IP Library Granted Patent US 12696539
Granted Patent B2
US 12696539 · App. 18/290,765 · Granted Jul 28, 2026

Display substrate and display device

Inventors: Haifeng Xu (Beijing, CN); Zifeng Wang (Beijing, CN); Wentao Wang (Beijing, CN); Lina Wang (Beijing, CN); Pei Wang (Beijing, CN); Yaoda Hou (Beijing, CN); Qing Tang (Beijing, CN); Yuantao Liu (Beijing, CN); Xin Cao (Beijing, CN); Yanchun Xie (Beijing, CN)
Assignees: MIANYANG BOE OPTOELECTRONICS TECHNOLOGY CO., Ltd.; BOE TECHNOLOGY GROUP CO., LTD.
H10D86/441H10K59/1216H10K59/131H10K59/88G09G3/3233G09G2300/0819G09G2300/0842G09G2300/0861H10D86/481
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Quick Facts
Patent No.
US 12696539
App. No.
18/290,765
Granted
Jul 28, 2026
Kind
B2
Abstract

The present disclosure provides a display substrate and a display device. The display substrate has a display area, an edge area arranged on at least one side of the display area, and a transition area arranged between the display area and the edge area, the display substrate includes: a base substrate, a plurality of sub-pixels and a redundant line located on the base substrate, the plurality of sub-pixel being arranged in an array in the display area, the redundant line extending along a column direction of the sub-pixels and passing through the transition area; each sub-pixel includes: a pixel driving circuit; the pixel driving circuit includes a storage capacitor; at least a part of second electrodes of storage capacitors extend from the display area to the transition area and are electrically connected with the redundant line.

Claims (40)

1 . A display substrate, having a display area, an edge area arranged on at least one side of the display area, and a transition area arranged between the display area and the edge area, the display substrate comprising: a base substrate, a plurality of sub-pixels and a redundant line located on the base substrate, the plurality of sub-pixels being arranged in an array in the display area, and the redundant line extending along a column direction of the sub-pixels and passing through the transition area,

wherein each of the sub-pixels comprise a pixel driving circuit comprising a storage capacitor,

at least a part of second electrodes of storage capacitors extend from the display area to the transition area and are electrically connected with the redundant line.

2 . The display substrate of claim 1 , wherein the second electrodes of the storage capacitors in pixel driving circuits in a column of sub-pixels close to the transition area are electrically connected to the redundant line.

3 . The display substrate of claim 2 , wherein each of the second electrodes of the storage capacitors in the pixel driving circuits in the column of sub-pixels close to the transition area comprises: a main portion and a protrusion portion connected with the main portion, the protrusion portion being electrically connected with the redundant line.

4 . The display substrate of claim 3 , wherein a length of an orthographic projection of the protrusion portion on the base substrate in the column direction is ½ to ⅔ of a length of an orthographic projection of the main portion on the base substrate in the column direction;

a length of the orthographic projection of the protrusion portion on the base substrate along a row direction is 2 to 4 times of a length of an orthographic projection of the redundant line on the base substrate in the row direction.

5 . The display substrate of claim 1 , further comprising: a first conductive layer, a second conductive layer, a third conductive layer and a fourth conductive layer sequentially arranged on the base substrate along a direction away from the base substrate, wherein

the second conductive layer comprises the second electrode of the storage capacitor; and

the third conductive layer comprises the redundant line.

6 . The display substrate of claim 5 , further comprising: a plurality of first transfer portions located in the edge area on the base substrate, a plurality of scanning signal lines extending from the edge area to the display area by passing through the transition area, a plurality of light emission control signal lines located on the base substrate and extending from the edge area to the display area by passing through the transition area, and a plurality of reset signal lines located on the base substrate and extending from the edge area to the display area by passing through the transition area, wherein the pixel driving circuit further comprises a plurality of thin film transistors,

a part of the first transfer portions are electrically connected with gates of a part of the thin film transistors through the scanning signal lines;

a part of the first transfer portions are electrically connected with gates of a part of the thin film transistors through the light emission control signal lines; and

a part of the first transfer portions are electrically connected with gates of a part of the thin film transistors through the reset signal lines.

7 . The display substrate of claim 6 , wherein the first conductive layer comprises at least one type of the scanning signal lines, the first transfer portions, the gates of the thin film transistors, the light emission control signal lines, or the reset signal lines.

8 . The display substrate of claim 6 , further comprising: a plurality of first initialization signal lines and a plurality of second initialization signal lines which are located on the base substrate and extend from the edge area to the display area by passing through the transition area, wherein

a part of the first transfer portions are electrically connected with first electrodes or second electrodes of a part of the thin film transistors through the first initialization signal lines or the second initialization signal lines.

9 . The display substrate of claim 8 , wherein the second conductive layer further comprises: a plurality of first initialization signal lines and a plurality of second initialization signal lines; and

the third conductive layer further comprises the first electrodes and the second electrodes of the thin film transistors.

10 . The display substrate of claim 6 , wherein a part of the first transfer portions are electrically connected to each other through a first transfer wire; and

the third conductive layer further comprises the first transfer wire.

11 . The display substrate of claim 6 , further comprising: a plurality of data signal lines located in the display area on the base substrate, wherein

the data signal lines are electrically connected with the first electrodes or the second electrodes of a part of the thin film transistors; and

the third conductive layer further comprises the plurality of data signal lines.

12 . The display substrate of claim 11 , further having a camera device region located in the display area, wherein in the camera device region, a part of the data signal lines are electrically connected to each other through a second transfer wire; and

the third conductive layer further comprises the second transfer wire.

13 . The display substrate of claim 6 , further comprising: a plurality of second transfer portions and a plurality of bonding wires located in the edge area on the base substrate, the second transfer portions being arranged on a side, away from the display area, of the first transfer portions, wherein

the second transfer portions are electrically connected with the first transfer portions through the bonding wires.

14 . The display substrate of claim 13 , wherein the third conductive layer further comprises: the plurality of second transfer portions and the plurality of the bonding wires.

15 . A display device, comprising: the display substrate of claim 1 .

16 . The display device of claim 15 , wherein the second electrodes of the storage capacitors in pixel driving circuits in a column of sub-pixels close to the transition area are electrically connected to the redundant line.

17 . The display device of claim 16 , wherein each of the second electrodes of the storage capacitors in the pixel driving circuits in the column of sub-pixels close to the transition area comprises: a main portion and a protrusion portion connected with the main portion, the protrusion portion being electrically connected with the redundant line.

18 . The display device of claim 17 , wherein a length of an orthographic projection of the protrusion portion on the base substrate in the column direction is ½ to ⅔ of a length of an orthographic projection of the main portion on the base substrate in the column direction;

a length of the orthographic projection of the protrusion portion on the base substrate along a row direction is 2 to 4 times of a length of an orthographic projection of the redundant line on the base substrate in the row direction.

19 . The display device of claim 15 , the display substrate further comprises: a first conductive layer, a second conductive layer, a third conductive layer and a fourth conductive layer sequentially arranged on the base substrate along a direction away from the base substrate, wherein

the second conductive layer comprises the second electrode of the storage capacitor; and

the third conductive layer comprises the redundant line.

20 . The display device of claim 15 , the display substrate further comprises: a first conductive layer, a second conductive layer, a third conductive layer and a fourth conductive layer sequentially arranged on the base substrate along a direction away from the base substrate, wherein

the second conductive layer comprises the second electrode of the storage capacitor; and

the third conductive layer comprises the redundant line.