Remote Window Opening Device
20170101816 ยท 2017-04-13
Inventors
Cpc classification
International classification
E05F15/643
FIXED CONSTRUCTIONS
Abstract
A device for opening and closing a sliding window via a motorized drive mechanism, which can be controlled remotely. A drive assembly with a motor-controlled drive wheel is mounted on a window sill, and the drive wheel selectively engages with a track attached to the window glass. Signals are sent from a remote device to actuate the motor, turning the drive selectively engaged with the track to slide the window open and closed.
Claims
1. A window-opening device comprising: a substantially planar elongated member having a first substantially planar surface having adhesive properties and a second substantially planar surface and a pair of longitudinal edges; a drive wheel having a longitudinal circumferential surface, wherein said longitudinal circumferential surface and second substantially planar surface of an elongated member selectively engage; a drive assembly, wherein a motor is connected to a drive wheel positioned externally to a motor control housing, a microcontroller unit electrically connected to a receiver, a remote device that transmits signals to said receiver, a motor connected to said microcontroller unit, wherein said motor is connected to a bracket via a motor attachment plate and a spring-mounted device, and said bracket is connected to a drive assembly mounting bracket, a motor control housing, and an external power source connection.
2. The device of claim 1, further comprising, at least one magnetic sensor electrically connected to said microcontroller unit, and at least one magnet affixed to an elongated member.
3. The device of claim 2, further comprising, at least one removable height alignment guide extending substantially perpendicularly from a longitudinal edge of said elongated member.
4. The device of claim 3, wherein said longitudinal circumferential surface of said drive wheel further comprises a plurality of raised regions.
5. The device of claim 4, wherein said second substantially planar surface further comprises a plurality of raised regions compatible with the plurality of raised regions on said drive wheel.
6. The device of claim 5, wherein a microcontroller unit is programmable for preset values.
7. The device of claim 1, further comprising a drive train connecting said motor and said drive wheel.
8. A window-opening device, comprising: a substantially planar elongated member having a first substantially planar surface having adhesive properties and a second substantially planar surface having a plurality of ridges running substantially perpendicular to the longitudinal axis of said elongated member and a pair of longitudinal edges; a drive wheel having a circumferential edge, wherein said circumferential edge has a series of ridges substantially parallel to the central axis of said drive wheel; a drive assembly, wherein a motor is connected to said drive wheel such that said drive wheel is positioned outside of a motor control housing and said motor is inside said motor control housing, a microcontroller unit electrically connected to said motor; a receiver electrically connected to said microcontroller unit; a remote device connected to said receiver; wherein said motor is connected to a motor attachment plate, which is connected to a bracket via a spring-mounted device, and said bracket is connected to a drive assembly mounting bracket; and an external power source connection.
9. The device of claim 8, further comprising, a pair of magnetic sensor electrically connected to said microcontroller unit, and a pair of magnets affixed to each terminal end of an elongated member.
10. The device of claim 9, further comprising, a pair of removable height alignment guides extending substantially perpendicularly from a longitudinal edge of said elongated member.
11. The device of claim 10, wherein a microcontroller unit is programmable for preset values.
12. The device of claim 11, wherein said remote device is connected to said receiver wirelessly.
13. The device of claim 12, further comprising a drive train connecting said motor and said drive wheel.
14. The device of claim 13, wherein said drive train comprises a set of meshed gears.
15. The device of claim 13, wherein said drive train comprises a chain drive mechanism.
16. The device of claim 13, wherein said drive train comprises a pulley drive mechanism.
17. A window-opening device, comprising: a substantially planar elongated member having a first substantially planar surface having adhesive properties and a second substantially planar surface and a pair of substantially parallel longitudinal edges; a drive wheel having a longitudinal circumferential surface, wherein said longitudinal circumferential surface has a plurality of substantially regularly spaced ridges substantially parallel to the longitudinal axis of said drive wheel; wherein said second substantially planar surface has a plurality of substantially regularly spaced ridges substantially regularly spaced and substantially perpendicular to said edges of said substantially planar elongated member; wherein said second substantially planar surface of an elongated member selectively engages with said drive wheel; a drive assembly, wherein a motor is connected to a drive wheel located externally to a motor control housing; a microcontroller unit electrically connected to said motor; a receiver electrically connected to said microcontroller; a remote device that transmits signals to said receiver wirelessly; wherein said motor is connected to a bracket via a motor attachment plate and a spring-mounted device, and said bracket is connected to a drive assembly mounting bracket, a motor control housing, and an external power source connection.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0007] Further details of the present device are explained with the help of the attached drawings in which:
[0008]
[0009]
[0010]
[0011]
[0012]
DETAILED DESCRIPTION
[0013]
[0014] As shown in
[0015] As shown in
[0016] In the embodiment shown in
[0017] In the embodiment shown in
[0018] A drive assembly mounting bracket 210 can have a top surface and a bottom surface. In some embodiments, a drive assembly bracket 210 can have an L-shaped cross-section, but in other embodiments can have any other known and/or convenient geometry. A bracket 204 can connect to the top surface of a drive assembly mounting bracket 210 with threaded connectors, rivets, adhesive, or any other known and/or convenient connecting devices.
[0019] As shown in
[0020]
[0021]
[0022] In some embodiments, at least one magnetic component 308 can be affixed to an elongated member 108. At least one magnetic sensor 214 can be configured to detect a magnetic component 308, which can provide an input to a microcontroller unit 212 to correspond to desired duration and direction of motor 202 rotation output; for example, stopping a motor 202 when a window has reached the limits of its sliding range. At least one magnetic sensor 214 can be positioned externally to a motor control housing 104 and substantially horizontally aligned with a drive wheel 106 to detect when a magnetic component 308 is in position indicating a desired sliding range limit.
[0023] In use, an elongated member 108 can be affixed to a window 306 using at least one removable height alignment guide 304. As shown in the embodiment of
[0024] A user can affix a drive assembly 102 to a window sill 302 via a drive assembly mounting bracket 210. In some embodiments, a drive assembly 102 can be mounted such that the bottom surface of a motor control housing 104 can be substantially flush with the top surface of a window sill 302 and substantially flush against the window frame. In this position, a drive wheel 106 can be substantially horizontally aligned with an elongated member 108 to selectively engage. In some embodiments, a spring mount mechanism 206 can allow for fine adjustments. A mounting bracket 204 and a motor mounting plate 208 can also allow for adjustments. When a drive wheel 106 selectively engages with an elongated member 108, the present device can be ready for actuation.
[0025] To actuate the present device, a remote device 216 can transmit input signals to a receiver 218, which can be connected to a microcontroller unit 212. A microcontroller unit 212 can process input signals to direct a motor 202 to rotate forward or reverse, which can rotate a drive wheel 106 accordingly. In some embodiments the drive shaft of a motor 202 can connect directly to a drive wheel 106, but in other embodiments, a drive train system, such as, but not limited to gears, chain drives, and pulley drives, can intervene to produce a different rotation speed and/or direction in a drive wheel 106. A drive wheel 106 can selectively engage with an elongated member 108. As a drive wheel 106 rotates, engagement with an elongated member 108 can result in a linear movement of a window in a direction to open or close it.
[0026] In some embodiments, magnets 308 can be placed at the terminal points of an elongated member 108. When magnetic sensors 214 detect magnets 308, they can signal a microcontroller unit 212 to stop a motor 202. Also, in some embodiments, a bar-code or any other known and/or convenient sensing device can be used to pre-set desired window positions.
[0027] Although the invention has been described in conjunction with specific embodiments thereof, it is evident that many alternatives, modifications and variations will be apparent to those skilled in the art. Accordingly, the invention as described and hereinafter claimed is intended to embrace all such alternatives, modifications and variations that fall within the spirit and broad scope of the claims.