Partition backlight-based low-delay liquid crystal display device and driving method thereof
A technology of a liquid crystal display device and a driving method, which is applied to static indicators, instruments, etc., can solve problems such as dark screens and bad display defects, and achieve the effect of improving response time
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Embodiment 1
[0054] ginseng Figure 2a , Figure 2b As shown, the liquid crystal display device in this embodiment includes a backlight unit 10, an array substrate 20, a liquid crystal layer 30, a pixel layer 40, a color filter substrate 50, and a polarizer 60, and also includes a A backlight drive unit, and a liquid crystal drive unit for lighting the display screen (liquid crystal layer 30, etc.).
[0055] Among them, the backlight unit 10 adopts a 2D partition design, including a number of partition backlights distributed in an array, and the number of horizontal and vertical partitions is M and N respectively.
[0056] In this embodiment, in the design of the partition backlight, a large number of small-sized Mini-LED arrays are used as the light source. On the one hand, it takes into account the advantages of thinness and lightness. It can also provide sufficient brightness for a limited time, avoiding the problem of insufficient brightness of the display device caused by the tradit...
Embodiment 2
[0058] ginseng image 3 As shown, the driving method of the low-retardation liquid crystal display device based on the partition backlight in this embodiment specifically includes:
[0059] S1. Actively scan row and column of the display screen to obtain the image gray scale of the current pixel, and obtain the image gray scale matrix.
[0060] Among them, the gray scale of the image is gray(x, y, 3), where x∈[1, height], y∈[1, width], height and width are respectively defined as the height and width of the image, and 3 represent R / G / B three channels.
[0061] S2. Normalize the image grayscale matrix according to the electro-optical curve EOTF of the display device to obtain a display driving matrix.
[0062] Preferably, the electro-optical curve is a Gamma curve, and the display driving matrix is indata(x, y, 3)=(gray / 2^N) gamma , the value of gamma in this embodiment is 2.2, and N is the number of bits of the display device, such as 6, 8, 10 bits and so on.
[0063] S...
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