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Display device and driving method for display device

  • US 8,717,334 B2
  • Filed: 10/27/2009
  • Issued: 05/06/2014
  • Est. Priority Date: 03/30/2009
  • Status: Expired due to Fees
First Claim
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1. A display device comprising:

  • an optical sensor circuit provided in a display region, the optical sensor circuit including a light-receiving element and detecting intensity of light incident to the light-receiving element;

    a pressure detection circuit which detects pressure applied to a display surface of a display panel on a basis of a change of the display surface in a panel thickness direction which change is caused by the pressure,with respect to a region in which the pressure is to be detected, both of the detection of the pressure by the pressure detection circuit and the detection of the intensity of the light by the optical sensor circuit being carried out within a period allocated to acquisition of detection data concerning the pressure in the display region, anda first circuit which serves as both of the optical sensor circuit and the pressure detection circuit, wherein;

    the first circuit includes a photodiode serving as the light-receiving element, a first capacitor, a second capacitor, and an output amplifier,a cathode of the photodiode, one end of the first capacitor, one end of the second capacitor, and an input of the output amplifier are connected with one another via a first node,an electrode at the other end of the second capacitor is provided on a substrate having the display surface of the display panel,an electrode at the one end of the second capacitor is positioned to be away from the display surface in a thickness direction of the display panel to face the electrode at the other end of the second capacitor,in a case where the first circuit operates as the optical sensor circuit, (i) a first pulse is applied to an anode of the photodiode so as to make the photodiode conductive in a forward direction, (ii) the application of the first pulse is finished so that a reverse biased voltage is applied to the photodiode, (iii) at a predetermined time after finishing the application of the first pulse, a second pulse is applied to the other end of the first capacitor to change the voltage at the first node so as to enable the output amplifier to output, and (iv) while the second pulse is applied, the output from the output amplifier is obtained,in a case where the first circuit operates as the pressure detection circuit, (i) a first direct voltage is applied to the anode of the photodiode, (ii) application of the first direct voltage to the anode during a first period makes the photodiode conductive in a forward direction, (iii) while the first direct voltage is applied to the anode during a second period following the first period, a fourth pulse is applied to the other end of the first capacitor to change a voltage at the first node so that a reverse biased voltage is applied to the photodiode, and (iv) while the fourth pulse is applied, an output from the output amplifier is obtained.

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