Semiconductor device and overcurrent protection device
A semiconductor device includes an output element configured to switch on and off according to a drive signal to drive a load, a current monitoring element configured to monitor a current flowing through the output element, and a capacitor having one end connected to a gate of the output element and another end connected to a gate of the current monitoring element. The semiconductor device further includes a current detection resistor configured to output a sense current detection signal obtained by converting a sense current output from the current monitoring element into a voltage, and an overcurrent detection circuit configured to detect an overcurrent state of the output element, by comparing the sense current detection signal with a reference voltage.
1 . A semiconductor device, comprising:
an output element configured to switch on and off according to a drive signal to drive a load;
a current monitoring element configured to monitor a current flowing through the output element;
a capacitor having one end connected to a gate of the output element and another end connected to a gate of the current monitoring element; and
a voltage divider including a first resistor and a second resistor connected in series, the voltage divider having one end connected to the gate of the output element and being configured to divide a gate voltage of the output element and apply a divided voltage to the gate of the current monitoring element, wherein
the capacitor and the first resistor are connected in parallel between the gates of the output element and the current monitoring element.
2 . The semiconductor device according to claim 1 , wherein each of the output element and the current monitoring element is a power semiconductor element configured by any one of an insulated gate bipolar transistor (IGBT), a reverse conducting (RC)-IGBT, or a silicon carbide (SiC) device.
3 . The semiconductor device according to claim 1 , further comprising:
a current detection resistor configured to convert a sense current output from the current monitoring element into a voltage and output the voltage as a sense current detection signal; and
an overcurrent detection circuit configured to detect an overcurrent state of the output element, by comparing the sense current detection signal with a reference voltage.
4 . The semiconductor device according to claim 3 , wherein
the current monitoring element has a sense emitter connected to one end of the current detection resistor and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to a power supply voltage, and has an emitter connected to another end of the current detection resistor and to the load.
5 . The semiconductor device according to claim 1 , wherein
the gate of the output element is connected to the one end of the capacitor and one end of the first resistor,
the gate of the current monitoring element is connected to the another end of the capacitor, to another end of the first resistor, and to one end of the second resistor,
the current monitoring element has a sense emitter connected to another end of the second resistor, to one end of the current detection resistor, and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to a power supply voltage, and has an emitter connected to another end of the current detection resistor and to the load.
6 . A semiconductor device, comprising:
an output element configured to switch on and off according to a drive signal to drive a load;
a current monitoring element configured to monitor a current flowing through the output element;
a voltage divider configured to divide a gate voltage of the output element and apply the divided voltage to a gate of the current monitoring element; and
a capacitor, which is different from a parasitic capacitance present between the gate and a sense emitter of the current monitoring element, having one end connected to the gate of the current monitoring element and another end connected to the sense emitter of the current monitoring element.
7 . The semiconductor device according to claim 6 , further comprising:
a current detection resistor configured to convert a sense current output from the current monitoring element into a voltage and output the voltage as a sense current detection signal; and
an overcurrent detection circuit configured to detect an overcurrent state of the output element by comparing the sense current detection signal with a reference voltage.
8 . The semiconductor device according to claim 7 , wherein
the voltage divider includes a first resistor and a second resistor,
the output element has a gate connected to one end of the first resistor,
the gate of the current monitoring element is connected to the one end of the capacitor, to another end of the first resistor, and to one end of the second resistor,
the sense emitter of the current monitoring element is connected to the another end of the capacitor, to another end of the second resistor, to one end of the current detection resistor, and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to a power supply voltage, and an emitter connected to another end of the current detection resistor and to the load.
9 . An overcurrent protection device, comprising:
a power supply terminal connected to a power supply;
an output terminal connected to a load;
an output element connected to the power supply terminal and being configured to receive a power supply voltage through the power supply terminal, the output element being connected to the output terminal and being configured to switch on and off according to a drive signal to drive the load through the output terminal;
a current monitoring element configured to monitor a current flowing through the output element;
a capacitor having one end connected to a gate of the output element and another end connected to a gate of the current monitoring element;
a control circuit configured to output the drive signal to control the switching of the output element;
a voltage divider including a first resistor and a second resistor connected in series, the voltage divider having one end connected to the gate of the output element and being configured to divide a gate voltage of the output element and apply a divided voltage to the gate of the current monitoring element;
a current detection resistor configured to convert a sense current output from the current monitoring element into a voltage and output the voltage as a sense current detection signal; and
an overcurrent detection circuit configured to detect an overcurrent state of the output element by comparing the sense current detection signal with a reference voltage, wherein
the capacitor and the first resistor are connected in parallel between the gates of the output element and the current monitoring element.
10 . The overcurrent protection device according to claim 9 , wherein
the current monitoring element has a sense emitter connected to one end of the current detection resistor and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to the power supply voltage, and has an emitter connected to another end of the current detection resistor and to the load.
11 . The overcurrent protection device according to claim 9 ,
wherein
the gate of the output element is connected to the one end of the capacitor and to one end of the first resistor,
the gate of the current monitoring element is connected to the another end of the capacitor, to another end of the first resistor, and to one end of the second resistor,
the current monitoring element has a sense emitter connected to another end of the second resistor, to one end of the current detection resistor, and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to the power supply voltage, and has an emitter connected to another end of the current detection resistor and to the load.
12 . An overcurrent protection device, comprising:
a power supply terminal connected to a power supply;
an output terminal connected to a load;
an output element connected to the power supply terminal and being configured to receive a power supply voltage through the power supply terminal, the output element being connected to the output terminal and being configured to switch on and off according to a drive signal to drive the load through the output terminal;
a current monitoring element configured to monitor a current flowing through the output element;
a capacitor, which is different from a parasitic capacitance present between a gate and a sense emitter of the current monitoring element, having one end connected to the gate of the current monitoring element and another end connected to the sense emitter of the current monitoring element;
a voltage divider configured to divide a gate voltage of the output element and apply the divided voltage to the gate of the current monitoring element;
a control circuit configured to output the drive signal to control the switching of the output element;
a current detection resistor configured to convert a sense current output from the current monitoring element into a voltage and output the voltage as a sense current detection signal; and
an overcurrent detection circuit configured to detect an overcurrent state of the output element by comparing the sense current detection signal with a reference voltage.
13 . The overcurrent protection device according to claim 12 , wherein
the voltage divider includes a first resistor and a second resistor,
the output element has a gate connected to one end of the first resistor,
the gate of the current monitoring element is connected to the one end of the capacitor, to another end of the first resistor, and to one end of the second resistor,
the sense emitter of the current monitoring element is connected to the another end of the capacitor, to another end of the second resistor, to one end of the current detection resistor, and to an input terminal of the overcurrent detection circuit, and
the output element has a collector connected to a collector of the current monitoring element and to the power supply voltage, and has an emitter connected to another end of the current detection resistor and to the load.