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BJ4-WLC1901TRXWireless Lighting Control

HeathCo LLC
Wireless Lighting Control - FCC ID BJ4-WLC1901TRX - HeathCo LLC
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jun 29, 2011
Application Purpose
Original Equipment
Date of Application
Jun 29, 2011
Equipment Note
Wireless Lighting Control
Frequency Range
902.25000000 - 926.75000000
Company
HeathCo 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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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

MyQ™ LAMP MODULE MODEL 825LM The Lamp Module offers a quick and convenient way to control the lights in your home. The module can be programmed to a remote control, a garage door opener, or a MyQ™ Gateway device. The module is compatible with up to 5 Security✚ ® 2.0 remote controls OR a combination of up to 3 garage door openers or MyQ™ Gateway devices. This product is NOT recommended for household appliances. SPECIFICATIONS Bulb Type: Compact fluorescent, incandescent, halogen, or LED Bulb Wattage: Up to 150 Watts MODES OF OPERATION INSTALLATION & PROGRAMMING To prevent possible SERIOUS INJURY or DEATH from electrocution or fi re, the light control is ONLY for indoor use. NOTICE: To comply with FCC and or Industry Canada rules (IC), adjustment or modifications of this receiver and/or transmitter are prohibited, except for changing the code setting or replacing the battery. THERE ARE NO OTHER USER SERVICEABLE PARTS. Tested to Comply with FCC Standards for Home or office use. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Power Button Lamp Outlet LED Learn Button REMOTE CONTROL OPERATION: Allows you to activate the module from a remote control. OVERVIEW 114A4265 © 2011, The Chamberlain Group, Inc. All Rights Reserved 1-800-528-9131 www.liftmaster.com ONE YEAR LIMITED WARRANTY The Chamberlain Group, Inc. warrants to the first retail purchaser of this product that is free from defect in materials and/or workmanship for a period of 1 year from the date of purchase. TO ERASE ALL PROGRAMMING Press and hold the Learn button on the module for 6 seconds. All programming is now erased. The module can be programmed to a remote control, a garage door opener, or a MyQ™ Gateway device. GARAGE DOOR OPENER OPERATION: Allows you to synchronize the module with your garage door opener light bulbs. Example: The garage door opener light bulbs are set to automatically turn off after 4 ½ minutes, the module will also turn off after 4 ½ minutes. MyQ™ GATEWAY OPERATION: Allows you to activate the module from a web browser (requires a MyQ™ Gateway device). 1 Plug the lamp into the module and plug the module into an electrical outlet (the LED on the module will flash). NOTE: Make sure the lamp is switched ON. 2 If the lamp is not ON, press and release the Power button on the module to turn the lamp ON. 3 Press and release the Learn button on the module (the LED on the module will light). 4 Press the following (depending on the mode of operation): The lamp’s light bulb will blink and the LED on the module will turn OFF when the device has been programmed. Button on Remote Control Learn Button on Garage Door Opener Learn Button on MyQ™ Gateway device 3 3 5 5 s LAMP MODULE MODEL PILCEV The Lamp Module offers a quick and convenient way to control the lights in your home. The module can be programmed to a remote control or a garage door opener. The module is compatible with up to 5 Security✚ ® 2.0 remote controls OR a combination of up to 3 garage door openers. This product is NOT recommended for household appliances. SPECIFICATIONS Bulb Type: Compact fluorescent, incandescent, halogen, or LED Bulb Wattage: Up to 150 Watts MODES OF OPERATION INSTALLATION & PROGRAMMING ® To prevent possible SERIOUS INJURY or DEATH from electrocution or fi re, the light control is ONLY for indoor use. NOTICE: To comply with FCC and or Industry Canada rules (IC), adjustment or modifications of this receiver and/or transmitter are prohibited, except for changing the code setting or replacing the battery. THERE ARE NO OTHER USER SERVICEABLE PARTS. Tested to Comply with FCC Standards for Home or office use. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Power Button Lamp Outlet LED Learn Button REMOTE CONTROL OPERATION: Allows you to activate the module from a remote control. OVERVIEW 114A4275 © 2011, The Chamberlain Group, Inc. All Rights Reserved 1-800-528-9131 www.chamberlain.com ONE YEAR LIMITED WARRANTY The Chamberlain Group, Inc. warrants to the first retail purchaser of this product that is free from defect in materials and/or workmanship for a period of 1 year from the date of purchase. TO ERASE ALL PROGRAMMING Press and hold the Learn button on the module for 6 seconds. All programming is now erased. The module can be programmed to a remote control or a garage door opener. GARAGE DOOR OPENER OPERATION: Allows you to synchronize the module with your garage door opener light bulbs. Example: The garage door opener light bulbs are set to automatically turn off after 4 ½ minutes, the module will also turn off after 4 ½ minutes. 1 Plug the lamp into the module and plug the module into an electrical outlet (the LED on the module will flash). NOTE: Make sure the lamp is switched ON. 2 If the lamp is not ON, press and release the Power button on the module to turn the lamp ON. 3 Press and release the Learn button on the module (the LED on the module will light). 4 Press the following (depending on the mode of operation): The lamp’s light bulb will blink and the LED on the module will turn OFF when the device has been programmed. Button on Remote Control Learn Button on Garage Door Opener 5 5 s 3 3

Cover Letter(s)

Date: May, 31 st , 2011 FCC ID: BJ4-WLC1901TRX Request for Confidentiality In accordance with 47 C.F.R. Section 0.459, we, (HeathCo LLC), hereby request confidentiality for the block diagram, schematic and product description presented for certification. In support of the Request for Confidentiality, the following is stated: Enclosed within this application is technical information which we deem to be trade secrets and proprietary. If made public, the information might be used to our disadvantage. To assist in assuring that we receive the full value of our product and protect its competitive posture, we respectfully request this grant of confidentiality. Jeff Bessinger HeathCo LLC

ID Label/Location Info

81U9 Appliance Control E112259 For Indoor Use Only. No serviceable parts, opening voids warranty. Sólo para uso en interiores. No contiene piezas reparables, el abrirle anulará la garantía. DO NOT use with appliances. DO NOT use with inverter. NO USAR en aparatos eléctricos. NO USAR con inversor. Made in China Hecho en China 202300-01 INPUT / ENTRADA: 120 VAC/VCA 60 Hz MAXIMUM LOAD / CARGA MÁXIMA: Fluorescent / Fluorescente ...................600W / 5A Tungsten / Tungsteno ............................600W / 5A LED .......................................................600W / 5A Electronic Ballast (Fluorescent) / Balasto electrónico (Fluorescente) .. 599W / 4.99A Re-lamp with listed SBCFL only, 599W total, maximum / Sustituya con lámpara fluorescente compacta con balasto incorporado (SBCFL) solamente, de un total de 599 W como máximo Model / Modelo: 1901- Cut Size = 65mm x 32mm Patents 7,071,850 7,561,075 FCC ID: BJ4-WLC1901TRX IC: 3984A-1901TRX

RF Exposure Info

Maximum Permissible Exposure calculations The MPE distance will be calculated for the worst case of a 100% transmitter duty cycle. For an isotropic radiator the surface area of a sphere can be used to determine the area over which the transceiver energy is radiated. Surface area of a sphere = 4 * π * radius2 In the case where there is an antenna gain, the worst case energy density is increased by the antenna gain. In this case, the exposure level for a controlled environment can be calculated as follows: MPE distance =((output power*duty cycle*10*(antenna gain/10))/(4* π*Exposure Limit [mW/cm2]))1/2 In the case of 2.15 dBi trace antenna MPE distance = ((9 mW * 1 * 70.8) /( 4 * 3.14 * 0.634)) 1/2 = 1.3 cm

Test Report

Engineering Test Report No. 1101344-01 Measurement of RF Emissions from a Model 1901 Wireless Lighting Control Transceiver For HeathCo LLC 2445 Nashville Rd Bowling Green, KY 42102 P.O. Number verbal Jeff B Date Tested May 9 through June 14, 2011 Test Personnel Richard E. King Test Specification FCC "Code of Federal Regulations" Title 47, Part 15, Subpart B for receivers and Subpart C, Section 15.247 for Frequency Hopping Spread Spectrum Intentional Radiators Operating within the bands 902-928MHz Industry Canada RSS-GEN Industry Canada RSS-210 Test Report By: Richard E. King EMC Engineer Approved By: Raymond J. Klouda Registered Professional Engineer of Illinois - 44894 Elite Electronic Engineering, Inc. 1516 Centre Circle Downers Grove, IL 60515 Tel : (630) 495-9770 Fax: (630) 495-9785 www.elitetest.com Engineering Test Report No. 1101344-01 TABLE OF CONTENTS PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 2 of 101 1. Introduction ................................................................................................................................................... 5 1.1 Scope of Tests ..................................................................................................................................... 5 1.2 Purpose ............................................................................................................................................... 5 1.3 Deviations, Additions and Exclusions .................................................................................................. 5 1.4 EMC Laboratory Identification ............................................................................................................. 5 1.5 Laboratory Conditions.......................................................................................................................... 5 2. Applicable Documents .................................................................................................................................. 5 3. EUT Setup and Operation ............................................................................................................................ 6 3.1 General Description ............................................................................................................................. 6 3.1.1 Power Input ..................................................................................................................................... 6 3.1.2 Peripheral Equipment ...................................................................................................................... 6 3.1.3 Signal Input/Output Leads ............................................................................................................... 6 3.1.4 Grounding ........................................................................................................................................ 6 3.2 Operational Mode ................................................................................................................................ 6 3.3 EUT Modifications ................................................................................................................................ 6 4. Test Facility and Test Instrumentation ......................................................................................................... 6 4.1 Shielded Enclosure .............................................................................................................................. 6 4.2 Test Instrumentation ............................................................................................................................ 7 4.3 Calibration Traceability ........................................................................................................................ 7 4.4 Measurement Uncertainty ................................................................................................................... 7 5. Test Procedures ........................................................................................................................................... 7 5.1 Powerline Conducted Emissions ......................................................................................................... 7 5.1.1 Requirements .................................................................................................................................. 7 5.1.2 Procedures ...................................................................................................................................... 7 5.1.3 Results............................................................................................................................................. 8 5.2 20dB Bandwidth ................................................................................................................................... 8 5.2.1 Requirement .................................................................................................................................... 8 5.2.2 Procedures ...................................................................................................................................... 8 5.2.3 Results............................................................................................................................................. 9 5.3 Carrier Frequency Separation ............................................................................................................. 9 5.3.1 Requirements .................................................................................................................................. 9 5.3.2 Procedures ...................................................................................................................................... 9 5.3.3 Results.......................................................…

Text truncated - open the document above for the full version.

Test Setup Photos

Engineering Test Report No. 1101344-01 Page 19 of 101 Figure 2 Test Setup for Radiated Emissions, 30MHz to 1GHz – Horizontal Polarization Test Setup for Radiated Emissions, 30MHz to 1GHz – Vertical Polarization Engineering Test Report No. 1101344-01 Page 20 of 101 Figure 3 Test Setup for Radiated Emissions, Above 1GHz – Horizontal Polarization Test Setup for Radiated Emissions, Above 1GHz – Vertical Polarization

Contact Information

Applicant

Jeff Bessinger(Associate Regulatory Engineer)
[email protected]270-846-8271Fax: 270-846-8501

Test Firm

Elite Electronic Engineering Inc.Kevin Halpin
[email protected]630-495-9770Fax: 630-495-9785

Technical Specifications

#Rule PartsFrequency RangePower Output
115C902.25 MHz - 926.75 MHz9.00 mW
Confidentiality
Long Term
Grant Notes
The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. End-users and installers must be provided with antenna installation instructions and transmitter operating conditions for satisfying RF exposure compliance.

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