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:
The present invention relates to a display device and a joint display. The display device includes a display panel and a cover lens. The display panel includes a main display region and an edge display region. The cover lens includes a transmission portion located on the main display region and compensation portion located on the edge display region. The compensation portion is configured to distribute the image of the edge display region to the outside of the edge display region away from the main display region. The compensation portion includes a light incident surface, a light emitting surface, and a light guiding channel. The light guiding channel extends from the light incident surface to the light emitting surface, and an area of the light emitting surface is greater than an area of the light incident surface.
Abstract:
An organic light emitting diode (OLED) display panel includes a plurality of pixels spaced from each other. Each of the 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 pixel are all rhombus shaped. The first sub-pixel, the second sub-pixel, and the third sub-pixel spaced from each other by three barriers. The three barriers are connected with each other in a Y-shaped pattern. An angle defined by two adjacent barriers is about 120 degrees.
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 panel includes an array substrate including a thin film transisitors array, a lighting device formed on a surface of the array substrate where the thin film transistors array is formed to emit a backlight, and a color conversion layer formed on a side of the array substrate opposite to the lighting device. The display panel defines a number of pixel areas, each of the pixel areas includes at least three sub-pixels to correspondingly emit lights with three-primary colors. The color conversion layer includes a number of quantum dot blocks corresponding to the sub-pixels to convert the backlight to the lights with three-primary colors.
Abstract:
A manufacturing method of display array substrate is provided. The method includes depositing a first metal layer on a substrate and defining a peripheral area and a display area, coating a photo-resist layer on the first metal layer located in the peripheral area, anodizing the first metal layer to a first metal oxide layer with the photo-resist layer as a mask, patterning the first metal oxide layer located in the display area to a gate insulator, removing the photo-resist layer to expose the first metal layer in the peripheral area, forming a channel layer on the gate insulator, and depositing a second metal layer and patterning the second metal layer located in the display area to form a source electrode and a drain electrode.
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 display comprises a display panel and an image compensating portion. The display panel comprises a main display region and a periphery display region outside the main display region. Each of the main display region and the periphery display region respectively comprises a plurality of pixels. When a pixel of the main display region and a pixel of the periphery display region have the same original gray scale, an intensity of lights from the pixels in the periphery display region is greater than an intensity of lights from the pixels in the main display region.
Abstract:
A pixel structure of an organic light emitting diode display includes a number of pixels arranged as a matrix and formed on a substrate. Each of the pixels includes a first sub-pixel of one color, and second and third sub-pixels each of different colors. The pixel structure at least includes a first sub-pixel column pair having two adjacent first sub-pixel columns with a first interval defined therebetween, a third sub-pixel column pair having two adjacent second sub-pixel columns with the first interval defined therebetween, and a second sub-pixel column between the first sub-pixel column pair and the third sub-pixel column pair. The pixel structure defines a second interval between the first sub-pixel column pair and the second sub-pixel column, and between the third sub-pixel column pair and the second sub-pixel column.
Abstract:
An array substrate for a liquid crystal display device includes a first storage capacitor and a second storage capacitor for increased capacitance. The first storage capacitor is formed by a first common electrode and a pixel electrode. The second storage capacitor is formed by a second common electrode and the pixel electrode.