DocumentCode
110965
Title
3-Dimensional Blow Torch-Molding of Fused Silica Microstructures
Author
Jae Yoong Cho ; Jialiang Yan ; Gregory, Jeffrey A. ; Eberhart, Harald W. ; Peterson, Rebecca L. ; Najafi, Khalil
Author_Institution
Center for Wireless Integrated MicroSensing & Syst., Univ. of Michigan, Ann Arbor, MI, USA
Volume
22
Issue
6
fYear
2013
fDate
Dec. 2013
Firstpage
1276
Lastpage
1284
Abstract
This paper presents a new and simple microfabrication process for creating various 3-D microstructures with high-aspect ratios . The key feature of this process is the use of a blow torch, which provides very intense localized heat for a short amount of time . The flame temperature can be up to 2500 °C for a propane-oxygen torch, above the melting temperatures of many high- Q materials. We demonstrate the fabrication of hemispherical and half-toroid (birdbath) shells from 100- μm-thick fused silica substrates. The structures have an rms surface roughness of 5.3 Å, which is crucial for achieving both high mechanical and optical Q. We create microbirdbath resonators by batch-level releasing the birdbath shells. We verify the resonance mode shapes of the degenerate n=2 wineglass modes using laser vibrometry and measure the frequency and Q of these modes using laser vibrometry and a capacitive measurement method. We demonstrate one of the best mechanical Q and smallest frequency split between the n=2 wineglass modes among existing micromechanical resonators. The birdbath resonator is promising for emerging applications such as the microrate-integrating gyroscope.
Keywords
gyroscopes; mean square error methods; melting; microfabrication; micromechanical resonators; moulding; shell casting; silicon compounds; surface roughness; temperature; vibration measurement; 3D blow torch-molding; 3D microstructures; batch-level releasing; birdbath shell; capacitive measurement method; flame temperature; fused silica microstructures; fused silica substrates; half-toroid shell fabrication; hemispherical shell fabrication; high-Q materials; high-aspect ratios; laser vibrometry; localized heat; mechanical frequency split; melting temperatures; microbirdbath resonators; microfabrication process; micromechanical resonators; microrate-integrating gyroscope; propane-oxygen torch; resonance mode shapes; rms surface roughness; wineglass modes; Geometry; Heating; Optical resonators; Silicon; Silicon compounds; Substrates; Birdbath resonator; blow torch; fused silica; graphite; microstructures; mold;
fLanguage
English
Journal_Title
Microelectromechanical Systems, Journal of
Publisher
ieee
ISSN
1057-7157
Type
jour
DOI
10.1109/JMEMS.2013.2279165
Filename
6589107
Link To Document