Abstract:
An organic light emitting touch display panel, a manufacturing method thereof, and a display device are provided. The organic light emitting touch display panel includes: a base substrate; touch detection units disposed on the base substrate, each of the touch detection units includes a photosensitive element; signal input lines and signal output lines disposed on the base substrate, the signal input lines and the signal output lines correspond to the touch detection units one to one respectively, each of the signal input lines connects to an input end of the photosensitive element in its corresponding touch detection unit, each of the signal input lines configures to load a touch detection signal; each of the signal output lines connects to an output end of the photosensitive element in its corresponding touch detection unit, each of the signal output lines configures to output a current of the photosensitive element.
Abstract:
The present disclosure discloses a touch control structure, a display panel and a touch control method. The touch control structure comprises a first conductive layer, a second conductive layer, a plurality of insulative supporting points, and a detection module. The second conductive layer comprises a plurality of electrodes which are independent from each other. The plurality of insulative supporting points is arranged on the first conductive layer and under the second conductive layer. The detection module is connected to the plurality of electrodes, and configured to detect an electrode in the second conductive layer contacted with the first conductive layer when the first conductive layer is pressed, and to determine a level of pressure pressed on the first conductive layer.
Abstract:
The present disclosure provides a force touch display device and a method for manufacturing and driving the force touch display drive. The force touch display device includes an array substrate, a light guide plate and a metal reflective plate. The array substrate includes a first carrier substrate and a metal wire grid and a metal connection terminal disposed on the first carrier substrate, in which the metal connection terminal is electrically connected to the metal reflective plate. The metal wire grid includes a plurality of metal wires arranged in parallel, and the metal wire grid is configured so that light passing through the metal wire grid becomes linearly polarized light. The light guide plate disposed between the array substrate and the metal reflective plate.
Abstract:
Disclosed is a display device, a pressure detecting method and a pressure detecting device. Since a FPC electrode disposed on a side of a FPC board facing a display panel, an upper electrode for grounding disposed on a side of the display panel facing the flexible printed board and an elastically deformable dielectric material disposed between the FPC electrode and the upper electrode and contacting therewith respectively are additionally disposed between the FPC board and the upper electrode, or a FPC electrode disposed on a side of a FPC board facing a support frame and an elastically deformable dielectric material disposed between the FPC electrode and the support frame and contacting therewith respectively are additionally disposed between the FPC board and the support frame, it is possible to detect a magnitude of a pressure exerted on the display panel, thereby overcoming the defect that the existing display device can not realize pressure detection, thus improving user experience.
Abstract:
The present disclosure provides a touch substrate, a touch panel and a display device. The touch substrate includes a periphery area and a touch area. The touch area includes a first edge and a second edge opposite to each other. The touch substrate includes: bonding terminals arranged in the periphery area, touch electrodes arranged in the touch area and signal transmission lines connecting the bonding terminals and the touch electrodes. The signal transmission lines are arranged between the first edge and the second edge.
Abstract:
The present disclosure discloses an array substrate, display panel and display device. The array substrate comprises: a base substrate, and peripheral routes and a plurality of pixel structures located on the base substrate. The orthographic projection of at least one pixel structure on the base substrate has an overlapping region with the periphery region in which the peripheral routes reside. The film layer where the peripheral routes reside is located between the film layer where the pixel structures reside and the base substrate or located at a side of the film layer. The array substrate allows the display region to be enlarged to cover a part or all of the periphery region where the peripheral routes reside. This can narrow down the bazel width of the display panel and even make it bezel-less.
Abstract:
The present disclosure discloses a touch control structure, a display panel and a touch control method. The touch control structure comprises a first conductive layer, a second conductive layer, a plurality of insulative supporting points, and a detection module. The second conductive layer comprises a plurality of electrodes which are independent from each other. The plurality of insulative supporting points is arranged on the first conductive layer and under the second conductive layer. The detection module is connected to the plurality of electrodes, and configured to detect an electrode in the second conductive layer contacted with the first conductive layer when the first conductive layer is pressed, and to determine a level of pressure pressed on the first conductive layer.
Abstract:
The present application provides an optical touch device comprising a light transmission layer having a first total internal reflection (TIR) surface and the second TIR surface, a light source beside the second TIR surface, a detector for detecting the light beam passed through the light transmission layer and transmitted into the detector, and a first reflector disposed between the light source and the light transmission layer, capable of reflecting the light beam emitted from the light source into the light transmission layer.
Abstract:
The present disclosure provides a touch panel, a method for producing the same and a display apparatus. The touch panel includes: a first substrate, a second substrate opposed to the first substrate, a display medium layer between the first substrate and the second substrate, a black matrix arranged on one of the first substrate and the second substrate, a plurality of driving electrode units and a plurality of inductive electrode units arranged alternatively on the other one of the first substrate and the second substrate, and each of the plurality of driving electrode units or the plurality of inductive electrode units includes a plurality of transparent electrodes and projections of boundaries of the transparent electrodes onto the substrate having the black matrix are covered by the black matrix or coincide with the range of the black matrix. They may efficiently reduce adverse effects of the change in the coupling capacitor among the rhombic ITO touch electrodes on the display quality of the LCD screen.
Abstract:
The present disclosure provides a touch display panel and a display device including the touch display panel. The touch display panel includes a display panel, a touch layer and a touch driving circuit board. The display panel includes an array substrate and a color filter substrate arranged opposite to the array substrate to form a cell. The touch layer is arranged at an outer surface of the color filter substrate away from the array substrate, an electrode at the touch layer is connected to a wire through a conductor penetrating through the color filter substrate, and the wire is connected to the touch driving circuit board.