Logo image
A high-precision, wide-bandwidth micromachined tunneling accelerometer
Journal article   Peer reviewed

A high-precision, wide-bandwidth micromachined tunneling accelerometer

Cheng-Hsien Liu and Thomas W. Kenny
Journal of Microelectromechanical Systems, Vol.10(3), pp.425-433
09/2001

Abstract

Electron tunneling High-precision accelerometer Robust MEMS
High-precision miniature accelerometers based on electron tunneling transducers have been successfully fabricated using bulk-silicon micromachining process. This process has been modified to reduce bi-metal effects and results in greatly-suppressed 1/f noise. A comprehensive system model and a robust controller based on mixed μ synthesis have also been developed to close the feedback loop, extend the bandwidth, and withstand accelerometer variations due to micromachining process variations. This accelerometer is a prototype intended for underwater acoustics applications and is designed to be packaged in an 8 cm 3 sphere volume with a total mass of 8 grams. In this paper, we describe the accelerometer design, the feedback control design, and several performance enhancements of these micromachined tunneling accelerometers, which include a high resolution of 20 nano-g/√Hz and a 5 Hz-1.5 kHz bandwidth.

Metrics

1 Record Views
62 readers on Mendeley
1 readers on CiteULike

Details

Logo image