IP Library Granted Patent US 12,057,721
Granted Patent B2
US 12,057,721 · App. 17/410,009 · Granted Aug 6, 2024

Battery protection circuit and battery apparatus including the same

Inventors: Hyeoncheol Jeong (Yongin-si, KR); Sanggu Lee (Yongin-si, KR); Kyongpil Jin (Yongin-si, KR)
Assignee: SAMSUNG SDI CO., LTD.
H02J7/00308G01R15/04G01R31/3835H02J7/00302H02J7/0031H02J7/0024
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Quick Facts
Patent No.
US 12,057,721
App. No.
17/410,009
Granted
Aug 6, 2024
Kind
B2
Abstract

A battery protection circuit includes: a voltage divider connected in parallel to an outer terminal, and configured to output a divided voltage; a controller configured to output an overvoltage determination signal based on the divided voltage that is input thereto; a logic portion configured to output a switching control signal based on the overvoltage determination signal and the divided voltage that are input thereto; and a switching portion configured to control a connection between a battery module and the outer terminal according to the switching control signal.

Claims (32)

1. A battery protection circuit, comprising:

a voltage divider connected in parallel to an outer terminal, and configured to output a divided voltage;

a controller configured to output an overvoltage determination signal based on the divided voltage that is input thereto;

a logic portion configured to output a switching control signal based on the overvoltage determination signal and the divided voltage that are input thereto, wherein the logic portion includes an AND gate and an inverter, the inverter receives the divided voltage from the voltage divider, and outputs an inverter output signal to the AND gate, and the AND gate receives the overvoltage determination signal and the inverter output signal to output the switching control signal; and

a switching portion configured to control a connection between a battery module and the outer terminal according to the switching control signal.

2. The battery protection circuit as claimed in claim 1 , wherein, when the divided voltage is greater than or equal to a predetermined first voltage, the inverter output signal and the overvoltage determination signal are low level signals.

3. The battery protection circuit as claimed in claim 2 , wherein the switching portion is opened by the switching control signal when the switching control signal is a low level signal.

4. The battery protection circuit as claimed in claim 1 , wherein, when the divided voltage is less than a predetermined first voltage, the inverter output signal and the overvoltage determination signal are high level signals.

5. The battery protection circuit as claimed in claim 4 , wherein the switching portion is closed by the switching control signal when the switching control signal is a high level signal.

6. The battery protection circuit as claimed in claim 1 , wherein the controller determines that an external device connected to the outer terminal is a dedicated charger, and outputs the overvoltage determination signal so that the logic portion outputs the switching control signal to connect the battery module with the outer terminal.

7. A battery module protecting method, comprising:

receiving, by a voltage divider, a voltage from an outer terminal, to provide a divided voltage;

outputting, by a controller, an overvoltage determination signal based on the divided voltage that is input thereto;

outputting, by a logic portion, a switching control signal based on the overvoltage determination signal and the divided voltage that are input thereto, wherein the logic portion includes an AND gate and an inverter, wherein the outputting, by the logic portion, of the switching control signal includes:

transmitting, by the inverter, an inverter output signal to the AND gate based on the divided voltage input thereto, and

outputting, by the AND gate, the switching control signal based on the overvoltage determination signal and the inverter output signal that are input thereto; and

controlling, by a switching portion, a connection between a battery module and the outer terminal according to the switching control signal.

8. The battery module protecting method as claimed in claim 7 , wherein, when the divided voltage is greater than or equal to a predetermined first voltage, the inverter output signal and the overvoltage determination signal are low level signals.

9. The battery module protecting method as claimed in claim 8 , further comprising disconnecting, by the switching portion, the battery module and the outer terminal according to the switching control signal when the switching control signal is a low level signal.

10. The battery module protecting method as claimed in claim 7 , wherein, when the divided voltage is less than a predetermined first voltage, the inverter output signal and the overvoltage determination signal are high level signals.

11. The battery module protecting method as claimed in claim 10 , further comprising connecting, by the switching portion, the battery module and the outer terminal according to the switching control signal when the switching control signal is a high level signal.

12. The battery module protecting method as claimed in claim 7 , wherein the outputting, by the controller, of the overvoltage determination signal includes:

determining, by the controller, that an external device connected to the outer terminal is a dedicated charger when the divided voltage is input thereto according to the predetermined time sequence; and

outputting, by the controller, the overvoltage determination signal so that the logic portion outputs the switching control signal to connect the battery module with the outer terminal.

13. A battery apparatus, comprising:

a battery module;

an outer terminal configured to connect an external device to the battery module; and

a battery protection circuit, the battery protection circuit including:

a voltage divider connected in parallel to the outer terminal, and configured to output a divided voltage;

a controller configured to output an overvoltage determination signal based on the divided voltage that is input thereto;

a logic portion configured to output a switching control signal based on the overvoltage determination signal and the divided voltage that are input thereto, wherein the logic portion includes an AND gate and an inverter, the inverter receives the divided voltage from the voltage divider, and outputs an inverter output signal to the AND gate, and the AND gate receives the overvoltage determination signal and the inverter output signal to output the switching control signal; and

a switching portion configured to control a connection between the battery module and the outer terminal according to the switching control signal.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2021
From: JEONG, HYEONCHEOL; LEE, SANGGU; JIN, KYONGPIL
To: SAMSUNG SDI CO., LTD.
Reel/Frame 057267/0921 →
Priority Claims (1)
KR 10-2020-0110373 · Aug 31, 2020 · national
Continuity (1)
Related Publication 20220069609A1 · Mar 3, 2022
Cited By (1)
US 12,431,721