Abstract:
A display apparatus which is also able to receive and identify fingerprints comprises a first substrate, a second substrate, a liquid crystal layer, a plurality of dummy pixel units located in a non-display region, a fingerprint identification module, and a plurality of data extending lines. Each of the dummy units comprises first and second auxiliary electrodes. The fingerprint identification module comprises signal transmitting layer and signal receiving components on the signal transmitting layer. The signal receiving component receives reflected ultrasonic wave and converts the received waves into fingerprint signal. The data extending line is electrically connected with the dummy pixel unit. The signal receiving component transmits the fingerprint signals to the at least one first auxiliary electrode and the data extending line thus receives the fingerprint signal.
Abstract:
An electronic device includes a speaker, and a cover covering the speaker. The cover includes a transparent main portion, and a non-transparent border portion. The non-transparent border portion includes a substrate integrated with the transparent main portion. The substrate of the border portion defines a plurality of through holes corresponding to the speaker to transmit sound output from the speaker.
Abstract:
A touch display panel structure includes a display panel and a first metal mesh. The display panel includes a plurality of pixel units, and the pixel units respectively have a first length along a horizontal direction. The first metal mesh is disposed on the display panel. The first metal mesh includes a plurality of first metal mesh units, and the first metal mesh units respectively have a second length along the horizontal direction. The second length is about 4.15 to about 5.2 times the first length.
Abstract:
A touch control device with enhanced ESD protection effect comprises a sensing circuit module; a plurality of signal lines electrically connected with the sensing circuit module; an ESD protection ring disposed on periphery of the sensing circuit module and the signal lines; and an ESD shield ring interposed between the signal lines and the ESD protection ring. A touch on the sensing circuit module induces a sensation signal. While the signal lines transmit the sensation signal, the electrostatic charges generated thereby is drained off by the ESD protection ring. The ESD shield ring can drain off the residual electrostatic charges that the ESD protection ring does not drain off. Therefore, the present invention can exempt the touch control device from ESD interference, guarantee the accuracy of signal transmission, and protect the electronic elements of the touch control device.
Abstract:
A protective membrane structure is configured to protect a pan& module. The protective membrane structure includes a main body, an adhesive member, and a pulling member. The main body is attached to the panel module. The adhesive member is disposed on the main body. The pulling member is located over the main body and has an adhesive portion and a warping portion connected to each other. The adhesive member is adhered between the main body and the adhesive portion. The warping portion warps away from the main body.
Abstract:
A portable electronic apparatus includes a first touch-sensing substrate, a camera module, transmission routes, a flexible printed circuit, and a main board. The first touch-sensing substrate has an active area and a peripheral area surrounding the active area. The camera module is connected to a second connecting area of the peripheral area. At least one of the transmission routes connects between a first connecting area and the second connecting area of the peripheral area, and rest of the transmission routes respectively connect between the active area and the first connecting area. The flexible printed circuit connects to the first connecting area. The flexible printed circuit includes a touch-sensor driver. The touch-sensor driver is electrically connected to at least part of the transmission routes. The main board includes a connector. The connector is connected with an end of the flexible printed circuit.
Abstract:
A touch display apparatus includes a touch electrode structure and a display assembly. The touch electrode structure senses touch operations on the touch display apparatus. The display assembly displays images of the touch display apparatus. The display assembly includes a polarizer, a first substrate, a color filter, and a second substrate, arranged in that order. The touch electrode structure is sandwiched between the polarizer and the first substrate. The touch electrode structure comprises a first sensing electrode layer. The first sensing electrode is formed on a surface of the first substrate opposite to the color filter.
Abstract:
A liquid crystal display apparatus includes a liquid crystal display module and a top polarizer. The liquid crystal display module has a display module upper surface. The top polarizer is disposed on the display module upper surface, and has a reinforced surface. The boundary of the top polarizer is extended from boundary of the display module upper surface. The top polarizer includes a main body and a reinforced film. The reinforced film is formed on the surface of the main body, which is disposed away from the liquid crystal display module, in which the reinforced surface is the surface of the reinforced film, which is disposed away from the liquid crystal display module.
Abstract:
A substrate structure includes a substrate, a buffer layer, and a protecting layer. The substrate includes a side surface. The buffer layer is disposed between the side surface of the substrate and the protecting layer, and the hardness of the protecting layer is greater than the hardness of the buffer layer.
Abstract:
A touch module of a touch device defines a touch area and a trace area surrounding the touch area. The touch module includes a substrate, a number of first sensor electrodes, a number of second sensor electrodes, and a number of conductive traces. The number of first sensor electrodes and the number of second sensor electrodes are arranged in a first region on the substrate corresponding to the touch area. The number of conductive traces are arranged in a second region on the substrate corresponding to the trace area. At least one of the conductive traces includes at least two conductive layers.