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topics. Candidates should have some experience working with FPGAs as well as an understanding of computer networks. Experience with both RTL and HLS design is favoured. The ideal candidate would have some
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integration of novel computer architectures for advanced edge computing scenarios. The research involves design space exploration and the implementation of digital systems using FPGAs, with potential for future
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Model. In parallel, the group is engaged in hardware activities related to the development and implementation of new FPGA-based trigger processors, both for the operation of the ATLAS muon spectrometer
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-outs. Experience with FPGA-based or other real-time digital transceiver platforms. For the position in optical clocks and precision metrology: Experience with optical frequency-comb stabilization, self
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transmitter or receiver devices. Experience participating in multi-project-wafer tape-outs. Experience with FPGA-based or other real-time digital transceiver platforms. For the position in optical clocks and
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3rd, 2026 Closing Date for Applications: August 23rd, 2026, 23h00m (Lisbon Time) Key words: #photonics #optics #setupdevelopment #nanofabrication #nanophotonics #quantumphotonics #FPGA Overview
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, knowledge of electronics, Python and FPGA (VHDL) programming, interest in working with experts on a cross-institute collaboration project, very good written and spoken English language skills, and excellent
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the implementation of the system's data plane, applying embedded design principles to high-performance networking: SmartNIC & FPGA Programming: Implement real-time flow steering logic on devices like
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. Experience with heterogeneous and parallel computing technologies, programming models, or accelerators, including CPUs, GPUs, FPGAs, and emerging computing technologies. Familiarity with quantum software
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networks, RNNs, LLMs) or in the deployment of such algorithms. Experience with specialized computational architectures such as GPUs, FPGAs, neuromorphic processors, or machine learning accelerators