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PWO275165TRI-BAND ADJUSTABLE GAIN SIGNAL BOOSTER

Wilson Electronics, LLC
TRI-BAND ADJUSTABLE GAIN SIGNAL BOOSTER - FCC ID PWO275165 - Wilson Electronics, LLC
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Application Details

Equipment Class
AMP - Amplifier
Date of Grant
Aug 29, 2012
Application Purpose
Original Equipment
Date of Application
Aug 29, 2012
Equipment Note
TRI-BAND ADJUSTABLE GAIN SIGNAL BOOSTER
Frequency Range
1930.00000000 - 1990.00000000
Company
Wilson Electronics, LLC
Country
United States

Documents & Files

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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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Test Setup Photos

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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

Contents: Antenna Options & Accessories . . . . . . . . . . . . . . . . . . .1 Quick Install Overview . . . . . . . . . . . . . . . . . . . . . . . . . . .2 Installation Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 Before Getting Started . . . . . . . . . . . . . . . . . . . . . . . . . . .4 Outside Antenna Installation . . . . . . . . . . . . . . . . . . . . . .5 Finding the Strongest Signal . . . . . . . . . . . . . . . . . . . . . .6 Installing the Inside Antenna . . . . . . . . . . . . . . . . . . . . . .8 Installing a Wilson Electronics Signal Booster . . . . . . . . . 9 Powering up a Wilson Electronics Signal Booster . . . . . .9 Understanding the Signal Booster Lights . . . . . . . . . . .10 Warnings and Recommendations . . . . . . . . . . . . . . . . .12 Guarantee & Warranty . . . . . . . . . . . . . . . . . . . . . . . . . .14 Specifications . . . . . . . . . . . . . . . . . . . . . . . . .Back Cover Note: This manual contains important safety and operating information . Please read and follow the instructions in this manual . Failure to do so could be hazardous and result in damage to your Signal Booster . Tri-Band 4G-V Band 2,5,13 Adjustable Gain 700 / 800 / 1900 MHz In-Building Wireless Smart Technology β„’ Signal Booster Appearance of device and accessories may vary . 1 Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 or email: [email protected]. Hours: 7 am to 6 pm MST. 2 How it Works Wilson Electronics Signal Boosters are bi-directional devices that deliver service levels consistent with what would be expected in areas of high cell network coverage . They amplify a weak or shadowed signal in mobile, marine, M2M and in-building applications . When using a Wilson Electronics Signal Booster in conjunction with Wilson Electronics antennas, the Outside Antenna will collect the cell tower signal and send it through the cable to the Signal Booster . The signal is then amplified and re- transmitted through the Inside Antenna into the room . Cell phones and cellular data cards in that area then communicate with the improved signal . When a cell phone or cellular device transmits, the signal is received by the Inside Antenna, amplified by the Signal Booster and transmitted back to the cell tower through the Outside Antenna . Inside this Package Signal Booster AC/DC Power Supply To purchase, call Wilson Electronics Sales Department at: 800-204-4104 Outdoor Antenna Options Indoor Antenna Options & Accessories 1 . Wide Band Directional Antenna 700-2700 MHz (304411) 2 . Pole Mount Panel Antenna 700-2700 MHz (304453) A . Wide-Band Panel Antenna 700-2700 MHz (multiple mounting options) B . 50 Ohm Lightning Surge Protector with N-Connector (859902) Splitter options on page 8 2 1 B A Note: Kits may contain different accessories Appearance of device and accessories may vary . Installation Instructions for the Following Wilson Electronics Signal Booster: Tri-Band 4G-V Operates on Band 13 Adjustable Gain 700 / 800 / 1900 MHz In-Building Wireless Smart Technology β„’ Signal Booster (Band 13 is 700 MHz Verizonβ„’ LTE) Model # 275165 FCC ID: PW0275165 IC: 4726A-275165 The term β€œIC” before the radio certification number only signifies that Industry Canada technical specifications were met . 1 2 Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 or email: [email protected]. Hours: 7 am to 6 pm MST. Quick Install Overview See Installation Diagram on page 3 . Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 . Select a location to install the Signal Booster that is away from excessive 1 . heat, direct sunlight, moisture and has proper ventilation . Do not place the Signal Booster in an air-tight enclosure . Select a location on the roof of the building to install the Outside Antenna . 2 . Use a cell phone in test mode to find the strongest signal from the cell tower (see page 6) . Visit www.WilsonElectronics.com to find test mode function for your particular cell phone . Run the Outside Antenna cable to the Signal Booster and attach it to 3 . the connector labeled β€œOutside Antenna” on the Signal Booster . Run the Inside Antenna cable to the Signal Booster and attach it to the connector labeled β€œInside Antenna” on the Signal Booster . For more information on running cable (see page 7) . Lightning Surge Protection is recommended for all in-building installations (see page 6) . Select a location for the Inside Antenna, preferably in the center of 4 . where the signal needs to be amplified . A minimum separation distance of 20 vertical (within the null zone) or 50 horizontal feet is necessary for proper operation . If the inside coverage is not sufficient you may need to increase the separation distance even further (see installation diagram on pages 3 & 4) . Before powering up the Signal Booster, verify that both the Outside 5 . Antenna and the Inside Antenna are connected and check that all connections are tight . Note: Be careful when plugging the connectors in so as not to bend the center pins on the connectors (see page 9) . The Signal Booster has been packaged with the gain control knobs 6 . adjusted to the highest gain position . If any of the lights are not green, please refer to pages 10-12 . Warning: Connecting the Signal Booster directly to a cell phone with use of an adapter will damage the cell phone and/or the Signal Booster . IMPORTANT NOTICE It is very important to power your Signal Booster using a β€’ surge protected AC Power Strip with at least a 1000 Joule rating. Failure to do this will void your warranty in the β€’ event of a power surge or lightning strike . 3 Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 or email: [email protected]. Hours: 7 am to 6 pm MST. 4 Typical Installation Outside Antenna Inside Antenna Installation Diagram (Optional second antenna for additional coverage). Power Supply Inside A…

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Cover Letter(s)

July 30, 2012 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Subject: Data Confidentiality Gentlemen: Wilson Electronics, Inc. respectfully requests confidentiality of certain documentation provided with the submission of our model 275165 Signal Booster under FCC ID: PWO275165 in accordance with sections 0.457 and 0.459 of the Commission’s regulations. We request that the following documents be kept confidential: 1. Schematic Diagram & Parts List (10 pages), filename: 275165 Schematic Diagram & Parts List.pdf 2. Operational Description, filename: 275165 Operational Description.pdf 3. Block Diagram, filename: 275165 Block Diagram.pdf The above material is confidential and contains proprietary trade secrets and technical data which must be kept from competitors. Public access to these items could result in duplication of our circuitry and/or techniques thereby reducing our competitive advantage and causing us severe damage. Sincerely, Patrick L. Cook Senior Research and Development Engineer

External Photos

APPLICANT: WILSON ELECTRONICS INC. FCC ID: PWO275165 EXTERNAL PHOTOS

ID Label/Location Info

APPLICANT: WILSON ELECTRONICS INC. FCC ID: PWO275165 Label sample and location LABEL LOCATION ON SIDE OF UNIT

Internal Photos

APPLICANT: WILSON ELECTRONICS INC. FCC ID: PWO275165 INTERNAL PHOTOS

Parts List/Tune Up Info

July 30, 2012 Tuning and Adjustment of Wilson Model 275165 Signal Booster There are external tuning adjustments. The user adjusts the gain of the booster as explained in pages 10 thru 12 of the User Manual. These adjustments are β€œfail safe” to prevent interference with cellular systems. If the adjustments are not made properly, the amplifier will either shut off or reduce its gain. Indication of these less then optimum conditions is evident by the booster’s LED indicator lights. Sincerely, Patrick L. Cook Senior Research and Development Engineer

RF Exposure Info

July 30, 2012 Subject: RF MPE EXPOSURE Re: FCC ID: PWO275165 To Whom It May Concern: The MPE calculations for model 275165 signal booster were done for each frequency band: 700 MHz, 800 MHz, and 1900 MHz. For each band two calculations were done; these included the different possibilities of antennas that may be connected to this signal booster: fixed outside and inside antennas. The order of the attached calculations is as follows: 700 MHz band: 1. Fixed Outside Antenna 2. Inside Antenna 800 MHz band: 3. Fixed Outside Antenna 4. Inside Antenna 1900 MHz band: 5. Fixed Outside Antenna 6. Inside Antenna The results of these calculations determine the safe distances and gains for antennas that may be connected to this signal booster as summarized below: Fixed Outside Antenna Inside Antenna Maximum Gain less Cable Loss (dBi) 15 9 Minimum Distance from All People (inches/cm) 23/58 8/20 Sincerely, Patrick L. Cook Senior Research and Development Engineer Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz776 Pout Watts0.31600 Duty Cycle Percent100.0% Ant. Gain dBi15.00 Coax Loss dB0.00 Distance From Antenna In cm39.5 Ant. Gain less Coax Loss dBi15.00 Distance From Antenna In Inches15.55 ERP (Watts)6.0932 EIRP (Watts)9.9928 FCC Power Density Limit (mw/cm 2 ) 0.52 Calculated Power Density (mw/cm 2 ) 0.51 REFERENCE DATA Pout dBm25.00 Antenna Gain (non-log)31.62 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 7/10/2012, 4:32 PM275165 700 Outside Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz746 Pout Watts0.19500 Duty Cycle Percent100.0% Ant. Gain dBi11.00 Coax Loss dB0.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi11.00 Distance From Antenna In Inches7.87 ERP (Watts)1.4969 EIRP (Watts)2.4549 FCC Power Density Limit (mw/cm 2 ) 0.50 Calculated Power Density (mw/cm 2 ) 0.49 REFERENCE DATA Pout dBm22.90 Antenna Gain (non-log)12.59 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 7/10/2012, 4:31 PM275165 700 Inside Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz824 Pout Watts0.72400 Duty Cycle Percent100.0% Ant. Gain dBi15.00 Coax Loss dB0.00 Distance From Antenna In cm58.0 Ant. Gain less Coax Loss dBi15.00 Distance From Antenna In Inches22.83 ERP (Watts)13.9603 EIRP (Watts)22.8949 FCC Power Density Limit (mw/cm 2 ) 0.55 Calculated Power Density (mw/cm 2 ) 0.54 REFERENCE DATA Pout dBm28.60 Antenna Gain (non-log)31.62 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 7/10/2012, 4:33 PM275165 800 Outside Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz869 Pout Watts0.30900 Duty Cycle Percent100.0% Ant. Gain dBi9.00 Coax Loss dB0.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi9.00 Distance From Antenna In Inches7.87 ERP (Watts)1.4966 EIRP (Watts)2.4545 FCC Power Density Limit (mw/cm 2 ) 0.58 Calculated Power Density (mw/cm 2 ) 0.49 REFERENCE DATA Pout dBm24.90 Antenna Gain (non-log)7.94 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 7/10/2012, 4:33 PM275165 800 Inside Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz1850 Pout Watts0.87100 Duty Cycle Percent100.0% Ant. Gain dBi15.00 Coax Loss dB0.00 Distance From Antenna In cm47.0 Ant. Gain less Coax Loss dBi15.00 Distance From Antenna In Inches18.50 ERP (Watts)16.7948 EIRP (Watts)27.5434 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.99 REFERENCE DATA Pout dBm29.40 Antenna Gain (non-log)31.62 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) 1.00 RESULTS OF CALCULATIONS 7/10/2012, 4:30 PM275165 1900 Outside Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz1930 Pout Watts0.32400 Duty Cycle Percent100.0% Ant. Gain dBi11.80 Coax Loss dB0.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi11.80 Distance From Antenna In Inches7.87 ERP (Watts)2.9902 EIRP (Watts)4.9039 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.98 REFERENCE DATA Pout dBm25.11 Antenna Gain (non-log)15.14 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) 1.00 RESULTS OF CALCULATIONS 7/10/2012, 4:29 PM275165 1900 Inside

Test Report

FCC PART 22H, 24E, AND 27 TEST REPORT Applicant WILSON ELECTRONICS, INC. Address 3301 E. DESERET DRIVE ST. GEORGE UTAH 84790 USA FCC ID PWO275165 Model Number 275165 Product Description TRI-BAND SIGNAL BOOSTER Date Sample Received 12/28/2011 Date Tested 1/17/2012 Tested By Nam Nguyen Approved By Mario de Aranzeta Report No. 3089AUT11TestReport.doc Test Results PASS FAIL THE ATTACHED REPORT SHALL NOT BE REPRODUCED EXCEPT IN FULL WITHOUT THE WRITTEN APPROVAL OF TIMCO ENGINEERING, INC. Test Certificate #0955-01 849 NW STATE ROAD 45 NEWBERRY, FL 32669 USA PH: 888.472.2424 OR 352.472.5500 FAX: 352.472.2030 EMAIL: [email protected] HTTP://WWW.TIMCOENGR.COM APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO275165 Report #: W\WILSON_PWO\3089AUT11\3089AUT11TestReport.doc Page 2 of 76 TABLE OF CONTENTS ATTESTATION STATEMENT ..................................................................................................... 4 REPORT SUMMARY ................................................................................................................. 5 TEST ENVIRONMENT .............................................................................................................. 5 TEST SETUP ............................................................................................................................ 5 DEVICE UNDER TEST INFORMATION ..................................................................................... 6 EQUIPMENT LIST .................................................................................................................... 7 TEST PROCEDURE .................................................................................................................. 8 RF POWER OUTPUT .............................................................................................................. 11 Test Data Table 1 – Output Power – CDMA 1900 – Uplink/Downlink ............................... 11 Test Data Table 2 – Output Power – EDGE 1900 – Uplink/Downlink ............................... 11 Test Data Table 3 – Output Power – GSM 1900 – Uplink/Downlink ................................. 11 Test Data Table 4 – Output Power – WCDMA 1900 – Uplink/Downlink ............................ 11 Test Data Table 5 – Output Power – LTE 1900 – Uplink/Downlink ................................... 12 Test Data Table 6 – Output Power – CDMA 800 – Uplink/Downlink ................................. 12 Test Data Table 7 – Output Power – EDGE 800 – Uplink/Downlink ................................. 12 Test Data Table 8 – Output Power – GSM 800 – Uplink/Downlink ................................... 12 Test Data Table 9 – Output Power – WCDMA 800 – Uplink/Downlink .............................. 12 Test Data Table 10 – Output Power – LTE 800 – Uplink/Downlink ................................... 13 Test Data Table 11 – Output Power – LTE 700 – Uplink/Downlink ................................... 13 INPUT/OUTPUT MODULATED AMPLITUDE COMPARISON AND BAND-EDGES COMPLIANCE .............................................................................................................................................. 14 Test Data Table 12 – CDMA 1900 – Uplink/Downlink ...................................................... 15 Test Data Table 13 – WCDMA 1900 – Uplink/Downlink ................................................... 19 Test Data Table 14 – LTE 1900 – Uplink/Downlink .......................................................... 23 Test Data Table 15 – EDGE 1900 – Uplink/Downlink ...................................................... 27 Test Data Table 16 –GSM 1900 – Uplink/Downlink ......................................................... 31 Test Data Table 17 – CDMA 800 – Uplink/Downlink ........................................................ 35 Test Data Table 18 – WCDMA 800 – Uplink/Downlink ..................................................... 39 Test Data Table 19 – LTE 800 – Uplink/Downlink ............................................................ 43 Test Data Table 20 – EDGE 800 – Uplink/Downlink ........................................................ 47 Test Data Table 21 – GSM 800 – Uplink/Downlink .......................................................... 51 Test Data Table 22 – LTE 700 – Uplink/Downlink ............................................................ 55 INTERMODULATION PRODUCT SPURIOUS EMISSIONS........................................................ 59 SPURIOUS EMISSIONS AT ANTENNA TERMINALS ................................................................ 68 Test Data Table 23 – Conducted Emissions – CDMA 1900 – Uplink ................................. 68 Test Data Table 24 – Conducted Emissions – CDMA 1900 – Downlink ............................. 68 Test Data Table 25 – Conducted Emissions – GSM 1900 - Uplink .................................... 69 Test Data Table 26 – Conducted Emissions – GSM 1900 - Downlink ................................ 69 Test Data Table 27 – Conducted Emissions – CDMA 800 - Uplink ................................... 69 Test Data Table 28 – Conducted Emissions – CDMA 800 - Downlink ............................... 70 Test Data Table 29 – Conducted Emissions – GSM 800 – Uplink ...................................... 70 Test Data Table 30 – Conducted Emissions – GSM 800 - Downlink .................................. 70 OUT OF BAND REJECTION: FREQUENCY RESPONSE .......................................................... 71 FIELD STRENGTH OF SPURIOUS EMISSIONS ...................................................................... 75 APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO275165 Report #: W\WILSON_PWO\3089AUT11\3089AUT11TestReport.doc Page 3 of 76 Test Data Table 31 – Radiated Emissions – CW (1900 MHz) – Uplink /Downlink .............. 75 Test Data Table 32 – Radiated Emissions – CW (800 MHz) – Uplink /Downlink ............... 76 APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO275165 Report #: W\WILSON_PWO\3089AUT11\3089AUT11TestReport.doc Page 4 of 76 ATTESTATIO…

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Contact Information

Applicant

Mikel Parry(Compliance Manager)
[email protected]435-673-5021Fax: 435-656-2432

Test Firm

Timco Engineering, Inc.Bruno Clavier
[email protected]352-472-5500Fax: 352 472 2030

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
1824E1.93 GHz - 1.99 GHz324.00 mWG7DAmp
Confidentiality
Long Term
Grant Notes
Power listed is conducted. The antenna installation and operating configurations of this signal booster, including any applicable source-based time-averaging duty factor, antenna gain and cable loss must satisfy MPE categorical exclusion requirements of οΏ½2.1091. The antenna(s) used with this signal booster must be installed to provide a separation distance of at least 20 cm for an inside antenna and 58 cm for a fixed outside antenna from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Antenna gain less cable loss must not exceed 9 dBi for an inside antenna and 15 dBi for a fixed outside antenna. Users and installers must be provided with antenna installation instructions and operating conditions for satisfying RF exposure compliance.

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