IP Library › Granted Patent US 12,142,958
Granted Patent B2
US 12,142,958 · App. 17/596,334 · Granted Nov 12, 2024

Charge and discharge control circuit for controlling charge and discharge of secondary battery connected between positive and negative electrode power supply terminals

Inventor: Takayasu Yoshikawa (Itami, JP)
Assignee: NISSHINBO MICRO DEVICES INC.
H02J7/007182H01M10/44H01M10/46H02J7/00306H02J7/0031H02J7/0032H02J7/0036H02J7/0063H02J7/0068
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Quick Facts
Patent No.
US 12,142,958
App. No.
17/596,334
Granted
Nov 12, 2024
Kind
B2
Abstract

A charge and discharge control circuit controls charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger and includes a charger connection detector circuit that generates a charger connection detection signal, based on a voltage of an external negative electrode terminal connected to the charger; and a pull-up detector circuit that detects a pull-up of the voltage of the external negative electrode terminal, based on the voltage of the external negative electrode terminal, and generates a pull-up detection signal. The charge and discharge control circuit turns off the discharge control switching element, and then, turns on the same after receiving the pull-up detection signal and the charger connection detection signal.

Claims (44)

1. A charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger, the charge and discharge control circuit comprising:

a charger connection detector circuit that generates a charger connection detection signal, based on a voltage of an external negative electrode terminal connected to the charger; and

a pull-up detector circuit that detects a pull-up of the voltage of the external negative electrode terminal, based on the voltage of the external negative electrode terminal, and generates a pull-up detection signal,

wherein the charge and discharge control circuit is configured to turn off the discharge control switching element, and then, is controlled not to receive the charger connection detection signal until receiving the pull-up detection signal, and is configured to turn on the discharge control switching element after receiving the pull-up detection signal and receiving the charger connection detection signal.

2. The charge and discharge control circuit as claimed in claim 1 ,

wherein the charger connection detector circuit compares the voltage of the external negative electrode terminal connected to the charger with a first threshold voltage higher than a negative electrode voltage of the secondary battery, thereby detecting a connection of the charger.

3. The charge and discharge control circuit as claimed in claim 2 ,

wherein the pull-up detector circuit compares the voltage of the external negative electrode terminal with a second threshold voltage higher than the first threshold voltage, thereby detecting the pull-up of the voltage of the external negative electrode terminal.

4. The charge and discharge control circuit as claimed in claim 3 ,

wherein the pull-up detector circuit detects the pull-up of the external negative electrode terminal when the voltage of the external negative electrode terminal reaches the second threshold voltage.

5. The charge and discharge control circuit as claimed in claim 1 , further comprising a charge start detector circuit that compares the voltage of the external negative electrode terminal with a third threshold voltage, thereby detecting a start of charge by the charger, and generates a charge start detection signal,

wherein the charge and discharge control circuit is configured to turn off the discharge control switching element, and then, turn on the discharge control switching element when receiving the charge start detection signal, irrespective of the pull-up detection signal and the charger connection detection signal.

6. A battery device comprising:

a charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger;

the secondary battery;

the discharge control switching element; and

the charge control switching element,

wherein the charge and discharge control circuit comprises:

a charger connection detector circuit that generates a charger connection detection signal, based on a voltage of an external negative electrode terminal connected to the charger; and

a pull-up detector circuit that detects a pull-up of the voltage of the external negative electrode terminal, based on the voltage of the external negative electrode terminal, and generates a pull-up detection signal,

wherein the charge and discharge control circuit is configured to turn off the discharge control switching element, and then, is controlled not to receive the charger connection detection signal until receiving the pull-up detection signal, and is configured to turn on the discharge control switching element after receiving the pull-up detection signal and receiving the charger connection detection signal.

7. A charge and discharge control method executed by a charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger, the charge and discharge control method comprising the steps of:

by a charger connection detector circuit, generating a charger connection detection signal, based on a voltage of an external negative electrode terminal connected to the charger;

by a pull-up detector circuit, detecting a pull-up of the voltage of the external negative electrode terminal, based on the voltage of the external negative electrode terminal, and generating a pull-up detection signal;

by the charge and discharge control circuit, turning off the discharge control switching element, and then, being controlled not to receive the charger connection detection signal until receiving the pull-up detection signal after; and

by the charge and discharge control circuit, turning on the discharge control switching element after receiving the pull-up detection signal and receiving the charger connection detection signal.

8. A charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger, the charge and discharge control circuit comprising:

a charger connection detector circuit that generates a charger connection detection signal, based on a voltage of an external positive electrode terminal connected to the charger; and

a pull-down detector circuit that detects a pull-down of the voltage of the external positive electrode terminal, based on the voltage of the external positive electrode terminal, and generates a pull-down detection signal,

wherein the charge and discharge control circuit is configured to turn off the discharge control switching element, and then, is controlled not to receive the charger connection detection signal until receiving the pull-down detection signal, and is configured to turn on the discharge control switching element after receiving the pull-down detection signal and receiving the charger connection detection signal.

9. A battery device comprising:

a charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger;

the secondary battery;

the discharge control switching element; and

the charge control switching element,

wherein the charge and discharge control circuit comprises:

a charger connection detector circuit that generates a charger connection detection signal, based on a voltage of an external positive electrode terminal connected to the charger; and

a pull-down detector circuit that detects a pull-down of the voltage of the external positive electrode terminal, based on the voltage of the external positive electrode terminal, and generates a pull-down detection signal,

wherein the charge and discharge control circuit is configured to turn off the discharge control switching element, and then, is controlled not to receive the charger connection detection signal until receiving the pull-down detection signal, and is configured to turn on the discharge control switching element after receiving the pull-down detection signal and receiving the charger connection detection signal.

10. A charge and discharge control method executed by a charge and discharge control circuit configured to control charge and discharge of a secondary battery connected between a positive electrode power supply terminal and a negative electrode power supply terminal by using a discharge control switching element and a charge control switching element connected between the secondary battery and a load or a charger, the charge and discharge control method comprising the steps of:

by a charger connection detector circuit, generating a charger connection detection signal, based on a voltage of an external positive electrode terminal connected to the charger;

by a pull-down detector circuit, detecting a pull-down of the voltage of the external positive electrode terminal, based on the voltage of the external positive electrode terminal, and generating a pull-down detection signal;

by the charge and discharge control circuit, turning off the discharge control switching element, and then, being controlled not to receive the charger connection detection signal until receiving the pull-down detection signal; and

by the charge and discharge control circuit, turning on the discharge control switching element after receiving the pull-down detection signal and receiving the charger connection detection signal.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2022
From: RICOH ELECTRONIC DEVICES CO., LTD.
To: NISSHINBO MICRO DEVICES INC.
Reel/Frame 059278/0870 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2021
From: YOSHIKAWA, TAKAYASU
To: RICOH ELECTRONIC DEVICES CO., LTD.
Reel/Frame 058337/0555 →
Continuity (1)
Related Publication 20220231529A1 · Jul 21, 2022