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to operate as a passive radar, active radar, communication node and spectrum surveillance tool. FPGA development on the system of each of these modes will be an objective in order to deliver novel research
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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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-level layer implementations - extend hardware developments to use near-FPGA DDR and HBM memories - create functional demos using networks of interest (Yolo, Resnets, LLMs, ...) - create proof-of-concept
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include the development and implementation of control algorithms on FPGA platforms, experimental testing using Hardware-in-the-Loop (HIL) setups, data analysis, and preparation of scientific publications
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systems for wireless communication using light and are looking for support in the implementation on FPGAs. Optical wireless communication uses light for the wireless transmission of information
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Future. Discover. Together. We develop innovative systems for wireless communication using light and are looking for support in implementing them on FPGAs. Optical wireless communication uses light
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of Applied Engineering is looking for a full-time (100%) doctoral scholarship holder in the field Biomimetic Echolocation and Autonomous Aerial Robotics with a focus on FPGA-based sensor design and signal
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environment. The successful candidate will be joining the Optoelectronics group led by Prof. Dr. Valerio Pruneri to focus on FPGA development to implement practical protocols oriented toward the space segment
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detectors (both SPADs and SNSPDs). Development of circuits for the treatement of analog signals produced by fast linear optical detectors. Managment of the electornic elements between the FPGA and fast
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connected to the ANR PRC AATLAS project (coordinated by Alexandre Locquet), which provides the FPAA+FPGA platform, hardware ecosystem and energy-benchmarking framework. The thesis will be carried out in