SiC super junction trench MOSFET
A SiC SJ trench MOSFET having first and second type gate trenches for formation of gate electrodes and super junction regions is disclosed. The gate electrodes are disposed into the first type gate trenches having a thick oxide layer on trench bottom. The super junction regions are formed surrounding the second type gate trenches filled up with the thick oxide layer. The device further comprises gate oxide electric field reducing regions adjoining lower surfaces of body regions and space apart from the gate trenches.
1. A SiC power device comprising a SJ trench MOSFET formed in an epitaxial layer of a first conductivity type onto a substrate of said first conductivity type, further comprising:
a plurality of trenches surrounded by source regions of said first conductivity type encompassed in body regions of a second conductivity type near a top surface of said epitaxial layer in active area;
each of said plurality of trenches having a first type gate trench and a second type gate trench; said first type gate trench is above said second type gate trench and has a trench width wider than said second type gate trench;
a gate electrode disposed in said first type gate trench surrounded with a first insulating film on bottom of said plurality of trenches, and with a second insulating film on sidewalls of said plurality of trenches; said first insulating film having a thickness greater than said second insulating film;
a super junction region surrounding with lower portions of said plurality of trenches, comprising a first doped column region of said second conductivity type formed adjacent to sidewalls of said second type gate trench and a second doped column region of said first conductivity type formed in parallel and surrounded with said first doped column region, said second type gate trench filled up with said first insulating film; and
said body regions and said source regions being shorted to a source metal through a plurality of source contacts.
2. The SiC power device of claim 1 , wherein said epitaxial layer comprises a single epitaxial layer having a uniform doping concentration.
3. The SiC power device of claim 1 , wherein said epitaxial layer comprises a lower epitaxial layer between said substrate and said super junction region with resistivity R 1 and an upper epitaxial layer with resistivity R 2 , wherein said R 1 <said R 2 .
4. The SiC power device of claim 1 , wherein said source contacts are trenched contacts.
5. The SiC power device of claim 1 , further comprising gate oxide electric field reducing regions of said second type conductivity adjoining lower surfaces of said body regions and spaced apart from adjacent said plurality of trenches.
6. The SiC power device of claim 4 , wherein said source contacts filled with Ti/TiN/Al alloys.
7. The SiC power device of claim 4 , wherein said source contacts filled with Ti/TiN/W.