DEVICE FOR REMOTE LIGHT SWITCH CONTROL
20200080714 ยท 2020-03-12
Inventors
Cpc classification
H02H3/00
ELECTRICITY
H02H7/005
ELECTRICITY
F21V23/0435
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F21V23/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
H02H3/00
ELECTRICITY
H02H7/00
ELECTRICITY
Abstract
An adapter that provides a remote control capability for a light switch is mounted on a support structure (e.g. a wall), and includes a base plate which is also mounted on the support structure to surround the ON/OFF mechanism of the light switch. A cover which can be selectively attached to the base plate establishes an enclosed space between the base plate and the cover. A connector is mounted on the adapter in the enclosed space to interact mechanically with the ON/OFF mechanism of the light switch. The connector also interacts electronically with an activator that is positioned at a remote location. In operation, the connector at the adapter is responsive to an input signal from the remotely located activator that will operate the ON/OFF mechanism. Alternatively, the ON/OFF mechanism can be disconnected from the activator and operated manually.
Claims
1. An adapter assembly to establish a remote control capability from a floor mat for the ON/OFF mechanism of a light switch, wherein the light switch is mounted on a support structure, the adapter assembly comprising: a base plate formed with an aperture to provide access to the ON/OFF mechanism of the light switch, and wherein the base plate is affixed to the support structure; a cover attached onto the base plate to create an enclosed space between the cover and the base plate, wherein the cover is formed with an aperture to provide access to the ON/OFF mechanism of the light switch from outside the enclosed space; a connector positioned in the enclosed space to mechanically interact with the ON/OFF mechanism of the light switch; and an activator incorporated into the floor mat at a site remote from the connector for electronically interacting with the connector, wherein the connector is responsive to an input signal from the activator to manipulate the ON/OFF mechanism between an ON configuration for the light switch and an OFF configuration for the light switch.
2. The adapter assembly of claim 1 further comprising: a receiver mounted with the connector in the enclosed space and electronically linked with the connector; and a transmitter positioned on the floor mat with the activator at the remote site for transmitting the input signal to the receiver to operate the connector in response to the input signal.
3. The adapter assembly of claim 2 wherein the transmitter comprises: a sensor for detecting a perturbation at the remote site wherein the perturbation is caused by a disturbance selected from the group consisting of pressure, light, sound and motion; and an electronic component connected to the sensor, wherein the electronic component is sensitive to the perturbation and responds by sending the input signal to the receiver.
4. The adapter assembly of claim 3 wherein the sensor is a pressure sensor.
5. The adapter assembly of claim 1 wherein the ON/OFF mechanism is a toggle switch having an arm and the connector comprises: a motor; a sleeve dimensioned to fit on the toggle switch arm; and a drive rod interconnected between the sleeve and the motor, wherein the motor moves the sleeve via the drive rod to manipulate the toggle switch of the ON/OFF mechanism.
6. The adapter assembly of claim 1 wherein the ON/OFF mechanism is a decora switch having a rocker, and wherein the connector comprises: a motor; a rocker sleeve dimensioned to fit over the rocker of the decora switch; and a drive rod interconnected between the rocker sleeve and the motor, wherein the motor moves the rocker sleeve via the drive rod to manipulate the rocker of the ON/OFF mechanism.
7. The adapter assembly of claim 1 further comprising a breaker switch to disconnect the activator from the connector for manual operation only of the light switch.
8. The adapter assembly of claim 1 further comprising: a first engagement device formed on the base plate; and a second engagement device formed on the cover, wherein the first engagement device and the second engagement device interact with each other to attach the cover onto the base plate.
9. The adapter assembly of claim 1 wherein the first engagement device includes a hook and a snap clip, wherein the hook and the snap clip straddle the ON/OFF mechanism, and the second engagement device includes a loop for engagement with the hook of the first engagement device and a prong for engagement with the snap clip of the first engagement device.
10. A method for installing an adapter assembly to establish a remote control capability for the ON/OFF mechanism of a light switch, wherein the light switch is mounted on a support structure, the method comprising the steps of: affixing a base plate to the support structure, wherein the base plate is formed with an aperture to provide access to the ON/OFF mechanism of the light switch; attaching a cover onto the base plate to create an enclosed space between the cover and the base plate, wherein the cover is formed with an aperture to provide access to the ON/OFF mechanism of the light switch from outside the enclosed space; mounting a connector on the cover in the enclosed space to mechanically interact with the ON/OFF mechanism of the light switch; and positioning an activator incorporated into a floor mat at a site remote from the connector for electronically interacting with the connector, wherein the connector is responsive to an input signal from the activator to manipulate the ON/OFF mechanism between an ON configuration for the light switch and an OFF configuration for the light switch.
11. The method of claim 10 further comprising the steps of: electronically linking a receiver with the connector in the enclosed space; and locating a transmitter with the activator at the remote site for transmitting the input signal to the receiver for operating the connector in response to the input signal.
12. The method of claim 11 wherein the ON/OFF mechanism is a toggle switch having an arm and the method further comprises the steps of: fitting a sleeve on the toggle switch arm; and connecting a drive rod between the sleeve and the connector, wherein the connector moves the sleeve via the drive rod to manipulate the toggle switch of the ON/OFF mechanism.
13. The method of claim 11 wherein the ON/OFF mechanism is a decora switch having a rocker, and the method further comprises the steps of: fitting a rocker sleeve over the rocker of the decora switch; and connecting a drive rod between the rocker sleeve and the connector, wherein the connector moves the rocker sleeve via the drive rod to manipulate the rocker of the ON/OFF mechanism.
14. The method of claim 10 further comprising the steps of: engaging a loop on the cover with a hook on the base plate; and joining a prong on the cover with a snap clip on the base plate to attach the cover onto the base plate.
15. The method of claim 11 further comprising the steps of: providing a sensor for detecting a perturbation at the remote site; and linking the sensor with the transmitter, wherein the transmitter is sensitive to the perturbation and responds by sending the input signal to the receiver, wherein the sensor and the transmitter are incorporated into the floor mat and the sensor is a pressure sensor.
16. The method of claim 10 further comprising the step of providing a breaker switch to disconnect the activator from the connector for manual operation only of the light switch.
17. The method of claim 10 wherein the attaching step is accomplished by screwing the base plate to the support structure, and wherein the support structure is a wall.
18. An adapter assembly for controlling the ON/OFF mechanism of an electric light switch which comprises: a means for engaging with the ON/OFF mechanism, wherein the engaging means includes a sleeve dimensioned to fit onto the ON/OFF mechanism for movement therewith; a means for mechanically manipulating the engaging means, wherein the manipulating means includes a drive rod having a first end and a second end, wherein the first end of the drive rod is connected to a motor and the second end of the drive rod is connected to the sleeve of the engaging means for selectively manipulating the ON/OFF mechanism back and forth between an ON configuration for the electric light switch and an OFF configuration for the electric light switch; and a means for electronically activating the manipulating means, wherein the activating means is incorporated into a floor mat at a remote site and is sensitive to a predetermined perturbation at the remote site for sending an input signal to the motor of the manipulating means for activating the manipulating means to move the ON/OFF mechanism.
19. The adapter assembly of claim 18 further comprising a pressure sensor connected with the activating means for generating the input signal, wherein the pressure sensor is incorporated into the floor mat.
20. The adapter assembly of claim 19 further comprising a breaker switch interconnecting the motor with the engaging means to disconnect the motor from the engaging means for manual operation only of the electric light switch.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0012] The novel features of this invention, as well as the invention itself, both as to its structure and its operation, will be best understood from the accompanying drawings, taken in conjunction with the accompanying description, in which similar reference characters refer to similar parts, and in which:
[0013]
[0014]
[0015]
DESCRIPTION OF THE PREFERRED EMBODIMENTS
[0016] Referring initially to
[0017] Still referring to
[0018] In
[0019] With reference to
[0020] It is also shown in
[0021] In accordance with the present invention, the adapter assembly 10 may be operated either manually with a direct user manipulation of the ON/OFF mechanism 16, or it may be operated electronically by using the activator 34. Also, when operated electronically, the adapter assembly 10 may be wirelessly connected with the activator 34.
[0022] As envisioned by the present invention, the ON/OFF mechanism may be of several different types, all well known in the field of electric lighting. Two types of ON/OFF mechanisms are particularly prominent. One is a standard toggle switch (not shown) which has an arm that can be rotated. The other is a well-known decora switch (not shown) which, rather than having a toggle, has a rocker. For both types of ON/OFF mechanisms, the present invention envisions the use of a sleeve 48 that is specifically dimensioned to fit respectively onto either the toggle switch arm or the rocker. As disclosed above, in each case, the drive rod 46 is connected with the sleeve 48 and is operated by the motor 40 to manipulate the ON/OFF mechanism 16.
[0023] For a preferred embodiment of the present invention,
[0024] While the particular Device for Remote Light Switch Control as herein shown and disclosed in detail is fully capable of obtaining the objects and providing the advantages herein before stated, it is to be understood that it is merely illustrative of the presently preferred embodiments of the invention and that no limitations are intended to the details of construction or design herein shown other than as described in the appended claims.