High voltage power MOSFET having low on-resistance
First Claim
1. A power MOSFET, comprising:
- a substrate of a first conductivity type, an epitaxial layer on the substrate, said epitaxial layer having a first conductivity type;
first and second body regions located in the epitaxial layer defining a drift region therebetween, said body regions having a second conductivity type;
first and second source regions of the first conductivity type respectively located in the first and second body regions; and
a plurality of trenches located below said body regions in said drift region of the epitaxial layer, said trenches being filled with a material having a dopant of the second conductivity type, said trenches extending toward the substrate from the first and second body regions, said dopant being diffused from said trenches into portions of the epitaxial layer adjacent the trenches, wherein said material filling the trench is polysilicon, and wherein said polysilicon is subsequently recrystallized to form single crystal silicon.
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Abstract
A power MOSFET is provided that includes a substrate of a first conductivity type. An epitaxial layer also of the first conductivity type is deposited on the substrate. First and second body regions are located in the epitaxial layer and define a drift region between them. The body regions have a second conductivity type. First and second source regions of the first conductivity type are respectively located in the first and second body regions. A plurality of trenches are located below the body regions in the drift region of the epitaxial layer. The trenches, which extend toward the substrate from the first and second body regions, are filled with a material that includes a dopant of the second conductivity type. The dopant is diffused from the trenches into portions of the epitaxial layer adjacent the trenches.
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Citations
2 Claims
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1. A power MOSFET, comprising:
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a substrate of a first conductivity type, an epitaxial layer on the substrate, said epitaxial layer having a first conductivity type;
first and second body regions located in the epitaxial layer defining a drift region therebetween, said body regions having a second conductivity type;
first and second source regions of the first conductivity type respectively located in the first and second body regions; and
a plurality of trenches located below said body regions in said drift region of the epitaxial layer, said trenches being filled with a material having a dopant of the second conductivity type, said trenches extending toward the substrate from the first and second body regions, said dopant being diffused from said trenches into portions of the epitaxial layer adjacent the trenches, wherein said material filling the trench is polysilicon, and wherein said polysilicon is subsequently recrystallized to form single crystal silicon.
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2. A power MOSFET, comprising:
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a substrate of a first conductivity type;
an epitaxial layer on the substrate, said epitaxial layer having a first conductivity type;
first and second body regions located in the epitaxial layer defining a drift region therebetween, said body regions having a second conductivity type;
first and second source regions of the first conductivity type respectively located in the first and second body regions; and
a plurality of trenches located below said body regions in said drift region of the epitaxial layer, said trenches being filled with a material having a dopant of the second conductivity type, said trenches extending toward the substrate from the first and second body regions, said dopant being diffused from said trenches into portions of the epitaxial layer adjacent the trenches, wherein said material filling the trench is polysilicon, wherein said polysilicon is at least partially oxidized, and wherein said polysilicon is subsequently recrystallized to form single crystal silicon.
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Specification