IP Library Granted Patent US 12690274
Granted Patent B2
US 12690274 · App. 18/272,123 · Granted Jul 21, 2026

Display substrate, manufacturing method, and display device

Inventors: Jun Wang (Beijing, CN); Jun Cheng (Beijing, CN); Haitao Wang (Beijing, CN); Tongshang Su (Beijing, CN); Yongchao Huang (Beijing, CN); Jingang Fang (Beijing, CN); Liu Zhang (Beijing, CN); Shengli Liu (Beijing, CN)
Assignees: HEFEI XINSHENG OPTOELECTRONICS TECHNOLOGY CO., LTD.; BOE TECHNOLOGY GROUP CO., LTD.
H10D89/911H10D89/921H10D89/931
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Quick Facts
Patent No.
US 12690274
App. No.
18/272,123
Granted
Jul 21, 2026
Kind
B2
Abstract

The present disclosure provides a display substrate, a manufacturing method thereof and a display device. The display substrate includes a base substrate, a plurality of groups of scanning lines extending along a first direction and arranged along a second direction, and a reference signal line extending along the second direction at an end of each scanning line, and an orthogonal projection of the reference signal line onto the base substrate does not overlap with an orthogonal projection of each scanning line onto the base substrate. The scanning lines include a target scanning line for discharging static electricity and including an electrostatic discharge end arranged at a side of the target scanning line close to the reference signal line, the display substrate further includes an electrostatic discharge structure electrically coupled to the electrostatic discharge end and an electrostatic ring and arranged between the electrostatic discharge end and the reference signal line.

Claims (24)

1 . A display substrate, comprising a base substrate, a plurality of groups of scanning lines, and a reference signal line,

wherein the scanning lines extend along a second direction and are arranged along a first direction, the reference signal line extends along the first direction at an end of each scanning line, an orthogonal projection of the reference signal line onto the base substrate does not overlap with an orthogonal projection of each scanning line onto the base substrate, and the first direction intersects the second direction,

wherein the scanning lines comprise a target scanning line for discharging static electricity, the target scanning line comprises an electrostatic discharge end arranged at a side of the target scanning line close to the reference signal line, the display substrate further comprises an electrostatic discharge structure electrically coupled to the electrostatic discharge end and an electrostatic ring, and the electrostatic discharge structure is arranged between the electrostatic discharge end and the reference signal line.

2 . The display substrate according to claim 1 , wherein each group of scanning lines comprise a first scanning line and a second scanning line, the first scanning lines and the second scanning lines are arranged alternately in the first direction, the target scanning line comprises two groups of scanning lines, and in the two groups of target scanning lines, the electrostatic discharge structure coupled to the first scanning line corresponds to a first electrostatic ring connection line, and the electrostatic discharge structure coupled to the second scanning line corresponds to a second electrostatic ring connection line.

3 . The display substrate according to claim 2 , further comprising a semiconductor layer, wherein the first electrostatic ring connection line and the second electrostatic ring connection line are arranged at a same layer as the semiconductor layer.

4 . The display substrate according to claim 3 , wherein the second electrostatic ring connection line is arranged between the first electrostatic ring connection line and the reference signal line.

5 . The display substrate according to claim 4 , wherein an orthogonal projection of the first electrostatic ring connection line onto the base substrate overlaps with an orthogonal projection of the second scanning line onto the base substrate.

6 . The display substrate according to claim 2 , further comprising a semiconductor layer and a shielding metal layer, wherein the first electrostatic ring connection line is arranged at a same layer as the semiconductor layer, and the second electrostatic ring connection line is arranged at a same layer, and made of a same material, as the shielding metal layer.

7 . The display substrate according to claim 5 , wherein an orthogonal projection of the first electrostatic ring connection line onto the base substrate overlaps with an orthogonal projection of the second electrostatic ring connection line onto the base substrate.

8 . The display substrate according to claim 2 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

9 . The display substrate according to claim 2 , wherein in the second direction, a size of the first electrostatic ring connection line is smaller than a size of the reference signal line; and/or a size of the second electrostatic ring connection line is smaller than the size of the reference signal line.

10 . A display device, comprising the display substrate according to claim 1 .

11 . A method for manufacturing a display substrate, comprising:

providing a base substrate; and

forming scanning lines and a reference signal line on the base substrate,

wherein the scanning lines extend along a second direction and are arranged along a first direction, the reference signal line extends along the first direction at an end of each scanning line, an orthogonal projection of the reference signal line onto the base substrate does not overlap with an orthogonal projection of each scanning line onto the base substrate, and the first direction intersects the second direction,

wherein the scanning lines comprise a target scanning line for discharging static electricity, the target scanning line comprises an electrostatic discharge end arranged at a side of the target scanning line close to the reference signal line, the display substrate further comprises an electrostatic discharge structure electrically coupled to the electrostatic discharge end and an electrostatic ring, and the electrostatic discharge structure is arranged between the electrostatic discharge end and the reference signal line.

12 . The method according to claim 11 , wherein each group of the scanning lines comprise a first scanning line and a second scanning line, the first scanning lines and the second scanning lines are arranged alternately in the first direction, the target scanning line comprises two groups of scanning lines, and in the two groups of target scanning lines, the electrostatic discharge structure coupled to the first scanning line corresponds to a first electrostatic ring connection line, and the electrostatic discharge structure coupled to the second scanning line corresponds to a second electrostatic ring connection line.

13 . The display substrate according to claim 3 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

14 . The display substrate according to claim 4 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

15 . The display substrate according to claim 5 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

16 . The display substrate according to claim 6 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

17 . The display substrate according to claim 7 , wherein in the second direction, a distance between the first electrostatic ring connection line and the electrostatic discharge end is less than a distance between the first electrostatic ring connection line and the reference signal line; and/or in the second direction, a distance between the second electrostatic ring connection line and the electrostatic discharge end is less than a distance between the second electrostatic ring connection line and the reference signal line.

18 . The display substrate according to claim 3 , further comprising a plurality of driving units, wherein the reference signal line is configured to apply a low voltage reference signal to the driving units.