IP Library Granted Patent US 12,646,464
Granted Patent B2
US 12,646,464 · App. 19/043,603 · Granted Jun 2, 2026

Display apparatus

Inventors: Kazuyoshi Omata (Tokyo, JP); Hiroyuki Kimura (Tokyo, JP); Makoto Shibusawa (Tokyo, JP); Hiroshi Tabatake (Tokyo, JP)
Assignee: MAGNOLIA WHITE CORPORATION
G09G3/3233G09G3/32H05B45/60H10K59/1213H10K59/1216H10K59/131G09G3/2003G09G3/325G09G2300/0426G09G2300/0452G09G2300/0819G09G2300/0852G09G2300/0861G09G2310/0262G09G2320/0233G09G2320/0252G09G2320/043H10D86/441H10D86/481H10D86/60H10K59/123H10K59/351
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Quick Facts
Patent No.
US 12,646,464
App. No.
19/043,603
Granted
Jun 2, 2026
Kind
B2
Abstract

According to one embodiment, a display apparatus includes a plurality of semiconductor layers, a first insulation film, a first conductive layer, a second insulation film and a display element includes a second conductive layer. The first conductive layer and the second conductive layer are opposed to each other to form a capacitance unit.

Claims (109)

1 . A display device including a plurality of pixels, the display device comprising:

a semiconductor layer;

a first insulation layer on the semiconductor layer;

a first conductive layer on the first insulation layer;

a second insulation layer on the first insulation layer and the first conductive layer;

a second conductive layer on the second insulation layer;

a third insulation layer on the second insulation layer and the second conductive layer;

a third conductive layer on the third insulation layer; and

a partition insulation layer on the third insulation layer and the third conductive layer,

wherein

each of the plurality of pixels includes a display element and a drive transistor,

the display element includes a pixel electrode and a counter electrode opposed to the pixel electrode,

the drive transistor includes a gate, a source, and a drain,

the pixel electrode of the display element is formed in the third conductive layer,

a channel of the drive transistor is formed in the semiconductor layer,

the gate of the drive transistor is formed in the first conductive layer,

the third insulation layer includes a contact hole in which the pixel electrode of the display element is electrically connected to one of the source and the drain of the drive transistor,

no part of the second conductive layer overlaps with the contact hole in a plane view, and

said no part of the second conductive layer is electrically connected to the pixel electrode of the display element of each of the plurality of pixels.

2 . The display device according to claim 1 , wherein

said no part of the second conductive layer is in direct contact with the counter electrode of the display element of each of the plurality of pixels.

3 . The display device according to claim 1 , wherein

said no part of the second conductive layer is electrically connected to the one of the source and the drain of the drive transistor of each of the plurality of pixels.

4 . The display device according to claim 1 , wherein

the second conductive layer extends between adjacent two pixels in the plurality of pixels continuously.

5 . The display device according to claim 1 , wherein

another one of the source and the drain of the drive transistor of each of the plurality of pixels is electrically connected to a high potential power line,

the counter electrode of the display element of each of the plurality of pixels is electrically connected to a low potential power line, and

the drive transistor is configured to control a current value from the high potential power line to the display element in each of the plurality of pixels.

6 . The display device according to claim 5 , wherein

each of the plurality of pixels further includes an output switch,

the output switch of each of the plurality of pixels includes a source and a drain,

one of the source and the drain of the output switch is electrically connected to the another one of the source and the drain of the drive transistor in each of the plurality of pixels,

another one of the source and the drain of the output switch of each of the plurality of pixels is electrically connected to the high potential power line,

the output switch is configured to select to supply or not to supply a current from the high potential power line to the display element in each of the plurality of pixels, and

the output switch is configured to be controlled by a signal different from that of the drive transistor in each of the plurality of pixels.

7 . The display device according to claim 6 , wherein

both of the channel of the drive transistor and a channel of the output switch of each of the plurality of pixels are formed of the semiconductor layer continuously.

8 . A display device including a plurality of pixels, the display device comprising:

a semiconductor layer;

a first insulation layer on the semiconductor layer;

a first conductive layer on the first insulation layer;

a second insulation layer on the first insulation layer and the first conductive layer;

a second conductive layer on the second insulation layer;

a third insulation layer on the second insulation layer and the second conductive layer;

a third conductive layer on the third insulation layer; and

a partition insulation layer on the third insulation layer and the third conductive layer,

wherein

each of the plurality of pixels includes a display element and a drive transistor,

the display element includes a pixel electrode and a counter electrode opposed to the pixel electrode,

the drive transistor includes a gate, a source, and a drain,

the pixel electrode of the display element is formed in the third conductive layer,

a channel of the drive transistor is formed in the semiconductor layer,

the gate of the drive transistor is formed in the first conductive layer,

the third insulation layer includes a contact hole in which the pixel electrode of the display element is electrically connected to one of the source and the drain of the drive transistor,

no part of the second conductive layer overlaps with the contact hole in a plane view, and

the pixel electrode of the display element, the second conductive layer, and the gate of the drive transistor in each of the plurality of pixels overlap with each other in the plane view.

9 . The display device according to claim 8 , wherein

said no part of the second conductive layer is in direct contact with the counter electrode of the display element of each of the plurality of pixels.

10 . The display device according to claim 8 , wherein

said no part of the second conductive layer is electrically connected to the one of the source and the drain of the drive transistor of each of the plurality of pixels.

11 . The display device according to claim 8 , wherein

the partition insulation layer includes an opening exposing a part of an upper surface of the pixel electrode of the display element of each of the plurality of pixels, and

the opening of the partition insulation layer, the second conductive layer, and the gate of the drive transistor in each of the plurality of pixels overlap with each other in the plane view.

12 . The display device according to claim 8 , wherein

the second conductive layer extends between adjacent two pixels in the plurality of pixels continuously.

13 . The display device according to claim 8 , wherein

another one of the source and the drain of the drive transistor of each of the plurality of pixels is electrically connected to a high potential power line,

the counter electrode of the display element of each of the plurality of pixels is electrically connected to a low potential power line, and

the drive transistor is configured to control a current value from the high potential power line to the display element in each of the plurality of pixels.

14 . The display device according to claim 13 , wherein

each of the plurality of pixels further includes an output switch,

the output switch of each of the plurality of pixels includes a source and a drain,

one of the source and the drain of the output switch is electrically connected to the another one of the source and the drain of the drive transistor in each of the plurality of pixels,

another one of the source and the drain of the output switch of each of the plurality of pixels is electrically connected to the high potential power line,

the output switch is configured to select to supply or not to supply a current from the high potential power line to the display element in each of the plurality of pixels, and

the output switch is configured to be controlled by a signal different from that of the drive transistor in each of the plurality of pixels.

15 . The display device according to claim 14 , wherein

both of the channel of the drive transistor and a channel of the output switch of each of the plurality of pixels are formed of the semiconductor layer continuously.

16 . A display device including a plurality of pixels, the display device comprising:

a semiconductor layer;

a first insulation layer on the semiconductor layer;

a first conductive layer on the first insulation layer;

a second insulation layer on the first insulation layer and the first conductive layer;

a second conductive layer on the second insulation layer;

a third insulation layer on the second insulation layer and the second conductive layer;

a third conductive layer on the third insulation layer; and

a partition insulation layer on the third insulation layer and the third conductive layer,

wherein

each of the plurality of pixels includes a display element and a drive transistor,

the display element includes a pixel electrode and a counter electrode opposed to the pixel electrode,

the drive transistor includes a gate, a source, and a drain,

the pixel electrode of the display element is formed in the third conductive layer,

a channel of the drive transistor is formed in the semiconductor layer,

the gate of the drive transistor is formed in the first conductive layer,

the third insulation layer includes a contact hole in which the pixel electrode of the display element is electrically connected to one of the source and the drain of the drive transistor,

no part of the second conductive layer overlaps with the contact hole in a plane view,

the partition insulation layer includes an opening exposing a part of an upper surface of the pixel electrode of the display element of each of the plurality of pixels, and

the opening of the partition insulation layer, the second conductive layer, and the gate of the drive transistor in each of the plurality of pixels overlap with each other in the plane view.

17 . The display device according to claim 16 , wherein

said no part of the second conductive layer is in direct contact with the counter electrode of the display element of each of the plurality of pixels.

18 . The display device according to claim 16 , wherein

said no part of the second conductive layer is electrically connected to the one of the source and the drain of the drive transistor of each of the plurality of pixels.

19 . The display device according to claim 16 , wherein

the second conductive layer extends between adjacent two pixels in the plurality of pixels continuously.

20 . The display device according to claim 16 , wherein

another one of the source and the drain of the drive transistor of each of the plurality of pixels is electrically connected to a high potential power line,

the counter electrode of the display element of each of the plurality of pixels is electrically connected to a low potential power line, and

the drive transistor is configured to control a current value from the high potential power line to the display element in each of the plurality of pixels.

Assignments (2)
CHANGE OF NAME Recorded Aug 27, 2025
From: JAPAN DISPLAY INC.
To: MAGNOLIA WHITE CORPORATION
Reel/Frame 073057/0042 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2025
From: OMATA, KAZUYOSHI; KIMURA, HIROYUKI; SHIBUSAWA, MAKOTO; TABATAKE, HIROSHI
To: JAPAN DISPLAY INC.
Reel/Frame 070085/0426 →
Priority Claims (3)
JP 2012-231740 · Oct 19, 2012 · national
JP 2013-012286 · Jan 25, 2013 · national
JP 2013-032359 · Feb 21, 2013 · national
Continuity (9)
Continuation 18407529 · Jan 9, 2024
Continuation 18148002 · Dec 29, 2022
Continuation 17315771 · May 10, 2021
Continuation 16784693 · Feb 7, 2020
Continuation 16119655 · Aug 31, 2018
Continuation 15365428 · Nov 30, 2016
Continuation 15167401 · May 27, 2016
Continuation 14056282 · Oct 17, 2013
Related Publication 20250182694A1 · Jun 5, 2025
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