이정협
Lee, JunghyupDepartment of Electrical Engineering and Computer Science
학력
- 2005 ~ 2011한국과학기술원 박사
- 2003 ~ 2005한국과학기술원 석사
- 2000 ~ 2003경북대학교 학사
경력
- 2016 ~ Current대구경북과학기술원 / 조교수
- 2011 ~ 2016싱가폴 A*STAR, Institute of Microelectronics / Scientist
수상실적
- 2019 공로상 / DGIST
- 2018 분과우수논문상 / 한국반도체학술대회
- 2018 우수발표논문상 / 대한전자공학회
- 2018 Best Design Award / ACM/IEEE Asia and South Pacific Design Automation Conference
- 2016 RF/Analog Circuit Workshop 우수논문상 / 대한전자공학회
연구실 소개
- Integrated Nano-Systems Laboratory
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Research Interest: 1. Advanced Communication Techniques for Future Wireless Networks(5G technologies, V2X and M2M communication) 2. Security Techniques for Emerging Networks(CPS and IoT security)
Related Keyword
- "Transparent Temperature Sensors for Photothermal Neuromodulation: Advances, Challenges, and Future Directions", Lee, Jee Woong. (2025-07). Transparent Temperature Sensors for Photothermal Neuromodulation: Advances, Challenges, and Future Directions. Advanced Materials Interfaces, 12(13). doi: 10.1002/admi.202400873
- "Hexagonal metal complex based mechanically robust transparent ultrathin gold μECoG for electro-optical neural interfaces", npj Flexible Electronics, v.9, no.1
- "Wireless System Miniaturization Solutions for Ingestible Sensors", Kim, Chanyoung. (2024-12). Wireless System Miniaturization Solutions for Ingestible Sensors. Journal of Semiconductor Technology and Science, 24(6), 518–531. doi: 10.5573/JSTS.2024.24.6.518
- "A PVT-Insensitive Sub-Ranging Current Reference Achieving 11.4-ppm° C From-20° C to 125 ° C", IEEE Journal of Solid-State Circuits, v.59, no.12, pp.4057 - 4067
- "Flexible multi-electrode neural probe using active-matrix design of transistor array", Chae, Ji Won. (2024-07). Flexible multi-electrode neural probe using active-matrix design of transistor array. Sensors and Actuators A: Physical, 372. doi: 10.1016/j.sna.2024.115373
- "A 65nm 687.5-TOPS/W Drive Strength-based SRAM Compute-In-Memory Macro with Adaptive Dynamic Range for Edge AI applications", Choi, Dong-Gu. (2024-11-19). A 65nm 687.5-TOPS/W Drive Strength-based SRAM Compute-In-Memory Macro with Adaptive Dynamic Range for Edge AI applications. IEEE Asian Solid-State Circuits Conference. doi: 10.1109/A-SSCC60305.2024.10848920
- "A 97dB-PSRR 178.4dB-FOMDR Calibration-Free VCO−ΔΣ ADC Using a PVT-Insensitive Frequency-Locked Differential Regulation Scheme for Multi-Channel ExG Acquisition", Lee, Sehwan. (2024-06-18). A 97dB-PSRR 178.4dB-FOMDR Calibration-Free VCO−ΔΣ ADC Using a PVT-Insensitive Frequency-Locked Differential Regulation Scheme for Multi-Channel ExG Acquisition. 2024 IEEE Symposium on VLSI Technology and Circuits, VLSI Technology and Circuits 2024. doi: 10.1109/VLSITechnologyandCir46783.2024.10631536
- "A 3.3-To-11V-Supply-Range 10μW/Ch Arbitrary-Waveform-Capable Neural Stimulator with Output-Adaptive-Self-Bias and Supply-Tracking Schemes in 0.18μm Standard CMOS", Wie, Jeongyoon. (2024-04-24). A 3.3-To-11V-Supply-Range 10μW/Ch Arbitrary-Waveform-Capable Neural Stimulator with Output-Adaptive-Self-Bias and Supply-Tracking Schemes in 0.18μm Standard CMOS. 44th Annual IEEE Custom Integrated Circuits Conference, CICC 2024, 1–2. doi: 10.1109/CICC60959.2024.10529100
- "A Hybrid Recording System with 10kHz-BW 630mVPP84.6dB-SNDR 173.3dB-FOMSNDRand 5kHz-BW 114dB-DR for Simultaneous ExG and Biocurrent Acquisition", Seol, Taeryoung. (2024-02-21). A Hybrid Recording System with 10kHz-BW 630mVPP84.6dB-SNDR 173.3dB-FOMSNDRand 5kHz-BW 114dB-DR for Simultaneous ExG and Biocurrent Acquisition. International Solid-State Circuits Conference, 562–564. doi: 10.1109/ISSCC49657.2024.10454270
- "3.1 A PVT-Insensitive Sub-Ranging Current Reference Achieving 11.4ppm/°C from -20°C to 125°C", Park, Pangi. (2024-02-19). 3.1 A PVT-Insensitive Sub-Ranging Current Reference Achieving 11.4ppm/°C from -20°C to 125°C. International Solid-State Circuits Conference, 54–56. doi: 10.1109/ISSCC49657.2024.10454371
연구 뉴스
연구분야
미래유망 신기술(6T)
