In this work, simple analytical models based on the concept of an equivalent material are used to describe the mechanical behavior of resonators perforated by a regular array of square holes, a common occurrence in several MEMS devices and sensors. This description is applied to the determination of the resonance frequency of Lamé-mode square resonators, which are frequently pursued as high-Q MEMS resonators. The models predictions are compared with FEM simulations and experimental data both from the literature and from measurements obtained by the authors on thick SOI MEMS resonators. The models predictions are in good accordance both with FEM results and with experimental data
We present a new approach to the temperature compensation of MEMS Lamé resonators, based on the comb...
The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever...
The article focuses on acoustic resonators made of perforated sheets bonded onto honeycomb cavities....
In this work, simple analytical models based on the concept of an equivalent material are used to de...
In this work, simple analytical models based on the concept of an equivalent material are used to de...
In this paper, we develop closed expressions for the equivalent bending and shear stiffness of beams...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
The massive integration of micromechanical structures on ICs to allow microsystems to sense and cont...
International audienceThe article focuses on acoustic resonators made of perforated sheets bonded on...
International audienceThe article focuses on acoustic resonators made of perforated sheets bonded on...
Previous analyses of perforated panels have concentrated on the calculation of elastic properties. T...
This paper reports a preliminary examination of the effect of anchor geometry design on the quality ...
We present a new approach to the temperature compensation of MEMS Lamé resonators, based on the comb...
We present a new approach to the temperature compensation of MEMS Lamé resonators, based on the comb...
The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever...
The article focuses on acoustic resonators made of perforated sheets bonded onto honeycomb cavities....
In this work, simple analytical models based on the concept of an equivalent material are used to de...
In this work, simple analytical models based on the concept of an equivalent material are used to de...
In this paper, we develop closed expressions for the equivalent bending and shear stiffness of beams...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
International audienceAfter consistently progress in Micro-Electro-Mechanical (MEM) resonators, Sili...
The massive integration of micromechanical structures on ICs to allow microsystems to sense and cont...
International audienceThe article focuses on acoustic resonators made of perforated sheets bonded on...
International audienceThe article focuses on acoustic resonators made of perforated sheets bonded on...
Previous analyses of perforated panels have concentrated on the calculation of elastic properties. T...
This paper reports a preliminary examination of the effect of anchor geometry design on the quality ...
We present a new approach to the temperature compensation of MEMS Lamé resonators, based on the comb...
We present a new approach to the temperature compensation of MEMS Lamé resonators, based on the comb...
The nanofabrication of a nanomachined holed structure localized on the free end of a microcantilever...
The article focuses on acoustic resonators made of perforated sheets bonded onto honeycomb cavities....