Abstract:
A touch display driving circuit capable of responding to CPU commands, including: a first interface for receiving pixel data and touch configuration data; a second interface for coupling with a touch display; and a control unit, which drives the touch display via the second interface to show an image according to the pixel data, and executes a touch detection procedure on the touch display via the second interface, wherein the touch detection procedure is determined according to the touch configuration data.
Abstract:
An OLED touch device including at least one OLED and a controller, each of the at least one OLED having: a first substrate; a first electrode located on the first substrate; an organic material structure layer located on the first electrode; a second electrode located on the organic material structure layer; and a second substrate located on the second electrode; wherein, the control unit is used to apply a combined voltage source across the first electrode and the second electrode of at least one of the at least one OLED to provide a light emitting function and/or a touch detection function, wherein the combined voltage source has a DC voltage component and an AC voltage component.
Abstract:
A touch display having in-plane-switching liquid crystal structure, comprising a pixel cell and a multiplexer circuit, wherein the multiplexer circuit is used to couple a source driver unit with the pixel cell to provide an in-plane switching display function during a display period, and couple a touch control unit with the pixel cell to provide a touch detection function during a touch detection period.
Abstract:
A touch system using processor to configure touch detection architecture, including: a sensor unit having a plurality of sensors; a connection unit for determining a sensors joined configuration of the plurality of sensors according to at least one connection control signal; a touch scan unit for coupling at least one touch signal to the connection unit according to at least one scan configuration signal; a touch detection unit for outputting the touch signal and deriving touch information from a parameter of the touch signal according to at least one operation mode configuration signal; and a processor unit for outputting the at least one connection control signal, the scan configuration signal, and the operation mode configuration signal according to a content of a control table, and receiving the touch information.
Abstract:
A touch display device having auxiliary capacitor, including: at least one touch operation area, each having two opposing substrates, between which are a first electrode, a first conductive line coupled with the first electrode, a second electrode, a second conductive line coupled with the second electrode, and a display layer neighboring both the first electrode and the second electrode; a display driver unit for outputting at least one display driving voltage; a touch detection unit having at least one touch signal sensing port; at least one auxiliary capacitor, each coupled with one of the at least one touch operation area; and at least one switch element; wherein, each of the at least one display driving voltage is coupled to one of the at least one touch operation area via one of the at least one switch element.
Abstract:
A flat self-luminous touch switch, including: a self-luminous touch unit, including at least one flat self-luminous pixel and a pixel driving interface; and a switch control unit, including a first driving interface and a second driving interface, wherein, the first driving interface is coupled with the pixel driving interface to provide at least one pixel driving signal and transmit a touch detection signal; and the second driving interface provides an analog switch channel and/or at least one digital output signal according to a detection result of the touch detection signal.
Abstract:
A touch display driving circuit capable of responding to CPU commands, including: a first interface receiving touch configuration data from a CPU and outputting touch report data to the CPU; a second interface coupling with a touch display module; a control unit executing a touch detection procedure on the touch display module via the second interface to derive touch detected data, and processing the touch detected data to generate the touch report data, wherein the touch detection procedure is determined according to the touch configuration data determining a connection configuration of at least one multiplexer and a weighting configuration of at least one touch point, and the content of the touch report data include a sensed pressure profile, a finger print, a palm print, an ear image, characteristics of a finger print, characteristics of a palm print, or characteristics of an ear image.
Abstract:
A TFT display touch device, including: a TFT array, including: a plurality of thin film transistors, each having a source, a gate, and a drain, the drain being coupled with a capacitor; a plurality of gate connecting lines; and a plurality of source connecting lines; and a control unit, having a gate control unit and a source control unit, wherein, at least one of the gate control unit and the source control unit provides a hybrid voltage generation function, and at least one of the gate control unit and the source control unit provides a touch detection function, wherein the hybrid voltage generation function is used to provide a hybrid voltage source having a DC voltage component and an AC voltage component.
Abstract:
A touch display having advanced-fringe-field-switching liquid crystal structure, including a pixel cell and a multiplexer circuit, wherein the multiplexer circuit is used to couple the pixel cell with a source driver unit to provide a fringe-field-switching display function during a display period, and couple the pixel cell with a touch detection unit to provide a touch detection function during a touch detection period.
Abstract:
A software-defined sensing system capable of responding to CPU commands, including: at least one input operation sensing module; at least one driving unit for driving the at least one input operation sensing module via at least one first interface; at least one control unit for receiving at least one sensors-configuration command via at least one second interface to control the at least one driving unit; at least one central processing unit, having at least one first function library to provide at least one sensors-configuration setting function for determining the sensors-configuration command; and at least one application program having at least one sensors-configuration function call instruction for generating the sensors-configuration command to provide at least one input sensing function.