IP Library Granted Patent US 11,635,660
Granted Patent B2
US 11,635,660 · App. 17/518,576 · Granted Apr 25, 2023

Liquid crystal display device and manufacturing method therefor

Inventors: Koichi Miyachi (Tokyo, JP); Yoshihiko Kuroda (Tokyo, JP); Ryuzo Ono (Tokyo, JP); Syunsuke Kawamata (Tokyo, JP)
Assignee: JSR CORPORATION
G02F1/133746G02F1/13378G02F1/133711G02F1/133757G02F1/133761G02F1/134309G02F1/13439
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Quick Facts
Patent No.
US 11,635,660
App. No.
17/518,576
Granted
Apr 25, 2023
Kind
B2
Abstract

This liquid crystal display device has a plurality of pixels. Each pixel in the plurality of pixels includes first to fourth alignment regions; these first to fourth alignment regions are arranged in the longitudinal direction of the pixels, and the difference between any two alignment orientations in the first to fourth alignment regions is approximately equal to an integer multiple of 90 degrees. Of the pre-tilt angles defined by a first alignment film and a second alignment film in each of the first to fourth alignment regions, one pre-tilt angle is less than 90 degrees and the other pre-tilt angle is substantially 90 degrees. The optical alignment film is formed using a polymer having an optical alignment group in the side chain, and the content of the optical alignment group in the side chain of the polymer is less than 1.1 mmol/g.

Claims (72)

1. A liquid crystal display device having a plurality of pixels, comprising:

a first substrate;

a second substrate configured to face the first substrate;

a liquid crystal layer provided between the first substrate and the second substrate and configured to contain liquid crystal molecules;

a first alignment film formed on the first substrate and configured to align the liquid crystal molecules; and

a second alignment film formed on the second substrate and configured to align the liquid crystal molecules,

wherein at least one of the first alignment film and the second alignment film is an optical alignment film,

each of the pixels in the plurality of pixels has a first alignment region, a second alignment region, a third alignment region, and a fourth alignment region as regions in which alignment orientations of the liquid crystal molecules are different from each other, and the first alignment region, the second alignment region, the third alignment region, and the fourth alignment region are arranged and disposed in a longitudinal direction of the pixel,

a difference between any two alignment orientations among the alignment orientation of the first alignment region, the alignment orientation of the second alignment region, the alignment orientation of the third alignment region, and the alignment orientation of the fourth alignment region is approximately equal to an integral multiple of 90 degrees,

the plurality of pixels is arranged and disposed in a transverse direction of the pixels so that the alignment orientations of the alignment regions adjacent to each other in the transverse direction of the pixel are the same,

in each of the first to fourth alignment regions, one of a pre-tilt angle defined by the first alignment film and a pre-tilt angle defined by the second alignment film is less than 90 degrees, and the other is substantially 90 degrees,

the optical alignment film is formed using a polymer having an optical alignment group in a side chain, and

a content of the optical alignment group in the side chain of the polymer is less than 1.1 mmol/g.

2. The liquid crystal display device according to claim 1 , wherein the polymer is a polymer having a structural unit derived from a maleimide compound.

3. A liquid crystal display device having a plurality of pixels, comprising:

a first substrate;

a second substrate configured to face the first substrate;

a liquid crystal layer provided between the first substrate and the second substrate and configured to contain liquid crystal molecules;

a first alignment film formed on the first substrate and configured to align the liquid crystal molecules; and

a second alignment film formed on the second substrate and configured to align the liquid crystal molecules,

wherein at least one of the first alignment film and the second alignment film is an optical alignment film,

each of the pixels in the plurality of pixels has a first alignment region, a second alignment region, a third alignment region, and a fourth alignment region as regions in which alignment orientations of the liquid crystal molecules are different from each other, and the first alignment region, the second alignment region, the third alignment region, and the fourth alignment region are arranged and disposed in a longitudinal direction of the pixel,

a difference between any two alignment orientations among the alignment orientation of the first alignment region, the alignment orientation of the second alignment region, the alignment orientation of the third alignment region, and the alignment orientation of the fourth alignment region is approximately equal to an integral multiple of 90 degrees,

the plurality of pixels is arranged and disposed in a transverse direction of the pixels so that the alignment orientations of the alignment regions adjacent to each other in the transverse direction of the pixels are the same,

in each of the first to fourth alignment regions, one of a pre-tilt angle defined by the first alignment film and a pre-tilt angle defined by the second alignment film is less than 90 degrees, and the other is substantially 90 degrees, and

at least one of the first alignment film and the second alignment film is formed by using a polymer having a structural unit derived from a maleimide compound.

4. The liquid crystal display device according to claim 1 , wherein one of the first alignment film and the second alignment film is an optical alignment film which is dividedly exposed, and the other is not dividedly exposed.

5. The liquid crystal display device according to claim 4 , wherein film compositions of the first alignment film and the second alignment film are different from each other.

6. The liquid crystal display device according to claim 4 , wherein film thicknesses of the first alignment film and the second alignment film are different from each other.

7. The liquid crystal display device according to claim 1 , wherein the first alignment film and the second alignment film are optical alignment films, and

in some of the alignment regions of the first to fourth alignment regions, the pre-tilt angle defined by the first alignment film is less than 90 degrees, and the pre-tilt angle defined by the second alignment film is substantially 90 degrees, and in the remaining alignment regions, the pre-tilt angle defined by the first alignment film is substantially 90 degrees, and the pre-tilt angle defined by the second alignment film is less than 90 degrees.

8. A liquid crystal display device having a plurality of pixels, comprising:

a first substrate;

a second substrate configured to face the first substrate;

a liquid crystal layer provided between the first substrate and the second substrate and configured to contain liquid crystal molecules;

a first alignment film formed on the first substrate and configured to align the liquid crystal molecules; and

a second alignment film formed on the second substrate and configured to align the liquid crystal molecules,

wherein the first alignment film and the second alignment film are optical alignment films,

each of the pixels in the plurality of pixels has a first alignment region, a second alignment region, a third alignment region, and a fourth alignment region as regions in which alignment orientations of the liquid crystal molecules are different from each other, and the first alignment region, the second alignment region, the third alignment region, and the fourth alignment region are arranged and disposed in a longitudinal direction of the pixel,

a difference between any two alignment orientations among the alignment orientation of the first alignment region, the alignment orientation of the second alignment region, the alignment orientation of the third alignment region, and the alignment orientation of the fourth alignment region is approximately equal to an integral multiple of 90 degrees,

the plurality of pixels is arranged and disposed in a transverse direction of the pixels so that the alignment orientations of the alignment regions adjacent to each other in the transverse direction of the pixels are the same, and

in some of the alignment regions of the first to fourth alignment regions, a pre-tilt angle defined by a first portion of the first alignment film, which is subjected to an alignment exposure, is less than 90 degrees, a pre-tilt angle defined by a first portion of the second alignment film, which is not subjected to the alignment exposure, is substantially 90 degrees, and in the remaining alignment regions, the pre-tilt angle defined by a second portion of the first alignment film, which is not subjected to the alignment exposure, is substantially 90 degrees, and the pre-tilt angle defined by a second portion of the second alignment film, which is subjected to the alignment exposure, is less than 90 degrees.

9. A liquid crystal display device having a plurality of pixels, comprising:

a first substrate;

a second substrate configured to face the first substrate;

a liquid crystal layer provided between the first substrate and the second substrate and configured to contain liquid crystal molecules;

a first alignment film formed on the first substrate and configured to align the liquid crystal molecules; and

a second alignment film formed on the second substrate and configured to align the liquid crystal molecules,

wherein at least one of the first alignment film and the second alignment film is an optical alignment film,

each of the pixels in the plurality of pixels has a first alignment region, a second alignment region, a third alignment region, and a fourth alignment region as regions in which alignment orientations of the liquid crystal molecules are different from each other, and the first alignment region, the second alignment region, the third alignment region, and the fourth alignment region are arranged and disposed in a longitudinal direction of the pixel,

a difference between any two alignment orientations among the alignment orientation of the first alignment region, the alignment orientation of the second alignment region, the alignment orientation of the third alignment region, and the alignment orientation of the fourth alignment region is approximately equal to an integral multiple of 90 degrees,

the plurality of pixels is arranged and disposed in a transverse direction of the pixels so that the alignment orientations of the alignment regions adjacent to each other in the transverse direction of the pixels are the same,

in each of the first to fourth alignment regions, one of a pre-tilt angle defined by the first alignment film and a pre-tilt angle defined by the second alignment film is less than 90 degrees, and the other is substantially 90 degrees,

one of the first substrate and the second substrate has a pixel electrode having a plurality of slits extending in an oblique direction with respect to each side of the pixel, and

when an electrode width of the pixel electrode is L, a slit width of the pixel electrode is S, and a thickness of the liquid crystal layer is d,

wherein L<d and (d/2)<S<d.

10. The liquid crystal display device according to claim 1 ,

wherein the liquid crystal layer contains a chiral agent.

11. The liquid crystal display device according to claim 1 , wherein one of the first substrate and the second substrate has a pixel electrode having an opening portion formed therein, and

a longitudinal direction of the opening portion and a direction in which the alignment orientation of the alignment region in which the opening portion is located is projected onto the substrate having the pixel electrode are approximately parallel to each other.

12. A method for manufacturing a liquid crystal display device having a plurality of pixels, the liquid crystal display device comprising:

a first substrate;

a second substrate configured to face the first substrate;

a liquid crystal layer provided between the first substrate and the second substrate and configured to contain liquid crystal molecules;

a first alignment film formed on the first substrate and configured to align the liquid crystal molecules; and

a second alignment film formed on the second substrate and configured to align the liquid crystal molecules,

wherein the first alignment film and the second alignment film are formed by applying a polymer composition on the substrates and heating the substrates, and at least one of the first alignment film and the second alignment film is an optical alignment film,

each of the pixels in the plurality of pixels is formed to have a first alignment region, a second alignment region, a third alignment region, and a fourth alignment region as regions in which alignment orientations of the liquid crystal molecules are different from each other, and the first alignment region, the second alignment region, the third alignment region, and the fourth alignment region are arranged and disposed in a longitudinal direction of the pixel,

a difference between any two alignment orientations among the alignment orientation of the first alignment region, the alignment orientation of the second alignment region, the alignment orientation of the third alignment region, and the alignment orientation of the fourth alignment region is approximately equal to an integral multiple of 90 degrees,

the plurality of pixels is arranged and disposed in a transverse direction of the pixels so that the alignment orientations of the alignment regions adjacent to each other in the transverse direction of the pixels are the same,

in each of the first to fourth alignment regions, one of a pre-tilt angle defined by the first alignment film and a pre-tilt angle defined by the second alignment film is less than 90 degrees, and the other is substantially 90 degrees, and

at least one of a heating temperature when the first alignment film and the second alignment film are formed, a heating time when the first alignment film and the second alignment film are formed, and film compositions of the first alignment film and the second alignment film is made different between the first alignment film and the second alignment film.

Assignments (3)
MERGER Recorded Mar 23, 2026
From: JSR CORPORATION
To: JICC-02, CO., LTD
Reel/Frame 075191/0149 →
CHANGE OF NAME Recorded Mar 23, 2026
From: JICC-02 CO., LTD
To: JSR CORPORATION
Reel/Frame 075192/0023 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 5, 2021
From: MIYACHI, KOICHI; KURODA, YOSHIHIKO; ONO, RYUZO; KAWAMATA, SYUNSUKE
To: JSR CORPORATION
Reel/Frame 058026/0478 →
Priority Claims (1)
JP JP2019-088635 · May 8, 2019 · national
Continuity (2)
Continuation PCTJP2020015240 · Apr 2, 2020
Related Publication 20220057677A1 · Feb 24, 2022