Claims
- 1. A driving method of a Liquid Crystal Display (LCD), the liquid crystal display comprising a back-light module and a liquid crystal display panel, wherein the liquid crystal display panel has a plurality of pixels, the driving method of the liquid crystal display comprising the steps of:
detecting the maximum grayscale X of all pixels in the present image; adjusting brightness of the back-light module to (X/N)×L, where N is the highest grayscale of the image display system, and L is a corresponding brightness to the grayscale value N of the back-light module; and adjusting a grayscale value Xa of each pixel to a mapping grayscale value Xb, and driving each of the pixels with the grayscale value Xb accordingly.
- 2. The driving method of the liquid crystal display as recited in claim 1, wherein a mapping correlation between the grayscale value Xa and the grayscale value Xb is linear, and the correlation is performed as Xb=(Xa/X)×N.
- 3. The driving method of the liquid crystal display as recited in claim 1, wherein the mapping correlation between the grayscale value Xa and the grayscale value Xb is nonlinear.
- 4. The driving method of the liquid crystal display as recited in claim 1, wherein light transmittance of each of the pixels is adjusted by a bias voltage based on the grayscale value Xb.
- 5. A driving method of a liquid crystal display comprising a back-light module and a liquid crystal display panel, wherein the liquid crystal display panel has a plurality of pixels, the driving method of the liquid crystal display comprising the steps of:
dividing a plurality of grayscale values 0, 1, 2, . . . , N into a plurality of segments, where N is the highest grayscale of the image display system; detecting a maximum grayscale X of all pixels in the present image; adjusting output brightness of the back-light module to (Y/N)×L, where Y is upper limit of one of the segments in which the maximum grayscale X is located, L is a corresponding output brightness of the back-light module to the grayscale N; and adjusting a grayscale value Xa of each pixel to a mapping grayscale value Xb, and driving each of the pixels with the grayscale value Xb accordingly.
- 6. The driving method of the liquid crystal display as recited in claim 5, wherein a mapping correlation between the grayscale value Xa and the grayscale value Xb is linear, and the mapping correlation is performed as Xb=(Xa/Y)×N.
- 7. The driving method of the liquid crystal display as recited in claim 5, wherein the mapping correlation between the grayscale value Xa and the grayscale value Xb is nonlinear.
- 8. The driving method of the liquid crystal display as recited in claim 5, wherein the corresponding output brightness of the back-light module is retained when the grayscale maximum X is located in either a range between Y and Y+S or a range between Z S and Z of a present image, where Z is lower limit of one of the segments in which segment the grayscale maximum X is located and S is the predetermined threshold.
- 9. The driving method of the liquid crystal display as recited in claim 5, wherein each of the segments contains the same numbers of the grayscale values respectively.
- 10. The driving method of the liquid crystal display as recited in claim 5, wherein each of the segments contains different numbers of the grayscale values respectively.
- 11. The driving method of the liquid crystal display as recited in claim 5, wherein light transmittance of each of the pixels is adjusted by a bias voltage based on the grayscale value Xb.
Priority Claims (1)
Number |
Date |
Country |
Kind |
92116357 |
Jun 2003 |
TW |
|
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims the priority benefit of Taiwan application serial no. 92116357, filed Jun. 17, 2003.