Window blind with pressure sensor which activates light and sound in sequence
09909363 ยท 2018-03-06
Inventors
- David R. Hall (Provo, UT, US)
- Austin Carlson (Provo, UT, US)
- Emily Brimhall (Apline, UT, US)
- Terrece Pearman (Draper, UT, US)
- Jennifer Stevens (Provo, UT, US)
Cpc classification
H04R2227/005
ELECTRICITY
H04R1/028
ELECTRICITY
H05B47/115
ELECTRICITY
Y02B20/40
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
H04R2420/07
ELECTRICITY
G08B13/08
PHYSICS
International classification
G08B15/00
PHYSICS
Abstract
We disclose a window blind that includes a security feature. The disclosed window blind includes a plurality of slats, at least one of which includes a hollow core. The hollow core includes at least one pressure sensor, a controller, and a battery. The pressure sensor detects a change in pressure when an adjacent window or door is opened or broken. The controller may be connected to the pressure sensor and to multiple light fixtures and/or audio speakers throughout the building. Program code in the controller may receive instructions which include a defined order in which the controller sends a signal to each of the light fixtures and audio speakers causing them to actuate.
Claims
1. A window blind comprising: at least two tilt strings; a plurality of slats, each of the plurality of slats comprising: two longitudinal sides each longitudinal side comprising a length, and two transverse sides, each transverse side comprising a width, wherein the length of each of the plurality of slats is at least five times the width, wherein each of the plurality of slats is mounted on the at least two tilt strings, wherein the plurality of slats performs a tilting movement in response to a movement of the at least two tilt strings thus reversibly moving the plurality of slats between an open position and a closed position, and wherein the two transverse sides of each of the plurality of slats are perpendicular to the at least two tilt strings when the plurality of slats is in an open position; a hollow core; an orifice, wherein the orifice leads into the hollow core, and wherein the orifice is positioned along one of the longitudinal sides; at least one air pressure sensor disposed within the hollow core and positioned to detect a change in pressure in the area adjacent to the orifice; a battery, wherein the battery is disposed within the hollow core; and a controller, wherein the controller is disposed within the hollow core, wherein the controller is electronically connected to the at least one pressure sensor, wherein the controller comprises a memory, and wherein the memory comprises program code; and a data communication device, wherein the data communication device transmits a first signal to a remote device when the at least one pressure sensor detects a change in pressure, and wherein the controller receives input data from the remote device through the data communication device.
2. The window blind of claim 1, wherein the at least one pressure sensor comprises one or more of the following pressure transducers: a strain gage pressure transducer, variable capacitance pressure transducer, and piezoelectric pressure transducer.
3. The window blind of claim 1, wherein the controller is electronically connected a plurality of light fixtures, wherein the program code prompts the controller to send a second signal to the plurality of light fixtures through the data communication device to actuate each of the plurality of light fixtures in a first sequence after the controller receives the first signal.
4. The window blind of claim 1, wherein the input data comprises the first sequence.
5. The window blind of claim 1, wherein the remote device is a mobile device.
6. The window blind of claim 3, wherein controller is electronically connected to the at least one pressure sensor and to a plurality of light fixtures through a wireless device.
7. The window blind of claim 6, wherein the wireless device comprises a Bluetooth device.
8. The window blind of claim 3, further comprising an audio device, wherein the audio device comprises an audio recording device, and wherein the audio device is electronically connected both to a plurality of audio speakers and to the controller, wherein the program code prompts the controller to send a subsequent signal to the audio device through the data communication device causing the audio device to actuate each of the plurality of audio speakers in a second sequence after the controller receives the first signal.
9. The window blind of claim 8, wherein the input data comprises the second sequence.
10. The window blind of claim 8, wherein audio recording device comprises at least one audio recording, wherein the at least one audio recording consists of one or more of the following sounds: a barking dog, a siren, a door opening, the sound of footsteps, and a human voice.
11. The window blind of claim 10, wherein the human voice is a recording of a user's voice.
12. The window blind of claim 11, wherein the recording of a user's voice is transmitted to the audio recorder through the remote device.
13. The window blind of claim 8, wherein the audio device is wirelessly connected to the plurality of audio speakers.
14. The window blind of claim 13, wherein the audio device is wirelessly connected to the plurality of audio speakers through a Bluetooth device.
15. The window blind of claim 1, further comprising an audio device, wherein the audio device comprises an audio recording device, wherein the audio device is electronically connected both to a plurality of audio speakers and to the controller, and wherein the program code prompts the controller to send a subsequent signal to the audio device through the data communication device causing the audio device to actuate each of the plurality of audio speakers in a defined sequence after the controller receives the first signal.
16. The window blind of claim 15, wherein the input data comprises the defined sequence.
17. The window blind of claim 15 wherein audio recording device comprises at least one audio recording, wherein the at least one audio recording consists of one or more of the following sounds: a barking dog, a siren, a door opening, the sound of footsteps, and a human voice.
18. The window blind of claim 17, wherein the human voice is a recording of a user's voice.
19. The window blind of claim 15, wherein the audio device is wirelessly connected to the plurality of speakers.
20. The window blind of claim 19, wherein the audio device is wirelessly connected to the plurality of speakers through a Bluetooth device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION OF THE INVENTION
Definitions
(11) Window blind, as used herein, means a blind that covers an opening in a building, including a window or door.
(12) While this invention is susceptible of embodiment in many different forms, there are shown in the drawings, which will herein be described in detail, several specific embodiments with the understanding that the present disclosure is to be considered as an exemplification of the principals of the invention and is not intended to limit the invention to the illustrated embodiments.
(13) We disclose a window blind that includes a security mechanism positioned, at least in part, within the slats of the window blind. The window blind may include a plurality of slats which may be mounted on at least two tilt strings. Each slat may include two longitudinal sides and two transverse sides. In some embodiments, the longitudinal sides of the slats may have a length that is at least five times the width of the transverse sides.
(14) The slats may perform a tilting movement when the at least two tilt strings move. The tilt strings may be moved manually or through an automated mechanism which may be powered by a battery. This tilting movement may move the of slats between an open position and a closed position so that the user may control the amount of light the slats allow to enter the adjacent room. Accordingly, when the slats are in the open position, the two transverse sides of each of the slats may be perpendicular to the at least two tilt strings. When the slats are in the closed position, the two transverse sides of each of the slats may be parallel to the at least two tilt strings.
(15) One or more of the slats may include a hollow core with at least one pressure sensor inside the hollow core. An orifice may lead into the hollow core so that the one or more pressure sensors may detect when an adjacent window or door has been opened or broken by detecting the brief change in air pressure that occurs. In some embodiments, the orifice is positioned along one of the longitudinal sides of the slat. This positions the slat so that the orifice, and consequently, the pressure sensor, is directed toward the space between the window blind and the adjacent window or door.
(16) The one or more pressure sensors may be, but are not limited to, the following types of pressure transducers: a strain gage pressure transducer, variable capacitance pressure transducer, and piezoelectric pressure transducer. The window blind may include more than one type of pressure sensor.
(17) The hollow core may also house one or more of the following: a controller, a battery, and a data communication device. Alternatively, the data communication device may be placed in the headrail of the window blind. The controller may be electronically connected to the one or more pressure sensors and to the data communication device. The controller may include a memory which stores program code. The program code may direct the window blind's responses to a change in pressure as detected by the pressure sensor.
(18) In some embodiments, the controller may transmit a signal, through the data communication device, to a remote device when the one or more pressure sensors detects a change in air pressure and communicates this event to the controller through a first signal. The data communication device may also receive input data from the remote device. For example, the remote device may be a user's mobile device. The data communication device may send a signal to the user's mobile device informing the user that the pressure sensor has detected a change in air pressure and suggesting a possible break-in. The user may also use the mobile device to enter input data which may define series of lights and sounds that occur within the building when the pressure sensor detects a change in air pressure.
(19) The controller may also be electronically connected to multiple light fixtures. The multiple light fixtures may be located in different parts of the building. When the controller receives a first signal from the pressure sensor indicating a change in pressure, the program code stored in the controller may prompt the controller to send a second signal through the data communication device to the multiple light fixtures. The second signal may signal the light fixtures to turn on in a defined sequence, referred to herein as the first sequence. The order of light fixture illumination may mimic a building occupant moving through the building turning on light fixtures having been alerted to a break-in. In some embodiments, the user may choose the order in which the light fixtures turn on (the first sequence) by entering the first sequence into the remote device in the form of input data.
(20) In some embodiments, the controller may be electronically connected to the one or more pressure sensors and to the multiple light fixtures through a wireless device. The wireless device may include a Bluetooth device.
(21) In addition, or in the alternative, some embodiments may include an audio device. The audio device may include an audio recording device. The audio device may be electronically connected to the controller and to multiple audio speakers. The multiple audio speakers may be located in different parts of the building. When the controller receives a first signal from the pressure sensor indicating a change in pressure, the program code stored in the controller may prompt the controller to send a subsequent signal through the data communication device to the audio device. The audio device may send a signal through the data communication device to the audio speakers causing the audio speakers to emit sound in a defined sequence, referred to herein as the first sequence. The order in which the audio speakers are actuated may mimic a building occupant moving through the building and making sounds having been alerted to a break-in. In some embodiments, the user may choose the order in which the audio speakers emit sound (the second sequence) by entering the second sequence into the remote device in the form of input data.
(22) The sounds that each of the audio speakers emits may be different sounds including, but not limited to, a barking dog, a siren, a door opening, the sound of footsteps, and a human voice. In some embodiments, the human voice is a recording of a user's voice which the user has recorded on the audio recording device. In some embodiment, the user may transmit his or her voice to the audio recording device through the remote device.
(23) In some embodiments, the controller may be electronically connected to the one or more pressure sensors and to the audio device through a wireless device. The wireless device may include a Bluetooth device.
(24) Referring now to the drawings,
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(35) While specific embodiments have been illustrated and described above, it is to be understood that the disclosure provided is not limited to the precise configuration, steps, and components disclosed. Various modifications, changes, and variations apparent to those of skill in the art may be made in the arrangement, operation, and details of the methods and systems disclosed, with the aid of the present disclosure.
(36) Without further elaboration, it is believed that one skilled in the art can use the preceding description to utilize the present disclosure to its fullest extent. The examples and embodiments disclosed herein are to be construed as merely illustrative and exemplary and not a limitation of the scope of the present disclosure in any way. It will be apparent to those having skill in the art that changes may be made to the details of the above-described embodiments without departing from the underlying principles of the disclosure herein.