
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Need help?www.WilsonElectronics.com Tech Support 866-294-1660 Mon.- Fri. Hours: 7 am to 6 pm MST MobilePro ® Cellular Signal Booster 460113 2 Need help?www.WilsonElectronics.com Tech Support 866-294-1660 Mon.- Fri. Hours: 7 am to 6 pm MST Contents Package Contents . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 Optional Accessories . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 Installation Options . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 Vehicle Installation Option . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .3 In-Building Installation Option . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .5 Understanding the MobilePro Light . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6 Recommended Additional FAQ . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .6 Safety and Recommendations . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .8 Signal Booster Specifications . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .9 Guarantee and Warranty . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . .Back Cover IT IS VERY IMPORTANT TO POWER YOUR SIGNAL BOOSTER USING A SURGE PROTECTED AC POWER STRIP WITH AT LEAST A 1000 JOULE RATING. FAILURE TO DO THIS WILL VOID YOUR WARRANTY IN THE EVENT OF A POWER SURGE OR LIGHTNING STRIKE . !! THE SIGNAL BOOSTER UNIT IS DESIGNED FOR USE IN AN INDOOR, TEMPERATURE- CONTROLLED ENVIRONMENT (LESS THAN 150 DEGREES FAHRENHEIT) . IT IS NOT INTENDED FOR USE IN ATTICS OR SIMILAR LOCATIONS SUBJECT TO TEMPERATURES IN EXCESS OF 150°F . Installation Instructions for the Following Wilson Electronics Signal Booster: MobilePro ® Dual-Band Wireless Smart Technology ™ Signal Booster Model # 460013 FCC ID: PWO460013 IC: 4726A-460013 The term “IC” before the radio certification number only signifies that Industry Canada technical specifications were met . 3 Need help?www.WilsonElectronics.com Tech Support 866-294-1660 Mon.- Fri. Hours: 7 am to 6 pm MST To purchase call 800-204-4104 or go to www.WilsonElectronics.com Refer to page 7 for additional Antenna Kit Options 12” Antenna (311103) Marine Antenna (311130-5810) Trucker Antenna (311133) Mobile Power Supply (859984) Optional Antennas Kits Gooseneck Suction Cup Cradle Mount (901120) Cup Holder Cradle Mount (901130) Adjustable Desk Mount (901137) Mounting Options Installation Options Before you start your installation, read through each step of the instructions . Also, watch the installation video at wilsonelectronics .com/ MobileProvideo . You can install MobilePro in your vehicle, in your home, office, or in a hotel room or other building using the following steps . Vehicle Installation Option 1 . Install the Outside Antenna . Select a location on top of the car that is: • On a magnetic surface, preferably near the center of the vehicle’s roof . • At least 12 inches from any other antennas . • Free of obstructions. • At least 6 inches from any windows (including sunroofs) . • At least 8 inches from any people. The Outside Antenna must be installed vertically . 2 . Run the Outside Antenna cable into the car . The cable is strong enough that it may be shut in most vehicle doors without damaging the cable . For a cleaner look, carefully pull down the door seal, run the cable under the seal, and push the seal back into place . This method reduces wear on the cable as the door opens and closes . Optional Accessories Wireless Signal Booster Mini-Magnet Mount Antenna (301126) AC DC Power Supply (859969) USB power cable with power power adapter (859963) Antenna Window Mount (901128) Package Contents Carrying case included Appearance of device and accessories may vary . Mobile Power Supply Vehicle Dash Mounting Kit -Rugged/Screw Mount -Adhesive Mount -Vent Clip Mount -Alcohol Prep Pad 4 Need help?www.WilsonElectronics.com Tech Support 866-294-1660 Mon.- Fri. Hours: 7 am to 6 pm MST 3 . Attach the Adhesive Mounting Bracket to the vehicle’s dashboard . • Clean the area where the bracket is to be mounted with the alcohol wipe included . Allow the area to dry . • Peel the backing to expose the adhesive and press the bracket onto the desired location on the dashboard . NOTE: Be sure the tab is positioned vertically . • Allow the adhesive to cure for 24 hours before you attach the MobilePro (Step 4) . 4 . Attach the MobilePro signal booster to the Mounting Bracket . After waiting 24 hours for the adhesive on the bracket to cure, attach the signal booster by aligning the rectangular hole on the back of the signal booster with the tab on the Mounting Bracket, grasping the sides of the signal booster, and sliding it downward approximately ¼ inch into place. The Mounting Bracket is designed to swivel for more convenient viewing angles . Once the signal booster is in place, you can adjust the angle of the bracket by loosening the knurled nut, applying gentle pressure to the top or bottom of the signal booster, and then tightening the nut when the desired angle is achieved . 5 . Attach the antenna cable to the antenna connector on the bottom of the signal booster . The antenna cable must be connected before going to the next step. 6 . Power up your MobilePro . Connect the power cable to the mini-USB port on the bottom of the signal booster . Connect the other end of the power cord to the DC adapter and insert the adapter into the vehicle 12V DC power source . Use only the supplied Wilson Electronics power supply . While the MobilePro may remain on, leaving the MobilePro on in a vehicle when it is not running may discharge the battery in a day or two . Also note that some 12V DC power sources are shut down when the vehicle ignition is turned to off . Alternative Mounting for Weak…
Text truncated - open the document above for the full version.
January 13, 2014 Attestation For Wilson Signal Booster: FCC ID PWO460013 Signal Boosters certificated under FCC ID PWO460013 are manufactured and tested to ensure FCC compliance: (1) Licensee consent is not required for FCC certification equipment authorization purposes, but licensee consent does remain applicable per 20.21 provisions for both provider specific and wideband boosters. (2) NPS and other compliance/safeguard features have been implemented. (3) NPS and other compliance/safeguard features are defaulted to be “On” (in operation). (4) NPS and other compliance/safeguard features cannot be field reconfigured, disabled, or removed. (5) This consumer booster is not user programmable, does not need fine tuning or adjustment, and does not require professional installation. (6) Future software upgrade will not cause non-compliance. Sincerely, Patrick L. Cook Senior Research and Development Engineer
December 13, 2013 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Subject: Data Confidentiality To Whom It May Concern: Wilson Electronics, Inc. respectfully requests confidentiality of certain documentation provided with the submission of our model 460013 Signal Booster under FCC ID: PWO460013 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 2. Operational Description 3. Block Diagram 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
December 15, 2013 To: Whom it May Concern Subject: Final Amplification Stage Voltage and Current Please note that the maximum voltages and currents for the final amplification stages of the Model 460013 Signal Booster are: Uplink Amplifier (824-849 MHz): 4.3 V, 0.5 A Downlink Amplifier (869-894 MHz): 4.3 V, 0.5 A Uplink Amplifier (1850-1910 MHz): 4.3 V, 0.5 A Downlink Amplifier (1930-1990 MHz): 4.3 V, 0.5 A Patrick L. Cook Senior Research and Development Engineer
January 27, 2014 To: Whom it May Concern Subject: Alternative Warning Label Placement This letter is to request alternative warning label placement for the signal booster model number 460013. The signal booster is too small to fit the warning label as can be seen from the Label Placement and External Photos exhibits. Instead, the warning can be found in the User Manual. Sincerely, Patrick L. Cook Senior Research and Development Engineer
Page 1 of 1 FCC ID: PWO460013 IC ID: N/A CT Project: P1350024 From: Daniel Park Date: 1/31/14 1. The Antenna Kittings and User manual indicate two different types of inside antennas. However, none of exhibits describe how the inside antenna may be connected to Booster device. Please provide more details on inside antenna installation and location in the device. Wilson: Please refer to exhibits External Photos_PWO460013_Rev1, Label & Location_Rev2_PWO460013, Operational Description_PWO460013_Rev1. 2. Due to the fact of intended use of this booster device, the booster unit will be used with any types of wireless devices inside of car. Therefore, the RF exposure for simultaneous transmissions of phone and booster should be addressed in this case. Please provide the RF exposer data for simultaneous transmission and show FCC compliance. Wilson: Please refer to exhibit RF Exposure_MPE Exposure_PWO460013_Rev. 1. 3. At the page 45 of RF Test Report states that the inactive state limit threshold at -59 dBm. It should be -70 dBm base on 20.21(e )(8) (i) (I) rule part. Please verify and correct the test result as necessary. CT: -70 dBm is the correct limit, test report has been changed. Please refer to Test Report Rev 3. Response by: Wilson Electronics & CTL Submitted by: CTL Date: 2/3/14
Page 1 of 1 FCC ID: PWO460013 IC ID: N/A CT Project: P1350024 From: Daniel Park Date: 2/3/14 1. The revised external photo shows some kinds of antenna port(or connector) for the inside antennas. But, it didn’t give further. Based on the antenna kitting, this booster could have two different “inside antenna” options. However, the manufacture didn’t specify whether end user can swap or install the inside antennas among those two and how. Please provide more detail how the inside antenna will be installed or controlled by Wilson or end user. Wilson: Please refer to revised Operational Description Rev 2 exhibit. 2. In the revised RF exposure, the table contents of Radiation Safety were split into two pages and unknown characters. Could you revise the table please? Wilson: Please refer to the RF Exposure MPE Rev 2 exhibit. Response by: Wilson Electronics Submitted by: CTL Date: 2/5/14
December 11, 2013 Tuning and Adjustment of Wilson Model 460013 Signal Booster There are no external tuning adjustments. The amplifier is factory set to not exceed maximum gains, power levels, and downlink dependent region (RSSI) set points as provided in the test results. Sincerely, Patrick L. Cook Senior Research and Development Engineer
October 17, 2013 Subject: Antenna Kitting Re: FCC ID: PWO460002 To Whom It May Concern: The antenna kitting options for model 460002 signal booster were done for 18 Outside Antenna kit options and 2 Inside Antenna kit options. The order of the attached calculations is as follows: Outside Antenna Kit Options: 1. Kit Numbers 311103, 311125, 311128, 314202: Magnet Mount Antennas with 12.5’ RG-174 2. Kit Numbers 311113, 311126: Mini-Magnet Mount Antennas with 12.5’ RG-174 3. Kit Number 311101: Trucker Antenna with 10.5’ RG-58 3 4. Kit Number 311701: Trucker Antenna with 10.5’ RG-58 5. Kit Number 311119: Trucker Antenna with 13.5’ RG-58 6. Kit Number 311133: Trucker Antenna with 13.5’ RG-58 7. Kit Number 311104-17410: NMO Antenna with 10’ RG-174 8. Kit Number 311112-17410: NMO Antenna with 10’ RG-174 9. Kit Number 314203-17410: NMO Antenna with 10’ RG-174 10. Kit Number 311104-5810: NMO Antenna with 10’ RG-58 11. Kit Number 311112-5810: NMO Antenna with 10’ RG-58 12. Kit Number 314203-5810: NMO Antenna with 10’ RG-58 13. Kit Number 311104-40015: NMO Antenna with 15’ LMR 400 14. Kit Number 311104-40015: NMO Antenna with 15’ LMR 400 15. Kit Number 311104-40015: NMO Antenna with 15’ LMR 400 16. Kit Number 311130-5810: Marine Antenna with 10’ RG-58 17. Kit Number 311114: Mini-Glass Mount Antenna with 14’ RG-58 18. Kit Number 311102: Glass Mount Antenna with 14’ RG-58 Inside Antenna Kit Options: 1. Kit Number 311127: Slim Low Profile Antenna with 10’ RG-174 2. Kit Number 311106: Low Profile Antenna with 14’ RG-58 Sincerely, Patrick L. Cook Senior Research and Development Engineer Final Output Power Limited to 30 dBm EIRP in all frequency bandsFinal Output Power Limited to 30 dBm EIRP in all frequency bands Uplink Frequency (MHz)824-8491850-1910Uplink Frequency (MHz)824-8491850-1910 Uplink Output Power (dBm)23.423.4Uplink Output Power (dBm)23.423.4 1Magnet Mount w/12.5' RG-17410NMO Antenna w/10' RG-58 Antenna Gains (dBi)1.972.51Antenna Gains (dBi)2.481.8 Coax Loss (dB)3.74.7Coax Loss (dB)1.32.1 Final Gain less Loss (dB)-1.73-2.19Final Gain less Loss (dB)1.18-0.3 Output Power plus Final Gain (dBm EIRP)21.6721.2Output Power plus Final Gain (dBm EIRP)24.5823.1 Kit Numbers: 311103, 311125, 311128, 314202Kit Number: 311104-5810 2Mini-Mag Mount w/12.5' RG-17411NMO Antenna w/10' RG-58 Antenna Gains (dBi)-1.921.85Antenna Gains (dBi)2.47-0.65 Coax Loss (dB)3.74.7Coax Loss (dB)1.32.1 Final Gain less Loss (dB)-5.62-2.85Final Gain less Loss (dB)1.17-2.75 Output Power plus Final Gain (dBm EIRP)17.7820.6Output Power plus Final Gain (dBm EIRP)24.5720.65 Kit Numbers: 311113, 311126Kit Number: 311112-5810 3Trucker Antenna w/10.5' RG-5812NMO Antenna w/10' RG-58 Antenna Gains (dBi)1.726.12Antenna Gains (dBi)1.820.75 Coax Loss (dB)1.42.3Coax Loss (dB)1.32.1 Final Gain less Loss (dB)0.33.8Final Gain less Loss (dB)0.5-1.4 Output Power plus Final Gain (dBm EIRP)23.727.2Output Power plus Final Gain (dBm EIRP)23.922.1 Kit Number: 311101Kit Number: 314203-5810 4Trucker Antenna w/10.5' RG-5813NMO Antenna w/15'LMR 400 Antenna Gains (dBi)2.182.66Antenna Gains (dBi)2.481.8 Coax Loss (dB)1.42.3Coax Loss (dB)0.91.3 Final Gain less Loss (dB)0.780.36Final Gain less Loss (dB)1.60.5 Output Power plus Final Gain (dBm EIRP)24.1823.8Output Power plus Final Gain (dBm EIRP)25.023.9 Kit Number: 311701Kit Number 311104-40015 5Trucker Antenna w/13.5' RG-5814NMO Antenna w/15'LMR 400 Antenna Gains (dBi)1.213.57Antenna Gains (dBi)2.47-0.65 Coax Loss (dB)1.72.9Coax Loss (dB)0.91.3 Final Gain less Loss (dB)-0.490.67Final Gain less Loss (dB)1.57-1.95 Output Power plus Final Gain (dBm EIRP)22.9124.07Output Power plus Final Gain (dBm EIRP)24.9721.45 Kit Number: 311119Kit Number 311112-40015 6Trucker Antenna w/13.5' RG-5815NMO Antenna w/15'LMR 400 Antenna Gains (dBi)1.154.22Antenna Gains (dBi)1.820.75 Coax Loss (dB)1.72.9Coax Loss (dB)0.91.3 Final Gain less Loss (dB)-0.61.3Final Gain less Loss (dB)0.9-0.6 Output Power plus Final Gain (dBm EIRP)22.924.7Output Power plus Final Gain (dBm EIRP)0.9-0.6 Kit Number: 311133Kit Number 314203-40015 7NMO Antenna 10' RG-17416Marine Antenna w/10' RG-58 Antenna Gains (dBi)2.481.8Antenna Gains (dBi)0.653.57 Coax Loss (dB)3.03.8Coax Loss (dB)1.32.1 Final Gain less Loss (dB)-0.52-2Final Gain less Loss (dB)-0.641.43 Output Power plus Final Gain (dBm EIRP)22.8821.4Output Power plus Final Gain (dBm EIRP)22.824.8 Kit Number: 311104-17410Kit Number: 311130-5810 8NMO Antenna 10' RG-17417Mini-Glass Mount w/14' RG-58 Antenna Gains (dBi)2.47-0.65Antenna Gains (dBi)-5.391.44 Coax Loss (dB)3.03.8Coax Loss (dB)1.83.0 Final Gain less Loss (dB)-0.53-4.45Final Gain less Loss (dB)-7.19-1.56 Output Power plus Final Gain (dBm EIRP)22.8718.95Output Power plus Final Gain (dBm EIRP)16.221.8 Kit Number: 311112-17410Kit Number: 311114 9NMO Antenna 10' RG-17418Glass Mount w/14' RG-58 Antenna Gains (dBi)1.820.75Antenna Gains (dBi)-0.863.39 Coax Loss (dB)3.03.8Coax Loss (dB)1.83.0 Final Gain less Loss (dB)-1.2-3.1Final Gain less Loss (dB)-2.660.39 Output Power plus Final Gain (dBm EIRP)22.220.4Output Power plus Final Gain (dBm EIRP)20.7423.8 Kit Number: 314203-17410Kit Number: 311102 Mobile Outside Antenna Kit Options FCC ID: 460002 Uplink Frequency Band (MHz) 824-8491850-1910 Measured Uplink Gain (dB) 46.0042.60 Measured RSSI Shutoff (dBm/MHz) -55.60-47.70 MSCL Minimum (dB) 24.4028.90 1.5' Separation Distance Path Loss (dB) 24.1231.15 Polarity Loss (dB) 3.03.0 Max Antenna Gain Less Cable Loss (dB) 2.725.25 Inside Antenna Kit 311127: Slim Low Profile w/10' RG-174 Antenna Gain Less Cable Loss (dB) -2.0-2.1 Margin (dB) -4.68-7.35 Inside Antenna Kit 311106: Low Profile w/14' RG-58 Antenna Gain Less Cable Loss (dB) -2.0-2.1 Margin (dB) -4.68-7.35 FCC ID: PWO460002
February 3, 2014 Subject: RF MPE EXPOSURE Re: FCC ID: PWO460013 To Whom It May Concern: The MPE calculations for model 460013 signal booster were done for each frequency band: 800 MHz and 1900 MHz. For each band two calculations wer done; these included the different possibilities of antennas that may be connected to this signal booster: inside antennas and mobile outside antennas. The order of the attached calculations is as follows: 800 MHz band: 1. Mobile Outside Antenna: 311104 2. Inside Antenna: 311127 1900 MHz band: 3. Mobile Outside Antenna: 311101 4. Inside Antenna: 311106 Radiation Safety 5. Calculated Combined Power Density A booster’s uplink power must not exceed 1 watt equivalent isotropic radiated power (EIRP) for each band of operation. Composite downlink power must not exceed 0.05 watt EIRP for each band of operation ( 20.21(e)(8)(i)(D)). The following formula was used to calculate the equivalent isotropic radiated power: EIRP= Power Out (Watts)*Duty Cycle Percent*Antenna Gain (non-log)*Coax loss (non-log) The power density (mW/cm 2 ) is calculated using the following formula: Calculated Power Density=1000*EIRP (Watts)/(4*π*(Distance from Antenna (cm)^2)) Sincerely, Patrick L. Cook Senior Research and Development Engineer Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources 2/3/2014, 3:15 PM4600013 800 MHz Outside INPUT DATA Frequency MHz824 Pout Watts0.48641 Duty Cycle Percent100.0% Ant. Gain dBi2.48 Coax Loss dB0.00 Distance From Antenna In cm20.3 Ant. Gain less Coax Loss dBi2.48 Distance From Antenna In Inches8.00 EIRP (Watts)0.8610 FCC Power Density Limit (mw/cm 2 ) 0.55 Calculated Power Density (mw/cm 2 ) 0.1661 REFERENCE DATA Pout dBm26.87 Antenna Gain (non-log)1.77 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 Antenna # 311104 RESULTS OF CALCULATIONS Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources 2/3/2014, 3:15 PM4600013 800 MHz Inside INPUT DATA Frequency MHz869 Pout Watts0.00045 Duty Cycle Percent100.0% Ant. Gain dBi2.19 Coax Loss dB0.00 Distance From Antenna In cm20.3 Ant. Gain less Coax Loss dBi2.19 Distance From Antenna In Inches8.00 EIRP (Watts)0.0007 FCC Power Density Limit (mw/cm 2 ) 0.58 Calculated Power Density (mw/cm 2 ) 0.0001 REFERENCE DATA Pout dBm-3.50 Antenna Gain (non-log)1.66 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 Antenna # 311127 RESULTS OF CALCULATIONS Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources 2/3/2014, 3:15 PM4600013 1900 MHz Outside INPUT DATA Frequency MHz1850 Pout Watts0.41305 Duty Cycle Percent100.0% Ant. Gain dBi6.12 Coax Loss dB2.30 Distance From Antenna In cm20.3 Ant. Gain less Coax Loss dBi3.82 Distance From Antenna In Inches8.00 EIRP (Watts)0.9954 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.1920 REFERENCE DATA Pout dBm26.16 Antenna Gain (non-log)4.09 Coax loss (non-log)0.59 General FCC Limit (mw/cm 2 ) 1.00 Antenna # 311101 RESULTS OF CALCULATIONS Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources 2/3/2014, 3:15 PM4600013 1900 MHz Inside INPUT DATA Frequency MHz1930 Pout Watts0.00166 Duty Cycle Percent100.0% Ant. Gain dBi0.89 Coax Loss dB0.00 Distance From Antenna In cm20.3 Ant. Gain less Coax Loss dBi0.89 Distance From Antenna In Inches8.00 EIRP (Watts)0.0020 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.0004 REFERENCE DATA Pout dBm2.20 Antenna Gain (non-log)1.23 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) 1.00 Antenna # 311106 RESULTS OF CALCULATIONS Radiation Safety - Combined Radiation From Amplifier and Cell Phone INPUT DATA Frequency MHz (Uplink)8241850 Radiated Power (W atts)0.486410.41305 Duty Cycle Percent100.0%100.0% Distance From Antenna In cm20.320.3 RESULTS OF CALCULATIONS Distance From Antenna In Inches8.008.00 EIRP (W atts)0.48640.4131 FCC Power Density Limit (mw/cm 2 ) 0.551.00 Calculated Power Density (mw/cm 2 ) 0.090.08 Frequency MHz8691930 Pout W atts0.000450.00166 Duty Cycle Percent100.0%100.0% Ant. Gain dBi2.190.89 Coax Loss dB0.000.00 Distance From Antenna In cm20.320.3 RESULTS OF CALCULATIONS Ant. Gain less Coax Loss dBi2.190.89 Distance From Antenna In Inches8.008.00 EIRP (W atts)0.000750.00204 FCC Power Density Limit (mw/cm 2 ) 0.581.00 Calculated Power Density (mw/cm 2 ) 0.000140.00039 (Determined by Most limiting factors) FCC Power Density Limit (mw/cm2)0.551.00 Combined Power Density for Phone and Amp (mw/cm 2 ) 0.090.08 Calculated Power Density and Minimum Safe Distance For Cellular Phones (Uplink) Calculated Power Density and Minimum Safe Distance For Amplifier (Downlink) Calculated Combined Power Density and For Amplifier and Phone at 20.31 cm (8.0 in.) 2/5/2014, 10:03 AM460013 Power Density for Sleek DL with Phones UL
November 19, 2013 To: Whom it May Concern Subject: Calculated Mobile Station Coupling Losses (MSCL) For FCCID: PWO460013 The following formulas were used to calculate MSCL with a 1.5’ foot path loss and a 45 degree polarity mismatch between the inside antenna and the mobile device: Path Loss dB = 36.6 dB + 20Log(F MHz) dB+ 20Log(D miles ) dB Polarity Loss dB = 10Log(E 1 /E 2 ) 2 dB = P L dB P L dB= 10Log(E 1 2 /(E 1 Sin(45 deg )) 2 ) dB = 20Log(1/Sin(45 deg )) dB = 3.01dB Where: E 1 = Maximum Possible Magnitude of the Electric Field from the Mobile Device E 2 = Magnitude of the electric field from the Mobile device with a 45deg polarity mismatch = E 1 Sin( MSCL dB = Path Loss dB + Polarity Loss dB - Antenna Gain dB The results of the calculations are shown in the following table: Note: Antenna Gain with Coax Loss as measured. Sincerely Patrick L. Cook Senior Electrical Engineer Uplink Center Frequency MHz 836.5 1880 Path Loss (dB) 24.12 31.15 Polarity Loss (dB) 3 3 Antenna Gain with Coax Loss -1.7 -0.7 MSCL (dB) 28.82 34.85 E 1 E 2 45deg
p1350024_FCC_Part 20_Rev 3.0 Page 1 of 74 Test Report Prepared for: Wilson Electronics, Inc. Model: 460013 Description: Dual Band Mobile Signal Booster FCC ID: PWO460013 To FCC Part 20 Date of Issue: December 2, 2013 On the behalf of the applicant: Wilson Electronics, Inc. 3301 E Deseret Drive St. George, UT 84790 To the attention of: Pat Cook, Sr. Electrical Engineer Ph: (435) 673-5021 Email: [email protected] Prepared By Compliance Testing, LLC 1724 S. Nevada Way Mesa, AZ 85204 (480) 926-3100 phone / (480) 926-3598 fax www.compliancetesting.com Project No: p1350024 Mike Graffeo Project Test Engineer This report may not be reproduced, except in full, without written permission from Compliance Testing All results contained herein relate only to the sample tested p1350024_FCC_Part 20_Rev 3.0 Page 2 of 74 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 12/2/2013 Mike Graffeo Original Document 2.0 1/28/2014 Mike Graffeo Updated Conducted Emissions rule sections in the test summary table on page 6 to match the new eCFR rule sections dated January 7, 2014. 2.0 2/3/2014 Mike Graffeo Updated limit for uplink inactivity, page 45. p1350024_FCC_Part 20_Rev 3.0 Page 3 of 74 Table of Contents Description Page Standard Test Conditions and Engineering Practices 5 Test Result Summary 6 Authorized Frequency Band 7 Maximum Power and Gain 10 Intermodulation 12 Out-of-Band Emissions 15 Conducted Spurious Emissions 31 Noise Limits 38 Uplink Inactivity 45 Variable Gain 47 Occupied Bandwidth 51 Oscillation Detection 64 Radiated Spurious 72 Test Equipment Utilized 74 p1350024_FCC_Part 20_Rev 3.0 Page 4 of 74 ILAC / A2LA Compliance Testing, LLC, has been accredited in accordance with the recognized International Standard ISO/IEC 17025:2005. This accreditation demonstrates technical competence for a defined scope and the operation of a laboratory quality management system (refer joint ISO-ILAC-IAF Communiqué dated January 2009) The tests results contained within this test report all fall within our scope of accreditation, unless noted below. Please refer to http://www.compliancetesting.com/labscope.html for current scope of accreditation. Testing Certificate Number: 2152.01 FCC OATS Reg, #933597 IC Reg. #2044A-1 Non-accredited tests contained in this report: N/A p1350024_FCC_Part 20_Rev 3.0 Page 5 of 74 Test and Measurement Data Subpart 2.1033(c)(14): All tests and measurement data shown were performed in accordance with FCC Rules and Regulations, Part 2, Subpart J and the following individual Parts: 20.21 in conjunction with latest version of KDB 935210. Standard Test Conditions and Engineering Practices Except as noted herein, the following conditions and procedures were observed during the testing. In accordance with ANSI/C63.4-2009, and unless otherwise indicated in the specific measurement results, the ambient temperature of the actual EUT was maintained within the range of 10° to 40°C (50° to 104°F) unless the particular equipment requirements specify testing over a different temperature range. Also, unless otherwise indicated, the humidity levels were in the range of 10% to 90% relative humidity. Environmental Conditions Temp (ºC) Humidity (%) Pressure (mbar) 24.9 – 31.0 33.5 – 63.0 985.5 - 943.0 Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: 460013 Description: Dual Band Mobile Signal Booster Firmware: A460013A Software: 460013A Additional Information: The EUT is a bi-directional amplifier for the boosting of cellular phone signals and data communication devices in a mobile application. The following frequency bands and emission types are utilized. Frequency Band (MHz) Uplink 824 - 849 1850 - 1910 Downlink 869 - 894 1930 - 1990 Emission Designators CDMA HSPA LTE EVDO EDGE GSM F9W F9W G7D F9W G7W GXW EUT Operation during Tests The EUT was in a normal operating condition. p1350024_FCC_Part 20_Rev 3.0 Page 6 of 74 Test Result Summary Specification Test Name Pass, Fail, N/A Comments 20.21(e)(3) Authorized Frequency Band Pass 20.21(e)(8)(i)(B) 20.21(e)(8)(i)(C) 20.21(e)(8)(i)(D) Maximum Power and Gain Pass 20.21(e)(8)(i)(F) Intermodulation Pass 20.21(e)(8)(i)(E) Out-of-Band Emissions Pass 2.1051 22.917(a) 24.238((a) Conducted Spurious Emissions Pass 20.21(e)(8)(i)(A) Noise Limits Pass 20.21(e)(8)(i)(I) Uplink Inactivity Pass 21(e)(8)(i)(C) Variable Gain Pass 2.1049 Occupied Bandwidth Pass 20.21(e)(8)(ii)(A) Oscillation Detection Pass 2.1053 Radiated Spurious Pass 20.21(e)(8)(i)(B) Spectrum Block Filtering N/A This only applies to devices utilizing spectrum block filtering p1350024_FCC_Part 20_Rev 3.0 Page 7 of 74 Authorized Frequency Band Name of Test: Authorized Frequency Band Engineer: Mike Graffeo Test Equipment Utilized: i00331 and i00405 Test Date: 11/22/13 Test Procedure The EUT was connected to a spectrum analyzer through an attenuator with the losses being input into the spectrum analyzer as a combination of reference level offset and correction factor as necessary to ensure accurate readings were obtained. A signal generator was utilized to produce a CW input signal tuned to the center channel of the operational band. The RF input level was increased to a point just prior to the AGC being in control of the power. The Signal generator was set to sweep across 2X the operational band of the EUT while the spectrum analyzer was set to MAX HOLD. Two markers were placed at the edges of the operational band and a third marker was placed at the highest point within the band no closer than 2.5 MHz from the band edge. Test Setup Signal Generator EUT Attenuator Spectrum Analyzer p1350024_FCC_Part 20_Rev 3.0 Page 8 of 74 824 - 849 MHz Band 1850 - 1910 MHz Band p1350024_FCC_Part 20_Rev 3.0 Page 9 of 74 Downlink Test Results 869 - 894 MHz Band 1930 - 1990 MHz Band p1350024_FCC_Part 20_Rev 3.0 Page 10 of 74 Maximum Power and Gain Name of Test: Maximum Power and Gain Engineer: Mike Graffeo Test Equipment Utilized: i00331, i00405, i00412 …
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Page 1 of 1 Test Setup Photos: Conducted RF Test Set-up Radiated Test Set-up
| # | Rule Parts | Frequency Range | Power Output | Emission |
|---|---|---|---|---|
| 16 | 24E | 1.93 GHz - 1.99 GHz | 1.60 mW | G7W |
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)