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Field
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Focusing on biomedical systems, medical robotics, imaging, bio-MEMS, and nanomedicine, this field is committed to developing advanced biomedical devices, systems, and solutions for the benefit of
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and photonics Neuromorphic computing, artificial intelligence and machine learning Quantum and 2D materials technologies & systems Micro and nanoelectromechanical systems (MEMS/NEMS) Electromagnetics
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/wireless/wireline systems, imagers, MEMS, medical/display circuits, power management, 2.5D/3D integrated circuits, and secure computing designs. Successful applicants will be expected to develop
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and photonics Neuromorphic computing, artificial intelligence and machine learning Quantum and 2D materials technologies & systems Micro and nanoelectromechanical systems (MEMS/NEMS) Electromagnetics
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of experience with comprehensive expertise in microelectronics and microsystems technology. Our broad range of technologies extends from advanced semiconductor processes and MEMS technologies to innovative 3D
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. · Advanced Materials, Nanoelectronics, and Emerging Devices – 2D materials, spintronics, MEMS/NEMS, and flexible electronics. The successful candidate will have the opportunity to build upon existing
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/GaN HEMTs, vertical GaN MOSFETs and diodes, as well as GaN-based MEMS, sensors and microelectronic devices, and the development and adaptation of processes for the reliable production of these. Be part
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, Electromagnetics/Antennas, Integrated Circuits, Optics, Physical Electronics Devices, Physical Electronics/MEMS, Optoelectronics, Energy, Robotics, Signal Processing for Image & Video, Signal Processing for Speech
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, salt water, sebum, sweat, saliva, cosmetics) for mass spectrometry detection. Research may also include development of microfluidic and MEMs electrophoretic, chromatographic, or other modality
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, Micro-electromechanical systems (MEMS) for sensing, energy harvesting, and robots Artificial Intelligence ICs Galvanic isolation Advanced packaging, 3D packaging, design and modeling of passive components