The cross-sectional shape of microchannels is, dependent on the fabrication method, never perfectly circular. Consequently, the channels deform with the pressure, which is a non-ideal effect in flow sensors, but may be used for pressure sensing. Multiple suspended channels with different lengths were modeled, fabricated, and characterized to verify the use and the scalability of this effect for pressure sensing. Furthermore, it is shown that the pressure dependence can be distinguished from the Coriolis effect in microfabricated Coriolis mass flow sensors, enabling the measurement of the pressure next to flow and density with only the flow sensor itself. In addition, this allows for further improvement in the accuracy of the flow measuremen...
For many medical and industrial applications, measurement of flow is essential for continuous dosing...
We report on a novel capacitive detection principle for Coriolis mass flow sensors which allows for ...
AbstractRecently, we proposed a fabrication technology to realize fluidic channels at the surface of...
We report on novel resistive pressure sensors, integrated on-chip at the inlet- and outlet-channels ...
This paper discusses the design and realization of a micromachined micro Coriolis flow sensor with i...
This paper discusses the design and realization of a micromachined micro Coriolis flow sensor with i...
We have realized a micromachined micro Coriolis mass flow sensor with integrated capacitive readout ...
We report on a novel resistive pressure sensor that is completely integrated with a Coriolis mass fl...
This paper presents a μ -Coriolis mass flow sensor with resistive readout. Instead of measuring a ne...
This paper discusses the modeling, design and realization of micromachined Coriolis mass flow sensor...
We have developed a multi-axis flexible body model with which we can investigate the behavior of (mi...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
The Micro-Electro-Mechanical System Coriolis mass flow sensor uses a kind of in-plane comb-shaped ca...
Recently, we proposed a fabrication technology to realize fluidic channels at the surface of a silic...
For many medical and industrial applications, measurement of flow is essential for continuous dosing...
We report on a novel capacitive detection principle for Coriolis mass flow sensors which allows for ...
AbstractRecently, we proposed a fabrication technology to realize fluidic channels at the surface of...
We report on novel resistive pressure sensors, integrated on-chip at the inlet- and outlet-channels ...
This paper discusses the design and realization of a micromachined micro Coriolis flow sensor with i...
This paper discusses the design and realization of a micromachined micro Coriolis flow sensor with i...
We have realized a micromachined micro Coriolis mass flow sensor with integrated capacitive readout ...
We report on a novel resistive pressure sensor that is completely integrated with a Coriolis mass fl...
This paper presents a μ -Coriolis mass flow sensor with resistive readout. Instead of measuring a ne...
This paper discusses the modeling, design and realization of micromachined Coriolis mass flow sensor...
We have developed a multi-axis flexible body model with which we can investigate the behavior of (mi...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
The ability to measure the amount of fluid that flows from one location to another is of use in a wi...
The Micro-Electro-Mechanical System Coriolis mass flow sensor uses a kind of in-plane comb-shaped ca...
Recently, we proposed a fabrication technology to realize fluidic channels at the surface of a silic...
For many medical and industrial applications, measurement of flow is essential for continuous dosing...
We report on a novel capacitive detection principle for Coriolis mass flow sensors which allows for ...
AbstractRecently, we proposed a fabrication technology to realize fluidic channels at the surface of...