 Test Report By : Daniel E. Crowder EMC Engineer Witnessed by : Edwin Moreno TRL Technologies Approved By : Raymond J. Klouda Registered Professional Engineer of Illinois - 44894 Elite Electronic Engineering Inc. 1516 Centre Circle Downers Grove, IL 60515 Tel : (630) 495-9770 Fax: (630) 495-9785 www.elitetest.com Engineering Test Report No. 34018-01 THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 2 of 220 TABLE OF CONTENTS PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. 1.0 INTRODUCTION....................................................................................................................................4 1.1 DESCRIPTION OF TEST ITEM.........................................................................................................4 1.2 PURPOSE..........................................................................................................................................4 1.3 DEVIATIONS, ADDITIONS AND EXCLUSIONS.............................................................................4 1.4 APPLICABLE DOCUMENTS............................................................................................................4 1.5 SUBCONTRACTOR IDENTIFICATION...........................................................................................4 1.6 LABORATORY CONDITIONS.........................................................................................................4 2.0 TEST ITEM SETUP AND OPERATION................................................................................................5 2.1 POWER INPUT..................................................................................................................................5 2.2 GROUNDING.....................................................................................................................................5 2.3 PERIPHERAL EQUIPMENT.............................................................................................................5 2.4 MODULATION..................................................................................................................................5 2.5 FREQUENCY SELECTION...............................................................................................................5 2.6 RF POWER OUTPUT........................................................................................................................7 3.0 TEST EQUIPMENT................................................................................................................................7 3.1 TEST EQUIPMENT LIST...................................................................................................................7 3.2 CALIBRATION TRACEABILITY.....................................................................................................7 4.0 REQUIREMENTS, PROCEDURES AND RESULTS..............................................................................7 4.1 RF POWER OUTPUT MEASUREMENTS.........................................................................................7 4.1.1 REQUIREMENTS........................................................................................................................7 4.1.2 PROCEDURES............................................................................................................................7 4.1.3 RESULTS....................................................................................................................................8 4.2 OCCUPIED BANDWIDTH MEASUREMENTS.................................................................................8 4.2.1 REQUIREMENTS........................................................................................................................8 4.2.2 PROCEDURES............................................................................................................................9 4.2.3 RESULTS....................................................................................................................................9 4.3 SPURIOUS EMISSIONS AT ANTENNA TERMINAL.......................................................................9 4.3.1 REQUIREMENTS........................................................................................................................9 4.3.2 PROCEDURES..........................................................................................................................10 4.3.3 RESULTS..................................................................................................................................10 4.4 FIELD STRENGTH OF SPURIOUS EMISSIONS.............................................................................10 4.4.1 PRELIMINARY RADIATED MEASUREMENTS.....................................................................10 4.4.1.1 REQUIREMENTS...............................................................................................................10 4.4.1.2 PROCEDURES...................................................................................................................10 4.4.1.3 RESULTS............................................................................................................................11 Engineering Test Report No. 34018-01 THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 3 of 220 4.4.2 FINAL RADIATED EMISSIONS...............................................................................................11 4.4…

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Test Report

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of 220 Engineering Test Report No. 34018-01 Page 185 of 220 Engineering Test Report No. 34018-01 Page 186 of 220 Engineering Test Report No. 34018-01 Page 187 of 220 Engineering Test Report No. 34018-01 Page 188 of 220 Engineering Test Report No. 34018-01 Page 189 of 220 Engineering Test Report No. 34018-01 Page 190 of 220 Engineering Test Report No. 34018-01 Page 191 of 220 Engineering Test Report No. 34018-01 Page 192 of 220 Engineering Test Report No. 34018-01 Page 193 of 220 Engineering Test Report No. 34018-01 Page 194 of 220 Engineering Test Report No. 34018-01 Page 195 of 220 Engineering Test Report No. 34018-01 Page 196 of 220 Engineering Test Report No. 34018-01 Page 197 of 220 Engineering Test Report No. 34018-01 Page 198 of 220 Engineering Test Report No. 34018-01 Page 199 of 220 Engineering Test Report No. 34018-01 Page 200 of 220 Engineering Test Report No. 34018-01 Page 201 of 220 Engineering Test Report No. 34018-01 Page 202 of 220 Engineering Test Report No. 34018-01 Page 203 of 220 Engineering Test Report No. 34018-01 Page 204 of 220 Engineering Test Report No. 34018-01 Page 205 of 220 Engineering Test Report No. 34018-01 Page 206 of 220 Engineering Test Report No. 34018-01 Page 207 of 220 Engineering Test Report No. 34018-01 Page 208 of 220 Engineering Test Report No. 34018-01 Page 209 of 220 MANUFACTURER : RES, LIMITED MODEL : B8001900 SERIAL NO. : 31 SPECIFICATION : FCC-22 SPURIOUS RADIATED EMISSIONS DATE : September 3, 2004 NOTES : Tx CW @ 824MHz : TEST DISTANCE IS 3 METERS METER MATCHED ANTENNA CABLE ERP MIN FREQUENCY ANT READING SIGNAL GAIN FACTOR TOTAL ATTN ATTN MHz POL dBuV dBm dB dB dBm dB dB 1648.0 H 53.5 -23.8 5.7 3.5 -21.6 46.6 38 1648.0 V 58.5 -26.2 5.7 3.5 -24.0 49.0 38 2472.0 H 44.7 -51.7 5.3 4.4 -50.8 75.8 38 2472.0 V 44.2 -59.6 5.3 4.4 -58.7 83.7 38 3296.0 H 43.2 -53.7 6.1 5.7 -53.3 78.3 38 3296.0 V 43.9 -55.5 6.1 5.7 -55.1 80.1 38 4120.0 H 42.6 -64.5 7.3 6.3 -63.5 88.5 38 4120.0 V 42.1 -64.5 7.0 6.3 -63.8 88.8 38 4944.0 H 40.4 -64.5 7.7 6.9 -63.7 88.7 38 4944.0 V 40.2 -64.4 7.7 6.9 -63.6 88.6 38 5768.0 H 39.2 -60.4 7.3 7.5 -60.6 85.6 38 5768.0 V 38.4 -60.4 7.3 7.5 -60.6 85.6 38 6592.0 H 40.3 -62.0 8.3 8.1 -61.8 86.8 38 6592.0 V 40.9 -61.9 8.3 8.1 -61.7 86.7 38 7416.0 H 42.0 -60.3 7.2 8.2 -61.3 86.3 38 7416.0 V 42.2 -60.4 7.2 8.2 -61.4 86.4 38 8240.0 H 41.2 -60.4 8.5 8.4 -60.3 85.3 38 8240.0 V 41.3 -60.3 8.5 8.4 -60.2 85.2 38 Engineering Test Report No. 34018-01 Page 210 of 220 MANUFACTURER : RES, LIMITED MODEL : B8001900 SERIAL NO. : 31 SPECIFICATION : FCC-22 SPURIOUS RADIATED EMISSIONS DATE : September 3, 2004 NOTES : Tx CW @ 836.5MHz : TEST DISTANCE IS 3 METERS METER MATCHED ANTENNA CABLE ERP MIN FREQUENCY ANT READING SIGNAL GAIN FACTOR TOTAL ATTN ATTN MHz POL dBuV dBm dB dB dBm dB dB 1673.0 H 57.3 -22.6 5.8 3.5 -20.3 45.3 38 1673.0 V 61.1 -26.9 5.8 3.5 -24.6 49.6 38 2509.5 H 44.7 -51.1 5.4 4.4 -50.1 75.1 38 2509.5 V 45.5 -58.3 5.4 4.4 -57.3 82.3 38 3346.0 H 44.9 -49.3 6.2 5.7 -48.8 73.8 38 3346.0 V 49.2 -54.2 6.2 5.7 -53.7 78.7 38 4182.5 H 41.4 -64.5 7.4 6.3 -63.4 88.4 38 4182.5 V 42.2 -64.5 7.1 6.3 -63.7 88.7 38 5019.0 H 41.0 -64.5 7.8 6.9 -63.6 88.6 38 5019.0 V 41.5 -64.4 7.8 6.9 -63.5 88.5 38 5855.5 H 42.6 -60.4 7.5 7.5 -60.4 85.4 38 5855.5 V 41.7 -60.4 7.5 7.5 -60.4 85.4 38 6692.0 H 42.0 -62.0 8.4 8.1 -61.7 86.7 38 6692.0 V 41.7 -61.9 8.4 8.1 -61.6 86.6 38 7528.5 H 42.0 -60.3 7.4 8.2 -61.1 86.1 38 7428.5 V 41.4 -60.4 7.2 8.2 -61.4 86.4 38 8365.0 H 42.3 -60.4 8.7 8.4 -60.1 85.1 38 8365.0 V 42.1 -60.3 8.7 8.4 -60.0 85.0 38 Engineering Test Report No. 34018-01 Page 211 of 220 MANUFACTURER : RES, LIMITED MODEL : B8001900 SERIAL NO. : 31 SPECIFICATION : FCC-22 SPURIOUS RADIATED EMISSIONS DATE : September 3, 2004 NOTES : Tx CW @ 849MHz : TEST DISTANCE IS 3 METERS METER MATCHED ANTENNA CABLE ERP MIN FREQUENCY ANT READING SIGNAL GAIN FACTOR TOTAL ATTN ATTN MHz POL dBuV dBm dB dB dBm dB dB 1698.0 H 57.6 -19.1 5.9 3.5 -16.7 41.7 38 1698.0 V 61.0 -22.9 5.9 3.5 -20.5 45.5 38 2547.0 H 43.6 -46.7 5.5 4.4 -45.6 70.6 38 2547.0 V 43.5 -54.4 5.5 4.4 -53.3 78.3 38 3396.0 H 42.9 -49.6 6.3 5.7 -49.0 74.0 38 3396.0 V 42.5 -54.4 6.3 5.7 -53.8 78.8 38 4245.0 H 42.9 -55.6 7.6 6.3 -54.3 79.3 38 4245.0 V 42.1 -64.5 7.3 6.3 -63.5 88.5 38 5094.0 H 40.8 -64.5 8.0 6.9 -63.4 88.4 38 5094.0 V 41.0 -64.4 8.0 6.9 -63.3 88.3 38 5943.0 H 41.2 -60.4 7.6 7.5 -60.3 85.3 38 5943.0 V 41.1 -60.4 7.6 7.5 -60.3 85.3 38 6792.0 H 42.2 -62.0 8.6 8.1 -61.5 86.5 38 6792.0 V 41.7 -61.9 8.6 8.1 -61.4 86.4 38 7641.0 H 41.7 -60.3 7.5 8.2 -61.0 86.0 38 7641.0 V 41.1 -60.4 7.5 8.2 -61.1 86.1 38 8490.0 H 42.0 -60.4 8.8 8.4 -60.0 85.0 38 8490.0 V 42.5 -60.3 8.8 8.4 -59.9 84.9 38 Engineering Test Report No. 34018-01 Page 212 of 220 MANUFACTURER : RES, LIMITED MODEL : B8001900 SERIAL NO. : 31 SPECIFICATION : FCC-22 SPURIOUS RADIATED EMISSIONS DATE : September 3, 2004 NOTES : Tx CW @ 869MHz : TEST DISTANCE IS 3 METERS METER MATCHED ANTENNA CABLE ERP MIN FREQUENCY ANT READING SIGNAL GAIN FACTOR TOTAL ATTN ATTN MHz POL dBuV dBm…

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Contact Information

Applicant

Hiep Lam(Electrical Engineer)
[email protected](847) 2525800Fax: (847) 519-9691

Test Firm

Elite Electronic Engineering Co.Daniel Crowder
[email protected]630-495-9770Fax: 630-495-9785

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1624E1.93 GHz - 1.99 GHz30.00 mWDXWAmp
Confidentiality
Long Term
Grant Notes
Single channel repeater. The antenna installation and operating configurations of this transmitter, including antenna gain and cable loss must satisfy MPE categorical Exclusion Requirements of Para. 2.1091. The antenna(s) used for this transmitter must be installed to porvide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjuction with any other antenna or transmitter. Users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exprosure compliance.

Other Applications from TRL Technologies, Inc.

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Jul 05, 2005

Equipment Class

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iDEN Wireless Compensator - FCC ID OEUB851-1A - TRL Technologies, Inc.
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iDEN Wireless Compensator

Jun 09, 2005

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In-Home Cellular Signal Enhancer - FCC ID OEUBDA1900-2 - TRL Technologies, Inc.
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Oct 24, 2004

Equipment Class

PCB - PCS Licensed Transmitter
Wireless In-Vehicle Cellular Signal Enhancer - FCC ID OEUB8001900-1 - TRL Technologies, Inc.
OEUB8001900-1

Wireless In-Vehicle Cellular Signal Enhancer

Aug 15, 2004

Equipment Class

PCB - PCS Licensed Transmitter
In-Home Repeater - FCC ID OEUBDA1900-1 - TRL Technologies, Inc.
OEUBDA1900-1

In-Home Repeater

Feb 08, 2004

Equipment Class

AMP - Amplifier