IP Library › Granted Patent US 9,772,723
Granted Patent B2
US 9,772,723 · App. 14/103,649 · Granted Sep 26, 2017

Capacitive in-cell touch panel and display device

Inventors: Haisheng Wang (Beijing, CN); Xue Dong (Beijing, CN); Yingming Liu (Beijing, CN)
Assignee: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
G06F3/044G06F3/0412G06F2203/04103
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Quick Facts
Patent No.
US 9,772,723
App. No.
14/103,649
Granted
Sep 26, 2017
Kind
B2
Abstract

In a capacitive in-cell touch panel and a display device, a common electrode layer electrically connected over the entire surface in a TFT array substrate is partitioned into touch sensing electrodes and touch driving electrodes that are driven in a time-division manner to realize touch function and display function.

Claims (38)

1. A capacitive in-cell touch panel comprising a thin film transistor (TFT) array substrate having gate signal lines, data signal lines and a common electrode layer, the common electrode layer being over the gate signal lines and the data signal lines, and the TFT array substrate comprising a plurality of pixel units arranged in matrix,

wherein the common electrode layer comprises touch sensing electrodes and touch driving electrodes insulated with each other, and partitioning gaps between the touch sensing electrodes and the touch driving electrodes are opposite to gaps between pixel units of adjacent rows and adjacent columns; in a display period, the touch driving electrodes and the touch sensing electrodes are applied with a common electrode signal; and in a touch control period, the touch driving electrodes are applied with a touch scan signal and the touch sensing electrodes are used to couple with and output a voltage signal of the touch scan signal;

wherein the TFT array substrate comprises first metal driving electrodes and/or first metal inductive electrodes over the data signal lines and between pixel units of adjacent columns, the first metal driving electrodes are electrically connected with corresponding touch driving electrodes, and the first metal inductive electrodes are electrically connected with corresponding touch sensing electrodes;

wherein the touch panel further comprises first transparent conducting electrodes electrically connected with the first metal inductive electrodes and/or second transparent conducting electrodes electrically connected with the first metal driving electrodes; and

wherein the touch panel further comprises pixel electrodes over the common electrode layer, and the first transparent conducting electrodes and/or the second transparent conducting electrodes are disposed on the same layer with the pixel electrodes and insulated with each other.

2. The touch panel of claim 1 , wherein the first metal driving electrode are located on a layer above or under the touch driving electrodes; and

the first metal inductive electrodes are located on a layer above or under the touch sensing electrodes.

3. The touch panel of claim 1 , further comprising: second metal driving electrodes and/or second metal inductive electrodes over gate signal lines in the TFT array substrate and between pixel units of adjacent rows;

wherein the second metal driving electrodes are electrically connected with corresponding touch driving electrodes, and the second metal inductive electrodes are electrically connected with corresponding touch sensing electrodes.

4. The touch panel of claim 1 , wherein the touch driving electrodes extend along a row direction of the pixel units, and the touch sensing electrodes extend along a column direction of the pixel units; or

the touch driving electrodes extend along a column direction of the pixel units, and the touch sensing electrodes extend along a row direction of the pixel units.

5. The touch panel of claim 4 , wherein the touch driving electrodes and the touch sensing electrodes have a strip electrode structure, a diamond electrode structure or an interleaved-finger electrode array structure.

6. The touch panel of claim 5 , further comprising: common electrodes in gaps between the touch sensing electrodes and the touch driving electrodes of the common electrode layer, the common electrodes being insulated with the touch sensing electrodes and the touch driving electrodes.

7. A display device comprising a capacitive in cell touch panel of claim 1 .

8. The touch panel of claim 1 , wherein the first metal driving electrodes and/or the first metal inductive electrodes are formed over the data signal lines and the gate signal lines as well as the common electrode layer, and the first metal driving electrodes and/or the first metal inductive electrodes shield the partitioning gaps over the data signal lines.

9. A capacitive in-cell touch panel comprising a thin film transistor (TFT) array substrate having gate signal lines, data signal lines and a common electrode layer, the common electrode layer being over the gate signal lines and the data signal lines, and the TFT array substrate comprising a plurality of pixel units arranged in matrix,

wherein the common electrode layer comprises touch sensing electrodes and touch driving electrodes insulated with each other, and partitioning gaps between the touch sensing electrodes and the touch driving electrodes are opposite to gaps between pixel units of adjacent rows and adjacent columns; in a display period, the touch driving electrodes and the touch sensing electrodes are applied with a common electrode signal; and in a touch control period, the touch driving electrodes are applied with a touch scan signal and the touch sensing electrodes are used to couple with and output a voltage signal of the touch scan signal;

wherein the TFT array substrate comprises first metal driving electrodes and/or first metal inductive electrodes over the data signal lines and between pixel units of adjacent columns, the first metal driving electrodes are electrically connected with corresponding touch driving electrodes, and the first metal inductive electrodes are electrically connected with corresponding touch sensing electrodes;

wherein the touch panel further comprises second metal driving electrodes and/or second metal inductive electrodes over gate signal lines in the TFT array substrate and between pixel units of adjacent rows; and

wherein the second metal driving electrodes are electrically connected with corresponding touch driving electrodes, and the second metal inductive electrodes are electrically connected with corresponding touch sensing electrodes.

10. The touch panel of claim 9 , wherein the first metal driving electrodes are located on a layer above or under the touch driving electrodes; and

the first metal inductive electrodes are located on a layer above or under the touch sensing electrodes.

11. The touch panel of claim 9 , wherein the touch driving electrodes extend along a row direction of the pixel units, and the touch sensing electrodes extend along a column direction of the pixel units; or

the touch driving electrodes extend along a column direction of the pixel units, and the touch sensing electrodes extend along a row direction of the pixel units.

12. The touch panel of claim 11 , wherein the touch driving electrodes and the touch sensing electrodes have a strip electrode structure, a diamond electrode structure or an interleaved-finger electrode array structure.

13. The touch panel of claim 12 , further comprising: common electrodes in gaps between the touch sensing electrodes and the touch driving electrodes of the common electrode layer, the common electrodes being insulated with the touch sensing electrodes and the touch driving electrodes.

14. The touch panel of claim 9 , wherein the first metal driving electrodes and/or the first metal inductive electrodes are formed over the data signal lines and the gate signal lines as well as the common electrode layer, and the first metal driving electrodes and/or the first metal inductive electrodes shield the partitioning gaps over the data signal lines.

15. A display device comprising the capacitive in cell touch panel of claim 9 .

16. A capacitive in-cell touch panel comprising a thin film transistor (TFT) array substrate having gate signal lines, data signal lines and a common electrode layer, the common electrode layer being over the gate signal lines and the data signal lines, and the TFT array substrate comprising a plurality of pixel units arranged in matrix,

wherein the common electrode layer comprises touch sensing electrodes and touch driving electrodes insulated with each other, and partitioning gaps between the touch sensing electrodes and the touch driving electrodes are opposite to gaps between pixel units of adjacent rows and adjacent columns; in a display period, the touch driving electrodes and the touch sensing electrodes are applied with a common electrode signal; and in a touch control period, the touch driving electrodes are applied with a touch scan signal and the touch sensing electrodes are used to couple with and output a voltage signal of the touch scan signal;

wherein the TFT array substrate comprises first metal driving electrodes and/or first metal inductive electrodes over the data signal lines and between pixel units of adjacent columns, the first metal driving electrodes are electrically connected with corresponding touch driving electrodes, and the first metal inductive electrodes are electrically connected with corresponding touch sensing electrodes; and

wherein the first metal driving electrodes and/or the first metal inductive electrodes are formed over the data signal lines and the gate signal lines as well as the common electrode layer, and the first metal driving electrodes and/or the first metal inductive electrodes shield the partitioning gaps over the data signal lines.

17. The touch panel of claim 16 , wherein the first metal driving electrodes are located on a layer above or under the touch driving electrodes; and

the first metal inductive electrodes are located on a layer above or under the touch sensing electrodes.

18. The touch panel of claim 16 , wherein the touch driving electrodes extend along a row direction of the pixel units, and the touch sensing electrodes extend along a column direction of the pixel units; or

the touch driving electrodes extend along a column direction of the pixel units, and the touch sensing electrodes extend along a row direction of the pixel units.

19. The touch panel of claim 18 , wherein the touch driving electrodes and the touch sensing electrodes have a strip electrode structure, a diamond electrode structure or an interleaved-finger electrode array structure.

20. The touch panel of claim 19 , further comprising: common electrodes in gaps between the touch sensing electrodes and the touch driving electrodes of the common electrode layer, the common electrodes being insulated with the touch sensing electrodes and the touch driving electrodes.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2013
From: WANG, HAISHENG; DONG, XUE; LIU, YINGMING
To: BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 031763/0039 →
Priority Claims (1)
CN 2012 1 0541455 · Dec 13, 2012 · national
Continuity (1)
Related Publication 20140168154A1 · Jun 19, 2014