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PWO460061Quint Band Signal Booster

Wilson Electronics, LLC
Quint Band Signal Booster - FCC ID PWO460061 - Wilson Electronics, LLC
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Application Details

Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Date of Grant
Sep 22, 2020
Application Purpose
Original Equipment
Date of Application
Sep 21, 2020
Equipment Note
Quint Band Signal Booster
Frequency Range
746.00000000 - 756.00000000
Company
Wilson Electronics, LLC
Country
United States

Documents & Files

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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

Installation Guide Vehicle Signal Booster Kit DRIVE REACH A WILSON ELECTRONICS BRAND NEED HELP? support.weboost.com866.294.1660 ยฎ ______ Index Package Contents 1 STEP 1: Mount Outside Magnetic Antenna 2 STEP 2: Mount Inside Antenna 4 STEP 3: Connect Outside Antenna To Booster 5 STEP 4: Connect Inside Antenna To Booster 6 STEP 5: Connect Power Supply To Booster 7 Booster Light Patterns 8 Troubleshooting 9 Safety Guidelines 10 Specifications 12 Warranty 13 DRIVE REACH VEHICLE SIGNAL BOOSTER 1 ________ Package Contents Booster Outside Antenna Inside Antenna Power Supply Optional: Adhesive disk for aluminum vehicles 2 VEHICLE SIGNAL BOOSTER DRIVE REACH ______ Step 1: Mount Outside Magnetic Antenna WORKS WITH ALL VEHICLES Identify a location on the top of your vehicle that is: โ€ข Near the center of the roof โ€ขAt least 12 inches away from any other antennas โ€ข At least 12 inches away from any windows (including sunroofs) Cle an the surface where you will place the outside antenna. Mount the outside antenna by placing on top of vehicle. 12 in. away from windows (including sunroofs) NOTE: For aluminum roofs, an adhesive disk is included to mount the outside antenna (do not use if outside antenna will magnetize to the top of your vehicle). DRIVE REACH VEHICLE SIGNAL BOOSTER 3 NOTE: When going through a car wash, remember to remove your antenna. NOTE: The cable is strong enough that it may be routed under weather stripping and shut in most vehicle doors without damaging the cable. Car/Sedan: Cable routed into rear side door. SUV/Van/Hatchback: Cable routed into top of hatchback door. Truck: Cable routed into side door. ______ (STEP 1 cont.) See options below on how cable can be routed with different vehicles. 4 VEHICLE SIGNAL BOOSTER DRIVE REACH ______ Step 2: Mount Inside Antenna Identify a place to mount the In-Vehicle Antenna, either on the side of the seat or on the dash and mount. The location should be at least 18 inches but no more than 36 inches from where the cellular device will be used. Use the Velcroยฎ adhesive strip or the 2-sided adhesive strip provided and attach to the side of the antenna labeled โ€œMOUNTING SIDEโ€. Then mount to desired location. In-Vehicle Antenna Dash Mount Velcro ยฎ strip In-Vehicle Antenna Seat Mount WARNING: DO NOT MOUNT WHERE AIRBAGS WILL DEPLOY. DRIVE REACH VEHICLE SIGNAL BOOSTER 5 ______ Step 3: Connect Outside Antenna To Booster Connect the cable from the Outside Antenna to the port labeled โ€œOutside Antennaโ€ on the Drive Reach booster. from Outside Antenna NOTE: The Velcroยฎ strip on the bottom of the booster can also be used to keep booster from sliding around. 6 VEHICLE SIGNAL BOOSTER DRIVE REACH ______ Step 4: Connect Inside Antenna To Booster Connect the cable from the In-Vehicle Antenna to the port labeled โ€œInside Antennaโ€ on the booster. from Inside Antenna DRIVE REACH VEHICLE SIGNAL BOOSTER 7 ______ Step 5: Connect Power Supply To Booster Connect the power supply cord to the end of the booster, labeled โ€œ โ€, then plug the power adapter into vehicleโ€™s 12V DC power supply. The Drive Reach will automatically power on when plugged in. If your Drive Reach is working correctly, the light on the power adapter will be red, and the light on the booster will be green. Use only the power supply provided in this package. NOTE: If the 12V Cigarette Lighter port on your car is always on (even when your vehicle is turned off) and you will be parking for extended periods of time (more than a day), we recommend you turn the booster off by pushing the LED light, which is also a button. This will prevent the Drive Reach from draining the battery in your vehicle. connect Power Supply Cord plug into vehicleโ€™s DC Power Supply 8 VEHICLE SIGNAL BOOSTER DRIVE REACH ______ Booster Light Patterns NEED HELP? support.weboost.com866.294.1660 Solid Green This indicates that your booster is functioning properly and there are no issues with installation. Blinking Red, Then Solid Green This indicates that one or more of the booster bands has reduced power due to a minor feedback loop condition called oscillation. This is a built in safety feature to prevent harmful interference with a nearby cell tower. If you are already experiencing the desired signal boost, then no further adjustments are necessary. If you are not experiencing the desired boost in coverage then refer to the Troubleshooting section. Solid Red This is due to a major oscillation (feedback) loop. This is a built in safety feature that causes a band to shut off to prevent harmful interference with a nearby cell tower. Refer to Troubleshooting section. Light Off If the Drive Reach Signal Boosterโ€™s light is off, verify your power supply has power. NOTE: The Signal Booster can be reset by disconnecting and reconnecting the power supply. After troubleshooting you must initiate a new power cycle by disconnecting and then reconnecting power to the Booster. DRIVE REACH VEHICLE SIGNAL BOOSTER 9 FREQUENTLY ASKED QUESTIONS How can I contact customer support? Customer Support can be reached Monday thru Friday by calling 866.294.1660, or through our support site at support.weboost.com. Why do I need to create distance between the booster and the antenna? Antennas connected to a booster create spheres of signal. When these spheres overlap, a condition called oscillation occurs. Oscillation can be thought of as noise, which causes the booster to scale down itโ€™s power or shut down to prevent damage. The best way to keep these spheres of signal from overlapping is to maximize separation between the inside and outside antennas. ______ Troubleshooting FIXING BLINKING OR SOLID RED ISSUES This section is only applicable if the booster is red or blinking red and you are not experiencing the desired signal boost. 1 2 3 Unplug the Boosterโ€™s power supply. Relocate the inside and outside antenna further from each other. The objective is to increase the separation distance between them, so that they will not create this feedback condition discussed befโ€ฆ

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Attestation Statements

August 19, 2020 Attestation For Wilson Signal Booster: FCC ID PWO460061 FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 RE: Attestation for FCC ID: PWO460061 To Whom It May Concern: Each Signal Booster certificated under FCC ID PWO460061 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. (6) Future software upgrade will not cause non-compliance. Sincerely, Mikel Parry Compliance Manager

Cover Letter(s)

Agent Authorization Letter August 19, 2020 FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Letter of Agent Authorization To Whom It May Concern: Please be advised that we, Wilson Electronics, hereby authorize Compliance Testing LLC to act on our behalf in all matters relating to application for equipment authorization, FCC ID: PWO 460061, including the signing of all documents relating to these matters. Any and all acts carried out by Wilson Electronics or Compliance Testing LLC in matters pertaining to processes required in the FCC approval shall have the same legal authority as acts and communications by the undersigned. They are authorized to respond to any future issues or FCC requests regarding this project. Please send any query, acknowledgement or response to this letter directly to Wilson Electronics. Sincerely, Mikel Parry Compliance Manager

Cover Letter(s)

August 19, 2020 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 460061 Signal Booster under FCC ID: PWO460061 in accordance with sections 0.457 and 0.459 of the Commissionโ€™s regulations. We request that the following documents be kept in long-term confidentiality: 1. Schematic Diagram 2. Parts List โ€“ Bill of Materials (BOM) 3. Block Diagram 4. Operational Description 5. Final Amplification Stage Voltage and Current We request that the following documents be kept in short-term confidentiality until February 26, 2021: 1. Exterior Images 2. Test Setup Photos 3. Internal Photos 4. User Manual 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. The public disclosure of these materials provides unjustified benefits to its competitors in the market. Sincerely, Mikel Parry Compliance Manager

Cover Letter(s)

Mobile Station Coupling Losses (MSCL) July 29, 2020 FCCID: PWO460061 The following formulas were used to calculate MSCL with a 2 m distance from transmitter to receiver antenna and a 45 degree polarity mismatch between the inside antenna and the mobile device for EUT model 460061 signal booster: ํ‘ดํ‘ดํ‘ดํ‘ดํ‘ดํ‘ดํ‘ดํ‘ด ( ํ’…ํ’…ํ’…ํ’… ) =ํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ท ํ‘ดํ‘ดํ‘ณํ‘ณํ‘ณํ‘ณํ‘ณํ‘ณ ( ํ’…ํ’…ํ’…ํ’… ) +ํ‘ทํ‘ทํ‘ณํ‘ณํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ทํ‘ท ํ‘ดํ‘ดํ‘ณํ‘ณํ‘ณํ‘ณํ‘ณํ‘ณ ( ํ’…ํ’…ํ’…ํ’… ) โˆ’ํ‘ฎํ‘ฎ ํ‘ทํ‘ท โˆ’ํ‘ฎํ‘ฎ ํ‘ทํ‘ท ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘ƒ โ„Ž ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํ‘‘ํ‘‘ํ‘‘ํ‘‘ ) =20log ( ํ‘‘ํ‘‘ ) +20log ( ํ‘“ํ‘“ ) โˆ’27.55 ํ‘“ํ‘“=ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํ‘€ํ‘€ํ‘€ํ‘€ํ‘€ํ‘€ ํ‘‘ํ‘‘=ํทํทํทํท ํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํฟํฟํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ƒํ‘ƒํฟํฟ ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํทํท ํ‘Ÿํ‘Ÿํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒ (ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํฟํฟ) ํ‘ƒํ‘ƒํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํ‘‘ํ‘‘ํ‘‘ํ‘‘ ) =20log๏ฟฝ ํธํธ 1 ํธํธ 2 ๏ฟฝ ํ‘ƒํ‘ƒํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํฟํฟํฟํฟํฟํฟํฟํฟ=20log๏ฟฝ ํธํธ 1 ํธํธ 1 sin (ํœํœ) ๏ฟฝ, ํœํœ=45ยฐ ํธํธ 1 =ํ‘€ํ‘€ํ‘ƒํ‘ƒํ‘€ํ‘€ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ํ‘ํฟํฟํฟํฟํฟํฟํทํท ํ‘ ํ‘ ํ‘ƒํ‘ƒํ‘“ํ‘“ ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘šํ‘šํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘‘ํ‘‘ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํธํธํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํนํนํทํทํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘‘ํ‘‘ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘€ํ‘€ํฟํฟํ‘ ํ‘ ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ ํทํทํ‘“ํ‘“ํ‘Ÿํ‘Ÿ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ ํธํธ 2 =ํ‘€ํ‘€ํ‘ƒํ‘ƒํ‘šํ‘šํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘‘ํ‘‘ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘‘ํ‘‘ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํ‘€ํ‘€ํฟํฟํ‘ ํ‘ ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ ํทํทํ‘“ํ‘“ํ‘Ÿํ‘Ÿ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ ํ‘คํ‘คํทํทํ‘ƒํ‘ƒโ„Ž ํ‘ƒํ‘ƒ 45ยฐ ํ‘ํ‘ํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ ํ‘“ํ‘“ํทํทํฟํฟํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“โ„Ž ํธํธ 2 =ํธํธ 1 sin ( ํœํœ ) ํบํบ ํ‘กํ‘ก =ํ‘ˆํ‘ˆํธํธ ํ‘‡ํ‘‡ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํฟํฟํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ ํดํดํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒ ํบํบํ‘ƒํ‘ƒํทํทํ‘“ํ‘“ ํบํบ ํ‘Ÿํ‘Ÿ =ํ‘†ํ‘†ํทํทํ‘šํ‘šํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘‘ํ‘‘ํฟํฟํฟํฟํฟํฟํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ ํ‘†ํ‘†ํ‘“ํ‘“ํ‘“ํ‘“ํ‘Ÿํ‘Ÿํ‘“ํ‘“ํ‘“ํ‘“ ํดํดํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒ ํบํบํ‘ƒํ‘ƒํทํทํ‘“ํ‘“ Path Loss Evaluation ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘ƒ โ„Ž ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํ‘‘ํ‘‘ํ‘‘ํ‘‘ ) =20log ( ํ‘‘ํ‘‘ ) +20log ( ํ‘“ํ‘“ ) โˆ’27.55 ํ‘“ํ‘“=ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํทํทํ‘“ํ‘“ ํ‘€ํ‘€ํ‘€ํ‘€ํ‘€ํ‘€ ํ‘‘ํ‘‘=ํทํทํทํท ํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํฟํฟํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ƒํ‘ƒํฟํฟ ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํทํท ํ‘Ÿํ‘Ÿํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒ (ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํฟํฟ) Frequency Range (MHz) f (MHz) d (m) Constant (dB) Path Loss (dB) 698-716 707 2 27.55 35.4 776-787 781.5 2 27.55 36.3 824-849 836.5 2 27.55 36.9 1710-1785 1747.5 2 27.55 43.3 1850-1915 1882.5 2 27.55 44.0 Polarity Loss Evaluation ํ‘ƒํ‘ƒํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํ‘‘ํ‘‘ํ‘‘ํ‘‘ ) =20log๏ฟฝ ํธํธ 1 ํธํธ 2 ๏ฟฝ ํ‘ƒํ‘ƒํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํฟํฟํฟํฟํฟํฟํฟํฟ (ํ‘‘ํ‘‘ํ‘‘ํ‘‘) =20log๏ฟฝ ํธํธ 1 ํธํธ 1 sin (ํœํœ) ๏ฟฝ, ํœํœ=45ยฐ ํธํธ 1 =ํ‘€ํ‘€ํ‘ƒํ‘ƒํ‘€ํ‘€ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ ํ‘ํ‘ํฟํฟํฟํฟํฟํฟํทํทํ‘ ํ‘ ํ‘ƒํ‘ƒํ‘“ํ‘“ ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘šํ‘šํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘‘ํ‘‘ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํธํธํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํนํนํทํทํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘‘ํ‘‘ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘€ํ‘€ํฟํฟํ‘ ํ‘ ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ ํทํทํ‘“ํ‘“ํ‘Ÿํ‘Ÿ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ ํธํธ 2 =ํ‘€ํ‘€ํ‘ƒํ‘ƒํ‘šํ‘šํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘‘ํ‘‘ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํ‘“ํ‘“ํทํทํ‘“ํ‘“ ํ‘ƒํ‘ƒํ‘‘ํ‘‘ ํ‘“ํ‘“ํ‘“ํ‘“ ํฟํฟํ‘“ํ‘“ ํ‘ƒํ‘ƒโ„Žํ‘“ํ‘“ ํ‘€ํ‘€ํฟํฟํ‘ ํ‘ ํทํทํ‘ƒํ‘ƒํ‘“ํ‘“ ํทํทํ‘“ํ‘“ํ‘Ÿํ‘Ÿ ํทํทํ‘“ํ‘“ํ‘“ํ‘“ ํ‘คํ‘คํทํทํ‘ƒํ‘ƒโ„Ž ํ‘ƒํ‘ƒ 45ยฐ ํ‘ํ‘ํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํ‘“ํ‘“ํทํทํฟํฟํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“โ„Ž ํธํธ 2 =ํธํธ 1 sin ( ํœํœ ) ํ‘ƒํ‘ƒํฟํฟํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํทํท ํ‘ƒํ‘ƒํ‘“ํ‘“ ํฟํฟํฟํฟํฟํฟํฟํฟ=20log๏ฟฝ 1 ํฟํฟํทํทํ‘“ํ‘“ ๏ฟฝ ํœ‹ํœ‹ 180 ๏ฟฝ ๏ฟฝ=ํŸ‘ํŸ‘.ํŸŽํŸŽํŸŽํŸŽ ํ’…ํ’…ํ’…ํ’… UE Transmitter Antenna Gain Evaluation ํบํบ ํ‘กํ‘ก =ํ‘ˆํ‘ˆํธํธ ํ‘‡ํ‘‡ํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํฟํฟํ‘“ํ‘“ํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ ํดํดํ‘“ํ‘“ํ‘ƒํ‘ƒํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘“ํ‘ƒํ‘ƒ ํบํบํ‘ƒํ‘ƒํทํทํ‘“ํ‘“=ํŸŽํŸŽ ํ’…ํ’…ํ’…ํ’… ํ‘ทํ‘ท Signal Booster Server Antenna Gain Evaluation Component Type Product Number Gain (dBi) / Loss (dB) B12 700 MHz B13 700 MHz B5 800 MHz B4 1700 MHz B2 1900 MHz B4 2200 MHz Server Cable N/A N/A 0 0 0 0 0 0 Server Antenna Panel 314401 2.1 2.1 2.9 1.7 2.7 2.1 314419 2.1 2.1 2.9 1.7 2.7 2.1 311160 1.3 2.6 3 1.7 0.7 0.1 Minimum MSCL Evaluation Maximum antenna gain and minimum coax loss was selected to calculate โ€œworst caseโ€ limit for MSCL B12 700 MHz B13 700 MHz B5 800 MHz B4 1700 MHz B2 1900 MHz Path Loss (dB) 35.4 36.3 36.9 43.3 44 Polarity Loss (dB) 3.01 3.01 3.01 3.01 3.01 UE Antenna Gain (dBi) 0 0 0 0 0 Server Antenna Gain (dBi) 2.1 2.6 3 1.7 2.7 Server Coax Loss (dB) 0 0 0 0 0 Minimum MSCL (dB) 36.31 36.71 36.91 44.61 44.31 END OF REPORT

External Photos

August 24, 2020 External Photos Model: 460061 Signal Booster

ID Label/Location Info

August 24, 2020 Label Locations Model: 460061 Signal Booster

Internal Photos

September 21, 2020 Internal Photos Model: 460061 Signal Booster

Parts List/Tune Up Info

September 3, 2020 Antenna Kitting Information Model 460061 Signal Booster Accessory Kit Options Fleet Component Type Product Number Gain (dBi) / Loss (dB) B12 B13 B5 B4 B2 B4 700 MHz 700 MHz 800 MHz 1700 MHz 1900 MHz 2200 MHz Donor Antenna Omni 314405 3.2 3.2 3.1 1.9 1.9 0.9 Donor Cable RG-58 14' 904423 2 2 2.1 3.2 3.4 3.7 Server Cable N/A N/A 0 0 0 0 0 0 Server Antenna Panel 314401 2.1 2.1 2.9 1.7 2.7 2.1 314419 2.1 2.1 2.9 1.7 2.7 2.1 *All equivalent or lesser antennas and cables are suitable for use with 460061 signal boosters Accessory Kit Options RV Component Type Product Number Gain (dBi) / Loss (dB) B12 B13 B5 B4 B2 B4 700 MHz 700 MHz 800 MHz 1700 MHz 1900 MHz 2200 MHz Donor Antenna Omni 311224 1.75 1.5 1.6 1.1 1.3 1.1 311230 1.15 0.75 1.45 2.5 2.2 1.5 304415 -0.25 -0.5 -0.45 -1.65 -1.45 -1.65 311215 0.5 0.5 1.1 0.8 0.41 0.77 311216 0.5 0.5 1.1 0.8 0.41 0.77 301126 0.5 0.5 1.1 0.8 0.41 0.77 314418 0.5 0.5 1.1 0.8 0.41 0.77 301113 0.5 0.5 1.1 0.8 0.41 0.77 Donor Cable RG-6 25' 950625 2.2 2.2 2.3 3.6 3.8 4.2 Server Cable N/A N/A 0 0 0 0 0 0 Server Antenna Panel 311160 1.3 2.6 3 1.7 0.7 0.1 *All equivalent or lesser antennas and cables are suitable for use with 460061 signal boosters Accessory Kit Options OTR Component Type Product Number Gain (dBi) / Loss (dB) B12 B13 B5 B4 B2 B4 700 MHz 700 MHz 800 MHz 1700 MHz 1900 MHz 2200 MHz Donor Antenna Omni 304415 -0.25 -0.5 -0.45 -1.65 -1.45 -1.65 311229 -0.85 -1.25 -0.6 -0.25 -0.55 -1.25 Donor Cable N/A N/A 0 0 0 0 0 0 Server Cable N/A N/A 0 0 0 0 0 0 Server Antenna Panel 314401 2.1 2.1 2.9 1.7 2.7 2.1 314419 2.1 2.1 2.9 1.7 2.7 2.1 *All equivalent or lesser antennas and cables are suitable for use with 460061 signal boosters Accessory Kit Options Vehicle Component Type Product Number Gain (dBi) / Loss (dB) B12 B13 B5 B4 B2 B4 700 MHz 700 MHz 800 MHz 1700 MHz 1900 MHz 2200 MHz Donor Antenna Omni 311215 0.5 0.5 1.1 0.8 0.41 0.77 311216 0.5 0.5 1.1 0.8 0.41 0.77 301126 0.5 0.5 1.1 0.8 0.41 0.77 314418 0.5 0.5 1.1 0.8 0.41 0.77 301113 0.5 0.5 1.1 0.8 0.41 0.77 304415 -0.25 -0.5 -0.45 -1.65 -1.45 -1.65 Donor Cable N/A N/A 0 0 0 0 0 0 Server Cable N/A N/A 0 0 0 0 0 0 Server Antenna Panel 314401 2.1 2.1 2.9 1.7 2.7 2.1 314419 2.1 2.1 2.9 1.7 2.7 2.1 *All equivalent or lesser antennas and cables are suitable for use with 460061 signal boosters Accessory Kit Options ALL Component Type Product Number Gain (dBi) / Loss (dB) B12 B13 B5 B4 B2 B4 700 MHz 700 MHz 800 MHz 1700 MHz 1900 MHz 2200 MHz Server Antenna Panel 314401 2.1 2.1 2.9 1.7 2.7 2.1 314419 2.1 2.1 2.9 1.7 2.7 2.1 301211 1.9 3.2 3.6 2.6 1.7 1.2 311160 1.3 2.6 3 1.7 0.7 0.1 311155 5.0 5.8 6.2 9.5 9.4 7.3 311135 5.0 5.8 6.2 9.5 9.4 7.3 304451 5.0 5.8 6.2 9.5 9.4 7.3 304471 5.0 5.8 6.2 9.5 9.4 7.3 314440 5.75 5.75 6 7.3 7.33 7.62 314444 5.75 5.75 6 7.3 7.33 7.62 Dome 304419 2 2 2 4 4 4 304412 2 2 2 4 4 4 314406 7 7 7 7 7 7 314407 4 4 4 6 6 6 Server Cable RG-6 60โ€™ 950660 5.1 5.4 5.6 8.5 8.9 9.6 Donor Cable RG-6 75โ€™ 950675 7.7 8.2 8.5 13.1 13.6 14.6 Donor Antenna Panel 314473 5.2 5.2 4.4 10.1 10.6 8.2 314453 5.2 5.2 4.4 10.1 10.6 8.2 Omni 304423 2 2 2 5 5 5 304422 2 2 2 5 5 5 304424 2 2 2 4 4 4 304421 2 2 2 4 4 4 311215 0.5 0.5 1.1 0.8 0.41 0.77 311216 0.5 0.5 1.1 0.8 0.41 0.77 311224 1.75 1.5 1.6 1.1 1.3 1.1 304415 -0.25 -0.5 -0.45 -1.65 -1.45 -1.65 311703 1.9 1.9 5.1 -4 6.1 2.3 304420 2 2.6 2.6 1.7 1.7 1.9 301126 0.5 0.5 1.1 0.8 0.41 0.77 314418 0.5 0.5 1.1 0.8 0.41 0.77 301113 0.5 0.5 1.1 0.8 0.41 0.77 314405 3.2 3.2 3.1 1.9 1.9 0.9 Directional 314475 7.48 7.48 7.31 8.83 8.83 8.57 314411 7.48 7.48 7.31 8.83 8.83 8.57 314445 7.2 7.2 6.9 8.9 8.4 9.2 *All equivalent or lesser antennas and cables are suitable for use with 460061 signal boosters END OF REPORT

Parts List/Tune Up Info

September 3, 2020 FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Tuning and Adjustment of Wilson Model 460061 Signal Booster Model 460061 Signal Booster Tuned Frequency (MHz) Target Gain (dB) Maximum Gain (dB) Target Power (dBm) Maximum Power (dBm) Uplink 698-716 47.7 47.7 25.4 25.4 777-787 46.9 46.9 25.6 25.6 824-849 47.6 47.6 25.6 25.6 1710-1785 48.4 48.4 26.7 26.7 1850-1910 44.0 44.0 26.9 26.9 Downlink 728-746 48.3 48.3 4.8 4.8 746-756 47.8 47.8 4.8 4.8 869-894 47.4 47.4 4.8 4.8 1930-1990 48.1 48.1 4.5 4.5 2110-2155 47.8 47.8 4.6 4.6 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. It is designed with advanced internal programming, which allows it to automatically adjust for a variety of conditions, while still amplifying weak signals. Tune-up Procedure: 1. Once the antennas and antenna cables are connected, turn the unit on by connecting the power supply cord into the vehicles 12VDC supply socket. 2. Standard installation Sincerely, Mikel Parry Compliance Manager Compliance Manager 3301 E Deseret Dr. St. George, UT 84790

RF Exposure Info

RF MPE EXPOSURE September 3, 2020 FCC ID: PWO460061 The MPE calculations for EUT model 460061 signal booster were done for frequency bands: โ€ข 700 MHz (Band 12) โ€ข 700 MHz (Band 13) โ€ข 800 MHz (Band 5) โ€ข 1900 MHz (Band 2) โ€ข 1700/2100 MHz (Band 4) Antennas recommended for the EUT: Port Frequency Range (MHz) Antenna Product Number Coax Product Number Maximum Antenna Gain (dBi) Minimum Coax Loss (dB) Gain โ€“ Coax Loss (dB) Gain - Coax Loss (unitless) Donor 698-716 314405 904423 3.2 2 1.2 1.32 Donor 777-787 314405 904423 3.2 2 1.2 1.32 Donor 824-849 311215 N/A 1.1 0 1.1 1.29 Donor 1710-1785 311215 N/A 0.8 0 0.8 1.20 Donor 1850-1915 311215 N/A 0.4 0 0.4 1.10 Server 728-746 314401 N/A 2.1 0 2.1 1.62 Server 746-756 311160 N/A 2.6 0 2.6 1.82 Server 869-894 311160 N/A 3.0 0 3.0 2.00 Server 1930-1995 314401 N/A 2.7 0 2.7 1.86 Server 2110-2155 314401 N/A 2.1 0 2.1 1.62 *Maximum antenna gain and minimum cable losses were selected to compute โ€œworst caseโ€ limit and are indicated in the antenna kitting specification for model 460061 EUT Operating Limits Limits for Uncontrolled Exposure 47 CFR 1.1310 Table 1(B) Frequency Range (MHz) Limit (mw/cm^2) 0.3-1.234 100 1.24-30 180/f^2 30-300 0.2 300-1500 f/1500 1500-100,000 1 EUT Operating Limits Evaluation Port Frequency Range (MHz) EUT Maximum Output power (dBm) EUT Maximum Output power (mw) Gain - Coax Loss (unitless) Power density limit (mw/cm^2) Power density evaluation (mw/cm^2) Minimum safe distance (cm) Donor 698-716 25.4 346.74 1.32 0.47 0.091 20 Donor 777-787 25.6 363.08 1.32 0.52 0.095 20 Donor 824-849 25.6 363.08 1.29 0.55 0.093 20 Donor 1710-1785 26.7 467.74 1.20 1 0.112 20 Donor 1850-1915 26.9 489.78 1.10 1 0.107 20 Server 728-746 4.8 3.02 1.62 0.49 0.001 20 Server 746-756 4.8 3.02 1.82 0.50 0.001 20 Server 869-894 4.8 3.02 2.00 0.58 0.001 20 Server 1930-1995 4.5 2.82 1.86 1 0.001 20 Server 2110-2155 4.6 2.88 1.62 1 0.001 20 *The lowest frequency in each band was used to compute the โ€œworst caseโ€ limit. NOTE: Simultaneous transmission does not apply to consumer boosters as the output power is capped at 30 dBm EIRP regardless of how many signals are present. EUT Power Density Evaluation Calculated power density - Uplink: Band 12 (698-716 MHz) Power density is calculated using maximum uplink transmitted power of 346.74 mw and unitless antenna gain less coax loss of 1.32 S = P t G 4ฯ€r 2 = (346.74)(1.32) 4ํœ‹ํœ‹20 2 =0.091 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ) ํ‘†ํ‘†=ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒํทํทํทํทํทํทํทํทํทํท ( ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„) ํ‘ƒํ‘ƒ ํ‘กํ‘ก =ํ‘‡ํ‘‡ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํทํทํทํทํ‘šํ‘šํทํทํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ( ํ‘šํ‘šํ‘šํ‘š ) ํบํบ=ํดํดํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ ํบํบํ‘‡ํ‘‡ํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํถํถํ‘ƒํ‘ƒํ‘‡ํ‘‡ํถํถ ํฟํฟํ‘ƒํ‘ƒํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํ‘‘ํ‘‘ํ‘ขํ‘ขํทํทํทํท ํ‘ํ‘ํทํทํ‘ํ‘ํ‘›ํ‘›ํ‘ƒํ‘ƒ ( % ) ํ‘ƒํ‘ƒ=ํทํทํทํทํทํทํทํท ํ‘‡ํ‘‡ํทํทํ‘ํ‘ํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒ ํ‘ํ‘ํ‘ƒํ‘ƒํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํ‘‘ํ‘‘ํทํทํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํท ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ (ํ‘ํ‘ํ‘šํ‘š) At the minimum safe distance of 20 cm, the power density of the EUT is 0.091 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ), which is less than the operational limit of 0.47 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ). Therefore, no minimum safe distance calculation is required. Band 13 (777-787 MHz) Power density is calculated using maximum uplink transmitted power of 363.08 mw and unitless antenna gain less coax loss of 1.32 S = P t G 4ฯ€r 2 = (363.08)(1.32) 4ํœ‹ํœ‹20 2 =0.095 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ) ํ‘†ํ‘†=ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒํทํทํทํทํทํทํทํทํทํท ( ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„) ํ‘ƒํ‘ƒ ํ‘กํ‘ก =ํ‘‡ํ‘‡ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํทํทํทํทํ‘šํ‘šํทํทํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ( ํ‘šํ‘šํ‘šํ‘š ) ํบํบ=ํดํดํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ ํบํบํ‘‡ํ‘‡ํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํถํถํ‘ƒํ‘ƒํ‘‡ํ‘‡ํถํถ ํฟํฟํ‘ƒํ‘ƒํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํ‘‘ํ‘‘ํ‘ขํ‘ขํทํทํทํท ํ‘ํ‘ํทํทํ‘ํ‘ํ‘›ํ‘›ํ‘ƒํ‘ƒ ( % ) ํ‘ƒํ‘ƒ=ํทํทํทํทํทํทํทํท ํ‘‡ํ‘‡ํทํทํ‘ํ‘ํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒ ํ‘ํ‘ํ‘ƒํ‘ƒํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํ‘‘ํ‘‘ํทํทํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํท ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ (ํ‘ํ‘ํ‘šํ‘š) At the minimum safe distance of 20 cm, the power density of the EUT is 0.095 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ), which is less than the operational limit of 0.52 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ). Therefore, no minimum safe distance calculation is required. Band 5 (824-849 MHz) Power density is calculated using maximum uplink transmitted power of 363.08 mw and unitless antenna gain less coax loss of 1.29 S = P t G 4ฯ€r 2 = (363.08)(1.29) 4ํœ‹ํœ‹20 2 =0.093(ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ) ํ‘†ํ‘†=ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒํทํทํทํทํทํทํทํทํทํท ( ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„) ํ‘ƒํ‘ƒ ํ‘กํ‘ก =ํ‘‡ํ‘‡ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํทํทํทํทํ‘šํ‘šํทํทํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ( ํ‘šํ‘šํ‘šํ‘š ) ํบํบ=ํดํดํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ ํบํบํ‘‡ํ‘‡ํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํถํถํ‘ƒํ‘ƒํ‘‡ํ‘‡ํถํถ ํฟํฟํ‘ƒํ‘ƒํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํ‘‘ํ‘‘ํ‘ขํ‘ขํทํทํทํท ํ‘ํ‘ํทํทํ‘ํ‘ํ‘›ํ‘›ํ‘ƒํ‘ƒ ( % ) ํ‘ƒํ‘ƒ=ํทํทํทํทํทํทํทํท ํ‘‡ํ‘‡ํทํทํ‘ํ‘ํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒ ํ‘ํ‘ํ‘ƒํ‘ƒํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํ‘‘ํ‘‘ํทํทํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํท ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ (ํ‘ํ‘ํ‘šํ‘š) At the minimum safe distance of 20 cm, the power density of the EUT is 0.093 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ), which is less than the operational limit of 0.55 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ). Therefore, no minimum safe distance calculation is required. Band 4 (1710-1785 MHz) Power density is calculated using maximum uplink transmitted power of 467.74 mw and unitless antenna gain less coax loss of 1.20 S = P t G 4ฯ€r 2 = (467.74)(1.20) 4ํœ‹ํœ‹20 2 =0.112 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ) ํ‘†ํ‘†=ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒํทํทํทํทํทํทํทํทํทํท ( ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„) ํ‘ƒํ‘ƒ ํ‘กํ‘ก =ํ‘‡ํ‘‡ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํทํทํทํทํ‘šํ‘šํทํทํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ( ํ‘šํ‘šํ‘šํ‘š ) ํบํบ=ํดํดํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ ํบํบํ‘‡ํ‘‡ํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํถํถํ‘ƒํ‘ƒํ‘‡ํ‘‡ํถํถ ํฟํฟํ‘ƒํ‘ƒํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํ‘‘ํ‘‘ํ‘ขํ‘ขํทํทํทํท ํ‘ํ‘ํทํทํ‘ํ‘ํ‘›ํ‘›ํ‘ƒํ‘ƒ ( % ) ํ‘ƒํ‘ƒ=ํทํทํทํทํทํทํทํท ํ‘‡ํ‘‡ํทํทํ‘ํ‘ํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒ ํ‘ํ‘ํ‘ƒํ‘ƒํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํ‘‘ํ‘‘ํทํทํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํท ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ (ํ‘ํ‘ํ‘šํ‘š) At the minimum safe distance of 20 cm, the power density of the EUT is 0.112(ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ), which is less than the operational limit of 1 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ). Therefore, no minimum safe distance calculation is required. Band 2 (1850-1915 MHz) Power density is calculated using maximum uplink transmitted power of 489.78 mw and unitless antenna gain less coax loss of 1.10 S = P t G 4ฯ€r 2 = (489.78)(1.10) 4ํœ‹ํœ‹20 2 =0.107 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ) ํ‘†ํ‘†=ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒํทํทํทํทํทํทํทํทํทํท ( ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„) ํ‘ƒํ‘ƒ ํ‘กํ‘ก =ํ‘‡ํ‘‡ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํทํทํทํทํ‘šํ‘šํทํทํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘ƒํ‘ƒํ‘šํ‘š ํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ( ํ‘šํ‘šํ‘šํ‘š ) ํบํบ=ํดํดํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ ํบํบํ‘‡ํ‘‡ํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํถํถํ‘ƒํ‘ƒํ‘‡ํ‘‡ํถํถ ํฟํฟํ‘ƒํ‘ƒํทํทํทํท ( ํทํทํ‘ƒํ‘ƒํทํทํ‘›ํ‘› ํ‘ƒํ‘ƒํ‘›ํ‘› ) โˆ—ํ‘‘ํ‘‘ํ‘ขํ‘ขํทํทํทํท ํ‘ํ‘ํทํทํ‘ํ‘ํ‘›ํ‘›ํ‘ƒํ‘ƒ ( % ) ํ‘ƒํ‘ƒ=ํทํทํทํทํทํทํทํท ํ‘‡ํ‘‡ํทํทํ‘ํ‘ํ‘ƒํ‘ƒ ํทํทํ‘ƒํ‘ƒ ํ‘ํ‘ํ‘ƒํ‘ƒํทํทํทํทํ‘ƒํ‘ƒํ‘ƒํ‘ƒ ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘ƒํ‘ƒํ‘‡ํ‘‡ํ‘‘ํ‘‘ํทํทํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํท ํ‘ƒํ‘ƒํ‘œํ‘œ ํ‘‡ํ‘‡ํทํทํทํทํ‘ƒํ‘ƒํทํทํทํทํ‘‡ํ‘‡ (ํ‘ํ‘ํ‘šํ‘š) At the minimum safe distance of 20 cm, the power density of the EUT is 0.107 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ), which is less than the operational limit of 1 (ํ‘šํ‘šํ‘šํ‘š ํ‘ํ‘ํ‘šํ‘š 2 โ„ ). Therefore, no minimum safe distance calculation is required. Calculated power density - Downlink: Band 12 (728-746 MHz) Power density is calculated using maximum downlink transmitted power of 3โ€ฆ

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Test Report

p2040009_FCC_ Part 20_Rev 1.0 Page 1 of 39 Test Report Prepared for: Wilson Electronics, LLC (weBoost) Model: Drive Reach Description: Vehicular Quint Band Signal Booster FCC ID: PWO460061 ISED ID: 4726A-460061 To FCC Part 20 ISED: RSS-131 (Issue 3) Date of Issue: September 14, 2020 On the behalf of the applicant: Wilson Electronics, LLC (weBoost) 3301 E Deseret Drive St. George, UT 84790 To the attention of: Sam Judd, Engineering 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: p2040009 Greg Corbin 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. p2040009_FCC_ Part 20_Rev 1.0 Page 2 of 39 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 September 14, 2020 Greg Corbin Original Document Current revision of the test report replaces any prior versions. Only the current version of the test report is valid. p2040009_FCC_ Part 20_Rev 1.0 Page 3 of 39 Table of Contents Description Page Table of Contents 3 Table of Annexes 4 Standard Test Conditions and Engineering Practices 6 Test Result Summary 8 Statements of conformity 8 Authorized Frequency Band 9 Maximum Power and Gain 10 Intermodulation 13 Out-of-Band Emissions 15 Conducted Spurious Emissions 19 Noise Limits 22 Uplink Inactivity 25 Variable Gain 26 Occupied Bandwidth 28 Anti-Oscillation 29 Oscillation Mitigation 31 Radiated Spurious 37 Measurement Uncertainty 38 Test Equipment Utilized 39 p2040009_FCC_ Part 20_Rev 1.0 Page 4 of 39 Table of Annexes Description Page Annex A Authorized Frequency Band 9 Annex B Intermodulation 14 Annex C Out of Band Emission 18 Annex D Conducted Spurious Emission 21 Annex E Noise Limits and Uplink Noise Timing 23 Annex F Uplink Inactivity 25 Annex G Uplink Gain Timing 27 Annex H Occupied Bandwidth 28 Annex I Anti-Oscillation 30 Annex J Radiated Spurious Emission 37 p2040009_FCC_ Part 20_Rev 1.0 Page 5 of 39 ANAB Compliance Testing, LLC, has been accredited in accordance with the recognized International Standard ISO/IEC 17025:2017. 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. FCC Site Reg. #349717 IC Site Reg. #2044A-2 Non-accredited tests contained in this report: N/A p2040009_FCC_ Part 20_Rev 1.0 Page 6 of 39 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, ANSI C63-26-2015. For ISED, RSS-131 and RSS-GEN were used. Standard Test Conditions and Engineering Practices Except as noted herein, the following conditions and procedures were observed during the testing: In accordance with ANSI/C63.4-2014, 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 equipment 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) 26.8 โ€“ 31.1 22.3 โ€“ 38.6 960.2 โ€“ 967.7 - Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: Drive Reach_460061 Description: Vehicular Quint Band Signal Booster Firmware: V4.04 Serial Number: 01 PMN: Drive Reach FVIN: V4.04 HVIN: 460061 HMN: 460061 Additional Information: The EUT is a Mobile 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 โ€“ 787 (IC, 777 โ€“ 787) 824 - 849 1850 โ€“ 1915 1710 โ€“ 1755 Downlink 728 - 746 746 โ€“ 757 (IC, 746 โ€“ 756) 869 - 894 1930 โ€“ 1995 2110 - 2155 Modulation Type LTE GSM, CDMA, EDGE, HSPA. EVDO, LTE CDMA, HSPA, LTE, Emission Designators G7D, W7D F9W, GXW, G7W, G7D, W7D F9W, G7D, W7D p2040009_FCC_ Part 20_Rev 1.0 Page 7 of 39 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 with all external attenuation set to 0 dB. The EUT is powered by 12 vdc from the vehicle battery. A 12 vdc to 5 vdc converter with a cigarette lighter type adapter on one end for the 12 vdc input and the EUT plug on the other end supplying 5 vdc to the EUT. For radiated emissions, the EUT was powered by the 12 vdc to 5 vdc converter supplied by the manufacturer. The converter power input was supplied by a lab supply set to 12 vdc. For all other tests, the 12 vdc to 5 dv c converter was not used and the EUT was powered directly by a lab supply set to 5 vdc. Accessories: Qty Description Manufacturer Model S/N 1 DC to DC power converter Wilson N/A N/A Cables: none Modifications: none p2040009_FCC_ Part 20_Rev 1.0 Page 8 of 39 Test Result Summary Specification Test Name Pass, Fail, N/A Comments FCC ISED 20.21(e)(3) RSS-131_3.5(a) Authorized Frequency Band Pass 20.21(e)(8)(i)(B) 20.21(e)(8)(i)(C) 20.21(e)(8)(i)(D) RSS-131_5โ€ฆ

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Test Report

P2040009_Annex a _ Rev 1.0 Page 1 of 6 Annex A Authorized Frequency Band P2040009_Annex a _ Rev 1.0 Page 2 of 6 Auth Freq Band_DL_B12_728 - 746 MHz_p2040009 Auth Freq Band_DL_B13_746 - 757 MHz_p2040009 P2040009_Annex a _ Rev 1.0 Page 3 of 6 Auth Freq Band_DL_B2_2110 - 2155 MHz_p2040009 Auth Freq Band_DL_B4_1930 - 1995 MHz_p2040009 P2040009_Annex a _ Rev 1.0 Page 4 of 6 Auth Freq Band_DL_B5_869 - 894 MHz_p2040009 Auth Freq Band_UL_B12_698 - 716 MHz_p2040009 P2040009_Annex a _ Rev 1.0 Page 5 of 6 Auth Freq Band_UL_B13_776 - 787 MHz_p2040009 Auth Freq Band_UL_B2_1850 - 1915 MHz_p2040009 P2040โ€ฆ

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Contact Information

Applicant

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

Technical Contact

Wilson Electronics, LLCSam Judd
[email protected]4354149293

3301 E. Deseret Dr. ยท St. George ยท United States

Non-Technical Contact

Wilson Electronics, LLCSam Judd
[email protected]14354149293

Test Firm

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

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
3527746 MHz - 756 MHz3.20 mWW7DAmp
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. This device is a Wideband Mobile 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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