This application claims the priority benefit of Taiwan application serial no. 96125026, filed on Jul. 10, 2007. The entirety of the above-mentioned patent application is hereby incorporated by reference herein and made a part of this specification.
1. Field of the Invention
The present invention generally relates to a display panel. More particularly, the present invention relates to a multi-domain vertical alignment liquid crystal display (MVA-LCD) panel.
2. Description of Related Art
Nowadays, the multimedia technology has been well developed, which mostly benefits from the development on semiconductor devices and display apparatuses. As far as displays are concerned, liquid crystal displays (LCDs) with superior features, such as high definition, good space utilization, low power consumption and no radiation, have gradually become the mainstream of the market. In order to obtain better display quality, currently all LCDs are developed towards features such as high contrast ratio, no gray scale inversion, little color shift, high luminance and wide viewing angle. As for the wide viewing angle technique, the common techniques include, for example, in-plane switching LCD (IPS-LCD), twisted nematic LCD (TN-LCD) and the like.
In view of the above-mentioned, the present invention provides a multi-domain vertical alignment liquid crystal display (MVA-LCD) panel having good display quality.
As embodied and broadly described herein, the present invention provides an MVA-LCD panel including an active device array substrate, a color filter substrate and a liquid crystal layer. The active device array substrate has a plurality of pixel units. The color filter substrate includes a substrate and a plurality of color filter units. The color filter units are disposed on the substrate corresponding to the pixel units, and three adjacent color filter units form into a delta-shape. In addition, the liquid crystal layer is disposed between the active device array substrate and the color filter substrate. The liquid crystal layer above each of the pixel units has domain sets with various alignments.
According to one embodiment of the present invention, each of the color filter units has a plurality of strip-shaped bumps. At least one end of each of the strip-shaped bumps extends along boundaries of the color filter unit.
According to one embodiment of the invention, each of the pixel units has a patterned pixel electrode. The patterned pixel electrode has a plurality of continuous strip-shaped slits.
According to one embodiment of the present invention, the MVA-LCD panel further includes a plurality of spacers disposed between the active device array substrate and the color filter substrate. The spacers are disposed corresponding to an intersection of two adjacent color filter units.
According to one embodiment of the present invention, the color filter units include red filter units.
According to one embodiment of the present invention, the color filter units include green filter units.
According to one embodiment of the present invention, the color filter units include blue filter units.
Since the MVA-LCD panel has advantages such as the color filter units arranged into delta shapes and the liquid crystal layer divided into domain sets having various alignments, both the viewing angle of the display frame and the display quality of the dynamic and static images can be effectively improved.
In order to the make the aforementioned and other objects, features and advantages of the present invention more comprehensible, preferred embodiments accompanied with figures are described in detail below.
In another aspect, the color filter substrate 220 is mainly constituted by a substrate 222 and a plurality of color filter units C1. Generally, the color filter units C1 may be red filter units, green filter units or blue filter units. Specifically, the color filter units C1 may be constituted by a filter film layer 224 and a common electrode layer 226. In practice, the filter film layer 224 disposed on the substrate 222 may be fabricated with red resin, green resin or blue resin so as to form filter units of different colors. It can be observed from
It should be explicated that an electric field used for driving liquid crystal molecules 232 may be formed between the common electrode layer 226 and the patterned pixel electrodes 214. Since the slits S1 and the strip-shaped bumps 228 can affect the electric field, the liquid crystal layer 230 may be divided into a plurality of domain sets having various alignments so that the liquid crystal molecules 232 have different tilting directions. For example, the liquid crystal molecules 232 may have four different alignments. Certainly, people of ordinary skill in the art pertinent to the present invention should know that the liquid crystal molecules 232 may also have more different alignments. The aforementioned only serves as an example and is not intended to limit the present invention. Since the liquid crystal molecules 232 have different tilting directions, all observers see from different viewing angles can have rather uniform display quality so that gray scale inversion is prevented from occurring in the display frame of the conventional TN-LCD 100 (as illustrated in
It should be noted that three adjacent color filter units C1 on the color filter substrate 220 as illustrated in
It should be noted that generally if there is misalignment in the assembling of the active device array substrate 210 and the color filter substrate 220, the strip-shaped bumps 228 on the common electrode layer 226 cannot be accurately aligned with the slits S1 on the patterned pixel electrodes 214.
Referring to
In practice, an MVA-LCD panel 200 of the present invention further includes a plurality of spacers 240 disposed between the active device array substrate 210 and the color filter substrate 220. Especially, in order to raise an aperture ratio, the photo spacer 240 are correspondingly disposed on an intersection of two adjacent color filter units C1 so as to further improve the display quality.
The present embodiment is similar to the first embodiment. In order to further improve the display quality, the slits on the patterned pixel electrodes in the present embodiment are continuous strip-shaped slits.
In summary, the MVA-LCD panel has advantages such as the color filter units arranged into delta shapes and the liquid crystal layer divided into domain sets having various alignments. Hence, both the viewing angle of the display frame and the display quality of the dynamic and static images are effectively improved. In addition, the areas where the strip-shaped bumps of the present invention extend along the boundaries of the color filter units and then fold can serve as the boundaries of the liquid crystal molecules. Therefore, the misalignment between the active device array substrate and the color filter substrate is within a reasonable range. The folding areas of the strip-shaped bumps still effectively control the arrangement of the liquid crystal molecules so as to avoid the dark stripes in the display frame. Furthermore, the strip-shaped bumps of different color filter units need not be connected with one another.
Although the present invention has been disclosed above by the embodiments, they are not intended to limit the present invention. Anybody ordinarily skilled in the art can make some modifications and alterations without departing from the spirit and scope of the present invention. Therefore, the protecting range of the present invention falls in the appended claims.
Number | Date | Country | Kind |
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96125026 | Jul 2007 | TW | national |