A movable barrier or garage door operator has a barrier drive for moving the movable barrier or garage door between open and closed positions. motion of the barrier is detected by a tachometer connected to the barrier drive or by upper and lower barrier travel limit switches. A test is made to determine if the barrier has been commanded to be in a closed state and to determine if a preselected time interval has elapsed following closure of the barrier. When both of those conditions are present and the door is moved upward without authorization an alarm signal is generated and can signal the barrier drive to apply a closing force. The timer prevents the barrier from being closed on a person or obstacle during normal operation and prevents injury. An obstacle detector also prevents unwanted closure on an obstacle.
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1. A barrier operator for opening and closing a movable barrier, comprising:
a barrier drive; means for detecting motion of the movable barrier; means for detecting when a barrier command signal has been given to the barrier drive; means for storing a commanded state of the barrier drive; means for comparing the commanded state with the motion indicated by said barrier motion detection means, and for indicating if the motion conflicts with the commanded state; and means for generating an alarm signal in response to the conflict indication of said comparing means.
0. 19. A barrier operator for opening and closing a movable barrier, comprising:
a barrier drive; a motion detector for detecting motion of the movable barrier; a command signal detector for detecting when a barrier command signal has been given to the barrier drive; circuitry for storing a commanded state of the barrier drive; a controller for comparing the commanded state with the motion indicated by said barrier motion detector, and for indicating if the motion conflicts with the commanded state; and a signal generator for generating an alarm signal in response to the conflict indication of said controller.
0. 40. A method of controlling a movable barrier for movement between an open position and a closed position comprising:
receiving barrier movement commands including barrier open commands directing opening movement of the barrier and barrier close commands directing a closing movement of the barrier; moving the barrier to the closed position in response to a barrier close command; sensing that the barrier has been moved to the closed position; and generating an alarm signal when the sensing step indicates that the barrier has moved from the closed position, and the receiving step does not indicate that a barrier open command has been received.
0. 37. A barrier operator for opening and closing a barrier comprising:
a command signal receiver for receiving barrier open and barrier close signals directing the opening or closing respectively of the barrier; a barrier drive responsive to barrier open and barrier close signals for opening and closing the barrier, respectively; a closed limit detector for sensing the closed state of the barrier; and a barrier controller responsive to received command signals and the closed limit detector for generating an alarm signal when the barrier has been in the closed position and an attempt is made to raise the door when no door open command has been received.
0. 25. A barrier operator for controlling a movable barrier, comprising:
a down limit detector disposed to indicate whether said barrier is at a closed position or not; memory for storing one of a set of states of said barrier, the set of states including a closed state indicating said barrier is closed; an alarm generator, responsive to the barrier state stored by said memory and said down limit detector, for generating an alarm signal when the stored barrier state is closed and said down limit detector indicates said barrier is not at a closed position; and an alarm enabler for enabling said alarm signal generator a preselected time interval after said barrier is closed.
7. A barrier operator for controlling a movable barrier, comprising,
a down limit detector disposed to indicate whether said barrier is at a closed position or not; memory means for storing one of a set of states of said barrier, the set of states including a closed state indicating said barrier is closed; alarm generation means, responsive to the barrier state stored by said memory means and said down limit detector, for generating an alarm signal when the stored barrier state is closed and said down limit detector indicates said barrier is not at a closed position; and alarm enabling means for enabling said alarm generation means a preselected time interval after said barrier is closed.
15. A garage door operator for opening and dosing a garage door, comprising:
a motor for moving the garage door; a down limit detector, for indicating when the garage door is moved to a closed position by said motor; timer means enabled by the indication from said down limit detector that the garage door is closed, disposed to indicate when a preselected interval has expired; command signal means for receiving a commanded state of the garage door; and a microprocessor responsive to said command signal means for causing said motor to move the garage door to the commanded state, disposed to cause the motor to close the garage door when said timer means indicates the preselected interval has expired, said down limit detector indicates the garage door is not closed, and said command signal means has not received a new commanded state.
0. 33. A garage door operator for opening and closing a garage door comprising:
a motor for moving the garage door; a down limit detector, for indicating when the garage door is moved to a closed position by said motor; a timer enabled by the indication from said down limit detector that the garage door is closed, disposed to indicate when a preselected interval has expired; a command signal receiver for receiving a commanded state of the garage door; and a microprocessor responsive to said command signal receiver for causing said motor to move the garage door to the commanded state, disposed to cause the motor to close the garage door when said timer indicates the preselected interval has expired, said down limit detector indicates the garage door is not closed, and said command signal receiver has not received a new commanded state.
2. A barrier operator for opening and closing a movable barrier according to
3. A barrier operator for opening and closing a movable barrier according to
4. A barrier operator for opening and closing a movable barrier according to
5. A barrier operator for opening and closing a movable barrier according to
6. A barrier operator for opening and closing a movable barrier according to
8. A barrier operator according to
9. A barrier operator according to
down motor signal means, for providing a down motor signal in response to said alarm signal; and a barrier drive responsive to said down motor signal for closing said barrier.
10. A barrier operator according to
obstacle detector for detecting an obstacle to movement of said barrier, and for generating an obstacle signal in response thereto; and means for disabling said barrier drive in response to the obstacle signal.
11. A barrier operator according to
an optical light emitter for emitting light; and an optical light detector for receiving the light from said emitter, and generating a signal indicative of whether light is received from said emitter or not.
12. A barrier operator according to
13. A barrier operator according to
a barrier drive motion detector for detecting actual motion of said barrier drive and generating a motion signal indicative thereof; wherein said alarm generation means receives the motion signal and generates the alarm signal when the stored barrier state is closed, said down limit detector indicates said barrier is not at a closed position, and said motion detector indicates motion of said barrier drive.
14. A barrier operator according to
a command signal receiver for receiving a signal commanding said barrier to open, and generating an indication thereof; and means for providing an up motor signal in response to the receiver indication; wherein said barrier drive responds to the up motor signal by opening said barrier; and said memory means stores a state selected from the set of barrier states, other than the closed state, in response to the receiver indication.
16. A garage door operator according to
a tachometer for detecting rotation of said motor, and for providing an indication thereof to said microprocessor, wherein said microprocessor is disposed to cause said motor to close the garage door when said timer means indicates the preselected interval has expired, said tachometer indicates said motor has rotated beyond a preselected threshold, and said command signal means has not received a new commanded state.
17. A garage door operator according to
an optical obstacle detector, for optically detecting the presence of an obstacle adjacent the garage door and producing an obstacle detection signal in response thereto, wherein said microprocessor is responsive to the obstacle detection signal to cease causing said motor to close the garage door.
18. A garage door operator according to
0. 20. A barrier operator for opening and closing a movable barrier according to
0. 21. A barrier operator for opening and closing a movable barrier according to
0. 22. A barrier operator for opening and closing a movable barrier according to
0. 23. A barrier operator for opening and closing a movable barrier according to
0. 24. A barrier operator for opening and closing a movable barrier according to
0. 26. A barrier operator according to
0. 27. A barrier operator according to
down motor circuitry, for providing a down motor signal in response to said alarm signal; and barrier drive responsive to said down motor signal for closing said barrier.
0. 28. A barrier operator according to
obstacle detector for detecting an obstacle to movement of said barrier, and for generating an obstacle signal in response thereto; and for disabling said barrier drive in response to the obstacle signal.
0. 29. A barrier operator according to
an optical light emitter for emitting light; and an optical light detector for receiving the light from said emitter, and generating a signal indicative of whether light is received from said emitter or not.
0. 30. A barrier operator according to
0. 31. A barrier operator according to
a barrier drive motion detector for detecting actual motion of said barrier drive and generating a motion signal indicative thereof; wherein said alarm generator receives the motion signal and generates the alarm signal when the stored barrier state is closed, said down limit detector indicates said barrier is not at a closed position and said motion detector indicates motion of said barrier drive.
0. 32. A barrier operator according to
a command signal receiver for receiving a signal commanding said barrier to open, and generating an indication thereof; and circuitry for providing an up motor signal in response to the receiver indication: wherein said barrier drive responds to the up motor signal by opening said barrier; and said memory stores a state selected from the set of barrier states, other than the closed state, in response to the receiver indication.
0. 34. A garage door operator according to
a tachometer for detecting rotation of said motor, and for providing an indication thereof to said microprocessor; wherein said microprocessor is disposed to cause said motor to close the garage door when said timer indicates the preselected interval has expired, said tachometer indicates said motor has rotated beyond a preselected threshold, and said command signal receiver has not received a new commanded state.
0. 35. A garage door operator according to
an optical obstacle detector, for optically detecting the presence of an obstacle adjacent the garage door and producing an obstacle detection signal in response thereto, wherein said microprocessor is responsive to the obstacle detection signal to cease causing said motor to close the garage door.
0. 36. A garage door operator according to
0. 38. A barrier operator according to
0. 39. A barrier operator according to
0. 41. The method of
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This application is a continuation of application Ser. No. 08/443,178 filed May 17, 1995, now abandoned.
The invention relates, in general, to barrier operators and, in particular to a garage door operator including a system for detecting when an attempt is made to force open a closed garage door.
Several garage door operator systems are available on the market for maintaining a garage door either in a closed or open position. It is clear that the systems should be relatively easy to use and should be able to open the door relatively rapidly to allow quick and easy access to the garage. In addition, many systems are provided which include detectors, pressure detectors and the like that sense when the garage door is being brought down and the bottom edge of the door comes in contact with an obstacle prior to the door reaching the fully closed position. These systems are important because they prevent the garage door from closing on people, pets or small objects and, therefore, prevent personal injury and property damage. One of the drawbacks of such systems, however, is that for some such systems, when the door has been closed, if a lifting force is applied to the door, or instance by an unwanted intruder grabbing the handle of the door and attempting to raise it by jacking the door or the like, some systems through a force measurement routine, automatically cause the door to be opened, in order to prevent what the garage door operator senses might be potential harm. Of course, if the person operating the door is attempting to break and enter the garage for nefarious purposes and it is important that while the system prevents harm, the system also be provided such that the door cannot be forced open if the operator does not want it to be and if no persons or property are in danger.
A system available from the Stanley Company provides a garage door operator having upper travel limit and lower travel limit switches associated therewith. The switches may be set or moved so that the limits of travel may be changed. In the Stanley system, for instance, if the door has reached a nominal closed position and the operator has its down limit switch position changed, the door will actually dynamically track changes in the switch position and open or close according to switch commands.
Mechanical systems may be available that in effect, jam the door closed; however, once these systems are placed in effect, if a person not knowing that the door is down and effectively mechanically locked attempts to open the door the garage door operator then attempts to lift the door against the locking mechanism and the garage door operator may be inadvertently damaged thereby or, at the very least, not open the door because it is locked.
What is needed then is a system which provides a sensing modality for a garage door or other barrier operator which, while maintaining all safety features to prevent personal injury or property damage due to unwanted closing of the door, nevertheless senses when an intruder attempts to open the door and prevents the door from being opened by a positive drive force provided by the garage door operator motor.
The invention relates, in general, to a barrier system operator and, in particular, to a garage door operator which while having all safety features for preventing personal injury and property damage due to inadvertent closing of the garage door, nevertheless provides a positively actuated door closure system which prevents forcing the door once it has closed without having detected any objects underneath it. The system includes a barrier drive including an electric motor which may be connected to a belt, chain or screw drive. Means are provided for detecting motion of the movable barrier. These means may include a motor tachometer, upper and lower limit switches and the like. Means are also provided for detecting when a barrier command signal has been given to the barrier drive so that when a door has been commanded by a radio frequency control, the keypad control, indoor wired control or the like to open, the door may be automatically opened. The system also includes a storage device for storing the commanded state of the barrier drive which may be a microcontroller or a microprocessor in combination with a memory or some other integrated circuit device capable of storing digital or analog information. The commanded state is stored and is then compared in a comparator means with the position indicated by the barrier detection. In the event that the comparison of the barrier state signal and the barrier position signal indicates that the system already has been in a lowered position, usually for given time intervals, such as 27 seconds and attempt is made to raise the door causing unwanted motion of the door when there has been no up command given, an alarm signal is generated which may be passed through electronic and electromechanical logic to the door motor causing the door motor to provide thrust to the door to hold the door in the closed position.
In the alternative, the system may also provide a signal to operate a visual or audio alarm or to call over a telephonic or other wired system to a police department or to a security service to indicate that the system is being broken into.
It is a principal object of the present invention to provide a barrier operator for opening and closing a movable barrier which includes an electronic system for detecting when forced entry is being attempted on the carrier and for preventing the barrier from being opened.
Other objects of this invention will become obvious to one of ordinary skill in the art upon a perusal of the following specification and claims in light of the accompanying drawings.
Referring now to the drawings and especially to
The head unit 12 has a wired wall control panel 43 connected to it via a line or wire 43a, as is shown in FIG. 2. More specifically, the wall control panel 43 is connected to a charging circuit 70 and a discharging circuit 72 coupled via respective lines 74 and 76 to a wall control decoder 78. The wall control decoder 78 decodes closures of a plurality of switches 80, 82 and 84 in the wall circuit. The wall control panel also includes a light emitting diode 86 connected by a resistor 88 to the line 43a and to ground. Switch 80 is the command switch, switch 82 is the work light switch and switch 84 is the vacation switch. Switch closures are decoded by the wall decoder 78 which sends signals along lines 90 and 92 to a motor control 94 coupled via motor control lines 96 to an electric motor 98 positioned within the head unit. A tachometer 100 receives a mechanical feed from the motor 98 and provides feedback signals on lines 102 to the motor controller.
The receiver unit also includes an antenna 110 coupled to receive radio frequency signals either from the fixed RF keypad 34 or the hand-held transmitter 30. The RF signals are fed to a radio frequency receiver 112 where they are buffer amplified and supplied to a bandpass circuit 114 which outputs low frequency signals in the range of 1 Hz to 1 kHz. The low frequency signals are fed to an analog-to-digital converter 116 that sends digitized code signals to a radio controller 118. The radio controller 118 is also connected to receive signals from a non-volatile memory 120 over a non-volatile memory bus 122 and to communicate via lines 124 and 126 with the motor controller 94. A timer 128 is also provided, coupled via lines 130 with the radio controller, a line 132 with the motor controller and a line 134 with the wall control decoder 78. A barrier travel limit detection device 190 includes an up limit detector 190a and a down limit detector 190b that sends signals to pins P20 and P21 of the microcontroller 282 (as depicted in FIG. 3b). The obstacle detector comprising the emitter 42 and detector 46 send signals to pins P03 and P30 of the microcontroller 282 (as depicted in
Referring now to
The microcontroller 282 may have its mode of operation controlled by a programming or learning switch 300 positioned on the outside of the head unit 12 and coupled via a line 302 to the P26 pin of the microcontroller 282. The wired control panel 43 is connected via the lead 43a to input pins P06 and P07 The microcontroller 282 has a 4 MHz crystal 328 connected to it to provide clock signals. A force sensor 330 includes a bridge circuit having a potentiometer 332 for setting the up force and a potentiometer 334 for setting the down force, respectively connected to inverting terminals of a first comparator 336 and a second comparator 338. The comparator 336 sends an up force signal over a line 339a. The comparator 338 sends a down force signal over the line 339b, respectively to pins P04 and P05 of the 8-bit microcontroller 282. Although details of the operation of the microcontroller in conjunction with other portions of the circuit will be discussed hereinafter, it should be appreciated that the P01 pin of the microcontroller is connected via a resistor 350 to a line 352 which is coupled to an NPN transistor 354 that controls a light relay 356 which may supply current via a lead 358 to a fight in the head unit or the like. Similarly, the pin P000 feeds an output signal on a line 360 to a resistor 362 which biases a base of an NPN transistor 364 to cause the transistor 364 to conduct, drawing current through the coil of the relay an up relay 366 causing an up motor command to be sent over a line 90 to the motor 98. Finally, the P02 pin sends a signal through a line 370 to a resistor 372 via a line 374 to the base of an NPN transistor 376 connected to control current through a coil of a down control relay 378 which is coupled by one of the leads to the motor 98 to control motion of the motor 98.
Electric power is received on a hot AC line 390 and a neutral line AC line 392 which are coupled to a transformer 393 at its primary winding 394. The AC is stepped down at a secondary winding 395 and is full wave rectified by a full wave rectifier 3%. It may be appreciated that, in the alternative, a half wave rectifier may also be used.
A plurality of filter capacitors 398 receive the full wave rectified fluctuating voltage and remove some transients from the voltage supplying a voltage with reduced fluctuation to an input of a voltage regulator 400. The voltage regulator 400 produces a 5-volt output signal available at a lead 402 for use in other portions of the circuit.
Referring now to
In the event that the state equals 2, the routine 502 is entered as may best be seen in
In the event that the state has been set equal to 1, control is transferred to a barrier traveling up or a barrier opening routine shown in
In the event that the state has been set equal to 5, a routine 506 to handle down limits, as shown in
In the event the state has been set equal to 4 to command the door to travel down, the routine 508 is entered as shown in
In the event that the state has been set equal to 6, the routine 510 shown in
In the event that the state has been set equal to zero indicating that an auto reverse is to be commanded, the routine 512 is entered in a step 620, the motor is turned off and a watchdog timer is started. In the step 622, the delay timer is decreased and if 0.5 seconds has expired, the state is set equal to 1 to cause the door to travel upward on the next 2 millisecond interrupt. In a step 624, a test is made for the radio command or wall control command flag being set. If it has, the stopped in middle routine 510 will be entered on the next interrupt. The routine 512 is then exited in a step 626.
While there has been illustrated and described a particular embodiment of the present invention, it will be appreciated that numerous changes and modifications will occur to those skilled in the art, and it is intended in the appended claims to cover all those changes and modifications which fall within the true spirit and scope of the present invention.
Moravec, John V., Fitzgibbon, James J.
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