Monolithic component comprising a gallium nitride power transistor
A monolithic component includes a field-effect power transistor and at least one first Schottky diode inside and on top of a gallium nitride substrate.
1. An electronic component comprising:
gallium nitride substrate;
an aluminum-gallium nitride layer;
first and second connection terminals on the gallium nitride substrate;
a field-effect power transistor on the gallium nitride substrate and including a gate structure, source, and drain, the gate structure being directly on the gallium nitride substrate and includes a gate dielectric layer and a gate electrode;
a passivation layer on the gate structure of the field-effect power transistor;
a first Schottky diode on the gallium nitride substrate and coupled between and to both the first connection terminal and the gate electrode of the field-effect power transistor; and
a second Schottky diode on the gallium nitride substrate and coupled between and to both the second connection terminal and the gate electrode of the field-effect power transistor, the source and drain of the field-effect power transistor and cathode terminals of each of the first Schottky diode and the second Schottky diode are in respective trenches extending in the passivation layer to the gallium nitride substrate, anode terminals of each of the first Schottky diode and the second Schottky diode are in respective trenches extending in the passivation layer to the aluminum-gallium nitride layer.
2. The component of claim 1 , wherein the first Schottky diode has an anode electrode coupled to the gate electrode of the field-effect power transistor and a cathode electrode coupled to the first connection terminal.
3. The component of claim 2 , wherein:
the first connection terminal is configured to receive a first fixed voltage corresponding to a voltage for controlling the field-effect power transistor to a first state, on or off; and
the second connection terminal is intended to receive a second fixed voltage corresponding to a voltage for controlling the field-effect power transistor to a second state, off or on.
4. The component of claim 1 , wherein the second Schottky diode has a cathode electrode coupled to the gate electrode of the field-effect power transistor and an anode electrode coupled to the second connection terminal.
5. The component of claim 1 , further comprising a drain connection terminal, a source connection terminal, and a gate connection terminal respectively coupled to the drain, to the source, and to the gate electrode of the field-effect power transistor.