IP Library Granted Patent US 11,817,732
Granted Patent B2
US 11,817,732 · App. 17/328,434 · Granted Nov 14, 2023

Charing controller, rechargeable battery, electronic device, and control method

Inventors: Hiromitsu Yamaguchi (Kanagawa, JP); Tadashi Kosuga (Kanagawa, JP); Hideki Otsuki (Kanagawa, JP); Koichi Fukuoka (Kanagawa, JP)
Assignee: Lenovo (Singapore) Pte. Ltd.
H02J7/0049H02J7/007182
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Quick Facts
Patent No.
US 11,817,732
App. No.
17/328,434
Granted
Nov 14, 2023
Kind
B2
Abstract

A charging controller includes a current measurement unit configured to measure a charging current of a rechargeable battery, a detection unit configured to detect switching from a constant current charge to a constant voltage charge based on the charging current measured by the current measurement unit, during charge of the rechargeable battery, and an update unit configured to update a full charge capacity of the rechargeable battery based on a charged capacity after the point in time, detected by the detection unit, of switching from the constant current charge to the constant voltage charge.

Claims (35)

1. A charging controller, comprising:

a current measurement unit configured to measure a charging current of a rechargeable battery;

an internal resistance measurement unit configured to measure an internal resistance of the rechargeable battery multiple times over a charging period of the rechargeable battery;

a detection unit configured to detect switching from a constant current charge to a constant voltage charge based on the charging current measured by the current measurement unit, during charge of the rechargeable battery, wherein the detection unit detects a peak of the internal resistance based on a change in the internal resistance measured by the internal resistance measurement unit and detects a point of switching from the constant current charge to the constant voltage charge while referring to the detected peak of the internal resistance; and

an update unit configured to update a full charge capacity of the rechargeable battery based on a charged capacity after a point in time, detected by the detection unit, of switching from the constant current charge to the constant voltage charge, wherein

by temporarily stopping the charging current during the charging period of the rechargeable battery, the internal resistance measurement unit calculates the internal resistance of the rechargeable battery based on a difference between a voltage of the rechargeable battery before a stoppage and that of the rechargeable battery during the stoppage.

2. The charging controller according to claim 1 , wherein

a charging rate, at the point in time of switching from the constant current charge to the constant voltage charge during charge, is preset,

the charging rate is a ratio of the charged capacity to the full charge capacity, and

the update unit updates the full charge capacity of the rechargeable battery based on the charged capacity from the point in time detected by the detection unit until a fully charged state is reached and the preset charging rate.

3. The charging controller according to claim 2 , wherein

the current measurement unit measures the charging current of the rechargeable battery at a predetermined period, and

the detection unit detects switching from the constant current charge to the constant voltage charge when a measurement value of the charging current measured by the current measurement unit at e very predetermined period has continuously decreased from a previous measurement value by greater than or equal to a certain value for a predetermined number of times.

4. A charging controller, comprising:

a current measurement unit configured to measure a charging current of a rechargeable battery;

an internal resistance measurement unit configured to measure an internal resistance of the rechargeable battery multiple times over a charging period of the rechargeable battery;

a detection unit configured to detect switching from a constant current charge to a constant voltage charge based on the charging current measured by the current measurement unit, during charge of the rechargeable battery, wherein the detection unit detects a peak of the internal resistance based on a change in the internal resistance measured by the internal resistance measurement unit and detects a point of switching from the constant current charge to the constant voltage charge while referring to the detected peak of the internal resistance;

an update unit configured to update a full charge capacity of the rechargeable battery based on a charged capacity after a point in time, detected by the detection unit, of switching from the constant current charge to the constant voltage charge; and

a voltage measurement unit configured to measure a voltage of the rechargeable battery,

wherein the internal resistance measurement unit raises a measurement frequency of the internal resistance when the voltage measured by the voltage measurement unit during the charging period of the rechargeable battery has reached a predetermined threshold value.

5. The charging controller according to claim 4 , wherein

the internal resistance measurement unit lowers the measurement frequency in response to the detection of the peak of the internal resistance by the detection unit.

6. A charging controller, comprising:

a current measurement unit configured to measure a charging current of a rechargeable battery;

an internal resistance measurement unit configured to measure an internal resistance of the rechargeable battery multiple times over a charging period of the rechargeable battery;

a detection unit configured to detect switching from a constant current charge to a constant voltage charge based on the charging current measured by the current measurement unit, during charge of the rechargeable battery, wherein the detection unit detects a peak of the internal resistance based on a change in the internal resistance measured by the internal resistance measurement unit and detects a point of switching from the constant current charge to the constant voltage charge while referring to the detected peak of the internal resistance; and

an update unit configured to update a full charge capacity of the rechargeable battery based on a charged capacity after a point in time, detected by the detection unit, of switching from the constant current charge to the constant voltage charge, wherein

the detection unit detects the peak when an amount of change in a value of the internal resistance measured by the internal resistance measurement unit over multiple times has become less than or equal to a predetermined threshold value.

7. A control method in a charging controller, comprising steps of:

measuring, by a current measurement unit, a charging current of a rechargeable battery;

measuring, by an internal resistance measurement unit, an internal resistance of the rechargeable battery multiple times over a charging period of the rechargeable battery;

detecting, by a detection unit, switching from a constant current charge to a constant voltage charge based on the charging current measured by the current measurement unit, during charge of the rechargeable battery;

detecting, by the detection unit, a peak of the internal resistance based on a change in the internal resistance measured by the internal resistance measurement unit and further detecting a point of switching from the constant current charge to the constant voltage charge while referring to the detected peak of the internal resistance;

updating, by an update unit, a full charge capacity of the rechargeable battery based on a charged capacity after the point in time, detected by the detection unit, of switching from the constant current charge to the constant voltage charge; and

by temporarily stopping the charging current during the charging period of the rechargeable battery, calculating, by the internal resistance measurement unit, the internal resistance of the rechargeable battery based on a difference between a voltage of the rechargeable battery before a stoppage and that of the rechargeable battery during the stoppage.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2025
From: LENOVO PC INTERNATIONAL LIMITED
To: LENOVO SWITZERLAND INTERNATIONAL GMBH
Reel/Frame 070269/0092 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 19, 2025
From: LENOVO (SINGAPORE) PTE LTD.
To: LENOVO PC INTERNATIONAL LIMITED
Reel/Frame 070266/0952 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 10, 2021
From: YAMAGUCHI, HIROMITSU; KOSUGA, TADASHI; OTSUKI, HIDEKI; FUKUOKA, KOICHI
To: LENOVO (SINGAPORE) PTE. LTD.
Reel/Frame 056496/0242 →
Priority Claims (1)
JP 2020-107348 · Jun 22, 2020 · national
Continuity (1)
Related Publication 20210399567A1 · Dec 23, 2021