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Field
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control code, building and commissioning hardware, and running experiments on PEMC's state-of-the-art test facilities. You will work directly alongside researchers and leading industrial partners, including
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will be validated through scaled hardware‑in‑the‑loop (HIL) laboratory experiments. Collaboration within the FME SOLAR consortium is an integral part of the position. Required qualifications Master’s
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with hardware acceleration techniques Familiarity with computational neuroscience tools and libraries Experience with large-scale clinical, omics, or imaging datasets. Interdisciplinary Collaboration
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actuating and sensing, and immersive reality. Hardware Prototyping & Engineering • Develop functional prototypes of interactive devices, including: wearable haptic systems, tactile sensing surfaces, IoT
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robotic systems. Conduct experiments in both simulated and real-world environments, testing AI-driven robotic behavior. Work with hardware platforms, including robotic manipulators and mobile robots
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control protocols for intrinsically protected quantum hardware. About you Applicants should have a PhD in theoretical physics, quantum physics, or a closely related discipline, together with expertise in
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hardware (e.g., DC/DC converters, high-power systems, and electric vehicle applications). Experience with laboratory experimentation, hardware prototyping, system integration, instrumentation, and real-time
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Johns Hopkins Medicine - Laboratory of Human Biomimetics | Saint Petersburg, Florida | United States | 22 days ago
neurobiology. Relevant experience includes: Pumping mechanisms, valves, fluid handling, and perfusion systems Programmable controllers, sensors, actuators, or microcontrollers Hardware–software integration and
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simulation and modelling tools such as MATLAB/Simulink, PLECS, PSCAD, or equivalent software. Hands-on experience in power electronics hardware design, prototyping, laboratory implementation, testing, and
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. The Research Fellow/Senior Research Fellow will develop localization and sensing algorithms, implement them on real hardware platforms, design and conduct measurement campaigns, and build demonstrable prototypes