IP Library Granted Patent US 12663685
Granted Patent B2
US 12663685 · App. 18/296,386 · Granted Jun 23, 2026

Display device

Inventor: Hirotaka Hayashi (Tokyo, JP)
Assignee: JAPAN DISPLAY INC.
G02F1/167G02F1/16761G02F1/16766G09G3/344
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Quick Facts
Patent No.
US 12663685
App. No.
18/296,386
Granted
Jun 23, 2026
Kind
B2
Abstract

According to one embodiment, an electrophoretic display device includes an array substrate including a base material, a common electrode on the base material, a plurality of pixel electrodes provided to face the common electrode, and an insulating layer provided between the common electrode and the pixel electrodes, a counter-substrate facing the array substrate, an electrophoretic layer including a plurality of electrophoretic elements and disposed between the array substrate and the counter-substrate, and a drive unit which drives the electrophoretic elements by a lateral electric field generated between the pixel electrodes and the common electrode.

Claims (52)

1 . An electrophoretic display device comprising:

an array substrate including a base material, a common electrode provided on the base material, a plurality of pixel electrodes provided to face the common electrode, and an insulating layer provided between the common electrode and the pixel electrodes;

a counter-substrate facing the array substrate;

an electrophoretic layer including a plurality of electrophoretic elements and disposed between the array substrate and the counter-substrate;

a drive unit which drives the electrophoretic elements by a lateral electric field generated between the pixel electrodes and the common electrode; and

a display region including a plurality of pixels arrayed in a matrix,

wherein the common electrode is provided over the plurality of pixels,

the pixel electrodes are arrayed in a matrix, and in one pixel, at least a part of the pixel electrode faces the common electrode in plan view, and

in one pixel, the common electrode includes an opening, and the pixel electrode faces the opening in plan view.

2 . The electrophoretic display device of claim 1 , wherein in one pixel, a portion of the pixel electrode excluding a peripheral edge portion faces the common electrode in plan view.

3 . The electrophoretic display device of claim 1 , wherein the opening of the common electrode is formed in a spiral shape, and the pixel electrode is formed in a spiral shape and faces the opening.

4 . The electrophoretic display device of claim 1 , wherein the opening of the common electrode is formed in an annular shape, and the pixel electrode is formed in an annular shape and faces the opening.

5 . The electrophoretic display device of claim 1 , wherein in one pixel, the pixel electrode has an opening, and the opening of the pixel electrode faces the common electrode in plan view.

6 . The electrophoretic display device of claim 1 , wherein in one pixel, the pixel electrode includes an opening, the pixel electrode faces the opening of the common electrode and the opening of the pixel electrode faces the common electrode in plan view.

7 . The electrophoretic display device of claim 6 , wherein in one pixel, the common electrode includes a plurality of openings, the pixel electrode includes a plurality of openings, the pixel electrode faces the plurality of openings of the common electrode and the plurality of openings of the pixel electrode faces the common electrode in plan view.

8 . The electrophoretic display device of claim 7 , wherein each of the plurality of openings of the common electrode is formed in an annular shape, and at least one of the plurality of openings of the pixel electrode is formed in an annular shape.

9 . The electrophoretic display device of claim 1 , wherein in one pixel, the common electrode includes a plurality of openings provided apart from each other, and the pixel electrode includes a plurality of divisional electrodes provided to face the openings of the common electrode respectively.

10 . The electrophoretic display device of claim 9 , wherein the plurality of openings of the common electrode are formed in the same shape and size, and the plurality of divisional electrodes are formed in the same shape and size.

11 . The electrophoretic display device of claim 9 , wherein in one pixel, the plurality of openings of the common electrode are arranged in a matrix at intervals in a first direction and a second direction intersecting the first direction.

12 . The electrophoretic display device of claim 9 , wherein in one pixel, the plurality of openings of the common electrode are arranged in a staggered manner at intervals in a first direction and a second direction intersecting the first direction.

13 . The electrophoretic display device of claim 1 , wherein the counter-substrate does not include a counter-electrode.

14 . The electrophoretic display device of claim 1 , further comprising:

a counter-electrode provided on the counter-substrate and facing the electrophoretic layer,

wherein the counter-electrode includes a plurality of openings respectively facing the pixel electrodes, and

wherein the drive unit drives the electrophoretic elements by an oblique electric field generated between the pixel electrode and the counter-electrode.

15 . The electrophoretic display device of claim 14 , further comprising:

a display region including a plurality of pixels arrayed in a matrix,

wherein the counter-electrode is formed in a lattice shape having a plurality of openings, and faces a boundary region between the pixels in plan view.

16 . The electrophoretic display device of claim 15 , wherein the counter-electrode includes a plurality of first columns each extending in a first direction, and a plurality of second columns each extending in a second direction intersecting the first direction and intersecting the first columns.

17 . The electrophoretic display device of claim 16 , wherein at least one of the first columns and the second columns extends while being curved in a wave shape.

18 . An electrophoretic display device comprising:

an array substrate including a base material, a common electrode provided on the base material, a plurality of pixel electrodes provided to face the common electrode, and an insulating layer provided between the common electrode and the pixel electrodes;

a counter-substrate facing the array substrate;

an electrophoretic layer including a plurality of electrophoretic elements and disposed between the array substrate and the counter-substrate;

a drive unit which drives the electrophoretic elements by a lateral electric field generated between the pixel electrodes and the common electrode;

a counter-electrode provided on the counter-substrate and facing the electrophoretic layer; and

a display region including a plurality of pixels arrayed in a matrix,

wherein the counter-electrode includes a plurality of openings respectively facing the pixel electrodes,

wherein the drive unit drives the electrophoretic elements by an oblique electric field generated between the pixel electrode and the counter-electrode,

wherein, in one pixel, the counter-electrode includes a plurality of openings arranged at intervals in a first direction and a second direction intersecting the first direction, and

wherein, in one pixel, the pixel electrode includes a plurality of divisional electrodes respectively facing the plurality of openings of the counter-electrode in plan view.

19 . An electrophoretic display device comprising:

an array substrate including a base material, a common electrode provided on the base material, a plurality of pixel electrodes provided to face the common electrode, and an insulating layer provided between the common electrode and the pixel electrodes;

a counter-substrate facing the array substrate;

an electrophoretic layer including a plurality of electrophoretic elements and disposed between the array substrate and the counter-substrate;

a drive unit which drives the electrophoretic elements by a lateral electric field generated between the pixel electrodes and the common electrode;

a counter-electrode provided on the counter-substrate and facing the electrophoretic layer; and

a display region including a plurality of pixels arrayed in a matrix,

wherein the counter-electrode includes a plurality of openings respectively facing the pixel electrodes,

wherein the drive unit drives the electrophoretic elements by an oblique electric field generated between the pixel electrode and the counter-electrode,

wherein, in one pixel, the counter-electrode includes a plurality of openings arranged at intervals in a first direction and a second direction intersecting the first direction, and

wherein, in one pixel, the pixel electrode includes a plurality of openings respectively facing the counter-electrode in plan view.