The present invention relates generally to the field of controlling a door, and more particularly—but by no means exclusively—the field of controlling the ability to open the door.
The ability to control the opening of a door can be highly desirable. For instance, the ability to prevent an emergency exit door of a public building (such as a shop) from being readily opened can be desirable for security reasons. While there exists many door locking mechanisms that could be used to control the opening of the door, existing door locking mechanisms can be unsuitable in some situations because they do not meet building safety requirements. More specifically, existing door locking mechanisms will commonly only release the door for opening if the appropriate key is used to unlock the mechanism. In this regard, some building safety standards require door locking mechanisms to release the door without a key so that it can be opened relatively easily.
According to a first aspect of the present invention there is provided a device for controlling a door, the device comprising:
a body;
an electromagnet arranged to generate a magnetic field for retaining the door;
a coupling means that couples the electromagnet to the body, the coupling means being arranged to allow a movement of the electromagnet relative to the body; and
a current supply means that is arranged to supply the electromagnet with a current, the current supply means being further arranged to detect the movement of the electromagnet and to cease supplying the current at a predetermined instant after detecting the movement of the electromagnet.
An advantage of an embodiment of the device is that it enables the opening of the door to be controlled in a manner that accords with a building safety requirement to allow the door to be opened without a key. Of particular note is the fact that the embodiment of the device retains the door in a closed position for a predetermined extent of time, after which the embodiment of the device releases the door so that it can be opened. This advantage is provided by virtue of the fact that the embodiment of the device is capable of detecting the movement of the electromagnet and cease supplying the current at the predetermined instant after detecting the movement of the electromagnet.
Preferably, the device further comprises a visual indicator arranged to provide a particular visual indication when the electromagnet is generating the magnetic field.
An advantage of incorporating the visual indicator into the embodiment of the device is that it effectively provides a means for enabling persons (such as security staff) to readily discern whether the door is being retained by the device.
Preferably, the body comprises:
an elongate section that defines a void; and
elements that extend outwardly from opposed surfaces of the elongate section and into the void, wherein the coupling mean and the electromagnet are located in the void.
Preferably, the coupling means comprises:
a base that is retained in position by the elements;
a component that is secured to the main part and which is attached to the base; and
a resilient part disposed between the base and a head of the component, the resilient part being such that it enables the movement of the electromagnet.
Preferably, the current supply means comprises:
an electronic circuit that has a switch; and
a lug that is attached to the electromagnet,
wherein the electronic circuit and the lug are arranged such that the movement of the electromagnet causes a change in a state of the switch, which in turn causes the electronic circuit to cease supplying the current at the predetermined instant.
Preferably, the current supply means also comprises an adjustable portion that can be adjusted so as to set an amount of the movement of the electromagnet that causes the change in the state of the switch.
Preferably, the device further comprises an image capture means arranged to capture an image subsequent to the current supply means detecting the movement of the electromagnet.
An advantage of an embodiment of the device including the image capture device is that the device can, for example, capture an image of a person attempting to open the door.
Preferably, the device further comprises a sound emitting means arranged to emit a sound subsequent to the current supply means detecting the movement of the electromagnet.
An advantage of an embodiment of the device including the sound emitting means is that by emitting the sound it can cause the person to look at the device, which in turn enables the image capture device to capture a better image of the person's face.
Preferably, the device further comprises an audio recording means for recording audio information subsequent to the current supply means detecting the movement of the electromagnet.
An advantage of an embodiment of the device including the audio recording means is that it enables the device to record audio (voices) from persons in the vicinity of the door.
Preferably, the device further comprises a radio frequency transmitter that is arranged to transmit a radio signal encoded with the image captured by the image capture means and/or the audio information recorded by the audio recording means.
According to a second aspect of the present invention, there is provided a door locking device comprising:
an electromagnet for retaining a door armature plate; and
a visual indicator means arranged to provide a particular visual indication when the electromagnet is retaining the door armature plate.
Notwithstanding any other embodiments that may fall within the scope of the present invention, an embodiment of the present invention will now be described, by way of example only, with reference to the accompanying figures, in which:
a) provides an illustration of a device in accordance with an embodiment of the present invention;
b) provides another illustration of the device depicted in
c) provides a further illustration of the device depicted in
d) provides yet another illustration of the device depicted in
e) provides a further illustration of the device depicted in
f) provides another illustration of the device depicted in
g) is yet a further illustration of the device depicted in
a) shows an alternative embodiment of the invention;
b) shows the device of
c) shows the device of
With reference to
With reference to
With reference to
As described previously, the electromagnet 104 is located in the void 112 of the body 102. It is the coupling means 106 that holds the electromagnet 104 securely in the void 112. As can be seen in
In addition to the base 124 the coupling means 106 comprises at least one component 128 that resides in the recess 126. The component 128 is essentially a screw-type device, which extends through the base 124 and into the electromagnet 104 to thereby secure the electromagnet 104 in the void 112 of the body 102. The coupling means 106 also comprises a resilient part 130 that is located between a head 132 of the component 128 and a base 134 of the recess 126 in the base 124. The resilient part 130, which is made of a rubber material (or plastic in an alternative embodiment), allows the electromagnet 104 to be moved relative to the body 102 in the direction indicated by arrow “A”. The amount of movement permitted by the coupling means is illustrated in
Referring to
In addition to the electronic circuit 136, the current supply means 108 includes a lug 140 that is attached to the electromagnet 104. The lug 140 includes an adjustable portion 142 in the form of a grub-screw, which can be screwed up and down relative to the lug 140. The lug 140 is attached to the electromagnet 104 at a position near the micro-switch 138 such that movement of the electromagnet 104 in the direction indicated by the arrow marked “A” cases the actuator of the micro-switch 138 to be moved from the first position to the second position. In this regard, the adjustable portion 142 can be set (screwed) to set the amount of movement of the electromagnet 104 that causes the actuator of the micro-switch 138 to be moved from the first position to the second position.
In relation to the visual indicator 110, which can be seen in
While not shown in the accompanying figures, it is envisaged that alternative embodiments of the device 100 include addition features that enhance the security aspects of the device 100. One of the addition features is a CCD camera that is electrically coupled to the current supply means 108. On detecting movement of the electromagnet 104 the current supply means 108 activates the CCD camera in order to cause it to capture an image of the area near the door 122. Typically, the usage (which may be either a single shot or short video clip) will capture persons trying to open the door 122.
To ensure the CCD captures suitable images of persons trying to open the door 122, the device 100 also includes (in an alternative embodiment) a sound emitting circuit. The sound emitting circuit is also coupled to the current supply means 108, which is arranged to activate the sound emitting circuit on detecting movement of the electromagnet. On being activated, the sound emitting circuit emits a sound. By emitting the sound persons in the vicinity of the door 122 will be caused to look at the device 100, which in turn allows the CCD camera to capture a good image of the persons' face.
In addition to the CCD camera and the sound emitting circuit, it is envisaged that the alternative embodiment of the device 100 includes a digital audio recording circuit for recording the voices of persons in the vicinity of the door 122. In this regard, the digital audio recording circuit is electrically coupled to the current supply means 108. The current supply means causes the audio recording circuit to be activated to thereby record the voices of persons located near the door 122.
It is also envisaged that in an alternative embodiment the device 100 also includes a radio frequency transmitter circuit, which is arranged to receive the image captured by the CCD camera and the audio information recorded by the digital audio recording circuit. On receiving the image and the audio information the radio frequency transmitter circuit transmits a radio frequency signal that is encoded with the image and the video information. The transmitted radio frequency signal can be received and processed at a security console.
Referring to
Referring to
Referring to
Device 200 includes a radio transmitter device which can transmit signals indicating a condition of device 200 based on the positions of microswitches 239, 240. If neither switch is actuated then this indicates that the door is not being pushed.
If switch 239 is actuated then this indicates that somebody may be attempting to open the door. The radio transmitter circuit may transmit a signal indicating this. This may be received at a local unit which sounds an alarm to indicate to the person that the door is locked.
If switches 239 and 240 are actuated then this indicates that somebody may be making a forced attempt to break open the door. The radio transmitter circuit may transmit a signal indicating this. This may be received at a remote security console or the like to indicate to security personnel that a forced attempt may be being made to open the door to which device 200 is attached.
Any reference to prior art contained herein is not to be taken as an admission that the information is common general knowledge, unless otherwise indicated.
Finally, it is to be appreciated that various alterations or additions may be made to the parts previously described without departing from the spirit or ambit of the present invention.
Number | Date | Country | Kind |
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2005906600 | Nov 2005 | AU | national |
2006904704 | Aug 2006 | AU | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
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PCT/AU2006/001725 | 11/17/2006 | WO | 00 | 7/29/2008 |
Publishing Document | Publishing Date | Country | Kind |
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WO2007/059556 | 5/31/2007 | WO | A |
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20080290669 A1 | Nov 2008 | US |