AbstractCommonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of ceramics, e.g. based on Low Temperature Cofired Ceramics (LTCC) technology could also be used for this purpose. This technology is well established and enables a creation of 3D structures with channels and cavities that can be formed inside a LTCC micromodule. The work describes manufacturing of the microsystem containing a gas preconcentration chamber and sensor substrates with improved thermal properties, all fabricated in LTCC technology
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
Low temperature co-fired ceramic (LTCC) technology has attracted remarkable attention in fabrication...
The miniaturization of analytical systems for different applications is currently a very active fiel...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
AbstractCommonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other ...
Nowadays low temperature co-fired ceramics (further on: LTCC) are used in sensor technology as senso...
AbstractThe target of this work is the demonstration of advanced approaches able to provide rapid pr...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
Low Temperature Co-fired Ceramic (LTCC) Technology is recentlyaddressed to be a key approach among a...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
Low temperature co-fired ceramic (LTCC) technology has attracted remarkable attention in fabrication...
The miniaturization of analytical systems for different applications is currently a very active fiel...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
Commonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other types of...
AbstractCommonly used substrates for resistance-type oxide sensors are mainly alumina plates. Other ...
Nowadays low temperature co-fired ceramics (further on: LTCC) are used in sensor technology as senso...
AbstractThe target of this work is the demonstration of advanced approaches able to provide rapid pr...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
Low Temperature Co-fired Ceramic (LTCC) Technology is recentlyaddressed to be a key approach among a...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
The miniaturization of analytical instruments and packaging of novel sensors is an area that has att...
Low temperature co-fired ceramic (LTCC) technology has attracted remarkable attention in fabrication...
The miniaturization of analytical systems for different applications is currently a very active fiel...