IP Library Granted Patent US 11,979,018
Granted Patent B2
US 11,979,018 · App. 18/278,839 · Granted May 7, 2024

Method for over current protection device, and power supply circuit

Inventor: Xuebao Qi (Jiangsu, CN)
Assignee: INSPUR SUZHOU INTELLIGENT TECHNOLOGY CO., LTD.
H02H7/1213H02M1/32
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,979,018
App. No.
18/278,839
Granted
May 7, 2024
Kind
B2
Abstract

A method for over current protection includes: when receiving an overcurrent signal that representing an output current of DC-DC conversion module exceeds a OCP value sent by a DC-DC conversion module, controlling a protection module to be disconnected, cutting off an external insertion apparatus, so that the on-board circuit is not powered off; keeping outputting a first enable signal to the DC-DC conversion module within third preset duration longer than first preset duration, and after the first preset duration, determining whether the overcurrent signal sent by the DC-DC conversion module is re-received; if yes, it indicates that overcurrent occurs in the on-board circuit portion, controlling the DC-DC conversion module to be turned off, to stop supplying power for the on-board circuit; if no, keeping controlling the protection module to be disconnected, and continuing to merely supply power to the on-board circuit.

Claims (74)

1. A method for overcurrent protection, wherein the method is applied to a processor of a power supply circuit, and the power supply circuit further comprises a DC-DC conversion module, a protection module and an external insertion interface;

the DC-DC conversion module is respectively connected to an on-board circuit, the processor and the protection module, and is configured for supplying power to the on-board circuit, and by means of the protection module, supplying power to an external insertion device connected to the external insertion interface, and when an output current of the DC-DC conversion module itself exceeds an OCP value, switching off the output of the DC-DC conversion module itself and, after a first preset duration, resuming the output of the DC-DC conversion module itself;

the protection module is connected to the external insertion apparatus by means of the external insertion interface, and is configured for being disconnected after a current of a power supply branch circuit of the protection module itself exceeds an overcurrent protection threshold for a second preset duration; and

the method for overcurrent protection comprises:

when receiving an overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module, controlling the protection module to be disconnected;

keeping outputting a first enable signal to the DC-DC conversion module within a third preset duration, wherein the third preset duration is longer than the first preset duration;

after the first preset duration, judging whether the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received;

under the condition the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received, controlling the DC-DC conversion module to be turned off; and

under the condition the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is not re-received, keeping controlling the protection module to be disconnected.

2. The method for overcurrent protection according to claim 1 , wherein before the step of, keeping controlling the protection module to be disconnected, the method further comprises:

S11: judging whether a number of times i the protection module is controlled to be closed is N; under the condition the number of times i the protection module is controlled to be closed is N, proceeding to S12; and under the condition the number of times i the protection module is controlled to be closed is not N, proceeding to S13; wherein N is an integer not less than 2, and i is an integer not greater than N;

S12: proceeding to the step of, keeping controlling the protection module to be disconnected, and resetting i to be zero;

S13: controlling the protection module to be closed and making i=i+1;

S14: judging whether the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received; under the condition the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received, proceeding to S15; and, under the condition the overcurrent signal that, representing that the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is not re-received, proceeding to S17;

S15: controlling the protection module to be disconnected;

S16: keeping outputting the first enable signal to the DC-DC conversion module within the third preset duration, and proceeding to S11; wherein the third preset duration is longer than the first preset duration; and

S17: keeping controlling the protection module to be closed, and resetting i to be zero.

3. The method for overcurrent protection according to claim 2 , wherein after the step of, keeping controlling the protection module to be closed, the method further comprises:

saving a result that the power supply circuit does not have an overcurrent into a memory.

4. The method for overcurrent protection according to claim 2 , wherein after judging the number of times i the protection module is controlled to be closed is equal to N, the method further comprises:

saving a result that the power supply circuit has an overcurrent into a memory.

5. The method for overcurrent protection according to claim 1 , wherein the overcurrent protection method further comprises:

when the protection module is disconnected after the current of the power supply branch circuit where the protection module itself is located exceeds an overcurrent protection threshold for the second preset duration, receiving an overcurrent protection signal sent by the protection module, and storing the overcurrent protection signal into a memory.

6. The method for overcurrent protection according to claim 1 , wherein an OCP value regulation pin of the DC-DC conversion module is connected to an initial resistor;

the power supply circuit further comprises:

a regulatable resistor connected to the OCP value regulation pin of the DC-DC conversion module; and

the DC-DC conversion module is further configured for, based on the initial resistor and the regulatable resistor, determining the OCP value.

7. The method for overcurrent protection according to claim 6 , wherein the regulatable resistor comprises a first controllable switch and a first regulation resistor;

one end of the first regulation resistor is connected to the OCP value regulation pin of the DC-DC conversion module, and the other end of the first regulation resistor is connected to a first end of the first controllable switch;

a second end of the first controllable switch is grounded, and a control end of the first controllable switch is connected to the external insertion interface, and is configured for being switched on when the external insertion apparatus is accessed to the external insertion interface; and

an equivalent resistance of the first regulation resistor and the initial resistor is negatively correlated with the OCP value.

8. The method for overcurrent protection according to claim 6 , wherein the regulatable resistor comprises a second controllable switch and a second regulation resistor;

one end of the second regulation resistor is connected to the OCP value regulation pin of the DC-DC conversion module, and the other end of the second regulation resistor is connected to a first end of the second controllable switch;

a resistance value of an equivalent resistance of the second regulation resistor and the initial resistor is negatively correlated with a magnitude of the OCP value;

a second end of the second controllable switch is grounded, and a control end of the second controllable switch is connected to an OCP value regulation pin of the processor; and

the overcurrent-protection method further comprises:

when receiving a switch switch-on instruction, sending a second enable signal to the second controllable switch, to control the second controllable switch to be switched on.

9. The method for overcurrent protection according to claim 1 , wherein the third preset duration is greater than the first preset duration, so that the DC-DC conversion module keeps supplying power to the on-board circuit.

10. A device for overcurrent protection, wherein the device comprises:

a memory, configured for storing a computer program; and

a processor configured for, when executing the computer program, the steps of the overcurrent protection method according to claim 1 are implemented.

11. A power supply circuit, wherein the power supply circuit comprises a DC-DC conversion module, a protection module and an external insertion interface, and further comprises the overcurrent protection device according to claim 10 ;

the DC-DC conversion module is respectively connected to an on-board circuit, the processor and the protection module, and is configured for supplying power to the on-board circuit, and by means of the protection module, supplying power to an external insertion apparatus connected to the external insertion interface, and when an output current of the DC-DC conversion module itself exceeds an OCP value, an output of the DC-DC conversion module itself is switched off and, after a first preset duration, the output of the DC-DC conversion module is resumed; and

the protection module is connected to the external insertion apparatus by the external insertion interface, and is configured for being disconnected after an electric current of a power supply branch circuit of the protection module itself exceeds an overcurrent protection threshold for a second preset duration.

12. The device for overcurrent protection according to claim 10 , wherein before the step of, keeping controlling the protection module to be disconnected, the method further comprises:

S11: judging whether a number of times i the protection module is controlled to be closed is N; under the condition the number of times i the protection module is controlled to be closed is N, proceeding to S12; and under the condition the number of times i the protection module is controlled to be closed is not N, proceeding to S13; wherein N is an integer not less than 2, and i is an integer not greater than N;

S12: proceeding to the step of, keeping controlling the protection module to be disconnected, and resetting i to be zero;

S13: controlling the protection module to be closed and making i=i+1;

S14: judging whether the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received; under the condition the overcurrent signal that, representing the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is re-received, proceeding to S15; and, under the condition the overcurrent signal that, representing that the output current of the DC-DC conversion module exceeds the OCP value sent by the DC-DC conversion module is not re-received, proceeding to S17;

S15: controlling the protection module to be disconnected;

S16: keeping outputting the first enable signal to the DC-DC conversion module within the third preset duration, and proceeding to S11; wherein the third preset duration is longer than the first preset duration; and

S17: keeping controlling the protection module to be closed, and resetting i to be zero.

13. The device for overcurrent protection according to claim 12 , wherein after the step of, keeping controlling the protection module to be closed, the method further comprises:

saving a result that the power supply circuit does not have an overcurrent into a memory.

14. The device for overcurrent protection according to claim 12 , wherein after judging the number of times i the protection module is controlled to be closed is equal to N, the method further comprises:

saving a result that the power supply circuit has an overcurrent into a memory.

15. The device for overcurrent protection according to claim 10 , wherein the overcurrent protection method further comprises:

when the protection module is disconnected after the current of the power supply branch circuit where the protection module itself is located exceeds an overcurrent protection threshold for the second preset duration, receiving an overcurrent protection signal sent by the protection module, and storing the overcurrent protection signal into a memory.

16. The device for overcurrent protection according to claim 10 , wherein an OCP value regulation pin of the DC-DC conversion module is connected to an initial resistor;

the power supply circuit further comprises:

a regulatable resistor connected to the OCP value regulation pin of the DC-DC conversion module; and

the DC-DC conversion module is further configured for, based on the initial resistor and the regulatable resistor, determining the OCP value.

17. The device for overcurrent protection according to claim 16 , wherein the regulatable resistor comprises a first controllable switch and a first regulation resistor;

one end of the first regulation resistor is connected to the OCP value regulation pin of the DC-DC conversion module, and the other end of the first regulation resistor is connected to a first end of the first controllable switch;

a second end of the first controllable switch is grounded, and a control end of the first controllable switch is connected to the external insertion interface, and is configured for being switched on when the external insertion apparatus is accessed to the external insertion interface; and

an equivalent resistance of the first regulation resistor and the initial resistor is negatively correlated with the OCP value.

18. The device for overcurrent protection according to claim 16 , wherein the regulatable resistor comprises a second controllable switch and a second regulation resistor;

one end of the second regulation resistor is connected to the OCP value regulation pin of the DC-DC conversion module, and the other end of the second regulation resistor is connected to a first end of the second controllable switch;

a resistance value of an equivalent resistance of the second regulation resistor and the initial resistor is negatively correlated with a magnitude of the OCP value;

a second end of the second controllable switch is grounded, and a control end of the second controllable switch is connected to an OCP value regulation pin of the processor; and

the overcurrent-protection method further comprises:

when receiving a switch switch-on instruction, sending a second enable signal to the second controllable switch, to control the second controllable switch to be switched on.

19. The device for overcurrent protection according to claim 10 , wherein the third preset duration is greater than the first preset duration, so that the DC-DC conversion module keeps supplying power to the on-board circuit.

20. The method for overcurrent protection according to claim 1 , wherein the first enable signal is a level signal of high-level.

Assignments (2)
LICENSE Recorded Jun 30, 2026
From: IEIT SYSTEMS CO., LTD
To: AIVRES SYSTEMS INC.
Reel/Frame 075857/0939 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 24, 2023
From: QI, XUEBAO
To: INSPUR SUZHOU INTELLIGENT TECHNOLOGY CO., LTD.
Reel/Frame 064716/0202 →
Priority Claims (1)
CN 202111110675.8 · Sep 23, 2021 · national
Continuity (1)
Related Publication 20240088644A1 · Mar 14, 2024