US2015091868A1PendingUtilityA1

Display device with touch detention function, drive circuit, driving method of display device with touch detention function, and electronic unit

Assignee: JAPAN DISPLAY WEST INCPriority: Aug 23, 2010Filed: Dec 9, 2014Published: Apr 2, 2015
Est. expiryAug 23, 2030(~4.1 yrs left)· nominal 20-yr term from priority
G06F 3/0412G06F 3/0416G09G 2354/00G09G 3/3655G09G 3/3677G06F 3/044G06F 2203/04101G06F 3/045G06F 3/04166G06F 3/0446G06F 3/0445
56
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Claims

Abstract

A display device with a touch detection function includes a plurality of common drive electrodes arranged side by side to extend in one direction, a display element performing display, based on a pixel signal and a display drive signal, a touch detection element of electrostatic capacitance type detecting an external proximity object based on a touch detection drive signal with an amplitude larger than that of the display drive signal, and a scan drive section performing first scan drive and second scan drive, the first scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the display drive signal in a time-divisional manner, and the second scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the touch detection drive signal in a time-divisional manner.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A display device with a touch detection function comprising:
 a plurality of common drive electrodes arranged on a TFT substrate;   a display element performing display, based on a pixel signal and a display drive signal;   a touch detection element of electrostatic capacitance type detecting an external proximity object based on a touch detection drive signal with an amplitude larger than that of the display drive signal; and   a scan drive section that performs scan drive operation for performing display,   wherein the scan drive section performs first scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the display drive signal in a time-divisional manner,   the scan drive section further performs second scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the touch detection drive signal in a time-divisional manner,   the scan drive section is arranged on the TFT substrate, and   the common drive electrodes function as drive electrodes for the display element and as drive electrodes for the touch detection element.   
     
     
         2 . The display device according to  claim 1 , wherein when the common drive electrode selected as a target of the first scan drive is coincident with the common drive electrode selected as a target of the second scan drive, the scan drive section applies the display drive signal to the coincident common drive electrode. 
     
     
         3 . The display device according to  claim 2 , wherein the scan drive section includes a first switch and a second switch, turning-on of the first switch allowing the common drive electrodes to be supplied with the display drive signal during the first scan drive, and turning-on of the second switch allowing the common drive electrodes to be supplied with the touch detection drive signal during the second scan drive. 
     
     
         4 . The display device according to  claim 3 , wherein the scan drive section further includes a third switch, turning-on of the third switch allowing unselected common drive electrodes, which is not selected as a target of the first and second scan drive, to be supplied with a direct-current potential. 
     
     
         5 . The display device according to  claim 4 , wherein the direct-current potential is equal to a time-averaged voltage value of the display drive signal. 
     
     
         6 . The display device according to  claim 2 , wherein the touch detection drive signal is a rectangular wave signal with alternately-inverted polarity. 
     
     
         7 . A display device comprising:
 a plurality of common drive electrodes arranged on a TFT substrate;   a display element performing display based on a pixel signal and a   display drive signal;   a detection element performing detection based on a detection drive signal with an amplitude larger than that of the display drive signal; and   a scan drive section including a first switch and a second switch,   wherein turning-on of the first switch allows the common drive electrodes to be supplied with the display drive signal,   turning-on of the second switch allows the common drive electrodes to be supplied with the detection drive signal,   the scan drive section is arranged on the TFT substrate, and   the common drive electrodes function as drive electrodes for the display element and as drive electrodes for the touch detection element.   
     
     
         8 . A drive circuit including a scan drive section that performs scan drive operation for performing display on a display section with a touch detection function, the display section comprising:
 a plurality of common drive electrodes being arranged on a TFT substrate,   a display element performing display based on a pixel signal and the display drive signal, and   a touch detection element of electrostatic capacitance type detecting an external proximity object based on the touch detection drive signal,   wherein the scan drive section performs first scan drive allowing a plurality of common drive electrodes to be sequentially supplied with a display drive signal in a time-divisional manner,   the scan drive further performs second scan drive allowing the plurality of common drive electrodes to be sequentially supplied with a touch detection drive signal with an amplitude larger than that of the display drive signal in a time-divisional manner,   the scan drive section is arranged on the TFT substrate, and   the common drive electrodes function as drive electrodes for the display element and as drive electrodes for the touch detection element.   
     
     
         9 . A driving method of a display device with a touch detection function, the driving method comprising:
 performing first scan drive operation for performing display, based on a pixel signal and a display drive signal, by allowing a plurality of common drive electrodes to be sequentially supplied with a display drive signal in a time-divisional manner, and allowing pixel electrodes, corresponding to the common drive electrodes which are under the supply of the display drive signal, to be sequentially supplied with the pixel signal in synchronization with the supply of the display drive signal,   the common drive electrodes being arranged on a TFT substrate, and   performing second scan drive operation for detecting an external proximity object, based on a detection signal from a touch detection electrode, by allowing the plurality of common drive electrodes to be sequentially supplied with a touch detection drive signal with an amplitude larger than that of the display drive signal in a time-divisional manner,   the touch detection electrode forming an electrostatic capacitance with the plurality of common drive electrodes,   wherein the common drive electrodes function as drive electrodes for the first scan drive operation performing display and as drive electrodes for the second scan drive operation for detecting the external proximity object.   
     
     
         10 . An electronic unit including a display device with a touch detection function and a control section performing operation control with use of the display device with a touch detection function, the display device with a touch detection function comprising:
 a plurality of common drive electrodes arranged on a TFT substrate;   a display element performing display based on a pixel signal and a display drive signal;   a touch detection element of electrostatic capacitance type detecting an external proximity object, based on a touch detection drive signal with an amplitude larger than that of the display drive signal; and   a scan drive section that performs scan drive operation for performing display,   wherein the scan drive section performs first scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the display drive signal in a time-divisional manner,   the scan drive section further performs second scan drive allowing the plurality of common drive electrodes to be sequentially supplied with the touch detection drive signal in a time-divisional manner,   the scan drive section is arranged on the TFT substrate, and   the common drive electrodes function as drive electrodes for the display element and as drive electrodes for the touch detection element.

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