A coupled 2D-3D finite element model developed with COMSOL Multiphysics software platform is proposed to design novel acoustic particle velocity sensors. The device consists of four silicided polysilicon wires arranged in a Wheatstone full-bridge configuration. Each wire has been divided into three segments placed over suspended silicon dioxide membranes. The dependence of the device sensitivity and frequency response on geometric dimensions has been investigated
Complete characterization of a sound field requires measurement of both sound pressure and particle ...
A 2D sound particle velocity sensor, consisting of a cross of two connected, heated wires is present...
This paper shows a thermal sensor capable of detecting the component of the acoustic particle veloci...
A coupled 2D-3D finite element model developed with COMSOL Multiphysics software platform is propose...
Acoustical particle velocity sensors for applications in the ultrasonic frequency range are investig...
This thesis describes the design and realization of two-dimensional acoustic\ud particle velocity se...
A two-dimensional acoustic particle velocity sensor as well as the required interfacing electronics ...
A two-dimensional acoustic particle velocity sensor has been designed and realized. The novel crosse...
The omni-directional sensitivity pattern of an integrated, three-dimensional acoustic sensor consist...
In this work we propose 2D acoustical particle velocity (APV) sensors produced by post processing s...
A new integrated sensor for the acoustic particle velocity measurement is proposed. The device is ba...
A 2-dimensional acoustic sensor with programmable directivity is proposed. The sensor is formed by t...
Numerical simulations are often required in the automotive industry to optimize not only the acousti...
The sensitivity of a micromachined acoustic sensor consisting of four hot-wire particle velocity sen...
A 2D sound particle velocity sensor, consisting of a cross of two connected, heated wires is present...
Complete characterization of a sound field requires measurement of both sound pressure and particle ...
A 2D sound particle velocity sensor, consisting of a cross of two connected, heated wires is present...
This paper shows a thermal sensor capable of detecting the component of the acoustic particle veloci...
A coupled 2D-3D finite element model developed with COMSOL Multiphysics software platform is propose...
Acoustical particle velocity sensors for applications in the ultrasonic frequency range are investig...
This thesis describes the design and realization of two-dimensional acoustic\ud particle velocity se...
A two-dimensional acoustic particle velocity sensor as well as the required interfacing electronics ...
A two-dimensional acoustic particle velocity sensor has been designed and realized. The novel crosse...
The omni-directional sensitivity pattern of an integrated, three-dimensional acoustic sensor consist...
In this work we propose 2D acoustical particle velocity (APV) sensors produced by post processing s...
A new integrated sensor for the acoustic particle velocity measurement is proposed. The device is ba...
A 2-dimensional acoustic sensor with programmable directivity is proposed. The sensor is formed by t...
Numerical simulations are often required in the automotive industry to optimize not only the acousti...
The sensitivity of a micromachined acoustic sensor consisting of four hot-wire particle velocity sen...
A 2D sound particle velocity sensor, consisting of a cross of two connected, heated wires is present...
Complete characterization of a sound field requires measurement of both sound pressure and particle ...
A 2D sound particle velocity sensor, consisting of a cross of two connected, heated wires is present...
This paper shows a thermal sensor capable of detecting the component of the acoustic particle veloci...