DocumentCode
1195132
Title
Optimized trench MOSFET technologies for power devices
Author
Shenai, Krishna
Volume
39
Issue
6
fYear
1992
fDate
6/1/1992 12:00:00 AM
Firstpage
1435
Lastpage
1443
Abstract
Low-voltage silicon trench power MOSFETs with forward conductivities approaching the silicon limit are reported. Vertical trench power MOSFETs with the measured performances of V DB =55 V (R sp=0.2 mΩ-cm2, k D=5.7 Ω-pF) and V DB=35 V (R sp=0.15 mΩ-cm2, k D =4.3 Ω-PF) were developed where V DB is the drain-source avalanche breakdown voltage, R sp is the specific on-state resistance, and k D=R spC sp is the input device technology factor where C sp is the specific MOS gate input capacitance. The optimum device performance resulted from an advanced trench processing technology that included (1) an improved RIE process to define scaled vertical silicon trenches, (2) silicon trench sidewall cleaning to reduce the surface damage, and (3) a novel polysilicon gate planarization technique using a sequential oxidation/oxide etchback, process. The measured performances are shown to be in excellent agreement with the two-dimensional device simulations and the calculated results obtained from an analytical model
Keywords
insulated gate field effect transistors; oxidation; power transistors; semiconductor technology; sputter etching; 35 V; 55 V; RIE process; analytical model; drain-source avalanche breakdown voltage; forward conductivities; input device technology factor; polysilicon gate planarization technique; power MOSFETs; sequential oxidation/oxide etchback; specific MOS gate input capacitance; specific on-state resistance; surface damage; trench MOSFET technologies; trench processing technology; trench sidewall cleaning; two-dimensional device simulations; vertical trench power MOSFET; Analytical models; Avalanche breakdown; Breakdown voltage; Capacitance measurement; Conductivity; MOSFET circuits; Performance evaluation; Power MOSFET; Power measurement; Silicon;
fLanguage
English
Journal_Title
Electron Devices, IEEE Transactions on
Publisher
ieee
ISSN
0018-9383
Type
jour
DOI
10.1109/16.137324
Filename
137324
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