IP Library Granted Patent US 12,483,041
Granted Patent B2
US 12,483,041 · App. 18/067,292 · Granted Nov 25, 2025

Electronic device and control method

Inventors: Satoshi Ishimaru (Kanagawa, JP); Takamichi Kosugi (Tokyo, JP)
Assignee: Canon Kabushiki Kaisha
H02J7/00043
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Quick Facts
Patent No.
US 12,483,041
App. No.
18/067,292
Granted
Nov 25, 2025
Kind
B2
Abstract

An electronic device comprises a power receiving unit and a control unit. In a first mode in which the power receiving unit receives power from a first battery and does not receive power from a second battery, the control unit calculates a first operable time based on a plurality of information relating to the first battery acquired from the first battery, and calculates a second operable time based on information other than information of a discharge current of the second battery among a plurality of information relating to the second battery acquired from the second battery and the information of the discharge current of the first battery acquired from the first battery.

Claims (57)

1 . An electronic device comprising:

a CPU; and

a memory storing a program which, when executed by the CPU, causes the electronic device to function as the following units:

a power receiving unit that receives power from a first battery and receives power from a second battery;

an acquisition unit that acquires from the first battery a plurality of information relating to the first battery, including information of a discharge current of the first battery and acquires from the second battery a plurality of information relating to the second battery, including information of a discharge current of the second battery; and

a control unit that calculates a first operable time for which the electronic device can operate using power from the first battery based on the plurality of information relating to the first battery acquired by the acquisition unit and calculates a second operable time for which the electronic device can operate using power from the second battery based on the plurality of information relating to the second battery acquired by the acquisition unit,

wherein in a first mode in which the power receiving unit receives power from the first battery and does not receive power from the second battery, the control unit calculates the first operable time based on the plurality of information relating to the first battery acquired from the first battery, and calculates the second operable time based on information other than the information of the discharge current of the second battery among the plurality of information relating to the second battery acquired from the second battery and the information of the discharge current of the first battery acquired from the first battery.

2 . The electronic device according to claim 1 , wherein

the plurality of information relating to the first battery include a voltage, a discharge current, and a dischargeable remaining capacity of the first battery,

the plurality of information relating to the second battery include a voltage, a discharge current, and a dischargeable remaining capacity of the second battery, and

in the first mode, the control unit calculates the discharge current of the second battery based on a power consumption obtained based on the information of the discharge current of the first battery and the voltage of the second battery, and calculates the second operable time based on the calculated discharge current of the second battery and the dischargeable remaining capacity of the second battery.

3 . The electronic device according to claim 1 , wherein

in a second mode in which the power receiving unit receives power from the second battery and does not receive power from the first battery, the control unit calculates the second operable time based on the plurality of information relating to the second battery, and calculates the first operable time based on information other than the information of the discharge current of the first battery among the plurality of information relating to the first battery acquired from the first battery and the information of the discharge current of the second battery acquired from the second battery.

4 . The electronic device according to claim 3 , wherein

the plurality of information relating to the first battery include a voltage, a discharge current, and a dischargeable remaining capacity of the first battery,

the plurality of information relating to the second battery include a voltage, a discharge current, and a dischargeable remaining capacity of the second battery, and

in the second mode, the control unit calculates the discharge current of the first battery based on a power consumption obtained based on the information of the discharge current of the second battery and the voltage of the first battery, and calculates the first operable time based on the calculated discharge current of the first battery and the dischargeable remaining capacity of the first battery.

5 . The electronic device according to claim 3 , wherein

the control unit sets the electronic device to any one of a plurality of modes, including the first mode and the second mode, based on the voltage of the first battery and the voltage of the second battery, and

the control unit sets the electronic device to the first mode in a case that the voltage of the first battery is greater than the voltage of the second battery, and sets the electronic device to the second mode in a case that the voltage of the second battery is greater than the voltage of the first battery.

6 . The electronic device according to claim 1 , wherein

the control unit calculates a total time of the first operable time and the second operable time, and displays the total time on a display.

7 . The electronic device according to claim 1 , wherein

the electronic device is an image capture apparatus, and the first battery and the second battery are contained in an accessory device that is attachable to and detachable from the image capture apparatus.

8 . An electronic device comprising:

a CPU; and

a memory storing a program which, when executed by the CPU, causes the electronic device to function as the following units:

a power receiving unit that receives power from a first battery and receives power from a second battery;

an acquisition unit that acquires from the first battery a plurality of information relating to the first battery, including information of a discharge current of the first battery and acquires from the second battery a plurality of information relating to the second battery, including information of a discharge current of the second battery; and

a control unit that calculates a first operable time for which the electronic device can operate using power from the first battery based on the plurality of information relating to the first battery acquired by the acquisition unit and calculates a second operable time for which the electronic device can operate using power from the second battery based on the plurality of information relating to the second battery acquired by the acquisition unit,

wherein in a case that the control unit performs a predetermined control such that the power receiving unit receives power from the first battery and does not receive power from the second battery, the control unit calculates the first operable time based on the plurality of information relating to the first battery, and calculates the second operable time based on a predetermined information that is acquired from the first battery and cannot be acquired from the second battery in the predetermined control among the plurality of information relating to the second battery and information other than the predetermined information among the plurality of information relating to the second battery.

9 . The electronic device according to claim 8 , wherein

the plurality of information relating to the first battery include a voltage, a discharge current, and a dischargeable remaining capacity of the first battery,

the plurality of information relating to the second battery include a voltage, a discharge current, and a dischargeable remaining capacity of the second battery, and

the predetermined information is information of the discharge current.

10 . The electronic device according to claim 9 , wherein

in the predetermined control, the control unit calculates the discharge current of the second battery based on a power consumption obtained based on the information of the discharge current of the first battery and the voltage of the second battery, and calculates the second operable time based on the calculated discharge current of the second battery and the dischargeable remaining capacity of the second battery.

11 . A method of controlling an electronic device having a power receiving unit that receives power from a first battery and receives power from a second battery, the method comprising:

acquiring a plurality of information relating to the first battery, including information of a discharge current of the first battery from the first battery and a plurality of information relating to the second battery, including information of a discharge current of the second battery from the second batter; and

performing control so as to calculate a first operable time for which the electronic device can operate using power from the first battery based on the plurality of information relating to the first battery calculate a second operable time for which the electronic device can operate using power from the second battery based on the plurality of information relating to the second battery,

wherein in a first mode in which the electronic device receives power from the first battery and does not receive power from the second battery, the control calculates the first operable time based on the plurality of information relating to the first battery acquired from the first battery, and calculates the second operable time based on information other than the information of the discharge current of the second battery among the plurality of information relating to the second battery acquired from the second battery and the information of the discharge current of the first battery acquired from the first battery.

12 . The method according to claim 11 , wherein

the plurality of information relating to the first battery include a voltage, a discharge current, and a dischargeable remaining capacity of the first battery,

the plurality of information relating to the second battery include a voltage, a discharge current, and a dischargeable remaining capacity of the second battery, and

in the first mode, the control calculates the discharge current of the second battery based on a power consumption obtained based on the information of the discharge current of the first battery and the voltage of the second battery, and calculates the second operable time based on the calculated discharge current of the second battery and the dischargeable remaining capacity of the second battery.

13 . The method according to claim 11 , wherein

in a second mode in which the power receiving unit receives power from the second battery and does not receive power from the first battery, the control calculates the second operable time based on the plurality of information relating to the second battery, and calculates the first operable time based on information other than the information of the discharge current of the first battery among the plurality of information relating to the first battery acquired from the first battery and the information of the discharge current of the second battery acquired from the second battery.

14 . The method according to claim 13 , wherein

the plurality of information relating to the first battery include a voltage, a discharge current, and a dischargeable remaining capacity of the first battery, the plurality of information relating to the second battery include a voltage, a discharge current, and a dischargeable remaining capacity of the second battery, and

in the second mode, the control calculates the discharge current of the first battery based on a power consumption obtained based on the information of the discharge current of the second battery and the voltage of the first battery, and calculates the first operable time based on the calculated discharge current of the first battery and the dischargeable remaining capacity of the first battery.

15 . The method according to claim 13 , wherein

the control sets the electronic device to any one of a plurality of modes, including the first mode and the second mode, based on the voltage of the first battery and the voltage of the second battery, and

the control sets the electronic device to the first mode in a case that the voltage of the first battery is greater than the voltage of the second battery, and sets the electronic device to the second mode in a case that the voltage of the second battery is greater than the voltage of the first battery.

16 . The method according to claim 11 , wherein

the control calculates a total time of the first operable time and the second operable time, and displays the total time on a display unit.

17 . The method according to claim 11 , wherein

the electronic device is an image capture apparatus, and the first battery and the second battery are contained in an accessory device that is attachable to and detachable from the image capture apparatus.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 6, 2023
From: ISHIMARU, SATOSHI; KOSUGI, TAKAMICHI
To: CANON KABUSHIKI KAISHA
Reel/Frame 062289/0960 →
Priority Claims (1)
JP 2021-206273 · Dec 20, 2021 · national
Continuity (1)
Related Publication 20230198268A1 · Jun 22, 2023
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