Highly conductive metal interconnects on three-dimensional objects fabricated with omnidirectional ink jet printing technology
Yasunori Yoshida, H. Wada, Konami Izumi, Shizuo Tokito
- 发表年份
- 2017
- 引用次数
- 18
- 访问权限
- 开放获取
摘要
In this work, we demonstrate that highly conductive metal interconnects can be fabricated on the surface of three-dimensional objects using "omnidirectional ink jet" (OIJ) printing technology. OIJ printing technology makes it possible to perform ink jet printing in all directions by combining the motion of a 6-axis vertically articulated robot with precise positioning and a thermal drying process, which allows for the printing of stacked layers. By using OIJ technology, we were the first to successfully fabricate printed interconnect layers having a very low electrical resistance of 12 mΩ over a 10 mm length. Moreover, the results of the high-current test demonstrated that the printed interconnects can withstand high-current-flow of 5 A for 30 min or more.
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