IP Library Granted Patent US 10,282,017
Granted Patent B2
US 10,282,017 · App. 15/359,473 · Granted May 7, 2019

Display device and touch detection method of display device

Inventors: Hayato Kurasawa (Tokyo, JP); Hiroshi Mizuhashi (Tokyo, JP); Koji Noguchi (Tokyo, JP); Takafumi Suzuki (Tokyo, JP)
Assignee: Japan Display Inc.
G06F3/0416G02F1/137G02F1/1368G02F1/13338G02F1/13394G02F1/133512G02F1/134336G02F1/136286G06F3/044G06F3/0412G09G3/3677G09G3/3688G02F1/133345G02F2201/121G02F2201/123G06F2203/04107
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Quick Facts
Patent No.
US 10,282,017
App. No.
15/359,473
Granted
May 7, 2019
Kind
B2
Abstract

According to one embodiment, a display device includes a plurality of gate lines, a plurality of data lines intersecting with the gate lines, a plurality of pixel electrodes provided in areas defined by the gate lines and the data lines, and a sensor drive controller which includes a plurality of common electrodes facing the pixel electrodes and detects a touch by using the common electrodes. The sensor drive controller selects at least one of the common electrodes as a sensor electrode, detects a touch by using the sensor electrode, and inputs, to the other common electrodes, a guard signal for reducing generation of capacitance between the other common electrodes and the sensor electrode.

Claims (119)

1. A display device comprising:

a plurality of gate lines;

a plurality of data lines intersecting with the gate lines;

a plurality of pixel electrodes provided in areas defined by the gate lines and the data lines;

a plurality of common electrodes opposing to the pixel electrodes; and

a sensor drive controller which detects a touch by using the common electrodes, wherein

the sensor drive controller comprises:

a sensor signal generation module which inputs a sensor signal to the common electrodes;

a guard signal generation module which inputs a guard signal to the common electrodes;

a select circuit which selectively connects one of the signal generation modules to the common electrodes; and

a common signal generation module,

the select circuit comprises:

a first wiring provided along the common electrodes and connected to the sensor signal generation module;

a second wiring provided along the common electrodes;

a common signal select switch which selectively connects the second wiring to one of the guard signal generation module and the common signal generation module; and

a switch portion which switches a state of connection between the first wiring and second wiring and the common electrode,

the sensor drive controller controls the switch portion and the common signal select switch of the select circuit, and

the sensor drive controller connects at least one of the common electrodes to a sensor signal generation module in a state that at least one of the switch portions connects the first wiring to the common electrode and functions the common electrode as a sensor electrode, detects a touch by using the sensor electrode, and connects the other common electrodes to the guard signal generation module in a state that the other switch portions connect the second wirings to the common electrodes and the common signal select switches connect the second wirings to the guard signal generation module, the guard signal reducing an occurrence of capacitance between the other common electrodes and the sensor electrode.

2. The display device of claim 1 , wherein

the sensor drive controller detects a touch as a self-capacitive system when the common electrode functions as the sensor electrode.

3. The display device of claim 1 , wherein

the guard signal has a waveform identical to a waveform of a sensor signal, and is input to the common electrodes other than the common electrode selected as the sensor electrode concurrently with the sensor signal.

4. The display device of claim 1 , further comprising:

a liquid crystal layer facing the pixel electrodes and the common electrodes;

a display drive controller outputting a signal which generates an electric field between the pixel electrodes and the common electrodes, and changes an optical state of the liquid crystal layer; and

a main controller which controls the display drive controller and the sensor drive controller, wherein

the main controller is configured to alternately perform a display period for driving the liquid crystal layer by controlling the display drive controller and a sensor period for detecting a touch by controlling the sensor drive controller.

5. The display device of claim 1 , wherein

one of a plurality of detection circuits for detecting a touch is assigned to the common electrodes arranged along the first wiring and second wiring, and

the detection circuits are less than the common electrodes in number.

6. A display device comprising:

a plurality of gate lines;

a plurality of data lines intersecting with the gate lines;

a plurality of pixel electrodes provided in areas defined by the gate lines and the data lines;

a plurality of common electrodes facing the pixel electrodes; and

a sensor drive controller which detects a touch by using the common electrodes, wherein

the sensor drive controller comprises:

a sensor signal generation module which inputs a sensor signal to the common electrodes;

a guard signal generation module which inputs a guard signal to the common electrodes;

a select circuit which selectively connects one of the signal generation modules to the common electrodes; and

a common signal generation module,

the select circuit comprises:

a first wiring provided along the common electrodes and connected to the sensor signal generation module;

a second wiring provided along the common electrodes;

a common signal select switch which selectively connects the second wiring to one of the guard signal generation module and the common signal generation module; and

a switch portion which switches a state of connection between the first wiring and second wiring and the common electrode,

the sensor drive controller controls the switch portion and the common signal select switch of the select circuit, and

the sensor drive controller connects at least one of the common electrodes to a sensor signal generation module in a state that at least one of the switch portions connects the first wiring to the common electrode and functions the common electrode as a sensor electrode, and detects a touch as a self-capacitive system, when the common electrode functions as the sensor electrode.

7. The display device of claim 6 , wherein

the sensor drive controller inputs, to the common electrodes other than the common electrode selected as the sensor electrode, a guard signal for reducing occurrence of capacitance between the other common electrodes and the sensor electrode.

8. The display device of claim 7 , wherein

the guard signal has a waveform identical to a waveform of the sensor signal, and is input to the common electrodes other than the common electrode selected as the sensor electrode concurrently with the sensor signal.

9. The display device of claim 7 , further comprising:

a liquid crystal layer facing the pixel electrodes and the common electrodes;

a display drive controller outputting a signal which generates an electric field between the pixel electrodes and the common electrodes to changes an optical state of the liquid crystal layer; and

a main controller which controls the display drive controller and the sensor drive controller, wherein

the main controller is configured to alternately perform a display period for driving the liquid crystal layer by controlling the display drive controller and a sensor period for detecting a touch by controlling the sensor drive controller.

10. The display device of claim 9 , wherein

the sensor drive controller applies a predetermined voltage to each common electrode in the display period.

11. The display device of claim 7 , wherein

the switch portion comprises:

a pair of select switching elements; and

a switch line for inputting a switch signal to the pair of select switching elements,

one of the select switching elements connects the first wiring to the common electrode, and

the other select switching element connects the second wiring to the common electrode.

12. The display device of claim 11 , wherein

the switch lines are connected to the pair of select switching elements, respectively, and

the select switching elements have phases opposite to each other, and when one of the select switching elements is set to an on-state in response to a signal from the switch line, the other select switching element is set to an off-state.

13. The display device of claim 11 , further comprising a gate line drive circuit which scans the gate lines in series, wherein

the gate line drive circuit comprises a plurality of gate shift registers connected to the gate lines, respectively, and further comprises switch line shift registers which are connected to the gate shift registers and scan the switch lines subsequent to the gate shift registers.

14. The display device of claim 11 , wherein

the switch line is electrically connected to a different switch line, and a switch signal for these switch lines is shared.

15. The display device of claim 11 , further comprising:

a spacer which maintains a cell gap of the liquid crystal layer; and

a shielding portion which shields the spacer, wherein

each of the select switching elements is formed at a position overlapping the spacer.

16. A display device comprising:

a plurality of gate lines;

a plurality of data lines intersecting with the gate lines;

a plurality of pixel electrodes provided in areas defined by the gate lines and the data lines;

a plurality of common electrodes facing the pixel electrodes, each of the common electrodes facing two or more of the pixel electrodes; and

a sensor drive controller which detects a touch by using the common electrodes, wherein

the sensor drive controller comprises:

a sensor signal generation module which inputs a sensor signal to the common electrodes;

a guard signal generation module which inputs a guard signal to the common electrodes;

a select circuit which selectively connects one of the signal generation modules to the common electrodes; and

a common signal generation module,

the select circuit comprises:

a first wiring provided along the common electrodes and connected to the sensor signal generation module;

a second wiring provided along the common electrodes;

a common signal select switch which selectively connects the second wiring to one of the guard signal generation module and the common signal generation module; and

a switch portion which switches a state of connection between the first wiring and second wiring and the common electrode,

the sensor drive controller controls the switch portion and the common signal select switch of the select circuit,

the sensor drive controller connects at least one of the common electrodes to a sensor signal generation module in a state that at least one of the switch portions connects the first wiring to the common electrode and functions the common electrode as a sensor electrode and detects a touch by using the sensor electrode,

one of a plurality of detection circuits for detecting a touch is assigned to the common electrodes arranged along the first wiring and the second wiring, and

the detection circuits are less than the common electrodes in number.

17. The display device of claim 16 , wherein

the sensor drive controller detects a touch as a self-capacitive system for supplying a sensor signal to the common electrode connected via the select circuit and detecting change in the sensor signal.

18. A touch detection method of a display device comprising:

a plurality of gate lines;

a plurality of data lines intersecting with the gate lines;

a plurality of pixel electrodes provided in areas defined by the gate lines and the data lines;

a plurality of common electrodes facing the pixel and;

a sensor drive controller which detects a touch by using the common electrodes, wherein

the sensor drive controller comprises:

a sensor signal generation module which inputs a sensor signal to the common electrodes;

a guard signal generation module which inputs a guard signal to the common electrodes;

a select circuit which selectively connects one of the signal generation modules to the common electrodes; and

a common signal generation module,

the select circuit comprises:

a first wiring provided along the common electrodes and connected to the sensor signal generation module;

a second wiring provided along the common electrodes;

a common signal select switch which selectively connects the second wiring to one of the guard signal generation module and the common signal generation module; and

a switch portion which switches a state of connection between the first wiring and second wiring and the common electrode,

the sensor drive controller controls the switch portion and the common signal select switch of the select circuit,

the method comprising:

connecting at least one of the common electrodes to a sensor signal generation module in a state that at least one of the switch portions connects the first wiring to the common electrode and functions the common electrode as a sensor electrode;

detecting a touch by using the sensor electrode; and

connecting the other common electrodes to the guard signal generation module in a state that the other switch portions connect the second wirings to the common electrodes and the common signal select switches connect the second wirings to the guard signal generation module, a guard signal for reducing generation of capacitance between the other common electrodes and the sensor electrode.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 22, 2025
From: JAPAN DISPLAY INC.
To: MAGNOLIA WHITE CORPORATION
Reel/Frame 072130/0313 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2016
From: KURASAWA, HAYATO; MIZUHASHI, HIROSHI; NOGUCHI, KOJI; SUZUKI, TAKAFUMI
To: JAPAN DISPLAY INC.
Reel/Frame 040406/0161 →
Priority Claims (1)
JP 2015-231995 · Nov 27, 2015 · national
Continuity (1)
Related Publication 20170153752A1 · Jun 1, 2017