IP Library Granted Patent US 9,798,198
Granted Patent B2
US 9,798,198 · App. 14/190,561 · Granted Oct 24, 2017

Liquid crystal display device

Inventors: Keisuke Takano (Tokyo, JP); Jin Hirosawa (Tokyo, JP); Arihiro Takeda (Tokyo, JP); Hirokazu Morimoto (Tokyo, JP)
Assignee: Japan Display Inc.
G02F1/134309G02F1/134363G02F2001/13606G02F2001/134318G02F2001/134372G02F2001/134381
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Quick Facts
Patent No.
US 9,798,198
App. No.
14/190,561
Granted
Oct 24, 2017
Kind
B2
Abstract

According to one embodiment, a liquid crystal display device includes a first interlayer insulation film located above a first gate line and a second gate line, a first common electrode extending over the first interlayer insulation film, a second interlayer insulation film covering the first common electrode, and a first pixel electrode disposed on the second interlayer insulation film. The first common electrode extends, from a position opposed to the first pixel electrode, beyond the source line in the first direction and beyond the gate line in the second direction.

Claims (66)

1. A display device comprising:

a first substrate including:

an active area in which a plurality of pixels are arranged in a matrix,

a plurality of gate lines,

a first insulation film on the plurality of gate lines,

a plurality of source lines on the first insulation film,

a second insulation film on the plurality of source lines,

a switching element electrically connected to the gate line and the source line in each pixel,

a first common electrode on the second insulation film, extending over substantially the entire active area and formed commonly over the plurality of pixels,

a capacitance insulation film on the first common electrode,

a pixel electrode on the capacitance insulation film, electrically connected to the switching element in each pixel, and

a first vertical alignment film covering the pixel electrode and the capacitance insulation film,

a second substrate including:

a second common electrode opposed to the first common electrode, and extending over substantially the entire active area and formed commonly over the plurality of pixels, and

a second vertical alignment film covering the second common electrode; and

a liquid crystal layer interposed between the first vertical alignment film and the second vertical alignment film, and composed of a liquid crystal composition including negative-type liquid crystal molecules,

wherein the pixel electrode is formed without any slit.

2. The display device of claim 1 , wherein the second common electrode has the same potential as the first common electrode.

3. The display device of claim 2 , wherein the first common electrode is formed of a transparent, electrically conductive material.

4. The display device of claim 3 , wherein the entire pixel electrode overlaps the first common electrode.

5. The display device of claim 4 , wherein the capacitance insulation film has a less film thickness than the second insulation film.

6. The display device of claim 1 , wherein the second common electrode includes an alignment control member in an area overlapping the pixel electrode.

7. The display device of claim 1 , wherein the first common electrode overlaps the gate lines and the source lines.

8. A display device comprising:

a first substrate including:

an active area in which a plurality of pixels are arranged in a matrix,

a plurality of gate lines,

a first insulation film on the plurality of gate lines,

a plurality of source lines on the first insulation film,

a second insulation film on the plurality of source lines,

a switching element electrically connected to the gate line and the source line in each pixel,

a first common electrode on the second insulation film, extending over substantially the entire active area and formed commonly over the plurality of pixels,

a capacitance insulation film on the first common electrode,

a pixel electrode on the capacitance insulation film, electrically connected to the switching element in each pixel, and

a first vertical alignment film covering the pixel electrode and the capacitance insulation film,

a second substrate including:

a second common electrode opposed to the first common electrode, and extending over substantially the entire active area and formed commonly over the plurality of pixels, and

a second vertical alignment film covering the second common electrode; and

a liquid crystal layer interposed between the first vertical alignment film and the second vertical alignment film, and composed of a liquid crystal composition including negative-type liquid crystal molecules,

wherein the second common electrode includes an alignment control member in an area overlapping the pixel electrode, and the pixel electrode is formed without any slit.

9. The display device of claim 8 , wherein the alignment control member has a rectangular shape extending parallel to the gate lines.

10. The display device of claim 8 , wherein the alignment control member has a rectangular shape extending parallel to the source lines.

11. The display device of claim 8 , wherein the alignment control member has a cross shape.

12. The display device of claim 8 , wherein the alignment control member is a projection.

13. The display device of claim 8 , wherein the first common electrode overlaps the gate lines and the source lines.

14. A display device comprising:

a first substrate including:

an active area in which a plurality of pixels are arranged in a matrix,

a plurality of gate lines,

a first insulation film on the plurality of gate lines,

a plurality of source lines on the first insulation film,

a second insulation film on the plurality of source lines,

a switching element electrically connected to the gate line and the source line in each pixel,

a first common electrode on the second insulation film, extending over substantially the entire active area and formed commonly over the plurality of pixels,

a capacitance insulation film on the first common electrode,

a pixel electrode on the capacitance insulation film, electrically connected to the switching element in each pixel, and

a first vertical alignment film covering the pixel electrode and the capacitance insulation film,

a second substrate including:

a second common electrode opposed to the first common electrode, and extending over substantially the entire active area and formed commonly over the plurality of pixels, and

a second vertical alignment film covering the second common electrode; and

a liquid crystal layer interposed between the first vertical alignment film and the second vertical alignment film, and composed of a liquid crystal composition including negative-type liquid crystal molecules,

wherein the second substrate further includes a light-shield layer partitioning each pixel in the active area and forming a plurality of aperture portions, and the first common electrode entirely overlaps the plurality of aperture portions,

wherein the light-shield layer overlaps the plurality of gate lines and the plurality of source lines, and the first common electrode overlaps the gate lines and the source lines.

15. The display device of claim 14 , wherein the pixel electrode and the switching element are connected to each other via a contact hole formed in the second insulation film and the capacitance insulation film, and the first common electrode has an opening portion in an area in which the contact hole is formed.

16. The display device of claim 14 , wherein the pixel electrode is formed without any slit.

17. The display device of claim 14 , wherein the second common electrode includes an alignment control member in an area overlapping the pixel electrode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2025
From: JAPAN DISPLAY INC.
To: MAGNOLIA WHITE CORPORATION
Reel/Frame 072130/0313 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 26, 2014
From: TAKANO, KEISUKE; HIROSAWA, JIN; TAKEDA, ARIHIRO; MORIMOTO, HIROKAZU
To: JAPAN DISPLAY INC.
Reel/Frame 032305/0252 →
Priority Claims (1)
JP 2013-048269 · Mar 11, 2013 · national
Continuity (1)
Related Publication 20140253851A1 · Sep 11, 2014