교육연구단 소개

교육연구단 소개

  • 교육연구단 소개
  • 참여교수
목록

이승우 교수(Seung Woo Lee)

  • 담당과목 AR/VR 산업특강, 웨어러블 시스템
  • 전화번호 02-961-0957
  • 이메일 seungwoolee@khu.ac.kr
  • 홈페이지 displaylab.khu.ac.kr
학력

• 2000.2. KAIST 전기및전자공학과 반도체 전공 (박사)

• 1995.2. KAIST 전기및전자공학과 반도체 전공 (석사)

• 1993.2. KAIST 전기및전자공학과 (학사)

경력

• 2006 - 현재: 경희대학교 이과대학 정보디스플레이학과 교수

• 2000 - 2006: 삼성전자 LCD 총괄 개발실 책임연구원

• 2010 - 현재: IEEE Senior Member

• 2010 - 현재: SID Senior Member

대표연구실적

• “Peripheral Dimming: A New Low-Power Technology for OLED Display Based on Gaze Tracking,” IEEE Access, 2020

• “A Low-Power Memory-in-Pixel Circuit for Liquid Crystal Displays Comprising Low-Temperature Poly-Silicon and Oxide Thin-Film Transistors.” Electronics, 2020

• “Multi-Level Memory Comprising Low-Temperature Poly-Silicon and Oxide TFTs,” IEEE Electron Device Letters, 2020

• “Lightness prediction of mirror display by amending CIECAM02 to include specular reflection,” Optics Express, 2020

• “Study on how to improve visibility of transparent display for augmented reality under various environment conditions,” Optics Express, 2020

• “Fault-Tolerant Architecture for Reliable Integrated Gate Drivers,” IEEE JOURNAL OF THE ELECTRON DEVICES SOCIETY, 2019

• “A Memory-in-Pixel Circuit for Low-Power Liquid Crystal Displays with Low Temperature Poly-Silicon and Oxide Thin Film Transistors,” IEEE Electron Device Letters, 2019

• “Multi-level memory comprising only amorphous oxide thin film transistors,” IEEE JOURNAL OF THE ELECTRON DEVICES SOCIETY, 2019

• “Automatic Fault Detection Circuit for Integrated Gate Drivers of Active-Matrix Displays,” IEEE JOURNAL OF THE ELECTRON DEVICES SOCIETY, 2019

• “Amendment of CIECAM02 with a technical extension to compensate Helmholtz-Kohlrausch effect for chromatic characterization of display devices,” Displays, 2019

• “Unified Overdrive Technology Applicable to Liquid-Crystal Displays and Organic Light-Emitting Diode Displays Utilizing Linearity of Transitions in Voltage Domain,” IEEE TRANSACTIONS ON ELECTRON DEVICES, 2018

• “Auto-brightness control technology depending on user’s pupil area,” IEICE ELECTRONICS EXPRESS, 2018

• “Optimum display luminance depends on white luminance under various ambient illuminance conditions,” OPTICAL ENGINEERING, 2018

• “Time-dependent color simulation of active-matrix liquid crystal display adopting the field sequential driving method,” Displays, 2018

• “Psychophysical research on switching between light emitting and reflecting modes of light adaptable display considering equal visibility,” Displays, 2017

• “Memory-in-Pixel Circuit for Low-Power Liquid Crystal Displays Comprising Oxide Thin-Film Transistors,” IEEE ELECTRON DEVICE LETTERS, 2017

• “Line-time optimization technology for ultra-large and high-resolution liquid crystal displays,” Journal of the Society for Information Display, 2017

• “Optimum display luminance dependence on ambient Illuminance,” Optical Engineering, 2017

• “Temperature-Dependent Behavioral Model of Active-Matrix Liquid Crystal Displays for All Types of Liquid Crystals,” IEEE JOURNAL OF DISPLAY TECHNOLOGY, 2016

• “Effect of Ocular Dominance on Touch Position,” IEEE JOURNAL OF DISPLAY TECHNOLOGY, 2016

• “A Simple Overdrive Technology Using Behavioral Circuit Model for Liquid Crystal Displays,” IEEE TRANSACTIONS ON ELECTRON DEVICES, 2016