The numerical models describing the behaviour of electrostatically actuated microsystems often disregard fringing fields. However, taking fringing fields into account is crucial for an accurate com- putation of the electrostatic forces. In this work, the finite element method is applied for modeling electrostatic actuators. The electrostatic force distribution is obtained by locally applying the virtual work method. A micro-beam and a comb drive are considered as test cases. The impact of the fringing field effects on the accurate computation of electrostatic forces and capacitances is shown through 2D and 3D parametric studies.status: publishe
In this paper, we present an investigation of the static behavior of a doubly-clamped microbeam actu...
An accurate computation of electrical force is significant in analyzing the performance of microelec...
An accurate computation of electrical force is significant in analyzing the performance of microelec...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
peer reviewedThe numerical models describing the behaviour of electrostatically actuated microsystem...
The increased complexity and precision requirements of microelectromechanical systems(MEMS) have bro...
The increased complexity and precision requirements of microelectromechanical systems(MEMS) have bro...
Electrostatic actuation is a prevalent method of driving MEMS devices because it is compatible with ...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
The design procedures of micro-electro-mechanical systems (MEMS) can be strongly dependent on the ac...
The design procedures of micro-electro-mechanical systems (MEMS) can be strongly dependent on the ac...
In this paper, we present an investigation of the static behavior of a doubly-clamped microbeam actu...
An accurate computation of electrical force is significant in analyzing the performance of microelec...
An accurate computation of electrical force is significant in analyzing the performance of microelec...
The numerical models describing the behaviour of electrostatically actuated microsystems often disre...
peer reviewedThe numerical models describing the behaviour of electrostatically actuated microsystem...
The increased complexity and precision requirements of microelectromechanical systems(MEMS) have bro...
The increased complexity and precision requirements of microelectromechanical systems(MEMS) have bro...
Electrostatic actuation is a prevalent method of driving MEMS devices because it is compatible with ...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
This paper deals with the problem of accurate evaluation of global quantities related to the electro...
The design procedures of micro-electro-mechanical systems (MEMS) can be strongly dependent on the ac...
The design procedures of micro-electro-mechanical systems (MEMS) can be strongly dependent on the ac...
In this paper, we present an investigation of the static behavior of a doubly-clamped microbeam actu...
An accurate computation of electrical force is significant in analyzing the performance of microelec...
An accurate computation of electrical force is significant in analyzing the performance of microelec...