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Univ. -Prof. Dr. Norbert Frühauf University of Stuttgart

Replication Data for: Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology, , , , , , , und . Dataset, (2025)Related to: Schellander Y, Winter M, Schamber M, Munkes F, Schalberger P, Kuebler H, et al. Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology. J Soc Inf Display. 2023; 31(5): 363-372. doi: 10.1002/jsid.1202.
Replication Data for: Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology, , , , , , , und . Dataset, (2025)Related to: Schellander Y, Winter M, Schamber M, Munkes F, Schalberger P, Kuebler H, et al. Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology. J Soc Inf Display. 2023; 31(5): 363-372. doi: 10.1002/jsid.1202.Replication Data for: Highly efficient real-time spatially resolved sensing of ultraviolet light, , , , , , , und . Dataset, (2025)Related to: Yannick Schellander, Fabian Munkes, Alexander Trachtmann, Patrick Schalberger, Robert Löw, Harald Kübler, Tilman Pfau, Norbert Fruehauf, "Highly efficient real-time spatially resolved sensing of ultraviolet light," Proc. SPIE 13109, Metamaterials, Metadevices, and Metasystems 2024, 1310906 (2024). doi: 10.1117/12.3028038.Replication Data for: Ultraviolet Photodetectors and their Readout Realization for Future Active-Matrix Sensing, , , , , , , und . Dataset, (2025)Related to: Y. Schellander, M. Schamber, F. Munkes, R. Loew, P. Schalberger, H. Kübler, T. Pfau, and N. Fruehauf, “Ultraviolet photodetectors and their readout realization for future active-matrix sensing”, Proceedings of the International Display Workshops,30 (2023), 151-154. doi: 10.36463/idw.2023.0151.
 

Weitere Publikationen von Autoren mit dem selben Namen

Development of Active Matrix LCD for Use in High Resolution Adaptive Headlights, , , und . SID Display Week 2017, Los Angeles, USA, pages 696-699, (2017)Active Matrix Color-LCD on 75µm Thick Flexible Glass Susbtrates, , , , , , und . IEEE, Journal of Display Technology (JDT), Vol. 8, No. 6, Pages 309-316, (2012)Chapter contribution “Ultra-Thin Glass for Displays, Lighting and Touch Sensors” in Part III, Chapter8 of the book “Flexible Glass: Enabling Thin, Lightweight, and Flexible Electronics” by Sean M. Garner, und . Wiley, 378 pages, August 2017, ISBN: 978-1-118-94636-7, (2017)Organic thin film transistors on back molded plastic foil, , , , , und . IOP Publishing Ltd, Flexible and Printed Electronics, Vol. 3, No. 1, (2018)Hybrid Integration of a Beam-Steering Leaky-Wave Antenna and Power Amplifier MMIC Using UPD Printing in 220 to 325 GHz Range, , , , , , , , , und 6 andere Autor(en). IEEE Open Journal of Antennas and Propagation, (2025)Proof of concept for an optogalvanic gas sensor for NO based on Rydberg excitations, , , , , , , , , und 2 andere Autor(en). Applied Physics Letters, 113 (1): 011113 (2018)Ultraviolet photodetectors and readout based on a-IGZO semiconductor technology, , , , , , , und . Journal of the Society for Information Display, (2023)Ultraprecise Printing of D-Band Interconnects Using Dielectric Ramps, , , , , und . 2024 15th German Microwave Conference (GeMiC), Seite 57-60. (März 2024)Oxide Semiconductor Thin-Film Transistors Using Oxygen Barriers and a Wet-Chemical Back-Channel Etch Step, und . Proceedings of the SID 2014, Paper Number 33.4, (2014)Synthesis of optical thin film filters under boundary conditions, und . Proceedings of SPIE 8429, 84290Z (2012), (2012)