Abstract:
A layer of liquid crystal material may be interposed between display layers. The display layers may include thin-film transistor circuitry having subpixel electrodes for applying electric fields to subpixel portions of the layer of liquid crystal material. Subpixels of different colors may have different shapes and may have different liquid crystal layer thicknesses. These subpixel differences may be configured to slow the switching speed of subpixels of a certain color relative to other subpixels to reduce color motion blur when an object is moved across a black or colored background. The subpixels may have chevron shapes. Subpixels of a first color may have chevron shapes that are less bent than subpixels of second and third colors. In configurations with varying liquid crystal layer thicknesses, the subpixels of the first color may have thicker liquid crystal layers than the subpixels of the second and third colors.
Abstract:
LCD module and LCD panel are provided. The LCD panel includes a first substrate, a liquid crystal layer, a second substrate, a first color filter and a second color filter. The first color filter includes a transparent area and a filter area. The first substrate is located between the first color filter and the liquid crystal layer. The second color filter includes a transparent area and a filter area. The second substrate is located between the second color filter and the liquid crystal layer. An orthogonal projection of the transparent area of the first color filter on the second color filter is coincided with the filter area of the second color filter. An orthogonal projection of the filter area of the first color filter on the second color filter is coincided with the transparent area of the second color filter. The LCD module and LCD panel implement DOF display mode.
Abstract:
A liquid crystal display panel, comprising a plurality of pixel units arranged as an array. Each pixel unit comprises at least three sub pixels respectively of different colors. Sub pixels of a same color in two longitudinally adjacent pixel units have different brightness under a same gray scale.
Abstract:
A multi-color electrophoretic display (EPD) device, an image sheet, and a method of fabricating the same. The multi-color EPD device includes: a plurality of unit color pixels; and a plurality of color capsules, each comprising color capsule shell which stores a dielectric fluid and at least one type of electrophoretic particles dispersed in the dielectric fluid, the plurality of color capsules being arranged to define subpixels of each of the plurality of unit color pixels.
Abstract:
A display apparatus includes a first pixel and a second pixel, each having subpixels of three colors, red, green, and blue. Six subpixels included in the first and second pixels are arranged in two rows by three columns, and constitute a repetition unit to constitute a display portion. An aspect ratio of a vertical length to a horizontal length of the subpixel is approximately 3:4. An aspect ratio of a vertical length to a horizontal length of the repetition unit is approximately 1:2.
Abstract:
A display panel including a plurality of sub-pixel groups arranged repeatedly to form a pixel array. Each of the sub-pixel groups includes a plurality of first pixel units, a plurality of second pixel units and a plurality of third pixel units. Each of the first pixel units includes a first color sub-pixel and a second color sub-pixel, each of the second pixel units includes the second color sub-pixel and a third color sub-pixel, and each of the third pixel units includes the first color sub-pixel and the third color sub-pixel. The first color sub-pixel, the second color sub-pixel and the third color sub-pixel are sub-pixels having three different colors. At least a part of the first pixel units and at least a part of the second pixel units are arranged along a first direction, and the first direction is tilted relative to a column direction of the pixel array.
Abstract:
The present application discloses a pixel array and a flat panel display having the pixel array. The pixel array includes a plurality of rows and columns of sub-pixel basic unit, and every sub-pixel basic unit having a blue sub-pixel, a red sub-pixel and a green sub-pixel, wherein: every sub-pixel basic unit presents a plurality of pixels; an arrangement proportion of the blue sub-pixel in a row direction and a column direction is that one blue sub-pixel is assigned for every two pixels; and any two red sub-pixels are not adjacent to each other and any two green sub-pixels are not adjacent to each other in the row direction and in the column direction. The present application may enable the flat panel display to have a better visual effect and may save sub-pixels.
Abstract:
The present disclosure provides a transparent liquid crystal display panel and a transparent liquid crystal display. The transparent liquid crystal display panel includes a backlight module, a color filter substrate and a TFT array substrate which are cell-assembled. Liquid crystal is filled between the color filter substrate and the TFT array substrate. Each pixel unit of the color filter substrate includes a sub-pixel unit and a transparent pixel unit. A region on the TFT array substrate that corresponds to the transparent pixel unit is transparent. A region between the color filter substrate and the TFT array substrate that corresponds to the transparent pixel unit is provided with a transparent resin spacer. A region in the backlight module that corresponds to the transparent pixel unit is a transparent region.
Abstract:
According to one embodiment, a liquid crystal display device includes a first substrate, a second substrate, and a liquid crystal layer. The first substrate includes a light-shielding layer formed in the shape of a band, a first semiconductor layer, a second semiconductor layer, a gate line, a first pixel electrode and a second pixel electrode. A third region of the first semiconductor layer and a sixth region of the second semiconductor layer are each U-shaped, and each includes a first channel region and a second channel region, which are located opposite to the gate line.
Abstract:
Disclosed herein is a display apparatus including: a first pixel including three sub-pixels for displaying three primary colors respectively; and a second pixel including three sub-pixels for displaying two colors selected among the three primary colors and a predetermined color other than the three primary colors, wherein, in the first pixel, the size of the display surface of a sub-pixel for displaying a specific color included in the three primary colors as a specific color missing from the second pixel is larger than each of the sizes of the display surfaces of the two other sub-pixels for displaying the two other primary colors respectively.