Abstract:
A display apparatus includes an array substrate and an opposite substrate arranged opposite the array substrate. The array substrate includes a first substrate and a plurality of sub-pixels disposed on the first substrate and arranged in an array. The opposite substrate includes a second substrate and a plurality of first spacers arranged at a side of the second substrate proximate to the array substrate. An orthographic projection, on the array substrate, of a first spacer is in a region where a region between two adjacent rows of sub-pixels intersects with a region between two adjacent columns of sub-pixels.
Abstract:
A liquid crystal panel, comprising a first substrate and a second substrate opposite to each other, and liquid crystals and sealant disposed between the first substrate and the second substrate. The liquid crystal panel has a display area and a non-display area, the first substrate has a black matrix in which a groove is provided to separate the sealant from the display area.
Abstract:
The present disclosure relates to a display panel, a display apparatus, a manufacturing method of a display panel and a manufacturing method of a display apparatus. The display panel comprises a first substrate and a second substrate, the display panel being divided into a display region and a non-display region, wherein a bonding element including an adhesive is disposed in the display region between the first substrate and the second substrate.
Abstract:
Disclosed are a display device and a driving method for a display device. The display device includes a display component and a light control component. The light control component has a plurality of light control pixels arranged in an array. Each of the light control pixels at least covers one of the display pixels. Each of the light control pixels is configured to switch between a first state and a second state. When the light control pixel is in the first state, external ambient light that has passed through the first polarizer does not change polarization state after passing through the light control pixel. When the light control pixel is in the second state, external ambient light that has passed through the first polarizer is adjusted, after passing through the light control pixel, to be linearly polarized light perpendicular to the light transmission axis of the reflective polarizer.
Abstract:
A display panel and a display device are provided. The display panel comprises a first substrate and a second substrate provided opposite to each other. The first substrate comprises M*N subpixels defined by gate lines and data lines. Thin film transistors in the k-th display row are connected to a first data line, and thin film transistors in the (k+1)-th display row are connected to a second data line. The second substrate comprises M*N filter units, a black matrix is provided between adjacent filter units, and the black matrix comprises shielding rows and shielding columns. The shielding row located between the k-th display row and the (k+1)-th display row has a first width, the shielding row located between the (k+1)-th display row and the (k+2)-th display row has a second width, and the first width is not equal to the second width. The display device comprises a display panel.
Abstract:
An array substrate, a method for fabricating the same, and a display device are disclosed. The array substrate comprises a plurality of sub-pixels in a display region which are defined by gate lines and data lines intersecting with each other. The array substrate further comprises a common electrode and a pixel electrode on the substrate. The common electrode comprises a plurality of first strip-shaped sub-electrodes, wherein each of the first strip-shaped sub-electrodes runs through the display region; and a common electrode line which electrically connects all of the first strip-shaped sub-electrodes.
Abstract:
The present invention discloses an array substrate and a manufacturing method thereof, a polarizer attaching film and a manufacturing method thereof. The manufacturing method of an array substrate includes: removing a part of a release film corresponding to a first attaching area of a polarizer, and attaching the first attaching area of the polarizer onto a base substrate such that the first attaching area is in a non-bonding area; and removing a part of the release film corresponding to a second attaching area of the polarizer, and attaching the second attaching area of the polarizer onto the base substrate such that the second attaching area at least partially overlaps with a bonding area.
Abstract:
A display apparatus includes an array substrate and an opposite substrate arranged opposite the array substrate. The array substrate includes a first substrate and a plurality of sub-pixels disposed on the first substrate and arranged in an array. The opposite substrate includes a second substrate and a plurality of first spacers arranged at a side of the second substrate proximate to the array substrate. An orthographic projection, on the array substrate, of a first spacer is in a region where a region between two adjacent rows of sub-pixels intersects with a region between two adjacent columns of sub-pixels.
Abstract:
A display panel, a polarizer and a display device are provided. The display panel includes a panel main body and a first polarizer disposed on at least one main surface of the panel main body. The first polarizer includes a first polarizing layer and a second polarizing layer which are stacked; a first polarizing region is formed on the first polarizing layer; a second polarizing region and a second light-transmitting region are alternately formed on the second polarizing layer; and an absorption axis direction of the second polarizing region is perpendicular to an absorption axis direction of the first polarizing region.
Abstract:
A liquid crystal panel and a dual-vision crystal display device can increase the viewing angle of the dual-vision crystal display device and reduce the thickness and cost of the dual-vision crystal display device. The liquid crystal panel includes an opposing substrate, an array substrate and a liquid crystal layer disposed between the opposing substrate and the array substrate; the opposing substrate includes: an upper polarizer, an upper base substrate disposed on one side of the upper polarizer, which side faces the array substrate, and a black matrix grating disposed on one side of the upper base substrate, which side faces the array substrate; the array substrate includes: an lower polarizer, an lower base substrate disposed on one side of the lower polarizer, which side faces the opposing substrate, and a color filter layer disposed on one side of the lower base substrate, which side faces the opposing substrate; and the liquid crystal layer is disposed between the color filter layer and the black matrix grating.