Resonant mass sensors (i.e. microbalances) are commonly used in chemical and biochemical sensing, and their MEMS counterparts, based on MEMS resonators, are actively investigated. In this work, we present the design of an integrated electronic oscillator, based on general purpose CMOS operational amplifiers (op-amps) and conceived to operate with a magnetically actuated MEMS resonator fabricated on the same chip as the op-amps. After a description of the resonator and op-amp structure and characteristics, a two-stage, positive feedback oscillator topology is presented. The simulated behavior of the oscillator is presented and discussed, and the temperature stability of the oscillator output frequency is analyzed
A novel sustaining amplifier is designed and characterized for a Si-based MEMS resonator, in impleme...
This paper presents the theoretical study of a monolithically integrated NEMS/CMOS oscillator with e...
Abstract A resonant chemical sensor, fabricated in a standard, CMOS-compatible technology followed ...
We present the design of an integrated electronic oscillator aimed at the detection of the response ...
The future integrated circuit would demand a combination of micromechanical components and tradition...
In this paper, we report on the design of a low power CMOS oscillator front-end interface circuit fo...
This paper reports on the design and implementation of a low power MEMS oscillator based on capaciti...
Micro-electro mechanical system (MEMS) based oscillators are revolutionizing the timing industry as ...
Over the last ten years, the progress of Nanoelectromechanical systems (NEMS) fabrication has opened...
The research activity developed during my Ph.D. program was focused on CMOS-compatible MEMS (Micro-E...
This paper focuses on the design and development of a CMOS-MEMS resonator integrated with an on-chip...
Abstract — A completely monolithic high-Q oscillator, fabri-cated via a combined CMOS plus surface m...
This paper outlines the design and performance of an oscillator that incorporates a new type of MEMS...
This paper presents the design, fabrication, and electrical characterization of an electrostatically...
Design and analysis of a 10MHz oscillator is presented. To perform oscillator circuit simulations, t...
A novel sustaining amplifier is designed and characterized for a Si-based MEMS resonator, in impleme...
This paper presents the theoretical study of a monolithically integrated NEMS/CMOS oscillator with e...
Abstract A resonant chemical sensor, fabricated in a standard, CMOS-compatible technology followed ...
We present the design of an integrated electronic oscillator aimed at the detection of the response ...
The future integrated circuit would demand a combination of micromechanical components and tradition...
In this paper, we report on the design of a low power CMOS oscillator front-end interface circuit fo...
This paper reports on the design and implementation of a low power MEMS oscillator based on capaciti...
Micro-electro mechanical system (MEMS) based oscillators are revolutionizing the timing industry as ...
Over the last ten years, the progress of Nanoelectromechanical systems (NEMS) fabrication has opened...
The research activity developed during my Ph.D. program was focused on CMOS-compatible MEMS (Micro-E...
This paper focuses on the design and development of a CMOS-MEMS resonator integrated with an on-chip...
Abstract — A completely monolithic high-Q oscillator, fabri-cated via a combined CMOS plus surface m...
This paper outlines the design and performance of an oscillator that incorporates a new type of MEMS...
This paper presents the design, fabrication, and electrical characterization of an electrostatically...
Design and analysis of a 10MHz oscillator is presented. To perform oscillator circuit simulations, t...
A novel sustaining amplifier is designed and characterized for a Si-based MEMS resonator, in impleme...
This paper presents the theoretical study of a monolithically integrated NEMS/CMOS oscillator with e...
Abstract A resonant chemical sensor, fabricated in a standard, CMOS-compatible technology followed ...