DocumentCode
1264924
Title
550
Integrated Logic Circuits using 6H-SiC JFETs
Author
Soong, Chia-Wei ; Patil, Amita C. ; Garverick, Steven L. ; Fu, Xiaoan ; Mehregany, Mehran
Author_Institution
Dept. of Electr. Eng. & Comput. Sci., Case Western Reserve Univ., Cleveland, OH, USA
Volume
33
Issue
10
fYear
2012
Firstpage
1369
Lastpage
1371
Abstract
This letter reports the design, fabrication, and electrical characteristics of inverter, NAND, and NOR logic circuits using 6H-silicon carbide (SiC) depletion-mode junction field-effect transistors. All circuits function with high performance at temperatures from 25 °C to 550 °C. The core inverter has an outstanding dc characteristic transfer function with a steep slope, including a gain of >; -20 up to 500 °C, and a logic threshold that is well centered in the logic swing. NOR and NAND gates were likewise tested in this temperature range, and dynamic characteristics are presented. This SiC technology provides a platform for applications demanding reliable digital circuits at temperatures higher than 300 °C, well beyond the capability of silicon technology.
Keywords
NAND circuits; NOR circuits; integrated circuit reliability; invertors; junction gate field effect transistors; logic design; logic gates; silicon compounds; transfer functions; wide band gap semiconductors; 6H-JFET; 6H-silicon carbide depletion-mode junction field-effect transistors; NAND gates; NAND logic circuits; NOR gates; NOR logic circuits; SiC; dc characteristic transfer function; digital circuit reliability; integrated logic circuits; inverter design; inverter electrical characteristics; inverter fabrication; logic swing; steep slope; temperature 25 degC to 550 degC; Inverters; JFETs; Logic circuits; Logic gates; Silicon carbide; Temperature; Temperature measurement; High-temperature ICs; junction field-effect transistors (JFETs); logic gates; silicon carbide (SiC);
fLanguage
English
Journal_Title
Electron Device Letters, IEEE
Publisher
ieee
ISSN
0741-3106
Type
jour
DOI
10.1109/LED.2012.2206792
Filename
6269050
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