Semiconductor device
A vertical MOSFET having a trench gate structure includes an n − -type drift layer and a p-type base layer formed by epitaxial growth. In the n − -type drift layer, an n-type region, a first p + -type region, and a second p + -type region are provided. A metal film of a trench SBD is connected to a source electrode; and a p + -type region is provided between the source electrode and the p-type base layer.
1. A semiconductor device comprising:
a semiconductor substrate of a first conductivity type;
a first semiconductor layer that is of the first conductivity type, provided on a front surface of the semiconductor substrate, and has an impurity concentration lower than an impurity concentration of the semiconductor substrate;
a first semiconductor region that is of a second conductivity type and selectively provided in the first semiconductor layer;
a second semiconductor region that is of the second conductivity type and selectively provided at a first surface of the first semiconductor layer, the first surface being opposite a second surface of the first semiconductor layer, the second surface facing toward the semiconductor substrate;
a second semiconductor layer that is of the second conductivity type and provided on the first surface of the first semiconductor layer;
third semiconductor regions that are of the first conductivity type, selectively provided in the second semiconductor layer of the second conductivity type, and have an impurity concentration higher than the impurity concentration of the semiconductor substrate;
a first trench and a second trench that penetrate the third semiconductor regions of the first conductivity type and the second semiconductor layer of the second conductivity type, reach the first semiconductor layer, and have respective bottoms that are in contact with the first semiconductor regions, respectively;
a gate electrode that is provided in the first trench, via a gate insulating film;
a Schottky electrode that is provided in the second trench and that is connected to a source electrode; and
a third semiconductor region that is of the second conductivity type, provided in a side portion of the second trench, and has an impurity concentration higher than the impurity concentration of the second semiconductor layer that is of the second conductivity type.
2. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is provided between the source electrode and the second semiconductor layer of the second conductivity type.
3. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is provided in a first side portion and a second side portion sandwiching the second trench, the third semiconductor region being provided to be continuous, or to alternate, or be intermittent along a formation direction of the second trench.
4. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is in contact with one of the third semiconductor regions of the first conductivity type.
5. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is provided in the second semiconductor layer of the second conductivity type.
6. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is provided in the second semiconductor layer of the second conductivity type and one of the third semiconductor regions of the first conductivity type.
7. The semiconductor device according to claim 1 , wherein
the third semiconductor region of the second conductivity type is provided at a position in a first side portion and a position in a second side portion sandwiching the second trench, the third semiconductor region being provided to be continuous, or to alternate, or to be intermittent long a formation direction of the second trench, and to connect the first semiconductor region and the second semiconductor layer of the second conductivity type.