Sanggeun Jeon, Ph.D.
|2006-2008||California Institute of Technology, Pasadena, CA|
|2008-||Electrical Engineering||Korea University, Seoul, South Korea|
Area:Radio and Microwave circuits and Antennas
Jeon, Sanggeun Design and stability analysis techniques for switching-mode nonlinear circuits : power amplifiers and oscillators. Dissertation (Ph.D.), California Institute of Technology (2009).
Mean distance: 16.01 (cluster 6)
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|Choi SH, Lee IJ, Jeon S, et al. (2017) 280-GHz Rectangular Cavity Antenna Integrated in an 80-μm InP Substrate Ieee Antennas and Wireless Propagation Letters. 16: 837-839|
|Lee H, Kim D, Kim D, et al. (2017) A 7.5-GHz uniplanar 180° hybrid coupler on flexible polyimide substrate Journal of Electromagnetic Waves and Applications. 31: 1-9|
|Kim J, Jeon S, Kim M, et al. (2015) H-Band Power Amplifier Integrated Circuits Using 250-nm InP HBT Technology Ieee Transactions On Terahertz Science and Technology. 5: 215-222|
|Kim S, Yun J, Yoon D, et al. (2015) 300 GHz Integrated Heterodyne Receiver and Transmitter With On-Chip Fundamental Local Oscillator and Mixers Ieee Transactions On Terahertz Science and Technology. 5: 92-101|
|Kim Y, Kim S, Lee I, et al. (2015) A 220–320-GHz Vector-Sum Phase Shifter Using Single Gilbert-Cell Structure With Lossy Output Matching Ieee Transactions On Microwave Theory and Techniques. 63: 256-265|
|Park S, Jeon S. (2015) Wideband harmonic-tuned CMOS power amplifier with 19.5 dBm output power and 22.6% PAE over entire X-band Electronics Letters. 51: 703-705|
|Park S, Jeon S. (2015) A full X-band CMOS amplifier with wideband class-E harmonic matching Microwave and Optical Technology Letters. 57: 645-649|
|Yoon S, Lee I, Urteaga M, et al. (2014) A Fully-Integrated 40–222 GHz InP HBT Distributed Amplifier Ieee Microwave and Wireless Components Letters. 24: 460-462|
|Park S, Jeon S. (2013) A 15-40 GHz CMOS true-time delay circuit for UWB multi-antenna systems Ieee Microwave and Wireless Components Letters. 23: 149-151|
|Jeon S, Rutledge DB. (2010) A high-power solid-state RF source driven by a doublydifferential signal Microwave and Optical Technology Letters. 52: 1489-1492|