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Fully inkjet-printed microwave passive electronics

机译:完全喷墨印刷的微波无源电子设备

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摘要

Fully inkjet-printed three-dimensional (3D) objects with integrated metal provide exciting possibilities for on-demand fabrication of radio frequency electronics such as inductors, capacitors, and filters. To date, there have been several reports of printed radio frequency components metallized via the use of plating solutions, sputtering, and low-conductivity pastes. These metallization techniques require rather complex fabrication, and do not provide an easily integrated or versatile process. This work utilizes a novel silver ink cured with a low-cost infrared lamp at only 80 °C, and achieves a high conductivity of 1×107 S m−1. By inkjet printing the infrared-cured silver together with a commercial 3D inkjet ultraviolet-cured acrylic dielectric, a multilayer process is demonstrated. By using a smoothing technique, both the conductive ink and dielectric provide surface roughness values of <500 nm. A radio frequency inductor and capacitor exhibit state-of-the-art quality factors of 8 and 20, respectively, and match well with electromagnetic simulations. These components are implemented in a lumped element radio frequency filter with an impressive insertion loss of 0.8 dB at 1 GHz, proving the utility of the process for sensitive radio frequency applications.
机译:带有集成金属的全喷墨打印三维(3D)对象为按需制造射频电子设备(如电感器,电容器和滤波器)提供了令人兴奋的可能性。迄今为止,已有几篇报道了通过使用电镀液,溅射和低电导率糊剂使印刷射频组件金属化的报道。这些金属化技术需要相当复杂的制造,并且不提供容易集成或通用的工艺。这项工作利用一种新型的银油墨,该银油墨用一种低成本的红外线灯在80°C下固化,并实现了1×10 7 S m -1 的高电导率。通过将红外固化的银与市售的3D喷墨的紫外线固化的丙烯酸电介质一起喷墨印刷,说明了多层工艺。通过使用平滑技术,导电油墨和电介质都可提供<500 nm的表面粗糙度值。射频电感器和电容器的最先进品质因数分别为8和20,并与电磁仿真非常匹配。这些组件在集总元件射频滤波器中实现,在1 GHz处插入损耗高达0.8 dB,这证明该方法可用于敏感的射频应用。

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