Martin M.
Director Software Excellence, Automotive Smart Power @Infineon Technologies
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WORK HISTORY
Director Software Excellence, Automotive Smart Power @Infineon Technologies
Munich, DE
Leading the transformation to a lean and agile development process that meets the highest standards of quality and safety, including ASPICE and FuSa compliance, continuous homologation, and leveraging AI to drive innovation and efficiency.
EDUCATION
Carl von Ossietzky University of Oldenburg
Physik (Prof. Dr. Joachim Luther)
Hahn-Meitner Institut Berlin
Student Assistant, Abt. Solare Energetik und Materialforschung (Prof. Dr. Helmut Tributsch)
Humboldt-Universität zu Berlin
Research Associate, Walther-Nernst-Institut, AG Halbleiterelektrochemie (Prof. Dr. Peter Janietz)
FernUniversität in Hagen
Business Administration
University of California, Berkeley
Research Associate, Chemical Biodynamics (Prof. Melvin P. Klein, PhD)
Freie Universität Berlin
Diplom, Semiconductor Physics (Prof. Dr. Klaus Möbius)
SKILLS
ABOUT MARTIN M.
Accomplished semiconductor professional with a proven track record in transferring technical innovations into commercial applications and ensuring customer satisfaction- Planning, organizing and controlling near- and farshore software development projects in the area of electric motor control for automotive applications- Leading an expert group to harmonize software development processes across all business units as part of Infineon\'s digital transformation strategy. Ensuring process conformity according to functional safety (ISO26262) and Automotive SPICE. Modeling of the processes with the tool ‘Stages\' from Method Park- Introduced microcontrollers that meet new normative requirements for automotive functional safety. Provided technical consulting and support for key accounts worldwide online and on-site- Expanded the market for TriCore microcontrollers beyond the automotive sector into industrial applications, and providing on-site support to customers- Implemented online monitoring of fab production equipment including development of appropriate methods and procedures to improve yield and throughput. Training of several hundred employees- Developed complex secondary ion mass spectroscopy instrument for ease of use with 300mm wafers in a production environment- Transferred a scientific test method for the surface conductivity of silicon wafers into a clean room suitable measuring instrument for quality control.
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