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Field
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. The project is an emerging research area developing continuous, in vivo fluorescence-based sensors for real-time molecular monitoring. The position requires an investigator capable of carrying
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PhD Position Wireless Communications and Non-Terrestrial Networks 40 | Delft | €3059 - €3881 Join TU Delft to help shape the future of wireless communication systems. Our research spans 6G, satellite
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• Design, prototype, and test microfluidic devices, electrochemical sensors, and portable diagnostic systems. • Support fabrication processes including micro/nanofabrication, surface
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absorption assessment via FDTD using EM field data Detection and localization algorithms of dynamic users using wireless signal parameters and sensor fusion Generation of Digital Twin city model that is able
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3D integration and flexible electronics. These nano and microtechnologies form the foundation of our diverse fields of expertise, which include sensor technology, circuit design, system solutions with
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not essential: Programming using Python, MATLAB, C/C++, or ROS (Robot Operating System) Mobile robotics or autonomous systems Wireless communication and positioning systems IoT devices and sensor
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tracking circuits Build embedded data acquisition systems for real-time capture and wireless transmission of sensor signals from wearable fabric prototypes using ultra-low-power BLE or NFC protocols
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sensing information, and radar-related sensing data. These inputs will be studied within a unified sensor/data fusion framework, with emphasis on how distributed sensing sources can be combined to enhance
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Design), Green/Medical Electronics, Sensor Electronics, THz/Quantum Circuits, Si Photonics, Hardware Security/Dependable and Trusted Hardware Architecture •Computer Science and Engineering, Embedded
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absorption assessment via FDTD using EM field data Detection and localization algorithms of dynamic users using wireless signal parameters and sensor fusion Generation of Digital Twin city model that is able