Vishay manufactures one of the world's largest portfolios of discrete semiconductors and passive electronic components that are essential to innovative designs in the automotive, industrial, computing, consumer, telecommunications, military, aerospace, and medical markets. We help the world's most in-demand technologies come to life. Come join us and help us build The DNA of tech. ™
Design and drive the enablement of world-class Quality and Reliability requirements for wide-bandgap (SiC) power product release to the market, that meet both industry standards (JEDEC and AEC) and customer requirements
Establish the industry best-in-class methodology to test and to characterize SiC power semiconductor devices to understand their reliability and failure mechanisms during R&D, Transfer (New Product Introduction or NPI) and High-Volume-Manufacturing (HVM).
Lead and collaborate with R&D, Engineering and Operation in establishing screening and burn-in procedures for SiC power devices to meet product quality requirements, to comply to industry requirement (JEDEC and AEC) and to meet specifics customer requirements (e.g. Lead and contribute to R&D, NPI and HVM quality/reliability projects, presenting results to senior management / external stakeholders (including non-technical staff).
Design the requirements for quality and reliability test equipment, coordinate their development and enable transfer to manufacturing when needed
Collaborate closely with both internal and external stakeholders, including R&D, Engineering, Marketing, and academic collaborators.
A PhD or Masters-level degree in electronics engineering, physics or any other microelectronics-related field
At least 5 years of post-graduation experience in the field of wide-bandgap power semiconductor technology (ideally SiC). Comprehensive, demonstrable background in power semiconductors / semiconductor physics and/or electronics engineering
Experience in reliability testing of SiC MOSFETs and diodes, both at wafer- and package-level; A good understanding of statistical analysis and design of experiments
Knowledge of semiconductor TCAD tools for device simulation, i.e. Background in electronics engineering for system understanding in the field of power electronics.
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