IP Library Granted Patent US 12683598
Granted Patent B2
US 12683598 · App. 18/793,701 · Granted Jul 14, 2026

Semiconductor element driving apparatus

Inventors: Shohei Sano (Fukuoka, JP); Motoki Imanishi (Tokyo, JP)
Assignee: Mitsubishi Electric Corporation
H03K17/08128H02M1/08H02M1/32
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Quick Facts
Patent No.
US 12683598
App. No.
18/793,701
Granted
Jul 14, 2026
Kind
B2
Abstract

A semiconductor element driving apparatus includes a primary circuit, a signal transmission circuit including an insulating element, and a secondary circuit that drives a semiconductor element based on a plurality of transmission signals corresponding to a plurality of signals transmitted from the primary circuit through the signal transmission circuit. The secondary circuit includes an ASC mode determination circuit that determines whether a normal mode or an ASC mode is executed based on a transmission transition signal corresponding to a transition signal or to a control transition signal among the plurality of transmission signals.

Claims (41)

1 . A semiconductor element driving apparatus comprising:

a primary circuit to which a plurality of signals including a first control signal controlling driving of a semiconductor element during a normal mode, a second control signal controlling driving of the semiconductor element during an ASC mode, and a transition signal transitioning from the normal mode to the ASC mode, or including the first control signal and a control transition signal corresponding to the second control signal and to the transition signal are input;

a signal transmission circuit including an insulating element capable of transmitting a signal; and

a secondary circuit that drives the semiconductor element based on a plurality of transmission signals corresponding to the plurality of signals transmitted from the primary circuit through the signal transmission circuit,

wherein the secondary circuit includes:

an ASC mode determination circuit that determines whether the normal mode or the ASC mode is executed based on a transmission transition signal corresponding to the transition signal or to the control transition signal among the plurality of transmission signals; and

a logic circuit that drives the semiconductor element based on a first transmission control signal corresponding to the first control signal among the plurality of transmission signals when the ASC mode determination circuit determines that the normal mode is executed, and drives the semiconductor element based on a second transmission control signal corresponding to the second control signal or to the control transition signal among the plurality of transmission signals when the ASC mode determination circuit determines that the ASC mode is executed.

2 . The semiconductor element driving apparatus according to claim 1 , wherein

the transmission transition signal includes a burst pulse, and

the ASC mode determination circuit determines that the ASC mode is executed when the pulse of the transmission transition signal is counted a predetermined number of times within a predetermined period.

3 . The semiconductor element driving apparatus according to claim 1 , wherein

the secondary circuit further includes an abnormality detection circuit that detects an abnormality of the semiconductor element, and

the logic circuit

performs operation of protecting the semiconductor element regardless of the first transmission control signal when the ASC mode determination circuit determines that the normal mode is executed and when the abnormality detection circuit detects the abnormality of the semiconductor element, and

drives the semiconductor element based on the second transmission control signal when the ASC mode determination circuit determines that the ASC mode is executed and when the abnormality detection circuit detects the abnormality of the semiconductor element.

4 . The semiconductor element driving apparatus according to claim 1 , wherein

the primary circuit includes a modulation circuit that generates a modulation signal based on rising and falling edges of the first control signal, and

the secondary circuit includes a demodulation circuit that generates an edge trigger signal used to generate the first transmission control signal based on the modulation signal transmitted from the primary circuit through the signal transmission circuit.

5 . The semiconductor element driving apparatus according to claim 4 , wherein the secondary circuit further includes a pulse restoration circuit that generates the first transmission control signal based on the edge trigger signal.

6 . The semiconductor element driving apparatus according to claim 1 , wherein

the secondary circuit further includes an abnormality detection circuit that outputs an abnormality detection signal indicating a detection result of an abnormality of the semiconductor element, and

the primary circuit includes a terminal that outputs a transmission result signal corresponding to the abnormality detection signal transmitted from the secondary circuit through the signal transmission circuit to an outside.

7 . The semiconductor element driving apparatus according to claim 1 , wherein

the secondary circuit includes:

an abnormality detection circuit that outputs an abnormality detection signal indicating a detection result of an abnormality of the semiconductor element; and

a modulation circuit that generates a modulation signal including a burst pulse based on the abnormality detection signal, and

the primary circuit includes:

a demodulation circuit that generates a burst signal including a burst pulse based on the modulation signal transmitted from the secondary circuit through the signal transmission circuit; and

an output circuit that smooths the burst signal and generates a transmission result signal corresponding to the abnormality detection signal.

8 . The semiconductor element driving apparatus according to claim 1 , wherein

the plurality of signals includes the first control signal, the second control signal, and the transition signal, and

the primary circuit includes an input priority determination circuit that selectively outputs the first control signal and the second control signal to the signal transmission circuit based on the transition signal.

9 . The semiconductor element driving apparatus according to claim 8 , wherein

the secondary circuit further includes the abnormality detection circuit that detects the abnormality of the semiconductor element, and

the input priority determination circuit selectively outputs the first control signal and the second control signal to the signal transmission circuit based on the transmission result signal corresponding to a determination result of the ASC mode determination circuit and to a detection result of the abnormality detection circuit, which are transmitted from the secondary circuit through the signal transmission circuit, and the transition signal.

10 . The semiconductor element driving apparatus according to claim 1 , wherein

the plurality of signals includes the first control signal and the control transition signal, and

the secondary circuit includes a waveform shaping circuit that generates the second transmission control signal that is a square wave signal based on a signal including a burst pulse corresponding to the control transition signal transmitted from the primary circuit through the signal transmission circuit.

11 . The semiconductor element driving apparatus according to claim 1 , wherein the insulating element includes a transformer magnetically coupled to each other.

12 . The semiconductor element driving apparatus according to claim 1 , wherein the insulating element includes a capacitor capacitively coupled to each other.

13 . The semiconductor element driving apparatus according to claim 1 , wherein the insulating element includes a photocoupler optically coupled to each other.