Fabrication of a novel quartz micromachined gyroscope
Author(s) -
Liqiang Xie,
Jianchun Xing,
Haoxu Wang,
Xuezhong Wu
Publication year - 2015
Publication title -
aip advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.421
H-Index - 58
ISSN - 2158-3226
DOI - 10.1063/1.4908039
Subject(s) - etching (microfabrication) , materials science , gyroscope , quartz , surface micromachining , electrode , fabrication , deposition (geology) , vibrating structure gyroscope , microelectromechanical systems , isotropic etching , optoelectronics , crystal (programming language) , evaporation , deep reactive ion etching , reactive ion etching , nanotechnology , composite material , chemistry , computer science , alternative medicine , pathology , biology , paleontology , layer (electronics) , thermodynamics , programming language , medicine , physics , sediment , quantum mechanics
A novel quartz micromachined gyroscope is proposed in this paper. The novel gyroscope is realized by quartz anisotropic wet etching and 3-dimensional electrodes deposition. In the quartz wet etching process, the quality of Cr/Au mask films affecting the process are studied by experiment. An excellent mask film with 100 Å Cr and 2000 Å Au is achieved by optimization of experimental parameters. Crystal facets after etching seriously affect the following sidewall electrodes deposition process and the structure’s mechanical behaviours. Removal of crystal facets is successfully implemented by increasing etching time based on etching rate ratios between facets and crystal planes. In the electrodes deposition process, an aperture mask evaporation method is employed to prepare electrodes on 3-dimensional surfaces of the gyroscope structure. The alignments among the aperture masks are realized by the ABM™ Mask Aligner System. Based on the processes described above, a z–axis quartz gyroscope is fabricated successfully
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