IP Library › Granted Patent US 11,573,460
Granted Patent B2
US 11,573,460 · App. 17/045,801 · Granted Feb 7, 2023

Liquid crystal display device and electronic apparatus

Inventor: Tsuyoshi Okazaki (Kanagawa, JP)
Assignee: SONY CORPORATION
G02F1/134309G02F1/1337G02F1/133526G02F1/134336G02F2203/01G02F2203/02
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Quick Facts
Patent No.
US 11,573,460
App. No.
17/045,801
Granted
Feb 7, 2023
Kind
B2
Abstract

A liquid crystal display device includes a plurality of pixels, each pixel includes a first electrode, a second electrode opposed to the first electrode, and a liquid crystal layer between the second electrode and the first electrode; a first region in each of the plurality of pixels having a first optical path length between the first electrode and the second electrode; a second region in each of the plurality of pixels having a second optical path length between the first electrode and the second electrode, the second optical path length being shorter than the first optical path length, the second region has the liquid crystal layer equal in thickness to the liquid crystal layer in the first region; and an optical path length adjusting layer between the liquid crystal layer and the first electrode in the first region.

Claims (46)

1. A liquid crystal display device, comprising:

a plurality of pixels, wherein each pixel of the plurality of pixels includes:

a first electrode;

a second electrode opposite to the first electrode;

a lens above the second electrode;

a cover layer in direct contact with the second electrode and the lens, wherein the cover layer is configured to adjust a focal length of the lens;

a liquid crystal layer between the second electrode and the first electrode;

a first region that has a first optical path length between the first electrode and the second electrode;

a second region that has a second optical path length between the first electrode and the second electrode, wherein

a thickness of the liquid crystal layer in the second region is equal to a thickness of the liquid crystal layer in the first region; and

an optical path length adjusting layer between the liquid crystal layer and the second electrode, wherein

a thickness of the optical path length adjusting layer varies in the first region and the second region,

in the first region, the thickness of the optical path length adjusting layer increases to a maximum value at a first position and decreases after the first position,

in the second region, the thickness of the optical path length adjusting layer decreases to a minimum value at a second position and increases after the second position, and

the first optical path length in the first region is longer than the second optical path length in the second region.

2. The liquid crystal display device according to claim 1 , wherein a difference between the first optical path length and the second optical path length is 1/4 of a wavelength A of light that enters the liquid crystal layer.

3. The liquid crystal display device according to claim 1 , further comprising an alignment film between the optical path length adjusting layer and the liquid crystal layer in the first region, and between the second electrode and the liquid crystal layer in the second region, wherein

the alignment film is on a planarized surface across the first region and the second region.

4. The liquid crystal display device according to claim 1 , further comprising:

a drive substrate; and

a counter substrate opposite to the drive substrate, wherein

the first electrode, the liquid crystal layer, and the second electrode are between the drive substrate and the counter substrate.

5. The liquid crystal display device according to claim 4 , wherein the first electrode, the liquid crystal layer, the second electrode, and the counter substrate are in this order on the drive substrate.

6. The liquid crystal display device according to claim 1 , wherein an area of the first region is equal to an area of the second region in each pixel of the plurality of pixels.

7. The liquid crystal display device according to claim 1 , wherein the plurality of pixels is in a matrix form.

8. The liquid crystal display device according to claim 7 , wherein the first region is in a band shape across the plurality of pixels.

9. The liquid crystal display device according to claim 1 , wherein the optical path length adjusting layer has a curved cross-sectional shape.

10. The liquid crystal display device according to claim 1 , wherein the thickness of the optical path length adjusting layer in the second region is smaller than the thickness of the optical path length adjusting layer in the first region.

11. The liquid crystal display device according to claim 1 , wherein the optical path length adjusting layer includes silicon oxide.

12. The liquid crystal display device according to claim 1 , wherein the liquid crystal display device comprises a transmissive liquid crystal display device.

13. An electronic apparatus, including:

a liquid crystal display device, the liquid crystal display device comprising:

a plurality of pixels, wherein each pixel of the plurality of pixels includes:

a first electrode;

a second electrode opposite to the first electrode;

a lens above the second electrode;

a cover layer in direct contact with the second electrode and the lens, wherein the cover layer is configured to adjust a focal length of the lens;

a liquid crystal layer between the second electrode and the first electrode;

a first region that has a first optical path length between the first electrode and the second electrode;

a second region that has a second optical path length between the first electrode and the second electrode, wherein

a thickness of the liquid crystal layer in the second region equal to a thickness of the liquid crystal layer in the first region; and

an optical path length adjusting layer between the liquid crystal layer and the second electrode, wherein

a thickness of the optical path length adjusting layer varies in the first region and the second region,

in the first region, the thickness of the optical path length adjusting layer increases to a maximum value at a first position and decreases after the first position,

in the second region, the thickness of the optical path length adjusting layer decreases to a minimum value at a second position and increases after the second position, and

the first optical path length in the first region is longer than the second optical path length in the second region.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 7, 2020
From: OKAZAKI, TSUYOSHI
To: SONY CORPORATION
Reel/Frame 054262/0482 →
Priority Claims (1)
JP JP2018-078535 · Apr 16, 2018 · national
Continuity (1)
Related Publication 20210063788A1 · Mar 4, 2021