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systems, including hands-on experience with Arduino and Raspberry Pi, sensor integration, sensor networks, PCB design, soldering, circuit assembly, and hardware troubleshooting. Proven capacity to work in a
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Interaction, Information Systems, Information Technology, Intelligent Systems Engineering, Network Engineering and Security, and Software Engineering. Find out more about SoC at https://www.cdm.depaul.edu
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be world-class leaders in areas at the crossroads of Next Generation Electronics, Circuits, Architectures and Design Automation for Artificial Intelligence (AI) and applications. The department intends
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group members working on diverse topics ranging from clean room fabrication of semiconductor devices, to PCB and Integrated Circuit design, to real-time AI system development. We are seeking candidates
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. Contribute to ongoing projects, such as: AI-based modeling of cortical circuit structure and function from single-cell transcriptomic data. o AI-based super-resolution of low-field MR images in developing
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disorders. We will test the hypothesis that experience results in structural modifications to cells that alter neural circuit connectivity patterns that in turn modify behaviour. The brain is made up
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Intelligent Transceivers: Heterogeneous integration of radio frequency circuits and digital processing microchips (S3.5-ELE-Henthorn) School of Electrical and Electronic Engineering PhD Research
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, and validate the hardware necessary for the three-phase energy metering modules.; • Develop the Printed Circuit Boards (PCB), assemble components, and perform bench and integration tests.; • Contribute
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digital circuits, embedded systems, and digital systems design. We also welcome applicants whose work spans other areas, such as control systems, power electronics, integrated circuit design, semiconductors
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Vaimann, Department of Electrical Power Engineering and Mechatronics: Electrical Machines Research Group Summary The main objective of this research project is to develop an integrated diagnostic system