A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and tested. The proposed device is characterized by simple design, reduced dimensions, and high efficiency. Furthermore, possible parasitic acceleration sensitivity is mechanically canceled in the proposed device. The initial design was subsequently studied through an ad hoc formulated multiphysics model used to compute the sensor dynamics; optimality of the design configuration was then obtained by means of a structural optimization approach. A wide scenario of design configurations, obtained with the proposed optimization approach, is finally discusse
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
A multi-physics model for a beam subject to current flow in a magnetic field is proposed which takes...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
Microelectromechanical systems (MEMS) resonators have allowed the development of magnetic field sens...
Microelectromechanical systems (MEMS) resonators have allowed the development of magnetic field sens...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
A multi-physics model for a beam subject to current flow in a magnetic field is proposed which takes...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
A new z-axis Lorentz force microelectromechanical systems magnetometer was designed, fabricated, and...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
The paper presents the experimental results and performance indexes of a new z-axis Lorentz force ME...
Microelectromechanical systems (MEMS) resonators have allowed the development of magnetic field sens...
Microelectromechanical systems (MEMS) resonators have allowed the development of magnetic field sens...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
In this paper, we propose a multiphysics-based optimization of the geometry of a microbeam, which re...
We present a microelectromechanical system (MEMS)-based magnetic field sensor with simple structural...
A multi-physics model for a beam subject to current flow in a magnetic field is proposed which takes...