A complete model was developed to simulate the behavior of a circular clamped axisymmetric fluid-coupled Piezoelectric Micromachined Ultrasonic Transducer (PMUT). Combining Finite Difference and Boundary Element Matrix (FD-BEM), this model is based on the discretization of the partial differential equation used to translate the mechanical behavior of a PMUT. In the model, both the axial and the transverse displacements are preserved in the equation of motion and used to properly define the neutral line position. To introduce fluid coupling, a Green’s function dedicated to axisymmetric circular radiating sources is employed. The resolution of the behavioral equations is used to establish the equivalent electroacoustic circuit of a PMUT that ...
This work is focused on the multi-physics modelling via the finite element method (FEM) of an air-co...
The paper is focused on the multi-physics modeling, via the finite element method (FEM), of a 4 × 4 ...
This paper reports on the accurate modeling of immersion capacitive micromachined ultrasonic transdu...
In this paper a complete multiphysics modelling via the finite element method (FEM) of an air-couple...
Transducers based on piezoelectric crystals dominate the biomedical ultrasonic imaging field. Howeve...
We present a computationally-scalable model for Capacitive Micromachined Ultrasonic Transducer (CMUT...
This paper presents three-dimensional (3D) models of high-frequency piezoelectric micromachined ultr...
An analytical Mason equivalent circuit is derived for a circular, clamped plate piezoelectric microm...
In this paper a complete Multiphysics modelling via the Finite Element Method (FEM) of an air-couple...
In this work, we present a complete multiphysics modelling (via the Finite Element Method, FEM) of a...
The optimization of piezoelectric ultrasonic transducers has tradisionally been done through trial a...
We report a system level approach for design of Piezoelectric Micromachined Ultrasonic Transducers (...
Cataloged from PDF version of article.Finite element method (FEM) is used for transient dynamic anal...
This work is focused on the multi-physics modelling via the finite element method (FEM) of an air-co...
The paper is focused on the multi-physics modeling, via the finite element method (FEM), of a 4 × 4 ...
This paper reports on the accurate modeling of immersion capacitive micromachined ultrasonic transdu...
In this paper a complete multiphysics modelling via the finite element method (FEM) of an air-couple...
Transducers based on piezoelectric crystals dominate the biomedical ultrasonic imaging field. Howeve...
We present a computationally-scalable model for Capacitive Micromachined Ultrasonic Transducer (CMUT...
This paper presents three-dimensional (3D) models of high-frequency piezoelectric micromachined ultr...
An analytical Mason equivalent circuit is derived for a circular, clamped plate piezoelectric microm...
In this paper a complete Multiphysics modelling via the Finite Element Method (FEM) of an air-couple...
In this work, we present a complete multiphysics modelling (via the Finite Element Method, FEM) of a...
The optimization of piezoelectric ultrasonic transducers has tradisionally been done through trial a...
We report a system level approach for design of Piezoelectric Micromachined Ultrasonic Transducers (...
Cataloged from PDF version of article.Finite element method (FEM) is used for transient dynamic anal...
This work is focused on the multi-physics modelling via the finite element method (FEM) of an air-co...
The paper is focused on the multi-physics modeling, via the finite element method (FEM), of a 4 × 4 ...
This paper reports on the accurate modeling of immersion capacitive micromachined ultrasonic transdu...