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Liquid crystal panel

A technology of liquid crystal display panels and conductive substrates, applied in static indicators, nonlinear optics, instruments, etc., can solve the problems of reducing the display quality and practicability of liquid crystal display panels 10

Active Publication Date: 2006-07-26
AU OPTRONICS CORP
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

As a result, the display quality and practicability of the liquid crystal display panel 10 are greatly reduced.

Method used

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Examples

Experimental program
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Effect test

Embodiment 1

[0071] Please also refer to Figure 2A-2B , Figure 2A Shown is a partial plan view of the first conductive substrate of the liquid crystal display panel according to Embodiment 1 of the present invention, Figure 2B is shown along the Figure 2A A partial cross-sectional view of the liquid crystal display panel viewed on the section line 2B-2B'. Such as Figure 2A-2B As shown, the liquid crystal display panel 20 at least includes a first conductive substrate 21 , a second conductive substrate 22 and a liquid crystal layer 23 . The first conductive substrate 21 at least includes a first substrate 24, a first bump 25, a second bump 26 and a photo spacer 27, the first bump 25 and the second bump 26 are symmetrical to a first bump. The second bump 26 is disposed on the first substrate 24 along a centerline C1 , and the second bump 26 is a mirror structure of the first bump 25 corresponding to the first centerline C1 . In other words, the first bump 25 is also a mirror image ...

Embodiment 2

[0080] Please also refer to Figure 3A-3B , Figure 3A Shown is a partial top view of a liquid crystal display panel according to Embodiment 2 of the present invention, Figure 3B is shown along the Figure 3A A partial cross-sectional view of the liquid crystal display panel viewed on the section line 3B-3B'. The difference between the liquid crystal display panel 20a of this embodiment and the liquid crystal display panel 20 of the first embodiment lies in the second conductive substrate 22a, and the difference between the second conductive substrate 22a of this embodiment and the second conductive substrate 22 of the first embodiment The reason is that there are more third bumps 29 and fourth bumps 30 . As for the other same constituent elements, the reference numerals will continue to be used, and will not be repeated.

[0081] Such as Figure 3A-3B As shown, the third bump 29 and the fourth bump 30 are respectively disposed in the first color filter pixel F1 and the ...

Embodiment 3

[0084] Please also refer to Figures 4A-4B , Figure 4A Shown is a partial top view of a liquid crystal display panel according to Embodiment 3 of the present invention, Figure 4B is shown along the Figure 4AA partial cross-sectional view of the liquid crystal display panel viewed on the section line 4B-4B'. The difference between the liquid crystal display panel 20b of this embodiment and the liquid crystal display panel 20 of the first embodiment lies in the second conductive substrate 22b, and the difference between the second conductive substrate 22b of this embodiment and the second conductive substrate 22 of the first embodiment It lies in the common electrode 34a, the first slit 29a and the second slit 30a. As for the other same constituent elements, the reference numerals will continue to be used, and will not be repeated.

[0085] Such as Figures 4A-4B As shown, the common electrode 34a has a first slit 29a and a second slit 30a, such as two first slits 29a an...

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Abstract

Disclosed is a liquid crystal display panel which comprises: a first conductivity base board, a second conductivity base board and a liquid crystal layer. The first conductivity base board comprises: a base material, a first projection, a second projection and a light spacer; the first projection and the second projection are installed on the base material with central line symmetry, the second projection is the image structure of the first projection relative to the central line. The light spacer is installed in the central line on the base material and between the first and second projections. The second projection base board is parallel with the first conductivity base board. The liquid layer is placed between the first and the second base boards.

Description

technical field [0001] The invention relates to a liquid crystal display panel, in particular to a liquid crystal display panel which can avoid partial overlapping of light spacers and bumps. Background technique [0002] Since the multi-domain vertical alignment (MVA) liquid crystal display panel can provide faster signal response speed, wider viewing angle, higher light transmittance, higher contrast ratio and more perfect The image quality has been widely used in recent years. [0003] Please also refer to Figure 1A-1B , Figure 1A Shown is a partial top view of a conventional liquid crystal display panel, Figure 1B is shown along the Figure 1A A partial cross-sectional view of the liquid crystal display panel viewed on the section line 1B-1B'. Such as Figure 1A-1B As shown, the liquid crystal display panel 10 includes a thin film transistor (thin film transistor; TFT) substrate 11 , a color filter (color filter; CF) substrate 12 and a liquid crystal layer 13 . T...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G02F1/1333G02F1/1343G02F1/1335G02F1/133
Inventor 黄淑仪孙伟杰彭智宇
Owner AU OPTRONICS CORP
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