
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
CLICKER MODEL KLIK1U Universal Garage Door Opener Remote Control To prevent possible SERIOUS INJURY or DEATH from a moving gate or garage door: • ALWAYS keep remote controls out of reach of children. NEVER permit children to operate, or play with remote control transmitters. • Activate gate or door ONLY when it can be seen clearly, is properly adjusted and there are no obstructions to door travel. • ALWAYS keep gate or garage door in sight until completely closed. NEVER permit anyone to cross path of moving gate or door. © 2007, Clicker Corporation 114A3485All Rights Reserved Read instructions thoroughly BEFOREbeginning. Start with garage door closed. Identify garage door opener type - Smart/Learn button or DIP Switch. Smart/Learn button or DIP Switches are located on motor unit or external receiver. Refer to owner’s manual if necessary. Proceed with instructions according to your type of garage door opener. NOTE: Products other than Chamberlain: If programming fails reverse dip switches (OFF to ON and ON to OFF). Chamberlain products: For Chamberlain remotes DO NOT use the “0” position, use “+” or “-”. If you already have a 3-button remote, DIP switch #1 must be set to “-” if the large button is to open the door. It may be necessary to reprogram original remote controls. 2 12 11 10 9 8 5 3 76 4 1 2 Clicker Remote Existing Remote 3 4 Press program button until LED lights. 5 Match DIP switches. Turn extra switches OFF. OR DIP SWITCH SMART/LEARN BUTTON 23 1 KG KG 4 Motor Unit Select a button to program. Press button times ensuring LED stops flashing after each press. Code is accepted when door activates. REMOTE CONTROL BATTERY NOTICE: To comply with FCC and or Industry Canada (IC) rules, 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. Dispose of batteries properly. Replace battery with 3V2032 coin cell battery only. To prevent possible SERIOUS INJURY or DEATH: • NEVER allow small children near batteries. • If battery is swallowed, immediately notify doctor. CHART A # of BrandDescriptionFrequency times to press button 11Chamberlain9 Position390 MHz 12Chamberlain9 Position Canada315 MHz 13Genie12 Position390 MHz 14Linear Multicode10 Position300 MHz 15Chamberlain8 Position390 MHz 16Stanley/Multicode10 Position310 MHz 17Genie9 Position390 MHz 18Linear Moore-O-Matic8 Position310 MHz 19Chamberlain7 Position390 MHz CHART B # of BrandType/Color of Frequency times to Smart/Learn press button 1LinearMega-Code318 MHz 2ChamberlainOrange390 MHz 3ChamberlainPurple315 MHz 4ChamberlainGreen390 MHz 5Genie Overhead DoorIntellicode315 MHz 6Genie Overhead DoorIntellicode390 MHz 7StanleySecure Code310 MHz 9Wayne DaltonRolling Code372.5 MHz www.clickerproducts.com • 1-800-442-1255 Chamberlain, LiftMaster and Moore-O-Matic are Trademarks of Chamberlain Group. Genie is a Trademark of Overhead Door Corporation. Linear is a Trademark of Linear Corporation. Stanley is a Trademark of The Stanley Works. Button 1 Button 2 Press program button. 6 7 Programming complete. Press selected button to test. To reduce risk of fire, explosion or chemical burn: • Replace ONLY with 3V2032 coin batteries. • Do NOT recharge, disassemble, heat above 100°C (212°F) or incinerate. The lithium battery should produce power for up to 5 years. 12 11 10 9 8 5 3 76 4 1 2 Press and release the smart/learn button. 5 Select a button to program. Press button times ensuring LED stops flashing after each press. Code is accepted when one of the following occurs: Button 1 Button 2 OR OR 1 See Chart A to determine # of times to press button and write in blank on step 5. DIP SWITCH SMART/LEARN BUTTON Press program button. 6 7 Programming complete. Press selected button to test. 3 Press program button until LED lights. 2 1 See Chart B to determine # of times to press button and write in blank on step 5.
FCC ID: HBW2392 Request for Confidentiality In accordance with 47 C.F.R. Section 0.459, we, Chamberlain Group, Inc., 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. Barbara Kelkhoff Manager of Regulatory Affairs Chamberlain Group, Inc. 845 Larch Ave. Elmhurst, IL. 60126
845 Larch Ave. Elmhurst, IL 60126 Phone 630.993.6306 Fax 630.530.6140 Email: [email protected] October 18, 2007 Federal Communications Commission EQUIPMENT APPROVAL SERVICES PO Box 358315 Pittsburgh, PA 15251-5315 Re: Request for Certification Enclosed is an application and exhibits for Certification of a Remote Control Transmitter Model KLIK1C. Circuit board assembly 1A6403 is used in Model KLIK1C. I have included a typical instruction sheet indicating the FCC statement and important information. The FCC ID of this model, upon certification, will be HBW2392. We would appreciate your prompt attention to the submittal. Sincerely, THE CHAMBERLAIN GROUP, INC. Barbara Kelkhoff Manager, Regulatory Affairs LIST OF EXHIBITS REMOTE CONTROL TRANSMITTER Model KLIK1C 1. Expository Statement 2. Theory of Operation 3. Schematic 4. Photographs 5. FCC Label Drawing 6. Operating Instructions 7. Test Report EXPOSITORY STATEMENT 2-BUTTON, REMOTE CONTROL TRANSMITTER Model KLIK1C 1. The instructions include statements required to assure compliance with the Commission's Rules; Part 15. 2. Labeling is in accordance with the Commission's labeling requirements, Parts 2 and 15, Section 15.19. 3. This transmitter is intended for use with the certified receivers of garage door and gate operator systems manufactured by Chamberlain ®, Genie ®, Linear ® and Stanley ®. 4. The transmitter is equipped with an automatically releasing push-button switch. Transmission is terminated upon release of the push-button. 5. Transmitter Model KLIK1C is factory set to 300, 310,315, 318, 372.5 and 390 ± 0.1% MHz. It is not intended to be readjusted in the field, and specific instructions prohibiting tampering are provided to the user. 6. Test data for Model KLIK1C is part of this submission. No emissions were detected in the forbidden bands below 1.0 GHz. Certified by: Barbara P. Kelkhoff Manager, Regulatory Affairs
Engineering Test Report No. 38638-01 Rev. A Measurement of RF Interference from a Model 001A6403 Universal 2-button remote control Transmitter For : Chamberlain Manufacturing Inc. 845 Larch Ave. Elmhurst, IL 60126 P.O. No. : 855151 Date Tested : September 10 through 27, 2007 Test Personnel : Richard King Specification : FCC Part 15, Subpart C Industry Canada RSS-210 Industry Canada RSS-GEN Test Report By : Richard King 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. 38638-01 Rev. A THIS REPORT SHALL NOT BE REPRODUCED, EXCEPT IN FULL, WITHOUT THE WRITTEN APPROVAL OF ELITE ELECTRONIC ENGINEERING INCORPORATED. Page 2 of 83 TABLE OF CONTENTS PARAGRAPH DESCRIPTION OF CONTENTS PAGE NO. 1 INTRODUCTION ............................................................................................................................................... 4 1.1 Scope of Tests .......................................................................................................................................... 4 1.2 Purpose .................................................................................................................................................... 4 1.3 Deviations, Additions and Exclusions....................................................................................................... 4 1.4 EMC Laboratory Identification .................................................................................................................. 4 1.5 Laboratory Conditions .............................................................................................................................. 4 2 APPLICABLE DOCUMENTS ............................................................................................................................ 4 3 TEST ITEM SET-UP AND OPERATION .......................................................................................................... 4 3.1 General Description .................................................................................................................................. 4 3.1.1 Power Input .......................................................................................................................................... 5 3.1.2 Peripheral Equipment........................................................................................................................... 5 3.1.3 Interconnect Cables ............................................................................................................................. 5 3.1.4 Grounding............................................................................................................................................. 5 3.2 Operational Mode ..................................................................................................................................... 5 3.3 Test Item Modifications............................................................................................................................. 5 4 TEST FACILITY AND TEST INSTRUMENTATION..........................................................................................6 4.1 Shielded Enclosure................................................................................................................................... 6 4.2 Test Instrumentation ................................................................................................................................. 6 4.3 Calibration Traceability ............................................................................................................................. 6 4.4 Measurement Uncertainty ........................................................................................................................ 6 5 TEST PROCEDURES ....................................................................................................................................... 6 5.1 Powerline Conducted Emissions .............................................................................................................. 6 5.1.1 Requirements ....................................................................................................................................... 6 5.2 Duty Cycle Factor Measurements ............................................................................................................ 6 5.2.1 Procedures ........................................................................................................................................... 6 5.2.2 Results.................................................................................................................................................. 6 5.3 Radiated Measurements .......................................................................................................................... 8 5.3.1 Requirements ....................................................................................................................................... 8 5.3.2 Procedures ........................................................................................................................................... 8 5.3.3 Results.................................................................................................................................................. 9 5.4 Occupied Bandwidth Measurements........................................................................................................ 9 5.4.1 Requirement ......................................................................................................................................... 9 5.4.2 Procedures ........................................................................................................................................... 9 5.4.3 Results........…
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Figure 2 Test Set-up for Radiated Emissions – Horizontal Polarity Test Set-up for Radiated Emissions – Vertical Polarity
845 Larch Ave. · Elmhurst, Illinois · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 6 | 15.231 | 390 MHz - 390 MHz | - |

iDock Link 2
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterSMART GARAGE VIDEO KEYPAD
Equipment Class
DTS - Digital Transmission System
Wireless Chime
Equipment Class
DTS - Digital Transmission SystemVEHICULAR GATE OPENER
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterHandheld Remote
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter