High Quality Factor Silicon Cantilever Driven by PZT Actuator for Resonant Based Mass Detection

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URI: http://hdl.handle.net/2042/16860
Title: High Quality Factor Silicon Cantilever Driven by PZT Actuator for Resonant Based Mass Detection
Author: Lu, Jian; Ikehara, T.; Zhang, Yi; Mihara, Takashi; Itoh, Toshihiro; Maeda, Ryutaro
Abstract: A high quality factor (Q-factor) piezoelectric lead zirconat titanate (PZT) actuated single crystal silicon cantilever was proposed in this paper for resonant based ultra-sensitive mass detection. Energy dissipation from intrinsic mechanical loss of the PZT film was successfully compressed by separating the PZT actuator from resonant structure. Excellent Q-factor, which is several times larger than conventional PZT cantilever, was achieved under both atmospheric pressure and reduced pressures. For a 30 μm-wide 100 μm-long cantilever, Q-factor was measured as high as 1113 and 7279 under the pressure of 101.2 KPa and 35 Pa, respectively. Moreover, it was found that high-mode vibration can be realized by the cantilever for the pursuit of great Q-factor, while support loss became significant because of the increased vibration amplitude at the actuation point. An optimized structure using node-point actuation was suggested then to suppress corresponding energy dissipation.
Publisher: EDA Publishing, Grenoble, France
Date: 2008

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