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The demonstrator introduces an EDA toolset developed by a team of PhD students in the H2020-MSCA-ITN RESCUE project. The recent trends for the nanoelectronic computing systems include machine-to-machine communication in the era of Internet-of-Things (IoT), complex safety-critical applications, extreme miniaturization of implementation technologies and intensive interaction with the physical world. These trends set tough requirements on mutually dependent extra-functional design aspects. RESCUE is focused on the key challenges for reliability (functional safety, fault management mechanisms, BTI ageing, soft errors), security (tamper-resistance, PUF technology, intelligent security) and quality (novel fault models in FinFET, functional test, FMEA/FMECA, verification and debug techniques) and related EDA methodologies. The objective of the interdisciplinary cross-sectoral team is to develop in collaboration a holistic EDA Toolset for modelling, assessment and enhancement of these extra-functional design aspects.
reliability, security, verification, test, fault tolerance, EDA tools, nanoelectronic systems design, H2020 MSCA ITN
reliability, security, verification, test, fault tolerance, EDA tools, nanoelectronic systems design, H2020 MSCA ITN
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