Research

We work across the full hardware stack.

From accurate device models to complete wireless links, our research joins circuit design, measurement, algorithms, and system-level thinking.

01

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.

02

Energy-Efficient 6G Wireless Systems

Ultra-high-data-rate millimeter-wave and sub-terahertz transceivers and system architectures for energy- and spectrum-efficient beyond-5G and 6G links.

03

Sensors, Edge AI & IoT Systems

Resource-efficient sensing, embedded intelligence, and hardware/software co-design for always-on IoT and Edge-AI applications.

04

AI-Assisted Semiconductor Device Modeling

Machine-learning methods for fast, accurate modeling of active and passive semiconductor devices when measurement data are limited.

A measurement-driven approach.

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.