IP Library Granted Patent US 9,804,469
Granted Patent B2
US 9,804,469 · App. 14/850,482 · Granted Oct 31, 2017

Liquid crystal panel, liquid crystal display device including liquid crystal panel, and method of manufacturing liquid crystal panel

Inventors: Koji Yonemura (Tokyo, JP); Hiroshi Umeda (Tokyo, JP); Kazunori Okumoto (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
G02F1/1393G02F1/133634G02F1/133707G02F2001/133531G02F2001/133749G02F2001/133773G02F2001/134372
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Quick Facts
Patent No.
US 9,804,469
App. No.
14/850,482
Granted
Oct 31, 2017
Kind
B2
Abstract

A pretilt angle of a liquid crystal molecule on the side of an array substrate is formed such that the liquid crystal molecule goes away from the array substrate in a direction to the left when viewed from a position facing a display surface of a liquid crystal panel. The pretilt angle on the side of a counter substrate is formed such that the liquid crystal molecule goes away from the counter substrate in a direction to the right when viewed from a position facing the display surface. The directions to the left and the right define a direction X corresponding to a horizontal direction of the liquid crystal panel. A direction of a delay phase axis of a biaxial phase difference film is arranged in a position rotated anticlockwise in an angular range from over 0° to 1° from the direction X.

Claims (27)

1. A liquid crystal panel comprising an array substrate, a counter substrate arranged to face said array substrate, and a liquid crystal layer interposed between said array substrate and said counter substrate, said array substrate including multiple switching elements arranged in a matrix, a pixel electrode connected to said switching elements, and a counter electrode capable of forming a fringe electric field between said counter electrode and said pixel electrode, said switching elements, said pixel electrode, and said counter electrode being provided on an insulating substrate, wherein

one of said pixel electrode and said counter electrode is formed as a slit electrode having a slit portion and the other of said pixel electrode and said counter electrode is stacked over said slit electrode at said insulating substrate side with respect to said slit electrode with an insulating film interposed therebetween,

said array substrate includes a biaxial phase difference film and an array substrate polarizing plate arranged in this order on a surface of said insulating substrate opposite a side thereof facing said liquid crystal layer,

said counter substrate includes a counter substrate polarizing plate arranged on a side of said counter substrate opposite a side thereof facing said liquid crystal layer,

said slit portion of said slit electrode extends in a direction forming an angle exceeding 0° and not exceeding 15° relative to a horizontal direction of said liquid crystal panel in use,

a pretilt angle of a liquid crystal molecule forming said liquid crystal layer on the side of said array substrate is formed such that said liquid crystal molecule goes away from said array substrate in a direction to the left when viewed from a position facing a display surface of said liquid crystal panel, said direction to the left defining said horizontal direction, and said pretilt angle on the side of said counter substrate is formed such that said liquid crystal molecule goes away from said counter substrate in a direction to the right when viewed from a position facing said display surface of said liquid crystal panel, said direction to the right defining said horizontal direction, and

one of a direction of a delay phase axis of said biaxial phase difference film and a direction of an absorption axis of said array substrate polarizing plate is arranged in a position rotated anticlockwise in an angular range from over 0° to 1° from said horizontal direction or one of a direction of an absorption axis of said counter substrate polarizing plate and an alignment direction of said liquid crystal molecule is arranged in a position rotated clockwise in an angular range from over 0° to 1° from said horizontal direction.

2. The liquid crystal panel according to claim 1 , wherein

said insulating substrate, said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate are each formed into a quadrilateral configuration, and

each of said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate has at least one end side of an outer shape thereof arranged parallel to at least one end side of an outer shape of said insulating substrate.

3. A liquid crystal display device comprising:

the liquid crystal panel as recited in claim 1 ; and

an illumination unit to illuminate said liquid crystal panel.

4. A method of manufacturing a liquid crystal panel comprising an array substrate, a counter substrate arranged to face said array substrate, and a liquid crystal layer interposed between said array substrate and said counter substrate, said array substrate including multiple switching elements arranged in a matrix, a pixel electrode connected to said switching elements, and a counter electrode capable of forming a fringe electric field between said counter electrode and said pixel electrode, said switching elements, said pixel electrode, and said counter electrode being provided on an insulating substrate,

the method comprising the steps of:

forming one of said pixel electrode and said counter electrode as a slit electrode having a slit portion and stacking the other of said pixel electrode and said counter electrode over said slit electrode at said insulating substrate side with respect to said slit electrode interposing an insulating film therebetween;

providing a biaxial phase difference film and an array substrate polarizing plate in this order on a surface of said insulating substrate of said array substrate opposite a side thereof facing said liquid crystal layer;

providing a counter substrate polarizing plate on a side of said counter substrate opposite a side thereof facing said liquid crystal layer;

forming said slit electrode such that said slit portion extends in a direction forming an angle exceeding 0° and not exceeding 15° relative to a horizontal direction of said liquid crystal panel in use;

setting a pretilt angle of a liquid crystal molecule forming said liquid crystal layer on the side of said array substrate such that said liquid crystal molecule goes away from said array substrate in a direction to the left when viewed from a position facing a display surface of said liquid crystal panel, said direction to the left defining said horizontal direction, and setting said pretilt angle on the side of said counter substrate such that said liquid crystal molecule goes away from said counter substrate in a direction to the right when viewed from a position facing said display surface of said liquid crystal panel, said direction to the right defining said horizontal direction; and

arranging one of a direction of a delay phase axis of said biaxial phase difference film and a direction of an absorption axis of said array substrate polarizing plate in a position rotated anticlockwise in an angular range from over 0° to 1° from said horizontal direction or arranging one of a direction of an absorption axis of said counter substrate polarizing plate and an alignment direction of said liquid crystal molecule in a position rotated clockwise in an angular range from over 0° to 1° from said horizontal direction.

5. The method of manufacturing a liquid crystal panel according to claim 4 , wherein

said insulating substrate, said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate are each formed into a quadrilateral configuration, and

each of said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate is aligned such that at least one end side of an outer shape of each of said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate becomes parallel to at least one end side of an outer shape of said insulating substrate.

6. The method of manufacturing a liquid crystal panel according to claim 4 , wherein

an alignment mark is formed in a position opposite to a position where one of said direction of said delay phase axis of said biaxial phase difference film and said direction of said absorption axis of said array substrate polarizing plate is to be arranged or opposite to a position where one of said direction of said absorption axis of said counter substrate polarizing plate and said alignment direction of said liquid crystal molecule is to be arranged, and

each of said biaxial phase difference film, said array substrate polarizing plate, and said counter substrate polarizing plate is aligned such that said alignment mark becomes parallel to at least one end side of an outer shape of said insulating substrate.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 15, 2021
From: MITSUBISHI ELECTRIC CORPORATION
To: TRIVALE TECHNOLOGIES
Reel/Frame 057651/0234 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 10, 2015
From: YONEMURA, KOJI; UMEDA, HIROSHI; OKUMOTO, KAZUNORI
To: MITSUBISHI ELECTRIC CORPORATION
Reel/Frame 036535/0192 →
Priority Claims (1)
JP 2014-195953 · Sep 26, 2014 · national
Continuity (1)
Related Publication 20160091762A1 · Mar 31, 2016