A new analytical formulation for phase noise in MEMS oscillators was recently presented encompassing the role of essential nonlinearities in the electrical and mechanical domains. In this paper, we validate the effectiveness of the proposed analytical formulation with respect to the unified theory developed by Demir et al. describing phase noise in oscillators. In particular, it is shown that, over a range of the second-order mechanical nonlinear stiffness of the MEMS resonator, both models exhibit an excellent match in the phase diffusion coefficient calculation for a square-wave MEMS oscillator
Abstract—We build upon and derive a precise far from carrier phase noise model for radiation pressur...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
A new analytical formulation for phase noise in MEMS oscillators was recently presented encompassing...
In recent years, there has been much interest in the design of low-noise MEMS oscillators. This pape...
In recent years, there has been much interest in the design of low-noise MEMS oscillators. This pape...
This article's focus is on the numerical estimation of the overall instability of microelectromechan...
Phase noise in capacitively coupled micro-resonator-based oscillators is investigated. A detailed an...
The modelling of the non-linear behaviour of MEMS oscillators is of interest to understand the effec...
Linear models for oscillator noise predict an improvement in frequency stability with increasing Qua...
We present a mathematical model of a microelectromechanical system (MEMS) oscillator that integrates...
This paper shows improved phase-noise performance of MEMS oscillators when the sustaining amplifier ...
Nonlinearities in MEMS silicon resonators are caused by different effects. Depending on the resonato...
This article's focus is on the numerical estimation of the overall instability of microelectromechan...
Microelectromechanical system (MEMS) oscillators are conventionally designed so that the resonator i...
Abstract—We build upon and derive a precise far from carrier phase noise model for radiation pressur...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...
A new analytical formulation for phase noise in MEMS oscillators was recently presented encompassing...
In recent years, there has been much interest in the design of low-noise MEMS oscillators. This pape...
In recent years, there has been much interest in the design of low-noise MEMS oscillators. This pape...
This article's focus is on the numerical estimation of the overall instability of microelectromechan...
Phase noise in capacitively coupled micro-resonator-based oscillators is investigated. A detailed an...
The modelling of the non-linear behaviour of MEMS oscillators is of interest to understand the effec...
Linear models for oscillator noise predict an improvement in frequency stability with increasing Qua...
We present a mathematical model of a microelectromechanical system (MEMS) oscillator that integrates...
This paper shows improved phase-noise performance of MEMS oscillators when the sustaining amplifier ...
Nonlinearities in MEMS silicon resonators are caused by different effects. Depending on the resonato...
This article's focus is on the numerical estimation of the overall instability of microelectromechan...
Microelectromechanical system (MEMS) oscillators are conventionally designed so that the resonator i...
Abstract—We build upon and derive a precise far from carrier phase noise model for radiation pressur...
In this paper we analyze adsorption-desorption (AD) noise in resonant microelectromechanical structu...
This dissertation explores the performance capabilities, limitations, and theoretical analysis of mi...