Abstract:
The present disclosure discloses a display panel and a display device. The display panel includes a cell defined by a first substrate and a second substrate oppositely arranged with respect to the first substrate, and a plurality of post spacers on the first substrate. The second substrate includes a plurality of sub-pixels, the post spacers include a first post spacer and a second post spacer at one side of the first post spacer away from the sub-pixels. A spacer supporting block protrudes from the second substrate, and enables an end portion of the first post spacer away from the first substrate not to contact with the second substrate when the display panel is subjected to an external force. The end portion of the first post spacer away from the first substrate and the spacer supporting block partially overlap with each other in a direction perpendicular to the second substrate.
Abstract:
The present disclosure discloses a display panel and a display device. The display panel includes a cell defined by a first substrate and a second substrate oppositely arranged with respect to the first substrate, and a plurality of post spacers on the first substrate. The second substrate includes a plurality of sub-pixels, the post spacers include a first post spacer and a second post spacer at one side of the first post spacer away from the sub-pixels. A spacer supporting block protrudes from the second substrate, and enables an end portion of the first post spacer away from the first substrate not to contact with the second substrate when the display panel is subjected to an external force. The end portion of the first post spacer away from the first substrate and the spacer supporting block partially overlap with each other in a direction perpendicular to the second substrate.
Abstract:
A display device is provided, the display device comprising a display panel, the display panel including an opposed substrate (1) and an array substrate (2) arranged opposite to each other, and a liquid crystal layer (3) arranged therebetween, the display panel being divided into a central region (61) and a peripheral region (62) surrounding the central region (61), and an additional polarizer (6) being arranged in a region between the array substrate (2) and the liquid crystal layer (3) and corresponding to the peripheral region (62). The display device can effectively prevent the peripheral region (62) of the display panel from light leakage.
Abstract:
The present invention provides a liquid crystal panel and a manufacturing method thereof, and a display apparatus comprising the liquid crystal panel, which relates to the field of display technology, and can avoid the problem that the sealant is separated from the first substrate and/or the second substrate while the liquid crystal panel is bent. The liquid crystal panel of the present invention comprises a first substrate and a second substrate, the first substrate and the second substrate are aligned with each other to form a liquid crystal cell, and the liquid crystal cell is sealed with sealant, wherein, at least one convex structure is provided in a region which corresponds to position of the sealant on the first substrate and/or the second substrate.
Abstract:
A liquid crystal display (LCD) panel, a display apparatus and a method for driving the display apparatus capable of providing a LCD panel having good display quality are provided. The liquid crystal display panel comprises: a first substrate (11) and a second substrate (21) opposite to each other, a pixel array provided on the first substrate (11), and a liquid crystal layer (3) between the first substrate (11) and the second substrate (21). The liquid crystal display panel further comprising a first common electrode (12) disposed on a side of the first substrate (11) close to the liquid crystal layer (3) and a second common electrode (22) disposed on a side of the second substrate (21) close to the liquid crystal layer (3). A first pixel electrode (1) and a second pixel electrode (2) are disposed on the first substrate (11). The second common electrode (22) has no overlap region directly facing the first pixel electrode (1) and/or the second pixel electrode (2).
Abstract:
The present disclosure disclose a polymer stabilizing liquid crystal lens and a method for manufacturing the same, a display device and an electronic product. The polymer stabilizing liquid crystal lens includes a first substrate with a first electrode, a liquid crystal layer and a second substrate with a second electrode. The liquid crystal layer is disposed between the first electrode and the second electrode. The first electrode includes a plurality of electrode units. A periodic electric field which has voltages varying periodically is generated between the plurality of electrode units and the second electrode. The liquid crystal layer includes polymers and liquid crystal molecules. The liquid crystal molecules are deflected under action of the periodic electric field before the polymers are stabilized, and are maintained at a deflecting angle after the polymers are stabilized.
Abstract:
An array substrate and a display including the array substrate, the array substrate includes a substrate (1); a pixel structural layer formed on the substrate (1); and a wiregrid layer (6) located between the substrate (1) and the pixel structural layer. The wiregrid layer (6) includes a plurality of light blocking bars (4) arranged in parallel. With the wiregrid layer (6) formed of light blocking bars (4), an occurrence of light leak due to a stress generated by the substrate (1) can be avoided.
Abstract:
An array substrate and a display including the array substrate, the array substrate includes a substrate (1); a pixel structural layer formed on the substrate (1); and a wiregrid layer (6) located between the substrate (1) and the pixel structural layer. The wiregrid layer (6) includes a plurality of light blocking bars (4) arranged in parallel. With the wiregrid layer (6) formed of light blocking bars (4), an occurrence of light leak due to a stress generated by the substrate (1) can be avoided.
Abstract:
An array substrate and a liquid crystal display device adopt a four-domain electrode structure and have advantages of improving the gradient of a V-T curve and contrast, achieving ideal response time, and the like. The array substrate comprises gate lines, data lines and pixel units defined by the gate lines and the data lines. Pixel electrodes (10) and common electrodes (11) arranged on the same layer are formed in the pixel units. Both the common electrodes (11) and the pixel electrodes (10) adopt a comb structure, and comb teeth of the common electrodes (11) and comb teeth of the pixel electrodes (10) are alternately arranged. Each comb tooth of the comb structure is divided into an upper comb tooth (13) and a lower comb tooth (14) in different directions by a node (12). All the upper comb teeth (13) are parallel to each other, and all the lower comb teeth (14) are parallel to each other. For a pixel electrode (10) and a common electrode (11) that are neighboring each other, a spacing (151) between two upper comb teeth (13) is unequal to a spacing (152) between two lower comb teeth (14).
Abstract:
According to embodiments of the invention, there are provided a display module, a display device and a method of manufacturing the display module. The display module comprises an array structural layer and a color filter layer provided on a surface of the array structural layer. The color filter layer comprises black matrixes and color pixel layers, and the color pixel layers are formed between adjacent black matrixes, respectively.