IP Library Granted Patent US 12676345
Granted Patent B2
US 12676345 · App. 18/033,008 · Granted Jul 7, 2026

Battery apparatus, battery management system and precharging method

Inventors: Hangon Park (Daejeon, KR); Kihoon Kim (Daejeon, KR)
Assignee: LG Energy Solution, Ltd.
H01M10/425B60L3/0046H01M2010/4271
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Quick Facts
Patent No.
US 12676345
App. No.
18/033,008
Granted
Jul 7, 2026
Kind
B2
Abstract

In a battery apparatus, a first precharge switch is connected between a terminal of a first battery pack and a capacitor of an external apparatus, and a second precharge switch is connected between a terminal of a second battery pack and the capacitor. A first precharge control circuit controls an operation of the first precharge switch based on a difference between a voltage of the first battery pack and a voltage of the capacitor, and a second precharge control circuit controls an operation of the second precharge switch based on a difference between a voltage of the second battery pack and the voltage of the capacitor. A processor transfers a first control signal for controlling the first precharge switch to the first precharge control circuit, and transfers a second control signal for controlling the second precharge switch to the second precharge control circuit.

Claims (48)

1 . A battery apparatus comprising

a first battery pack and a second battery pack connected in parallel;

a first precharge switch connected between a terminal of the first battery pack and a capacitor of an external apparatus;

a second precharge switch connected between a terminal of the second battery pack and the capacitor of the external apparatus;

a first precharge control circuit configured to control an operation of the first precharge switch based on a difference between a voltage of the first battery pack and a voltage of the capacitor of the external apparatus;

a second precharge control circuit configured to control an operation of the second precharge switch based on a difference between a voltage of the second battery pack and the voltage of the capacitor of the external apparatus; and

a processor configured to send a first control signal for controlling the first precharge switch to the first precharge control circuit, send a second control signal for controlling the second precharge switch to the second precharge control circuit, and omit activation of the first precharge control circuit in response to determining that a difference between the voltage of the first battery pack and the voltage of the capacitor is less than or equal to a predetermined voltage or omit activation of the second precharge control circuit in response to determining that a difference between the voltage of the second battery pack and the voltage of the capacitor is less than or equal to the predetermined voltage.

2 . The battery apparatus of claim 1 , wherein the first precharge control circuit is configured to close the first precharge switch in response to receiving the first control signal having an enable level from the processor and the difference between the voltage of the first battery pack and the voltage of the capacitor being greater than the predetermined voltage.

3 . The battery apparatus of claim 2 , wherein the first precharge control circuit is configured to maintain an open state of the first precharge switch in response to receiving the first control signal having an enable level from the processors and the difference between the voltage of the first battery pack and the voltage of the capacitor being less than or equal to the predetermined voltage.

4 . The battery apparatus of claim 2 , wherein the predetermined voltage is 0V.

5 . The battery apparatus of claim 1 , wherein the first precharge control circuit comprises:

a comparator configured to compare the voltage of the first battery pack with the voltage of the capacitor of the external apparatus; and

a logic circuit configured to perform a logical operation to output a third control signal according to a comparison result of the comparator and the first control signal, and

wherein the first precharge control circuit is configured to control the first precharge switch based on the third control signal.

6 . The battery apparatus of claim 1 , wherein the first precharge control circuit comprises:

a comparator configured to compare the voltage of the first battery pack with the voltage of the capacitor of the external apparatus;

a logic circuit configured to perform a logical operation to output a third control signal according to a comparison result of the comparator and the first control signal; and

a delay circuit configured to output a fourth control signal by delaying the third control signal, and

wherein the first precharge control circuit is configured to control the first precharge switch based on the fourth control signal.

7 . The battery apparatus of claim 1 , wherein in when the voltage of the second battery pack is higher than the voltage of the first battery pack, the processor is configured to:

output the second control signal having an enable level; and

output the first control signal having the enable level when a difference between the voltage of the second battery pack and the voltage of the first battery pack is less than or equal to a predetermined voltage.

8 . The battery apparatus of claim 1 , further comprising:

a first precharge resistor through which a first current flows from the first battery pack to the capacitor of the external apparatus when the first precharge switch is closed; and

a second precharge resistor through which a second current flows from the second battery pack to the capacitor of the external apparatus when the second precharge switch is closed.

9 . A battery management system of a battery apparatus including a battery pack, the battery management system comprising:

a precharge switch connected between a terminal of the battery pack and a capacitor of an external apparatus;

a processor configured to output a first control signal for controlling the precharge switch; and

a precharge control circuit configured to:

receive the first control signal,

omit an activation of the precharge switch when the difference between the voltage of the battery pack and the voltage of the capacitor is less than or equal to the predetermined voltage.

10 . The battery management system of claim 9 , wherein the precharge control circuit comprises:

a comparator configured to compare the voltage of the battery pack with the voltage of the capacitor of the external apparatus; and

a logic circuit configured to perform a logical operation to output a second control signal based on a comparison result of the comparator and the first control signal; and

wherein the precharge control circuit is configured to control the precharge switch based on the second control signal.

11 . The battery management system of claim 9 , wherein the precharge control circuit comprises:

a comparator configured to compare the voltage of the battery pack and the voltage of the capacitor;

a logic circuit configured to perform a logical operation to output a second control signal based on a comparison result of the comparator and the first control signal; and

a delay circuit configured to output a third control signal by delaying the second control signal, and

wherein the precharge control circuit is configured to control the precharge switch based on the second control signal.

12 . The battery management system of claim 9 , further comprising a precharge resistor through which a current flows from the battery pack to the capacitor of the external apparatus when the precharge switch is closed.

13 . A method of precharging a capacitor of an external apparatus connected to a battery apparatus including a battery pack, the method comprising:

closing a negative switch of the battery pack;

precharging the capacitor of the external apparatus based on a difference between a voltage of the battery pack and a voltage of the capacitor of the external apparatus;

omitting an activation of a precharge switch when the precharging the capacitor of the external apparatus is not necessary; and

closing a positive switch of the battery pack.

14 . The method of claim 13 , further comprising precharging the capacitor of the external apparatus when the difference between the voltage of the battery pack and the voltage of the capacitor of the external apparatus is less than or equal to a predetermined voltage.

15 . The method of claim 13 , further comprising not precharging the capacitor of the external apparatus when the difference between the voltage of the battery pack and the voltage of the capacitor of the external apparatus is greater than a predetermined voltage.