IP Library Granted Patent US 7,245,345
Granted Patent B2
US 7,245,345 · App. 10/929,002 · Granted Jul 17, 2007

Substrate for liquid crystal display device, manufacturing method of the same, and liquid crystal display device having the same

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Quick Facts
Patent No.
US 7,245,345
App. No.
10/929,002
Granted
Jul 17, 2007
Kind
B2
Abstract

A liquid crystal display device capable of obtaining high luminance and good display characteristics, a substrate for such a liquid crystal display device, and a manufacturing method of such a substrate, are provided. A color filter substrate holds, together with an array substrate, a liquid crystal having negative dielectric anisotropy. Color filters are formed on a glass substrate and a common electrode is formed on the color filters. Protrusions and auxiliary protrusions for regulating the alignment of the liquid crystal are formed on the common electrode so as to have different sectional shapes.

Claims (33)

1. A substrate for a liquid crystal display device, comprising:

an insulating substrate for holding a liquid crystal between the insulating substrate itself and an opposite substrate;

a plurality of resin spacers formed adjacent the insulating substrate, for regulating a cell thickness; and

a plurality of dummy patterns made of the same material as the resin spacers formed adjacent the insulating substrate in such a manner that top surfaces of the dummy patterns are lower than those of the resin spacers;

wherein base surfaces of the resin spacers are higher than those of the dummy patterns, and

further wherein heights of the resin spacers are approximately equal to heights of the dummy patterns.

2. The substrate for the liquid crystal display device according to claim 1 , wherein a total area of the resin spacers and the dummy patterns as viewed perpendicular to a surface of the substrate is 10% or more of an area of a display area.

3. A substrate for a liquid crystal display device according to claim 1 , wherein a value of d 1 –d 2 is approximately 1 μm, where d 1 is a distance between a common electrode and the top surfaces of the resin spacers and d 2 is a distance between the common electrode and the top surfaces of the dummy patterns.

4. A substrate for a liquid crystal display device, comprising:

an insulating substrate for holding a liquid crystal between the insulating substrate itself and an opposite substrate;

a plurality of resin spacers formed adjacent the insulating substrate, for regulating a cell thickness;

a plurality of dummy patterns made of the same material as the resin spacers formed adjacent the insulating substrate in such a manner that top surfaces of the dummy patterns are lower than those of the resin spacers, wherein base surfaces of the resin spacers are higher than those of the dummy patterns;

color filters formed between the insulating substrate and the resin spacers and disposed in such regions as to be opposed to respective pixel electrodes formed on the opposite substrate; and

a light shield film formed between the insulating substrate and the resin spacers and disposed in a region excluding the regions to be opposed to the respective pixel electrodes.

5. The substrate for the liquid crystal display device according to claim 4 , wherein the dummy patterns are formed on the light shield film.

6. The substrate for the liquid crystal display device according to claim 4 , further comprising dummy test patterns formed adjacent the light shield film and having a smaller area than the dummy patterns when viewed perpendicular to a surface of the substrate.

7. A liquid crystal display device comprising an array substrate having pixel regions that are defined by a plurality of bus lines intersecting alternately, a color filter substrate arranged opposite to the array substrate and having color filter in each of the pixel regions, and a liquid crystal sealed between the array substrate and the color filter substrate;

wherein either the color filter substrate or the array substrate includes:

an insulating substrate for holding a liquid crystal between the insulating substrate itself and an opposite substrate;

a plurality of resin spacers formed adjacent the insulating substrate, for regulating a cell thickness; and

a plurality of dummy patterns made of the same material as the resin spacers formed adjacent the insulating substrate in such a manner that top surfaces of the dummy patterns are lower than those of the resin spacers;

wherein base surfaces of the resin spacers are higher than those of the dummy patterns, and

further wherein heights of the resin spacers are approximately equal to heights of the dummy patterns.

8. A substrate for a liquid crystal display device, comprising:

an insulating substrate for holding a liquid crystal between the insulating substrate itself and an opposite substrate;

a plurality of resin spacers formed adjacent the insulating substrate, for regulating a cell thickness; and

a plurality of dummy patterns made of the same material as the resin spacers formed adjacent the insulating substrate in such a manner that top surfaces of the dummy patterns are lower than those of the resin spacers;

wherein base surfaces of the resin spacers are higher than those of the dummy patterns;

further comprising dummy test patterns formed adjacent the insulating substrate and having a smaller area than the dummy patterns when viewed perpendicular to a surface of the substrate.

9. The substrate for the liquid crystal display device according to claim 8 , wherein the dummy test patterns are made of the same material as the resin spacers.

10. The substrate for the liquid crystal display device according to claim 9 , wherein the material of the resin spacers is a novolak resin type photosensitive photoresist.

11. The substrate for the liquid crystal display device according to claim 8 , wherein the dummy test patterns are formed by using an exposure mask having a pattern formation width that is close to a resolution limit.

12. The substrate for the liquid crystal display device according to claim 11 , wherein the pattern formation width is in a range of 2 μm to 8 μm.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 14, 2005
From: FUJITSU LIMITED
To: SHARP KABUSHIKI KAISHA
Reel/Frame 016345/0210 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 13, 2005
From: FUJITSU DISPLAY TECHNOLOGIES CORPORATION
To: FUJITSU LIMITED
Reel/Frame 016345/0310 →