IP Library Granted Patent US 12663311
Granted Patent B2
US 12663311 · App. 18/761,798 · Granted Jun 23, 2026

Detection device

Inventors: Kaoru Ito (Tokyo, JP); Akihiko Fujisawa (Tokyo, JP); Daichi Abe (Tokyo, JP)
Assignee: Magnolia White Corporation
G01J1/44G01N21/31G01J2001/446
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Quick Facts
Patent No.
US 12663311
App. No.
18/761,798
Granted
Jun 23, 2026
Kind
B2
Abstract

According to an aspect, a detection device includes: sensors each of which includes a photodiode configured to detect light and is configured to generate an output corresponding to a degree of the detected light; and a detection circuit configured to receive the output of each sensor. The photodiode has an anode to which a reference potential is applied and a cathode to which a reset potential higher than the reference potential is applied. Each sensor is configured to generate the output corresponding to the degree of the light detected by the photodiode after the reset potential is applied to the cathode and before the reset potential is applied to the cathode again. The outputs of the sensors are received in a first period and a second period after the first period. The reference potential and the reset potential in the first period are different from those in the second period.

Claims (33)

1 . A detection device comprising:

a plurality of sensors each of which includes a photodiode configured to detect light and is configured to generate an output corresponding to a degree of the detected light; and

a detection circuit that is configured to receive the output of each of the sensors, wherein

the photodiode has an anode to which a reference potential is applied and a cathode to which a reset potential is applied, the reset potential is higher than the reference potential,

each of the sensors is configured to generate the output corresponding to the degree of the light detected by the photodiode after the reset potential is applied to the cathode and before the reset potential is applied to the cathode again,

the outputs of the sensors are received in a first period,

the outputs of the sensors are received in a second period after the first period, and

the reference potential and the reset potential in the first period are different from those in the second period.

2 . The detection device according to claim 1 , wherein the second period is omitted when the outputs of the sensors in the first period are all within a range between lower and upper limits of an input recognizable by the detection circuit.

3 . The detection device according to claim 1 , wherein in each of the first and second periods, the combination of the outputs of the sensors is regarded as an output from a detection region in which the sensors are arranged.

4 . The detection device according to claim 3 , wherein, when receiving both a first output that is the output from the detection region in the first period, and a second output that is the output from the detection region in the second period, the detection circuit subtracts an overlapping portion of the first and second outputs from one of the first output and the second output and combines an output obtained by the subtraction operation and the other of the first and the second outputs, or combines the first and the second outputs and subtracts the overlapping portion from an output obtained by combining the first and the second outputs.

5 . The detection device according to claim 1 , wherein

the sensors are arranged in a matrix having a row-column configuration, and

each of the sensors is coupled to a scan line for transmitting a scan signal that causes the sensor to generate the output and a signal line for transmitting the output from the sensor.

6 . The detection device according to claim 1 , further comprising a light source configured to emit light, wherein the light source and a sensor panel having a detection region in which the sensors are arranged face each other with a culture medium interposed therebetween.

7 . The detection device according to claim 1 , wherein a range between lower and upper limits of an input recognizable by the detection circuit is smaller than a range between lower and upper limits of the output of the sensor.

8 . A detection device comprising:

a plurality of sensors each of which includes a photodiode configured to detect light and is configured to generate an output corresponding to a degree of the detected light; and

a detection circuit that is configured to receive the output of each of the sensors, wherein

the photodiode has an anode to which a reference potential is applied and a cathode to which a reset potential is applied, the reset potential is higher than the reference potential,

a configuration that functions as an electrical resistor is interposed between each of the sensors and the detection circuit,

a current source that is configured to provide a bias current is coupled to a coupling path between the electrical resistor and the detection circuit,

the outputs of the sensors are received in a first period,

the outputs of the sensors are received in a second period after the first period, and

the bias current in the first period is different from the second period.

9 . The detection device according to claim 8 , wherein the second period is omitted when the outputs of the sensors in the first period are all within a range between lower and upper limits of an input recognizable by the detection circuit.

10 . The detection device according to claim 8 , wherein in each of the first and second periods, the combination of the outputs of the sensors is regarded as an output from a detection region in which the sensors are arranged.

11 . The detection device according to claim 10 , wherein, when receiving both a first output that is the output from the detection region in the first period, and a second output that is the output from the detection region in the second period, the detection circuit subtracts an overlapping portion of the first and second outputs from one of the first output and the second output and combines an output obtained by the subtraction operation and the other of the first and the second outputs, or combines the first and the second outputs and subtracts the overlapping portion from an output obtained by combining the first and the second outputs.

12 . The detection device according to claim 8 , wherein

the sensors are arranged in a matrix having a row-column configuration, and

each of the sensors is coupled to a scan line for transmitting a scan signal that causes the sensor to generate the output and a signal line for transmitting the output from the sensor.

13 . The detection device according to claim 8 , further comprising a light source configured to emit light, wherein the light source and a sensor panel having a detection region in which the sensors are arranged face each other with a culture medium interposed therebetween.

14 . The detection device according to claim 8 , wherein a range between lower and upper limits of an input recognizable by the detection circuit is smaller than a range between lower and upper limits of the output of the sensor.