纳米晶材料
材料科学
炸薯条
薄脆饼
光电子学
三维集成电路
晶片键合
集成电路
纳米技术
电气工程
工程类
作者
Ang-Ying Lin,Yu-Min Lin,Chun-Lin Lu,Hsin-Yi Liao,Chen-Chun Yu,Ou-Hsiang Lee,Tsung-Chieh Chiu,Wei-Lan Chiu,Hsiang-Hung Chang,Shou-Zen Chang
标识
DOI:10.1109/vlsitsa60681.2024.10546418
摘要
With the advancement of 3D packaging technology, the demand for low-temperature fine-pitch hybrid bonding has increased drastically. In this research, we developed 250°C low-temperature C2W (chip-to-wafer) nano-crystalline copper hybrid bonding with a chip including 2μm, 3μm, and 5μm different pad sizes. The fine-pitch (4 μm) daisy chain with a maximum of 672,150 bonding nodes was successfully connected, having an interlayer interconnect density of 6.26 × 10 6 cm −2 . The microstructure, electrical, and mechanical properties of Cu-Cu hybrid bonding were evaluated, showing superior reliability following thermal cycling tests. With the alignment accuracy <0.5μm, the maximum bonding strength reached 9.01 MPa. Through EBSD analysis, nano-crystalline copper is beneficial for the development of low-temperature (<250°C) fine-pitch hybrid bonding. By conducting nano-crystalline copper, the present study exhibits a significant step forward in the development of hybrid bonding technology for high-density and low-temperature applications.
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