Abstract:
The present disclosure provides a display panel for glassless-type 3D display and an electronic device. The display panel includes an array substrate on which a plurality of rows of subpixels is arranged. The subpixels in each row include a first subpixel sequence and a second subpixel sequence arranged adjacent to each other in a row direction and corresponding to different views. The first subpixel sequence and the second subpixel sequence each include one subpixel or a plurality of subpixels arranged consecutively in the row direction. The first subpixel sequence is separated from the second subpixel sequence at a distance greater than or equal to a predetermined threshold in the row direction.
Abstract:
The invention relates to a display device, and discloses a 3D display device and its driving method and device. The display device comprises a pixel array and a raster, the pixel array comprises multiple columns of sub-pixel groups, each column of sub-pixel groups comprises M*N sub-pixels, wherein M is the number of color categories, and N is a positive integer greater than 3; each sub-pixel has a rectangular shape, and the odd columns of sub-pixel groups and the even columns of sub-pixel groups are set staggerly; the display device comprises multiple occluding rectangles arranged in a regular array, wherein occluding rectangles in neighboring columns are set staggerly in the column direction, and occluding rectangles in columns separated by a column are symmetrically set relative to the column between them in the row direction.
Abstract:
Embodiments of the invention disclose a 3D display device and a driving method thereof. The 3D display device includes a display panel and a grating structure, when both eyes are parallel to a first direction, a pixel array of the display panel forms a plurality of first left-eye pixel regions corresponding to the left eye and a plurality of first right-eye pixel regions corresponding to the right eye by the grating structure; when both eyes are parallel to a second direction, the pixel array of the display panel forms a plurality of second left-eye pixel regions corresponding to the left eye and a plurality of second right-eye pixel regions corresponding to the right eye by the grating structure, the first left-eye pixel regions are the same as the second left-eye pixel regions, and the first right-eye pixel regions are the same as the second right-eye pixel regions.
Abstract:
A boundary judging method for a 3D display apparatus includes: dividing each of a first picture and a second picture to be displayed into a plurality of theoretical pixel units and determining color components of each of the theoretical pixel units; determining, for each sub-pixel for displaying each of the first and second pictures, a luminance of the each sub-pixel according to a color component, corresponding to a color of the each sub-pixel, of the theoretical pixel units that are covered by a preset sampling region corresponding to the each sub-pixel and that belong to the corresponding picture; and determining, for each of the first and second pictures, a boundary between adjacent two of sub-pixels of each color in the corresponding picture according to a luminance difference between the adjacent two of the sub-pixels of the each color.
Abstract:
The present disclosure relates to an image displaying method and a display apparatus wherein each of raw pixels is divided into a plurality of virtual pixels based on desired image resolution for displaying a frame to be displayed; virtual image information for each of the virtual pixels is determined based on weights of the respective sub-pixels in each of the virtual pixels, weights of the respective sub-pixels in the virtual pixels which are adjacent in rows and the received original image information; thus, each of the virtual pixels displays a color(s) which it lacks itself with the aid of the respective sub-pixels in the virtual pixels which are adjacent in rows, so that the same display function as that of each of the raw pixels may be implemented, and thus the image resolution of the frame to be displayed is increased.
Abstract:
A display panel, a display method and a display device are disclosed; the display panel comprises sub pixel units of red (R), green (G), blue (B) and one other color (X), wherein the sub pixel units are arranged into a sub pixel unit array, the sub pixel units in the sub pixel unit array are all in a cross shape, the cross shape being constructed with rectangles with an aspect ratio of 3:1 in transverse and longitudinal directions, and the cross shape having equal lengths in the transverse and longitudinal directions; and respective sub pixel units in the sub pixel unit array are interlaced with each other sequentially and arranged periodically. The display panel makes the pixel structure more compact and the pixel sharing property more obvious.
Abstract:
The present invention provides a pixel array including multiple pixel units, each of which includes two rows of sub-pixels, and each row of sub-pixels includes four sub-pixels of different colors, wherein in each pixel unit, colors of the first two sub-pixels in the previous row are the same as those of the last two sub-pixels in the next row, colors of the last two sub-pixels in the previous row are the same as those of the first two sub-pixels in the next row, and in the same row, any two adjacent sub-pixels form one pixel block. The present invention further provides a driving method of the above-mentioned pixel array, a display panel including the pixel array and a display device including the display panel.
Abstract:
The present invention provides a display panel and a display method thereof, and a display device. The display panel comprises a plurality of sub-pixel arrays, each sub-pixel array is composed of eight sub-pixels arranged in two rows and four columns. In each sub-pixel array, four sub-pixels in a same row include three color sub-pixels and one compensation sub-pixel, the three color sub-pixels include one red sub-pixel, one green sub-pixel and one blue sub-pixel, colors of two sub-pixels in a same column are different from each other. The display method comprises: causing a plurality of color sub-pixels with the same color near a sub-pixel position to display, so that the required color component is displayed at the sub-pixel position under an average effect of the color sub-pixels with the same color; and performing display compensation on a sub-pixel position by using a plurality of compensation sub-pixels near the sub-pixel position.
Abstract:
This disclosure provides a pixel structure and a driving method thereof, a display panel and a display device. The pixel structure comprises: a plurality of repeating groups; each repeating group comprising three sub-pixels of different colors arranged in row direction; positions of repeating groups of adjacent rows being staggered for one and a half sub-pixels in column direction. In the above pixel structure, three sub-pixels constitute two pixels, which can, under a relatively low physical resolution, realize a relatively high resolution through sharing sub-pixels by a plurality of pixel units.
Abstract:
The present invention provides a display method of a display panel. The display panel in the present invention includes a plurality of repeat units each comprising a first, a second and a third color sub-pixels sequentially arranged in a row. The display method includes steps: determining a first, a second and a third color components of each repeat unit; obtaining a first and a second distribution ratios of the one repeat unit respectively according to each ratio of the first color component to the second color component and of the second color component to the third color component in their respective common units; and determining respective display components of the first to the third color sub-pixels of the one repeat unit according to a total value of the first to the third color components of the one repeat unit as well as the first and the second distribution ratios.