IP Library Granted Patent US 8,451,234
Granted Patent B2
US 8,451,234 · App. 12/155,609 · Granted May 28, 2013

Display device with touch panel

Inventors: Hideo Sato (Hitachi, JP); Shigeyuki Nishitani (Mobara, JP); Teruaki Saito (Mobara, JP)
Assignees: Japan Display East Inc.; Panasonic Liquid Crystal Display Co., Ltd.
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Quick Facts
Patent No.
US 8,451,234
App. No.
12/155,609
Granted
May 28, 2013
Kind
B2
Abstract

A touch panel includes plural first electrodes extending in a first direction, plural second electrodes extending in a second direction different from the first direction, a driving circuit, a detection circuit, and a coordinate-position calculating circuit. The driving circuit sequentially selects two first electrodes out of the plural first electrodes, supplies a high potential voltage higher than a reference voltage to one of the selected two first electrodes, and supplies the reference voltage to the other, the detection circuit detects a capacitance difference (A−B) between a capacitor A between a selected one of the second electrodes and the first electrode to which the high potential voltage is supplied and a capacitor B between the selected second electrode and the first electrode to which the reference voltage is supplied, and the coordinate-position calculating circuit calculates a touch position on the touch panel touched by the observer on the basis of positions of the selected first and second electrodes and the capacitance difference (A−B).

Claims (73)

1. A display device with touch panel comprising:

a display panel; and

an electrostatic capacitance coupling type touch panel arranged on a surface on an observer side of the display panel,

the touch panel including:

plural first electrodes extending in a first direction;

plural second electrodes extending in a second direction different from the first direction;

a driving circuit;

a detection circuit; and

a coordinate-position calculating circuit that calculates a touch position on the touch panel touched by the observer, wherein

the driving circuit sequentially selects two first electrodes out of the plural first electrodes, supplies a high potential voltage higher than a reference voltage to a first selected first electrode of the selected two first electrodes, and supplies the reference voltage to a second selected first electrode of the selected two first electrodes,

the detection circuit selects at least one second electrode out of the plural second electrodes and detects a capacitance difference (A−B) between a capacitor A between a first selected second electrode of the at least one second electrode and the first selected first electrode to which the high potential voltage is supplied and a capacitor B between the first selected second electrode and the second selected first electrode to which the reference voltage is supplied, and

the coordinate-position calculating circuit calculates a touch position on the touch panel touched by the observer based on positions of the selected two first electrodes and the first selected second electrode and the capacitance difference (A−B).

2. A display device with touch panel according to claim 1 , wherein the selected two first electrodes are adjacent electrodes of the first electrodes.

3. A display device with touch panel according to claim 1 , wherein

the detection circuit has an integration circuit, and

the integration circuit integrates a current difference between an electric current flowing through the capacitor A and an electric current flowing through the capacitor B and outputs a voltage proportional to the capacitance difference (A−B).

4. A display device with touch panel according to claim 3 , wherein

the detection circuit sequentially selects second electrodes in a time division manner, and

the integration circuit integrates a current difference between an electric current flowing through the capacitor A between the sequentially selected second electrodes and the first selected first electrode to which the high potential voltage is supplied and an electric current flowing through the capacitor B between the sequentially selected second electrodes and the second selected first electrode to which the reference voltage is supplied and outputs a voltage proportional to the capacitance difference (A−B).

5. A display device with touch panel according to claim 3 , wherein

the detection circuit simultaneously selects the plural second electrodes,

the integration circuit is provided for each of the plural second electrodes, and

each of the integration circuits integrates a current difference between an electric current flowing through the capacitor A between the second electrode corresponding to each of the integration circuits and the first selected first electrode to which the high potential voltage is supplied and an electric current flowing through the capacitor B between the second electrode corresponding to each of the integration circuits and the second selected first electrode to which the reference voltage is supplied and outputs a voltage proportional to the capacitance difference (A−B).

6. A display device with touch panel comprising:

a display panel; and

an electrostatic capacitance coupling type touch panel arranged on a surface on an observer side of the display panel,

the touch panel including:

plural first electrodes extending in a first direction;

plural second electrodes extending in a second direction different from the first direction;

a driving circuit;

a detection circuit; and

a coordinate-position calculating circuit that calculates a touch position on the touch panel touched by the observer, wherein

the driving circuit sequentially selects, in a period A, two first electrodes out of the plural first electrodes, supplies a high potential voltage higher than a reference voltage to a first selected first electrode of the selected two first electrodes, and supplies the reference voltage to a second selected first electrode of the selected two first electrodes and sequentially selects, in a period B, two second electrodes out of the plural second electrodes, supplies the high potential voltage higher than the reference voltage to a first selected second electrode of the selected two second electrodes, and supplies the reference voltage to a second selected second electrode of the selected two second electrodes,

the detection circuit detects, in the period A, a capacitance difference (A−B) between a capacitor A between each of the second electrodes and the first selected first electrode to which the high potential voltage is supplied and a capacitor B between each of the second electrodes and the second selected first electrode to which the reference voltage is supplied and detects, in the period B, a capacitance difference (C−D) between a capacitor C between each of the first electrodes and the first selected second electrode to which the high potential voltage is supplied and a capacitor D between each of the first electrodes and the second selected second electrode to which the reference voltage is supplied, and

the coordinate-position calculating circuit calculates a touch position on the touch panel by the observer on the basis of the selected two first electrodes and the capacitance difference (A−B) and the selected two second electrodes and the capacitance difference (C−D).

7. A display device with touch panel according to claim 6 , wherein the two first electrodes selected in the period A are adjacent electrodes of the first electrodes and the two second electrodes selected in the period B are adjacent electrodes of the second electrodes.

8. A display device with touch panel according to claim 6 , wherein

the detection circuit has an integration circuit, and

the integration circuit integrates, in the period A, a current difference between an electric current flowing through the capacitor A and an electric current flowing through the capacitor B and outputs a voltage proportional to the capacitance difference (A−B) and integrates, in the period B, a current difference between an electric current flowing through the capacitance C and an electric current flowing through the capacitor D and outputs a voltage proportional to the capacitance difference (C−D).

9. A display device with touch panel comprising:

a display panel; and

an electrostatic capacitance coupling type touch panel arranged on a surface on an observer side of the display panel,

the touch panel including:

plural first electrodes extending in a first direction;

plural second electrodes extending in a second direction different from the first direction;

a first electrode selection circuit;

a second electrode selection circuit;

a detection circuit; and

a coordinate-position calculating circuit that calculates a touch position on the touch panel touched by the observer, wherein

the first electrode selection circuit sequentially selects, in a period A, two first electrodes out of the plural first electrodes, supplies a high potential positive polarity pulse having a voltage level higher than a reference voltage to a first selected first electrode of the selected two first electrodes, and supplies a low potential negative polarity pulse having a voltage level lower than the reference voltage to a second selected first electrode of the selected two first electrodes,

the second electrode selection circuit sequentially selects, in a period B, two second electrodes out of the plural second electrodes, supplies a high potential positive polarity pulse having a voltage level higher than the reference voltage to a first selected second electrode of the selected two second electrodes, and supplies a low potential negative polarity pulse having a voltage level lower than the reference voltage to a second selected second electrode of the selected two second electrodes,

the detection circuit detects, in the period A, a capacitance difference (A−B) between a capacitor A between each of the second electrodes and the first selected first electrode to which the positive polarity pulse is supplied and a capacitor B between each of the second electrodes and the second selected first electrode to which the negative polarity pulse is supplied and detects, in the period B, a capacitance difference (C−D) between a capacitor C between each of the first electrodes and the first selected second electrode to which the positive polarity pulse is supplied and a capacitor D between each of the first electrodes and the second selected second electrode to which the negative polarity pulse is supplied, and

the coordinate-position calculating circuit calculates a touch position on the touch panel by the observer on the basis of the selected two first electrodes and the capacitance difference (A−B) and the selected two second electrodes and the capacitance difference (C−D).

10. A display device with touch panel according to claim 9 , wherein the two first electrodes selected in the period A are adjacent electrodes of the first electrodes and the two second electrodes selected in the period B are adjacent electrodes of the second electrodes.

11. A display device with touch panel according to claim 9 , wherein the first selected first electrode serves as a reference the first selected second electrode serves as a reference.

12. A display device with touch panel according to claim 9 , wherein

the first electrode selection circuit supplies the reference voltage to each of the first electrodes in the period B, and

the second electrode selection circuit supplies the reference voltage to each of the second electrodes in the period A.

13. A display device with touch panel according to claim 9 , wherein

the detection circuit has an integration circuit, and

the integration circuit integrates, in the period A, a current difference between an electric current flowing through the capacitor A and an electric current flowing through the capacitor B and outputs a voltage proportional to the capacitance difference (A−B) and integrates, in the period B, a current difference between an electric current flowing through the capacitor C and an electric current flowing through the capacitor D and outputs a voltage proportional to the capacitance difference (C−D).

14. A display device with touch panel according to claim 3 , wherein the detection circuit has an A/D conversion circuit connected to a post stage of the integration circuit.

15. A display device with touch panel according to claim 8 , wherein the detection circuit has an A/D conversion circuit connected to a post stage of the integration circuit.

16. A display device with touch panel according to claim 13 , wherein the detection circuit has an A/D conversion circuit connected to a post stage of the integration circuit.

17. A display device with touch panel according to claim 1 , wherein

each of the first electrodes has a wide electrode pattern between adjacent two second electrodes, and

each of the second electrodes has a wide electrode pattern between adjacent two first electrodes.

18. A display device with touch panel according to claim 10 , wherein

the first electrode selection circuit supplies the reference voltage to each of the first electrodes in the period B, and

the second electrode selection circuit supplies the reference voltage to each of the second electrodes in the period A.

19. A display device with touch panel according to claim 11 , wherein

the first electrode selection circuit supplies the reference voltage to each of the first electrodes in the period B, and

the second electrode selection circuit supplies the reference voltage to each of the second electrodes in the period A.

Assignments (7)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2024
From: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA; JAPAN DISPLAY INC.
To: PANELTOUCH TECHNOLOGIES LLC
Reel/Frame 067245/0560 →
NUNC PRO TUNC ASSIGNMENT Recorded Nov 17, 2023
From: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
To: PANASONIC INTELLECTUAL PROPERTY CORPORATION OF AMERICA
Reel/Frame 065615/0327 →
CHANGE OF NAME Recorded Apr 7, 2023
From: JAPAN DISPLAY EAST INC.
To: JAPAN DISPLAY INC.
Reel/Frame 063265/0756 →
CHANGE OF NAME Recorded Nov 12, 2012
From: HITACHI DISPLAYS, LTD.
To: JAPAN DISPLAY EAST INC.
Reel/Frame 029282/0054 →
MERGER Recorded Dec 13, 2011
From: IPS ALPHA SUPPORT CO., LTD.
To: PANASONIC LIQUID CRYSTAL DISPLAY CO., LTD.
Reel/Frame 027482/0140 →
ATTACHED ARE (1) THE COMPANY SPLIT DOCUMENTS IN JAPANESE WITH ENGLISH TRANSLATION THEREOF AND (2) THE CERTIFICATE OF COMPANY SPLIT DOCUMENT IN JAPANESE WITH ENGLISH TRANSLATION, WHICH TOGETHER CONVEY 50% OWNERSHIP OF THE REGISTERED PATENTS AS LISTED IN THE ATTACHED TO EACH OF THE RECEIVING PARTIES (SEE PAGE 10, EXHIBIT 2-1, SECTION 1 OF THE ENGLISH TRANSLATION OF THE COMPANY SPLIT PLAN.) Recorded Dec 13, 2011
From: HITACHI, DISPLAYS, LTD.
To: HITACHI DISPLAYS, LTD.; IPS ALPHA SUPPORT CO., LTD.
Reel/Frame 027615/0589 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 6, 2008
From: SATO, HIDEO; NISHITANI, SHIGEYUKI; SAITO, TERUAKI
To: HITACHI DISPLAYS, LTD.
Reel/Frame 021123/0644 →
Priority Claims (1)
JP 2007-175050 · Jul 3, 2007 · national
Continuity (1)
Related Publication 20090009486A1 · Jan 8, 2009