Abstract:
The present invention discloses a liquid crystal display (LCD) panel and method for forming the same. In the LCD panel, the TFT includes a source and a drain formed by a transparent conducting layer, and a gate formed by a metal layer. The source is electrically connected with a data line through a via hole over the data line. The source connects to the drain via an active layer. Whatever the number of data lines are, each pixel corresponds to an associated via hole, so the number of via holes does not increase, and not reduce the aperture ratio. Therefore, the present invention is very proper to a design using more data lines and working in a high frequency. Moreover, the matrix circuitry of LCD of the present invention is well applied in a display which not only increases a density of data lines to raise the frame rate, but also maintains the aperture ratio and brightness.
Abstract:
The present invention connects the first scan line of the (N+1)th set of scan lines to the second scan line of the first set of scan lines such that the vertical start pulse output signal of the first scan line of the (N+1)th set of scan lines serves as a vertical start pulse input signal of the second scan line of the first set of scan lines, and thereby turning on other second scan lines on the array substrate. The present invention can simplify the layout of the array substrate.
Abstract:
An LCD panel and method for forming the same are proposed. In the LCD panel, the TFT includes a source and a drain formed by a transparent conducting layer, and a gate formed by a metal layer. The source is electrically connected with a data line through a via hole over the data line. The source connects to the drain via an active layer. Whatever the number of data lines are, each pixel corresponds to an associated via hole, so the number of via holes does not increase, and not reduce the aperture ratio. Therefore, the present invention is proper to a design using more data lines and working in a high frequency. Moreover, the matrix circuitry of LCD is well applied in a display which not only increases a density of data lines to raise the frame rate, but also maintains the aperture ratio and brightness.
Abstract:
A liquid crystal display apparatus includes scan lines, data lines perpendicular to the scan lines, a first pixel, a second pixel adjacent to the first pixel, and a black matrix layer. The first pixel includes a first main pixel and a first sub pixel. The first main pixel and the first sub pixel are arranged along a direction of the scan line. The second pixel includes a second main pixel and a second sub pixel. The second main pixel and the second sub pixel are arranged along the direction of the scan line. The black matrix layer covers the first pixel and the second pixel. The black matrix layer covers portions of the first main pixel, the first sub pixel, the second main pixel, and the second sub pixel. The first pixel and the second pixel are arranged along a direction of the data line.
Abstract:
The present invention discloses a liquid crystal display (LCD) panel and method for forming the same. In the LCD panel, the TFT includes a source and a drain formed by a transparent conducting layer, and a gate formed by a metal layer. The source is electrically connected with a data line through a via hole over the data line. The source connects to the drain via an active layer. Whatever the number of data lines are, each pixel corresponds to an associated via hole, so the number of via holes does not increase, and not reduce the aperture ratio. Therefore, the present invention is very proper to a design using more data lines and working in a high frequency. Moreover, the matrix circuitry of LCD of the present invention is well applied in a display which not only increases a density of data lines to raise the frame rate, but also maintains the aperture ratio and brightness.
Abstract:
A flat panel display includes scan lines, data lines, and pixels. Each pixel including at least one first subpixel and a second subpixel, the first subpixel and the second subpixel of the pixel are coupled different scan lines but coupled to the same data line. All of the first subpixels of the pixels are scanned in a first display period, and all of the second subpixels of the pixels are scanned in a second display period after all of the first subpixels are scanned. One color of subpixel is scanned at a time in the flat panel display featuring interlaced scanning. Because video data does not change obviously in general, video data of the single one color of subpixel does not obviously change. The data line is not overloaded, neither. In this way, the color cast occurring in the conventional technology does not happen anymore.
Abstract:
The present invention connects the first scan line of the (N+1)th set of scan lines to the second scan line of the first set of scan lines such that the vertical start pulse output signal of the first scan line of the (N+1)th set of scan lines serves as a vertical start pulse input signal of the second scan line of the first set of scan lines, and thereby turning on other second scan lines on the array substrate. The present invention can simplify the layout of the array substrate.