
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Page 1 Syver-Tech, Inc. Operation Manual Table of Contents INTRODUCTION General Notes & Information The “Teach Cycle” Page 2 SAFETY FEATURES Auto-Reverse Motion/Threshold Sensors Sensor Mats Page 3 OPERATING INSTRUCTIONS Before You Begin Start the Teach Cycle Adjust Motion/Threshold Sensors Programming: Buttons, Mats, KeyFobs (Remotes Only) Program Devices Program the Keycode Keypad Using the Keycode Keypad Page 4 Page 5 Page 6 LOCK MODES Hard-Lock Soft-Lock Page 7 FEATURES Descriptions and Factory Settings Page 9 – 11 CHANGING FACTORY SETTINGSPage 12 – 14 OTHER INFORMATION The Main Keypad Button Behavior Page 15 SWITCH SET- UP AND FUNCTIONS POSITIONING LOCK LEVER Page 16 – 18 TROUBLESHOOTINGPage 19 – 22 SAFETY CHECKPage 23 – 24 OPERATOR MAINTENANCEPage 24 FCC COMPLIANCEPage 24 Page 2 INTRODUCTION: General Information • The “Maitre D’oor” sliding door operator is for re si de ntia l use only. ( called the “Operator”). • The “Operator” has 13 factory set features. These settings can be changed to accommodate your needs . • The “Operator” can only be used on doors that the inside door panel slides. • Door must travel freely with no tight spots. The “Operator” is not a cure for a sticky door in need of repair. The free moving door force should not exceed 20 lbs. To get through the door's seal, force should not exceed 25 lbs. • The 3 foot “Operator” will accommodate doors with up to a 30-1/2 ” opening. • The 4 foot “Operator” will accommodate doors with a 32” to 42” opening. • The “Operator” is not guaranteed for use in subfreezing temperatures. Due to ice buildup and or frozen seals, the “Operator” may not function reliably. Before operating under these conditions, clear your door of any snow and ice. Then initiate a new “Teach” cycle. The “Teach Cycle” The “Maitre D’oor” operator must go through a learning mode to measure various elements of your door. These calculations are used in the operator to: • Set power requirements • Detect obstructions during normal operations • Enable the inherent safety features. The “Teach Cycle” also measures any extra force required to pull the door past a stiff or tight seal and all the way closed. This “Extra Force” is set during the “Teach Cycle” using no more force than necessary. See Switch Functions and Set-up section for important safeguards regarding this feature. Page 3 SAFETY FEATURES • Auto-Reverse • When closing, if the door meets an obstruction: ⇒ The door will stop and reverse to the open position giving an obstruction signal. ⇒ The door will then try again to close, moving slower, until it is closed. ⇒ If the door meets an obstruction on this second try, it will stop, reverse to the open position and stop. ⇒ The door will now stay open, giving an obstruction signal every 4 seconds for approx. 30 seconds. ⇒ The “Operator” will shut down in the open position. ⇒ To reactivate the door, remove the obstruction and press the “Door” button twice. • If the door meets an obstruction when opening, it will stop, signal an obstruction and reverse. • Motion/Threshold Sensors Additional safety is assured with the use of motion /threshold sensors. ⇒ The primary function of the sensors is to prevent the door from closing if a person or object is in the threshold. The door will remain open as long as there is movement in the sensor range. ⇒ Can also be used as an opening device. • Sensor Mats Additional safety is assured with the use of sensor mats. ⇒ The primary function of the sensor mats is to open the door. ⇒ They will also hold the door open b y trans mi tti ng co nti nuo us signals as long as the object remains on the mat. ⇒ The mats must be placed and secured as close to the door as possible. ⇒ The trans mi tter (attac hed to the ma t) sho uld be secured to the door jamb with the velcro strips provided. Page 4 OPERATING INSTRUCTIONS Before You Begin: ♦ Check the switch positions and lock lever position for proper set-up before initiating the “Teach Cycle. (See Pg 16– 18) ♦ Keep all objects clear of the door and motion sensors while in the teach cycle. Do not interfere when door is teaching. ♦ The operator will not function until this step is successfully completed ♦ Safety features are activated upon completion of the teach cycle. STEP 1: Start the “Teach Cycle” • Close the door. • Press and hold bot h the “PROGRAM” and “DOOR” buttons for 2 se conds, until you hear a tone; then release. ⇒ The “On/Status” LED goes out, the “DOOR” LED lights up amber, the keypad will emit tones. ⇒ The door will begin with partial cycles, then full cycles at various speeds. This will take a few minutes—approximately 12 cycles, depending on the door. ⇒ The “Operator” will emit tones and return to the normal operating mode when the “Teach cycle” is complete. The “On/Status” LED is lit. Important Note: If the "Operator" did not initiate a teach cycle, or did not complete a good teach cycle, it will emit 3 low tones. Refer to the troubleshooting guide. Page 5 STEP 2: Adjust Motion /Threshold Sensors Please refer to the Optex instructions that came with your sensors for proper adjustments. Step 3: Programming: Buttons, Mats, KeyFobs (Remote devices only) The operator will accommodate two (2) devices of each type listed above. One designated for Inside operation and one for Outside operation. We recommend programming all Inside devices as (Gree n) and all Outside devices as (Red). The main keypad is used to program these devices. Pay attention to the LED’s next to the type of device you are programming. Once programmed, w henever a remote device is activated, the corresponding LED for that device will light up in either green or red on the keypad. Caution: Program all devices in their proper area. It is possible to program a button as a mat, or a mat as a keyfob etc. If this happens, the device will take on the functions of the type of device programmed rather than the actual device itself. Program Devices This mode times out after 20 seconds if no device has been programmed. If…
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1234 A B C D 4321 D C B A Title Date PrintedSheetof Drawn by Brock in Protel '98 v4.2.0 Revision Customer Address 20 Park Place CircleHawthorn Woods, IL 60447 5-Dec-2000 45 0 FileQ:\Syver\3194\rev1\sch\BLOCK_TRANSM_R4.SCH Syver-Tech, Inc. Block Diagram - Transmitter Board Size A Drawing Status final 3194 TBR Job # Microcomputer 4 MHz 12VDC Battery Linear Regulator 315MHz Transmitter LED T-Pad Attenuator Button / FloorMat Antenna ID Code Alternate circuit Programming Header
FCC ID: PF6-MT0127 D.L.S. ELECTRONIC SYSTEMS, INC. 1250 Peterson Drive Wheeling, Illinois 60090 FCC Authorization & Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21045-0429 Gentlemen: We are submitting for Syver-Tech, Inc., a Maitre D’oor Floor Mat Transmitter, Model Number MT0127, with a FCC ID: PF6-MT0127 for a Certification. This unit has been tested and complies to Part 15, Subpart C. If there are any questions in regards to this application, please call D.L.S. Electronic Systems, Inc. at (847) 537 6400. Enclosed you will find a copy of our test report with the information and results of tests that is required under Part 15, Section 15.231. Thank you for your assistance in this matter. Sincerely, Arnom C. Rowe EMC-001375-NE DLS/mm
Syver-Tech, Inc. FCC ID: PF6-MT0127 Batter y Co mpart Syver-Tech, Inc.FCC LABEL PLACEMENT 20 Park Place Circle Hawthorn Woods, IL 60047 Mat Transmitter Label size: 1/2" x 1-1/2"
Page 1 of 1 1220LakeviewCourt,Romeoville,IL60446-6500 Phone:(630)378-3500Fax:(630)378-3519 CIR-CAD JAJ Syver-Tech Transmitter Board Operational Description (ASSE-0610 – No Button) (ASSE-0572 – w/ Button) The Transmitter board transmits an ID code at 315MHz whenever power is applied to the circuit. The button or mat applies power to the circuit only when it is pressed. The RF transmission is not continuous, but starts out in frequent bursts, then drops down to once every 2 seconds after a few seconds, and finally goes into sleep mode after about 7.5 minutes of being held on. The LED is on whenever the device is transmitting. The ID code informs the mainboard that it is a button or mat transmitter, and stays the same on every transmission. Two alternate ID codes can be selected by cutting traces on the PC board. This allows for the rare case that two transmitters are misinterpreted as the same one. This case should never occur, since each transmitter is given a different ID # when the processor is programmed.
March 8, 2001 To: Andy Leimer FCC Application Processing Branch FCC ID: PF6-MT0127 Clarification of Mat Operation Mat Transmitter Operation 1. Starts out in frequent bursts when the mat is stepped on. (This opens the door) 2. Drops down to once every 2 seconds as long as someone is on the mat. (This holds the door open as long as this signal continues – someone is still on the mat. 3. After about 7.5 minutes it is assumed that an object, rather than a person, has been left on the mat unintentionally and then goes into a sleep mode to preserve the battery. For security, the door will close at this point, 4. This assumption is made because someone would have to stand on the mat motionless for 7.5 minutes, which is very unlikely. 5. Any movement on the mat will start the cycle over again with frequent bursts, then every 2 seconds, etc. 6. The transmitter only operates when someone steps on the mat. When the person steps off the mat, the transmitter ceases operation, and does not transmit. Correspondence Reference Number: 18250 731 Confirmation Number: EA99791
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1234 A B C D 4321 D C B A Title Date PrintedSheetof Drawn by Brock in Protel '98 v4.2.0 Revision Customer Address 20 Park Place CircleHawthorn Woods, IL 60447 4-Jan-2001 11 2 FileQ:\Syver\3194\rev2\sch\TRANSM_R6.SCH Syver-Tech, Inc. Transmitter Board Size A Drawing Status final 3194 TBR Job # GND 1 DIN 2 GND 3 IADJ 4 RFOUT 5 GND 6 VCC 7 GND 8 XMIT1 TXM-315-LC VDD 1 GP5/OSC1/CLKIN 2 GP4/OSC2/CLKOUT 3 GP3/MCLR/VPP 4 GP2/TOCKI 5 GP1 6 GP0 7 VSS 8 U1 PIC12C508 Data_Out Data_Out +5V +5V +5V R1 220 OHM R2 5.6K R3 Shorted + C1 10UF ANT1 HELICAL ANTENNA 1 2 C3 .1uf C4 .1uf 1 2 B1 12VBattery (23A) RF Transmitter R5430 1 2 3 4 5 J3 CON5 Program Data_Out+5V In circuit programming R4 1.6K +5V Program For Mat Transmitter Connect Mat Here Stuff SW1 for Remote Button Transmitter Cut Either Trace To Change Address T-Pad for optional attenuation During FCC approval testing Data_Out Program Vin 3 GND 2 Vout 1 U6 7805 values shown are FCC approved for transmitter with button for mat transmitter, FCC approved shorting across R1, R3, and leaving R2 open 1 24 3 SW1 SW SPDT LED1 LED-AK 12 J1 CON2
EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 1 TEST SPECIFICATION: FCC "Rules and Regulations", Part 15, Subpart C Sections 15.231 (a-d), 15.207 & 15.205 Intentional Radiators Periodic operation in the band 40.6 – 40.77 MHz & above 70 MHz THE FOLLOWING MEETS THE ABOVE TEST SPECIFICATION Formal Name:Syver-Tech, Inc Maitre D'oor Floor Mat Transmitter Kind of Equipment:Floor Mat Transmitter Test Configuration:Continuous transmitting (Floor mounted for test) Transmitter FCC ID:PF6-MT0127 Model Number: MT0127 Serial Number: NA Dates of Test:November 1, 2000 Test Conducted For:Syver-Tech, Inc. 20 Park Place Circle Hawthorn Woods, Illinois 60047 NOTICE:Please see change information listed inside of this report. This report must not be used by the customer to claim product endorsement by NVLAP or any agency of the United States Government, and it cannot be reproduced (except in full), without the approval of D.L.S. Electronic Systems Inc. EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 2 SIGNATURE PAGE Report Written By: Arnom C. Rowe Test Engineer EMC-001375-NE Report Reviewed by: Jack Prawica Lab Manager Report Approved by: Brian J. Mattson General Manager Company Official: Syver-Tech, Inc. EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 3 NVLAP Certificate of Accreditation available upon request. EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 4 NVLAP Certificate of Accreditation available upon request. EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 5 NVLAP Certificate of Accreditation available upon request. EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 6 1.Cover Pagei 2.Signature Pageii 3.NBS Certificate of Accreditationiii 6.Table of Contentsiv 8.Summary of Test Report1.0 8.Introduction2.0 8.Object3.0 8.Test Set-up4.0 9.Test Equipment (Bandwidths and Detector Function)5.0 9.Conducted Emission Measurements6.0 10.Conducted Emission Data taken during testing6.0 11.Conducted Emission Graphs taken during testing6.0 12.Field Strength of Spurious Emission Measurements7.0 14.Radiated Data taken for Fundamental & Spurious Emissions Measurements7.0 19.Radiated Graphs taken for Fundamental & Spurious Emissions Measurements 7.0 49.Pulsed Operation (Duty Cycle Correction Factor)8.0 50.Pulse Operation Graphs taken during testing8.0 51.Bandwidths9.0 52.Graphs taken of Fundamental Frequency & Bandwidths9.0 54.Restricted Bands10.0 EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 7 55.Photo Information and Test Set-Up11.0 56.Photos Taken During Testing12.0 58.Change Information13.0 60.Results of Tests14.0 60.Conclusion15.0 61.Equipment ListTABLE 1 EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 8 1.0SUMMARY OF TEST REPORT It was found that the Syver-Tech, Inc Maitre D'oor Floor Mat Transmitter S/N NA meets the radio interference emission requirements of the FCC "Rules and Regulations", Part 15, Subpart C, Sections 15 .231 (a-d), 15.207 and 15.205 for Intentional Radiators operating in the 315 MHz Frequency Band with periodic operation. NOTE: The conducted emissions test was not required because the EUT is powered from a DC power source. It does not have a line cord to plug into the A.C. power line. 2.0INTRODUCTION On November 1, 2000, a series of radio frequency interference measurements were performed on Floor Mat Transmitter, S/N NA. The tests were performed according to the procedures of FCC as stated in MP-1 “FCC Methods of Measurement for determining Compliance of Radio Control and Security Alarm Devices and Associated Receivers”. Tests were performed by personnel of D.L.S. Electronic Systems, Inc. who are responsible to Donald L. Sweeney, Senior EMC Engineer. 3.0OBJECT The purpose of this series of tests was to determine if the test sample could meet the radio frequency emission requirements of the FCC "Rules and Regulations", Part 15, Subpart C, Sections 15.231 (a-d), 15.207 and 15.205 for Intentional Radiators operating in the 315 MHz Frequency Band with periodic operation. 4.0TE ST SE T- UP All radiated emission tests were performed at D.L.S. Electronic Systems, Inc. The radiated tests were made with the test item placed on a non-conductive turntable located in the Test Room with the receive antenna placed three meters from the device under test. The equipment under test was set up according to ANSI C63.4-1992, Section 8, (Figures 9c and 9d). EMC Test ServicesReport No. 8629 1250 Peterson Drive, Wheeling, Illinois 60090, USA01/22/01 Page 9 5.0TEST EQUIPMENT (Bandwidths and Detector Function) All preliminary data below 1000 MHz was automatically plotted using the Peak or CISPR Detector Functions. This information was then used to determine the frequencies of maximum emissions. Manual measurements were performed on these frequencies using a peak detector function of the Receiver with the bandwidths specified by the FCC. Above 1000 MHz final data was taken using the Peak Detector. Below 1000 MHz final data was taken using the fixed tuned receiver. Plots were made using the Quasi Peak Detector, with manual measurements made on the frequencies of interest. Above 1000 MHz, average measurements were made using the fixed tuned receiver, the average was taken of a linear IF signal as specified by FCC and ANSI C63.4-1992. The fundamental frequency was measured using the Average Detector and the CISPR Detector was used for measuring the Harmonics as stated in Section 15.209. From 10 kHz to 30 MHz a bandwidth of 9 kHz was used. From 30 MHz to 1000 MHz a bandwidth of 120 kHz was used and above 1000 MHz, a bandwidth of 1 MHz was used to ensure proper measurement of the narrowband signal. A list of the equipment used can be…
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1250 Peterson Drive · Wheeling, Illinois · United States
| # | Rule Parts | Frequency Range | Power Output | Tolerance |
|---|---|---|---|---|
| 1 | 15C | 315 MHz - 315 MHz | - | % |

Maitre Door Key Code Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter
Maitre Door Push Button Transmitter
Equipment Class
DSC - Part 15 Security/Remote Control Transmitter