IP Library Granted Patent US 9,342,199
Granted Patent B2
US 9,342,199 · App. 14/132,395 · Granted May 17, 2016

Touch detection device, display device with touch detection function, and electronic apparatus

Inventors: Kohei Azumi (Tokyo, JP); Yoshitoshi Kida (Tokyo, JP)
Assignee: Japan Display Inc.
G06F3/044
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Quick Facts
Patent No.
US 9,342,199
App. No.
14/132,395
Granted
May 17, 2016
Kind
B2
Abstract

According to an aspect, a touch detection device includes a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object; a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance. The touch detection device corrects an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing.

Claims (59)

1. A touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing, and

wherein the excitation signal to be input to the first electrode is inverted and input to the element, and the sum of the output value from the second electrode and the output value from the element is a correction value of the output value from the second electrode.

2. The touch detection device according to claim 1 , wherein the excitation signal is input to the first electrode and the element at the same timing.

3. The touch detection device according to claim 1 , wherein the excitation signal to be input to the element is inverted by an inverter.

4. The touch detection device according to claim 1 , wherein the excitation signal to be input to the element is inverted by a circuit for inverting phases.

5. The touch detection device according to claim 1 , wherein

the excitation signal from the drive unit is input to the first electrode and the element with the same phase, and

after an electric charge in the element is temporarily stored and an electric charge from the second electrode is temporarily stored, a difference between the electric charges is obtained, and the obtained difference is used as a correction value of the output value from the second electrode.

6. The touch detection device according to claim 1 , wherein the element is disposed close to the detection unit.

7. The touch detection device according to claim 1 , wherein the element is mounted on a substrate on which the detection unit is mounted.

8. The touch detection device according to claim 1 , wherein wiring that electrically couples the element and the drive unit is longer than wiring that electrically couples the element and the detection unit.

9. The touch detection device according to claim 1 , wherein the detection unit and drive unit are separated from each other as individual electronic parts.

10. The touch detection device according to claim 9 , wherein the electronic part is an integral circuit or an integral circuit package.

11. A display device with a touch detection function having a touch detection device, the touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing, and

wherein the excitation signal to be input to the first electrode is inverted and input to the element, and the sum of the output value from the second electrode and the output value from the element is a correction value of the output value from the second electrode.

12. An electronic apparatus having a touch detection device, the touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing, and

wherein the excitation signal to be input to the first electrode is inverted and input to the element, and the sum of the output value from the second electrode and the output value from the element is a correction value of the output value from the second electrode.

13. A touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing,

wherein the excitation signal from the drive unit is input to the first electrode and the element with the same phase, and

wherein after an electric charge in the element is temporarily stored and an electric charge from the second electrode is temporarily stored, a difference between the electric charges is obtained, and the obtained difference is used as a correction value of the output value from the second electrode.

14. The touch detection device according to claim 13 , wherein the excitation signal is input to the first electrode and the element at the same timing.

15. The touch detection device according to claim 13 , wherein the excitation signal to be input to the first electrode is inverted and input to the element, and the sum of the output value from the second electrode and the output value from the element is a correction value of the output value from the second electrode.

16. The touch detection device according to claim 15 , wherein the excitation signal to be input to the element is inverted by an inverter.

17. The touch detection device according to claim 15 , wherein the excitation signal to be input to the element is inverted by a circuit for inverting phases.

18. The touch detection device according to claim 13 , wherein the element is disposed close to the detection unit.

19. The touch detection device according to claim 13 , wherein the element is mounted on a substrate on which the detection unit is mounted.

20. The touch detection device according to claim 13 , wherein wiring that electrically couples the element and the drive unit is longer than wiring that electrically couples the element and the detection unit.

21. The touch detection device according to claim 13 , wherein the detection unit and drive unit are separated from each other as individual electronic parts.

22. The touch detection device according to claim 21 , wherein the electronic part is an integral circuit or an integral circuit package.

23. A display device with a touch detection function having a touch detection device, the touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing,

wherein the excitation signal from the drive unit is input to the first electrode and the element with the same phase, and

wherein after an electric charge in the element is temporarily stored and an electric charge from the second electrode is temporarily stored, a difference between the electric charges is obtained, and the obtained difference is used as a correction value of the output value from the second electrode.

24. An electronic apparatus having a touch detection device, the touch detection device comprising:

a drive unit that supplies an excitation signal having at least variable magnitude to a first electrode at a predetermined period for detecting approach or a touch of an object;

a detection unit electrically coupled to a second electrode provided to be opposed to the first electrode to detect approach or a touch of the object according to an output value from the second electrode; and

an element that electrically couples the drive unit and the detection unit, receives the excitation signal from the drive unit, and has a predetermined size of electrostatic capacitance,

wherein the touch detection device is configured to correct an output value from the second electrode by using an output value from the element and the output value from the second electrode obtained at the same timing,

wherein the excitation signal from the drive unit is input to the first electrode and the element with the same phase, and

wherein after an electric charge in the element is temporarily stored and an electric charge from the second electrode is temporarily stored, a difference between the electric charges is obtained, and the obtained difference is used as a correction value of the output value from the second 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 Jan 2, 2014
From: AZUMI, KOHEI; KIDA, YOSHITOSHI
To: JAPAN DISPLAY INC.
Reel/Frame 031875/0282 →
Priority Claims (2)
JP 2012-283721 · Dec 26, 2012 · national
JP 2013-075086 · Mar 29, 2013 · national
Continuity (1)
Related Publication 20140176496A1 · Jun 26, 2014