Institute for NanoSystems Innovation
The Institute for NanoSystems Innovation at Northeastern University is a global hub focused on pioneering semiconductor research, learning, and innovation. It is helping researchers, government and industry strengthen the country’s semiconductor capacity by driving the discovery, pilot manufacturing, and transition of the new NanoSystems technologies.
The purpose of the institute is to:
- Explore advanced technologies developed by an interdisciplinary research team specializing in micro/nano technology, quantum engineering, electronics, sensors, machine learning, artificial intelligence, photonics, terahertz and radio frequency systems, computing, and biotechnology.
- Build new generations of smart devices and systems capable of addressing fundamental technology gaps in several fields including the Internet of Things (IoT), 5G, Quantum Engineering, Digital Agriculture, Robotics and Healthcare.
- Bridge the gap by leveraging our university-wide innovation ecosystem and offering the complete value chain to prototype development and pilot manufacturing with the aim of reducing the time for innovation and technology transition to the private sector.
From electrical engineering to entrepreneurship—the Institute of NanoSystems Innovation is powered by a cross-disciplinary team of innovators and changemakers.
For more information contact:
m.rinaldi@northeastern.edu
MEMS, piezoelectric and acoustic devices for sensing, RF, and semiconductor systems
Micro-electromechanical Systems (MEMS), design and manufacturing of microfabricated sensors and actuators, mechatronics and control systems.
Recent News
Northeastern PhD Student Earns Prestigious IEEE MTT-S Graduate Fellowship
Haoling Li, a PhD candidate in electrical engineering at Northeastern University, has been selected for the Graduate Fellowship from the Microwave Theory and Technology Society (MTT-S) of IEEE—only the second Northeastern student ever to receive the honor, and the first since 2012. His research bridges millimeter-wave communication systems and quantum computing hardware through a unified set of circuit design principles.
Breakthrough in Reprogrammable Wireless Tech
Researchers from Northeastern’s Institute for NanoSystems Innovation (NanoSI) and the Institute for Intelligent Networked Systems have developed a dual-mode, reprogrammable on-chip antenna, published as a feature paper in a special issue of Electronics titled “Monolithic Integration of a Dual-Mode On-Chip Antenna with a Ferroelectric Hafnium Zirconium Oxide Varactor for Reprogrammable Radio-Frequency Front Ends.”