Hwang Kyungwook, Hwang Junsik, Kim Yongchan, Song Sanghoon, Kong Kiho, Oh Youngtek, Chung Deukseok, Yu Min-Chul, Kim Dongho, Park Joon-Yong, Moon Jinho, Kim Sungi, Kim Tae-Gon, Lee Gyuhyung, Yeom Min Jae, Kim Joosung, Shin Dong-Chul, Kim Dong Kyun, Hong Seog Woo, Kim-Lee Hyun-Joon, Jeong Jaewook, Lee Hojin, Yoo Geonwook
Samsung Advanced Institute of Technology, Suwon, 16678, South Korea.
School of Electronic Engineering, Soongsil University, Seoul, 06938, South Korea.
Adv Mater. 2025 Mar;37(9):e2416015. doi: 10.1002/adma.202416015. Epub 2025 Jan 2.
Recent advances in mass transfer technology are expected to bring next-generation micro light-emitting diodes (µLED) displays into reality, although reliable integration of the active-matrix backplane with the transferred µLEDs remains as a challenge. Here, the µLED display technology is innovated by demonstrating pixel circuit-integrated micro-LEDs (PIMLEDs) and integrating them onto a transparent glass substrate. The PIMLED comprises of low-temperature poly-silicon transistors and GaN µLED. The square-shaped PIMLED is designed to secure a larger process margin but to reduce misalignment in the subsequent bonding process. Its unique four-fold rotational symmetric design together with concentric circular pixel electrodes of the substrate makes their massive transfer compatible with intrinsic randomness of fluidic-based transfer and free from angular misalignment during wafer bonding. The vertically integrated pixels show similar optical and electrical properties regardless of four possible arrangements. It is demonstrated that a 96 × 96 PIMLED display on a transparent glass substrate, which is expected to open a door to novel form-factor free and transparent µLED displays.
尽管有源矩阵背板与转移的微发光二极管(µLED)的可靠集成仍然是一个挑战,但传质技术的最新进展有望使下一代微发光二极管(µLED)显示器成为现实。在此,通过展示像素电路集成微发光二极管(PIMLED)并将其集成到透明玻璃基板上,对µLED显示技术进行了创新。PIMLED由低温多晶硅晶体管和氮化镓µLED组成。方形PIMLED的设计是为了确保更大的工艺裕度,但减少后续键合过程中的对准误差。其独特的四重旋转对称设计与基板的同心圆形像素电极相结合,使得它们的大规模转移与基于流体的转移的固有随机性兼容,并且在晶圆键合过程中没有角度对准误差。无论四种可能的排列如何,垂直集成的像素都显示出相似的光学和电学特性。结果表明,在透明玻璃基板上的96×96 PIMLED显示器有望为新型无外形限制和透明的µLED显示器打开一扇门。