SMSI 2023 |
B1.2 - Colorimetric Detection of Oxygen in Food Packaging |
L. Engel, K. Schmitt, J. Wöllenstein - University of Freiburg, Freiburg (Germany) |
SMSI 2023 |
B1.3 - CMOS Based Integration Technology for Solid State pH-Measurement |
O. Hild, F. Al-Falahi, C. Beale, C. Kunath, E. Kurth - Fraunhofer IPMS, Dresden (Germany) |
SMSI 2023 |
B1.4 - Development of Simple, Reusable and Sensitive Electrochemical Sensor based on Silver Nanoparticles Modified Gold Screen-Printed Electrode for the Detection of Nitrate in Water |
N. Ben Messaoud, M. dos Santos, R. Queirós, B. Espiña - International Iberian Nanotechnology Laboratory, Braga (Portugal) |
SMSI 2023 |
B3.1 - A universally applicable condition monitoring system for efficiency evaluation of low-voltage motors |
A. Grundmann, T. Reuter, A. Pérez, J. Schmidt - Institut Chemnitzer Maschinen und Anlagenbau e.V., Chemnitz (Germany) |
SMSI 2023 |
B3.2 - Robust Sensor System for Condition Monitoring of Lubricated Rail Vehicle Components |
K. Dubek, N. Dörr, C. Schneidhofer - AC2T research GmbH, Wiener Neustadt (Austria), U. Schmid - Vienna University of Technology, Vienna (Austria) |
SMSI 2023 |
B3.3 - A UHF RFID sensor tag system witch externally connected sensor component |
M. Lenzhofer, J. Kosel, L. Neumaier - Silicon Austria Labs GmbH, Villach (Austria) |
SMSI 2023 |
B3.4 - Energy-Autonomous Wireless Sensor Node for Monitoring of Wind Turbine Blades |
C. Heim, T. Schaechtle, L. Reindl, S. Rupitsch - University of Freiburg, Freiburg (Germany), G. Bruckner, A. Binder - Silicon Austrian Labs, Villach (Austria) |
SMSI 2023 |
B4.1 - Chemiresistive Methane Gas Sensing Properties of Triphenylene-based Metal-organic Frameworks |
S. Navale, I. Fort-Grandas, Y. Mendoza, M. Moreno, P. Pellegrino, A. Romano-Rodriguez, D. Sainz, A. Vidal-Ferran - University of Barcelona, Barcelona (Spain) |
SMSI 2023 |
B4.2 - Multi-Parameter Gas Monitoring System for Natural Gas with Hydrogen |
C. Huber, F. Schraner, S. Schwab - TrueDyne Sensors AG, Reinach BL (Switzerland) |
SMSI 2023 |
B4.3 - Highly Sensitive Hydrogen Sensor Based on ZnO/MWCNTs Nanocomposite Material |
A. Sayunts, M. Aleksanyan, G. Shahkhatuni, G. Shahnazaryan, Z. Simonyan - Center of Semiconductor Devices and Nanotechnologies, Yerevan State University, Yerevan (Armenia) |