VTT Technical Research Centre of Finland has developed microelectromechanical (MEMS) Fabry-Perot interferometer (FPI) for hydrocarbon measurements. Fabry-Perot interferometer is a structure where is two highly reflective surfaces separated by a tunable air gap. The MEMS FPI is a monolithic device, i.e. it is made entirely on one substrate in a batch process, without assembling separate pieces together. The gap is adjusted by moving the upper mirror with electrostatic force, so there are no actual moving parts. The manufactured MEMS FPIs have been characterized. The tuning wavelength range of the MEMS FPI is 2.8-3.5 µm and its spectral resolution is 50-60 nm. VTT has designed and manufactured a handheld size demonstrator device based on the ...
A set-up for optical gas composition measurement based on absorption spectroscopy is composed of a w...
VTT has developed new MEMS based spectrometer technologies to meet various spectral sensing demands ...
In this work we present an analysis of gas sensors based on correlation spectroscopy with a Fabry-Pe...
VTT Technical Research Centre of Finland has developed microelectromechanical (MEMS) Fabry-Perot int...
VTT Technical Research Centre of Finland has developed a miniaturized optical sensor for gas detecti...
VTT Technical research centre of Finland has developed a MEMS Fabry-Perot interferometer (FPI) for t...
This paper describes an optical gas concentration measurement system, which is based on an electrica...
A gas sensor design based on cross correlation spectroscopy using a FPI with long cavity length (>...
A gas sensor based on correlation spectroscopy using a FPI with long cavity length (>500 µm) as a...
This paper presents near- and mid- infrared (NIR-MIR) wavelength range optical MEMS Fabry-Perot inte...
We developed a micro-gas detector based on a Fabry-Perot (FP) cavity embedded in a microfluidic chan...
VTT has developed a miniaturized mid-IR spectrometer system for gas sensing utilizing a surface micr...
Miniaturized spectrometers covering spectral regions from UV to thermal IR are of interest for sever...
VTT’s optical MEMS Fabry-Perot interferometers (FPIs) are tunable optical filters, which enable mini...
We have developed a simple fiber optic Fabry-Perot interferometer (FPI) sensor that is used to detec...
A set-up for optical gas composition measurement based on absorption spectroscopy is composed of a w...
VTT has developed new MEMS based spectrometer technologies to meet various spectral sensing demands ...
In this work we present an analysis of gas sensors based on correlation spectroscopy with a Fabry-Pe...
VTT Technical Research Centre of Finland has developed microelectromechanical (MEMS) Fabry-Perot int...
VTT Technical Research Centre of Finland has developed a miniaturized optical sensor for gas detecti...
VTT Technical research centre of Finland has developed a MEMS Fabry-Perot interferometer (FPI) for t...
This paper describes an optical gas concentration measurement system, which is based on an electrica...
A gas sensor design based on cross correlation spectroscopy using a FPI with long cavity length (>...
A gas sensor based on correlation spectroscopy using a FPI with long cavity length (>500 µm) as a...
This paper presents near- and mid- infrared (NIR-MIR) wavelength range optical MEMS Fabry-Perot inte...
We developed a micro-gas detector based on a Fabry-Perot (FP) cavity embedded in a microfluidic chan...
VTT has developed a miniaturized mid-IR spectrometer system for gas sensing utilizing a surface micr...
Miniaturized spectrometers covering spectral regions from UV to thermal IR are of interest for sever...
VTT’s optical MEMS Fabry-Perot interferometers (FPIs) are tunable optical filters, which enable mini...
We have developed a simple fiber optic Fabry-Perot interferometer (FPI) sensor that is used to detec...
A set-up for optical gas composition measurement based on absorption spectroscopy is composed of a w...
VTT has developed new MEMS based spectrometer technologies to meet various spectral sensing demands ...
In this work we present an analysis of gas sensors based on correlation spectroscopy with a Fabry-Pe...