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will develop an advanced emulation framework, potentially FPGA-accelerated, for self-aware neuromorphic system-on-chip (SoC) architectures, enabling fast and accurate exploration of emerging hardware and
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technologies and software simulation tools. Knowledge of FPGA programming. He/she must be familiar with optical and electronic laboratory measurement equipment, optical fiber system and components, semiconductor
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criteria Experience with side-channel analysis and/or fault-injection techniques. Hands-on experience with embedded systems, microcontrollers, FPGAs, or hardware-security platforms. Knowledge
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major challenge due to the limitations of conventional software simulation and existing device-level emulation platforms. This PhD project will develop an advanced emulation framework, potentially FPGA
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with side-channel analysis and/or fault-injection techniques. Hands-on experience with embedded systems, microcontrollers, FPGAs, or hardware-security platforms. Knowledge of cryptographic