Groupe pédagogique - MASTER-HYBELEC

Hybrid Electronics

Modifier

Crédits ECTS

60.0

Responsable:

  • DJENIZIAN Thierry
  • Description générale :

    Description:

    • This one-year Master program delivers a double diploma (co-accredited with Aix-Marseille University).
    • Lectures are fully taught in English at "Master 2" level and is opened to international recruitment.
    • The program involves intervention of world-renowned foreign Professors and Research Scientists in the field of nanotechnology and materials science.
    • Solid knowledge and basics in chemistry and materials science are required.
    • Classes take place on the campus « G. Charpak Provence » of the Scool of Mines-Saint Etienne and on the campus de l'Etoile of Aix-Marseille University.

    Structure:

    • First semester: the courses are designed to provide an education program extending from the fabrication of nanomaterials to the design of communicating autonomous systems for modern microelectronics (Internet of Things, wearable technologies, biomedical devices, etc...). These systems incorporate sensors, optoelectronics, energy systems, signal processing as well as their wireless transmission. A specific focus on bioelectronics, a rapidly emerging discipline aiming at interfacing the human body with “classical electronics” is also addressed.
    • Second semester: master thesis internship (4 to 6 months) in Universities or in R&D center of leading French or international companies.

    Scientific domains:

    • Design and conception of flexible/ stretchable electronic devices
    • Sensors
    • Optoelectronics
    • Energy storage and conversion at the micrometer scale
    • Organic electronics (transistors, OLEDs,...)
    • Bioelectronics

    Job opportunities:

    • Graduate students who followed this interdisciplinary education program may apply for academic or industrial position as engineer or researcher in wearable technologies.

    Cohérence entre les unités pédagogiques du groupe pédagogique:

    Fundamental and applied aspects of modern electronics for Internet of Things, electronic textiles, bioelectronics devices, plastronics, smart interfaces (smart tags, touchpad RF...), Bio-robotic (e-skin), etc.

    Parcours et cohérence avec les autres groupes pédagogiques:

    Mots-clés:

    Hybrid microelectronic components Flexible/stretchable electronics Organic electronics Organic optoelectronics micropower sources Sensors