IP Library Patent Application 19074421
Patent Application
App. No. 19/074,421

DISPLAY PANEL AND DRIVING METHOD THEREFOR

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Patent No.
US None
App. No.
19/074,421
Abstract

The present application discloses a display panel and a driving method therefor, and a display apparatus. The display panel includes a pixel circuit and light-emitting element groups, where one light-emitting element group includes N light-emitting elements, all first electrodes of the N light-emitting elements are electrically connected to an output terminal of the same pixel circuit, and the N light-emitting elements are located in different rows and emit light in different time periods within one frame.

Claims (46)

1 . A display panel, comprising:

a plurality of pixel circuits and a plurality of light-emitting element groups, one light-emitting element group comprising N light-emitting elements, and all first electrodes of the N light-emitting elements electrically connected to an output terminal of the same pixel circuit;

wherein the N light-emitting elements are located in different rows and emit light in different time periods within one frame, and N is an integer greater than 1.

2 . The display panel according to claim 1 , wherein

a plurality of second electrodes of the N light-emitting elements in the same light-emitting element group are connected to different power lines.

3 . The display panel according to claim 1 , wherein a working process of the display panel within one frame comprises M subframes, one of the N light-emitting elements emits light in one subframe, and the N light-emitting elements sequentially emit light respectively in the M subframes, wherein M=N.

4 . The display panel according to claim 3 , wherein

one light-emitting element group comprises two light-emitting elements, wherein the two light-emitting elements are located in two adjacent rows and the same column, or the two light-emitting elements are located in two adjacent rows and two adjacent columns.

5 . The display panel according to claim 4 , wherein

one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, . . . , and an M th time period; and in the case of M=2,

the two light-emitting elements located in two adjacent rows and the same column emit light of the same color, wherein

within the first time period, the light-emitting element located in an odd-numbered row emits light; and within the second time period, the light-emitting element located in an even-numbered row emits light.

6 . The display panel according to claim 4 , wherein

one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, . . . , and an M th time period; and in the case of M=2,

the two light-emitting elements located in two adjacent rows and the same column emit light of the same color, wherein

within the first time period, the light-emitting element located in both an odd-numbered row and an odd-numbered column emits light, and the light-emitting element located in both an even-numbered row and an even-numbered column emits light; and within the second time period, the light-emitting element located in both an odd-numbered row and an even-numbered column emits light, and the light-emitting element located in both an even-numbered row and an odd-numbered column emits light.

7 . The display panel according to claim 4 , wherein

one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, . . . , and an M th time period; and in the case of M=2,

the two light-emitting elements located in two adjacent rows and two adjacent columns emit light of different colors, wherein within the first time period, the light-emitting element located in an odd-numbered row emits light; and within the second time period, the light-emitting element located in an even-numbered row emits light.

8 . The display panel according to claim 3 , wherein

one light-emitting element group comprises three light-emitting elements, wherein the three light-emitting elements are located in three sequentially adjacent rows and the same column, or the three light-emitting elements are located in three sequentially adjacent rows and three sequentially adjacent columns.

9 . The display panel according to claim 8 , wherein

one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, a third time period, . . . , and an M th time period; and in the case of M=3,

the three light-emitting elements located in three sequentially adjacent rows and the same column emit light of the same color, wherein

within the first time period, the light-emitting element in a (1+3k) th row emits light; within the second time period, the light-emitting element in a (2+3k) th row emits light; and within the third time period, the light-emitting element in a (3+3k) th row emits light, wherein k is an integer greater than or equal to 0.

10 . The display panel according to claim 8 , wherein

one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, a third time period, . . . , and an M th time period; and in the case of M=3,

the three light-emitting elements located in three sequentially adjacent rows and three sequentially adjacent columns emit light of different colors, wherein within the first time period, the light-emitting element in a (1+3k) th row emits light, within the second time period, the light-emitting element in a (2+3k) th row emits light, and within the third time period, the light-emitting element in a (3+3k) th row emits light, wherein k is an integer greater than or equal to 0.

11 . The display panel according to claim 3 , wherein one light-emitting element group comprises three light-emitting elements, wherein the three light-emitting elements are located in three sequentially adjacent rows and the same column, and the three light-emitting elements emit light of different colors.

12 . The display panel according to claim 11 , wherein the light-emitting element groups in odd-numbered columns are arranged in parallel, the light-emitting element groups in even-numbered columns are arranged in parallel, and the light-emitting element groups in odd-numbered columns and even-numbered columns are staggered.

13 . The display panel according to claim 12 , wherein three adjacent light-emitting elements that emit light of different colors constitute one light-emitting unit, wherein one light-emitting unit comprises a first-color light-emitting element, a second-color light-emitting element, and a third-color light-emitting element, in the same light-emitting unit, the third-color light-emitting element is located in a separate column and the first-color light-emitting element and the second-color light-emitting element are located in the same column, and the light-emitting units are arranged in an array.

14 . The display panel according to claim 13 , wherein one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, a third time period, . . . , and an M th time period; and in the case of M=3,

within the first time period, the light-emitting elements in the light-emitting unit in a (1+3j) th row emit light, within the second time period, the light-emitting elements in the light-emitting unit in a (2+3j) th row emit light, and within the third time period, the light-emitting elements in the light-emitting unit in a (3+3j) th row emit light, wherein j is an integer greater than or equal to 0.

15 . The display panel according to claim 14 , wherein a plurality of second electrodes of the light-emitting elements in the light-emitting units of the same row are connected to the same power line.

16 . The display panel according to claim 13 , wherein one subframe is used as one time period, and the M subframes comprise a first time period, a second time period, a third time period, . . . , and an M th time period; and in the case of M=3,

within the first time period, the light-emitting elements in the light-emitting unit in a (1+3j) th row and a (1+3i) th column, the light-emitting elements in the light-emitting unit in a (2+3j) th row and a (2+3i) th column, and the light-emitting elements in the light-emitting unit in a (3+3j) th row and a (3+3i) th column emit light; within the second time period, the light-emitting elements in the light-emitting unit in the (1+3j) th row and the (2+3i) th column, the light-emitting elements in the light-emitting unit in the (2+3j) th row and the (3+3i) th column, and the light-emitting elements in the light-emitting unit in the (3+3j) th row and the (1+3i) th column emit light; and within the third time period, the light-emitting elements in the light-emitting unit in the (1+3j) th row and the (3+3i) th column, the light-emitting elements in the light-emitting unit in the (2+3j) th row and the (1+3i) th column, and the light-emitting elements in the light-emitting unit in the (3+3j) th row and the (2+3i) th column emit light, wherein i is an integer greater than or equal to 0, and j is an integer greater than or equal to 0.

17 . A driving method for a display panel, wherein the display panel comprises a plurality of pixel circuits and a plurality of light-emitting element groups, one light-emitting element group comprising N light-emitting elements, and all first electrodes of the N light-emitting elements electrically connected to an output terminal of the same pixel circuit;

wherein the N light-emitting elements are located in different rows and emit light in different time periods within one frame, wherein N is an integer greater than 1; and

the driving method comprises:

controlling the N light-emitting elements located in different rows to emit light in different time periods within one frame.

18 . The driving method for the display panel according to claim 17 , wherein the driving method further includes:

within the first time period, controlling the light-emitting element located in an odd-numbered row to emit light, and within the second time period, controlling the light-emitting element located in an even-numbered row to emit light.

19 . The driving method for the display panel according to claim 18 , wherein the driving method further includes:

within the first time period, controlling the light-emitting element located in both an odd-numbered row and an odd-numbered column to emit light, and controlling the light-emitting element located in both an even-numbered row and an even-numbered column to emit light; and within the second time period, controlling the light-emitting element located in both an odd-numbered row and an even-numbered column to emit light, and controlling the light-emitting element located in an even-numbered row and an odd-numbered column to emit light.

20 . The driving method for the display panel according to claim 19 , wherein the driving method further includes:

within the first time period, controlling the light-emitting element in a (1+3k) th row to emit light; within the second time period, controlling the light-emitting element in a (2+3k) th row to emit light; and within the third time period, controlling the light-emitting element in a (3+3k) th row to emit light.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 9, 2026
From: YUNGU (GU'AN) TECHNOLOGY CO., LTD.
To: SUZHOU GOVISIONOX INNOVATION TECHNOLOGY CO., LTD.
Reel/Frame 074280/0215 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 12, 2025
From: YUNGU (GU'AN) TECHNOLOGY CO., LTD.
To: SUZHOU GOVISIONOX INNOVATION TECHNOLOGY CO., LTD.
Reel/Frame 073921/0290 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 10, 2025
From: MI, LEI; GAI, CUILI; LAN, LAN; MA, XUEJIE
To: YUNGU (GU’AN) TECHNOLOGY CO., LTD.
Reel/Frame 070448/0953 →