Rapid scanning driving method for smectic liquid crystal display screen

A technology of liquid crystal display screen and driving method, which is applied in the field of scanning driving, can solve the problems of limited refresh time and slow image refresh speed, and achieve the effect of improving the image refresh speed and shortening the image refresh time

Inactive Publication Date: 2010-09-22
HALATION PHOTONICS CORP
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Problems solved by technology

It can be seen from the formula T=M×KT×1 / FT that for a fixed display screen, M and FT sub> is fixed, therefore, the image refresh time T is limited by the number of pulse pairs KT
In order to refresh the image to the expected grayscale state, the number of pulse pairs KT must be kept above a certain number, so that the image refresh time T will be very large and the image refresh speed will be very slow

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  • Rapid scanning driving method for smectic liquid crystal display screen
  • Rapid scanning driving method for smectic liquid crystal display screen
  • Rapid scanning driving method for smectic liquid crystal display screen

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Embodiment Construction

[0025] The present invention will be described in detail below in conjunction with the accompanying drawings.

[0026]According to the traditional row-by-row sequential scanning driving method, it can be seen that when scanning an entire image of M rows×N columns, an image refresh time T of M×K×1 / F must be experienced, where M is the number of rows, and K is the scanning time. The number of pulse pairs of driving pulses applied to each row, and F is the frequency of driving pulses. For a display screen with a fixed resolution, M is a fixed value, and the value of the frequency F of the driving pulse mainly depends on the characteristics of the liquid crystal material used, that is to say, M and F are fixed. Therefore, from It can be seen from the formula T=M×K×1 / F that for a fixed smectic liquid crystal display, if the image refresh time T is to be shortened, only by reducing the number of pulse pairs of driving pulses applied when scanning each row K to achieve. However, if...

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Abstract

The invention discloses a rapid scanning driving method for a smectic liquid crystal display screen, comprising the following steps: (1) initializing a smectic liquid crystal display screen: clearing the image displayed on the smectic liquid crystal display screen and enabling the smectic liquid crystal display screen to be white; (2) enabling the smectic liquid crystal display screen to display the image obscurely: carrying out the scanning driving from the first row to the Mth row in turn, applying a second high-frequency high-voltage positive and negative pulse to each row of row electrodes, and applying corresponding column driving pulse to all the column electrodes according to gray scale information of the image displaced by the row while applying the second high-frequency high-voltage positive and negative pulse to the row; and (3) enabling the smectic liquid crystal display screen to display the image clearly: respectively applying a pair of third high-frequency high-voltage positive and negative pulses with the same frequency, the same voltage amplitude and the reverse phases to the M row columns and the N column electrodes, and stopping applying the third high-frequency high-voltage positive and negative pulses after a preset time. Compared with the traditional progressive scanning driving way, the rapid scanning driving method for the smectic liquid crystal display screen can greatly improve the image refresh rate under the premise of realizing the same image display effect.

Description

technical field [0001] The invention relates to a scanning driving method, in particular to a fast scanning driving method applied to a smectic liquid crystal display. Background technique [0002] Liquid crystal display is one of the most promising flat panel display devices at present. Traditional liquid crystal displays are passive displays, that is, transmissive displays, which can only be displayed under the condition of an external backlight, but the power consumption of the backlight is the liquid crystal itself. More than hundreds of times the power consumption, very energy-consuming. With the development of liquid crystal technology, various liquid crystal materials emerge in an endless stream, among which the reflective liquid crystal that does not require a backlight has an absolute advantage due to its low power consumption characteristics. The smectic liquid crystal display in the Chinese utility model patent "a display control circuit" (patent number ZL2007201...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G09G3/36
Inventor 孙刚夏兴隆茆文艺
Owner HALATION PHOTONICS CORP
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