Power semiconductor circuit
A power semiconductor circuit includes a power semiconductor device for switching a load, and a comparator which is directly or indirectly connected to the power semiconductor device at a connection point for the load by means of a first input and to which a predefined or predefinable reference voltage can be fed at a second input, the power semiconductor device being activatable by means of an output of the comparator.
1. A power semiconductor circuit comprising:
a power semiconductor device for switching a load comprising discrete and/or parasitic inductors, wherein when the load is disconnected by means of the power semiconductor device, transient overvoltages result;
a comparator which is directly or indirectly connected to a connection point of the load to the power semiconductor device by means of a first input and to which a predefined or predefinable reference voltage is fed at a second input; and
a reference voltage circuit at which an operating voltage is applied during operation and sets a reference voltage, the reference voltage circuit being formed in parallel branches, each of the parallel branches including a series circuit having an electronic switching element and a reference resistor, wherein the switching elements in the reference voltage circuit are controlled individually,
wherein the power semiconductor device is activated by means of an output of the comparator.
2. The power semiconductor circuit according to claim 1 , wherein the reference voltage circuit is a voltage divider arranged upstream of the comparator.
3. The power semiconductor circuit according to claim 1 , wherein the reference resistors in the reference voltage circuit are different.
4. A method for operating a power semiconductor circuit according to claim 1 , wherein a clamping voltage is set by means of the reference voltage in accordance with a particular operating situation of the power semiconductor device.
5. The method according to claim 4 , wherein the clamping voltage level is set in accordance with a particular temperature of the power semiconductor device.
6. The power semiconductor circuit according to claim 1 , wherein the reference voltage circuit further includes a resistor at a side opposite to the reference resistors to divide the operating voltage proportionally between two sides of the reference voltage circuit.