Abstract:
Embodiments provide an OLED array substrate, a method for fabricating the same, and a display device. The present invention relates to the field of display technology, can decrease resistivity of an electrode, and avoid increase in patterning process. The OLED array substrate comprises an effective pixel display area and a peripheral wiring area. The effective pixel display area comprises a TFT which is arranged on a base plate. The array substrate further comprises a plurality of conductors which are arranged between the base plate and the first electrode; wherein, in the peripheral wiring area, the plurality of conductors are connected with the second electrode.
Abstract:
The present invention provides a short-circuit unit comprising: a plurality of signal lines divided into a plurality of groups, each group comprising multiple signal lines, and the multiple signal lines in a same group are not adjacent to each other; a plurality of short-circuit lines, each group of the signal lines correspond to one short-circuit line, and the short-circuit line electrically connects all of the signal lines in the group corresponding to the short-circuit line, the plurality of short-circuit lines are disposed in different layers and the short-circuit lines in different layers are insulated from each other. The present invention also provides an array substrate. In the short-circuit unit of the present invention, the short-circuit lines are disposed in different layers. Compared to the existing solutions in which the short-circuit lines are provided in a same layer, the width occupied by the short-circuit unit of the present invention is smaller.
Abstract:
A curved surface display device and a curved surface display method, which belong to the field of display technology. The curved display device comprises a display panel, a motor, a first arc lever and a second arc lever. A first end of the first arc lever and the second arc lever are connected with the motor through a connector, and a second end of the first arc lever and second arc lever are connected with the casing of the device. The connector is used for pulling the first end of the first arc lever and the first end of the second arc lever with rotation of the motor, such that the first arc lever and the second arc lever rotate around their pivots respectively, thus realizing automatic bending of the casing, which meets the user's requirement of adjusting the curvature of the curved surface display device.
Abstract:
A touch control substrate and a display device. The touch control substrate includes a plurality of touch control electrodes for touch controlling, which are made of electric conductive material. The touch control electrodes are disposed in a same layer and intervals are provided between adjacent touch control electrodes. The touch control panel further comprises a vanishing layer, only disposed at the intervals between the adjacent touch control electrodes and edges of each of the touch control electrodes. The vanishing layer is made of transparent insulation material. The touch control substrate and the display device can provide good vanishing effects and have simple manufacturing processes.
Abstract:
Embodiments of the invention provide a conductive structure, a thin film transistor, an array substrate, and a display device. The conductive structure comprises a copper layer formed of copper or copper alloy; a blocking layer for preventing copper ions of the copper layer from diffusing outward; and a diffusion prevention layer for preventing exterior ions from diffusing to the copper layer and disposed between the copper layer and the blocking layer. The multilayer conductive structure according to an embodiment of the invention can prevent exterior ions from diffusing into a copper layer and prevent copper ions from diffusing outward to reduce ions diffusion that adversely impacts the electricity performance and chemical corrosion resistance of the copper metal layer, and meanwhile can enhance adhesiveness of the conductive structure, which may be helpful for etching/patterning of the multilayer conductive structure.
Abstract:
The invention discloses an array substrate, a display panel and methods of manufacturing the same, and a display device. The array substrate comprises: a pixel region and a wiring region located outside the wiring region; a gate line and a data line each arranged within both the pixel and wiring regions; a passivation layer arranged to cover the gate and data lines and provided therein with trenches respectively exposing and being wider than the gate and data lines within the wiring region; first and second signal line partially arranged within the trenches respectively and contacting exposed portions of the gate and data lines to transmit signals to the gate and gate lines respectively, the first and second signal line each having widths equal to those of the trenches respectively. With the invention, good electrical connections between the signal line and the gate and data lines are enabled.
Abstract:
Disclosed are a touch display screen, a method for preparing touch display screen and an attaching adhesive jig. The touch display screen comprises a touch panel, a display panel and an attaching component. The attaching component includes a first attaching unit provided between the touch panel and the display panel. The first attaching unit consists of a plurality of solidified adhesive column. Upper and lower end surfaces of each of the solidified adhesive columns are bonded to an attaching surface of the touch panel and an attaching surface of the display panel, respectively. According to the disclosure, a problem that the touch display screen is whitening when displaying a black-grey image in the bending state can be improved without reducing the thickness of the display screen.
Abstract:
A method for fabricating a one glass solution touch panel is provided. The method includes forming a protective layer on a first surface of a substrate, and forming a black matrix, a plurality of first electrodes, a plurality of second electrodes, a first over coat layer, and a plurality of conductive bridges on a second surface of the substrate, wherein the second surface includes a visual area in which the first electrodes and the second electrodes are arranged in an alternating pattern, and a non-visual area where the black matrix is provided, wherein the second electrode includes a plurality of conductive lumps, wherein each of the conductive lumps is located between adjacent first electrodes, wherein the first over coat layer separates the conductive lumps from the first electrodes, and wherein each conductive bridge connects the conductive lumps belonging to the same second electrode.
Abstract:
An array substrate, a fault line repair method thereof, and a display device are provided. The array substrate includes: a base substrate; a gate line and a signal line which are arranged on the base substrate, adjacent gate lines and adjacent signal lines crossing with each other to define a pixel region; and a pixel electrode located in the pixel region. The array substrate further includes a common electrode corresponding to the pixel electrode. The common electrode includes: a frame; a first strip-shaped connection part arranged in the frame and having both ends thereof connected with the frame; and a second strip-shaped connection part connected with the first strip-shaped connection part in a crossed manner and having both ends thereof disconnected from the frame. The signal line is parallel with the second strip-shaped connection part and located directly above or directly under the second strip-shaped connection part.
Abstract:
A touch screen includes a first electrode and a second electrode that are disposed oppositely, and a sensing layer disposed between the first electrode and the second electrode. The sensing layer is made of transparent material having piezoelectric effect. The touch screen can sense pressure by any object, and therefore cannot only sense a position of a contact, but also sense a magnitude and a change characteristic of acting force. Also, the touch screen according to the present disclosure directly converts the pressure applied by the object onto the touch screen into an electric signal, which reduces the power consumption greatly, and therefore reduces whole power consumption of the screen effectively.