🎓 Ph.D.
Work: National Radio Research Agency (RRA)
Thesis: Reconfigurable MIMO Antennas Using RF Switches Wireless Communication Systems
Graduation Year: Aug. 2012
Work: Samsung Electronics
Thesis: Design of High-Performance CMOS VCO and LNA for Wireless Communication Systems
Graduation Year: Feb. 2014
Work: QingDao University
Thesis: Small, Multi-Band, and MIMO Antennas for Mobile Communication Systems
Graduation Year: Aug. 2014
Work: Samsung Electronics
Thesis: High-Performance CMOS Active Mixers for Wireless Communication Systems
Graduation Year: Aug. 2014
Work: Seoul Metropolitan Rapid Transit Corporation (SMRT)
Thesis: Small Wideband Monopole Antennas for UWB, LTE, GSM, and UMTS Applications
Graduation Year: Feb. 2016
Work: Samsung Electronics
Thesis: Wideband CMOS Low Noise Amplifiers for Wireless Communication Systems
Graduation Year: Aug. 2016
Work: SK Hynix
Thesis: Low-Noise and High-Gain CMOS Mixers Using New Feedback and Current-Bleeding Techniques
Graduation Year: Aug. 2017
Work:
Thesis: Design of Essential Blocks for Wireless and Optical Receivers
Graduation Year: Feb. 2026
🎓 M.S.
Work: SK Hynix
Thesis: Direct Conversion Mixer Using Anti Parallel Diodes for UWB Applications
Graduation Year: Feb. 2005
Work: LG Electronics
Thesis: Design of Ultra-Wideband CMOS Low Noise Amplifier over 3.1 ~ 10.6 GHz
Graduation Year: Feb. 2006
Work: LS Cable&System
Thesis: Design of Sub-harmonic Quadrature Mixer for Ultra Wideband (UWB) Systems
Graduation Year: Feb. 2006
Work: LG Electronics
Thesis: Design of a single-to-differential Double Balanced Mixer for Ultra Wideband (UWB) systems
Graduation Year: Feb. 2006
Work: LG Electronics
Thesis: Design of a Low Noise CMOS Mixer for Ultra Wideband (UWB) Systems
Graduation Year: Feb. 2006
Work: Ph.D. candidate
Thesis: Reconfigurable Antenna of Frequency and Polarization Diversity for PCS and DMB
Graduation Year: Feb. 2006
Work: LG Innotek
Thesis: Microwave Modeling for Multilayered Chip Inductors and Low-Power Impulse Generator for PPM/BPSK/DPSK Ultra-Wideband Systems
Graduation Year: Aug. 2006
Work: Kosan
Thesis: A Design of Frequency-Diversity Reconfigurable Antenna and Eight-Band Monopole Antenna
Graduation Year: Feb. 2007
Work: Samsung Electronics
Thesis: Design of CMOS umpulse generator and high-power millimeter-wave voltage-controlled oscillator
Graduation Year: Feb. 2007
Work: LG Electronics
Thesis: Design of Reconfigurable Antenna for WCDMA/DMB and UWB Antenna
Graduation Year: Feb. 2007
Work: LG Electronics
Thesis: A Reconfigurable Low-Phase-Noise LC-QVCO for PCS/WCDMA and A Fast Hopping Frequency Synthesizer for Ultra-Wideband Systems
Graduation Year: Aug. 2007
Work: Samsung Electronics
Thesis: A High-Gain and Low-Noise Amplifier for Ultra-wideband System
Graduation Year: Feb. 2008
Work: Samsung Electronics
Thesis: A Low-Noise CMOS Mixer Using Switched Biasing Technique and A Single-Side Band Mixer for Ultra-Wideband Systems
Graduation Year: Feb. 2008
Work: LG Electronics
Thesis: Wide-band Baseband Variable Gain Amplifier and Filter and A Reconfigurable Low Noise Amplifier
Graduation Year: Feb. 2008
Work: LG Electronics
Thesis: Reconfigurable Planar Inverted F Antenna (PIFA) designs with a tunnable varactor and a pin diode
Graduation Year: Feb. 2008
Work: Samsung Electronics
Thesis: Wide Tunning Range CMOS Millimeter-Wave VCO Using Resistors-Added MOSFET Varactor
Graduation Year: Feb. 2008
Work: LG Electronics
Thesis: Design of Ultra-Wideband RF CMOS Low Noise Amplifier
Graduation Year: Feb. 2009
Work: Samsung Electronics
Thesis: A Low-Power and Low-Noise CMOS Mixer and A single-side band Mixer for Ultra-Wideband systems
Graduation Year: Feb. 2009
Work: RFHIC
Thesis: A 5.8 GHz Low-Phase-Noise LC-QVCO using Spltting Switched Biasing Technique and A Fast Hopping Frequency Synthezier for Ultra-Wideband Systems
Graduation Year: Aug. 2009
Work: GE Ultra Sound Korea
Thesis: A Reconfiqurable PIFA Using a Pin Diode for Mobile-WiMAX Applications
Graduation Year: Aug. 2009
Work: LG Electronics
Thesis: Modeling of Power Distribution Network In Frequency Domain
Graduation Year: Feb. 2010
Work: Mando
Thesis: A CMOS VCO with Low Current and High-Q Active Inductor
Graduation Year: Feb. 2010
Work: Samsung Electronics
Thesis: A Low-Power, and Low-Noise UWB Mixer Using Bulk-Injection And Switched Biasing Techniques
Graduation Year: Feb. 2010
Work: LG Electronics
Thesis: A Low-Power UWB LNA Utilizing Current-Reused Technique
Graduation Year: Feb. 2010
Work: LG Electronics
Thesis: Reconfigurable Printed Monopole Diversity Antenna with high isolation for MIMO terminal
Graduation Year: Feb. 2010
Work: Hanwha NxMD
Thesis: A High-Gain Low-Noise Ku-Band Mixer Using Switched Biasing, Inverting And Inductor Bridging Techniques
Graduation Year: Feb. 2011
Work: LG Electronics
Thesis: Printed Internal Antenna For Mobile Broadcast And Communication
Graduation Year: Feb. 2011
Work: Eltronix
Thesis: Small Internal Antenna Using Multi- and Wide-band and High-Isolation MIMO Techniques
Graduation Year: Feb. 2011
Work: Samsung Electronics
Thesis: Low-Power CMOS VCOs and a S/X Dual-Band Frequency Synthesizer
Graduation Year: Feb. 2012
Work: LG Electronics
Thesis: Patterned Helical DVB-T Antenna with an Open Stub and a Matching Network
Graduation Year: Feb. 2012
Work: SK Hynix
Thesis: High-Linearity Cascode Amplifier Using Active Local Feedback
Graduation Year: Aug. 2012
Work: Samsung Electronics
Thesis: Optimization of MLCC Arrangement to Reduce Inductance in Power Distribution Network
Graduation Year: Feb. 2014
Work:
Thesis: Analysis and Design of Low Noise Amplifier Using Inverter with Resistive-Feedback Structure over 0.3 to 1.5 GHz
Graduation Year: Feb. 2015
Work: LG Electronics
Thesis: Low-Power VCO Using a Capacitive-Dividing Gm-Boosting Technique
Graduation Year: Feb. 2015
Work: Study abroad
Thesis: Active and Passive Combined Mixer for Low Flicker Noise and No DC-Offset
Graduation Year: Feb. 2015
Work: Infineon Tech.
Thesis: Design of High Dynamic-Range LNA For Low Power Automotive 77 GHz FMCW Radar System
Graduation Year: Feb. 2016
Work: Study abroad
Thesis: Flicker noise improved CMOS Mixer using a feedback current bleeding technique
Graduation Year: Feb. 2016
Work: Viavi Solutions Inc.
Thesis: Small VCO-Gain Variation Adding a Bias-Shifted Inversion-Mode MOS Varactor
Graduation Year: Aug. 2016
Work: Ph.D. candidate
Thesis: Bandwidth Improvement of Dielectric-Stacked SIW H-plane mm-Wave Horn Antenna
Graduation Year: Feb. 2017
Work:
Thesis: mm-Wave VGA-Embedded Current Bleeding Mixer
Graduation Year: Aug. 2018
Work:
Thesis: Low-Power, High-Gain, and Low-Noise Mixer Using Current-Reused Bleeding Amplifier
Graduation Year: Aug. 2018
Work: LG Electronics
Thesis: Linearity-Enhanced Low-Power Wideband Resistive-Feedback Low-Noise Amplifier Using Body-Bias and Self-Bias Technique
Graduation Year: Mar.2019
Work: Silicon Mitus
Thesis: CMOS Mixer Using Current-Reused Bleeding Amplification and CMOS Sub-Sampling PLL Using Low-Power Buffer
Graduation Year: Aug. 2021
Work: IDS Korea
Thesis: Wideband Circularly Polarized Slot Antenna Using a Square-Ring Notch and a Nonuniform Metasurface
Graduation Year: Feb. 2026
Work:
Thesis: Inductorless Low-Power Low-Noise Linearity-Improved Resistive-Feedback Folded Mixer
Graduation Year: Feb. 2026