IP Library › Granted Patent US 12,113,383
Granted Patent B2
US 12,113,383 · App. 17/218,502 · Granted Oct 8, 2024

Charging system, charging method, and non-transitory computer-readable recording medium for terminating of charge based on decreaser battery voltage

Inventors: Masaki Ikeda (Mie, JP); Tatsuya Miwa (Mie, JP); Yu Ota (Mie, JP)
Assignee: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
H02J7/0024H02J7/00036H02J7/00302H02J7/0047H02J7/0071H02J7/00711H02J7/00712H02J7/00714H02J7/007182H01M10/441H02J7/0013
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Quick Facts
Patent No.
US 12,113,383
App. No.
17/218,502
Granted
Oct 8, 2024
Kind
B2
Abstract

A charging system is configured to charge a battery pack including one or more battery cells. The charging system includes an acquirer and a controller. The acquirer is configured to acquire, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged. The controller is configured to, when the voltage between the terminals or the cell voltage reaches a target voltage, cause a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode. The controller is configured to stop charging operation when the acquisition voltage acquired by the acquirer decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode.

Claims (66)

1. A charging system configured to charge a battery pack including one or more battery cells, the charging system comprising:

an acquirer configured to acquire, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged, and

a controller configured to, when the voltage between the terminals or the cell voltage reaches a target voltage, cause a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode, wherein:

the controller is configured to stop charging operation when the acquisition voltage acquired by the acquirer decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode,

the controller is configured to determine the predetermined condition based on a predetermined reference voltage value,

the controller is configured to determine the predetermined reference voltage value based on the acquisition voltage acquired by the acquirer in a predetermined time period, and

the predetermined time period starts at a timing at which the first charging mode is caused to transition to the second charging mode.

2. The charging system of claim 1 , wherein

the battery pack is a battery pack for an electric tool.

3. The charging system of claim 1 , wherein

the first charging mode is a charging mode based on a constant current control method, and

the second charging mode is a charging mode based on a constant voltage control method.

4. The charging system of claim 1 , wherein

the predetermined condition is that the acquisition voltage has a voltage value smaller than or equal to the predetermined reference voltage value.

5. The charging system of claim 2 , wherein

the controller is configured to

execute a determining process of determining a presence or absence of an abnormality in the battery pack after a lapse of a predetermined time since the charging operation is stopped, and

restart the charging operation when the absence of the abnormality is determined in the determining process.

6. The charging system of claim 5 , wherein

the controller is configured to determine in the determining process that the abnormality is absent when the voltage value of the acquisition voltage acquired by the acquirer after the lapse of the predetermined time is larger than or equal to a prescribed reference voltage value.

7. The charging system of claim 1 , wherein

the controller is configured to

execute a determining process of determining a presence or absence of an abnormality in the battery pack after a lapse of a predetermined time since the charging operation is stopped, and

restart the charging operation when the absence of the abnormality is determined in the determining process.

8. The charging system of claim 7 , wherein

the controller is configured to determine in the determining process that the abnormality is absent when the voltage value of the acquisition voltage acquired by the acquirer after the lapse of the predetermined time is larger than or equal to a prescribed reference voltage value.

9. The charging system of claim 8 , wherein

the controller is configured to determine the prescribed reference voltage value based on the acquisition voltage acquired by the acquirer within a prescribed time period during a reference value determination process prior to the determining process, and

the prescribed time period is a time period while the charging operation is temporarily stopped in the second charging mode.

10. A charging system configured to charge a battery pack including one or more battery cells, the charging system comprising:

an acquirer configured to acquire, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged, and

a controller configured to, when the voltage between the terminals or the cell voltage reaches a target voltage, cause a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode, wherein:

the controller is configured to

stop charging operation when the acquisition voltage acquired by the acquirer decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode, and

restart the charging operation when the acquisition voltage acquired by the acquirer has a voltage value larger than or equal to a prescribed reference value after a lapse of a predetermined time since the charging operation is stopped,

the controller is configured to

determine the predetermined condition based on a predetermined reference voltage value, and

determine the predetermined reference voltage value based on the acquisition voltage acquired by the acquirer in a predetermined time period, and

the predetermined time period starts at a timing at which the first charging mode is caused to transition to the second charging mode.

11. A charging system configured to charge a battery pack including one or more battery cells, the charging system comprising:

an acquirer configured to acquire, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged, and

a controller configured to, when the voltage between the terminals or the cell voltage reaches a target voltage, cause a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode, wherein:

the controller is configured to stop charging operation when the acquisition voltage acquired by the acquirer decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode,

the controller is configured to

execute a determining process of determining a presence or absence of an abnormality in the battery pack after a lapse of a predetermined time since the charging operation is stopped, and

restart the charging operation when the absence of the abnormality is determined in the determining process,

the controller is configured to determine in the determining process that the abnormality is absent when the voltage value of the acquisition voltage acquired by the acquirer after the lapse of the predetermined time is larger than or equal to a prescribed reference voltage value,

the controller is configured to determine the prescribed reference voltage value based on the acquisition voltage acquired by the acquirer within a prescribed time period during a reference value determining process performed prior to the determination process, and

the prescribed time period is a time period while the charging operation is temporarily stopped in the second charging mode.

12. A charging method for charging a battery pack including one or more battery cells, the charging method comprising:

an acquisition step of acquiring, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged;

a transition step of, when the voltage between the terminals or the cell voltage reaches a target voltage, causing a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode; and

a stopping step of stopping charging operation when the acquisition voltage acquired in the acquisition step decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode, wherein:

the predetermined condition is determined based on a predetermined reference voltage value,

the predetermined reference voltage value is determined based on the acquisition voltage acquired by the acquirer in a predetermined time period, and

the predetermined time period starts at a timing at which the first charging mode is caused to transition to the second charging mode.

13. A non-transitory computer-readable tangible recording medium storing a program designed to cause one or more processors to execute the charging method of claim 12 .

14. A charging method for charging a battery pack including one or more battery cells, the charging method comprising:

an acquisition step of acquiring, as an acquisition voltage, a voltage between terminals or a cell voltage of each of the one or more battery cells in the battery pack which is being charged,

a transition step of, when the voltage between the terminals or the cell voltage reaches a target voltage, cause a first charging mode allowing fast charging to transition to a second charging mode in which a charge current is lower than in the first charging mode, and

a stopping step of stopping charging operation when the acquisition voltage acquired in the acquisition step decreases and an aspect of a decrease in the acquisition voltage satisfies a predetermined condition in the second charging mode,

a restart step of executing a determining process of determining a presence or absence of an abnormality in the battery pack after a lapse of a predetermined time since the charging operation is stopped, and restarting the charging operation when the absence of the abnormality is determined in the determining process, wherein:

in the determining process, determining that the abnormality is absent when the voltage value of the acquisition voltage acquired by the acquirer after the lapse of the predetermined time is larger than or equal to a prescribed reference voltage value,

the prescribed reference voltage value is determined based on the acquisition voltage acquired by the acquirer within a prescribed time period during a reference value determining process performed prior to the determination process, and

the prescribed time period is a time period while the charging operation is temporarily stopped in the second charging mode.

15. A non-transitory computer-readable tangible recording medium storing a program designed to cause one or more processors to execute the charging method of claim 14 .

Assignments (2)
NUNC PRO TUNC ASSIGNMENT Recorded Aug 6, 2026
From: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
To: NEXRA FIELD WORKS CO., LTD.
Reel/Frame 076114/0584 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2021
From: IKEDA, MASAKI; MIWA, TATSUYA; OTA, YU
To: PANASONIC INTELLECTUAL PROPERTY MANAGEMENT CO., LTD.
Reel/Frame 056892/0721 →
Priority Claims (1)
JP 2020-064787 · Mar 31, 2020 · national
Continuity (1)
Related Publication 20210305820A1 · Sep 30, 2021