
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
NEED HELP? support.weboost.com866.294.1660 Installation Guide Cell Signal Booster Home MultiRoom Home MultiRoom A WILSON ELECTRONICS BRAND BU-GDE000144-003-012120.indd 1BU-GDE000144-003-012120.indd 11/21/2020 3:34:10 PM1/21/2020 3:34:10 PM Package Contents 1 Preparation 2 STEP 1-A & B: Inside Antenna & Booster Placement 3 STEP 2: Mount & Point Outside Antenna Toward Nearest Cell Tower 5 STEP 3-A: Route & Connect Outside Antenna To Booster 8 STEP 3-B: Route & Connect Inside Antenna To Booster 9 STEP 4: Power Up The Booster & Optimize The System 10 Measuring Booster Performance 12 Light Patterns 14 Troubleshooting 15 Safety Guidelines 16 Specifications 17 Warranty 18 ______ Index BU-GDE000144-003-012120.indd 2BU-GDE000144-003-012120.indd 21/21/2020 3:34:10 PM1/21/2020 3:34:10 PM 1 HOME MULTIROOM CELL PHONE SIGNAL BOOSTER ______ Package Contents Home MultiRoom Outside Antenna Mounting Bracket Window Entry Cable (951177) Wall Mount Brackets w/Command Strips Cable Mounting Clips Qty. 15 Inside Antenna (314440) Outside Antenna (314445) 30โ & 2-15โ Cables (950630), (YX030-15W w/971129 Barrel Connector) Power Supply (850018) BU-GDE000144-003-012120.indd 1BU-GDE000144-003-012120.indd 11/21/2020 3:34:11 PM1/21/2020 3:34:11 PM 2 CELL PHONE SIGNAL BOOSTER HOME MULTIROOM ______ Preparation NOTE: These instructions will walk you through a โsoftโ install process to find the optimal locations for the inside and outside antennas, then through the process of the permanent installation. You Will Need (tools not included) Make sure the following materials are prepared and ready for your installation. o Ladder o Drill (if routing cable through wall) o 1โ-3โ diameter existing pole for mounting Outside Antenna (#901117 Pole Mount can be purchased separately if needed) o Recommended: Power Strip with surge protection 1 to 2 hours 1 Person (2 people to make antenna calibration easier) BU-GDE000144-003-012120.indd 2BU-GDE000144-003-012120.indd 21/21/2020 3:34:11 PM1/21/2020 3:34:11 PM 3 HOME MULTIROOM CELL PHONE SIGNAL BOOSTER NOTE: Do not connect booster to power until the system is fully installed. ______ Step 1-A & B: Inside Antenna & Booster Placement Place the Inside Antenna where you need the greatest signal boost and place Booster in your desired location at least 24โ away from Inside Antenna. TIP: The cable from the Inside Antenna can be routed into the ceiling and connected to the coax cable out-of-sight for a better look. BU-GDE000144-003-012120.indd 3BU-GDE000144-003-012120.indd 31/21/2020 3:34:11 PM1/21/2020 3:34:11 PM 4 CELL PHONE SIGNAL BOOSTER HOME MULTIROOM Inside Antenna Mounting Options Mounted Vertical Command Strips Command Strips Mounted Horizontal Or use the kickstand and set on desktop ______ (STEP 1-A & B cont.) The Inside Antenna can be mounted horizontal, vertical or on a desktop. Command strips can be used to secure mounting bracket. BU-GDE000144-003-012120.indd 4BU-GDE000144-003-012120.indd 41/21/2020 3:34:12 PM1/21/2020 3:34:12 PM 5 HOME MULTIROOM CELL PHONE SIGNAL BOOSTER ______ Step 2: Mount & Point Outside Antenna Toward Nearest Cell Tower NOTE: Mounting on existing roof exhaust pipe would be a good time-saver option. Watch out for power lines. Outside Antenna Mount Bracket Clamps Pole mounting and wall mounting options are included. The pole mounting option is preferred because it will be easier to adjust to the direction of the cell tower. Attach the Mount to the Outside Antenna and use the Bracket Clamps to attach the Antenna to a pole or exhaust pipe. Pole (1.0โ-3.0โdia.) BU-GDE000144-003-012120.indd 5BU-GDE000144-003-012120.indd 51/21/2020 3:34:13 PM1/21/2020 3:34:13 PM 6 CELL PHONE SIGNAL BOOSTER HOME MULTIROOM Point the Outside Antenna toward the nearest cell phone tower. To find the nearest tower, use an app such as โOpen Signalโ. This is the most critical step of the installation process because it will determine the overall performance of the booster system. The greater the separation between the Inside and Outside Antennas, the better performance you will get from the booster. Outside Antenna NOTE: The Outside Antenna must be at least 50 feet horizontal or 20 feet vertical from the Inside Antenna for best performance. Make sure the Inside Antenna and Outside Antennas are setup so they are facing away from each other. Cell Tower ______ (STEP 2 cont.) BU-GDE000144-003-012120.indd 6BU-GDE000144-003-012120.indd 61/21/2020 3:34:13 PM1/21/2020 3:34:13 PM 7 HOME MULTIROOM CELL PHONE SIGNAL BOOSTER If thereโs not a pole to easily mount the Outside Antenna, this may be mounted on the fascia by fastening the bracket as shown below. ______ (STEP 2 cont.) Mounting On Side Of Roof (Fascia) Cable Mounting Clips provided Using only the back Bracket Clamp for mounting TIP: Make sure to do the optimization test on Step 4 to find the best side of your house before you mount this on the fascia. BU-GDE000144-003-012120.indd 7BU-GDE000144-003-012120.indd 71/21/2020 3:34:13 PM1/21/2020 3:34:13 PM 8 CELL PHONE SIGNAL BOOSTER HOME MULTIROOM ______ Step 3-A: Route & Connect Outside Antenna To Booster The greater the separation, the better the Booster performance Connect the white RG-6 Cable to Outside Antenna and route cable into the home. A Window Entry Cable is provided to help make cable entry easier. All connections should be finger tightened only. Route cable to the Home MultiRoom Booster and connect to the port labeled โOUTSIDE ANTENNAโ. Outside Antenna connection Window Entry Cable 15โ RG-6 Cable15โ RG-6 Cable Outside Antenna Cell Tower Booster Booster Cable Mounting Clips provided BU-GDE000144-003-012120.indd 8BU-GDE000144-003-012120.indd 81/21/2020 3:34:14 PM1/21/2020 3:34:14 PM 9 HOME MULTIROOM CELL PHONE SIGNAL BOOSTER connection ______ Step 3-B: Route & Connect Inside Antenna To Booster Inside Antenna 30โ RG-6 Cable Booster Connect the white 30โ Cable to Inside Antenna and route to the Home MultiRoom Booster and connect to the port labeled โINSIDE ANTENNAโ. The greater the separationโฆ
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May 19, 2020 Attestation For Wilson Signal Booster: FCC ID PWO460059 FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 R E: Attestation for FCC ID: PWO460059 To W hom It May Concern: E ach Signal Booster certificated under FCC ID PWO460059 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 โOnโ (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. Sin cerely, M ikel Parry Compliance Manager
Agent Authorization Letter June 5, 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 460059, 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
May 22, 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 460059 Signal Booster under FCC ID: PWO460059 in accordance with sections 0.457 and 0.459 of the Commissionโs 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 6.Internal Photos โขDue to the fact that there are NO user serviceable parts within the enclosure, there is no reason for internal photos to be publicly accessible. There is also no way for an end user to access the internal components of this unit. 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. Sin cerely, M ikel Parry Compliance Manager
June 23, 2020 FEDERAL COMMUNICATIONS COMMISSION Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 Subject: Tuning and Adjustment of Wilson Model 460059 Signal Booster Model 460059 Signal Booster Tuned Frequency (MHz) Target Gain (dB) Maximum Gain (dB) Target Power (dBm) Maximum Power (dBm) Uplink 698-716 62.3 62.3 24.8 24.8 777-787 60.7 60.7 25.0 25.0 824-849 63.6 63.6 25.3 25.3 1710-1785 70.2 70.2 25.2 25.2 1850-1910 68.3 68.3 25.1 25.1 Downlink 728-746 63.0 63.0 12.7 12.7 746-756 61.6 61.6 12.3 12.3 869-894 64.0 64.0 12.8 12.8 1930-1990 70.2 70.2 12.6 12.6 2110-2155 68.5 68.5 12.8 12.8 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, at the bottom. A Wilson Lightning Surge Protector is recommended for all building installations. Make sure the protector is installed outside the building. Connect it to suitable ground and in line, between the Outside Antenna and the Signal Amplifier. 2. Standard installation Sincerely, Mikel Parry Compliance Manager Compliance Manager 3301 E Deseret Dr. St. George, UT 84790
June 5, 2020 Antenna Kitting Information Model 460059 Signal Booster Accessory Kit Options 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 Outdoor Antenna Directional 314475 7.5 7.5 7.3 8.8 8.8 8.8 314445 7.2 7.2 6.9 8.9 8.4 9.2 Omni 304423 2 2 2 5 5 5 304421 2 2 2 4 4 4 Outdoor Cable RG-6 (Qty:2 15ft) YX030-15W 2.6 2.6 2.8 4.3 4.6 5 Indoor Cable RG-6 (30ft) 950630 2.6 2.6 2.8 4.3 4.6 5 Indoor Antenna Dome 304419 2 2 2 4 4 4 Panel 301211 -0.8 -0.8 1.5 2.4 3.4 1.2 314440 5.75 5.75 6 7.3 7.3 7.6 314444 5.75 5.75 6 7.3 7.3 7.6 *All equivalent or lesser antennas and cables are suitable for use with 460059 signal boosters Accessory Kit Options 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 Outdoor Antenna Panel 314473 5.2 5.2 4.4 10.1 10.6 8.2 Directional 301111 10 10 10.8 -6.8 -13.8 -13.8 311228 12 12 12 12.9 13.1 11.2 314475 7.5 7.5 7.3 8.8 8.8 8.8 314445 7.2 7.2 6.9 8.9 8.4 9.2 Omni 304423 2 2 2 5 5 5 304421 2 2 2 4 4 4 Outdoor Cable RG-6 (Qty: 2 50ft) 290650 8.5 9 9.3 14.1 14.8 16 Indoor Cable RG-6 (50ft) 290650 4.3 4.5 4.7 7.1 7.4 8 Indoor Antenna Dome 304419 2 2 2 4 4 4 Panel 301211 -0.8 -0.8 1.5 2.4 3.4 1.2 311155 5.2 5.2 4.4 10.1 10.6 8.2 314440 5.75 5.75 6 7.3 7.3 7.6 314444 5.75 5.75 6 7.3 7.3 7.6 *All equivalent or lesser antennas and cables are suitable for use with 460059 signal boosters END OF REPORT
RF MPE EXPOSURE June 24, 2020 FCC ID: PWO460059 The MPE calculations for EUT model 460059 signal booster were done for frequency bands: โข 700 MHz (Band 12) โข 700 MHz (Band 13) โข 800 MHz (Band 5) โข 1900 MHz (Band 2) โข 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 - Coax Loss (unitless) Donor 698-716 314475 YX030-15W 7.5 2.6 3.1 Donor 777-787 314475 YX030-15W 7.5 2.6 3.1 Donor 824-849 314475 YX030-15W 7.3 2.8 2.8 Donor 1710-1785 314445 YX030-15W 8.9 4.3 2.9 Donor 1850-1915 314475 YX030-15W 8.8 4.6 2.6 Server 728-746 314440 950630 5.8 2.6 2.1 Server 746-756 314440 950630 5.8 2.6 2.1 Server 869-894 314440 950630 6.0 2.8 2.1 Server 1930-1995 314440 950630 7.3 4.6 2.0 Server 2110-2155 314440 950630 7.6 5 1.7 *Maximum antenna gain and minimum cable losses were selected to compute โworst caseโ limit and are indicated in the antenna kitting specification for model 460059 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 (mw) Power density limit (mw/cm^2) Power density evaluation (mw/cm^2) Minimum safe distance (cm) Donor 698-716 24.8 (302.0) 0.47 0.186 20 Donor 777-787 25.0 (316.2) 0.52 0.194 20 Donor 824-849 25.3 (338.8) 0.55 0.190 20 Donor 1710-1785 25.2 (331.1) 1 0.190 20 Donor 1850-1915 25.1 (323.6) 1 0.169 20 Server 728-746 12.7 (18.6) 0.49 0.008 20 Server 746-756 12.3 (17.0) 0.50 0.007 20 Server 869-894 12.8 (19.1) 0.58 0.008 20 Server 1930-1995 12.6 (18.2) 1 0.007 20 Server 2110-2155 12.8 (19.1) 1 0.007 20 *The lowest frequency in each band was used to compute the โworst 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 302.0 mw and unitless antenna gain less coax loss of 3.1 S = P t G 4ฯr 2 = (302.0)(3.1) 4ํํ20 2 =0.186 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํํํ ํํํํ ํทํทํํํทํทํทํทํทํทํทํทํทํท ( ํํํํ ํํํํ 2 โ) ํํ ํกํก =ํํํํํํํทํทํทํทํํํทํทํทํทํทํทํํํํ ํํํํํํ ํํํํ ( ํํํํ ) ํบํบ=ํดํดํทํทํทํทํํํทํทํทํทํํ ํบํบํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํถํถํํํํํถํถ ํฟํฟํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํํํํํทํทํทํท ํํํทํทํํํํํํ ( % ) ํํ=ํทํทํทํทํทํทํทํท ํํํทํทํํํํ ํทํทํํ ํํํํํทํทํทํทํํํํ ํํํํ ํํํํํํํทํทํํํทํทํทํทํํํทํท ํํํํ ํํํทํทํทํทํํํทํทํทํทํํ (ํํํํ) At the minimum safe distance of 20 cm, the power density of the EUT is 0.186 (ํํํํ ํํํํ 2 โ ), which is less than the operational limit of 0.47 (ํํํํ ํํํํ 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 316.2 mw and unitless antenna gain less coax loss of 3.1 S = P t G 4ฯr 2 = (316.2)(3.1) 4ํํ20 2 =0.194 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํํํ ํํํํ ํทํทํํํทํทํทํทํทํทํทํทํทํท ( ํํํํ ํํํํ 2 โ) ํํ ํกํก =ํํํํํํํทํทํทํทํํํทํทํทํทํทํทํํํํ ํํํํํํ ํํํํ ( ํํํํ ) ํบํบ=ํดํดํทํทํทํทํํํทํทํทํทํํ ํบํบํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํถํถํํํํํถํถ ํฟํฟํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํํํํํทํทํทํท ํํํทํทํํํํํํ ( % ) ํํ=ํทํทํทํทํทํทํทํท ํํํทํทํํํํ ํทํทํํ ํํํํํทํทํทํทํํํํ ํํํํ ํํํํํํํทํทํํํทํทํทํทํํํทํท ํํํํ ํํํทํทํทํทํํํทํทํทํทํํ (ํํํํ) At the minimum safe distance of 20 cm, the power density of the EUT is 0.194 (ํํํํ ํํํํ 2 โ ), which is less than the operational limit of 0.52 (ํํํํ ํํํํ 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 338.8 mw and unitless antenna gain less coax loss of 2.8 S = P t G 4ฯr 2 = (338.8)(2.8) 4ํํ20 2 =0.190 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํํํ ํํํํ ํทํทํํํทํทํทํทํทํทํทํทํทํท ( ํํํํ ํํํํ 2 โ) ํํ ํกํก =ํํํํํํํทํทํทํทํํํทํทํทํทํทํทํํํํ ํํํํํํ ํํํํ ( ํํํํ ) ํบํบ=ํดํดํทํทํทํทํํํทํทํทํทํํ ํบํบํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํถํถํํํํํถํถ ํฟํฟํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํํํํํทํทํทํท ํํํทํทํํํํํํ ( % ) ํํ=ํทํทํทํทํทํทํทํท ํํํทํทํํํํ ํทํทํํ ํํํํํทํทํทํทํํํํ ํํํํ ํํํํํํํทํทํํํทํทํทํทํํํทํท ํํํํ ํํํทํทํทํทํํํทํทํทํทํํ (ํํํํ) At the minimum safe distance of 20 cm, the power density of the EUT is 0.190 (ํํํํ ํํํํ 2 โ ), which is less than the operational limit of 0.55 (ํํํํ ํํํํ 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 331.1 mw and unitless antenna gain less coax loss of 2.9 S = P t G 4ฯr 2 = (331.1)(2.9) 4ํํ20 2 =0.190 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํํํ ํํํํ ํทํทํํํทํทํทํทํทํทํทํทํทํท ( ํํํํ ํํํํ 2 โ) ํํ ํกํก =ํํํํํํํทํทํทํทํํํทํทํทํทํทํทํํํํ ํํํํํํ ํํํํ ( ํํํํ ) ํบํบ=ํดํดํทํทํทํทํํํทํทํทํทํํ ํบํบํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํถํถํํํํํถํถ ํฟํฟํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํํํํํทํทํทํท ํํํทํทํํํํํํ ( % ) ํํ=ํทํทํทํทํทํทํทํท ํํํทํทํํํํ ํทํทํํ ํํํํํทํทํทํทํํํํ ํํํํ ํํํํํํํทํทํํํทํทํทํทํํํทํท ํํํํ ํํํทํทํทํทํํํทํทํทํทํํ (ํํํํ) At the minimum safe distance of 20 cm, the power density of the EUT is 0.190 (ํํํํ ํํํํ 2 โ ), which is less than the operational limit of 1 (ํํํํ ํํํํ 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 323.6 mw and unitless antenna gain less coax loss of 2.6 S = P t G 4ฯr 2 = (323.6)(2.6) 4ํํ20 2 =0.169 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํํํ ํํํํ ํทํทํํํทํทํทํทํทํทํทํทํทํท ( ํํํํ ํํํํ 2 โ) ํํ ํกํก =ํํํํํํํทํทํทํทํํํทํทํทํทํทํทํํํํ ํํํํํํ ํํํํ ( ํํํํ ) ํบํบ=ํดํดํทํทํทํทํํํทํทํทํทํํ ํบํบํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํถํถํํํํํถํถ ํฟํฟํํํทํทํทํท ( ํทํทํํํทํทํํ ํํํํ ) โํํํํํทํทํทํท ํํํทํทํํํํํํ ( % ) ํํ=ํทํทํทํทํทํทํทํท ํํํทํทํํํํ ํทํทํํ ํํํํํทํทํทํทํํํํ ํํํํ ํํํํํํํทํทํํํทํทํทํทํํํทํท ํํํํ ํํํทํทํทํทํํํทํทํทํทํํ (ํํํํ) At the minimum safe distance of 20 cm, the power density of the EUT is 0.169 (ํํํํ ํํํํ 2 โ ), which is less than the operational limit of 1 (ํํํํ ํํํํ 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 uplink transmitted power of 18.6 mw and unitless antenna gain less coax loss of 2.1 S = P t G 4ฯr 2 = (18.6)(2.1) 4ํํ20 2 =0.008 (ํํํํ ํํํํ 2 โ ) ํํ=ํํํํโฆ
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Mobile Station Coupling Losses (MSCL) June 5, 2020 FCCID: PWO460059 The following formulas were used to calculate MSCL with a 2 m path loss and a 45 degree polarity mismatch between the inside antenna and the mobile device for EUT model 460059 signal booster: ํดํดํดํดํดํดํดํด ( ํ ํ ํ ํ ) =ํทํทํทํทํทํทํทํท ํดํดํณํณํณํณํณํณ ( ํ ํ ํ ํ ) +ํทํทํณํณํทํทํทํทํทํทํทํทํทํทํทํท ํดํดํณํณํณํณํณํณ ( ํ ํ ํ ํ ) โํฎํฎ ํทํท โํฎํฎ ํทํท ํํํํํํ โ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํํํํ ) =20log ( ํํ ) +20log ( ํํ ) โ27.55 ํํ=ํํํํํํํํํํํํํํํํํํ ํํํํํํ ํํ=ํทํทํทํท ํฟํฟํํํํํํํํํํ ํํํํ ํฟํฟํํ ํํํํํํํํํฟํฟํํํํํํํํํํํํ ํํํฟํฟ ํํํํํํํํํทํท ํํํํํํ ํํํํํํํํํํํํํํ (ํํํํํํํํํํํฟํฟ) ํํํฟํฟํํํํํํํทํท ํํํํ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํํํํ ) =20log๏ฟฝ ํธํธ 1 ํธํธ 2 ๏ฟฝ ํํํฟํฟํํํํํํํทํท ํํํํ ํฟํฟํฟํฟํฟํฟํฟํฟ=20log๏ฟฝ ํธํธ 1 ํธํธ 1 sin (ํํ) ๏ฟฝ, ํํ=45ยฐ ํธํธ 1 =ํํํํํํ ํทํทํํํํํํ ํํํฟํฟํฟํฟํฟํฟํทํท ํํํํํํ ํํํํํํํํํทํทํํํํํํํํ ํฟํฟํํ ํํโํํ ํธํธํํํํํํํํํํํทํทํํ ํนํนํทํทํํํํํํ ํํํํ ํฟํฟํํ ํํํฟํฟํํํทํทํํํํ ํทํทํํํํ ํทํทํํํํ ํธํธ 2 =ํํํํํํํํํทํทํํํํํํํํ ํฟํฟํํ ํํโํํ ํํํํํํํํํํํํํทํทํํ ํํํทํทํํ ํํํํ ํํํํ ํฟํฟํํ ํํโํํ ํํํฟํฟํํํทํทํํํํ ํทํทํํํํ ํทํทํํํํ ํคํคํทํทํํโ ํํ 45ยฐ ํํํฟํฟํํํํํํํทํท ํํํํ ํํํทํทํฟํฟํํํํํํํํโ ํธํธ 2 =ํธํธ 1 sin ( ํํ ) ํบํบ ํกํก =ํํํธํธ ํํํํํํํํํฟํฟํํํทํทํํํํํํํํ ํดํดํํํํํํํํํํํํ ํบํบํํํทํทํํ ํบํบ ํํ =ํํํทํทํํํํํํํํ ํํํฟํฟํฟํฟํฟํฟํํํํํํ ํํํํํํํํํํํํ ํดํดํํํํํํํํํํํํ ํบํบํํํทํทํํ Path Loss Evaluation ํํํํํํ โ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํํํํ ) =20log ( ํํ ) +20log ( ํํ ) โ27.55 ํํ=ํํํํํํํํํํํํํํํํํํ ํทํทํํ ํํํํํํ ํํ=ํทํทํทํท ํฟํฟํํํํํํํํํํ ํํํํ ํฟํฟํํ ํํํํํํํํํฟํฟํํํํํํํํํํํํ ํํํฟํฟ ํํํํํํํํํทํท ํํํํํํ ํํํํํํํํํํํํํํ (ํํํํํํํํํํํฟํฟ) 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 ํํํฟํฟํํํํํํํทํท ํํํํ ํฟํฟํฟํฟํฟํฟํฟํฟ ( ํํํํ ) =20log๏ฟฝ ํธํธ 1 ํธํธ 2 ๏ฟฝ ํํํฟํฟํํํํํํํทํท ํํํํ ํฟํฟํฟํฟํฟํฟํฟํฟ (ํํํํ) =20log๏ฟฝ ํธํธ 1 ํธํธ 1 sin (ํํ) ๏ฟฝ, ํํ=45ยฐ ํธํธ 1 =ํํํํํํ ํทํทํํํํํํ ํํํฟํฟํฟํฟํฟํฟํทํท ํํํํํํ ํํํํํํํํํทํทํํํํํํํํ ํฟํฟํํ ํํโํํ ํธํธํํํํํํํํํํํทํทํํ ํนํนํทํทํํํํํํ ํํํํ ํฟํฟํํ ํํํฟํฟํํํทํทํํํํ ํทํทํํํํ ํทํทํํํํ ํธํธ 2 =ํํํํํํํํํทํทํํํํํํํํ ํฟํฟํํ ํํโํํ ํํํํํํํํํํํํํทํทํํ ํํํทํทํํ ํํํํ ํํํํ ํฟํฟํํ ํํโํํ ํํํฟํฟํํํทํทํํํํ ํทํทํํํํ ํทํทํํํํ ํคํคํทํทํํโ ํํ 45ยฐ ํํํฟํฟํํํํํํํทํท ํํํํ ํํํทํทํฟํฟํํํํํํํํโ ํธํธ 2 =ํธํธ 1 sin ( ํํ ) ํํํฟํฟํํํํํํํทํท ํํํํ ํฟํฟํฟํฟํฟํฟํฟํฟ=20log๏ฟฝ 1 ํฟํฟํทํทํํ ๏ฟฝ ํํ 180 ๏ฟฝ ๏ฟฝ=ํํ.ํํํํ ํ ํ ํ ํ UE Transmitter Antenna Gain Evaluation ํบํบ ํกํก =ํํํธํธ ํํํํํํํํํฟํฟํํํทํทํํํํํํํํ ํดํดํํํํํํํํํํํํ ํบํบํํํทํทํํ=ํํ ํ ํ ํ ํ ํทํท 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 Indoor Cable RG-6 (30ft) 950630 2.6 2.6 2.8 4.3 4.6 5 Server Antenna Dome 304419 2 2 2 4 4 4 Panel 301211 -0.8 -0.8 1.5 2.4 3.4 1.2 314440 5.75 5.75 6 7.3 7.3 7.6 314444 5.75 5.75 6 7.3 7.3 7.6 Minimum MSCL Evaluation Maximum antenna gain and minimum coax loss was selected to calculate โworst 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 44.0 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) 5.75 5.75 6 7.3 7.3 Server Coax Loss (dB) 2.6 2.6 2.8 4.3 4.6 Minimum MSCL (dB) 35.26 36.16 36.71 43.31 44.31 END OF REPORT
p2040007_FCC_ Part 20_rev 2.0 Page 1 of 39 Test Report Prepared for: Wilson Electronics, LLC (weBoost) Model: Home MultiRoom Description: Quint Band Signal Booster FCC ID: PWO460059 ISED ID: 4726A-460059 To FCC: Part 20 ISED: RSS-131 (Issue 3) Date of Issue: June 16, 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, Compliance 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: p2040007 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. p2040007_FCC_ Part 20_rev 2.0 Page 2 of 39 p2040007_FCC_ Part 20_rev 2.0 Page 3 of 39 Test Report Revision History Revision Date Revised By Reason for Revision 1.0 June 15, 2020 Greg Corbin Original Document 2.0 June 24, 2020 Greg Corbin Removed EDGE from the 1700 / 2100 spectrum table on page 6. Added emission designators to table on page 6. p2040007_FCC_ Part 20_rev 2.0 Page 4 of 39 Table of Contents Description Page Table of Contents 4 Table of Annexes 5 Standard Test Conditions and Engineering Practices 7 Test Result Summary 9 Authorized Frequency Band 10 Maximum Power and Gain 11 Intermodulation 14 Out-of-Band Emissions 16 Conducted Spurious Emissions 20 Noise Limits 23 Uplink Inactivity 26 Variable Gain 27 Occupied Bandwidth 29 Anti-Oscillation 30 Oscillation Mitigation 32 Radiated Spurious 38 Measurement Uncertainty 39 Test Equipment Utilized 40 p2040007_FCC_ Part 20_rev 2.0 Page 5 of 39 Table of Annexes Description Page Annex A Authorized Frequency Band 10 Annex B Intermodulation 15 Annex C Out of Band Emission 19 Annex D Conducted Spurious Emission 22 Annex E Noise Limits and Uplink Noise Timing 24 Annex F Uplink Inactivity 26 Annex G Uplink Gain Timing 28 Annex H Occupied Bandwidth 29 Annex I Anti-Oscillation 31 Annex J Radiated Spurious Emission 38 p2040007_FCC_ Part 20_rev 2.0 Page 6 of 39 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 p2040007_FCC_ Part 20_rev 2.0 Page 7 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) 25 โ 29.3 956.5 โ 972.6 24.1 โ 39.3 Measurement results, unless otherwise noted, are worst-case measurements. EUT Description Model: Home Multi-room_460059 Description: Quint Band Signal Booster Firmware: V4.04 Serial Number: A1019000006 PMN: weBoost Home MultiRoom FVIN: V4.04 HVIN: 460059 HMN: weBoost Home MultiRoom Additional Information: The EUT is an In-Building, 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 F9W, GXW, G7W, G7D F9W, G7D p2040007_FCC_ Part 20_rev 2.0 Page 8 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 an 120v AC to 5.0v DC converter. The EUT RF port impedance is 75 ohms. 75 ohm to 50 ohm adapters were installed on the RF ports to match the impedance of the test equipment. The transformers were installed for all tests. Accessories: Qty Description Manufacturer Model S/N 1 AC to DC power supply Power Partners CGSW30A-050-3500 N/A 2 75 ohm to 50 ohm Transformer Mini-Circuits SFMP-5075-3+ N/A Cables: none Modifications: none p2040007_FCC_ Part 20_rev 2.0 Page 9 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_5.1.1.2 RSS-131_5.1.3.3 Maximum Power and Gain Pass 20.21(e)(8)(i)(F) RSS-131_5.1.3.5 Intermodulation Pass 2โฆ
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P20 40007_Annex A _ Rev 1.0 Page 1 of 6 Annex A Authorized Frequency Band P2040007_Annex A _ Rev 1.0 Page 2 of 6 Auth Freq Band_DL_B12_728 - 746 MHz Auth Freq Band_DL_B13_746 - 757 MHz P2040007_Annex A _ Rev 1.0 Page 3 of 6 Auth Freq Band_DL_B2_1930 - 1995 MHz Auth Freq Band_DL_B4_2110 - 2155 MHz P2040007_Annex A _ Rev 1.0 Page 4 of 6 Auth Freq Band_DL_B5_869 - 894 MHz Auth Freq Band_UL_B12_698 - 716 MHz P2040007_Annex A _ Rev 1.0 Page 5 of 6 Auth Freq Band_UL_B13_776 - 787 MHz Auth Freq Band_UL_B2_11850 - 1915 MHz P2040007_Annex A _ Rev 1.0 Page 6 of 6 Auth Freq Band_UL_B4_1710 - 1755 MHz Auth Freq Band_UL_B5_824 - 849 MHz
P20 40007_Annex B _ Rev 1.0 Page 1 of 11 Annex B Intermodulation P2040007_Annex B _ Rev 1.0 Page 2 of 11 Intermodulation_DL_B12_728 - 746 MHz Intermodulation_DL_B12_728 - 746 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 3 of 11 Intermodulation_DL_B13_746 - 757 MHz Intermodulation_DL_B13_746 - 757 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 4 of 11 Intermodulation_DL_B2_1930 - 1995 MHz Intermodulation_DL_B2_1930 - 1995 MHz_Pin + 7 dB P2040007_Annex B _ Rev 1.0 Page 5 of 11 Intermodulation_DL_B4_2110 - 2155 MHz Intermodulation_DL_B4_2110 - 2155 MHz_Pin + 9 dB P2040007_Annex B _ Rev 1.0 Page 6 of 11 Intermodulation_DL_B5_869 - 894 MHz Intermodulation_DL_B5_869 - 894 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 7 of 11 Intermodulation_UL_B12_698 - 716 MHz Intermodulation_UL_B12_698 - 716 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 8 of 11 Intermodulation_UL_B13_776 - 787 MHz Intermodulation_UL_B13_776 - 787 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 9 of 11 Intermodulation_UL_B2_1850 - 1915 MHz Intermodulation_UL_B2_1850 - 1915 MHz_Pin + 3 dB P2040007_Annex B _ Rev 1.0 Page 10 of 11 Intermodulation_UL_B4_1710 - 1755 MHz Intermodulation_UL_B4_1710 - 1755 MHz_Pin + 10 dB P2040007_Annex B _ Rev 1.0 Page 11 of 11 Intermodulation_UL_B5_824 - 849 MHz Intermodulation_UL_B5_824 - 849 MHz_Pin + 10 dB
P20 40007_Annex B _ Rev 1.0 Page 1 of 31 Annex C Out OF Band Emissions P2040007_Annex B _ Rev 1.0 Page 2 of 31 OOBE_DL_B12_728 - 746 MHz_CDMA_lower band edge OOBE_DL_B12_728 - 746 MHz_CDMA_upper band edge P2040007_Annex B _ Rev 1.0 Page 3 of 31 OOBE_DL_B12_728 - 746 MHz_GSM_lower band edge OOBE_DL_B12_728 - 746 MHz_GSM_upper band edge P2040007_Annex B _ Rev 1.0 Page 4 of 31 OOBE_DL_B12_728 - 746 MHz_WCDMA_lower band edge OOBE_DL_B12_728 - 746 MHz_WCDMA_upper band edge P2040007_Annex B _ Rev 1.0 Page 5 of 31 OOBE_DL_B13_746 - 757 MHz_CDMA_lower band edge OOBE_DL_B13_746 - 757 MHz_CDMA_upper band edge P2040007_Annex B _ Rev 1.0 Page 6 of 31 OOBE_DL_B13_746 - 757 MHz_GSM_lower band edge OOBE_DL_B13_746 - 757 MHz_GSM_upper band edge P2040007_โฆ
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3301 E. Deseret Dr. ยท St. George, Utah ยท United States
| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 34 | 27 | 2.11 GHz - 2.15 GHz | 19.00 mW | F9W | Amp |
Single Band Bi-Directional Amplifier
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)5G NR Industrial Signal Booster
Equipment Class
B2I - Part 20 Industrial Booster (CMRS)
Quint Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Dual Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)
Quint Band Signal Booster
Equipment Class
B2W - Part 20 Wideband Consumer Booster (CMRS)