Abstract:
An intelligent touch sensing device, including: a first electrode group having a first plurality of first electrodes; a second electrode group having a second plurality of second electrodes, each of the second electrodes being coupled with at least one active switch and the second plurality being larger than the first plurality; and a touch detection unit coupled with the first electrode group and with the second electrode group for performing a first touch detection procedure or performing the first detection procedure and then a second touch detection procedure as optionally required by an application program, the first touch detection procedure being acting on the first electrode group, and the second touch detection procedure being acting on at least one region of the second electrode group, wherein the at least one region is determined according to a detection result of the first touch detection procedure.
Abstract:
An electronic paper touch device including: a first substrate; a first electrode layer located on the first substrate; an electronic paper display layer located on the first electrode layer; a transparent electrode layer located on the electronic paper display layer and having plural transparent electrodes; a second substrate located on the transparent electrode layer; and a control unit having a touch mode and an electronic paper mode, wherein, when the control unit is in the touch mode, the control unit will couple a touch detection unit with the first electrode layer and with the transparent electrode layer to perform a capacitive touch detection procedure.
Abstract:
An intelligent sensing touch display device capable of being responsive to an application program to selectively perform a touch detection procedure on a first electrode group and/or on an active array unit, where a controller has a memory for storing background image data, and data of at least one object image, and is used for performing a local operation procedure including steps of: receiving location information of at least one touched GUI object provided by a touch and display driving unit and transmitting the location information to a main processing unit; receiving updated image data for at least one GUI object image from the main processing unit; combining the updated image data with the background image data to form locally updated display image data and transmitting the locally updated display image data to the touch and display driving unit.
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 TFT liquid crystal display apparatus having a touch function, including: a first electrode layer, having multiple first electrodes and multiple thin film transistors, wherein each of the multiple thin film transistors has a source coupled to a source control unit, a gate coupled to a gate control unit, and a drain coupled to one of the multiple first electrodes and to one of multiple storage capacitors; a liquid crystal display layer, located above the first electrode layer; a transparent electrode layer, being located above the liquid crystal display layer and having multiple transparent strip electrodes; and multiple switches, of which each has a control end coupled with a mode control signal, a first contact coupled to one of the multiple transparent strip electrodes, a second contact coupled to a common voltage generation unit, and a third contact coupled to a touch detection unit.
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 software defined input operation sensing system, including: at least one input operation sensing device, each having at least two sensing functions; at least one driving unit, used for driving the at least one input operation sensing device according to at least one operation configuration command, each of the at least one operation configuration command including a sensing function selecting instruction for selecting a sensing function from the at least two sensing functions, and/or a sensing spec setting instruction for determining a sensing signal detection mode and a sensed data output format; and at least one processing unit for configuring the at least one driving unit according to an application program to determine at least one content of the at least one operation configuration command, and the at least one processing unit including at least one function library for use in determining the at least one operation configuration command.
Abstract:
An intelligent sensing touch display device, including a first electrode group, a display material layer or a display and touch sensing material layer, an active array unit and a touch and display driving unit to provide at least one AC path touch sensing unit, and a plurality of the AC path touch sensing units being able to be connected to form a combined AC path touch sensing unit, so that the touch and display driving unit can be responsive to an application program to perform a first touch detection procedure on the first electrode group, or perform a second touch detection procedure on the active array unit, or perform the first touch detection procedure on the first electrode group, and then perform the second touch detection procedure on at least one area of the active array unit.
Abstract:
A touch system using a processor to configure a touch detection architecture and including a sensor unit, a connection unit, a touch scan unit, a touch detection unit, and a processor unit. The sensor unit has a plurality of sensors. The connection unit determines a sensors-joined configuration of the plurality of sensors according to at least one connection control signal. The touch scan unit coupling at least one touch signal to the connection unit according to at least one scan configuration signal. The touch detection unit outputting the touch signal and deriving touch information from a parameter of the touch signal according to at least one operation mode configuration signal. The processor unit 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 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.