Millimeter-Wave & Sub-Terahertz Integrated Circuits
Mixed-signal and analog/RF CMOS circuits, transceiver building blocks, and accurate device characterization from millimeter-wave to sub-terahertz frequencies.
From accurate device models to complete wireless links, our research joins circuit design, measurement, algorithms, and system-level thinking.
Mixed-signal and analog/RF CMOS circuits, transceiver building blocks, and accurate device characterization from millimeter-wave to sub-terahertz frequencies.
Ultra-high-data-rate millimeter-wave and sub-terahertz transceivers and system architectures for energy- and spectrum-efficient beyond-5G and 6G links.
Resource-efficient sensing, embedded intelligence, and hardware/software co-design for always-on IoT and Edge-AI applications.
Machine-learning methods for fast, accurate modeling of active and passive semiconductor devices when measurement data are limited.
Our questions begin with physical limits and end with experimentally grounded systems. Characterization, calibration, and de-embedding are not afterthoughts—they shape the architecture from day one.