A pixel matrix display method and device
A technology of pixel matrix and display method, which is applied in the direction of static indicators, instruments, etc., can solve the problems that affect the viewing experience of the display effect, increase the difficulty of display panel design, and the low penetration rate of the display panel, so as to improve user experience and enhance display effect, the effect of improving the pixel charging time
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Embodiment 1
[0041] See figure 1 , figure 1 A flow chart of a pixel matrix display method provided by an embodiment of the present invention can be applied to the display of various electronic device display screens. The pixel matrix includes a plurality of sub-pixels arranged in a matrix, including the following steps:
[0042] Get raw pixel data;
[0043] converting into first input data and second input data according to the original pixel data;
[0044] In one frame, apply the first driving voltage corresponding to the first input data or the second driving voltage corresponding to the second input data to the pixel matrix along the data line direction;
[0045] Wherein, the sub-pixel aspect ratio is 3 / 4≤a:b≤4 / 3.
[0046] The display method of the present invention can be applied to displays with various resolution requirements, but is mainly applied to high-resolution displays, such as 4K, 8K and other high-resolution displays. For example, the resolution requirement of 8K4K is 76...
Embodiment 2
[0064] In a specific embodiment, this embodiment includes the content of Embodiment 1, and further includes, along the scanning line direction, alternately applying the first driving voltage or the second driving voltage to every three sub-pixels; along the data line direction , alternately applying the first driving voltage or the second driving voltage to each sub-pixel.
[0065] In a specific example, the first driving voltage is considered as a high gray-scale voltage (voltage level of H), and the second gray-scale voltage is considered as a low gray-scale voltage (voltage level of L), which is correspondingly input to the sub-pixel The voltage is determined by the gray scale. It is worth mentioning that the above-mentioned high gray scale and low gray scale represent the relative values of the two groups of gray scales, and do not limit their numerical values separately. For example, it can be considered that the original potential is maintained as H, then reduce the ...
Embodiment 3
[0076] In a specific embodiment, the aspect ratio of the sub-pixel is 1.5:2. The design can reduce the coupling effect of the data line to the pixel voltage, and can improve the design of the aperture ratio of the pixel.
[0077] Compared with the existing design, the solution of this embodiment has a positive effect on the improvement of the aperture ratio, please refer to Figure 9 , Figure 9 In order to compare the same product size under different resolution specifications, the aperture ratio design difference chart between the existing design (Normal) and this embodiment is used. Under the same design conditions, the aperture ratio of this embodiment is about 100% higher than that of the traditional design. 2 to 5%, and the higher the resolution, the greater the increase in aperture ratio.
[0078] In a specific embodiment, the aspect ratio of the sub-pixels is 2:1.5. The design can reduce the coupling effect of the data line to the pixel voltage, and can improve the ...
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