Seung Yoon Lee
Papers
5
Total Citations
26
H-Index
3
About
Seung Yoon Lee is an emerging researcher specializing in millimeter-wave antenna design, on-chip antenna integration, and advanced measurement systems for next-generation wireless communications. His work spans a critical frequency range—from V-band through W-band and beyond—addressing the growing demand for compact, high-performance antenna solutions in 5G and beyond-5G applications. Lee's most notable contributions include the development of a robotic radiation pattern measurement system capable of characterizing antennas across 6–110 GHz using both near-field transformation and far-field techniques, earning 9 citations and representing a significant advance in antenna metrology flexibility. He has also pioneered on-chip miniaturized cavity antenna architectures, demonstrating a V-band coplanar folded slot array with high efficiency and reduced mutual coupling, as well as a W-band planar inverted-F antenna utilizing through-silicon-via technology—both garnering meaningful early citations. Perhaps most distinctively, Lee has begun exploring silicon carbide (SiC) as a substrate for on-chip dielectric resonator antennas, achieving an impressive 91.5% radiation efficiency while enabling operation in extreme temperature environments up to 400°C—a pioneering direction for harsh-environment electronics. With a focused and rapidly growing body of work, Lee represents a promising voice in millimeter-wave and extreme-environment antenna research.
Research Focus
Key Achievements
Top Papers
- 1
- 2
- 3
- 4Towards Harsh Environment Silicon Carbide Based On-Chip Antenna2 citations · 2025
- 5