Abstract:
A touch input device includes a mounting unit in which a mounting groove is formed at an inner side of the mounting unit, and a touch unit accommodated in the mounting groove and installed to be detachable from the mounting unit, wherein the touch unit comprises a first touch portion and a second touch portion, which are provided on different surfaces of the touch unit and allow a user to input a touch gesture, and the touch unit is selectively coupled to the mounting unit to allow the first touch portion to face an upper side or to allow the second touch portion to face the upper side.
Abstract:
A touch input apparatus mounted on a mounting surface includes a protrusion protruding from the mounting surface. A recessed portion is formed in the protrusion. A touch portion is provided on a bottom surface of the recessed portion and receives a user's touch signal. A vehicle having the touch input apparatus includes a display and a controller configured to operate the display according to the users input inputted to the touch input apparatus.
Abstract:
A method for recognizing characters of handwritten input text includes: receiving, by a handwriting input area, a handwritten input text from a user; calculating, by a controller, a center axis of the handwritten input text; calculating, by the controller, a rotation angle of the center axis based on a reference axis; correcting, by the controller, a slope of the handwritten input text by the rotation angle so that the slope of the handwritten input text is parallel to the reference axis; and performing, by the controller, character recognition of the handwritten input text acquired by correction of the slope.
Abstract:
A vehicle includes a display for providing a character input interface, a touch input apparatus for sensing a plurality of sub gestures sequentially through a touch portion, and a controller for controlling the character input interface to display, when a difference between a direction of a first sub gesture of the plurality of sensed sub gestures and a direction of a second sub gesture sensed within a first delay time period starting at a time at which the first sub gesture ends is greater than or equal to a reference direction difference, a character corresponding to a gesture including the first sub gesture and the second sub gesture.
Abstract:
An input device includes an input module, a detector for detecting a position of a wrist of a user, and a controller for controlling a movement of the input module based on information about the position of the wrist of the user detected by the detector.
Abstract:
A vehicle includes a touch input device provided with a touch area to which a touch gesture is input, and a processor for dividing the touch area into a first area and a second area, performing a first function when the touch gesture is input to the first area, and performing a second function, which is different from the first function, when the touch gesture is input to the second area.
Abstract:
An input apparatus for a vehicle includes a cover member for covering an upper part of an input unit installed in a center plate provided between a driver seat and a passenger seat, wherein the cover member moves forward from a center console located in a back part of the center plate to cover the upper part of the input unit.
Abstract:
A touch input device includes a touch unit to which a user can input a touch gesture, wherein the touch unit includes a gesture input unit positioned at a center of the touch unit and a swiping input unit inclined downward along an edge of the gesture input unit, and the gesture input unit and the swiping input unit receive separate touch signals.
Abstract:
A control panel for providing shortcut functions includes: n shortcut buttons capable of being pressed; a memory storing 2n-−1 patterns according to combinations of the n shortcut buttons; and a controller configured to map a shortcut function to each of one or more of the 2n−1 patterns, determine one or more shortcut buttons pressed by a driver's finger based on press signals received from the n shortcut buttons, determine the pattern that corresponds to the one or more pressed buttons, generate a control command for executing the shortcut function mapped to the determined pattern, and output the control command to a corresponding device from among a plurality of control target devices.
Abstract:
A touch input device including a connection member electrically connecting a sensor electrode and a printed circuit board by contact without soldering may include a base including a metal complex, an electrode groove formed by irradiating a laser on the base, a sensor electrode formed on the electrode groove through a plating or deposition process and including a conductive material, a sensor IC to sense a change in capacitance of the sensor electrode, a printed circuit board on which the sensor IC is mounted and is disposed to be coupled with the base, and the connection member provided on the printed circuit board and configured to electrically connect the sensor electrode and the printed circuit board, wherein the connection member may elastically come into contact with the sensor electrode to connect the sensor electrode and the printed circuit board.