MM-wave performance and avalanche noise estimation of hexagonal SiC and GaN IMPATTs for D-band applications

Author:

Tripathy Pravash R.,Mukherjee Moumita,Pati Shankar P.

Abstract

The mm-wave as well as avalanche noise properties of IMPATT diode at D-band are efficiently estimated, with different poly-types of silicon carbide (SiC) and GaN as base materials, using advanced computer simulation techniques developed by the authors. The breakdown voltage of 4H-SiC (180 V) is more than the same for 6H-SiC, ZB- and Wz-GaN-based diode of 170,158, and 160 V, respectively. Similarly, the efficiency (14.7%) is also high in the case of 4H-SiC as compared with 6H-SiC and GaN-based diode. The study indicates that 4H-SiC IMPATT diode is capable of generating high RF power of about 8.38 W as compared with GaN IMPATT diode due to high breakdown voltage and negative resistance for the same frequency of operation. It is also observed that Wz-GaN exhibits better noise behavior 7.4 × 10−16 V2 s than SiC (5.16 × 10−15 V2 s) for IMPATT operation at 140 GHz. A comparison between the power output and noise from both the device reveals that Wz-GaN would be a suitable base material for high-power application of IMPATT diode with moderate noise.

Publisher

Cambridge University Press (CUP)

Subject

Electrical and Electronic Engineering

Reference36 articles.

1. Experimental determination of a SiC IMPATT oscillator;Yuan;IEEE Electron Device Lett.,2001

2. Crystal damage assessment of Be+-implanted GaN by UV Raman scattering

3. Simulation experiment on optical modulation of 4H-SiC millimeter-wave high power IMPATT oscillator;Mukherjee;J. Eur. Microw. Assoc. (EuMA Publishing – UK),2008

4. Growth of high quality GaN epilayers with SixNy inserting layer on Si (111) substrate;Lee;J. Korean Phys. Soc.,2004

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