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KJ8KYE5-3720Door Control Transmitter

Wayne Dalton Corporation
Door Control Transmitter - FCC ID KJ8KYE5-3720 - Wayne Dalton Corporation
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Mar 15, 2005
Application Purpose
Original Equipment
Date of Application
Mar 15, 2005
Equipment Note
Door Control Transmitter
Frequency Range
372.50000000 - 372.50000000
Company
Wayne Dalton Corporation
Country
United States

Documents & Files

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Users Manual

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Attestation Statements

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Block Diagram

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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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Operational Description

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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

Locate Keyless Entry Unit: within sight of door, at a minimum height of 5 feet so it cannot be reached by small children, and away from all moving parts of the door. Choose a convenient location that does not interfere with the normal opening and closing operation of the door, such as the door jamb. CAUTION: The keypad should be mounted a minimum of 5 feet from the floor to keep it out of the reach of small children. Two screws are included for proper mounting into wood or other similar material. If you're mounting into some other material, consult a building contractor to insure proper hardware is used for a secure mounting. Drilling Template For Keyless Entry Once you have determined the mounting location, use the drilling template to determine hole positions and drill a 5/64" pilot hole Snap open the Keyless Entry case with a coin. Separate the front case from the back case. Mount the back case and secure with screws provided. Do not over tighten the screws as this may bend or damage the back case. Install and snap the front case onto the back case. Remove paper backing from "Changing Personal Identification Number" label and apply label to a clean surface inside garage. The following explains how your Keyless Entry can be used to OPEN, CLOSE, START, and STOP your door. Enter your 5-digit PIN (personal identification number); door will begin to move 1. NOTE: If you inadvertently enter an incorrect code, the door will not move To Reset, press and hold the "7/8" and "9/0" buttons for 2 seconds and reenter your PIN number. Unit remains active for next 25 sec. Pressing any key, will stop the door if opening, and stop or reverse the door if closing. 2. Your new Model 3966 Wireless Keyless Entry contains a state-of-the-art wireless digital transmitter capable of operating an unlimited number of compatible garage door openers. For added security, your Wireless Keyless Entry utilizes a "rolling code" technology that, each time the transmitter communicates with the receiver, sets a new code, selecting from millions of combinations, reducing the possibility of electronic equipment causing unwanted access. For proper operation it is important that you follow the programming directions and sequence as written. PLEASE READ ALL INSTRUCTIONS THOROUGHLY TO FAMILIARIZE YOURSELF WITH THE PROGRAMMING PROCEDURE BEFORE BEGINNING. SAVE THESE INSTRUCTIONS FOR REFERENCE WHENEVER YOU WISH TO CHANGE YOUR PERSONAL IDENTIFICATION NUMBER (PIN) Before your Wireless Keypad will be able to operate the opener, there are several programming steps that have to be completed. FCC WARNING To comply with FCC rules, adjustment or modification of transmitter is prohibited. THERE ARE NO USER SERVICEABLE PARTS EXCEPT FOR BATTERY REPLACEMENT. This device complies with Part 15 of the FCC Rules. 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. Always keep moving door in sight and away from people and objects until it is completely closed. NO ONE SHOULD CROSS THE PATH OF THE MOVING DOOR. Never let children operate or play with door controls. Keep all controls away from children. WARNING Programming or Changing Personal Identification Number A. With new installations, it is recommended that the keyless entry be programmed before mounting to wall, otherwise proceed to step B. B. Unit should be programmed with garage door in the down position. For the iDrive openers, pull the emergency disconnect handle to the manual operated position (lower position). C. Press the program button on the garage door opener to switch the opener to the transmitter learn mode (see illustrations above). Opener will remain in the learn mode for at least 30 seconds. D. Press the desired five digit PIN (PERSONAL IDENTIFICATION NUMBER) number, (example: 1-2-3-4-5). Garage door opener should beep or lamp should blink. For the iDrive openers, return the emergency disconnect handle to the motor operated position (upper position). Wait 5 seconds and press any button; the door should move. Programming is now complete. Under normal operating conditions, the battery should be changed once every 12 months. Dispose of used batteries properly. To replace battery perform the following steps: A. Snap open case with a coin and remove old batteries. B. Replace batteries (two CR2032 or equivalent) and snap case together. (2) Coin Cells Batteries (CR2032) NOTE: IF, AT ANY TIME, AN ERROR WAS MADE IN ENTERING THE CODES, SIMPLY PRESS AND HOLD BOTH THE "7/8" AND "9/0" BUTTONS FOR 2 SECONDS TO RESET THE KEYLESS ENTRY. REPEAT THE ABOVE PROCEDURES. Note: One 3966 Keyless Entry can be programmed to open multiple garage door openers. To program for additional openers, repeat steps A thru D above except input a different five digit PIN number for each additional opener. Pre-drill a 5/64 pilot hole 3/4" deep Pre-drill a 5/64 pilot hole 3/4" deep Wayne-Dalton Corp. One Door Drive „ Mt. Hope, OH 44660 888-827-3667 Mounting MODEL 3966 Wireless Keyless Entry System How Your Keyless Entry Operates Your Opener Battery Replacement NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a residential environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of…

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Attestation Statements

Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 POWER OF ATTORNEY A letter granting Valdis V. Liepa the Power of Attorney is on file and can be provided when so requested. Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 REQUEST FOR CONFIDENTIALITY Pursuant to 47 CRF 0.459, Wayne Dalton requests that a part of the subject application be held confidential. This comprises Exhibits (5) Schematics (10) Parts List (Part of Exhibit only) Wayne Dalton has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. If there are any questions regarding this request, please contact me at the above address or call 734-483-4211, fax 734-647-2106 or e-mail [email protected]. Sincerely, Valdis V. Liepa Research Scientist University of Michigan March 15, 2005 Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 STATEMENT OF MODIFICATIONS There were no modifications made to the DUT by this test laboratory. (Also see Section 3.1 of the attached Test Report). _____________________ Valdis V. Liepa Research Scientist Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 GENERAL PRODUCT INFORMATION The device, for which certification is pursued, has been designed by: Wayne Dalton Corporation 3395 Addison Drive Pensacola, Florida 32514 Doug Gilmore Tel: (850) 475-6126 Fax: (850) 484-4239 It will be manufactured by: Wayne Dalton Corporation 3395 Addison Drive Pensacola, Florida 32514 Doug Gilmore Tel: (850) 475-6126 Fax: (850) 484-4239 Canadian Contact: Bob McEwan, General Manager Wayne-Dalton of Canada 254 Matheson Blvd East Mississauga, Ontario L4Z 1P5 Canada Tel 905-890-1402 Fax 905-890-5182

Block Diagram

DC BA 4321 DC BA 4321 DC BA 4321 DC BA 4321 DC BA 4321 DC BA 4321 Rev. Description: Who: Date: MARTEC ACCESS PRODUCTS, Inc. 240 Sheffield St. Mountainside, NJ 07092 Title:Size: Number: Rev. Date Drawn by: : Filename: Check by: Sheet 1 of 1 A NOT TO SCALE F.C. M.B. ANTENNA MICROPROCESSOR WITH INTERNAL CLOCK 4 MHz RF CARRIER GENERATOR, MODULATOR AND AMPLIFIER 372.5 MHz POWER SUPPLY 6VDC (CR2016 X 2) 1301-21 2/20/03 1301-21 A.VSD A F.C. 2/20/03 5 BUTTON Q2 KEYPAD 1301 5 Button Q2 Keypad Block Diagram 1301 5 Button Q2 Keypad Block Diagram KEYPAD

Cover Letter(s)

March 15, 2005 Federal Communications Commission Equipment Approval Services P.O. Box 358315 Pittsburgh, PA 15251-5315 Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 Please find enclosed application materials for certification of Wayne Dalton 3966 Transmitter. We tested it and found it to comply with FCC Part 15. If there are any questions regarding the application or testing performed, please contact me at the above address or call 734-483-4211, fax 734-647-2106, or e-mail [email protected]. Sincerely, Valdis V. Liepa Research Scientist March 15, 2005 Certification and Engineering Bureau Industry Canada 3701 Carling Avenue, Bldg. 94 Ottawa, Ontario K2H 8S2 Re: Certification for Wayne Dalton Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 Please find enclosed application materials for certification of Wayne Dalton 3966 Transmitter. We tested the device and found it to comply with RSS-210. The product is identified by: IC: 3540A-KYE53270 If there are any questions, suggestions, etc., regarding the application or testing performed, please contact me at the above address or call 734-483-4211, fax 734-647- 2106; e-mail: [email protected]. Sincerely, Valdis V. Liepa Research Scientist

Cover Letter(s)

March 15, 2005 American Telecommunications Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 RE: Certification Application FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 Please find enclosed application materials for certification of Wayne Dalton 3966 Transmitter. Note: 1) portions of this submittal are filed Confidential 2) a list of the modifications made is provided in Attestations. If there are any questions regarding the application or testing performed, please contact me at the above address or call 734-483-4211, fax 734-647-2106, or e-mail [email protected]. Sincerely, Valdis V. Liepa Research Scientist

ID Label/Location Info

MODEL 3966 DATE: [WWYY] FCC ID : KJ8KYE5-3720 IC:3540A-KYE53270 WAYNE-DALTON CORP. WIRELESS KEYLESS ENTRY

Operational Description

Prod. Spec. EX-02637 Page 2 of 4 5-B RF Keypad Wayne-Dalton Corp. . –Company Confidential– Operational Requirements 1. If the product is in stand-by mode (low power consumption mode), the pressing any one of the five buttons for 100ms minimum shall bring the product out of stand-by mode and be used as the first digit of a five digit access code. 2. The LED shall be extinguished while any button is pressed. 3. The product shall enter stand-by mode 30 s after the last activated (pressed) button is released or if one or more buttons are held continuously pressed. 4. Upon entering a 5 digit code, the product shall RF transmit the proper KeeLoq formatted data word with the five button code embedded in the discriminator as the access code. 5. A 5 second timeout period is imposed between each button press until all 5 presses have been entered. If this time out limit is reached between any subsequent press, the product will go into stand by mode. The entire 5 digit code will have to be reentered. 6. Upon entering a 5 digit code, pressing any one of the five buttons while not in stand- by mode, shall cause the product to RF transmit the proper KeeLoq formatted data word with a new KeeLoq sync value 7. After any RF transmission, the LED shall blink on and off at a 1.5s rate, 33 duty- factor, for 30 s. Then the LED shall turn off (stand-by mode activated). 8. Pressing the two lower most buttons simultaneously shall cause the product to enter stand-by mode. (per Markings, item 1, lower most buttons refer to “7/8”, “9/0”) RF Specifications 1. Center RF: 372.5 MHz, +/- 1.0 MHz at -30qC to 70qC, (-22qF to 158qF). 2. The RF center frequency is determined by an LC oscillator and is only factory adjustable. 3. This product’s RF data transmission range shall be 250 feet minimum, open air, when tested with a companion receiving unit. 4. RF power output shall not decrease more than TBD dBm and the RF center frequency shall remain within specifications when the product is mounted in the center of a 12” by 12” steel sheet. Transmitted Data 1. This product shall transmit the KeeLoq code hopping data format, at a “1 out of 2” transmission data rate. 2. The KeeLoq format uses a 28-bit Serial Number scheme. The 28th of the Serial Number shall be set to zero (0) and the 27th bit shall be set to one (1) to indicate that this unit is a keypad (not a fixed wall-station). 3. Valid Serial numbers are 68287C1h to 7FFFFFFh (109,217,729 to 134,217,727 decimal). 4. This product does not use a Seed Value. 5. This product does not use Envelope Encryption. 6. The Overflow Bits shall be set to logic 1 (high) during the product’s manufacturing process. 7. See Microchip’s HCS301 KeeLoq Code Hopping Encoder data sheet DS21143 for additional information.

Test Report

The University of Michigan Radiation Laboratory 3228 EECS Building Ann Arbor, MI 48109-2122 Tel: (734) 764-0500 Measured Radio Frequency Emissions From Wayne Dalton / Martec Transmitter Model: 3966 Report No. 415031-240 March 15, 2005 Copyright © 2005 For: Wayne Dalton 3395 Addison Drive Pensacola, Florida 32514 Contact: Doug Gilmore Tel: (850) 475-6126 Fax: (850) 484-4239 PO: Verba Tests supervised by: Measurements made by: Report approved by: _____________________ Joseph D. Brunett Valdis V. Liepa Research Scientist Summary Tests for compliance with FCC Regulations Part 15, Subpart C, and Industry Canada RSS-210, were performed on Wayne Dalton Corporation model 3966. This device is subject to the Rules and Regulations as a Transmitter. In testing completed on March 15, 2005, the device tested in the worst case met the allowed FCC specifications for radiated emissions by 4.3 dB (see p. 6). Besides harmonics, there were no other significant spurious emissions found; emissions from digital circuitry were negligible. The conducted emission tests do not apply, since the device is powered from a 6 VDC battery (2 x 3 VDC). 2 1. Introduction Wayne Dalton Corporation model 3966 was tested for compliance with FCC Regulations, Part 15, adopted under Docket 87-389, April 18, 1989, and with Industry Canada RSS-210, Issue 5, November, 2001. The tests were performed at the University of Michigan Radiation Laboratory Willow Run Test Range following the procedures described in ANSI C63.4-1992 "Methods of Measurement of Radio- Noise Emissions from Low-Voltage Electrical and Electronic Equipment in the Range of 9 kHz to 40 GHz". The Site description and attenuation characteristics of the Open Site facility are on file with FCC Laboratory, Columbia, Maryland (FCC Reg. No: 91050) and with Industry Canada, Ottawa, ON (File Ref. No: IC 2057). 2. Test Procedure and Equipment Used The pertinent test equipment commonly used in our facility for measurements is listed in Table 2.1 below. The middle column identifies the specific equipment used in these tests. Table 2.1 Test Equipment. Test Instrument Eqpt. Used Manufacturer/Model Spectrum Analyzer (0.1-1500 MHz) Hewlett-Packard, 182T/8558B Spectrum Analyzer (9kHz-22GHz) X Hewlett-Packard 8593A SN: 3107A01358 Spectrum Analyzer (9kHz-26GHz) X Hewlett-Packard 8593E, SN: 3412A01131 Spectrum Analyzer (9kHz-26GHz) Hewlett-Packard 8563E, SN: 3310A01174 Spectrum Analyzer (9kHz-40GHz) Hewlett-Packard 8564E, SN: 3745A01031 Power Meter Hewlett-Packard, 432A Power Meter Anritsu, ML4803A/MP Harmonic Mixer (26-40 GHz) Hewlett-Packard 11970A, SN: 3003A08327 Harmonic Mixer (40-60 GHz) Hewlett-Packard 11970U, SN: 2332A00500 Harmonic Mixer (75-110 GHz) Hewlett-Packard 11970W, SN: 2521A00179 Harmonic Mixer (140-220 GHz) Pacific Millimeter Prod., GMA, SN: 26 S-Band Std. Gain Horn S/A, Model SGH-2.6 C-Band Std. Gain Horn University of Michigan, NRL design XN-Band Std. Gain Horn University of Michigan, NRL design X-Band Std. Gain Horn S/A, Model 12-8.2 X-band horn (8.2- 12.4 GHz) Narda 640 X-band horn (8.2- 12.4 GHz) Scientific Atlanta , 12-8.2, SN: 730 K-band horn (18-26.5 GHz) FXR, Inc., K638KF Ka-band horn (26.5-40 GHz) FXR, Inc., U638A U-band horn (40-60 GHz) Custom Microwave, HO19 W-band horn(75-110 GHz) Custom Microwave, HO10 G-band horn (140-220 GHz) Custom Microwave, HO5R Bicone Antenna (30-250 MHz) X University of Michigan, RLBC-1 Bicone Antenna (200-1000 MHz) X University of Michigan, RLBC-2 Dipole Antenna Set (30-1000 MHz) X University of Michigan, RLDP-1,-2,-3 Dipole Antenna Set (30-1000 MHz) EMCO 2131C, SN: 992 Active Rod Antenna (30 Hz-50 MHz) EMCO 3301B, SN: 3223 Active Loop Antenna (30 Hz-50 MHz) EMCO 6502, SN:2855 Ridge-horn Antenna (300-5000 MHz) X University of Michigan Amplifier (5-1000 MHz) X Avantak, A11-1, A25-1S Amplifier (5-4500 MHz) X Avantak Amplifier (4.5-13 GHz) Avantek, AFT-12665 Amplifier (6-16 GHz) Trek Amplifier (16-26 GHz) Avantek LISN Box University of Michigan Signal Generator Hewlett-Packard 8657B 3 3. Configuration and Identification of Device Under Test The DUT is a 372.5 MHz transmitter, 2 x 4 x 1 inches in size. Its carrier is pulse width modulated and LC stabilized, antenna is internal. The DUT was designed and manufactured by Wayne Dalton, 3395 Addison Drive, Pensacola, Florida 32514. It is identified as: Wayne Dalton / Martec Transmitter Model: 3966 FCC ID: KJ8KYE5-3720 IC: 3540A-KYE53270 The transmitter provided was modified in software for continuous repeating transmission to make testing more convenient. Note: The commercial DUT is manually activated and ceases to transmit within 5 seconds of deactivation as defined within the microprocessor software. 3.1 Modifications Made There were no modifications made to the DUT by this laboratory. 4. Emission Limits The DUT tested falls under the category of an Intentional Radiators and the Digital Devices. For FCC, it is subject to Part 15, Subpart C, (Section 15.231), Subpart B, (Section 15.109), and Subpart A, (Section 15.33). For Industry Canada it is subject to RSS-210, (Sections 6.1 and 6.3). The applicable testing frequencies with corresponding emission limits are given in Tables 4.1 and 4.2 below. As a digital device, the DUT is considered as a Class B device. 4.1 Radiated Emission Limits Table 4.1. Radiated Emission Limits (FCC: 15.33, 15.35, 15.109; IC: RSS-210, 6.2.2(r)). (Digital Class B) Freq. (MHz) E lim (3m) μV/m E lim dB(μV/m) 30-88 100 40.0 88-216 150 43.5 216-960 200 46.0 960-2000 500 54.0 Note: Average readings apply above 1000 MHz (1 MHz BW) Quasi-Peak readings apply to 1000 MHz (120 kHz BW) 4 Table 4.2. Radiated Emission Limits (FCC: 15.231(b), 15.205(a); IC: RSS-210; 6.1, 6.3). (Transmitter) Fundamental Spurious** Frequency Ave. E lim (3m) Ave. E lim (3m) (MHz) (μV/m) dB (μV/m) (μV/m) dB (μV/m) 260.0-470.0 3750-12500* 375-1250 322-335.4 Restricted 399.9-410 Bands 200 46.0 608-614 960-1240 1300-1427 Restricted 1435-1626.5 Bands 500 54.0 1660-1710 1718.9-1722.2 2200-2300 * Linear…

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Contact Information

Applicant

Richard L. BARDIN(Electrical Engineer)
[email protected]850 474-9890Fax: 850 475-6036

Technical Contact

University of Michigan/EECSValdis Liepa
[email protected]734-483-4211

1301 Beal Avenue · Ann Arbor, Michigan · United States

Test Firm

University of MichiganValdis Liepa
[email protected]734-647-1792Fax: 734-647-2106

Technical Specifications

#Rule PartsFrequency RangePower Output
115.231372.5 MHz - 372.5 MHz-
Confidentiality
Long Term

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