IP Library Granted Patent US 12687648
Granted Patent B2
US 12687648 · App. 18/761,069 · Granted Jul 21, 2026

Radiography apparatus, radiography system, and control method of radiography apparatus

Inventor: Takuya Ryu (Tokyo, JP)
Assignee: Canon Kabushiki Kaisha
G01T1/243G01T1/247A61B6/54
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Quick Facts
Patent No.
US 12687648
App. No.
18/761,069
Granted
Jul 21, 2026
Kind
B2
Abstract

A radiography apparatus includes a plurality of pixels configured to generate image signals that are based on radiation, a voltage conversion circuit configured to convert an input voltage and output the converted voltage, a first battery configured to output a voltage, and a power control unit configured to supply either of the voltage output by the voltage conversion circuit and the voltage output by the first battery as a source voltage, depending on an operating state of the radiography apparatus.

Claims (48)

1 . A radiography apparatus comprising:

a plurality of pixels configured to generate image signals that are based on radiation;

a voltage conversion circuit configured to convert an input voltage and output the converted voltage;

a first battery configured to output a voltage; and

a power control unit configured to supply either of the voltage output by the voltage conversion circuit and the voltage output by the first battery as a source voltage, depending on an operating state of the radiography apparatus.

2 . The radiography apparatus according to claim 1 , wherein, in a case where the power control unit supplies the voltage output by the first battery as the source voltage, the power control unit stops an operation of the voltage conversion circuit.

3 . The radiography apparatus according to claim 1 , wherein the voltage conversion circuit is a switching regulator.

4 . The radiography apparatus according to claim 1 , wherein the first battery is charged by the voltage output by the voltage conversion circuit.

5 . The radiography apparatus according to claim 1 , wherein, during a first period, the power control unit supplies the voltage output by the voltage conversion circuit as the source voltage, and during a second period, the power control unit supplies the voltage output by the first battery as the source voltage.

6 . The radiography apparatus according to claim 5 , further comprising a readout circuit configured to read out the image signals generated by the plurality of pixels,

wherein the second period is an entire or partial period of a period during which the readout circuit reads out the image signals.

7 . The radiography apparatus according to claim 6 , wherein the first period is a period during which a reset operation of the plurality of pixels is performed.

8 . The radiography apparatus according to claim 5 , wherein the first period is a period during which a reset operation of the plurality of pixels is performed.

9 . The radiography apparatus according to claim 5 , further comprising a readout circuit configured to read out the image signals generated by the plurality of pixels,

wherein the first period is a period during which a reset operation of the plurality of pixels is performed, and

wherein the second period is a period during which the readout circuit reads out the image signals.

10 . The radiography apparatus according to claim 5 , further comprising a readout circuit configured to read out the image signals generated by the plurality of pixels,

wherein the first period is a period during which a reset operation of the plurality of pixels is performed, and

wherein the second period includes a period during which the image signals of the plurality of pixels are accumulated and a period during which the readout circuit reads out the image signals.

11 . The radiography apparatus according to claim 1 ,

wherein, in a case where a second battery having a capacity larger than that of the first battery or an external power supply apparatus is connected, during a period during which a reset operation of the plurality of pixels is performed, the voltage conversion circuit converts a voltage that is based on the second battery or the external power supply apparatus, and the power control unit supplies the voltage output by the voltage conversion circuit as the source voltage, and

wherein, in a case where the second battery having a capacity larger than that of the first battery is not connected, and in a case where an external power supply apparatus is not connected, during the period during which the reset operation of the plurality of pixels is performed, the power control unit supplies the voltage output by the first battery as the source voltage.

12 . The radiography apparatus according to claim 1 ,

wherein, in a case where a second battery having a capacity larger than that of the first battery is connected and a remaining amount of power in the second battery is larger than a first threshold, during a period during which a reset operation of the plurality of pixels is performed, the voltage conversion circuit converts a voltage that is based on the second battery, and the power control unit supplies the voltage output by the voltage conversion circuit as the source voltage, and

wherein, in a case where the second battery having a capacity larger than that of the first battery is connected and the remaining amount of power in the second battery is not larger than the first threshold, during the period during which the reset operation of the plurality of pixels is performed, the power control unit supplies the voltage output by the first battery as the source voltage.

13 . The radiography apparatus according to claim 1 , further comprising a readout circuit configured to read out the image signals generated by the plurality of pixels,

wherein, in a case where a remaining amount of power in the first battery is larger than a second threshold, during an entire or partial period of a period during which the readout circuit reads out the image signals, the power control unit supplies the voltage output by the first battery as the source voltage, and

wherein, in a case where the remaining amount of power in the first battery is not larger than the second threshold, during the period during which the readout circuit reads out the image signals, the power control unit supplies the voltage output by the voltage conversion circuit as the source voltage.

14 . The radiography apparatus according to claim 13 , wherein, in a case where the remaining amount of power in the first battery is not larger than the second threshold, during the period during which the readout circuit reads out the image signals, the power control unit supplies the voltage output by the voltage conversion circuit as the source voltage, and charges the first battery.

15 . The radiography apparatus according to claim 1 , further comprising a plurality of sets of voltage conversion circuits and first batteries,

wherein the power control unit supplies a plurality of source voltages based on the plurality of sets of voltage conversion circuits and first batteries.

16 . The radiography apparatus according to claim 15 , wherein the plurality of source voltages are different from each other.

17 . The radiography apparatus according to claim 15 , wherein the power control unit determines a priority order of charging the plurality of first batteries based on information regarding remaining amounts of power or amounts of consumed power of the plurality of first batteries.

18 . The radiography system comprising:

the radiography apparatus according to claim 1 ; and

a radiation source configured to emit radiation.

19 . A radiography apparatus comprising:

a plurality of pixels configured to generate image signals based on radiation;

a voltage conversion circuit configured to convert an input voltage and output the converted voltage;

a first battery configured to output a voltage; and

a power control unit configured to supply either of the voltage output by the voltage conversion circuit and the voltage output by the first battery as a source voltage, depending on a radiation amount.

20 . A control method for a radiography apparatus,

the radiography apparatus including:

a plurality of pixels configured to generate image signals based on radiation;

a voltage conversion circuit configured to convert an input voltage and output the converted voltage; and

a first battery configured to output a voltage,

the method comprising:

supplying either of the voltage output by the voltage conversion circuit and the voltage output by the first battery as a source voltage, depending on an operating state of the radiography apparatus.