
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Wilson Electronics, Inc. 3301 E. Deseret Drive, St. George, Utah 84790 For additional technical support visit www.wilsonelectronics.com Phone: 1-866-294-1660 Fax: 1-435-656-2432 IN-BUILDING Wireless The term “IC:” before the radio certification number signifies that Industry of Canada technical specifications were met. PCS Smart Technology™ Amplifier Installation Guide In-Building Wireless PCS Smart Technology TM Amplifier PART # 801306 1850-1990 MHz FCC ID: PWO8013SB IC: 4726A-8013SB 1. PURPOSE OF THE AMPLIFIER The PCS Smart Technology TM Amplifier improves RF coverage for areas in which low signal strength is a concern. 2. PACKAGE CONTENTS 2.1 Amplifier 2.2 AC/DC 110 volt Power Supply 3. HOW THE AMPLIFIER FUNCTIONS The signal is received by the outside antenna from the cell site. The signal is then AMPLIFIED and transmitted to your phone through the inside antenna. When the phone transmits, the signal is received by the inside antenna and then AMPLIFIED and transmitted to the cell site through the outside antenna. 4. AMPLIFIER INSTALLATION (see illustration on pg. 4 & 5) 4.1 Installing the Wilson Cellular Outside Antenna WARNING: The outside antenna used with this amplifier must be fixed-mounted on an outdoor permanent structure with a separation of at least 20 feet from all persons during normal operation. 4.1.1 Select a location on the roof using your phone in test mode to find the best signal strength. (See leaflet titled PHONE TEST MODES) 4.1.2 The outside antenna should be located in an area with at least a 3 foot radius clear of obstructions and other radiating elements. 4.2 Installing The Amplifier WARNING: Connecting amplifier directly to cell phone may damage phone. WARNING: Connect both antennas before connecting power to the amplifier. 4.2.1 Mount the AMPLIFIER on a wall or ceiling using #6 screws. NOTE: Mount the AMPLIFIER away from direct sunlight, excessive heat and/or moisture. The amplifier needs proper ventilation. DO NOT place the amplifier in an air-tight enclosure. 4.2.2 Connect outside antenna to the amplifier side labeled “OUTSIDE ANTENNA”. 4.2.3 Connect inside antenna to the amplifier side labeled “INSIDE ANTENNA”. 4.2.4 Verify that both the outside and inside antennas are connected before connecting the AC-DC power supply to the power outlet. 4.4 Installing The Wilson Cellular Inside Antenna 4.4.1 See antenna packaging for model specific instructions. 4.4.2 The inside antenna should be centered in the weak signal area. The inside antenna should be at least 7 feet from the floor. FCC Separation Warning WARNING: The inside antenna used with this amplifier must have a separation distance from all persons that is at least: 9 inches for the 2.5 dBi Dome antenna. 14 inches for the 7 dBi Panel antenna. The amplifier must not be co-located or operating in conjunction with any other antenna or amplifier. 4.5 When covering multiple areas a 1900 MHz splitter can be used to allow for more than one inside antenna. Extension cables can also be used if the weak signal area is located far from the location of the outside antenna. For coax runs more than 20 feet use 9913 or equivalent coax. NOTE: For Maximum gain (60 dB), keep a separation distance of at least 50 feet between the outside and inside antennas. Closer spacings may be used, but may cause the amplifier to automatically reduce its gain. NOTE: When using a Yagi antenna make sure the Yagi is pointed away from the inside antenna. ALL LIGHTS GREEN = 60 dB GAIN LIGHT D OFF = 2 dB REDUCTION LIGHT D & C OFF = 10 dB REDUCTION LIGHT D, C & B OFF = 20 dB REDUCTION LIGHT A RED = 40 dB REDUCTION 4.3 Indicator Lights 45 AC / DC Power Supply Amplifier Inside Antenna to Amplifier Connection Cell Site Supports Multiple Users Outside Antenna 1900 MHz Yagi Antenna Shown Outside Antenna to Amplifier Connection Inside Antenna OptionalDome Antenna Shown If using a Yagi Antenna, Make sure the Yagi is not pointed toward the inside antenna. AMPLIFIER PHYSICAL SPECIFICATIONS Connectors N-Female 50 ohms Dimensions 4.5 x 3.5 x 1.25 inches 11.4 x 8.9 x 3.2 (cm) Weight 1.5 lbs / 0.7 kg 45 For maximum gain, keep a separation distance of at least 50 feet between the outside and inside antennas. AC / DC Power Supply Amplifier Inside Antenna to Amplifier Connection Cell Site Supports Multiple Users Outside Antenna 1900 MHz Yagi Antenna Shown Outside Antenna to Amplifier Connection Inside Antenna OptionalDome Antenna Shown AMPLIFIER LAYOUT DIAGRAM 5. AMPLIFIER SPECIFICATIONS Part Number801306 Gain60 dB Frequency PCS 1850-1910 MHz / 1930-1990 MHz Linear Output Power30 dBm Max Output Power3 watts Max RF (up/down)+30 dBm / +30 dBm Noise Figure (typical)4 dB Flatness (up/down)± 4 dB Isolation> 90 dB Power Requirements120 V AC 3 A Max ConnectorsN-Female Dimensions 4.5 x 3.5 x 1.25 (inch) 11.43 x 8.9 x 3.2 (cm) Weight1.5 lbs / 0.7 kg 67 6. OPTIONAL ACCESSORIES/ANTENNA OPTIONS WARNING: Lightning protection is recommended for all installations. 6.1 3dB Dual-Band Splitter Part # 859911 6.2 Coax Cable Extensions 50Ω (see chart on next page) 6.3 Antenna Options: Inside Antenna Options Outside Antenna Option 301103 - Magnet Mount 5 dBi 301124 - Yagi 13 dBi 301106 - Low Profile 2.2 dBi 301113 - Mini Magnet 2.12 dBi 301121 - Dome 2.5 dBi 301122 - Panel 7 dBi 301123 - Dual Polarity Dome, Unity 6.4 N-Male to FME-Male adapter Part # 971113 6.5 Lightning Surge Protection Part # 859902 7. TECH SUPPORT If you need further assistance with your installation: 1) Call Toll-Free 866-294-1660 8:00 AM – 4:30 PM (Mountain Time) 2) E-mail tech support at [email protected] 3) Visit www.wilsonelectronics.com 8. WARNINGS WARNING: The outside antenna used with this amplifier must be fixed-mounted on an out- door permanent structure with a separation of at least 20 feet from all persons during normal operation. WARNING: The inside antenna used with this amplifier must have a separation distance from all persons that is at least: 9 inches for the 2.5 dBi Dome antenna. 14…
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March 27, 2006 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Subject: Data Confidentiality Gentlemen: This letter is to comply with sections 0.457 and 0.459 pertaining to confidential material. Wilson Electronics, Inc. requests that the following documents regarding this submission for FCC ID: PWO8013SB be kept confidential. 1. Schematic Diagrams: 801306RX.JPG & 801306TX.JPG 2. Block Diagram: 801306 Block Diagram.doc 3. Circuit Description: 801306 Circuit Description.pdf The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We do not want these documents to be accessible to the general public. Sincerely, Richard M. Kline, R&D Engineer
WILSON ELECTRONICS, INC. FCC ID: PWO8013SB PARTS LIST All of the information that would be on a parts list (component values, part no. of active devices, etc.) is in the schematic diagram, so we don't have a separate parts list.
WILSON ELECTRONICS, INC. FCC ID: PWO8013SB TUNING PROCEDURE – No tuning procedure is available or required for this device. There is no tuning required.
FCC PART 24 E TEST REPORT APPLICANT Wilson Electronics, Inc. 3301 E. Deseret Drive St. George, Utah 84790 USA 800.204.4104 FCC ID PWO8013SB MODEL NUMBER 801306 PRODUCT DESCRIPTION In-Building Wireless PCS Smart Technology Amplifier DATE SAMPLE RECEIVED January 13, 2006 DATE TESTED January 23, 2006 Tested By Nam Nguyen Approved By Bruno Clavier TEST RESULTS PASS FAIL THE ATTACHED REPORT SHALL NOT BE REPRODUCED EXCEPT IN FULL WITHOUT THE WRITTEN APPROVAL OF TIMCO ENGINEERING, INC. 849 NW STATE ROAD 45 NEWBERRY, FL 32669 USA PH: 888.472.2424 OR 352.472.5500 FAX: 352.472.2030 EMAIL: [email protected] HTTP://WWW.TIMCOENGR.COM APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO8013SB REPORT #: W\WILSON_PWO\78AUT6\78AUT6TestReport.doc Page 2 of 40 TABLE OF CONTENTS 1. COMPLIANCE STATEMENT................................................... 4 2. GENERAL INFORMATION - PART 2.1033 (C).................................. 5 3. PART 2.1046(A) RF POWER OUTPUT:........................................ 7 4. PART 2.1049,2.1051 INPUT/OUTPUT MODULATED AMPLITUDE COMPARISON AND BAND- EDGES COMPLIANCE............................................................ 9 Method of Measurement ..................................................... 9 Figure 1: CDMA modulation – In vs. Out 1851.25MHz................ 10 Figure 2: CDMA modulation – In vs. Out 1908.75MHz................ 11 Figure 3: CDMA modulation – In vs. Out 1931.25MHz................ 12 Figure 4: CDMA modulation – In vs. Out 1988.75MHz................ 13 Figure 5: EDGE modulation – In vs. Out 1850.20MHz................ 14 Figure 6: EDGE modulation – In vs. Out 1909.80MHz................ 15 Figure 7: EDGE modulation – In vs. Out 1930.20MHz................ 16 Figure 8: EDGE modulation – In vs. Out 1989.80MHz................ 17 Figure 9: GSM modulation – In vs. Out 1850.20MHz................. 18 Figure 10: GSM modulation – In vs. Out 1909.80MHz................ 19 Figure 11: GSM modulation – In vs. Out 1930.20MHz................ 20 Figure 12: GSM modulation – In vs. Out 1989.80MHz................ 21 5. PART 2.1051 INTERMODULATION PRODUCT SPURIOUS EMISSIONS................ 22 Method of Measuring Conducted Spurious Emissions ......................... 22 Figure 13: Intermodulation 3 tones spurious emissions............ 23 CDMA up link..................................................... 23 Figure 14: Intermodulation 3 tones spurious emissions............ 24 CDMA down link................................................... 24 Figure 15: Intermodulation 3 tones sprurious emissions........... 25 GSM up link...................................................... 25 Figure 16: Intermodulation 3 tones sprurious emissions (zoom in). 26 GSM up link...................................................... 26 Figure 17: Intermodulation 3 tones sprurious emissions........... 27 GSM down link.................................................... 27 Figure 18: Intermodulation 3 tones sprurious emissions (zoom in). 28 GSM down link.................................................... 28 6. PART 2.1051 Spurious emissions at antenna terminals................... 29 Method of Measuring Conducted Spurious Emissions ......................... 33 7. Out of Band Rejection: frequency Response Plots....................... 34 Figure 19. Filer frequency response 1850MHz band................. 34 Figure 20. Filer frequency response 1930MHz band................. 35 8. PART 2.1053 Field strength of spurious emissions...................... 36 Method of Measuring Radiated Spurious Emissions .......................... 37 9. RF exposure evaluation................................................ 38 10. Equipment List ...................................................... 40 APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO8013SB REPORT #: W\WILSON_PWO\78AUT6\78AUT6TestReport.doc Page 3 of 40 EXHIBITS INCLUDING: BLOCK DIAGRAM SCHEMATIC PARTS LIST USERS MANUAL LABEL SAMPLE LABEL LOCATION EXTERNAL PHOTOGRAPHS INTERNAL PHOTOGRAPHS TUNING PROCEDURE OPERATIONAL DESCRIPTION TEST SET UP PHOTOGRAPHS APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO8013SB REPORT #: W\WILSON_PWO\78AUT6\78AUT6TestReport.doc Page 4 of 40 1. COMPLIANCE STATEMENT This equipment has been tested in accordance with the standards identified in this test report. To the best of my knowledge and belief, these tests were performed using the measurement procedures described in this report and demonstrate that the equipment complies with the appropriate standards. No modifications were made to the equipment during testing in order to demonstrate compliance with these standards. I attest that the necessary measurements were made, under my supervision, at TIMCO ENGINEERING, INC. located at 849 N.W. State Road 45, Newberry, Florida 32669. Authorized Signatory Name: Bruno Clavier Signature: Function: Chief Engineer Date: 4/10/2006 Test engineer name: Nam Nguyen Signature: Nam Nguyen Date: 4/10/2006 APPLICANT: WILSON ELECTRONICS, INC. FCC ID: PWO8013SB REPORT #: W\WILSON_PWO\78AUT6\78AUT6TestReport.doc Page 5 of 40 2. GENERAL INFORMATION - PART 2.1033 (C) 2.1033(c)(1)AND(2) Wilson electronics, inc. will manufacture the “in building wireless pcs smart amplifier” FCC ID: PWO8013SB in quantity, for use under FCC rules part 24E. 2.1033(c) TECHNICAL DESCRIPTION 2.1033(c)(3) User Manual. See the exhibits. 2.1033(c)(4) Type of Emission: F9W (CDMA), GXW (GSM), F1D, and GXW (EDGE) 2.1033(c)(5) Frequency Range: Uplink 1850-1910MHz / Downlink 1930-1990MHz 2.1033(c)(6) Power Range and Controls: There are NO user Power controls. 2.1033(c)(7) Maximum Output and Input Power Rating per manufacturer specifications: 1Watt Uplink and 0.55Watt Downlink Part 24.232: Max Power is: 2W EIRP 2.1033(c)(8) DC Voltages and Current into Final Amplifier: POWER INPUT FINAL AMPLIFIER ONLY Vcc = 5VDC, 1.2A at an RF output of 1 Watt. 2.1033(c)(9) Tune-up procedure. The tune-up procedure is given in the exhibits. 2.1033(c)(10) Complete Circuit Diagrams: Description of all circuitry and devices p…
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| # | Rule Parts | Frequency Range | Power Output | Emission | Tolerance |
|---|---|---|---|---|---|
| 8 | 24E | 1.93 GHz - 1.99 GHz | 550.00 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)