Abstract:
The present invention provides an image compensating device for a joint display. The image compensating device includes a light incident surface, a parallel light emitting surface, and a plurality of light guiding channels extending from the light incident surface to the light emitting surface. The light emitting surface of image compensating device is greater than the light incident surface. The section area of each light guiding channel is gradually increased from the light incident surface to the light emitting surface, by which to extend the image provided by the peripheral region of each cell of the joint display and provide a seamless joint image.
Abstract:
A method manufactures a color filter including a transparent substrate, a black matrix and a resin layer having at least two colors of resin patterns. During an exposing process of the color filter, a particular photo mask is used to expose from a side of the transparent substrate adjacent to the black matrix. At a same time, the transparent substrate is exposed from another side of the transparent away from the black matrix without using the photomask.
Abstract:
An OLED panel includes a plurality of pixels. Each pixel includes a first sub-pixel, a second sub-pixel and a third sub-pixel spaced from each other by a plurality of baffle plates. The first sub-pixel of each pixel is located adjacent to that of a neighboring pixel. The first sub-pixel of each pixel is spaced from that of the neighboring pixel by a partition plate. The partition plate has a height less than a height of each baffle plate.
Abstract:
A thin film transistor includes a gate electrode, a channel layer, a source electrode, and a drain electrode. The channel layer is made of an amorphous oxide semiconductor. The channel layer includes one high oxygen ion concentration region, or two high oxygen ion concentration regions one above the other. An oxygen ion density of each high oxygen ion concentration region is in a range of from about 1×1018 to about 1×1021 per cubic centimeter. A thin film transistor substrate and a method of manufacturing the thin film transistor substrate are also provided.
Abstract:
A touch display panel includes an LCD panel and a touch structure formed on the LCD panel. The LCD panel includes a first substrate, a second substrate and a liquid crystal layer formed between the first substrate and the second substrate. A color filter is formed on a bottom surface of the first substrate adjacent to the liquid crystal layer. A touch structure is formed on the LCD panel. The touch structure includes a first transparent ITO film. The first transparent ITO film defines a plurality of channels thereon. A photo etching barrier layer is formed between the first transparent ITO film and the color filter. The photo etching barrier layer is configured to prevent the channels from extending to the color filter and the liquid crystal layer.
Abstract:
An OLED panel includes a plurality of pixels. Each pixel includes a first sub-pixel, a second sub-pixel and a third sub-pixel spaced from each other by a plurality of baffle plates. The first sub-pixel of each pixel is located adjacent to that of a neighboring pixel. The first sub-pixel of each pixel is spaced from that of the neighboring pixel by a partition plate. The partition plate has a height less than a height of each baffle plate.
Abstract:
An apparatus for compensating an image of a display includes a light incident surface, a light emitting surface, and a plurality of light guiding channels independent from each other. The light incident surface is configured to be adjacent to the display to receive the image of the display into the apparatus. An area of the light emitting surface being greater than an area of the light incident surface. Each light guiding channel extends from the light incident surface to the light emitting surface. The light guiding channels is configured for transmitting the image from the light incident surface to the light transmitting surface and expanding the image such that the expanded image is displayed on the light emitting surface.
Abstract:
A display device includes a display element and an image compensation element. The display element includes a main display region and a first periphery display region located at a first side of the main display region, each of the main display region and the first periphery display region includes a plurality of pixels, and a pixel density of the main display region is smaller than a pixel density of the first periphery display region. The image compensation element includes a compensation portion corresponding to the periphery display region, and the image compensation element extends an image of the first periphery display region to one side of the first periphery display region away from the main display region.
Abstract:
A display panel manufacturing method includes forming a gate electrode on a substrate and a gate insulator, a semiconductor layer, and an etch stop layer covering the gate electrode. A photoresist layer covering on the etch stop layer is pattern from two opposite side of the substrate by two photolithography processes to form a photoresist pattern. The etch stop layer is dry etched to form an etch stop pattern via the photoresist pattern. The photoresist pattern is formed again by two photolithography processes. The semiconductor layer is wet etched to form a semiconductor pattern via the photoresist pattern. A source electrode and a drain electrode is formed corresponding to two opposite sides of the gate electrode to orderly cover the etch pattern, the semiconductor pattern, and the gate insulator.
Abstract:
An OLED display panel includes a plurality of spaced first pixels and a plurality of spaced second pixels spaced from each other. Each of the first pixel and the second pixel includes a first sub-pixel, a second sub-pixel and a third sub-pixel. The first sub-pixel, the second sub-pixel and the third sub-pixel are parallel to and spaced from each other. The first pixels and the second pixels are arranged in alternate pattern in one row. Of one first pixel and adjacent two second pixels of one row, the first sub-pixel of the first pixel is aligned with the first sub-pixel of the one second pixel, and the third sub-pixel of the first pixel is aligned with the third sub-pixel of the other one second pixel.