Abstract:
An array substrate and a fabrication method thereof, and a display device and a driving method thereof are provided. The array substrate includes a gate line, a data line, and a pixel electrode disposed within a pixel region defined by the gate line and the data line intersecting with each other. The array substrate further includes an additional electrode disposed between at least two adjacent pixel electrodes.
Abstract:
An alignment film and a fabrication method thereof, a liquid crystal panel and a display device, relate to a field of liquid crystal display technology, which can avoid causing static electricity and generating dust during a rubbing process, as well as unevenness of alignment. The method comprises: dispersing discotic liquid crystal molecules containing hydrophobic branched chains in a solvent, to prepare a discotic liquid crystal molecule solution (101); and applying the discotic liquid crystal molecule solution on a substrate, and obtaining the alignment film after removing the solvent (102).
Abstract:
A display panel and a display device are provided. The display panel comprises a central region and peripheral regions. The peripheral regions are provided at two opposite ends of the display panel and have a first curvature; the central region is provided between the two opposite ends of the display panel and has a second curvature; and the second curvature of the central region is smaller than the first curvature of the peripheral regions.
Abstract:
An optical-compensation film, an optical-compensation polarizing sheet and a liquid crystal display are disclosed. The liquid crystal display comprises: a liquid crystal unit as well as a first polarizing sheet and a second polarizing sheet each provided at either side of the liquid crystal unit, in which absorption axes of the first and second polarizing sheets are perpendicular to each other; the liquid crystal unit comprises: a counter substrate and an array substrate as well as a liquid crystal layer lying between the two substrates, in which, the array substrate comprises a pixel electrode and a common electrode; the first polarizing sheet comprises: a first optical-compensation film, which is provided facing the liquid crystal unit; an absorption axis of the first polarizing sheet and an initial alignment direction of the liquid crystal in the liquid crystal layer are both perpendicular to a slow axis of the first optical-compensation film; the second polarizing sheet comprises: an isotropic protective film, which is provided proximate to a side of the liquid crystal unit where the array substrate is located. The liquid crystal display has improved contrast in an oblique plane and expanded viewing angles.
Abstract:
Disclosed are an OLED display structure and an OLED display device having the OLED display structure. The OLED display structure comprises: a substrate (10), and an OLED pixel layer (20), an o-light and e-light splitting and converting device (5) and a circular polarizer layer (6) which are formed on the substrate (10) in sequence; the o-light and e-light splitting and converting device (5) is adapted to divide a light beam into o-light and e-light, and to convert the o-light and the e-light into circularly polarized light which has the same polarization state as the circular polarizer layer (6); the circular polarizer layer (6) is adapted to allow passage of the circularly polarized light which has the same polarization state as it. With the display structure, the light transmittance is improved, and the pixel current of the OLED pixel layer (20) is reduced, and thereby energy is saved.
Abstract:
A transflective display panel, a method for fabricating the same and a display device are provided. The transflective display panel comprises an array substrate and a color film substrate cell-assembled with each other and a liquid crystal layer sandwiched between the array substrate and the color film substrate. A plurality of pixel units correspondingly formed on the array substrate and the color film substrate. Each pixel unit comprises a reflective region and a transmissive region. Disposed inside the reflective region are a first reflection layer disposed on the side of the array substrate that is close to the liquid crystal layer and a diffuse reflection layer disposed on the side of the color film substrate that is close to the liquid crystal layer. The diffuse reflection layer and the first reflection layer are disposed opposite each other.
Abstract:
An array substrate and a fabrication method thereof, and a display device and a driving method thereof are provided. The array substrate includes a gate line, a data line, and a pixel electrode disposed within a pixel region defined by the gate line and the data line intersecting with each other. The array substrate further includes an additional electrode disposed between at least two adjacent pixel electrodes.
Abstract:
Embodiments of the present invention provide a transflective liquid crystal display (LCD) panel and a display having the same. The transflective liquid crystal display panel comprises a plurality of pixels, each pixel including a reflective region, a transmissive region, and a transition region located between the reflective region and the transmissive region. A light shielding layer is provided in at least a part of the plurality of the pixels, and the light shielding layer is provided at a position corresponding to the transition region.
Abstract:
According to embodiments of the present invention, there are provided a lens panel, a method for manufacturing the same and a 3D display device. The lens panel comprises: a first transparent substrate; a second transparent substrate, disposed opposite to the first transparent substrate; positive electrodes and negative electrodes, which are in a strip shape, and disposed on a side of the first transparent substrate opposed to the second transparent substrate parallel to each other and alternately; a second transparent liquid and a first transparent liquid filled between the first transparent substrate and the second transparent substrate in this order from the second transparent substrate to the first transparent substrate, the first transparent liquid and the second transparent liquid being immiscible, and reflectance of the first transparent liquid being larger than reflectance of the second transparent liquid.
Abstract:
The embodiments of the invention provide an array substrate and a liquid crystal display. The array substrate comprises a gate line and a data line intersecting with each other to define a pixel unit, a plate-like electrode in the pixel unit, an electrode with slits and a thin film transistor. An alignment film is provided on the array substrate. Within the pixel unit, an end of the electrode with slits away form a region of the TFT along the data line has an outer first side and an inner second side. The outer first side, the inner second side and a third side of the gate line of an adjacent pixel unit are perpendicular to a rubbing direction of the alignment film.