We have developed a multi-axis flexible body model with which we can investigate the behavior of (micro) Coriolis mass flow sensors with arbitrary channel geometry. The model has been verified by measurements on five different designs of micro Coriolis mass flow sensors. The model predicts the Eigen frequency of the first two modes within 10% when the sensor tube is filled with air, water or iso-propyl alcohol. The complex shape and high aspect ratio of the micro channels do not allow conventional FEM modelling. Instead the Matlab package SPACAR is used, which allows to model the sensor with a limited number of elements, providing fast and accurate numerical computations. This allows optimization of channel geometry and positioning of the s...
The technological advances of micro-electro-mechanical systems (MEMS) in the past two decades have b...
The Coriolis sass flowaeter is modelled using the theory of vibrating beams. Tube deformations for ...
We have realized a micromachined micro Coriolis flow sensor consisting of a silicon nitride resonant...
This paper discusses the modeling, design and realization of micromachined Coriolis mass flow sensor...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
AbstractIn this paper we present Finite Element models to optimize the Lorentz force actuation of a ...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
In this paper we present a compact ready-to-use micro Coriolis mass flow meter. The full scale flow ...
The Coriolis principle for measuring flow rates has great advantages compared to other flow measurem...
The cross-sectional shape of microchannels is, dependent on the fabrication method, never perfectly ...
We report on a novel capacitive detection principle for Coriolis mass flow sensors which allows for ...
We have realized a micromachined micro Coriolis mass flow sensor consisting of a silicon nitride res...
Modeling a Coriolis mass-flow meter for shape optimization is considered. The optimization should en...
Precision flow sensors are widely used in the pharmaceutical, food, and semiconductor industries to ...
In this paper we present Finite Element models to optimize the Lorentz force actuation of a micro Co...
The technological advances of micro-electro-mechanical systems (MEMS) in the past two decades have b...
The Coriolis sass flowaeter is modelled using the theory of vibrating beams. Tube deformations for ...
We have realized a micromachined micro Coriolis flow sensor consisting of a silicon nitride resonant...
This paper discusses the modeling, design and realization of micromachined Coriolis mass flow sensor...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
AbstractIn this paper we present Finite Element models to optimize the Lorentz force actuation of a ...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
In this paper we present a compact ready-to-use micro Coriolis mass flow meter. The full scale flow ...
The Coriolis principle for measuring flow rates has great advantages compared to other flow measurem...
The cross-sectional shape of microchannels is, dependent on the fabrication method, never perfectly ...
We report on a novel capacitive detection principle for Coriolis mass flow sensors which allows for ...
We have realized a micromachined micro Coriolis mass flow sensor consisting of a silicon nitride res...
Modeling a Coriolis mass-flow meter for shape optimization is considered. The optimization should en...
Precision flow sensors are widely used in the pharmaceutical, food, and semiconductor industries to ...
In this paper we present Finite Element models to optimize the Lorentz force actuation of a micro Co...
The technological advances of micro-electro-mechanical systems (MEMS) in the past two decades have b...
The Coriolis sass flowaeter is modelled using the theory of vibrating beams. Tube deformations for ...
We have realized a micromachined micro Coriolis flow sensor consisting of a silicon nitride resonant...