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PWO8040SBIn-Building Wireless iDEN SmartTech Amplifier

Wilson Electronics, LLC
In-Building Wireless iDEN SmartTech Amplifier - FCC ID PWO8040SB - Wilson Electronics, LLC
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Application Details

Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Date of Grant
Jul 20, 2005
Application Purpose
Original Equipment
Date of Application
Jul 20, 2005
Equipment Note
In-Building Wireless iDEN SmartTech Amplifier
Frequency Range
851.00000000 - 866.00000000
Company
Wilson Electronics, LLC
Country
United States

Documents & Files

Select a file to view

Users Manual

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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

Wilson Electronics, Inc. 3301 E. Deseret Drive, St. George, Utah 84790 For additional technical support go to www.wilsonelectronics.com Phone: 1-866-294-1660 Fax: 1-435-656-2432 IN-BUILDING Wireless The term “IC:” before the radio certification number only signifies that Industry of Canada technical specifications were met. Cellular & iDEN Amplifier Installation Guide Cellular & iDEN Analog & Digital - CDMA, GPRS, GSM, TDMA In-Building Wireless Cellular Smart Technology TM Amplifier 824-894 MHz FCC ID:PWO8011SB IC: 4726A-8011SB In-Building Wireless iDEN Smart Technology TM Amplifier 806-866 MHz FCC ID:PWO8040SB IC: 4726A-8040SB  1. PURPOSE OF THE AMPLIFIER The Smart Technology TM Amplifiers improve RF coverage for areas in which low signal strength is a problem. 2. PACKAGE CONTENTS 2.1 Amplifier 2.2 AC-to-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 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’ radius clear of obstructions and other radiating elements. 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. 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. 4.2 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. 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 AN- TENNA should be at least 7’ from the floor. WARNING: The inside antenna used with this amplifier must have a separation dis- tance 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 large areas a 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’ use 9913 or equivalent coax. NOTE: For Maximum gain (60 dB), keep a separation distance of at least 75 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 the 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 4.2 Indicator Lights 5 For maximum gain, keep a separation distance of at least 75 ft between the outside and inside antennas. AC/DC PowerSupply Amplifier InsideAntennato AmplifierConnection Cell Site Supports Multiple Users OutsideAntenna YagiAntennaShown OutsideAntennato AmplifierConnection InsideAntenna OptionalDome AntennaShown AMPLIFIER LAYOUT DIAGRAM If using the Yagi Antenna, Make sure the Yagi is not pointed toward the inside antenna. 5. AMPLIFIER SPECIFICATIONS FOR CELLULAR MODEL Part #801106 Frequency824-849 MHz Uplink 869-894 MHz Downlink Gain (up/down)60 dB Max Flatness (up/down)+/- 2.5 dB Max RF (up/down)+ 32 dBm Noise Figure (down)3 dB nominal IsolationUplink/Downlink More than 90 dB Power Consumption13.8 V, 1.5 A Receiver overload lightOutside antenna has exceeded -5 dBM Transmit overload lightInside antenna has exceeded -5 dBM AMPLIFIER SPECIFICATIONS FOR iDEN MODEL Part #804006 Frequency806-821MHz Uplink 851-866MHz Downlink Gain (up/down)60 dB Max Flatness (up/down)+/- 2.5 dB Max RF (up/down)+ 32 dBm Noise Figure (down)3 dB nominal IsolationUplink/Downlink More than 90 dB Power Consumption13.8 V, 1.5 A Receiver overload lightOutside antenna has exceeded -5 dBM Transmit overload lightInside antenna has exceeded -5 dBM AMPLIFIER PHYSICAL SPECIFICATIONS Connectors N-Female 50 Ohms Dimensions 4.5” x 3.5” x 1.25” (11.4 x 8.9 x 3.2 cm) Weight 1.5 lbs (682 gr) 67 6. OPTIONAL ACCESSORIES/ANTENNA OPTIONS 6.1 3 dB Splitter (Part# 859901) 6.2 6 dB Tap (Part# 859906) & 10 dB Tap (Part# 859907) 6.3 Coax Cable Extensions 50Ω (see chart on next page) 6.4 Antenna Options: Inside Antenna Options Outside Antenna Option 301103 - Magnet Mount, 5 dBi 301111 - Yagi, 13 dBi 301106 - Low Profile, 2.2 dBi 301113 - Mini Magnet, 2.12 dBi 301121 - Dome, 2.5 dBi 301122 - Panel, 7 dBi 6.5 N-Male to FME-Male adapter (Part# 971113) Adapts 9913 Coax to fit the Amplifier 6.6 Lightning Surge Protection (Part# 859903) WARNING: Lightning protection is recommended for all installations. 7. TECH SUPPORT If you need further assistance with your installation: 1) Call us Toll-Free at 866-294-1660 (8:00 AM – 4:30 PM Mountain Time) 2) E-mail tech support at [email protected] 3) Go to www.wilsonelectronics.com 8. WARNINGS WARNING: The outside ante…

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Cover Letter(s)

June 20, 2005 Federal Communications Commission 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: This letter is to comply with section 0.457 and 0.459 pertaining to confidential material. Wilson Electronics, Inc. requests that the following documents regarding this submission for FCC ID: PWO8040SB and IC ID: 4726A-8040SB be kept confidential: Schematic diagram of receiver board: 804006RX.JPG Schematic diagram of transmitter board: 804006TX.JPG Operational Description: FCC Operational Description 804006.PDF The above material contains trade secrets or technical data, which would customarily be guarded from competitors. We don’t want these documents to be accessible to the general public. Sincerely, Richard M. Kline, R&D Engineer

External Photos

Top Bottom Side 1 Side 2 Connecting Side 1 Connecting Side 2

Internal Photos

Internal PCB Top Internal PCB Bottom P65881 PCB Top P65881 PCB Top Close-up 1 P65881 PCB Top Close-up 2 P65881 PCB Bottom P66372 PCB Top P66372 PCB Top Close-up 1 P66372 PCB Top Close-up 2 P66372 PCB Bottom

Parts List/Tune Up Info

Tune-Up Procedure – 83307 Regarding tune-up procedures, there is nothing that can be adjusted or tuned by the user. There are some factory adjustments that are made internally and involve choosing resistors and setting one potentiometer that controls a variable attenuator. So, even at the factory, nothing is actually “tuned”. Therefore, there is no tune-up procedure.

RF Exposure Info

Maximum Permissible Exposure Calculations Uplink Date of Report: June 13, 2005 Calculations prepared for: Calculations prepared by: Randal Clark CKC Laboratories, Inc. 5473A Clouds Rest Road Mariposa, CA 95338 Model Number: 804006 Fundamental Operating Frequency: 806-821 Uplink 851-866 Downlink Antenna Gain and Type: +13 dBi Yagi Maximum Radiated Output Power: 42.5 dBm (EIRP) Measured Output Power: 29.5 dBm MPE Limit in accordance with 1.1310(b): Limits for general population/uncontrolled exposure MPE Limit = f / 1500 (mW/cm 2) = 806 / 1500 = 0.53733 ~ 0.54 (mW/cm2) Note: Limit is calculated from the lower edge of the operating band EIRP (mW) Distance (cm) Power Density (mW/cm 2 ) Result 17782.79 51.19 0.54 Pass Power Density (mW/cm 2 ) = EIRP Given: EIRP in mW and d in cm 4πd 2 As can be seen from the MPE results, this device passes the limits specified in 1.1310 at a distance of 51.19 cm and at a output power of 17782.79 mW. Antenna used for uplink frequencies must be mounted on outdoor permanent structures. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance. Maximum Permissible Exposure Calculations Downlink Date of Report: June 13, 2005 Calculations prepared for: Calculations prepared by: Randal Clark CKC Laboratories, Inc. 5473A Clouds Rest Road Mariposa, CA 95338 Model Number: 804006 Fundamental Operating Frequency: 806-821 Uplink 851-866 Downlink Antenna Gain and Type: +7 dBi Panel Antenna (highest gain) Maximum Radiated Output Power: 36.0 dBm (EIRP) Measured Output Power: 29.0 dBm MPE Limit in accordance with 1.1310(b): Limits for general population/uncontrolled exposure MPE Limit = f / 1500 (mW/cm 2) = 851 / 1500 = 0.56733 ~ 0.57 (mW/cm2) Note: Limit is calculated from the lower edge of the operating band EIRP (mW) Distance (cm) Power Density (mW/cm 2 ) Result 3981.0717 23.57 0.57 Pass Power Density (mW/cm 2 ) = EIRP Given: EIRP in mW and d in cm 4πd 2 As can be seen from the MPE results, this device passes the limits specified in 1.1310 at a distance of 51.19 cm and at a output power of 3981.07 mW. Antenna used for downlink frequencies will be mounted on the walls or ceilings some 7’ off the floor. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

Test Report

Page 1 of 71 Report No.: FC05-034 WILSON ELECTRONICS TEST REPORT FOR THE IN-BUILDING WIRELESS IDEN SMARTTECH AMPLIFIER, 804006 FCC PART 90 AND RSS-131 COMPLIANCE DATE OF ISSUE: JUNE 21, 2005 PREPARED FOR: Wilson Electronics 3301 East Deseret Drive St. George, UT 84790 PREPARED BY: Mary Ellen Clayton CKC Laboratories, Inc. 5046 Sierra Pines Drive Mariposa, CA 95338 P.O. No.: IBWI804006-1 W.O. No.: 83307 Date of test: June 13-14, 2005 Report No.: FC05-034 This report contains a total of 71 pages and may be reproduced in full only. Partial reproduction may only be done with the written consent of CKC Laboratories, Inc. The results in this report apply only to the items tested, as identified herein. Page 2 of 71 Report No.: FC05-034 TABLE OF CONTENTS Administrative Information .............................................................................................3 FCC to Canada Standard Correlation Matrix...................................................................4 Conditions for Compliance ..............................................................................................4 Approvals .........................................................................................................................4 Equipment Under Test (EUT) Description ......................................................................5 Equipment Under Test .....................................................................................................5 Peripheral Devices ...........................................................................................................5 Temperature and Humidity During Testing.....................................................................6 FCC 2.1033(c)(3) User’s Manual ....................................................................................6 FCC 2.1033(c)(4) Type of Emissions ..............................................................................6 FCC 2.1033(c)(5) Frequency Range................................................................................6 FCC 2.1033(c)(6) Operating Power.................................................................................6 FCC 2.1033(c)(7) Maximum Power Rating ....................................................................6 FCC 2.1033(c)(8) DC Voltages .......................................................................................6 FCC 2.1033(c)(9) Tune-Up Procedure ............................................................................6 FCC 2.1033(c)(10) Schematics and Circuitry Description..............................................6 FCC 2.1033(c)(11) Label and Placement ........................................................................6 FCC 2.1033(c)(12) Submittal Photos ..............................................................................6 FCC 2.1033(c)(13) Modulation Information ...................................................................6 FCC 2.1033(c)(14)/2.1046/90.205 - RF Power Output ...................................................7 FCC 2.1033(c)(14)/2.1047(b) - Audio Frequency Response...........................................9 FCC 2.1033(c)(14)/2.1047(b) - Modulation Limiting Response.....................................9 FCC 2.1033(c)(14)/2.1049(i)/90.209 - Occupied Bandwidth..........................................9 FCC 2.1033(c)(14)/2.1051/90.210 - Spurious Emissions at Antenna Terminal..............16 FCC 2.1033(c)(14)/2.1053/90.210 - Field Strength of Spurious Radiation ....................33 FCC 90.210 Emissions Masks .........................................................................................35 FCC 90.210 Intermodulation Attenuation .......................................................................43 Input Plot - Downlink ......................................................................................................52 Input Plot - Uplink ...........................................................................................................55 Output Plot - Downlink....................................................................................................59 Output Plot - Uplink ........................................................................................................62 RSS-131 Passband Gain - Downlink ...............................................................................66 RSS-131 Passband Gain - Uplink ....................................................................................67 RSS-131 Passbandwidth - Downlink...............................................................................69 RSS-131 Passbandwidth - Uplink....................................................................................70 Page 3 of 71 Report No.: FC05-034 ADMINISTRATIVE INFORMATION DATE OF TEST: June 13-14, 2005 DATE OF RECEIPT: June 13, 2005 FREQUENCY RANGE TESTED: 9 kHz-10 GHz MANUFACTURER: Wilson Electronics 3301 East Deseret Drive St. George, UT 84790 REPRESENTATIVE: Riki Kline TEST LOCATION: CKC Laboratories, Inc. 5046 Sierra Pines Drive Mariposa, CA 95338 TEST METHOD: FCC Part 90, ANSI/TIA/EIA-603-B (200), RSS-212 and RSS-131 PURPOSE OF TEST: To demonstrate the compliance of the In-Building Wireless iDEN SmartTech Amplifier, 804006 with the requirements for FCC Part 90 and RSS-131 devices. Page 4 of 71 Report No.: FC05-034 FCC TO CANADA STANDARD CORRELATION MATRIX Canadian Standard Canadian Section FCC Standard FCC Section Test Description RSS 1315.4N/AN/AExternal Controls RSS 1315.547 CFR1.1307RF Exposure RSS 1316.1N/AN/APassband Gain and Bandwidth RSS 1316.247 CFR90.205RF Power Output RSS 1316.3TIA/EIA603Non-Linearity (Intermodulation Attenuation) RSS 1316.447 CFR90.210Spurious Emissions Limitations RSS 1316.5N/AN/AFrequency Stability (Band Translators) IC 3082-D784962Site Filing No. CONDITIONS FOR COMPLIANCE No modifications to the EUT were necessary to comply. APPROVALS Steve Behm, Director of Engineering Services QUALITY ASSURANCE:TEST PERSONNE…

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Test Setup Photos

PHOTOGRAPH SHOWING DIRECT CONNECT TEST SETUP PHOTOGRAPH SHOWING RADIATED EMISSIONS

Contact Information

Applicant

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

Technical Contact

CKC Laboratories, Inc.Mary Ellen Clayton
[email protected]800-500-4362

5046 Sierra Pines Drive · Mariposa, California · United States

Non-Technical Contact

CKC Laboratories, Inc.Mary Ellen Clayton
[email protected]800-500-4362

Test Firm

CKC Laboratories, Inc.Steve Behm
[email protected]209-966-5240Fax: 866 779 9776

Technical Specifications

#Rule PartsFrequency RangePower OutputEmissionTolerance
29851 MHz - 866 MHz794.00 mWGXWAmp
Confidentiality
Long Term
Grant Notes
Power listed is conducted. Users and installers must be provided with appropriate antenna installation instructions and transmitter operating conditions, including antenna co-location requirements of �1.1307(b)(3), for satisfying RF exposure compliance. 806-821 and 851-866 MHz bands are amplified through the equipment. Equipment is a Repeater.

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