IP Library Granted Patent US 10,409,425
Granted Patent B2
US 10,409,425 · App. 14/650,708 · Granted Sep 10, 2019

In-cell touch panel with shielding electrode and display device

Inventors: Yingming Liu (Beijing, CN); Xue Dong (Beijing, CN); Hailin Xue (Beijing, CN); Haisheng Wang (Beijing, CN); Weijie Zhao (Beijing, CN); Shengji Yang (Beijing, CN); Xiaoliang Ding (Beijing, CN); Hongjuan Liu (Beijing, CN)
Assignees: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
G06F3/044G06F3/0412G06F2203/04107
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Quick Facts
Patent No.
US 10,409,425
App. No.
14/650,708
Granted
Sep 10, 2019
Kind
B2
Abstract

An in-cell touch panel and a display device are provided, and the in-cell touch panel includes: an upper substrate and a lower substrate arranged oppositely to each other; a plurality of self-capacitance electrodes arranged in a same layer and insulated from each other at a side, facing the lower substrate, of the upper substrate or a side, facing the upper substrate, of the lower substrate; a shielding electrode provided at a side, facing the lower substrate, of each of the self-capacitance electrodes, which is insulated from the shielding electrode; and an insulating layer arranged between each of the self-capacitance electrodes and the shielding electrode. Such an in-cell touch panel may isolate the touch detection signals applied to the self-capacitance electrodes from the display signals, so as to avoid mutual interference therebetween.

Claims (56)

1. An in-cell touch panel, comprising:

an upper substrate and a lower substrate arranged oppositely to each other;

a plurality of self-capacitance electrodes arranged in a same layer and insulated from each other at a side, facing the lower substrate, of the upper substrate or a side, facing the upper substrate, of the lower substrate;

a shielding electrode provided at a side, facing the lower substrate, of each of the self-capacitance electrodes, wherein each of the self-capacitance electrodes is insulated from the shielding electrode; and

an insulating layer provided between each of the self-capacitance electrodes and the shielding electrode,

wherein the in-cell touch panel further comprises a black matrix layer, and each of the self-capacitance electrodes is between the black matrix layer and the shielding electrode in an arrangement direction of the upper substrate and the lower substrate; in the arrangement direction of the upper substrate and the lower substrate, the black matrix layer is between each of the self-capacitance electrodes and the upper substrate and the shielding electrode is between the black matrix layer and the lower substrate;

the in-cell touch panel further comprises at least one conductive wire being electrically connected with and corresponding, in a one-to-one manner, to each of the self-capacitance electrodes; and the conductive wire is arranged in a same layer as the shielding electrode, and each of the self-capacitance electrodes is electrically connected with the conductive wire that the self-capacitance electrode corresponds to, through a via hole within the insulating layer.

2. The in-cell touch panel according to claim 1 , further comprising: a touch detection chip configured to determine a touch position by detecting variation of capacitance value of each of the self-capacitance electrodes.

3. The in-cell touch panel according to claim 1 , further comprising: a black matrix layer provided at the side, facing the lower substrate, of the upper substrate or the side, facing the upper substrate, of the lower substrate;

wherein an orthographic projection, upon the lower substrate, of a pattern of each of the self-capacitance electrodes and an orthographic projection, upon the lower substrate, of a pattern of the shielding electrode are arranged within an area where a pattern of the black matrix layer is arranged.

4. The in-cell touch panel according to claim 3 , wherein the orthographic projection, upon the lower substrate, of the pattern of each of the self-capacitance electrodes and the orthographic projection, upon the lower substrate, of the pattern of the shielding electrode are respectively of a lattice structure within the area where the pattern of the black matrix layer is arranged.

5. The in-cell touch panel according to claim 3 , further comprising:

at least one conductive node corresponding to the self-capacitance electrode in a one-to-one manner; wherein

the conductive wire each has an orthographic projection, upon the lower substrate, arranged in the area where the pattern of the black matrix layer is arranged, and the conductive node each is provided within an area where a frame sealant of the in-cell touch panel is arranged; and

each of the self-capacitance electrodes is connected to the conductive node through the conductive wire, and then is electrically connected with a connection terminal of the touch detection chip through a leading wire arranged within the area where the frame sealant is arranged.

6. The in-cell touch panel according to claim 5 , wherein the conductive wire and each of the self-capacitance electrode are provided in a same layer; and

the orthographic projection, upon the lower substrate, of the pattern of the shielding electrode covers the pattern of the conductive wire and the pattern of each of the self-capacitance electrodes.

7. The in-cell touch panel according to claim 5 , wherein

the orthographic projection, upon the lower substrate, of the pattern of the shielding electrode and the orthographic projection, upon the lower substrate, of the pattern of the conductive wire cover the patterns of each of the self-capacitance electrodes.

8. The in-cell touch panel according to claim 7 , wherein the black matrix layer is arranged at the side, facing the lower substrate, of the upper substrate, a color filter layer is provided on the black matrix layer, a planarization layer is provided on the color filter layer, and a spacer layer is provided on the planarization layer; and

each of the self-capacitance electrodes is arranged between the black matrix layer and the color filter layer, the conductive wire and the shielding electrode are arranged between the color filter layer and the planarization layer, and the color filter layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the color filter layer and the planarization layer, the conductive wire and the shielding electrode are arranged between the planarization layer and the spacer layer, and the planarization layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the planarization layer and the spacer layer, the conductive wire and the shielding electrode are arranged on the spacer layer, and the spacer layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode.

9. The in-cell touch panel according to claim 7 , the lower substrate is provided with a common electrode layer thereon, a passivation layer is arranged on the common electrode layer, and a pixel electrode layer is provided on the passivation layer; and

each of the self-capacitance electrodes is arranged on the passivation layer, the conductive wire and the shielding electrode are arranged between the common electrode layer and the passivation layer, and the passivation layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode.

10. The in-cell touch panel according to claim 2 , wherein the touch detection chip is configured to operate during both a display time period and a touch time period of each frame, or operate only during the touch time period of each frame.

11. A display device comprising the in-cell touch panel according to claim 1 .

12. The in-cell touch panel according to claim 4 , further comprising: at least one conductive wire being electrically connected with and corresponding, in a one-to-one manner, to each of the self-capacitance electrodes, and at least one conductive node corresponding to the self-capacitance electrode in a one-to-one manner; wherein

the conductive wire each has an orthographic projection, upon the lower substrate, arranged in the area where the pattern of the black matrix layer is arranged, and the conductive node each is provided within an area where a frame sealant of the in-cell touch panel is arranged; and

each of the self-capacitance electrodes is connected to the conductive node through the conductive wire, and then is electrically connected with a connection terminal of the touch detection chip through a leading wire arranged within the area where the frame sealant is arranged.

13. The in-cell touch panel according to claim 12 , wherein the conductive wire and each of the self-capacitance electrode are provided in a same layer; and

the orthographic projection, upon the lower substrate, of the pattern of the shielding electrode covers the pattern of the conductive wire and the pattern of each of the self-capacitance electrodes.

14. The in-cell touch panel according to claim 12 , wherein the conductive wire is arranged in a same layer as the shielding electrode, and each of the self-capacitance electrodes is electrically connected with the conductive wire that the self-capacitance electrode corresponds to, through a via hole within the insulating layer; and

the orthographic projection, upon the lower substrate, of the pattern of the shielding electrode and the orthographic projection, upon the lower substrate, of the pattern of the conductive wire cover the patterns of each of the self-capacitance electrodes.

15. The in-cell touch panel according to claim 3 , wherein the black matrix layer is arranged at the side, facing the lower substrate, of the upper substrate, a color filter layer is provided on the black matrix layer, a planarization layer is provided on the color filter layer, and a spacer layer is provided on the planarization layer; and

each of the self-capacitance electrodes is arranged between the black matrix layer and the color filter layer, the conductive wire and the shielding electrode are arranged between the color filter layer and the planarization layer, and the color filter layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the color filter layer and the planarization layer, the conductive wire and the shielding electrode are arranged between the planarization layer and the spacer layer, and the planarization layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the planarization layer and the spacer layer, the conductive wire and the shielding electrode are arranged on the spacer layer, and the spacer layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode.

16. The in-cell touch panel according to claim 4 , wherein the black matrix layer is arranged at the side, facing the lower substrate, of the upper substrate, a color filter layer is provided on the black matrix layer, a planarization layer is provided on the color filter layer, and a spacer layer is provided on the planarization layer; and

each of the self-capacitance electrodes is arranged between the black matrix layer and the color filter layer, the conductive wire and the shielding electrode are arranged between the color filter layer and the planarization layer, and the color filter layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the color filter layer and the planarization layer, the conductive wire and the shielding electrode are arranged between the planarization layer and the spacer layer, and the planarization layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode; or

each of the self-capacitance electrodes is arranged between the planarization layer and the spacer layer, the conductive wire and the shielding electrode are arranged on the spacer layer, and the spacer layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode.

17. The in-cell touch panel according to claim 8 , wherein the touch detection chip is configured to operate during both a display time period and a touch time period of each frame, or operate only during the touch time period of each frame.

18. The in-cell touch panel according to claim 9 , wherein the touch detection chip is configured to operate during both a display time period and a touch time period of each frame, or operate only during the touch time period of each frame.

19. An in-cell touch panel, comprising:

an upper substrate and a lower substrate arranged oppositely to each other;

a plurality of self-capacitance electrodes arranged in a same layer and insulated from each other at a side, facing the lower substrate, of the upper substrate or a side, facing the upper substrate, of the lower substrate;

a shielding electrode provided at a side, facing the lower substrate, of each of the self-capacitance electrodes, wherein each of the self-capacitance electrodes is insulated from the shielding electrode; and

an insulating layer provided between each of the self-capacitance electrodes and the shielding electrode,

wherein the in-cell touch panel further comprises at least one conductive wire being electrically connected with and corresponding, in a one-to-one manner, to each of the self-capacitance electrodes; and the conductive wire is arranged in a same layer as the shielding electrode, and each of the self-capacitance electrodes is electrically connected with the conductive wire that the self-capacitance electrode corresponds to, through a via hole within the insulating layer.

20. An in-cell touch panel, comprising:

an upper substrate and a lower substrate arranged oppositely to each other;

a plurality of self-capacitance electrodes arranged in a same layer and insulated from each other at a side, facing the lower substrate, of the upper substrate or a side, facing the upper substrate, of the lower substrate;

a shielding electrode provided at a side, facing the lower substrate, of each of the self-capacitance electrodes, wherein each of the self-capacitance electrodes is insulated from the shielding electrode; and

an insulating layer provided between each of the self-capacitance electrodes and the shielding electrode,

wherein the in-cell touch panel further comprises a planarization layer on the upper substrate and a spacer layer on the planarization layer, each of the self-capacitance electrodes is arranged between the planarization layer and the spacer layer, the conductive wire and the shielding electrode are arranged on the spacer layer, and the spacer layer acts as the insulating layer between the self-capacitance electrode and the shielding electrode.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2015
From: LIU, YINGMING; DONG, XUE; XUE, HAILIN; WANG, HAISHENG; ZHAO, WEIJIE; YANG, SHENGJI; DING, XIAOLIANG; LIU, HONGJUAN
To: BOE TECHNOLOGY GROUP CO., LTD.; BEIJING BOE OPTOELECTRONICS TECHNOLOGY CO., LTD.
Reel/Frame 035809/0438 →
Priority Claims (1)
CN 2014 1 0241051 · May 30, 2014 · national
Continuity (1)
Related Publication 20160266677A1 · Sep 15, 2016