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KJ8WST-372ASWVGarage Door Opener Transmitter

Wayne Dalton Corporation
Garage Door Opener Transmitter - FCC ID KJ8WST-372ASWV - Wayne Dalton Corporation
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Application Details

Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Date of Grant
Feb 05, 2003
Application Purpose
Original Equipment
Date of Application
Feb 05, 2003
Equipment Note
Garage Door Opener 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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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.

ID Label/Location Info

R

Operational Description

Product Specification Document Page 1 of 7 Wayne-Dalton Corp. . –Company Confidential– Filename: EX01436 UCC Wall Station Product Spec Rev7.doc Spec. No.: EX-01436 Product No.: TBD Originated: 07/10/2001 Author: Richard Gagnon Revision: 8 User Changeable Code (UCC) Transmitter Five Button Wall Station (Preliminary) Revised: 01/09/2003 Product Specification Document Wayne-Dalton Corp. Pensacola, FL R&D Approved: Mfg. Approved: QA Approved: Product Specification Document Page 2 of 7 Wayne-Dalton Corp. –Company Confidential– 1. Purpose This document defines the hardware and software requirements of the five push-button (PB) wall station UHF transmitter for the Wayne-Dalton line of DoorMaster-type of garage door operators. This transmitter encrypts and transmits the KeeLoq code hopping (a.k.a. rolling- code) data format. This transmitter has the ability for a user to reprogram a portion of the serial number. It is powered by one 12 V battery and has an LED to indicate transmitter activity. 2. Power Source 2.1. One 12 V alkaline mini battery, Eveready brand #A23, Duracell MN21, or equivalent. 2.2. This product will operate from a power source of 8 V to 13.0 V. 2.3. If the power source is below 5.0 V, +/- 2.0 V, the LED will be off. 2.4. The operating current (one or more push-buttons activated) of this product is 11 mA or less. 2.5. The battery is user replaceable. 2.6. Transmission data is stored in non-volatile memory and is not lost during battery replacement. 2.7. If a push-button is continuously activated, the RF transmission shall cease after 30 sec, +/- 10 sec, to conserve battery power, “auto-shutoff”. The RF transmission shall remain off until all buttons are released, then re-start on the next button activation. 3. RF Specifications 3.1. Transmitter center frequency 3.1.1. Center RF: 372.5 MHz, +/- 100 kHz at -30°C to 70°C, (-22°F to 158°F). 3.1.2. Center RF: 310.0 MHz +/- 100 kHz at -30°C to 70°C, (-22°F to 158°F). 3.2. The RF center frequency is control by a surface acoustic wave (SAW) device and is neither factory nor user adjustable. 3.3. This product’s RF data transmission range is 300 feet minimum, open air, when tested with a companion receiving unit. 4. Transmitted Data 4.1. This product shall transmit the 66 bit KeeLoq code hopping data format, at a “1 out of 2” transmission data rate. 4.2. Each button pressed shall transmit a unique value (button code). Thus, this product is capable of transmitting five different valid button codes. (All buttons pressed is an invalid encryption.) 5. Data Format 5.1. This product uses a Microchip Technology PICmicro 12CE519 as its microcontroller. The firmware emulates a HCS301 KeeLoq Code Hopping Encoder. 5.2. This product is programmable via four-wires and the programming protocol will be similar to the HCS301 device to allow programming with the same production programming equipment. 5.3. Limitations with the PICmicro requires the elimination of three words supported by the HCS301 KeeLoq Code Hopping Encoder: 5.3.1. This product will not store nor use a Seed Value. Product Specification Document Page 3 of 7 Wayne-Dalton Corp. –Company Confidential– 5.3.2. This product will not store nor use an Envelope key. 5.3.3. This product will not store nor use a Reserved word 5.4. The two Overflow Bits in the Configuration word shall be set to logic 1 (high) during the product’s manufacturing process. 5.5. The 32 bit word for the serial number will use the lower 21 bits (b0-b20) for Serial Number generation , 5 bits for programmer identification (b21-b25) and 2 bits (b26- b27) for transmitter identification. Bit b26 shall be set to logic ‘0’ and Bit b27 shall be set to logic ‘1’ to indicate that this unit is a Wall Station transmitter. Valid Serial numbers are 8000000h to BFFFFFFh. 5.6. The transmitted data will consist of 66 bits that contain 32 bits of encrypted data, 13 bits of fixed data and 21 bits of re-programmable serial number data. 5.7. The encrypted data will contain 4 bits for button status, 2 bits for sync extension 10 bits for optional discrimination and 16 bits for the sync counter. 6. Non Volatile Data Requirements 6.1. 64 bits are required for an encryption key 6.2. 32 bits are required for a serial number value 6.3. 16 bits are required for a synchronization value 6.4. 16 bits are required for a configuration word 6.5. Total number of bits required are 128 (16 bytes) Byte Address Mnemonic Description 0 KEY_0 64-bit encryption Key (byte 0) 1 KEY_1 64-bit encryption Key (byte 1) 2 KEY_2 64-bit encryption Key (byte 2) 3 KEY_3 64-bit encryption Key (byte 3) 4 KEY_4 64-bit encryption Key (byte 4) 5 KEY_5 64-bit encryption Key (byte 5) 6 KEY_6 64-bit encryption Key (byte 6) 7 KEY_7 64-bit encryption Key (byte 7) 8 SYNC_1 16-bit synchronization value (byte 0) 9 SYNC_2 16-bit synchronization value (byte 1) 10 SER_0 32-bit serial number (byte 0) 11 SER_1 32-bit serial number (byte 1) 12 SER_2 32-bit serial number (byte 2) 13 SER_3* 32-bit serial number (byte 3) 14 CONFIG_0 16-bit configuration word (byte 0) 15 CONFIG_1 16-bit configuration word (byte 1) *the upper 6 bits (b26-b31) are used to indicate 2-transmitter type, 4-button status 7. Serial Number Generation 7.1. During normal use, a new serial number will be generated based upon the previous serial number using a proprietary encryption algorithm. 7.2. Activation of the new serial number shall be initiated upon applying the 10-5 process using only the LAMP button. The LED shall flash 3 times upon completion of the 10-5 process to indicate the successful activation of the new serial number. 7.3. The user has the ability to force this product to generate a new Serial Number. 7.4. The 21 least significant bits shall randomly change for serial number generation (2,097,152 possibilities). Product Specification Document Page 4 of 7 Wayne-Dalton Corp. –Company Confidential– 7.5. The actions needed to force a new serial number shall not occur accidentally during normal product use, product s…

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Test Report

APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV REPORT #: W/W-Dalton_KJ8\78UT3\78UT3TestReport.doc TABLE OF CONTENTS LIST TABLE OF CONTENTS APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV TEST REPORT CONTAINING: PAGE 1-3...........TEST EQUIPMENT LIST PAGE 4.............TEST PROCEDURE PAGE 5-6...........RADIATION INTERFERENCE TEST DATA PAGE 7.............CALCULATION OF DUTY CYCLE PAGE 8.............DUTY CYCLE PLOT – PULSED EMISSIONS PAGE 9.............DUTY CYCLE PLOT – COMPLETE PULSE TRAIN PAGE 10............DUTY CYCLE PLOT - LONG PULSES PAGE 11............DUTY CYCLE PLOT – SHORT PULSES PAGE 12............OCCUPIED BANDWIDTH PAGE 13............OCCUPIED BANDWIDTH PLOT EXHIBIT ATTACHMENTS: EXHIBIT 1...........BLOCK DIAGRAM EXHIBIT 2...........SCHEMATIC EXHIBIT 3...........INSTRUCTION MANUAL EXHIBIT 4...........FCC ID LABEL SAMPLE EXHIBIT 5...........FCC ID LABEL LOCATION EXHIBIT 6...........EXTERNAL PHOTOGRAPHS EXHIBIT 7...........INTERNAL PHOTOGRAPHS EXHIBIT 8...........TEST SET UP PHOTO EXHIBIT 9...........CIRCUIT DESCRIPTION EXHIBIT 10..........REQUEST FOR CONFIDENTIALITY LETTER APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV REPORT #: W/W-Dalton_KJ8\78UT3\78UT3TestReport.doc Page 1 of 13 EMC Equipment List DEVICE MFGR MODEL SERNO CAL/CHAR DATE DUE DATE or STATUS X 3-Meter OATS TEI N/A N/A Listed 12/22/99 12/22/02 3/10-Meter OATS TEI N/A N/A Listed 3/26/01 3/26/04 Receiver, Beige Tower Spectrum Analyzer (Tan) HP 8566B Opt 462 3138A07786 3144A20661 CAL 8/31/01 8/31/03 RF Preselector (Tan) HP 85685A 3221A01400 CAL 8/31/01 8/31/03 Quasi-Peak Adapter (Tan) HP 85650A 3303A01690 CAL 8/31/01 8/31/03 X Receiver, Blue Tower X Spectrum Analyzer (Blue) HP 8568B 2928A04729 2848A18049 CHAR 10/22/01 10/22/03 X RF Preselector (Blue) HP 85685A 2926A00983 CHAR 10/22/01 10/22/03 X Quasi-Peak Adapter (Blue) HP 85650A 2811A01279 CHAR 10/22/01 10/22/03 X Biconnical Antenna Electro-Metrics BIA-25 1171 CAL 4/26/01 4/26/03 Biconnical Antenna Eaton 94455-1 1096 CAL 10/1/01 10/1/03 Biconnical Antenna Eaton 94455-1 1057 CHAR 3/15/00 3/15/02 BiconiLog Antenna EMCO 3143 9409-1043 X Log-Periodic Antenna Electro-Metrics LPA-25 1122 CAL 10/2/01 10/2/03 Log-Periodic Antenna Electro-Metrics EM-6950 632 CHAR 10/15/01 10/15/03 Log-Periodic Antenna Electro-Metrics LPA-30 409 CHAR 10/16/01 10/16/03 Dipole Antenna Kit Electro-Metrics TDA-30/1-4 152 CAL 3/21/01 3/21/04 Dipole Antenna Kit Electro-Metrics TDA-30/1-4 153 CHAR 11/24/00 11/24/03 Double-Ridged Horn Antenna Electro-Metrics RGA-180 2319 CAL 12/19/01 12/19/03 Horn Antenna Electro-Metrics EM-6961 6246 CAL 3/21/01 3/21/03 Horn Antenna ATM 19-443-6R None No Cal Required Passive Loop Antenna EMC Test Systems EMCO 6512 9706-1211 CHAR 7/10/01 7/10/03 Line Impedance Stabilization . . . Electro-Metrics ANS-25/2 2604 CAL 10/9/01 10/9/03 APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV REPORT #: W/W-Dalton_KJ8\78UT3\78UT3TestReport.doc Page 2 of 13 DEVICE MFGR MODEL SERNO CAL/CHAR DATE DUE DATE or STATUS Line Impedance Stabilization . . . Electro-Metrics EM-7820 2682 CAL 3/16/01 3/16/03 Termaline Wattmeter Bird Electronic Corporation 611 16405 CAL 5/25/99 5/25/01 Termaline Wattmeter Bird Electronic Corporation 6104 1926 CAL 12/12/01 12/12/03 Oscilloscope Tektronix 2230 300572 CHAR 2/1/01 2/1/03 Temperature Chamber Tenney Engineering TTRC 11717-7 CHAR 1/22/02 1/22/04 AC Voltmeter HP 400FL 2213A14499 CAL 10/9/01 10/9/03 AC Voltmeter HP 400FL 2213A14261 CHAR 10/15/01 10/15/03 AC Voltmeter HP 400FL 2213A14728 CHAR 10/15/01 10/15/03 X Digital Multimeter Fluke 77 35053830 CHAR 1/8/02 1/8/04 Digital Multimeter Fluke 77 43850817 CHAR 1/8/02 1/8/04 Digital Multimeter HP E2377A 2927J05849 CHAR 1/8/02 1/8/04 Multimeter Fluke FLUKE-77-3 79510405 CAL 9/26/01 9/26/03 Peak Power Meter HP 8900C 2131A00545 CHAR 1/26/01 1/26/03 Digital Thermometer Fluke 2166A 42032 CAL 1/16/02 1/16/04 Thermometer Traulsen SK-128 CHAR 1/22/02 1/22/04 X Temp/Humidity gauge EXTech 44577F E000901 CHAR 1/22/02 1/22/04 Frequency Counter HP 5352B 2632A00165 CAL 11/28/01 11/28/03 Power Sensor Agilent Technologies 84811A 2551A02705 CAL 1/26/01 1/26/03 Service Monitor IFR FM/AM 500A 5182 CAL 11/22/00 11/22/02 Comm. Serv. Monitor IFR FM/AM 1200S 6593 CAL 5/12/02 5/12/04 Signal Generator HP 8640B 2308A21464 CAL 11/15/01 11/15/03 Modulation Analyzer HP 8901A 3435A06868 CAL 9/5/01 9/5/03 Near Field Probe HP HP11940A 2650A02748 CHAR 2/1/01 2/1/03 APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV REPORT #: W/W-Dalton_KJ8\78UT3\78UT3TestReport.doc Page 3 of 13 DEVICE MFGR MODEL SERNO CAL/CHAR DATE DUE DATE or STATUS BandReject Filter Lorch Microwave 5BR4-2400/ 60-N Z1 CHAR 3/2/01 3/2/03 BandReject Filter Lorch Microwave 6BR6-2442/ 300-N Z1 CHAR 3/2/01 3/2/03 BandReject Filter Lorch Microwave 5BR4-10525/ 900-S Z1 CHAR 3/2/01 3/2/03 High Pas Filter Microlab HA-10N CHAR 10/4/01 10/4/03 Audio Oscillator HP 653A 832-00260 CHAR 3/1/01 3/1/03 Frequency Counter HP 5382A 1620A03535 CHAR 3/2/01 3/2/03 Frequency Counter HP 5385A 3242A07460 CHAR 12/11/01 12/11/03 Preamplifier HP 8449B-H02 3008A00372 CHAR 3/4/01 3/4/03 Amplifier HP 11975A 2738A01969 CHAR 3/1/01 3/1/03 Egg Timer Unk CHAR 8/31/01 8/31/03 Measuring Tape, 20M Kraftixx 0631-20 CHAR 2/1/02 2/1/04 Measuring Tape, 7.5M Kraftixx 7.5M PROFI 2/1/02 2/1/04 Coaxial Cable #51 Insulated Wire Inc. NPS 2251-2880 Timco #51 CHAR 1/23/02 1/23/04 Coaxial Cable #64 Semflex Inc. 60637 Timco #64 CHAR 1/24/02 1/24/04 Coaxial Cable #65 General Cable Co. E9917 RG233/U Timco #65 CHAR 1/23/02 1/23/04 Coaxial Cable #106 Unknown Unknown Timco #106 CHAR 1/23/02 1/23/04 APPLICANT: WAYNE-DALTON CORP. FCC ID: KJ8WST-372ASWV REPORT #: W/W-Dalton_KJ8\78UT3\78UT3TestReport.doc Page 4 of 13 TEST PROCEDURE GENERAL: This report shall NOT be reproduced except in full without the written approval of TIMCO ENGINEERING, INC. RADIATION INTERFERENCE: The test procedure used was ANSI STANDARD C63.4-1992 using a HEWLETT PACKARD spectrum analyzer with a prese- lector. The bandwidth of the spectrum analyz…

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Contact Information

Applicant

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

Test Firm

Timco Engineering, Inc.S Sanders
[email protected]888-472-2424Fax: 352-472-2030

Technical Specifications

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

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