Power window sync switch
10752190 ยท 2020-08-25
Inventors
Cpc classification
H03M11/08
ELECTRICITY
B60K2360/171
PERFORMING OPERATIONS; TRANSPORTING
B60R16/027
PERFORMING OPERATIONS; TRANSPORTING
B62D1/046
PERFORMING OPERATIONS; TRANSPORTING
E05F17/00
FIXED CONSTRUCTIONS
E05Y2400/822
FIXED CONSTRUCTIONS
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
B60K2360/139
PERFORMING OPERATIONS; TRANSPORTING
B60K35/10
PERFORMING OPERATIONS; TRANSPORTING
International classification
B60R16/027
PERFORMING OPERATIONS; TRANSPORTING
B60K35/00
PERFORMING OPERATIONS; TRANSPORTING
B60R16/037
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The present invention is a power window sync switch for the windows of a vehicle that permits controlling all windows by a single active home or main control window switch. It permits the driver to move all window panels in the vehicle to the same position at the same time. The power window sync switch sends a signal to a micro-processor within the switch to indicate that the window position selected via the actuated switch is to be applied to all window panels simultaneously. The micro-processor within the switch may then proceed to actuate all window lift motors within the vehicle, causing movement of all window panels to the appropriate positions.
Claims
1. A power window switch system to operate windows of a vehicle, comprising: a plurality of window switches to be operated by a driver or an operator to control an operation of a set of selected windows, of the windows of the vehicle, between open and close positions, and wherein said plurality of window switches are depressible control switches or tap switches; a multifunction synchronization switch that is in communication with said plurality of window switches, has a plurality of step positions and is equipped with a stepwise movement mechanism, wherein each step position, of the plurality of step positions, actuates a set of switch functions for said set of selected windows, said set of switch functions being a controlled operation of two or all of said set of selected windows at a time, between a fully opened and a fully closed positions, said set of selected windows are operated based on an activation pattern of at least one of said plurality of window switches, wherein said activation pattern is a number of actuations of said at least one of said plurality of window switches, said number of actuations comprising: actuating 1 time for window height; actuating 2 times for window height; actuating 3 times for window height; actuating 4 times for fully open window; and actuating 5 times for fully closed window; a window movement mechanism to move said set of selected windows; and a switch control system having a processor to communicate the operations provided by the multifunction synchronization switch to the window movement mechanism.
2. The power window switch system of claim 1, wherein the multifunction synchronization switch is located in direct proximity to said plurality of window switches.
3. The power window switch system of claim 1, wherein said processor of said switch control system is designed to operate said set of selected windows based on said activation pattern by said driver or said operator, whereby the activation pattern adjusts said set of selected windows to a window height, wherein said window height corresponding to a fully closed window position, a fully open window position, a half-closed window position, a three-quarter open window position, or a three-quarter closed window position.
4. The power window switch system of claim 1, wherein said plurality of window switches are arranged on a door panel of said driver or said operator.
5. The power window switch system of claim 1, wherein said plurality of window switches are arranged on a steering wheel.
6. The power window switch system of claim 5, wherein said plurality of window switches are arranged on opposite sides of said steering wheel relative to its center and are in communication with said multifunction synchronization switch.
7. The power window switch system of claim 1, wherein said plurality of window switches are arranged on a door panel of said driver or said operator and on a steering wheel.
8. The power window switch system of claim 1, wherein said multifunction synchronization switch is a depressible control switch or a sliding switch.
9. The power window switch system of claim 1, further having a display screen to be located in a viewing zone of said driver or said operator to display the window height of said set of selected windows.
10. The power window switch system of claim 9, wherein said display screen comprising of a set of light-emitting diode (LED) lighting lines to indicate the window height.
11. The power window switch system of claim 9, wherein each of the plurality of window switches having an light-emitting diode (LED) colored lighting lines to indicate the window height of said set of selected windows.
12. The power window switch system of claim 1, wherein said window movement mechanism being a lift motor in electrical communication with a power source.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) Embodiments herein will hereinafter be described in conjunction with the appended drawings provided to illustrate and not to limit the scope of the claims, wherein like designations denote like elements, and in which:
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DETAILED DESCRIPTION OF PREFERRED EMBODIMENTS
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(29) According to
(30) Each switch has a plurality of touch positions in electrical communication with the movement mechanism. Upon actuation of one of the touch positions, the window is moved to a particular position corresponding to the touch position. The touch positions are preferably arranged on a switch convenient to the user and corresponding to each window.
(31) The power window sync switch comes in a variety of shapes and configurations. Power window sync switches with three touch switches as illustrated in
(32) Referring to
(33) The power window switches come in a variety of shapes.
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(38) In the preferred embodiment, the power window sync switch 12 provides control system to adjust windows to the desired position. The user can lower windows to their fully opened condition or raise the windows to their fully closed condition, half-closed or three-quarters closed according to the principles of the present invention. For example, in
(39) The user can select the windows and the desired position for each window. A number of touch positions or switch depressing arrangements may be utilized wherein each touch position or depressing arrangements sends a signal to the power switch, which actuates a motor, for example, to raise windows to their fully closed condition, fully open condition, half-closed condition or three-quarter open-closed condition. Depending on the function selected, the driver/operator can control the windows adjustment by depressing times of the window switches. For example: By depressing the selected window switch 1 time, the corresponding window will be lowered to Height. By depressing the selected window switch 2 times, the corresponding windows will be lowered to Height. By depressing the selected window switch 3 times, the corresponding windows will be lowered to Height. By depressing the selected window switch 4 times, the corresponding windows will be lowered to fully open position. By depressing the selected window switch 5 times, the corresponding windows will be lowered to fully closed position.
(40) All information related to the operation of the switches can also be shown on a display panel 40 on the vehicle's dashboard 60.
(41) A variety of configurations known to those skilled in the art may be utilized for sending an electrical signal to a switch.
(42) The power window sync switch 12 comprises, a flexible conductive membrane 21, an air gap 22 and a resistor 23. Membrane 21 is electrically connected to power source. When the user depresses the switch or a touch position on input surface 20, flexible membrane 21 is depressed, causing to traverse air gap 22 and contact resistive layer 23, thereby completing a circuit and sending a resultant signal to power element 25. Each switch or touch position of input surface 20 will generate a unique resultant signal. Other known switch technologies may also be provided in the system.
(43) Power element 25 preferably includes a micro-processor within which is stored a set of outgoing signals which correspond to the possible range of resultant signals which input surface 20 may generate. Power element 25 receives the resultant signal, determines which outgoing signal corresponds to the resultant signal, and sends the outgoing signal to window lift motor, which is actuated by the outgoing signal from the switch. Motor then raises or lowers window to the position which corresponds to the touch position contacted by the user.
(44) In the preferred embodiment, motor also includes a micro-controller which senses the position of window and upon receipt of the outgoing signal from power element 25, compares the position of windows with the desired position and moves windows to adjust to the desired position.
(45) In another embodiment of the present invention, which is depicted in
(46) The switches 15 and 16 are arranged in an ergonomic order within a natural distance for steering wheel grip 30 so that the commands can be carried out by the driver/operator by use of the thumb without any need to vision and to enhance safety.
(47) The power window sync switch 12 controls the function of the power window switches 15 and 16 each corresponding to a window condition. Upon actuation of one of the touch positions, the window is moved to a particular position corresponding to the touch position.
(48) As shown in
(49) Referring to
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(53) The window control system can be arranged in sequence as follow: By tapping the steering wheel control buttons 1 time the selected windows will be lowered to Height. (1) By tapping the steering wheel control buttons 2 times the selected windows will be lowered to Height. (2) By tapping the steering wheel control buttons 3 times the selected windows will be lowered to Height. (3) By tapping the steering wheel control buttons 4 times the selected windows will be lowered to fully open position. (4) By tapping the steering wheel control buttons 5 times the selected windows will be lowered to fully closed position. (5)
(54) The given commands can be displayed on the screen 40 in the driver's field of vision in the form of LED colored lighting lines to show the level of the window. This can be done optoelectronically by a number of light emitting diodes and sensors, which after decoding can provide information regarding the windows level. In this case, the driver/operator can see the position of the selected window without moving eyes from the road or turning back. All functions related to the position of the window can further be presented in a shape of colored line on the display. All movements related to the window can be followed on the display so that the driver does not need to watch the physical movement of the window by turning back and looking at the windows.
(55) As shown in
(56) The function of the power window switches 15 and 16 can also be assisted by sound or voice command. The present invention can use the concept of voice command to operate the system. The voice command can be used in conjunction with the tap feature of switches 15 and 16 on the steering wheel 30 for example: . . . lower window to height for which the window lowers to height. If a voice command is given and the driver/operator manually taps the steering wheel window control, the operation will proceed in sequence: . . . (3) or , tap (4) or fully open . . . tap . . . next in sequence would be (4)
(57) The voice command will be achieved through voice recognition algorithm and algorithms for the voice command of the drivers/operators. The driver/operator will command through microphones 17, which can be installed in various areas on the steering wheel. Voice recognition of the system uses a technique well known in the art to recognize drivers/operators voice, which follows a predefined structure. A voice recognition software is used to remember the users voice. The voice recognition system is totally based on artificial intelligence and robotics. There is no set order of operation for voice command: fully open-(2)-(4)-(1)-fully closed. The present invention provides a feature to set up a customized setting based on each drivers/operators preferences.
(58) The foregoing is considered as illustrative only of the principles of the invention. Further, since numerous modifications and changes will readily occur to those skilled in the art, it is not desired to limit the invention to the exact construction and operation shown and described, and accordingly, all suitable modifications and equivalents may be resorted to, falling within the scope of the invention.
(59) With respect to the above description, it is to be realized that the optimum relationships for the parts of the invention in regard to size, shape, form, materials, function and manner of operation, assembly and use are deemed readily apparent and obvious to those skilled in the art, and all equivalent relationships to those illustrated in the drawings and described in the specification are intended to be encompassed by the present invention.