Inductive coupled plasma etching of high aspect ratio silicon carbide microchannels for localized cooling

  • Dowling, Karen M.; 
  • Suria, Ateeq J.; 
  • Won, Yoonjin; 
  • Shankar, Ashwin; 
  • Lee, Hyoungsoon; 
  • 외 3명
Citations

SCOPUS

10

초록

High aspect ratio microchannels using high thermal conductivity materials such as silicon carbide (SiC) have recently been explored to locally cool micro-scale power electronics that are prone to on-chip hot spot generation. Analytical and finite element modeling shows that SiC-based microchannels used for localized cooling should have high aspect ratio features (above 8:1) to obtain heat transfer coefficients (300 to 600 kW/m2K) required to obtain gallium nitride (GaN) device channel temperatures below 100°C. This work presents experimental results of microfabricating high aspect ratio microchannels in a 4H-SiC substrate using inductively coupled plasma (ICP) etching. Depths of 90 μm and 80 μm were achieved with a 5:1 and 12:1 aspect ratio, respectively. This microfabrication process will enable the integration of microchannels (backside features) with highpower density devices such as GaN-on-SiC based electronics, as well as other SiC-based microfluidic applications. Copyright © 2015 by ASME.

제목
Inductive coupled plasma etching of high aspect ratio silicon carbide microchannels for localized cooling
저자
Dowling, Karen M.; Suria, Ateeq J.; Won, Yoonjin; Shankar, Ashwin; Lee, Hyoungsoon; Asheghi, Mehdi; Goodson, Kenneth E.; Senesky, Debbie G.
DOI
10.1115/IPACK2015-48409
발행일
2015
유형
Conference paper
저널명
ASME 2015 International Technical Conference and Exhibition on Packaging and Integration of Electronic and Photonic Microsystems, InterPACK 2015, collocated with the ASME 2015 13th International Conference on Nanochannels, Microchannels, and Minichannels
권
3