IP Library › Granted Patent US 11,936,302
Granted Patent B2
US 11,936,302 · App. 17/584,103 · Granted Mar 19, 2024

Detection circuit, switching control circuit, and power supply circuit

Inventor: Jian Chen (Matsumoto, JP)
Assignee: FUJI ELECTRIC CO., LTD.
H02M3/33571G01K7/00H02M1/0035H02M1/08H02M1/327
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Quick Facts
Patent No.
US 11,936,302
App. No.
17/584,103
Granted
Mar 19, 2024
Kind
B2
Abstract

A detection circuit including a temperature voltage generator circuit and an output circuit. The temperature voltage generator circuit generates a detection voltage corresponding to a temperature of the detection circuit based on a predetermined constant current, when a pulse signal received by the detection circuit is at a first level, and stop generating the detection voltage when the pulse signal is at a second level. The output circuit outputs a detection signal indicating whether the temperature is higher than a predetermined temperature based on the detection voltage, during a period of time between a first time that is a predetermined time period after the pulse signal reaches the first level and a second time at which the pulse signal switches from the first level to the second level, the pulse signal remaining in the first level in the period of time.

Claims (65)

1. A detection circuit that receives a pulse signal, comprising:

a temperature voltage generator circuit configured to

generate a detection voltage corresponding to a temperature of the detection circuit, based on a predetermined constant current, when the pulse signal is at a first level, and

stop generating the detection voltage, when the pulse signal is at a second level; and

an output circuit configured to

output a detection signal indicating whether the temperature is higher than a predetermined temperature based on the detection voltage, during a period of time between

a first time that is a predetermined time period after the pulse signal reaches the first level,

and

a second time at which the pulse signal

switches from the first level to the second level, the pulse signal remaining in the first level in the period of time.

2. The detection circuit according to claim 1 , wherein the temperature voltage generator circuit includes

a constant current source configured to generate the predetermined constant current,

a temperature detection element, and

a switch configured to

start supplying the predetermined constant current to the temperature detection element, when the pulse signal is at the first level, and

stop supplying the predetermined constant current to the temperature detection element, when the pulse signal is at the second level.

3. The detection circuit according to claim 2 , wherein the temperature detection element is a diode.

4. The detection circuit according to claim 1 , wherein the output circuit includes

a signal output circuit configured to output a predetermined signal during the period of time,

a comparison circuit configured to

be activated in response to the pulse signal reaching the first level, and

compare the detection voltage with a reference voltage corresponding to the predetermined temperature, to output a result of the comparison, and

a logic circuit configured to output the result of the comparison as the detection signal in response to the predetermined signal being at a predetermined level.

5. The detection circuit according to claim 4 , wherein the predetermined time period is longer than both

a first time period from when the pulse signal reaches the first level and the predetermined constant current is supplied until when the detection voltage is generated,

and

a second time period from when the pulse signal reaches the first level until when the result of the comparison is outputted.

6. A switching control circuit configured to control switching of a switching device that is configured to control an inductor current flowing through an inductor in a power supply circuit, the switching control circuit comprising:

a determination circuit configured to determine whether a load of the power supply circuit is a light load;

an oscillator circuit configured to output an oscillator signal

to drive the switching device in a first mode, when the load is the light load, and

to drive the switching device in a second mode, when the load is not the light load;

a driver circuit configured to drive the switching device in response to the oscillator signal;

a pulse generator circuit configured to generate a pulse signal;

a temperature voltage generator circuit configured to

generate a detection voltage corresponding to a temperature of the switching control circuit, based on a predetermined constant current, when the pulse signal is at a first level, and

stop generating the detection voltage, when the pulse signal is at a second level; and

an output circuit configured to output a detection signal indicating whether the temperature is higher than a predetermined temperature based on the detection voltage, during a period of time between

a first time that is a predetermined time period after the pulse signal reaches the first level,

and

a second time at which the pulse signal switches from the first level to the second level,

the pulse signal remaining in the first level in the period of time, wherein

the oscillator circuit, upon receiving the detection signal indicative that the temperature is higher than the predetermined temperature, causes a switching operation of the switching device to stop.

7. The switching control circuit according to claim 6 , wherein the pulse generator circuit generates the pulse signal in a predetermined cycle.

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

the pulse generator circuit generates the pulse signal, in a cycle corresponding to a cycle of the oscillator signal, in response to the oscillator signal, and

the pulse signal is generated while the switching operation of the switching device is performed in the first and the second modes.

9. A power supply circuit, comprising:

a transformer including a primary coil provided on a primary side of the power supply circuit and a secondary coil provided on a secondary side of the power supply circuit;

a switching device configured to control a current in the primary coil; and

a switching control circuit configured to control switching of the switching device, wherein

the power supply circuit is configured to generate, on the secondary side thereof, an output voltage at a target level; and

the switching control circuit includes:

an oscillator circuit configured to output an oscillator signal to drive the switching device,

a driver circuit configured to drive the switching device in response to the oscillator signal,

a pulse generator circuit configured to generate a pulse signal,

a temperature voltage generator circuit configured to

generate a detection voltage corresponding to a temperature of the switching control circuit, based on a predetermined constant current, when the pulse signal is at a first level, and

stop generating the detection voltage, when the pulse signal is at a second level, and

an output circuit configured to output a detection signal indicating whether the temperature is higher than a predetermined temperature based on the detection voltage, during a period of time between

a first time that is a predetermined time period after the pulse signal reaches the first level,

and

a second time at which the pulse signal

switches from the first level to the second level, the pulse signal remaining in the first level in the period of time, wherein

the oscillator circuit, upon receiving the detection signal indicative that the temperature is higher than the predetermined temperature, causes a switching operation of the switching device to stop.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 25, 2022
From: CHEN, JIAN
To: FUJI ELECTRIC CO., LTD.
Reel/Frame 058764/0378 →
Priority Claims (1)
JP 2020-017090 · Feb 4, 2020 · national
Continuity (2)
Continuation PCTJP2020047910 · Dec 22, 2020
Related Publication 20220149741A1 · May 12, 2022