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W59SWM1000OShock-WAV Outdoor Wi-Fi Signal Booster

Legrand AV Inc.
Shock-WAV Outdoor Wi-Fi Signal Booster - FCC ID W59SWM1000O - Legrand AV Inc.
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
Dec 14, 2009
Application Purpose
Original Equipment
Date of Application
Dec 13, 2009
Equipment Note
Shock-WAV Outdoor Wi-Fi Signal Booster
Frequency Range
2412.00000000 - 2462.00000000
Company
Legrand AV Inc.
Country
United States

Documents & Files

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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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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

USER GUidE Shock-WAV™ oUTdooR Wi-Fi SiGnAl BooSTER FoR USE WiTh ThE MoToRolA AP-5181 ModEl nUMBER: SWM-1000-o Shock-WAV Wi-Fi SignAl BooSter Model nuMBer: SWM-1000-o inStAllAtion guide © 2009 by Luxul Wireless, Inc. All rights reserved. No part of this publication may be modified or adapted in any way, for any purposes without permission in writing from Luxul Wireless, Inc. (Luxul). The material in this manual is subject to change without notice. Luxul reserves the right to make changes to any product to improve reliability, function, or design. No license is granted, either expressly or by implication or otherwise under any Luxul Wireless, Inc., intellectual property rights. An implied license only exists for equipment, circuits and subsystems contained in Luxul products. This product is covered by one or more U.S. and foreign patents. Patents: 7,379,717, 6,606,075, 6,373,448, other patents pending Shock-WAV Wi-Fi SignAl BooSter Model nuMBer: SWM-1000-o FCC ID: W59SWM1000O IC: 8584A-SWM1000O MotorolA (SyMBol technologieS inc) Model nuMBer: AP-5181 FCC ID: H9PAP5181D IC: 1549D-AP5181D Luxul Wireless, Inc. 357 South 670 West, Suite 160 Lindon, UT 84042 www.luxulwireless.com Shock-WAV SiGnAl BooSTER USER GUidE 1 contentS 1 - introduction . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 2 1.1 Document Conventions ................................................................2 1.2 Warnings..............................................................................2 1.3 Site Preparation .......................................................................3 1.4 Professional Installation Considerations.................................................3 2 - Shock-WAV Wi-Fi SignAl BooSter SPeciFicAtionS.......................4 3 - getting StArted..........................................................4 3.1 Precautions ...........................................................................4 3.2 Package Contents .....................................................................5 3.3 Additional Items Required .............................................................5 3.4 Optional Products and Accessories ....................................................5 3.5 Antenna Options......................................................................6 4 - inStAllAtion ProcedureS................................................6 4.1 Attaching Shock-WAV Wi-Fi Signal Booster to the Motorola AP-5181......................6 4.2 Connecting the Shock-WAV Wi-Fi Signal Booster........................................7 4.3 Connecting Power Over Ethernet ......................................................8 4.4 Setting the AP-5181 to the Primary Antenna Port.........................................9 5 - AntennA PlAceMent .....................................................9 5.1 Antenna Deployment.................................................................10 5.2 Antenna Direction ...................................................................11 6 - regulAtory coMPliAnce ................................................11 6.1 Health and Safety Recommendations..................................................12 6.2 RF Exposure Guidelines...............................................................12 6.3 Radio Frequency Interference Requirements—FCC .....................................13 6.4 Radio Transmitters (Part 15) ...........................................................13 6.5 Industry Canada ( RSS-Gen Issue 2)....................................................13 7 - SAleS And SuPPort contActS...........................................14 2 1 - introduction The Luxul Wireless Shock-WAV Wi-Fi Signal Booster is designed to complement and enhance the performance of the Motorola AP-5181 Wireless Access Point (WAP). When combined with the AP-5181 and approved antenna, it delivers up to the maximum transmit power allowed by the FCC (EIRP of 36dBm), resulting in a farther reaching and higher performing network. Luxul Wireless Shock-WAV Wi-Fi Signal Boosters feature patented RF technology that dynami- cally optimizes output strength and provides the cleanest, most consistent signal amplification available for Wi-Fi networks. Designed for bidirectional signal amplification, Shock-WAV Wi-Fi Signal Boosters utilize patented Digital Automatic Gain Control (D-AGC) technology that actively monitors the incoming signal from each packet and makes adjustments so that the output signal maintains constant power levels, ensuring the cleanest and most consistent RF signal possible. 1.1 docuMent conVentionS The following graphical alerts are used in this document to indicate notable situations: NOTE: Tips, hints, or special requirements that you should take note of. CAUTION: Care is required. Disregarding a caution can result in data loss or equipment malfunction. WARNING!: Indicates a condition or procedure that could result in personal injury or equipment damage. 1.2 WArningS • Read all installation instructions and site survey reports, and verify correct equipment installation before connecting the Shock-WAV Wi-Fi Signal Booster or AP-5181 to its power source. • Remove jewelry and watches before installing this equipment. • Verify that the unit is grounded before connecting it to the power source. • Verify that any device connected to this unit is properly wired and grounded. • Connect all power cords to a properly wired and grounded electrical circuit. • Verify that the electrical circuits have appropriate overload protection. • Attach only approved power cords to the device. • Verify that the power connector and socket are accessible at all times during the operation of the equipment. Shock-WAV SiGnAl BooSTER USER GUidE 3 • Do not work with power circuits in dimly lit spaces. • Do not install this equipment or work with its power circuits during thunderstorms or other weather conditions that could cause a power surge. • Verify th…

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External Photos

Top View of the EUT View of the EUT Interface Ports View of the EUT RF Ports

Internal Photos

Internal View of the EUT View of the Top of the PCB View of the PCB with RF Shield Removed View of the Bottom of the PCB

RF Exposure Info

RF Exposure Evaluation Declaration Product Name: Shock-Wav TM Outdoor Wi-Fi Signal Booster Model Number: SWM-1000-O FCC ID: W59SWM1000O Applicant: Luxul Wireless Address: 357 S 670 W Suite 160 Lindon UT 84042 USA Date of Declaration: 2 Dec 2009 The declaration results relate only to the samples calculated. RF Exposure Evaluation Limits Per FCC 1.1310 Table 1B, the maximum permissible RF exposure for an uncontrolled environment is 1 mW/cm 2 for the frequencies used in this device. The worst-case power for the antenna at the center frequency of the band of operation is used for the calculation below. The power density at a 20 cm distance is shown for each of the antenna options. As shown, the calculated power density is below the FCC’s limit for Class B exposure of 1mW/cm 2 . The actual power density for the EUT calculated as shown below. Pd=(Pout*G)/(4*pi*r 2 ) Where Pd = power density in mW/cm 2 Pout = output power to antenna in mW G = gain of antenna in linear scale Pi = 3.1416 R = distance between observation point and the center of the radiator in cm NOTICE: Radiation Exposure Statement This equipment shall only be installed and operated with the antenna types shown above and installed with a minimum of 20 cm of separation distance between the antenna and all persons during normal operation. Frequency A ntennaModulationA ntennaNumericPowerSeparationPower Density MHzTypeType Max Linear Gain (dBi)Ga in( mW )Dis t a n c e ( c m) (mw/cm 2 ) 2437Omni11b97.9151.40200.2393 2412Omni11g97.9407.40200.6438 2437Patch11b42.5151.40200.0757 2412Patch11g42.5407.40200.2036 2437Sector11b86.3151.40200.1900 2412Sector11g86.3407.40200.5114 2437Helical11b75.0151.40200.1510 2412Helical11g75.0407.40200.4062

Test Report

COMMUNICATION CERTIFICATION LABORATORY 1940 West Alexander Street Salt Lake City, UT 84119 801-972-6146 Test Report Certification Test Of: SWM-1000-O FCC ID: W59SWM1000O Test Specifications: FCC PART 15, Subpart C Test Report Serial No: 2480 Applicant: Luxul Wireless 357 South 670 West, Suite 160 Lindon, UT 84042 Date of Test: October 15, 19 & 29, 2009 and November 10 & 16, 2009 Issue Date: November 24, 2009 Accredited Testing Laboratory By: NVLAP Lab Code 100272-0 COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 2 of 85 CERTIFICATION OF ENGINEERING REPORT This report has been prepared by Communication Certification Laboratory to document compliance of the device described below with the requirements of Federal Communications Commission (FCC) Part 15, Subpart C. This report may be reproduced in full, partial reproduction may only be made with the written consent of the laboratory. The results in this report apply only to the sample tested. - Applicant: Luxul Wireless - Manufacturer: Luxul Wireless - Brand Name: Luxul - Model Number: SWM-1000-O - FCC ID Number: W59SWM1000O On this 24 th day of November 2009, I, individually, and for Communication Certification Laboratory, certify that the statements made in this engineering report are true, complete, and correct to the best of my knowledge, and are made in good faith. Although NVLAP has recognized that the Communication Certification Laboratory EMC testing facilities are in good standing, this report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST, or any agency of the federal government. COMMUNICATION CERTIFICATION LABORATORY Tested by: Norman P. Hansen EMC Technician COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 3 of 85 TABLE OF CONTENTS PAGE SECTION 1.0 CLIENT INFORMATION.................................4 SECTION 2.0 EQUIPMENT UNDER TEST (EUT) ..........................5 SECTION 3.0 TEST SPECIFICATION, METHODS & PROCEDURES ...........8 SECTION 4.0 OPERATION OF EUT DURING TESTING ...................15 SECTION 5.0 SUMMARY OF TEST RESULTS...........................16 SECTION 6.0 MEASUREMENTS, EXAMINATIONS AND DERIVED RESULTS.....17 APPENDIX 1 TEST PROCEDURES AND TEST EQUIPMENT ..................55 APPENDIX 2 PHOTOGRAPHS.........................................64 COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 4 of 85 SECTION 1.0 CLIENT INFORMATION 1.1 Applicant: Company Name: Luxul Wireless 357 South 670 West, Suite 160 Lindon, UT 84042 Contact Name: Vaughn Staheli Title: V.P. Engineering 1.2 Manufacturer: Company Name: Luxul Wireless 105 South 1380 West, Unit 1 Lindon, UT 84042 Contact Name: Vaughn Staheli Title: V.P. Engineering COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 5 of 85 SECTION 2.0 EQUIPMENT UNDER TEST (EUT) 2.1 Identification of EUT: Brand Name: Luxul Model Number: SWM-1000-O Serial Number: None 2.2 Description of EUT: The SWM-1000-O is a weatherized WiFi Signal Booster for use with the Motorola AP-5181. The SWM-1000-O provides N connectors for RF input and output. Power is provided to the SWM-1000-O by a Motorola AP-PSB1AS-5181-O1R power over Ethernet supply. The SWM- 1000-O was tested using 4 antennas; a Luxul XW-24-FP7, a Luxul XW-24-H10, a Luxul XW-24-FPS11, and a Motorola OD24M-9. The Motorola AP-5181 can transmit using either 802.11b or 802.11g protocol. The Motorola AP-5181 uses 11 channels in the 2400 to 2483.5 MHz frequency range. See the table below. Channel Frequency (MHz) Channel Frequency (MHz) Channel Frequency (MHz) 1 2412 5 2432 9 2452 2 2417 6 2437 10 2457 3 2422 7 2442 11 2462 4 2427 8 2447 Testing was performed at the upper, middle, and lower channels using both “B” and “G” protocols and using each of the 4 antennas. This report covers the circuitry of the devices subject to FCC Part 15, Subpart C. The circuitry of the device subject to other standards, is to be tested and covered in other reports. 2.3 EUT and Support Equipment: The FCC ID numbers for all the EUT and support equipment used during the test are listed below: COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 6 of 85 Brand Name Model Number FCC ID Number Description Name of Interface Ports / Interface Cables BN: Luxul MN: SWM-1000-O (Note 1) W59SWM1000O WiFi Signal Booster See Section 2.4 BN: Motorola MN: AP-5181 H9PAP5181 WiFi Access Point Radio 1/LMR195 coax with “N” type connectors (Note 2) LAN POE/Cat 5e (Note 2) BN: Motorola MN: AP-PSB1AS- 5181-O1R (Note 3) DoC Power Over Ethernet Supply Data In/Cat 5e cable Data Out/Cat 5e cable (Note 2) Line AC/3 conductor power cord BN: Toshiba MN: Satellite (Note 3) DoC Laptop Computer Ethernet/Cat 5e cable BN: TRENDnet MN: TEG-S50TXE (Note 3) DoC 5 port Ethernet Hub Ethernet/Cat5e cable Note: (1) EUT (2) Interface port connected to EUT (See Section 2.4) (3) Equipment located below turntable The support equipment listed above was not modified in order to achieve compliance with this standard. 2.4 Interface Ports on EUT: Name of Ports No. of Ports Fitted to EUT Cable Descriptions/Length POE In 1 Cat 5e cable with RJ45 connectors/8 meters POE Out 1 Cat 5e cable with RJ45 connectors/12” COMMUNICATION CERTIFICATION LABORATORY TEST REPORT: 2480 FCC ID#: W59SWM1000O Page 7 of 85 Name of Ports No. of Ports Fitted to EUT Cable Descriptions/Length Antenna 1 RG195 coax with “N” type connectors/12” WAP 1 LMR195 with “N” type connectors/36” 2.5 Modification Incorporated/Special Accessories on EUT: The following modifications were made to the EUT by the Client during testing to comply with the specification. These modifications will be implemented during manufacturing. 1) An output power setting of 21.0 dBm was programmed through the internal programming port of the EUT to comply with the radiated band edge and power output requirements. Signature: Typed Name: Vaughn Staheli Title: V.P. Engineering C…

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Test Setup Photos

Front View Radiated Spurious Emissions Test Set-up Using the Motorola OD24M-9 Antenna Back View Radiated Spurious Emissions Test Set-up Using the Motorola OD24M-9 Antenna Back View of Radiated Spurious Emission Testing Set-up with Luxul XW-24-FP7 Antenna Back View of Radiated Spurious Emission Testing Set-up with Luxul XW-24-FPS11 Antenna Back View of Radiated Spurious Emission Testing Set-up with Luxul XW-24-H10 Antenna Front View Conducted Emissions Worst Case Configuration Back View Conducted Emissions Worst Case Configuration

Contact Information

Applicant

Vaughn Staheli(Senior Director, Engineering)
[email protected]801-822-5465Fax: 801-822-5460

Test Firm

VPI TechnologyJason Stewart
[email protected]801-495-2310

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz407.40 mW
Confidentiality
Long Term
Grant Notes
The antenna used for this transmitter must be installed to provide a separation distance of at least 20cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. Professional installation of this system is required. Power output listed as conducted.

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