A3.2 - Design, modeling and identification of an ultrasonic composite transducer for target impedance independent short pulse generation
F. Bause, J. Rautenberg, B. Henning, in: LibreCat University, 2013.
Download
No fulltext has been uploaded.
Conference Paper
| English
Author
Bause, F. ;
Rautenberg, J. ;
Henning, BerndLibreCat
Department
Publishing Year
Conference
16. Internationaler Kongress für Sensoren und Messtechnik
Conference Location
Nürnberg
Conference Date
14.05.2013 – 16.05.2013
LibreCat-ID
Cite this
Bause F, Rautenberg J, Henning B. A3.2 - Design, modeling and identification of an ultrasonic composite transducer for target impedance independent short pulse generation. In: LibreCat University; 2013. doi:10.5162/SENSOR2013/A3.2
Bause, F., Rautenberg, J., & Henning, B. (2013). A3.2 - Design, modeling and identification of an ultrasonic composite transducer for target impedance independent short pulse generation. Presented at the 16. Internationaler Kongress für Sensoren und Messtechnik, Nürnberg: LibreCat University. https://doi.org/10.5162/SENSOR2013/A3.2
@inproceedings{Bause_Rautenberg_Henning_2013, title={A3.2 - Design, modeling and identification of an ultrasonic composite transducer for target impedance independent short pulse generation}, DOI={10.5162/SENSOR2013/A3.2}, publisher={LibreCat University}, author={Bause, F. and Rautenberg, J. and Henning, Bernd}, year={2013} }
Bause, F. , J. Rautenberg, and Bernd Henning. “A3.2 - Design, Modeling and Identification of an Ultrasonic Composite Transducer for Target Impedance Independent Short Pulse Generation.” LibreCat University, 2013. https://doi.org/10.5162/SENSOR2013/A3.2.
F. Bause, J. Rautenberg, and B. Henning, “A3.2 - Design, modeling and identification of an ultrasonic composite transducer for target impedance independent short pulse generation,” presented at the 16. Internationaler Kongress für Sensoren und Messtechnik, Nürnberg, 2013.
Bause, F., et al. A3.2 - Design, Modeling and Identification of an Ultrasonic Composite Transducer for Target Impedance Independent Short Pulse Generation. LibreCat University, 2013, doi:10.5162/SENSOR2013/A3.2.