
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Signal Booster Installation Guide Contents Before Getting Started . . . . . . . . . . . . . . . . . . . . . . . . . . . .1 Accessories and Antenna Options . . . . . . . . . . . . . . . . . .1 Quick Installation Overview . . . . . . . . . . . . . . . . . . . . . . . .2 Installation Diagram . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .2 Installing a Wilson Electronics External Adapter . . . . . . . .3 Installing Outside Antenna . . . . . . . . . . . . . . . . . . . . . . . . .3 Installing the Signal Booster . . . . . . . . . . . . . . . . . . . . . . .3 Powering Up a Wilson Electronics Signal Booster . . . . . .4 Installing Mounting Plate on DataPro Signal Booster . . . .4 Warnings and Recommendations . . . . . . . . . . . . . . . . . . .5 Guarantee and Warranty . . . . . . . . . . . . . . . . . .Back Cover Signal Booster Specifications . . . . . . . . . . . . . .Back Cover DataPro β’ Dual-Band Signal Booster 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 . 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 Inside this Package Accessories & Antenna Options Before Getting Started This guide will help you properly install your Wilson Electronics Signal Booster . It is impor- tant to read through all of the installation steps for your particular application prior to installing any equipment. Read through the instructions, visualize where all the equipment will need to be installed and do a soft installation before mounting any equipment . For further assistance please call our Wilson Electronics Technical Support Team: 866-294-1660 . Installation Instructions for the Following Wilson Electronics Signal Boosters: DataPro: FCC ID: PWO2B1225 IC: 4726A-2B1225 Model: 2B1225 The term βICβ before the radio certification number only signifies that Industry Canada technical specifications were met . NMO Mount Dual-Band (301104) Magnet Mount Dual-Band (301125) Trucker Mount Dual-Band (301101) Mini Magnet Dual-Band (301126) Adapters may be required Adapters may be required Adapters may be required 800/1900 MHz Omni- Directional Antenna (301201) Mounting Plate (901138) Lightning Surge Protector (859902) Marine Antenna Dual-Band (301130) 800 MHz Yagi Cellular Antenna (301111) Yagi Antennas Omni Directional Antennas Accessories 1900 MHz Yagi PCS Antenna (301124) 800 MHz Yagi Cellular Antenna (301129) 5V Power Supply DataPro Signal Booster 6β RG174 cable Accessories packaged may not exactly match the below photos due to upgrades 12 Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 or email: [email protected] Hours: 7 am to 6 pm MST. Select a location to install the signal booster that is away from excessive heat, direct 1 . sunlight, moisture and that has proper ventilation . Do not place the signal booster in an air-tight enclosure . Select a location on the top of the structure to install the outside antenna . Use a cell phone 2 . in test mode to find the strongest signal from the cell tower . 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 the connector 3 . labeled βoutside antenna .β An external adapter is required to connect the cell phone or cellular data card to the 4 . signal booster . The external adapter plugs into the included antenna extension cable and directly into a socket on the cell phone or cellular data card . Run the extension cable from the external adapter and attach it to the connector labeled βcellular phone or data cardβ on the signal booster . Note: Be careful when plugging the connector in so as not to bend the center pins on the connectors. Ensure all cables have a tight connection. Before powering up the signal booster verify that both the outside antenna and the 5 . inside antenna are connected and check that all connections are tight . An AC surge protector is recommended for all installations . Quick Installation Overview The following steps provide a summary of the signal booster/antenna installation process . Contact Wilson Electronics Technical Support Team with any questions at 866-294-1660 . Cellular Modem Power Supply Antenna Signal Booster Installation Diagram (Figure 1) AC Surge Protector 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 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 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 . Cell phones and cellular data cards then communicate with the improved signal . When a cell phone or cellular data card transmits, the signal is amplified by the signal booster and broadcast back to the cell tower through the outside antenna . Installing a Wilson External Adapter An external adapter is required to connect the cell phone or cellular data card to the signal booster. The external adapter is cell phone/data card-specific and may be purchased through a local retailer . Refer to Wilson Electronics Adapter Guide to identify the correct adapter for your cell phone or cellular data card . The adapter guide is available through a local retailer or at www.WilsonElectronics.com . The external adapter plugs into the antenna extension cable (included) and directly into a socket on the cell phone or cellular data card . The external adapter anβ¦
Text truncated - open the document above for the full version.
February 2, 2011 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 2B1225 amplifier under FCC ID: PWO2B1225 in accordance with sections 0.457 and 0.459 of the Commissionβs regulations. We request that the following documents be kept confidential: 1. Schematic Diagram (3 pages), filename: 2B1225 Schematics & Parts.pdf 2. Operational Description, filename: 2B1225 Operational Description.doc 3. Block Diagram, filename: 2B1225 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, Richard M. Kline Senior Electrical Engineer
Federal Communications Commission Office of Engineering and Technology Equipment Authorization Bureau Attached please find a revised test report for Wilson Electronics amplifier FCC ID:PWO 2B1225. The original test report power output pages 12 and 13 contain numerical errors caused by incorrect application rounding of numbers and subsequent conversion. The power output values listed on the grant were not affected. Regards, Mario R. de Aranzeta Engineer/ Lab Manager Timco Engineering Inc.
March 1, 2011 Timco Engineering, Inc. 849 NW State Road 45 Newberry, FL 32669 Subject: Changes to User Manual for Signal Booster Model 2B1225, FCC ID: PWO2B1225, IC: 4726A-2B1225 Enclosed herewith is an updated User Manual (#110867_DataProRev3.indd) for the subject equipment. Changes that were made: β’ correct typographical errors. β’ add recommendations regarding electrical and lightning surge protection. β’ recommend verifying that outside antenna installations meet requirements of relevant electrical codes. Please remove the exhibit titled βinstallation guideβ since this is for a different product and was uploaded in error. Very truly yours, Richard M. KIine Senior Electrical Engineer
APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO2B1225 EXTERNAL PHOTOS
APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO2B1225 INTERNAL PHOTOS
February 5, 2011 Booster Amplifier Model 2B1225 Tuning FCC ID: PWO2B1225, IC: 4726A-2B1225 We hereby certify that there are no user accessible tuning or other adjustments in the Model 2B1225 booster amplifier. All adjustments are internal and only available to Wilson personnel during manufacturing (and repair if necessary). Sincerely, Richard M. Kline Senior Electrical Engineer
Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz824 Pout Watts1.41300 Duty Cycle Percent100.0% Ant. Gain dBi5.12 Coax Loss dB2.72 Min. Distance Inches7.43 Min. Distance Centimeters18.86 ERP (Watts)1.4973 EIRP (Watts)2.4555 REFERENCE DAT A Pout dBm31.50 FCC Limit (mw/cm 2 ) f/1500 Calculated limit (mw/cm 2 ) 0.55 NOTES : (1) Valid only between 300 MHz - 100,000 MHz. RESULTS OF CALCULATIONS (2) Calculations are sufficient for determining antenna safe distance for mobile antennas and fixed inside antennas provided that calculated ERP < 1.5 watts for frequencies equal to or below 1.5 GHz, and calculated ERP < 3 watts for frequencies above 1.5 GHz. (4) There are no predefined ERP and distance limitations forfixed outside(building) antennas. (3) Mobile antenna distances and fixed indoor antenna distances shall be no less than 8 inches. (5) Mobile/portable stations are limited to 2 watts EIRP peak power in the 1900 MHz band (FCC rules Β§24.232[c]). For Amplifier Model Number: Frequency Band (MHz) Mobile or Fixed? Outside or Inside Antenna? Antenna Type: Safe Distance (inches): Signature: Date: 800 MHz SUMMARY FOR PUBLICATION 2B1225 (4) There are no predefined ERP and distance limitations for fixed outside(building) antennas. Mobile and Fixed 8 Inches January 31, 2011 loss does not exceed 2.4 dBi. Any antenna whose gain less cable Outside 2/2/2011, 2:09 PM2B1225 Omni 800 MPE.xls
Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz1850 Pout Watts1.86200 Duty Cycle Percent100.0% Ant. Gain dBi6.12 Coax Loss dB5.82 Min. Distance Inches4.96 Min. Distance Centimeters12.60 ERP (Watts)1.2166 EIRP (Watts)1.9952 REFERENCE DAT A Pout dBm32.70 FCC Limit (mw/cm 2 ) 1.00 Calculated limit (mw/cm 2 ) 1.00 NOTES : (1) Valid only between 300 MHz - 100,000 MHz. RESULTS OF CALCULATIONS (2) Calculations are sufficient for determining antenna safe distance for mobile antennas and fixed inside antennas provided that calculated ERP < 1.5 watts for frequencies equal to or below 1.5 GHz, and calculated ERP < 3 watts for frequencies above 1.5 GHz. (4) There are no predefined ERP and distance limitations forfixed outside(building) antennas. (3) Mobile antenna distances and fixed indoor antenna distances shall be no less than 8 inches. (5) Mobile/portable stations are limited to 2 watts EIRP peak power in the 1900 MHz band (FCC rules Β§24.232[c]). For Amplifier Model Number: Frequency Band (MHz) Mobile or Fixed? Outside or Inside Antenna? Antenna Type: Safe Distance (inches): Signature: Date: Mobile and Fixed 8 Inches January 31, 2011 loss does not exceed 0.3 dBi. Any antenna whose gain less cable Outside 1900 MHz SUMMARY FOR PUBLICATION 2B1225 (4) There are no predefined ERP and distance limitations for fixed outside(building) antennas. 2/2/2011, 2:11 PM2B1225 Omni 1900 MPE.xls
Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz824 Pout Watts1.41300 Duty Cycle Percent100.0% Ant. Gain dBi13.00 Coax Loss dB0.00 Min. Distance Inches25.16 Min. Distance Centimeters63.91 ERP (Watts)17.1909 EIRP (Watts)28.1931 REFERENCE DAT A Pout dBm31.50 FCC Limit (mw/cm 2 ) f/1500 Calculated limit (mw/cm 2 ) 0.55 NOTES : (1) Valid only between 300 MHz - 100,000 MHz. RESULTS OF CALCULATIONS (2) Calculations are sufficient for determining antenna safe distance for mobile antennas and fixed inside antennas provided that calculated ERP < 1.5 watts for frequencies equal to or below 1.5 GHz, and calculated ERP < 3 watts for frequencies above 1.5 GHz. (4) There are no predefined ERP and distance limitations forfixed outside(building) antennas. (3) Mobile antenna distances and fixed indoor antenna distances shall be no less than 8 inches. (5) Mobile/portable stations are limited to 2 watts EIRP peak power in the 1900 MHz band (FCC rules Β§24.232[c]). For Amplifier Model Number: Frequency Band (MHz) Mobile or Fixed? Outside or Inside Antenna? Antenna Type: Safe Distance (inches): Signature: Date: Fixed 26 Inches January 31, 2011 loss does not exceed 13 dBi. Any antenna whose gain less cable Outside 800 MHz SUMMARY FOR PUBLICATION 2B1225 (4) There are no predefined ERP and distance limitations for fixed outside(building) antennas. 2/2/2011, 2:12 PM2B1225 Yagi 800 MPE.xls
Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz1850 Pout Watts1.86200 Duty Cycle Percent100.0% Ant. Gain dBi14.00 Coax Loss dB0.00 Min. Distance Inches24.02 Min. Distance Centimeters61.01 ERP (Watts)28.5191 EIRP (Watts)46.7713 REFERENCE DAT A Pout dBm32.70 FCC Limit (mw/cm 2 ) 1.00 Calculated limit (mw/cm 2 ) 1.00 NOTES : (1) Valid only between 300 MHz - 100,000 MHz. RESULTS OF CALCULATIONS (2) Calculations are sufficient for determining antenna safe distance for mobile antennas and fixed inside antennas provided that calculated ERP < 1.5 watts for frequencies equal to or below 1.5 GHz, and calculated ERP < 3 watts for frequencies above 1.5 GHz. (4) There are no predefined ERP and distance limitations forfixed outside(building) antennas. (3) Mobile antenna distances and fixed indoor antenna distances shall be no less than 8 inches. (5) Mobile/portable stations are limited to 2 watts EIRP peak power in the 1900 MHz band (FCC rules Β§24.232[c]). For Amplifier Model Number: Frequency Band (MHz) Mobile or Fixed? Outside or Inside Antenna? Antenna Type: Safe Distance (inches): Signature: Date: Fixed 26 Inches January 31, 2011 loss does not exceed 14 dBi. Any antenna whose gain less cable Outside 1900 MHz SUMMARY FOR PUBLICATION 2B1225 (4) There are no predefined ERP and distance limitations for fixed outside(building) antennas. 2/2/2011, 2:13 PM2B1225 Yagi 1900 MPE.xls
INDUSTRY CANADA RSS-131 AND FCC PART 22H AND PART 24E TEST REPORT Applicant Wilson Electronics, Inc. Address 3301 E. Deseret Drive St. George, Utah 84790 USA FCC ID PWO2B1225 IC Label IC: 4726A-2B1225 Model Number 2B1225 Product Description Dual-Band Bi-Directional Wireless Amplifier Date Sample Received 1/4/2011 Date Tested 1/5/2011 Tested By Nam Nguyen Approved By Mario de Aranzeta Report No. 25AUT11TestReport.pdf 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: PWO2B1225, IC: 4726A-2B1225 Repot #:Z:\W\WILSON_PWO\25AUT11\25AUT11TestReport.doc Page 2 of 71 TABLE OF CONTENTS ATTESTATION STATEMENT ............................................................................ 5 REPORT SUMMARY ........................................................................................ 6 TEST ENVIRONMENT ..................................................................................... 6 TEST SETUP ................................................................................................... 6 DEVICE UNDER TEST INFORMATION ............................................................ 7 EQUIPMENT LIST ........................................................................................... 8 TEST PROCEDURE ......................................................................................... 9 RF POWER OUTPUT (conducted) ................................................................... 12 Test Data Table 1 β Output Power β CDMA 1900 β Uplink/Downlink .................. 12 Test Data Table 2 β Output Power β EDGE 1900 β Uplink/Downlink .................. 12 Test Data Table 3 β Output Power β GSM 1900 β Uplink/Downlink .................... 12 Test Data Table 4 β Output Power β WCDMA 1900 β Uplink/Downlink ............... 12 Test Data Table 5 β Output Power β CDMA 800 β Uplink/Downlink .................... 13 Test Data Table 6 β Output Power β EDGE 800 β Uplink/Downlink .................... 13 Test Data Table 7 β Output Power β GSM 800 β Uplink/Downlink ...................... 13 Test Data Table 8 β Output Power β WCDMA 800 β Uplink/Downlink ................. 13 INPUT/OUTPUT MODULATED AMPLITUDE COMPARISON AND BAND-EDGES COMPLIANCE ............................................................................................... 14 Test Data Table 9 β CDMA/EVDO 1900 β Uplink/Downlink ............................... 15 Figure 1: CDMA β In vs. Out 1851.25MHz ............................................... 15 Figure 2: CDMA β In vs. Out 1908.75MHz ............................................... 16 Figure 3: CDMA β In vs. Out 1931.25MHz ............................................... 17 Figure 4: CDMA β In vs. Out 1988.75MHz ............................................... 18 Test Data Table 10 β WCDMA/HSPA 1900 β Uplink/Downlink ........................... 19 Figure 5: WCDMA β In vs. Out 1852.80 MHz ........................................... 19 Figure 6: WCDMA β In vs. Out 1907.20 MHz ........................................... 20 Figure 7: WCDMA β In vs. Out 1932.80 MHz ........................................... 21 Figure 8: WCDMA β In vs. Out 1977.20 MHz ........................................... 22 Test Data Table 11 β EDGE 1900 β Uplink/Downlink ......................................... 23 Figure 9: EDGE β In vs. Out 1850.20MHz ............................................... 23 Figure 10: EDGE β In vs. Out 1909.80MHz ............................................. 24 Figure 11: EDGE β In vs. Out 1930.20MHz ............................................. 25 Figure 12: EDGE β In vs. Out 1989.80MHz ............................................. 26 Test Data Table 12 βGSM 1900 β Uplink/Downlink ............................................ 27 Figure 13: GSM β In vs. Out 1850.20MHz ............................................... 27 Figure 14: GSM β In vs. Out 1909.80MHz ............................................... 28 Figure 15: GSM β In vs. Out 1930.20MHz ............................................... 29 Figure 16: GSM β In vs. Out 1989.80MHz ............................................... 30 Test Data Table 13 β CDMA/EVDO 800 β Uplink/Downlink ............................... 31 Figure 17: CDMA β In vs. Out 825.25MHz ............................................... 31 Figure 18: CDMA β In vs. Out 847.75 MHz .............................................. 32 APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO2B1225, IC: 4726A-2B1225 Repot #:Z:\W\WILSON_PWO\25AUT11\25AUT11TestReport.doc Page 3 of 71 Figure 19: CDMA β In vs. Out 870.25 MHz .............................................. 33 Figure 20: CDMA β In vs. Out 892.75 MHz .............................................. 34 Test Data Table 14 β WCDMA/HSPA 800 β Uplink/Downlink ............................. 35 Figure 21: WCDMA β In vs. Out 826.80 MHz ........................................... 35 Figure 22: WCDMA β In vs. Out 846.20 MHz ........................................... 36 Figure 23: WCDMA β In vs. Out 871.80 MHz ........................................... 37 Figure 24: WCDMA β In vs. Out 891.20 MHz ........................................... 38 Test Data Table 15 β EDGE 800 β Uplink/Downlink ........................................... 39 Figure 25: EDGE β In vs. Out 824.20 MHz .............................................. 39 Figure 26: EDGE β In vs. Out 848.80 MHz .............................................. 40 Figure 27: EDGE β In vs. Out 869.20 MHz .............................................. 41 Figure 28: EDGE β In vs. Out 893.80 MHz .............................................. 42 Test Data Table 16 β GSM 800 β Uplink/Downlink ............................................. 43 Figure 29: GSM β In vs. Out 824.2 MHz .......................β¦
Text truncated - open the document above for the full version.
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 12 | 22H | 869 MHz - 894 MHz | 600.00 Β΅W | GXW | Amp |
Single Band Bi-Directional Amplifier
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)5G NR Industrial Signal Booster
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Quint Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Dual Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Quint Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)