Fabrication and testing of a high resolution extensometer based on resonant MEMS strain sensors
Contributo in Atti di convegno
Data di Pubblicazione:
2011
Abstract:
A novel type of linear extensometer with exceptionally high resolution of 4 nm based on MEMS resonant strain sensors bonded on steel and operating in a vacuum package is presented. The tool is implemented by means of a steel thin bar that can be pre-stressed in tension within two fixing anchors. The extension of the bar is detected by using two vacuum-packaged resonant MEMS double- ended tuning fork (DETF) sensors bonded on the bar with epoxy glue, one of which is utilized for temperature compensation. Both sensors are driven by a closed loop self-oscillating transresistance amplifier feedback scheme implemented on a PCB (Printed Circuit Board). On the same board, a microcontroller-based frequency measurement circuit is also implemented, which is able to count the square wave fronts of the MEMS oscillator output with a resolution of 20 nsec. The system provides a frequency noise of 0.2 Hz corresponding to an extension resolution of 4 nm for the extensometer. Nearly perfect temperature compensation of the frequency output is achieved in the temperature range 20-35 C using the reference sensor.
Tipologia CRIS:
04.01 Contributo in Atti di convegno
Keywords:
Closed loops; Epoxy glue; Extensometer; Feedback scheme; Frequency measurements; Frequency noise; High resolution; MEMS Oscillators; MEMS resonator; Pre-stressed; Reference sensors; Self-oscillating; Square waves; strain sensor; Strain sensors; Temperature compensation; Temperature range; Thin bars; Transresistance amplifiers; Tuning forks; Vacuum package; vacuum packaging; Actuators; Dilatometers; Microelectromechanical devices; Microsystems; Oscillators (electronic); Printed circuit boards; Steel testing; Temperature distribution; Vacuum; Vacuum transducers; Solid-state sensors
Elenco autori:
Ferri, Matteo; Roncaglia, Alberto; Mancarella, Fulvio; Belsito, Luca; Masini, Luca
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