IP Library Granted Patent US 12,409,795
Granted Patent B2
US 12,409,795 · App. 18/250,655 · Granted Sep 9, 2025

Power supply control device, in-vehicle control device, and power supply control method

Inventor: Shota Ushiro (Yokkaichi, JP)
Assignees: AutoNetworks Technologies, Ltd.; Sumitomo Wiring Systems, Ltd.; Sumitomo Electric Industries, Ltd.
B60R16/0232B60R16/03G01R19/003G01R31/007
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Quick Facts
Patent No.
US 12,409,795
App. No.
18/250,655
Granted
Sep 9, 2025
Kind
B2
Abstract

An individual ECU controls power supply through a wire W. A microcomputer of the individual ECU increases an average value of a wire current value of a current flowing through the wire W in a stepwise manner. The microcomputer determines, every time that the average value of a wire current value is increased, whether or not an anomaly has occurred in power supply through the wire (W) based on a temperature difference between a wire temperature of the wire (W) and an environmental temperature in an area surrounding the wire (W).

Claims (69)

1. A power supply control device that controls power supply through a wire, comprising:

a processing unit configured to execute processing,

a switch disposed on a current path of current flowing through the wire;

a switching circuit configured to switch the switch on or off;

wherein the processing unit causes the switching circuit to perform PWM control in which the switch is alternately switched on and off, wherein a duty ratio of the PWM control is increased so as to increase an average value of a wire current value of a current flowing through the wire in a stepwise manner, and

every time the average value of a wire current value is increased, determines whether or not an anomaly has occurred in power supply through the wire based on a temperature difference between a wire temperature of the wire and an environmental temperature in an area surrounding the wire.

2. The power supply control device according to claim 1 ,

wherein the processing unit

acquires the wire current value,

calculates the temperature difference based on the acquired wire current value, and

every time the average value of the wire current value is increased, determines whether or not the anomaly has occurred based on a calculated temperature difference.

3. The power supply control device according to claim 2 ,

wherein the switching circuit receives a signal,

the switching circuit switches the switch on or off according to the received signal,

the switching circuit, if the wire current value is a current threshold or more, or if the temperature of the switch is a switch temperature threshold or more, switches the switch off irrelevant to the received signal, and

the processing unit increases the average value of a wire current value in a stepwise manner, after the switching circuit has switched the switch off irrelevant to the received signal.

4. The power supply control device according to claim 2 ,

wherein the processing unit

cuts off a flow of current flowing through the wire, when the wire temperature is a wire temperature threshold or more, and

increases the average value of a wire current value in a stepwise manner, after the wire temperature has increased to a temperature that is the wire temperature threshold or more.

5. The power supply control device according to claim 1 , further comprising:

a storage unit that stores a plurality of upper limit values for the temperature difference in association with a plurality of duty ratios regarding the PWM control,

wherein the processing unit determines, every time the average value of a wire current value is increased, whether or not the anomaly has occurred, based on whether or not the temperature difference exceeds an upper limit value associated with a duty ratio in the PWM control performed by the switching circuit.

6. The power supply control device according to claim 5 , wherein the processing unit determines, every time the average value of a wire current value is increased, whether or not the anomaly has occurred, based on an amount of increase in the temperature difference that has increased due to the increase in the average value of a wire current value.

7. The power supply control device according to claim 5 ,

wherein the switching circuit receives a signal,

the switching circuit switches the switch on or off according to the received signal,

the switching circuit, if the wire current value is a current threshold or more, or if the temperature of the switch is a switch temperature threshold or more, switches the switch off irrelevant to the received signal, and

the processing unit increases the average value of a wire current value in a stepwise manner, after the switching circuit has switched the switch off irrelevant to the received signal.

8. The power supply control device according to claim 5 ,

wherein the processing unit

cuts off a flow of current flowing through the wire, when the wire temperature is a wire temperature threshold or more, and

increases the average value of a wire current value in a stepwise manner, after the wire temperature has increased to a temperature that is the wire temperature threshold or more.

9. The power supply control device according to claim 1 , wherein the processing unit determines, every time the average value of a wire current value is increased, whether or not the anomaly has occurred, based on an amount of increase in the temperature difference that has increased due to the increase in the average value of a wire current value.

10. The power supply control device according to claim 9 ,

wherein the switching circuit receives a signal,

the switching circuit switches the switch on or off according to the received signal,

the switching circuit, if the wire current value is a current threshold or more, or if the temperature of the switch is a switch temperature threshold or more, switches the switch off irrelevant to the received signal, and

the processing unit increases the average value of a wire current value in a stepwise manner, after the switching circuit has switched the switch off irrelevant to the received signal.

11. The power supply control device according to claim 9 ,

wherein the processing unit

cuts off a flow of current flowing through the wire, when the wire temperature is a wire temperature threshold or more, and

increases the average value of a wire current value in a stepwise manner, after the wire temperature has increased to a temperature that is the wire temperature threshold or more.

12. The power supply control device according to claim 1 ,

wherein the switching circuit receives a signal,

the switching circuit switches the switch on or off according to the received signal,

the switching circuit, if the wire current value is a current threshold or more, or if the temperature of the switch is a switch temperature threshold or more, switches the switch off irrelevant to the received signal, and

the processing unit increases the average value of a wire current value in a stepwise manner, after the switching circuit has switched the switch off irrelevant to the received signal.

13. The power supply control device according to claim 12 ,

wherein the processing unit

cuts off a flow of current flowing through the wire, when the wire temperature is a wire temperature threshold or more, and

increases the average value of a wire current value in a stepwise manner, after the wire temperature has increased to a temperature that is the wire temperature threshold or more.

14. The power supply control device according to claim 1 ,

wherein the processing unit

cuts off a flow of current flowing through the wire, when the wire temperature is a wire temperature threshold or more, and

increases the average value of a wire current value in a stepwise manner, after the wire temperature has increased to a temperature that is the wire temperature threshold or more.

15. An in-vehicle control device that controls operations of a load, comprising:

a receiving unit configured to receive instruction data instructing that the load be caused to start or stop operating;

a switch disposed on a current path of current flowing through the wire;

a switching circuit configured to switch the switch on or off;

a processing unit configured to execute processing,

wherein the processing unit

controls power supply to the load through a wire in accordance with instruction data received by the receiving unit,

causes the switching circuit to perform PWM control in which the switch is alternately switched on and off, wherein a duty ratio of the PWM control is increased so as to increase an average value of a wire current value of a current flowing through the wire in a stepwise manner, and

determines, every time the average value of a wire current value is increased, whether or not an anomaly has occurred in power supply through the wire, based on a temperature difference between a wire temperature of the wire and an environmental temperature in an area surrounding the wire.

16. A power supply control method of controlling power supply through a wire that includes steps to be executed by a computer, the method comprising:

providing a switch on the wire, the switch configured to be turned on and off;

a step of increasing, in a stepwise manner, an average value of a wire current value of a current flowing through the wire by increasing a duty ratio of a PWM control of the switch; and

a step of determining, every time the average value of a wire current value is increased, whether or not an anomaly has occurred in power supply through the wire, based on a temperature difference between a wire temperature of the wire and an environmental temperature in an area surrounding the wire.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 26, 2023
From: USHIRO, SHOTA
To: AUTONETWORKS TECHNOLOGIES, LTD.; SUMITOMO WIRING SYSTEMS, LTD.; SUMITOMO ELECTRIC INDUSTRIES, LTD.
Reel/Frame 063450/0746 →
Priority Claims (1)
JP 2020-180894 · Oct 28, 2020 · national
Continuity (1)
Related Publication 20240001873A1 · Jan 4, 2024
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