DocumentCode
2563493
Title
Comparison between mesa isolation and p+ implantation isolation for 4H-SiC MESFET transistors
Author
Alexandru, M. ; Banu, V. ; Vellvehi, M. ; Godignon, P. ; Millan, J.
Author_Institution
IMB, CNM, Barcelona, Spain
Volume
2
fYear
2011
fDate
17-19 Oct. 2011
Firstpage
317
Lastpage
320
Abstract
Silicon Carbide (SiC) is considered the wide band gap semiconductor material that can presently compete with silicon (Si) material for power switching devices. Progresses in the manufacturing of high quality SiC substrates open the possibility to new circuit applications. SiC unipolar transistors, such as JFETs and MESFETs have also a promising potential for digital integrated circuits operating at high temperature and/or in harsh environments. An increasing demand for high temperature compliant circuits comes from intelligent power management, automotive industry, and intelligent sensors for harsh environment, space and aerospace as well. Mesa isolation is a widely used isolation technique for the definition of individual devices due to its simplicity as fabrication process [1]. It is mostly used for the protection of high power devices. The junction isolation is widely used for bipolar, Bi-CMOS integrated circuits (IC) and can be achieved by diffusion or implantation process. The present work is presenting the experimental comparison between the mesa isolation process and p+ implantation junction isolation for 4H-SiC MESFET transistors.
Keywords
CMOS integrated circuits; Schottky gate field effect transistors; isolation technology; silicon compounds; wide band gap semiconductors; 4H-MESFET transistors; Bi-CMOS integrated circuits; JFET; Mesa isolation process; P+ implantation junction isolation; SiC; automotive industry; digital integrated circuits; fabrication process; harsh environment; high temperature compliant circuits; intelligent power management; intelligent sensors; power switching devices; silicon material; unipolar transistors; wide band gap semiconductor material; Etching; Fabrication; Junctions; MESFETs; Materials; Silicon carbide; 4H-SiC; JFET; MESFET; P+ implantation; SiC integrated circuits; mesa etching;
fLanguage
English
Publisher
ieee
Conference_Titel
Semiconductor Conference (CAS), 2011 International
Conference_Location
Sinaia
ISSN
1545-827X
Print_ISBN
978-1-61284-173-1
Type
conf
DOI
10.1109/SMICND.2011.6095803
Filename
6095803
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