Dipl.-Ing. Dr. Samir Cerimovic

Center for Micro and Nano Sensors

Projects (Extract Research Database)

Publications (Extract Research Database)

Cerimovic, S.; Sauter, T.; Treytl, A.; Stachl, R.; Binder, J.; Basic, P.; Mehofer, F.; Schober, E.; Rinsche, S. (2020). Measuring Temperature Distributions along Heat Exchanger Pipes in Petrochemical Processes. In: IEEE, Proceedings of 25th IEEE International Conference on Emerging Technologies and Factory Automation (ETFA 2020): 1347-1350, IEEE, Wien

Wenig, F.; Seidl, C.; Derler, B.; Rixrath, D.; Heschl, C.; Treytl, A.; Cerimovic, S.; Glatzl, T.; Kovacs, G.; Sauter, T.; Krammer, L.; Diwold, K.; Lechner, D. (2020). Optimierung der Gebäudeenergieeffizienz durch modellbasierte Energiestromanalyse mit non-invasiver Sensorik. Endbericht Projekt Optimas

Cerimovic, S.; Treytl, A.; Glatzl, T.; Beigelbeck, R.; Keplinger, F.; Sauter, T. (2019). Development and Characterization of Thermal Flow Sensors for Non-Invasive Measurements in HVAC Systems. Sensors 2019, Vol. 19(6): doi: 10.3390/s1906139

Glatzl, T.; Beigelbeck, R.; Cerimovic, S.; Steiner, H.; Wenig, F.; Sauter, T.; Treytl, A.; Keplinger, F. (2019). A Thermal Flow Sensor based on Printed Circuit Technology in Constant Temperature Mode for Various Fluids. Sensors, Vol. 19, no. 5: 1065

Talic, A.; Cerimovic, S.; Beigelbeck, R.; Kohl, F.; Sauter, T.; Keplinger, F. (2019). FEM-Analysis of 2D Micromachined Flow Transduers based on aGe-Thermistor Arrays and a Double Bridge Readout. Sensors 2019, Vol. 19, iss. 16: 3561

Glatzl, T.; Beigelbeck, R.; Cerimovic, S.; Steiner, H.; Treytl, A. (2018). Finite Element Method Simulation and Characterization of a Thermal Flow Sensor Based on Printed Circuit Board Technology for Various Fluids. mdpi proceedings, Vol. 2: 833

Cerimovic, S.; Treytl, A.; Glatzl, G.; Beigelbeck, R.; Keplinger, F.; Sauter, T. (2018). Thermal Flow Sensor for Non-Invasive Measurements in HVAC Systems. Eurosensors, Proceedings 2018, 2(13): 827, Eurosensors 2018, Graz

Antlinger, H.; Beigelbeck, R.; Clara, S.; Voglhuber-Brunnmaier, T.; Cerimovic, S.; Keplinger, F.; Jakoby, B. (2017). Bulk Viscosity Sensing. AMA Service GmbH, Proceedings Sensor 2017: 611-615, Wunstorf

Glatzl, T.; Cerimovic, S.; Treytl, A. (2017). Thermal Flow Sensor Based on Printed Circuit Board Technology for Aqueous Media. Yurish, S.S., Proceedings of the 3rd International Conference on Sensors and Electronic Instrumentation Advances: 232-236, IFSA Publishing

Krammer, L.; Diwold, K.; Lechner, D.; Treytl, A.; Cerimovic, S.; Derler, B.; Seidl, C.; Wenig, F. (2017). Large-scale Energy Optimization of Buildings based on non-invasive Sensors. Department Energie-Umweltmanagement, FH Burgenland, Science.Research.Pannonia, Band 21, Zukunft der Gebäude: 99-108, leykamverlag

Antlinger, H.; Beigelbeck, R.; Clara, S.; Cerimovic, S.; Keplinger, F.; Jakoby, B. (2016). Investigation and Modeling of an Acoustoelectric Sensor Setup for the Determination of the Longitudinal Viscosity. IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control, 63(12): 2187-2196

Antlinger, H.; Clara, S.; Beigelbeck, R.; Cerimovic, S.; Keplinger, F.; Jakoby, B. (2016). A Differential Pressure Wave-Based Sensor Setup for the Acoustic Viscosity of Liquids. IEEE Sensors Journal, 16(21): 7609-7619

Antlinger, H.; Clara, S.; Voglhuber-Brunnmaier, T.; Jakoby, B.; Beigelbeck, R.; Cerimovic, S.; Keplinger, F. (2016). A Diffraction Free Pressure Wave Sensor Setup for the Acoustic Viscosity of Liquids. Proceedings of the 15th IEEE Conference on Sensors: 1-3

Beigelbeck, R.; Cerimovic, S.; Reyes-Romero, D.; Kohl, F.; Voglhuber-Brunnmaier, T.; Jakoby, B.; Sauter, T.; Urban, G. (2016). Thermal Properties of a Thin-Film Membrane Embedded in a Multiparameter Wind Sensor. IEEE Sensors Journal, 16(10): 3409-3418

Sauter, T.; Cerimovic, S.; Glatzl, T.; Steiner, H.; Talic, A.; Kohl, F. (2016). Using PCB technology for calorimetric water flow sensing in HVAC systems. IEEE, Proceedings of the 25th International Symposium on Industrial Electronics ISIE 2016: 662-667, IEEE

Sauter, T.; Cerimovic, S.; Steiner, H.; Glatzl, T.; Schlauf, M.; Kohl, F. (2016). Characterization of a Thermopile-based Calorimetric Flow Sensor. IEEE, Proceedings of IEEE Sensors 2016, Industrial Electronics Society, 4: 2681-2684, IEEE

Sauter, T.; Glatzl, T.; Cerimivic, S.; Kohl, F.; Steiner, H.; Talic, A. (2016). PCB-integrated Flow Sensors – How Good is State of the Art Technology? IEEE, Proceedings of the IEEE International Instrumentation and Measurement Technology Conference: 1-5, IEEE

Steiner, H.; Cerimovic, S.; Glatzl, T.; Kohl, F.; Schlauf, M.; Schallhammer, T.; Keplinger, F.; Sauter, T. (2016). Flexible Flow Sensors for Air Conditioning Systems Based on Printed Thermopiles. Elsevier, Procedia Engineering, Proceedings of the 30th anniversary Eurosensors Conference – Eurosensors 2016, 168: 830-833

Glatzl, T.; Cerimovic, S.; Steiner, H.; Talic, A.; Beigelbeck, R.; Jachimowicz, A.; Sauter, T.; Keplinger, F. (2016). Hot-film and Calorimetric Thermal Air Flow Sensors Realized with Printed Board Technology. Journal of Sensors and Sensor Systems, 5(2): 283-291, Copernicus Publications, Nürnberg, Deutschland

Beigelbeck R.; Cerimovic S.; Reyes D.; Kohl F.; Voglhuber-Brunnmaier T. ; Jakoby B.; Sauter T.; Urban G. (2015). Thermal Properties of a Thin-Film Membrane Embedded in a Multiparameter Wind Sensor-On-Device Characterization Utilizing a Transient Measurement Approach . IEEE Sensors Journal, Vol. 1, No. 12: 10

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Lectures (Extract Research Database)

Measuring Temperature Distributions along Heat Exchanger Pipes in Petrochemical Processes

25th IEEE International Conference on Emerging Technologies and Factory Automation (ETFA 2020), 10/09/2020

Thermal Flow Sensor for Non-Invasive Measurements in HVAC Systems

Eurosensors 2018 Conference, Graz, Austria, 10/09/2018

Thermal flow sensor for non-invasive measurements in HVAC systems

Eurosensors 2018 Conference, Graz, Austria, 9–12 September 2018, 10/09/2018

Large-scale Energy Optimization of Buildings based on non-invasive Sensors

Konferenz e-nova 2017 in Pinkafeld, 24/11/2017

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