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Field
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: Strong programming skills in languages such as C++, Python, and, preferably, Julia. Proficiency in hardware design using Verilog and High-Level Synthesis (HLS) for ASIC and FPGA platforms. Demonstrated
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with industrial communication protocols (e.g., CAN, Modbus); and experience with embedded C/C++ programming for implementing control algorithms on DSPs and FPGAs. Ability to lead a team and work
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of the following technology areas: hardware/software co-design, performance optimization with heterogeneous and alternative computing systems (CPU/GPU/NPU/etc.), FPGA design, high-performance computing
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following technology areas: hardware/software co-design, performance optimization with heterogeneous and alternative computing systems (CPU/GPU/NPU/etc.), FPGA design, high-performance computing (HPC
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of the following technology areas: hardware/software co-design, performance optimization with heterogeneous and alternative computing systems (CPU/GPU/NPU/etc.), FPGA design, high-performance computing
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: Strong hands-on experience with SDRs (USRP, RFSoC, or equivalent). FPGA programming experience is a plus. Programming Skills: Strong experience with MATLAB and/or Python; experience with C++ for high
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develop innovative laser medical technology processes and systems in an interdisciplinary team. Your tasks will range from the design and implementation of FPGA-based real-time control systems
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algorithm development A background in cellular and/or wireless communications Familiarity with FPGA programming Experience with Database Design, SQL, NoSQL and/or BigData database Enjoy collaborating and
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receiver using an FPGA platform. 5) reporting on the carried out activities in the form of project deliverables and journal/conference publications. Place of work: The work will be developed at the premises
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parallel processing, FPGA coding and analysis, along with Machine Learning and AI based image analysis. The final aim of the project will be to generate in-situ / live film profile data to coating line