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locomotion systems. The ideal candidate is required to have the following expertise: Mastery of all the design and validation procedures for CMOS integrated circuits. (Biomedical (preferred), analog, RF
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the design and validation procedures for CMOS integrated circuits. (Biomedical (preferred), analog, RF, digital and/or power management circuits) In addition, the candidate with the experience
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technical experience in: The development of end-to-end applications (e.g. databases, algorithms, visualizations). Processing one or more data types/signals (e.g. text, audio, images, physiology). Applying
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of laparoscopic and endoscopic tools used in minimally invasive surgical technologies. One of the biggest challenges in laparoscopic surgery is the lost sense of touch, as well as the limited dexterity and
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, statistical signal processing, optimization theory, machine learning and artificial intelligence. The candidate is expected to actively participate in experimental work focused on building datasets of channel
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experience in physiological signal processing (e.g., EMG, EEG, ECG) is an advantage. Familiarity with HCI principles and frameworks, in particular, experience conducting usability studies and designing user
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-assisted MIMO communication systems using tools from information theory, statistical signal processing, optimization theory, machine learning and artificial intelligence. The candidate is expected
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areas like healthcare, education, neuro-robotics, and/or assistive technologies. Prior experience in physiological signal processing (e.g., EMG, EEG, ECG) is an advantage. Familiarity with HCI principles
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, telecommunications or related field. Other requirements include Strong background in communication theory, signal processing, and wireless communications, Extensive experience in physical (PHY) layer algorithm design
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Strong background in communication theory, signal processing, and wireless communications, Extensive experience in physical (PHY) layer algorithm design and performance analysis, Proven track record