Abstract:
An imaging system is provided, configured for providing three-dimensional data of a region of interest. The system comprising: an optical unit and a control unit. The optical unit comprises a radiation collection unit and a detection unit. The radiation collection unit comprises at least two mask arrangement defining at least two radiation collection regions respectively, the mask arrangements are configured to sequentially apply a plurality of a predetermined number of spatial filtering patterns formed by a predetermined arrangement of apertures applied on radiation collected thereby generating at least two elemental image data pieces corresponding to the collected radiation from said at least two collection regions. The control unit comprising is configured for receiving and processing said at least two elemental image data pieces and determining a plurality of at least two restored elemental images respectively being together indicative of a three dimensional arrangement of the region being imaged.
Abstract:
The present invention discloses a color filter substrate comprising a substrate; and a color filter layer disposed on the substrate. The color filter layer comprises at least two color regions, and at least two alignment marks, corresponding to the at least two color regions respectively, disposed on a perimeter zone of the substrate. Each of the alignment marks is configured to have a block structure, and at least one of the alignment marks is provided with a recess in a top thereof.
Abstract:
Disclosed a color filter substrate for a liquid crystal display device performing an ordinary display for a gray scale display and a dynamic display for a bright display, which includes a transparent substrate, a transparent conductive film formed above the transparent substrate, a black matrix formed above the transparent substrate and having pixel regions which are openings partitioned into polygonal pixel shapes respectively having two parallel sides, a first transparent resin layer formed so as to cover portions corresponding to the two parallel sides of the black matrix, a color layer formed above the pixel regions, and a second first transparent resin layer formed above the color layer and having a linear depression passing a center of the pixel region.
Abstract:
A method of color processing includes providing a color and white filter array placed over an image sensor, thereby generating converted color and white signals; interpolating the converted white signals to generate interpolated white signals; interpolating white-chroma differences between the converted color signals and the converted white signals to generate interpolated white-chroma difference signals; and transforming the interpolated white signal and the interpolated white-chroma difference signals into a color space, thereby generating transformed color signals.
Abstract:
A mask plate used for manufacturing a color filter unit of a color filter substrate, the followings are formed thereon: an un-blocked area, corresponding to a first area of positive photoresist surrounding the color filter unit forming area of the color filter unit; at least one partially blocked area through which the light is able to pass partially, the at least one partially blocked area corresponding to a second area of the positive photoresist, the second area is a part of the color filter unit forming area, the at least one partially blocked area is adjacent to the un-blocked area at a common edge; an entirely blocked area, corresponding to a third area of the positive photoresist, the third area is another part of the color filter unit forming area; the reserved photoresist in the second area and the third area form the color filter unit.
Abstract:
The present invention provides a color filter, a display panel and a display device. The color filter comprises a substrate, on which a plurality of pixel regions are formed, in each of the plurality of pixel regions, a color film and a black matrix is provided, and a reflecting layer for reflecting ambient light entering into the color film is provided on a surface of the black matrix. Compared to the prior art, the present invention can improve the utilization rate of ambient light and improve the display effect.
Abstract:
Embodiments of the present invention provide a color filter substrate, a liquid crystal panel and a liquid crystal display. The color filter substrate comprises a plurality of elementary pixels. Each of the elementary pixels comprises sub-pixels in four colors. Among the sub-pixels in four colors, a sub-pixel in at least one of the colors has a number larger than or equal to 2.
Abstract:
Provided is an organic EL display device capable of preventing or restraining color shift or color mixing in an image displayed in each of its pixels, this inconvenience being caused by the entry of light into the pixel from an organic EL element of a pixel adjacent to the pixel; and provided is a color filter forming substrate making it possible to produce such an organic EL display device. The color filter forming substrate is a substrate for an organic EL display device, in which: a pixel-dividing light-shielding region is arranged over one surface of a base material comprising a transparent substrate to make plural pixel regions into a region-divided form; and plural color-filter-forming coloring layers for multiple colors are arranged to the predetermined pixel regions in accordance with the respective colors, characterized in that a light-shielding layer is arranged in the pixel-dividing light-shielding region, and a surface of the light-shielding layer farthest from the one surface of the base material is positioned farther from the one surface of the base material than respective surfaces of the color-filter-forming coloring layers in the respective colors, these surfaces not being respective base material side surfaces of the coloring layers, are positioned.
Abstract:
The present disclosure provides a pixel structure, a display device and a driving method. The pixel structure includes a plurality of pixel units, each pixel unit includes at least three subpixel units in three colors, and the subpixel units are combined to form a hexagonal pixel unit. Each edge of the pixel unit is adjoined to an edge of the adjacent pixel unit except for the pixel units at a periphery of the pixel structure. According to the present disclosure, the pixel units are arranged sequentially on a display panel. As compared with an arrangement mode of the pixel structure in the related art, the pixel units in the pixel structure of the present disclosure are arranged in a more compact manner, and thereby improving a resolution as well as color distribution of the display device.