背板
像素
CMOS芯片
过程(计算)
光电子学
计算机科学
材料科学
计算机硬件
人工智能
操作系统
作者
Xiaoqian Wang,Chenglong Guo,Yi-Jian Zhou,Xueqi Zhu,Zhibing Yan,Yang Li,Tianxi Yang,Jie Sun,Qun Yan
标识
DOI:10.1088/2631-8695/ad8065
摘要
Abstract In this paper, an AlGaInP-based red Micro-LED display measured 17.78 mm (0.7 in), with a resolution of 1920 × 1080, a light-emitting mesa size of 6 μm, a pixel pitch of 8 μm and a pixel density of 3175 PPI was designed and fabricated with a CMOS driver backplane. The metal bump preparation technology of the complementary metal-oxide semiconductor driver backplane was optimized to enhance the bonding yield and create an optimal display effect. Improper sizing of the etched window in the SiO 2 insulation and passivation layer can have a detrimental impact on the metal bump preparation and subsequent bonding process. By optimizing the settings of lithography and dry etching, the appropriate size of the etched aperture in the passivation layer was achieved. The high density, small size, and large aspect ratio of the photoresist openings for the bump fabrication made it challenging to remove the photoresist following the metal evaporation. To successfully remove the photoresist, it is important to carefully choose suitable experimental conditions for the removal. Afterwards, an 8 μm AlGaInP-based red Micro-LED display was effectively integrated with complementary metal-oxide semiconductor using flip-chip bonding technology. This work may be of reference value to those who work on ultrahigh density red Micro-LEDs that is challenging but crucial for future full color micro displays.
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