DISPLAY DEVICE
First Claim
1. A display device comprising:
- a first substrate having a pixel electrode and a counter electrode;
a second substrate having a plurality of detection electrodes of a touch panel;
a liquid crystal interposed between the first substrate and the second substrate;
a drive circuit for supplying a counter voltage and a touch panel scanning voltage to the counter electrode; and
a detection circuit for detecting presence or absence of a touch based on a current flowing through the detection electrodes, wherein;
the counter electrode is divided into m blocks, where m is set to an integer equal to or larger than 2 (m≧
2);
the m divided blocks of the counter electrode are commonly provided to pixels on a plurality of consecutive display lines;
the m divided blocks of the counter electrode serve as scanning electrodes of the touch panel;
the drive circuit sequentially supplies the touch panel scanning voltage to the m divided blocks of the counter electrode;
the detection circuit is configured to;
(a) detect presence or absence of noise or water droplet adhesion based on the current flowing through the detection electrodes upon supply of the touch panel scanning voltage to the m divided blocks of the counter electrode; and
(b) distinguish between noise and water droplet based on the current flowing through the detection electrodes on the assumption that a (m+1)th counter electrode exists in addition to the m divided blocks of the counter electrode, and the touch panel scanning voltage is supplied to the (m+1)th counter electrode, which is in synchronization with the touch panel scanning voltage supplied to the m divided blocks of the counter electrode.
1 Assignment
0 Petitions
Accused Products
Abstract
A display device is configured to (a) detect presence or absence of noise or water droplet adhesion based on current flowing through a plurality of detection electrodes upon supply of a touch panel scanning voltage to m divided blocks of the counter electrode, and (b) distinguish between noise and water droplet based on the current flowing through the detection electrodes on the assumption that a (m+1)th counter electrodes exists in addition to the m divided blocks of the counter electrode, and the touch panel scanning voltage is supplied to the (m+1)th counter electrode, which is in synchronization with the touch panel scanning voltage supplied to the m divided blocks of the counter electrode.
10 Citations
20 Claims
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1. A display device comprising:
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a first substrate having a pixel electrode and a counter electrode; a second substrate having a plurality of detection electrodes of a touch panel; a liquid crystal interposed between the first substrate and the second substrate; a drive circuit for supplying a counter voltage and a touch panel scanning voltage to the counter electrode; and a detection circuit for detecting presence or absence of a touch based on a current flowing through the detection electrodes, wherein; the counter electrode is divided into m blocks, where m is set to an integer equal to or larger than 2 (m≧
2);the m divided blocks of the counter electrode are commonly provided to pixels on a plurality of consecutive display lines; the m divided blocks of the counter electrode serve as scanning electrodes of the touch panel; the drive circuit sequentially supplies the touch panel scanning voltage to the m divided blocks of the counter electrode; the detection circuit is configured to; (a) detect presence or absence of noise or water droplet adhesion based on the current flowing through the detection electrodes upon supply of the touch panel scanning voltage to the m divided blocks of the counter electrode; and (b) distinguish between noise and water droplet based on the current flowing through the detection electrodes on the assumption that a (m+1)th counter electrode exists in addition to the m divided blocks of the counter electrode, and the touch panel scanning voltage is supplied to the (m+1)th counter electrode, which is in synchronization with the touch panel scanning voltage supplied to the m divided blocks of the counter electrode. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14)
the integration circuit is configured to integrate the current flowing through the respective detection electrodes for the m divided blocks of the counter electrode and an imaginary (m+1)th counter electrode upon supply of the touch panel scanning voltage to the m divided blocks of the counter electrode and supply of an imaginary touch panel scanning voltage to the imaginary (m+1)th counter electrode; upon detection with respect to presence or absence of noise or water droplet, a value closer to least significant data than an intermediate value between the least significant data and most significant data is set to a first operating point among the digital data allowed to be converted by the AD converter, and the detection circuit is configured to determine to have noise or water droplet if a difference between a digital data value derived from the AD converter for converting an integral value for the m divided blocks of the counter electrode of the integration circuits, and the first operating point is smaller than a predetermined third threshold value; and upon distinction between noise and water droplet, the detection circuit is configured to determine to have the noise if the digital data value derived from the AD converter for converting the integral value of the imaginary (m+1)th counter electrode of the integration circuits is in a range between the most significant data set as a second operating point and the least significant data, and if a difference between the value and the second operating point is larger than a predetermined fourth threshold value.
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10. The display device according to claim 9,
wherein the digital data converted by the AD converter are 10-bit data; -
the first operating point is a decimal value ranging from 250 to 350, and the second operating point is a decimal value close to 1023.
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11. The display device according to claim 9, wherein upon distinction between noise and water droplet, if it is determined to have the water droplet, the detection circuit is configured to average a maximum value and the digital data converted by the AD converter corresponding to a peripheral electrode of the electrode having the digital data converted by the AD converter as a maximum value, and to determine to have a touch if the averaged data value is in a range between the first operating point and the maximum value, and a difference between the data value and the first operating point is larger than a predetermined fifth threshold value, and to further determine to have no touch otherwise.
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12. The display device according to claim 11, wherein eight electrodes adjacent to the electrode with the maximum value constitute peripheral electrodes, and the average is calculated by obtaining an arithmetic mean of nine digital data.
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13. The display device according to claim 9, wherein upon distinction between noise and water droplet, if it is determined to have the noise, the detection circuit is configured to apply average filtering to the digital data acquired by the AD converter for converting the integral value for the respective m divided blocks of the counter electrode of the integration circuit corresponding to the detection electrode having the noise detected, to determine the electrode with the maximum data value among those subjected to the average filtering as an actually touched electrode, and to distinguish between the imaginarily touched electrode and the electrode having the data value in a range between the maximum value and the least significant data, and a difference between the data value and the maximum value, which is larger than a predetermined sixth threshold value.
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14. The display device according to claim 13, wherein an arithmetic mean of the digital data of 20 frames is acquired by applying the average filtering.
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15. A display device comprising:
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a first substrate having a pixel electrode and a counter electrode; a second substrate having a plurality of detection electrodes; a liquid crystal interposed between the first substrate and the second electrode; a drive circuit for supplying a counter voltage and a scanning voltage; and a detection circuit for making a touch determination based on a signal generated in the detection electrodes, wherein; the counter electrode is divided into m blocks, where m is set to an integer equal to or larger than 2 (m≧
2);the counter electrode is commonly provided to the pixel electrodes; the drive circuit supplies the scanning voltage to the counter electrode in a detection period; the detection circuit is configured to detect a signal generated in the detection electrode in the detection period at m cycles and a subsequent noise detection period, and the touch determination is made based on a first threshold value and a second threshold value, which are selectively used in accordance with a detection result in the noise detection period. - View Dependent Claims (16, 17, 18, 19, 20)
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Specification