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.
Abstract:
An OLED display panel includes a plurality of spaced first pixels and a plurality of spaced second pixels arranged in rows and columns. Each of the first pixels 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 of each first pixel are substantially parallel to and spaced from each other. Each of the second pixels 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 of each second pixel are substantially parallel to and spaced from each other. The first pixels and the second pixels are arranged in alternate pattern in one row, and the first pixels and the second pixels are arranged in alternate pattern in one column
Abstract:
A display device includes a display element, an image compensation element, and a backlight module. The display element includes a main display region and a periphery display region located at one side of the main display region, each of the main display region and the periphery display region includes a plurality of pixels. The image compensation element includes a compensation portion corresponding to the periphery display region, and the image compensation element extends an image of the periphery display region to one side of the periphery display region away from the main display region. The backlight module provides first light beams to the main display region and second light beams to the periphery display region, and an intensity of the first light beams is smaller than an intensity of the second light beams.
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. An area of the light emitting surface is greater than an area of the light incident surface. The plurality of light guiding channels are independent from each other, each light guiding channel extends from the light incident surface to the light emitting surface. A cross section area of the light guiding channel increases along a direction from the first light incident surface to the first light emitting surface. Light from the light incident surface is extended to the light emitting surface by the light guiding channels. The present invention further discloses a method for manufacturing the same.
Abstract:
The present invention provides an OLED panel. The OLED panel includes a substrate and a plurality of walls formed on the substrate. The substrate and the walls define a plurality of containing areas. Each of the containing areas is corresponding to each of a plurality of sub-pixels. The sub-pixels are separated from each other by the walls. Each of the sub-pixels includes one of emitting materials formed in one of the containing areas. At least one of the containing areas corresponding to the sub-pixel includes a first partition. The height of the first partition is lower than the walls.
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. An area of the light emitting surface is greater than an area of the light incident surface. The plurality of light guiding channels is independent from each other, each light guiding channel extends from the light incident surface to the light emitting surface, and light from the light incident surface is extended to the light emitting surface by the light guiding channels. The present invention further discloses a method for manufacturing the same.
Abstract:
A thin film transistor includes a gate electrode, a gate insulating layer, a channel layer, an etching stop layer, two contact holes, a source, and a drain. The gate insulating layer covers the gate electrode. The channel layer is arranged on the gate insulating layer corresponding to the gate electrode. The etching stop layer covers the channel layer and includes an organic stop layer and a hard mask layer, the hard mask layer is located on a surface of the organic stop layer opposite to the channel layer to enhance a hardness of the organic stop layer. The two contact holes pass through the etching stop layer. The source connects to the channel via one contact hole, and the drain connects to the channel via the other contact hole.
Abstract:
A color filter of display panel for converting dual band white backlight to light with three-primary colors. The color filter includes a plurality of first filtering parts, a plurality of second filtering parts, and a plurality of quantum dot blocks. The first filtering parts have a first primary color and allow light having a first wavelength corresponding to the first primary color to pass therethrough. The second filtering parts have a second primary color and selectively allow light having a second wavelength corresponding to the second primary color to pass therethrough. The quantum dot block converting light having a wavelength smaller than a third wavelength corresponding to a third primary color to light having the second wavelength.
Abstract:
A method of manufacturing a thin film transistor substrate is provided, including a first photoresist pattern covers a channel during a process of etching a second photoresist pattern and protects the channel. Thus, an etching stop layer is not required.
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.