IP Library › Granted Patent US 11,183,829
Granted Patent B2
US 11,183,829 · App. 17/007,662 · Granted Nov 23, 2021

Overcurrent protection circuit

Inventors: Toru Takuma (Kyoto, JP); Naoki Takahashi (Kyoto, JP); Shuntaro Takahashi (Kyoto, JP)
Assignee: Rohm Co., Ltd.
H02H1/0007B60R16/02B60R16/03H02H3/087H02H3/093H02H7/20H02H7/205
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Quick Facts
Patent No.
US 11,183,829
App. No.
17/007,662
Granted
Nov 23, 2021
Kind
B2
Abstract

In order both to accommodate instantaneous current as well as overcurrent protection in accordance with the load, an overcurrent protection circuit has: a threshold value generation unit that, in accordance with a threshold value control signal, switches between setting an overcurrent detection threshold value to a first set value (∝Iref) and a second set value (∝Iset) lower than the first set value; an overcurrent detection unit that compares a sense signal in accordance with the current being monitored and the overcurrent detection value and generates an overcurrent protection signal; a reference value generation unit that generates a reference value (∝Iset) in accordance with the seconds set value; a comparison unit that compares the sense signal and the reference value, and generates a comparison signal; and a threshold value control unit that monitors the comparison signal, and generates a threshold value control signal.

Claims (48)

1. An overcurrent protection circuit comprising:

an overcurrent detector configured to compare a sense signal in accordance with a monitored current with an overcurrent detection threshold and generate an overcurrent protection signal;

a comparison section configured to compare the sense signal with a reference value in accordance with the overcurrent detection threshold and generate a comparison signal; and

a threshold controller configured to keep the overcurrent detection threshold deactivated until the comparison signal is set, and activate the overcurrent detection threshold after the comparison signal is set.

2. The overcurrent protection circuit according to claim 1 ,

wherein,

until the overcurrent threshold value is activated, the monitored current is allowed to exceed the overcurrent detection threshold.

3. The overcurrent protection circuit according to claim 1 ,

wherein,

the threshold controller activates the overcurrent detection threshold at a time point when a predetermined mask period has elapsed after the comparison signal is set.

4. The overcurrent protection circuit according to claim 3 ,

wherein

the mask period is a variable value.

5. The overcurrent protection circuit according to claim 1 ,

wherein

the overcurrent detection threshold is a variable value.

6. The overcurrent protection circuit according to claim 1 ,

wherein,

when the overcurrent detection threshold is deactivated,

the threshold controller activates a second overcurrent detection threshold that is higher than the overcurrent detection threshold, and

the overcurrent detector compares the sense signal with the second overcurrent detection threshold and generates the overcurrent protection signal.

7. The overcurrent protection circuit according to claim 6 ,

wherein

the threshold controller switches between activation and deactivation of each of the overcurrent detection threshold and the second overcurrent detection threshold in accordance with the comparison signal.

8. The overcurrent protection circuit according to claim 7 , further comprising

a threshold generator configured to generate one of the overcurrent detection threshold and the second overcurrent detection threshold in accordance with a threshold control signal inputted from the threshold controller.

9. The overcurrent protection circuit according to claim 1 , further comprising

a reference value generator configured to generate the reference value in accordance with the overcurrent detection threshold.

10. The overcurrent protection circuit according to claim 1 , further comprising

a threshold setting section configured to use an external element to set the overcurrent detection threshold which is a variable value.

11. The overcurrent protection circuit according to claim 6 , further comprising

a second-threshold setting section configured to use a built-in element to set the second overcurrent detection threshold which is a fixed value.

12. A semiconductor integrated circuit device comprising, integrated therein:

a power transistor configured to switch a current path, through which an output current flows, between a conducting state and a cutoff state;

an output current monitor configured to generate a sense signal in accordance with the output current;

a gate controller configured to generate a driving signal for the power transistor in accordance with a control signal; and

the overcurrent protection circuit according to claim 1 configured to monitor the sense signal and generate an overcurrent protection signal,

wherein

the gate controller is provided with a function of forcibly turning off the power transistor in response to the overcurrent protection signal.

13. The semiconductor integrated circuit device according to claim 12 , further comprising, integrated therein,

a signal output section configured to selectively output, to outside the device, one of a detection result of the output current and an abnormality flag as a status notification signal.

14. An electronic apparatus comprising:

the semiconductor integrated circuit device according to claim 12 ; and

a load connected to the semiconductor integrated circuit device.

15. The electronic apparatus according to claim 14 ,

wherein

the load is a bulb lamp, a relay coil, a solenoid, a light emitting diode, or a motor.

16. A vehicle comprising the electronic apparatus according to claim 14 .

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 1, 2020
From: TAKUMA, TORU; TAKAHASHI, NAOKI; TAKAHASHI, SHUNTARO
To: ROHM CO., LTD.
Reel/Frame 053654/0202 →
Priority Claims (2)
JP 2016-090585 · Apr 28, 2016 · national
JP 2016-090587 · Apr 28, 2016 · national
Continuity (2)
Continuation 16088934
Related Publication 20200403393A1 · Dec 24, 2020
Cited By (1)
US 12,683,378