IP Library Granted Patent US 11,563,371
Granted Patent B2
US 11,563,371 · App. 17/078,281 · Granted Jan 24, 2023

Switching control circuit and power supply circuit

Inventor: Shinji Matsumoto (Matsumoto, JP)
Assignee: FUJI ELECTRIC CO., LTD.
H02M1/32H02M1/08H02M3/33571
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Quick Facts
Patent No.
US 11,563,371
App. No.
17/078,281
Granted
Jan 24, 2023
Kind
B2
Abstract

A switching control circuit for controlling switching of a transistor in a power supply circuit, such that the power supply circuit generates an output voltage at a target level. The switching control circuit includes an overload detection circuit detecting that a load of the power supply circuit is in an overload condition, when a voltage according to the output voltage reaches a predetermined level, an overcurrent detection circuit detecting that a load current is an overcurrent, when a current according to the load current reaches a predetermined value, an adjustment circuit decreasing the predetermined value, when a first time period has elapsed since the load becomes in the overload condition, a drive circuit driving the transistor such that the output voltage reaches the target level, and a control circuit causing the drive circuit to stop driving the transistor, after the load becomes in the overload condition or the load current becomes the overcurrent.

Claims (69)

1. A switching control circuit for controlling a power supply circuit that includes

a transformer including a primary coil provided on a primary side thereof, and a secondary coil provided on a secondary side thereof, and

a transistor that controls a current of the primary coil, the switching control circuit being configured to control switching of the transistor such that the power supply circuit generates an output voltage at a target level on the secondary side, the switching control circuit comprising:

an overload detection circuit that detects that a load of the power supply circuit is in an overload condition, when the output voltage is below a predetermined level;

an overcurrent detection circuit that detects that a transistor current corresponding to a load current flowing through the load is an overcurrent, when the transistor current reaches a predetermined value, the transistor current flowing through the transistor;

an adjustment circuit capable of decreasing the predetermined value, when a first time period has elapsed since the load becomes the overload condition;

a drive circuit that drives the transistor such that the output voltage reaches the target level;

a control circuit that causes the drive circuit to stop driving the transistor, after the load becomes the overload condition or the load current becomes the overcurrent; and

a memory circuit that stores setting information for setting whether to decrease the predetermined value or to maintain the predetermined value, wherein

the adjustment circuit decreases the predetermined value, when the setting information for decreasing the predetermined value is stored in the memory circuit and the first time period has elapsed since the load becomes the overload condition.

2. The switching control circuit according to claim 1 , wherein

the adjustment circuit maintains the predetermined value regardless of whether the load is in the overload condition or not, when the setting information for maintaining the predetermined value is stored in the memory circuit.

3. The switching control circuit according to claim 1 , wherein

the adjustment circuit comprises

a first timer circuit that measures the first time period since the load becomes the overload condition, and

an output circuit that, in a case when the setting information for decreasing the predetermined value is stored in the memory circuit,

outputs a first voltage indicating a first value as the predetermined value, until the first time period has elapsed since the load becomes the overload condition, and

outputs a second voltage indicating a second value smaller than the first value as the predetermined value, when the first time period has elapsed since the load becomes the overload condition.

4. The switching control circuit according to claim 3 , wherein

the output circuit outputs the first voltage as the predetermined value regardless of whether the load is in the overload condition or not, in a case when the setting information for maintaining the predetermined value is stored in the memory circuit.

5. A switching control circuit for controlling a power supply circuit that includes

a transformer including a primary coil provided on a primary side thereof, and a secondary coil provided on a secondary side thereof, and

a transistor that controls a current of the primary coil, the switching control circuit being configured to control switching of the transistor such that the power supply circuit generates an output voltage at a target level on the secondary side, the switching control circuit comprising:

an overload detection circuit that detects that a load of the power supply circuit is in an overload condition, when the output voltage is below a predetermined level;

an overcurrent detection circuit that detects that a transistor current corresponding to a load current flowing through the load is an overcurrent, when the transistor current reaches a predetermined value, the transistor current flowing through the transistor;

an adjustment circuit capable of decreasing the predetermined value, when a first time period has elapsed since the load becomes the overload condition;

a drive circuit that drives the transistor such that the output voltage reaches the target level;

a second timer circuit that measures a second time period since the load current becomes the overcurrent, and

a control circuit that causes the drive circuit to stop driving the transistor, after the load becomes the overload condition or the load current becomes the overcurrent, wherein

the control circuit causes the drive circuit to stop driving the transistor when the second time period has elapsed since the load current becomes the overcurrent.

6. The switching control circuit according to claim 5 , wherein

a time period from a time when power is supplied to operate the switching control circuit to a time when the output voltage reaches the target level is shorter than a time period corresponding to a sum of the first time period and the second time period.

7. The switching control circuit according to claim 5 , further comprising:

a third timer circuit that measures a third time period since the load becomes the overload condition, wherein

the control circuit causes the drive circuit to stop driving the transistor when the third time period has elapsed since the load becomes the overload condition.

8. The switching control circuit according to claim 7 , wherein

the second time period is shorter than the third time period.

9. A switching control circuit for controlling a power supply circuit that includes

a transformer including a primary coil provided on a primary side thereof, and a secondary coil provided on a secondary side thereof, and

a transistor that controls a current of the primary coil, the switching control circuit being configured to control switching of the transistor such that the power supply circuit generates an output voltage at a target level on the secondary side, the switching control circuit comprising:

an overload detection circuit that detects that a load of the power supply circuit is in an overload condition, when the output voltage is below a predetermined level;

an overcurrent detection circuit that detects that a transistor current corresponding to a load current flowing through the load is an overcurrent, when the transistor current reaches a predetermined value, the transistor current flowing through the transistor;

an adjustment circuit capable of decreasing the predetermined value, when a first time period has elapsed since the load becomes the overload condition;

a drive circuit that drives the transistor such that the output voltage reaches the target level; and

a control circuit that causes the drive circuit to stop driving the transistor according to a first stop instruction signal from the overload detection circuit, after the load becomes the overload condition, wherein

the control circuit causes the drive circuit to stop driving the transistor according to a second stop instruction signal from the overcurrent detection circuit, after the transistor current becomes the overcurrent.

10. The switching control circuit according to claim 9 , further comprising

a memory circuit that stores setting information for setting whether to decrease the predetermined value or to maintain the predetermined value, wherein

the adjustment circuit decreases the predetermined value, when the setting information for decreasing the predetermined value is stored in the memory circuit and the first time period has elapsed since the load becomes the overload condition.

11. The switching control circuit according to claim 10 , wherein

the adjustment circuit maintains the predetermined value regardless of whether the load is in the overload condition or not, when the setting information for maintaining the predetermined value is stored in the memory circuit.

12. The switching control circuit according to claim 10 , wherein

the adjustment circuit comprises

a first timer circuit that measures the first time period since the load becomes the overload condition, and

an output circuit that, in a case when the setting information for decreasing the predetermined value is stored in the memory circuit,

outputs a first voltage indicating a first value as the predetermined value, until the first time period has elapsed since the load becomes the overload condition, and

outputs a second voltage indicating a second value smaller than the first value as the predetermined value, when the first time period has elapsed since the load becomes the overload condition.

13. The switching control circuit according to claim 12 , wherein

the output circuit outputs the first voltage as the predetermined value regardless of whether the load is in the overload condition or not, in a case when the setting information for maintaining the predetermined value is stored in the memory circuit.

14. The switching control circuit according to claim 9 , further comprising:

a second timer circuit that measures a second time period since the transistor current becomes the overcurrent, wherein

the control circuit causes the drive circuit to stop driving the transistor when the second time period has elapsed since the load current becomes the overcurrent.

15. The switching control circuit according to claim 14 , wherein

a time period from a time when power is supplied to operate the switching control circuit to a time when the output voltage reaches the target level is shorter than a time period corresponding to a sum of the first time period and the second time period.

16. The switching control circuit according to claim 14 , further comprising:

a third timer circuit that measures a third time period since the load becomes the overload condition, wherein

the control circuit causes the drive circuit to stop driving the transistor when the third time period has elapsed since the load becomes the overload condition.

17. The switching control circuit according to claim 16 , wherein

the second time period is shorter than the third time period.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 23, 2020
From: MATSUMOTO, SHINJI
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 054147/0523 →
Priority Claims (1)
JP JP2019-217795 · Dec 2, 2019 · national
Continuity (1)
Related Publication 20210167684A1 · Jun 3, 2021