IP Library Granted Patent US 12,219,849
Granted Patent B2
US 12,219,849 · App. 17/772,245 · Granted Feb 4, 2025

Array substrate and display apparatus

Inventors: Xing Fan (Beijing, CN); Xin Li (Beijing, CN); Cheng Han (Beijing, CN); Yansong Li (Beijing, CN)
Assignee: BOE TECHNOLOGY GROUP CO., LTD.
H10K59/353H10K59/124H10K2102/311
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Quick Facts
Patent No.
US 12,219,849
App. No.
17/772,245
Granted
Feb 4, 2025
Kind
B2
Abstract

An array substrate and a display apparatus are provided The array substrate includes: at least one adjusting portion on the base substrate and having a first cross section in a plane perpendicular to the base substrate; first cross section includes top and bottom sides, first and second lateral sides; the bottom side is closer to the base substrate than the top side, an orthographic projection of the top side on the base substrate is within an orthographic projection of the bottom side on the base substrate; the first and/or second lateral sides is/are stepped; a buffer layer on a side of the adjusting portion away from the base substrate; light-emitting devices on a side of the buffer layer away from the base substrate and each including a first electrode, a light-emitting layer and a second electrode sequentially arranged along a direction away from the base substrate.

Claims (52)

1. An array substrate, comprising:

a base substrate;

at least one adjusting portion on the base substrate, wherein the at least one adjusting portion has a first cross section in a plane perpendicular to the base substrate; the first cross section comprises a top side and a bottom side, and a first lateral side and a second lateral side; wherein the bottom side is closer to the base substrate than the top side, and an orthographic projection of the top side on the base substrate is within an orthographic projection of the bottom side on the base substrate; at least one of the first lateral side and the second lateral side is stepped;

a buffer layer on a side of the at least one adjusting portion away from the base substrate; and

a plurality of light-emitting devices on a side of the buffer layer away from the base substrate, wherein each of the plurality of light-emitting devices comprises a first electrode, a light-emitting layer and a second electrode which are sequentially arranged along a direction away from the base substrate; and an orthographic projection of a first electrode of each of at least some of the plurality of light-emitting devices on the base substrate at least covers an orthographic projection of a respective one of the at least one adjusting portion on the base substrate.

2. The array substrate of claim 1 , wherein

the first lateral side and the second lateral side are stepped, and are symmetrically arranged about a line passing through middle points of the top side and the bottom side as a symmetric axis.

3. The array substrate of claim 2 , wherein

the at least one adjusting portion comprises a plurality of adjusting sub-structures sequentially stacked along the direction away from the base substrate, and

areas of the plurality of adjusting sub-structures decrease sequentially along the direction away from the base substrate.

4. The array substrate of claim 3 , wherein

the plurality of adjusting sub-structures comprise two adjusting sub-structures.

5. The array substrate of claim 4 , wherein

each of the plurality of adjusting sub-structures is made of an inorganic material.

6. The array substrate of claim 5 , wherein

the plurality of light-emitting devices form a plurality of pixel units, light-emitting devices in each of the plurality of pixel units comprises a red light-emitting device, a green light-emitting device, and a blue light-emitting device; and

an orthographic projection of a first electrode of the blue light-emitting device on the base substrate covers an orthographic projection of at least one adjusting portion on the base substrate.

7. The array substrate of claim 5 , wherein

the at least one adjusting portion comprises a plurality of adjusting portions separated from each other; and

first electrodes of at least some of the plurality of light-emitting devices covers the plurality of adjusting portions.

8. The array substrate of claim 5 , wherein

the array substrate comprises a flat region and at least one bending region; and

an orthographic projection of a first electrode of each of at least some of the plurality of light-emitting devices in the at least one bending region on the base substrate covers an orthographic projection of the at least one adjusting portion on the base substrate.

9. The array substrate of claim 5 , wherein

the buffer layer is made of an organic material.

10. The array substrate of claim 1 , wherein

the at least one adjusting portion comprises a plurality of adjusting sub-structures sequentially stacked along the direction away from the base substrate, and

areas of the plurality of adjusting sub-structures decrease sequentially along the direction away from the base substrate.

11. The array substrate of claim 10 , wherein

the plurality of adjusting sub-structures comprise two adjusting sub-structures.

12. The array substrate of claim 10 , wherein

each of the plurality of adjusting sub-structures is made of an inorganic material.

13. The array substrate of claim 12 , wherein

the plurality of light-emitting devices form a plurality of pixel units, light-emitting devices in each of the plurality of pixel units comprises a red light-emitting device, a green light-emitting device, and a blue light-emitting device; and

an orthographic projection of a first electrode of the blue light-emitting device on the base substrate covers an orthographic projection of at least one adjusting portion on the base substrate.

14. The array substrate of claim 12 , wherein

the at least one adjusting portion comprises a plurality of adjusting portions separated from each other; and

first electrodes of at least some of the plurality of light-emitting devices covers the plurality of adjusting portions.

15. The array substrate of claim 1 , wherein

each of the plurality of adjusting sub-structures is made of an inorganic material.

16. The array substrate of claim 1 , wherein

the plurality of light-emitting devices form a plurality of pixel units, light-emitting devices in each of the plurality of pixel units comprises a red light-emitting device, a green light-emitting device, and a blue light-emitting device; and

an orthographic projection of a first electrode of the blue light-emitting device on the base substrate covers an orthographic projection of at least one adjusting portion on the base substrate.

17. The array substrate of claim 1 , wherein

the at least one adjusting portion comprises a plurality of adjusting portions separated from each other; and

first electrodes of at least some of the plurality of light-emitting devices covers the plurality of adjusting portions.

18. The array substrate of claim 1 , wherein

the array substrate comprises a flat region and at least one bending region; and

an orthographic projection of a first electrode of each of at least some of the plurality of light-emitting devices in the at least one bending region on the base substrate covers an orthographic projection of the at least one adjusting portion on the base substrate.

19. The array substrate of claim 1 , wherein

the buffer layer is made of an organic material.

20. A display apparatus, comprising the array substrate claim 1 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2022
From: FAN, XING; LI, XIN; HAN, CHENG; LI, YANSONG
To: BOE TECHNOLOGY GROUP CO., LTD.
Reel/Frame 059751/0055 →
Continuity (1)
Related Publication 20240147803A1 · May 2, 2024
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