DocumentCode :
758709
Title :
Silicon carbide pinch rectifiers using a dual-metal Ti-Ni2Si Schottky barrier
Author :
Roccaforte, Fabrizio ; La Via, Francesco ; La Magna, Antonino ; Di Franco, Salvatore ; Raineri, Vito
Author_Institution :
CNR-IMM, Catania, Italy
Volume :
50
Issue :
8
fYear :
2003
Firstpage :
1741
Lastpage :
1747
Abstract :
The electrical characterization of dual-metal-planar Schottky diodes on silicon carbide is reported. The devices were fabricated on both 6H- and 4H-SiC by using titanium (Ti) and nickel silicide (Ni2Si) as Schottky metals. These rectifiers yielded the same forward voltage drop as the Ti diodes and leakage current densities comparable to those of the Ni2Si diodes. The reduction of the reverse leakage current density, with respect to that of the Ti diodes, was about three orders of magnitude in 6H and about a factor of 30 in 4H-SiC. All that results in a consistent reduction of the device power dissipation. Electrical characterization of the devices at different temperatures provided insight into the carrier transport mechanism. In particular, the electrical behavior of the system was explained by an "inhomogeneous" Schottky barrier model, in which the low Ti barrier determines the current flow under forward bias, whereas the high Ni2Si barrier dominates the reverse bias conduction by the pinchoff of the low barrier Ti regions.
Keywords :
Schottky diodes; leakage currents; nickel compounds; power semiconductor diodes; silicon compounds; solid-state rectifiers; titanium; wide band gap semiconductors; SiC-Ti-Ni2Si; carrier transport; dual-metal Ti-Ni2Si Schottky barrier; dual-metal-planar Schottky diode; electrical characteristics; forward voltage drop; leakage current density; power dissipation; reverse leakage current density; silicon carbide pinch rectifier; Leakage current; Nickel; Power dissipation; Rectifiers; Schottky diodes; Silicides; Silicon carbide; Temperature; Titanium; Voltage;
fLanguage :
English
Journal_Title :
Electron Devices, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9383
Type :
jour
DOI :
10.1109/TED.2003.815127
Filename :
1218665
Link To Document :
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