Nonlinear effects in single-crystal silicon microresonators are analyzed with the focus on mechanical nonlinearities. The bulk acoustic wave (BAW) resonators are shown to have orders-of-magnitude higher energy storage capability than flexural beam resonators. The bifurcation point for the silicon BAW resonators is measured and the maximum vibration amplitude is shown to approach the intrinsic material limit. The importance of nonlinearities in setting the limit for vibration energy storage is demonstrated in oscillator applications. The phase noise calculated for silicon microresonator-based oscillators is compared to the conventional macroscopic quartz-based oscillators, and it is shown that the higher energy density attainable with the si...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...
Nonlinear effects in single-crystal silicon microresonators are analyzed with the focus on mechanica...
Abstract—Nonlinear effects in single-crystal silicon microres-onators are analyzed with the focus on...
The fundamental performance limit of single-crystal silicon resonators set by device nonlinearities ...
The fundamental performance limit of single-crystal silicon resonators set by device nonlinearities ...
The focus of this work is to study nonlinear behavior in silicon-based micro-resonators and more spe...
The focus of this work is to study nonlinear behavior in silicon-based micro-resonators and more spe...
The fundamental nonlinear mechanical effects in micromachined single-crystal silicon resonators are ...
Abstract-In this paper, we report the manipulation of nonlinear behavior in a bulk-mode micromechani...
This paper shows improved phase-noise performance of MEMS oscillators when the sustaining amplifier ...
We describe the use of bulk acoustic mode in micromechanical silicon resonators operating at radio f...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...
Nonlinear effects in single-crystal silicon microresonators are analyzed with the focus on mechanica...
Abstract—Nonlinear effects in single-crystal silicon microres-onators are analyzed with the focus on...
The fundamental performance limit of single-crystal silicon resonators set by device nonlinearities ...
The fundamental performance limit of single-crystal silicon resonators set by device nonlinearities ...
The focus of this work is to study nonlinear behavior in silicon-based micro-resonators and more spe...
The focus of this work is to study nonlinear behavior in silicon-based micro-resonators and more spe...
The fundamental nonlinear mechanical effects in micromachined single-crystal silicon resonators are ...
Abstract-In this paper, we report the manipulation of nonlinear behavior in a bulk-mode micromechani...
This paper shows improved phase-noise performance of MEMS oscillators when the sustaining amplifier ...
We describe the use of bulk acoustic mode in micromechanical silicon resonators operating at radio f...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
A micromechanical 13.1-MHz bulk acoustic mode silicon resonator having a high quality factor (Q=130 ...
The small size and integrability make the silicon micromechanical rf-resonators attractive component...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...
A micromechanical 13.1 MHz bulk acoustic mode (BAW) silicon resonator is demonstrated. The vibration...