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  3. PWO460020

PWO460020Quint Band Signal Booster

Wilson Electronics, LLC
Quint Band Signal Booster - FCC ID PWO460020 - Wilson Electronics, LLC
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Application Details

Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Date of Grant
Dec 16, 2014
Application Purpose
Original Equipment
Date of Application
Dec 04, 2014
Equipment Note
Quint Band Signal Booster
Frequency Range
2110.00000000 - 2155.00000000
Company
Wilson Electronics, LLC
Country
United States

Documents & Files

Select a file to view

Users Manual

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Attestation Statements

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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

NEED HELP? support.weboost.com866.294.1660 User Manual Cellular Signal Booster Home 4G A WILSON ELECTRONICS, LLC COMPANY Package Contents 1 Determine Signal Strength 2 STEP 1: Find the dBm Reading on Your Phone 3 STEP 2: Measure Signal Strength: Inside Antenna 4 STEP 3: Measure Signal Strength: Outside Antenna 5 STEP 4: Connect the System 7 Test System: Lights 8 STEP 5: Mount Outside Antenna (Options A, B & C) 10 STEP 6: Last Steps 14 Specifications 15 Safety Guidelines 16 Warranty 17 Antenna Kit Options 18 ______ Index 1 HOME 4G CELL PHONE SIGNAL BOOSTER ______ Package Contents Home 4G Inside Antenna Outside Antenna (2) Cables Cable Connector Window Entry Cable Roof/Pole Mount Bracket Window Mount Bracket Wall Mount Bracket Power Supply 2 CELL PHONE SIGNAL BOOSTER HOME 4G ______ Determine Signal Strength Having an accurate measurement of signal strength in decibels (dBm) is crucial when installing your system. Decibels accurately measure the signal strength you are receiving. Decibels are not linear: A seemingly small increase in dBm can make a huge difference in signal strength! DECIBEL GAINPOWER INCREASE 3dB2 times the power and signal amplification 6dB4 times the power and signal amplification 10dB10 times the power and signal amplification 12dB16 times the power and signal amplification 20dB100 times the power and signal amplification SIGNAL STRENGTHEXCELLENTGOODFAIRPOORDEAD ZONE 3G/1x (typically voice) -70dBm-71 to -85dBm-86 to -100dBm-101 to -109dBm-110dBm 4G/LTE (typically data) -90dBm-91 to -105dBm-106 to -110dBm-111 to -119dBm-120dBm -80 dBm Distance from Cell Tower CELL TOWER Signal Strength GOOD Signal Strength POOR Signal Strength DEAD ZONE Signal Strength EXCELLENT Signal Strength FAIR 3G/1x 4G/LTE -70dBm -90dBm -75dBm -100dBm -90dBm -108dBm -105dBm -115dBm -110dBm -120dBm 3 HOME 4G CELL PHONE SIGNAL BOOSTER Dial *3001#12345#* then press Call. Hold down power button until you see โ€œSlide to Power Offโ€ then release the power button. Hold the Home button until your main screen appears. If you want to check 3G/1x but your iPhone is picking up 4G/ LTE signal, go to Settings>Cellular>Cellular Data Options>En- able LTE>Select Off Settings > About Phone > Status or Network > Signal Strength or Network Type and Strength (exact options wording depends on phone model). ______ Step 1: Find the dBm Reading on Your Phone All Other Phones & Alternate Methods โ€ข https://www.weboost.com/test-mode-instructions/ All Phones: โ€ข Keep track of the network (3G or 4G) phone is connected to. โ€ข Any signal readings you take are valid for that phoneโ€™s carrier. To get readings from other carriers, youโ€™ll need phones from each carrier. โ€ข When system is set-up, you can easily revert back to the โ€œbar displayโ€ by restarting your phone. iPhoneยฎ Androidโ„ข NEED HELP? support.weboost.com866.294.1660 Apple and iPhone are registered trademarks of Apple Inc. Android is a trademark of Google Inc. 4 CELL PHONE SIGNAL BOOSTER HOME 4G ______ Step 2: Measure Signal Strength: Inside Antenna Turn off your cell phoneโ€™s WiFi to ensure you are checking the cellular connection. The dBm reading will be refreshed every 30-60 seconds. Want faster results? Once you have a reading, turn on airplane mode. Wait 15 seconds. Turn off airplane mode. The signal strength reading is refreshed. Walk around your home/office taking signal strength readings until you find the area that has the worst reception. Remember: Place your Inside Antenna in this poor signal area. โ€ข Connect the booster directly to the Inside Antenna. Keep at least 18โ€ of separation between the Inside Antenna and the Booster and face the Inside Antenna away from the Booster. โ€ข Keep the Booster away from direct sunlight, heat (<150ยฐF), moisture and 6โ€ away from oth- er objects (for ventilation). Ensure the Booster is near an outlet. Please note: -100 dBm -95 dBm -90 dBm SIGNAL STRENGTHEXCELLENTGOODFAIRPOORDEAD ZONE 3G/1x (typically voice) -70dBm-71 to -85dBm-86 to -100dBm-101 to -109dBm-110dBm 4G/LTE (typically data) -90dBm-91 to -105dBm-106 to -110dBm-111 to -119dBm-120dBm 5 HOME 4G CELL PHONE SIGNAL BOOSTER Please note: โ€ข The Outside Antenna must be at least 20โ€™ away (horizontal or vertical) from the Inside Antenna. โ€ข Using the minimum required 20โ€™ separation may result in reduced performance. โ€ข To maximize coverage area, if possible place the Outside Antenna directly above the Inside Antenna. โ€ข If the Outside Antenna is outside the building, use the flat Window Entry Cable to connect both rolls of cable. You can use this option during set-up and/or permanently. ______ Step 3: Measure Signal Strength: Outside Antenna IMPORTANT: This is the most critical step of the installation process because it will determine the overall performance of the booster system. Repeat the previous step OUTSIDE your home/office to find best available signal strength in dBm. This is where you should place your Outside Antenna. IMPORTANT: The further apart the Inside Antenna is located from the Outside Antenna, the better. To determine the best location for your Outside Antenna, note the dBm reading in a variety of locations: Increase horizontal and/or vertical distance over 20โ€™ for better performance. ! 6 CELL PHONE SIGNAL BOOSTER HOME 4G ______ Measure Signal Strength: Outside Antenna (cont.) The Outside Antenna must be at least 20 feet away (horizontal or vertical) from the Inside Antenna. Outside Antenna Mount Location Signal Strength (Typical) Mounting Option is Step Number Set-Up Time (minutes) Outside Roof/Pole MountBest5A40-90 Outside Wall MountBetter5B20-40 Inside Window MountOk5C5-10 ! A OPTION OPTION OPTION B C Three Outside Antenna mounting options: 7 HOME 4G CELL PHONE SIGNAL BOOSTER ______ Step 4: Connect the System Connect supplied cable from the booster to the Outside Antenna. See 7.1. Separate the Inside Antenna from the Outside Antenna by at least 20โ€™. See 7.2. The more separation, the better! Do not face the Outside Antenna and the Inside Antenna towards each other. See 7.3.โ€ฆ

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Attestation Statements

October 17, 2014 Attestation For Wilson Signal Booster: FCC ID PWO460020 Each Signal Booster certificated under FCC ID PWO460020 is manufactured and individually 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 โ€œOnโ€ (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. However, in case booster indicator lights show the need, the gain may be adjusted as described in the User Manual. Such adjustments are โ€œfail safeโ€, i.e., they will not enable the booster to be nonโ€compliant to NPS or other compliance/safeguard requirements. (6) Future software upgrade will not cause nonโ€ compliance. Sincerely, Patrick L. Cook Chief Technology Officer

Cover Letter(s)

October 31, 2014 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 460021 Signal Booster under FCC ID: PWO460020 in accordance with sections 0.457 and 0.459 of the Commissionโ€™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 Chief Technology Officer

Cover Letter(s)

Page 1 of 1 FCC ID: PWO460020 IC ID: 4726A-460020 CT Project: P1460015 From: Shawn McMillen Date: 12/01/2014 1--The MSCL information is missing from the FCC application. CT โ€“ (Mike G 12/2/14), Put MSCLs in TCB folder. 2--The RSS-131 report contains information FCC 27.53 information which is not relevant to this application. See pages 8 and 9 CT โ€“ (Mike G 12/2/14), Report has been updated. Response by: Submitted by: Date:

Cover Letter(s)

October 31, 2014 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 460020 Signal Booster are: Uplink Amplifier (698-716 MHz): 4.3 V, 0.5 A Downlink Amplifier (728-746 MHz): 4.3 V, 0.5 A Uplink Amplifier (777-787 MHz): 4.3 V, 0.5 A Downlink Amplifier (746-756 MHz): 4.3 V, 0.5 A Uplink Amplifier (824-849 MHz): 4.3 V, 0.5 A Downlink Amplifier (869-894 MHz): 4.3 V, 0.5 A Uplink Amplifier (1850-1915 MHz): 4.3 V, 0.5 A Downlink Amplifier (1930-1995 MHz): 4.3 V, 0.5 A Uplink Amplifier (1710-1755 MHz): 4.3 V, 0.5 A Downlink Amplifier (2110-2155 MHz): 4.3 V, 0.5 A Patrick L. Cook Chief Technology Officer

Cover Letter(s)

October 30, 2014 Subject: Antenna Kitting Re: FCC ID: PWO460020 To Whom It May Concern: The antenna kitting options for model 460020 signal booster were done for 27 Outside Antenna kit options and 13 Inside Antenna kit options. The order of the attached calculations is as follows: Outside Antenna Kit Options: 1. Kit 314411-40075 2. Kit 314411-5825 3. Kit 314475-0630 4. Kit 301111-0675 5. Kit 301111-5850 6. Kit 311203-40020 7. Kit 311129-400100 8. Kit 311129-5840 9. Kit 311129-0660 10. Kit 311124-0650 11. Kit 311124-400100 12. Kit 314453-5825 13. Kit 311203-5820 14. Kit 311201-0620 15. Kit 301126 16. Kit 301111-11140 17. Kit 311201-1120 18. Kit 311129-11110 19. Kit 314453-40075 20. Kit 314473-0640 21. Kit 311141-0620 22. Kit 311124-1180 23. Kit 311141-1120 24. Kit 314473-1175 25. Kit 314475-1175 26. Kit 301111-400170 27. Kit 311124-5830 Inside Antenna Kit Options: 1. Kit 311135-40060 2. Kit 311135-5820 3. Kit 311155-0630 4. Kit 301121-40010 5. Kit 301151-0610 6. Kit 309900-50N 7. Kit 309902-75F 8. Kit 309903-75F 9. Kit 309904-75F 10. Kit 309905-50N 11. Kit 311155-1150 12. Kit 301151-1110 13. Kit 301211 Sincerely, Patrick L. Cook Chief Technology Officer FCC ID: PWO460020 FCC ID: PWO460020 Final Output Power Limited to 30 dBm EIRP in all frequency bands Final Output Power Limited to 30 dBm EIRP in all frequency bands Uplink Frequency (MHz) 698 โ€ 716 777 โ€ 787 824 โ€ 849 1710 โ€ 1755 1850 โ€ 1915 Uplink Frequency (MHz) 698 โ€ 716 777 โ€ 787 824 โ€ 849 1710 โ€ 1755 1850 โ€ 1915 Uplink Output Power (dBm) 23.94 24.19 23.49 24.55 23.6 Uplink Output Power (dBm) 23.94 24.19 23.49 24.55 23.61 1 Wide Band Directional Antenna With 75' LMR 400 314411 โ€ 40075 6 Yagi Antenna 311129 With 100' LMR 400 311129 โ€ 400100 Antenna Gains (dBi) 7.3 7.2 7.8 7.9 9.1 Antenna Gains (dBi) 1.95 7.18 9.64 โ€ 6.67 โ€ 11.97 Coax Loss (dB) 2.8 3.0 3.6 4.4 5.4 Coax Loss (dB) 3.7 3.9 4.7 5.8 7.1 Final Gain less Loss (dB) 4.5 4.2 4.2 3.5 3.7 Final Gain less Loss (dB) โ€ 1.75 3.28 4.9 โ€ 12.47 โ€ 19.07 Output Power plus Final Gain (dBm EIRP) 28.44 28.39 27.69 28.05 27.3 Output Power plus Final Gain (dBm EIRP) 22.2 27.5 28.4 12.1 4.5 2 Wide Band Directional Antenna With 25' RG โ€ 58 314411 โ€ 5825 7 Yagi Antenna 311129 With 40' RG โ€ 58 311129 โ€ 5840 Antenna Gains (dBi) 7.3 7.2 7.8 7.9 9.1 Antenna Gains (dBi) 1.95 7.18 9.64 โ€ 6.67 โ€ 11.97 Coax Loss (dB) 2.9 3.1 3.2 5.1 5.4 Coax Loss (dB) 4.6 5.0 5.2 8.2 8.6 Final Gain less Loss (dB) 4.4 4.1 4.6 2.8 3.7 Final Gain less Loss (dB) โ€ 2.7 2.2 4.4 โ€ 14.9 โ€ 20.6 Output Power plus Final Gain (dBm EIRP) 28.3 28.3 28.1 27.4 27.3 Output Power plus Final Gain (dBm EIRP) 21.3 26.4 27.9 9.7 3.0 3 Wide Band Directional Antenna With 30' RG โ€ 6 314475 โ€ 0630 8 Yagi Antenna 311129 With 60' RG โ€ 6 311129 โ€ 0660 Antenna Gains (dBi) 7.3 7.2 7.8 7.9 9.1 Antenna Gains (dBi) 1.95 7.18 9.64 โ€ 6.67 โ€ 11.97 Coax Loss (dB) 3.0 3.2 3.4 5.1 5.3 Coax Loss (dB) 4.56 4.86 5.0 7.6 8.0 Final Gain less Loss (dB) 4.3 4 4.4 2.8 3.8 Final Gain less Loss (dB) โ€ 2.61 2.32 4.64 โ€ 14.29 โ€ 19.95 Output Power plus Final Gain (dBm EIRP) 28.24 28.2 27.89 27.35 27.4 Output Power plus Final Gain (dBm EIRP) 21.3 26.5 28.1 10.3 3.7 4 Yagi Antenna 301111 With 75' RG โ€ 6 301111 โ€ 0675 9 Yagi Antenna 311124 With 50' RG โ€ 6 311124 โ€ 0650 Antenna Gains (dBi) 10.0 10.0 10.8 โ€ 6.8 โ€ 13.8 Antenna Gains (dBi) โ€ 18.7 โ€ 18.7 โ€ 23.4 9.1 10.9 Coax Loss (dB) 5.7 6.075 6.3 9.525 9.975 Coax Loss (dB) 3.8 4.05 4.2 6.4 6.7 Final Gain less Loss (dB) 4.3 3.925 4.5 โ€ 16.325 โ€ 23.775 Final Gain less Loss (dB) โ€ 22.50 โ€ 22.75 โ€ 27.60 2.75 4.25 Output Power plus Final Gain (dBm EIRP) 28.24 28.1 27.99 8.2 โ€ 0.2 Output Power plus Final Gain (dBm EIRP) 1.4 1.4 โ€ 4.1 27.3 27.9 5 Yagi Antenna 301111 With 50' RG โ€ 58 301111 โ€ 5850 10 Yagi Antenna 311124 With 100' LMR 400 311124 โ€ 400100 Antenna Gains (dBi) 10.0 10.0 10.8 โ€ 6.8 โ€ 13.8 Antenna Gains (dBi) โ€ 18.7 โ€ 18.7 โ€ 23.4 9.1 10.9 Coax Loss (dB) 5.8 6.2 6.5 10.3 10.7 Coax Loss (dB) 3.7 3.9 4.7 5.8 7.1 Final Gain less Loss (dB) 4.2 3.8 4.3 โ€ 17.1 โ€ 24.5 Final Gain less Loss (dB) โ€ 22.4 โ€ 22.6 โ€ 28.1 3.3 3.8 Output Power plus Final Gain (dBm EIRP) 28.1 28.0 27.8 7.5 โ€ 0.9 Output Power plus Final Gain (dBm EIRP) 1.54 1.59 โ€ 4.61 27.85 27.41 Fixed Outside Antenna Kit Options Fixed Outside Antenna Kit Options FCC ID: PWO460020 FCC ID: PWO460020 Final Output Power Limited to 30 dBm EIRP in all frequency bands Final Output Power Limited to 30 dBm EIRP in all frequency bands Uplink Frequency (MHz) 698 โ€ 716 777 โ€ 787 824 โ€ 849 1710 โ€ 1755 1850 โ€ 1915 Uplink Frequency (MHz) 698 โ€ 716 777 โ€ 787 824 โ€ 849 1710 โ€ 1755 1850 โ€ 1915 Uplink Output Power (dBm) 23.94 24.19 23.49 24.55 23.61 Uplink Output Power (dBm) 23.94 24.19 23.49 24.55 23.61 11 Omni Directional Antenna (311203) With 20' LMR 400 311203 โ€ 40020 16 Panel Antenna With 25' RG โ€ 58 314453 โ€ 5825 Antenna Gains (dBi) โ€ 1.5 โ€ 0.24 0.57 โ€ 2.51 5.09 Antenna Gains (dBi) 3.84 3.63 4.4 8.21 10.04 Coax Loss (dB) 0.7 0.7 0.7 1.1 1.1 Coax Loss (dB) 2.9 3.1 3.2 5.1 5.4 Final Gain less Loss (dB) โ€ 2.2 โ€ 0.94 โ€ 0.13 โ€ 3.61 4.0 Final Gain less Loss (dB) 0.9 0.5 1.2 3.1 4.6 Output Power plus Final Gain (dBm EIRP) 21.7 23.3 23.4 20.9 27.6 Output Power plus Final Gain (dBm EIRP) 24.9 24.7 24.7 27.7 28.3 12 Omni Directional Antenna (311203) With 20' RG โ€ 58 311203 โ€ 5820 17 Panel Antenna With 75' LMR 400 314453 โ€ 40075 Antenna Gains (dBi) โ€ 1.5 โ€ 0.24 0.57 โ€ 2.51 5.09 Antenna Gains (dBi) 3.84 3.63 4.4 8.21 10.04 Coax Loss (dB) 2.3 2.5 2.6 4.1 4.3 Coax Loss (dB) 2.8 3.0 3.6 4.4 5.4 Final Gain less Loss (dB) โ€ 3.8 โ€ 2.74 โ€ 2.03 โ€ 6.61 0.79 Final Gain less Loss (dB) 1.04 0.63 0.8 3.81 4.64 Output Power plus Final Gain (dBm EIRP) 20.14 21.5 21.5 17.9 24.4 Output Power plus Final Gain (dBm EIRP) 25.0 24.8 24.3 28.4 28.3 13 Omni Directional Antenna (311201) With 20' RG โ€ 6 311201 โ€ 0620 18 Panel Antenna With 40' RG โ€ 6 314473 โ€ 0640 Antenna Gains (dBi) โ€ 1.5 โ€ 0.24 0.57 โ€ 2.51 5.09 Antenna Gains (dBi) 3.84 3.63 4.4 8.21 10.04 Coax Loss (dB) 1.5 1.6 1.7 2.5 2.7 Coax Loss (dB) 3.0 3.2 3.4 5.1 5.3 Fiโ€ฆ

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Cover Letter(s)

September 5, 2014 To: Whom it May Concern Subject: Calculated Mobile Station Coupling Losses (MSCL) For FCCID: PWO460020 The following formulas were used to calculate MSCL with a 6โ€™ 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(๏ด๏€ฉ๏€ฎ ๏€  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 Uplink Center Frequency MHz707โ€710782836.51732.51880โ€1882.5 Path Loss (dB)34.7435.5736.1642.4843.21 Polarity Loss (dB)33333 Antenna Gain with Coax Loss2.132.132.125.097.49 MSCL (dB)35.6136.4437.0440.3938.72 E 1 E 2 ๏ด๏€ฝ45deg๏€  Senior Electrical Engineer

Parts List/Tune Up Info

October 31, 2014 Tuning and Adjustment of Wilson Model 460020 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 Chief Technology Officer

RF Exposure Info

October 31, 2014 Subject: RF MPE EXPOSURE Re: FCC ID: PWO460020 To Whom It May Concern: The MPE calculations for model 460020 signal booster were done for each frequency band: 1700/2100 MHz, 800 MHz, 700 MHz Band 13, 700 MHz Band 12, and 1900 MHz. For each band two calculations were done; these included the worst case scenario for each of the different types of antennas that may be connected to this signal booster: outside and inside antennas. The order of the attached calculations is as follows: 1700/2100 MHz band: 1. Outside Antenna: 314453โ€40075 2. Inside Antenna: 309904โ€75F 800 MHz band: 1. Outside Antenna: 311129โ€400100 2. Inside Antenna: 311155โ€1150 700 MHz Band 13: 1. Outside Antenna: 314411โ€40075 2. Inside Antenna: 311155 700 MHz Band 12: 1. Outside Antenna: 314411โ€40075 2. Inside Antenna: 311155 1900 MHz band: 1. Outside Antenna: 314473โ€0640 2. Inside Antenna: 309904โ€75F A boosterโ€™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 (nonโ€log)*Coax loss (nonโ€log) The power density (mW/cm 2 ) is calculated using the following formula: Calculated Power Density=1000*EIRP (Watts)/(4*ฯ€*(Distance from Antenna (cm)^2)) Sincerely, Patrick L. Cook Chief Technology Officer Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz1710 Pout Watts0.28510 Duty Cycle Percent100.0% Ant. Gain dBi8.21 Coax Loss dB4.50 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi3.71 Distance From Antenna In Inches7.87 EIRP (Watts)0.6699 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.1333 REFERENCE DAT A Pout dBm24.55 Antenna Gain (non-log)6.62 Coax loss (non-log)0.35 General FCC Limit (mw/cm 2 ) 1.00 RESULTS OF CALCULATIONS 11/19/2014, 10:49 AM1700 MHz Band 4 UL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz2110 Pout Watts0.01560 Duty Cycle Percent100.0% Ant. Gain dBi6.66 Coax Loss dB3.17 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi3.49 Distance From Antenna In Inches7.87 EIRP (Watts)0.0348 FCC Power Density Limit (mw/cm 2 ) 1.00 Calculated Power Density (mw/cm 2 ) 0.0069 REFERENCE DAT A Pout dBm11.93 Antenna Gain (non-log)4.63 Coax loss (non-log)0.48 General FCC Limit (mw/cm 2 ) 1.00 RESULTS OF CALCULATIONS 11/19/2014, 10:49 AM2100 MHz Band 4 DL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz824 Pout Watts0.22336 Duty Cycle Percent100.0% Ant. Gain dBi9.64 Coax Loss dB4.74 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi4.90 Distance From Antenna In Inches7.87 EIRP (Watts)0.6902 FCC Power Density Limit (mw/cm 2 ) 0.55 Calculated Power Density (mw/cm 2 ) 0.1373 REFERENCE DAT A Pout dBm23.49 Antenna Gain (non-log)9.20 Coax loss (non-log)0.34 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 11/19/2014, 10:50 AM800 MHz Band 5 UL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz869 Pout Watts0.01614 Duty Cycle Percent100.0% Ant. Gain dBi6.09 Coax Loss dB2.36 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi3.73 Distance From Antenna In Inches7.87 EIRP (Watts)0.0381 FCC Power Density Limit (mw/cm 2 ) 0.58 Calculated Power Density (mw/cm 2 ) 0.0076 REFERENCE DAT A Pout dBm12.08 Antenna Gain (non-log)4.06 Coax loss (non-log)0.58 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 11/19/2014, 10:50 AM800 MHz Band 5 DL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz776 Pout Watts0.26242 Duty Cycle Percent100.0% Ant. Gain dBi7.20 Coax Loss dB3.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi4.20 Distance From Antenna In Inches7.87 EIRP (Watts)0.6902 FCC Power Density Limit (mw/cm 2 ) 0.52 Calculated Power Density (mw/cm 2 ) 0.1373 REFERENCE DAT A Pout dBm24.19 Antenna Gain (non-log)5.25 Coax loss (non-log)0.50 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 11/19/2014, 10:50 AM700 MHz Band 13 UL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz746 Pout Watts0.01556 Duty Cycle Percent100.0% Ant. Gain dBi4.16 Coax Loss dB0.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi4.16 Distance From Antenna In Inches7.87 EIRP (Watts)0.0406 FCC Power Density Limit (mw/cm 2 ) 0.50 Calculated Power Density (mw/cm 2 ) 0.0081 REFERENCE DAT A Pout dBm11.92 Antenna Gain (non-log)2.61 Coax loss (non-log)1.00 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 11/19/2014, 10:51 AM700 MHz Band 13 DL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz698 Pout Watts0.24774 Duty Cycle Percent100.0% Ant. Gain dBi7.30 Coax Loss dB2.80 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi4.50 Distance From Antenna In Inches7.87 EIRP (Watts)0.6982 FCC Power Density Limit (mw/cm 2 ) 0.47 Calculated Power Density (mw/cm 2 ) 0.1389 REFERENCE DAT A Pout dBm23.94 Antenna Gain (non-log)5.37 Coax loss (non-log)0.52 General FCC Limit (mw/cm 2 ) f/1500 RESULTS OF CALCULATIONS 11/19/2014, 10:51 AM700 MHz Band 12 UL.xlsx Minimum Safe Distance From Antennas Based upon FCC OET Bulletin 65 and other FCC Sources INPUT DATA Frequency MHz728 Pout Watts0.01459 Duty Cycle Percent100.0% Ant. Gain dBi4.16 Coax Loss dB0.00 Distance From Antenna In cm20.0 Ant. Gain less Coax Loss dBi4.16 Distance From Antenna In Inches7.87 EIRP (Watts)0.0380 FCC Power Density Limit (mw/cm 2 ) 0.49 Calculated Power Density (mw/cm 2 ) 0.0076 REFERENCE DAT A Pout dBm11.64 Antโ€ฆ

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Test Report

p1460015_FCC_Part 20_Rev 3.0 Page 1 of 149 Test Report Prepared for: Wilson Electronics, Inc. Model: 460020 Description: Quint Band Signal Booster FCC ID: PWO460020 To FCC Part 20 Date of Issue: November 24, 2014 On the behalf of the applicant: Wilson Electronics, Inc. 3301 E Deseret Drive St. George, UT 84790 Attention of: Patrick Cook, Sr Research & Development Engineer Ph: (435) 673-5021 E-Mail: [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: p1460015 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. p1460015_FCC_Part 20_Rev 3.0 Page 2 of 149 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 October 31, 2014 Mike Graffeo Original Document 2.0 November 11, 2014 Mike Graffeo Corrected 1930 - 1995 MHz AWGN power 3.0 November 20, 2014 Mike Graffeo Corrected type on 1930 - 1995 MHz AWGN power p1460015_FCC_Part 20_Rev 3.0 Page 3 of 149 Table of Contents Description Page Standard Test Conditions and Engineering Practices 5 Test Result Summary 6 Authorized Frequency Band 7 Maximum Power and Gain 13 Intermodulation 15 Out- of-Band Emissions 21 Conducted Spurious Emissions 55 Noise Limits 78 Uplink Inactivity 89 Variable Gain 93 Occupied Bandwidth 98 Oscillation Detection 129 Radiated Spurious 146 Test Equipment Utilized 149 p1460015_FCC_Part 20_Rev 3.0 Page 4 of 149 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 to the joint ISO-ILAC-IAF Communiquรฉ 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 Site Reg. #349717 IC Site Reg. #2044A-2 Non-accredited tests contained in this report: N/A p1460015_FCC_Part 20_Rev 3.0 Page 5 of 149 Test and Measurement Data Sub-part 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 10ยฐ to 40ยฐC (50ยฐ to 104ยฐF), unless the particular eq uipment requirements specified 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 (ยบC) Humidity (%) Pressure (mbar) 24.9 โ€“ 31.0 33.5 โ€“ 63.0 985.5 - 943.0 Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: 460020 Description: Quint Band Signal Booster Firmware: N/A Software: N/A Serial Number: N/A Additional Information: The EUT is a Fixed Install, bi-directional amplifier for the boosting of cellular phone signals and data communication devices. The following frequency bands and emission types are utilized. Frequency Band (MHz) Uplink 698 - 716 776 - 787 824 - 849 1850 - 1915 1710 โ€“ 1755 Downlink 728 - 746 746 - 757 869 - 894 1930 - 1995 2110 - 2155 Modulation Type LTE GSM, CDMA, EDGE, HSPA. EVDO, LTE CDMA, HSPA, LTE, EDGE, EVDO Emission Designators CDMA HSPA LTE EVDO EDGE GSM F9W F9W G7D F9W G7W GXW The modulation types and emission designators listed in the tables represent the modulations that the cell phone providers use for each frequency band. GSM, CDMA, and WCDMA represent all the modulation types (phase and amplitude or a combination thereof) utilized within the industry. EDGE, HSPA, LTE etc. are all protocols or multiplexing techniques using the base modulations. EUT Operation during Tests The EUT was in a normal operating condition. p1460015_FCC_Part 20_Rev 3.0 Page 6 of 149 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) 27.53(c) 27.53(e) 27.53(f) 27.53(g) Conducted Spurious Emissions Pass 20.21(e)(8)(i)(A) Noise Limits Pass 20.21(e)(8)(i)(I) Uplink Inactivity Pass 20.21(e)(8)(i)(C)(1) 20.21(e)(8)(i)(H) Choose: 20.21(e)(8)(i)(C)(2)(i) (Fixed) 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 p1460015_FCC_Part 20_Rev 3.0 Page 7 of 149 Authorized Frequency Band Engineer: Mike Graffeo Test Date: 10/15/14 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 needed to ensure accurate readings. 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 wiโ€ฆ

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Test Report

p1460015_FCC_Part 20_Rev 3.0 Page 50 of 149 WCDMA Downlink Test Plots 728 - 746 MHz Band Lower Band Edge Upper Band Edge p1460015_FCC_Part 20_Rev 3.0 Page 51 of 149 746 - 757 MHz Band Lower Band Edge Upper Band Edge p1460015_FCC_Part 20_Rev 3.0 Page 52 of 149 869 - 894 MHz Band Lower Band Edge Upper Band Edge p1460015_FCC_Part 20_Rev 3.0 Page 53 of 149 1930 - 1995 MHz Band Lower Band Edge Upper Band Edge p1460015_FCC_Part 20_Rev 3.0 Page 54 of 149 2110 - 2155 MHz Band Lower Band Edge Upper Band Edge p1460015_FCC_Part 20_Rev 3.0 Page 55 of 149 Conducted Spurious Emissions Engineer: Mike Graffeo Test Date: 10/28/14 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 needed to ensure accurate readings. A signal ge nerator was utilized to produce a 4.1 MHz AWGN signal operating at the maximum allowable power. The conducted spurious emissions from 9 kHz to 10 times the highest tunable frequency for each operational band were measured (excluding the band defined by the Out of band emissions test). The emissions were plotted and the highest level was recorded in the summary table. The following formulas are used for calculating the limits. Conducted Spurious Emissions Limit = P1โ€ฆ

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Contact Information

Applicant

Ilesh Patel(Senior RF Design Engineer)
[email protected]435-673-5021Fax: 435-656-2432

Test Firm

Compliance Testing, LLCMichael Schafer
[email protected]480-926-3100Fax: 480 926 3598

Technical Specifications

#Rule PartsFrequency RangePower OutputEmission
4272.11 GHz - 2.15 GHz16.00 mWGXW
Confidentiality
Long Term
Grant Notes
Power listed is conducted at antenna terminals. The antennas used with this signal booster must be installed to provide a separation distance of at least 20 cm from all persons. Users and installers must be provided with the antenna kitting and installation instructions and operating conditions for satisfying RF exposure compliance. There is a 10m height restriction for AWS operation. This device is a Wideband Fixed Consumer Signal Booster authorized only for operation by and marketing to members of the general public for their personal use in accordance with the requirements of 47 CFR 20.21(a) and 20.21(g).

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