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    Microelectronics research at Kaiserslautern University of Applied Sciences

    Infrastructure

    Environment

    The virtual technology lab

    Microsystems technology at the Zweibrücken campus: Clean room

    Microsystems technology at the Zweibrücken campus: Analysis & Characterization

    Life Sciences at the Zweibrücken Campus: Biomedicine and Molecular Biology

    Materials / Mechatronics / Energy at the Kaiserslautern Campus: Overview

    Research focus Integrated Miniaturized Systems (IMS)

    • Chip technology
    • Bio-sensor technology
    • Micro-nano integration

    Research focus Highly Efficient Technical Systems (HTS)

    • Sustainability / Energy / Climate
    • Health / Care
    • Mobility

    (Selected) Projects

    • skills4chips: Nationwide flagship project for skilled workers in microelectronics
    • MUNASET: Multiparametric nanoelectronic biosensors for testing therapeutic response
    • OriDarmi: Complex three-dimensional biomimetic sensor and organoid networks for collecting functional data on the intestinal barrier
    • KoMBio: Hyperthermia systems made of superparamagnetic functional materials for contactless heating in medical technology and biotechnology
    • AKTIO: Active control of implant surfaces
    • MiNaMag: Micro- and nanostructured hard magnetic materials and components for microtechnical applications
    • EmKiPro2: Embodiment through AI-supported proprioception in prostheses
    • SAE-TTA: Sulfuric Acid Electrification: Tests and Technological Applications
    • MiPro-Life: Mission profile lifetime assessment for thermally aged wide bandgap power transistors
    • BatCAT: Battery Cell Assembly Twin

    Teaching

    Additional information:

    Research at our university is characterized by the close integration of technical expertise. The focus is on “Integrated Miniaturized Systems,” which combines sensor technology, actuator technology, data processing, and microsystems technology to create compact, intelligent solutions. This is complemented by the focus on “Highly Efficient Technical Systems,” which develops resource-saving technologies, powerful drives, and innovative manufacturing processes. Our particular strength lies in the interdisciplinary connection between both areas: This results in sustainable, application-oriented innovations for future fields such as medical technology, mobility, and industrial automation.