Abstract:
A liquid crystal screen and a display device that prevents light leakage caused by non-uniformity of the electric field of the sub-pixel electrode. The liquid crystal screen comprises a first substrate comprised of first leads and second leads that cross each other, and a liquid crystal screen comprised of a plurality of display areas. Each display area corresponds to an area between two adjacent first leads and two adjacent second leads, and each display area is comprised of two sub-pixels. The liquid crystal screen further comprises a black matrix, which has a plurality of openings, each at a position corresponding to each display area, and comprised of protrusions extending into each opening. The liquid crystal screen of the present invention can effectively prevent light leakage caused by non-uniformity of the electric field of the sub-pixel electrode, and can increase contrast of the liquid crystal screen, thereby improving display effect.
Abstract:
The embodiments of the present invention provide an array substrate and a display device, which can reduce the phenomenon of point discharge for the pixel electrode. The array substrate comprises a plurality of pixel units; a pixel electrode is provided in each pixel unit; wherein at least one corner of at least one pixel electrode is provided with a notch.
Abstract:
An array substrate comprises a base substrate, a gate line, a data line and a thin film transistor arranged in an array on the base substrate, a pixel electrode and a passivation layer, the thin film transistor include a gate electrode, an active layer, a source electrode and a drain electrode, and the pixel electrode and the active layer, the drain are disposed in a same layer and formed integrally. A display device comprising the array substrate and a manufacturing method of the array substrate are further disclosed.
Abstract:
The embodiment of the application provides a color film substrate, which comprises a underlying substrate, a shading layer on the underlying substrate and photo spacers on the shading layer, wherein, the photo spacer comprises a top surface, a bottom surface and side surfaces for connecting the top surface and the bottom surface, the top surface comprises at least an inclined face portion unparallel to the bottom surface. The color film substrate provided by the embodiment of the application can solve the problem that the photo spacers on the color film substrate easily shift when the display panel is subjected to extrusion of external force, which thus result in the issues of display defects occurring in the display panel, can improve the product yield of the display panel aligned, and reduce the probability of reworking and serving. The application further refers to a display panel, a display device and a manufacture method for color film substrate.
Abstract:
Embodiments of this disclosure provide a transparent display panel and a manufacturing method thereof, and a display device. The transparent display panel comprises a plurality of light-emitting regions and a plurality of transparent regions. The transparent display panel further comprises at least one light-guiding component disposed on a light-emitting side of the transparent display panel, wherein the at least one light-guiding component is configured to transmit a part of light emitted from the light-emitting regions to the transparent regions. In the transparent display panel, a light-guiding component is used to transmit the light emitted by the light-emitting subpixels in the light-emitting regions to the transparent regions, and a plurality of light-redirecting members formed on a surface of the light-guiding component are used to change the direction of light transmitted to the transparent regions and to emit the light from the light-emitting side of the transparent regions. As a result, display uniformity of the whole transparent display panel is improved, and a better display performance can be achieved.
Abstract:
An array substrate and a display device is disclosed, for eliminating the interference of transient electromagnetic signals caused by the time-varying voltages on the gate lines and the data lines with the voltages on the pixel electrodes. The array substrate comprises gate lines and data lines disposed on a substrate, and pixel units surrounded and separated by the gate lines and the data lines; and the array substrate further comprises shielding electrodes disposed above at least one of the gate lines and the data lines to cover at least part of the at least one and electrically insulated from the gate lines and the data lines.
Abstract:
A flexible organic light emitting diode display device, comprising: a first flexible substrate and a second flexible substrate opposite to the first flexible substrate wherein on the first flexible substrate, there are formed in sequence a thin film transistor, a first passivation layer, a first electrode, an organic electroluminescence layer, a second electrode, a stress absorption layer is disposed between the second electrode and the second flexible substrate, and material for the stress absorption layer is a resin material. The stress absorption layer of the flexible organic light emitting diode display device can absorb a stress occurring as it is bent, so as to prevent electrodes from being broken due to the action of the stress and affecting the display quality. There is further disclosed a manufacturing method of the flexible organic light emitting diode display device.
Abstract:
An OLED array substrate and a manufacturing method thereof, and a display device provided with the OLED array substrate are disclosed. The OLED array substrate includes a plurality of thin film transistors (2) disposed on a base substrate (1), each thin film transistor (2) being provided with a black matrix (6) thereon, and the black matrix (6) being provided with a via (60); over the black matrix (6) being disposed from bottom to top a first electrode (41), a luminescent layer (43) and a second electrode (42). The first electrode (41) is connected with the thin film transistor (2) through the via (60), and the first electrode (41) disposed over adjacent thin film transistors (2) are separated from each other by a barrier (44). The black matrix can block light emitted by the OLED to prevent TFTs from being illuminated, thereby ensuring the display effect of an active matrix type OLED display device.
Abstract:
A flexible organic light emitting diode display device, comprising: a first flexible substrate and a second flexible substrate opposite to the first flexible substrate wherein on the first flexible substrate, there are formed in sequence a thin film transistor, a first passivation layer, a first electrode, an organic electroluminescence layer, a second electrode, a stress absorption layer is disposed between the second electrode and the second flexible substrate, and material for the stress absorption layer is a resin material. The stress absorption layer of the flexible organic light emitting diode display device can absorb a stress occurring as it is bent, so as to prevent electrodes from being broken due to the action of the stress and affecting the display quality. There is further disclosed a manufacturing method of the flexible organic light emitting diode display device.