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Friedrich-Alexander-Universität Chair of Electron Devices
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Friedrich-Alexander-Universität Chair of Electron Devices
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  • About Us
  • Research
    • Silicon Semiconductor Technology
      • Realisierung von Koppelkondensatoren für Betriebsspannungen über 1200V durch Integration von Parallelwiderständen
      • Hybrid polymer based Bragg grating sensors – Fundamental investigations and application
      • A Synergetic Training Network on Energy beam Processing: from Modelling to Industrial Applications
      • Atomic layer deposition of dopant source layers for semiconductor doping – Characterization and modelling of drive-in processes
    • Wide-Bandgap Devices
      • Untersuchungen zur Leistungsdichte und Effizienz eines isolierenden DC/DC-Wandlers in GaN-Technologie
      • Dynamic Characterization of Molded Devices and Fundamental Investigations on Reliability
      • Charge compensation in 4H silicon carbide – Simulation, modelling and experimental verification
      • SiC-BIFET: Untersuchungen zu bipolaren SiC-Feldeffekttransistoren für das Mittelspannungsnetz
      • Development of semiconductor sensors based on silicon carbide
      • Kristallzüchtung von Nitrid-Einkristallen mit hoher Reinheit
    • Anorganische Dünnschichtelektronik
      • GRK 1161: Disperse systems for electronic applications – subproject electron devices in a nano-crystalline matrix
      • Liquid-phase processing of silicon thin films and electron devices based on polysilane precursors
      • Thin-Film Transistors with Novel Architecture for RF Circuits and Systems
      • Engineering of Nanoelectronic Materials – B6 (Druckbare Elektronik)
      • Local leakage currents in nanoparticulate films
    • Quantum Technologies
    • Other Projects
      • Herstellung und Charakterisierung von Heterostrukturen aus 2D Materialien
      • Entwicklung eines PDMS-basierten Mikrofluidiksystems
      • Erforschung der Oberflächenpräparation und der Rückgewinnung von Aluminiumnitrid-Substraten
      • Growth and stability of anisotropic nanoparticles in liquids
      • Leistungszentrum Elektroniksysteme (LZE), Teilprojekt 1: “Impedanzmessplatz für DC/DC-Wandler”
      • Leistungszentrum Elektroniksysteme (LZE), Teilprojekt 2: “Robuste Gestaltung induktiver Energieüberträger für bewegte Anwendungen”
      • Printable soft magnetic polymers for power electronics
      • Stability Under Process Variability for Advanced Interconnects and Devices Beyond 7 nm node
      • LightWave: High Performance Computing of Optical Wave
      • Intelligentes Leistungsmodul
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  • Clean Room Laboratory
  • µe-bauhaus erlangen-nürnberg
    • At a Glance
    • µe-bauhaus erlangen-nürnberg manifesto
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  2. µe-bauhaus erlangen-nürnberg
  3. At a Glance
  4. Education and Training

Education and Training

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  • At a Glance
    • Idea and Disruption
    • Values, Responsibility and Ethos
    • Education and Training
    • In the Workshop
    • Marketplace of Ideas
    • To think outside the box
  • µe-bauhaus erlangen-nürnberg manifesto
  • Background

Education and Training

Ansprechpartner

Jörg Schulze

Prof. Dr.-Ing. habil. Jörg Schulze

Department of Electrical-Electronic-Communication Engineering
Chair of Electron Devices

Room: Room 1.122
Cauerstr. 6
91058 Erlangen
  • Phone number: +49 9131 85-28634
  • Email: joerg.schulze@fau.de
  • Website: https://www.leb.tf.fau.de/

Education and Training – The interaction and unity of science and rigerous theoretical study

Our offer is aimed at (technical) high school graduates who are at the beginning of their academic education, graduates with a subject-related bachelor’s or master’s degree from our university or other universities and (dual) colleges for more in-depth master’s studies or doctoral studies and, if applicable, post-doctoral studies.

The professional degrees qualify graduates to take up professional activities in the (semiconductor) industry, in industrial research and development and in research, development and teaching at universities and research institutions.

“Study – Workshop – Research & Development”

The triad on which teaching and training at µe-bauhaus erlangen-nürnberg rests

From the first semester on, this means a rigorous theoretical study of natural sciences and technology with the possibility of deepening and specializing in all topics of modern microelectronics. This rigorous theoretical study is closely intertwined with the “workshop” of µe-bauhaus erlangen-nürnberg, where the intensive practical training of our students takes place and where what has been studied is directly transferred into practical application.

The three pillars of the workshop training at µe-bauhaus erlangen-nürnberg are the basic practical training, which is obligatory for all our students, the voluntary, in-depth practical training within the framework of the research and development projects of the Chair of Electronic Devices (LEB) or the Fraunhofer Institute for Integrated Systems and Device Technology IISB, and the individual practical training within the framework of the “Marketplace of Ideas” (further information under: “In the Workshop” and “Marketplace of Ideas”).

Teaching and training at µe-bauhaus erlangen-nürnberg is characterized by close cooperation between students and teachers in a spirit of partnership.

Since disruptive research and development also requires knowledge of the world in its many facets, constant interdisciplinary exchange with our national and international partners from industry, science, research and development is indispensable. This, of course, also benefits the education of our students through coordinated exchange and joint study programs (for more information, see: “To thing outside the box”)

We pay special attention to our students who transfer to us from another university or (dual) university. Here we offer advice for individual planning, which studies, if any, still need to be caught up on or deepened in order to enable a quick, smooth start at µe-bauhaus erlangen-nürnberg and successful advanced studies.

Chair of Electron Devices
FAU Erlangen-Nürnberg

Cauerstr. 6
91058 Erlangen
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