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Additively manufactured multilayer high performance RF passive components on cellulose substrates for internet-of-things electronic circuits

机译:用于物联网电子电路的纤维素基板上的增材制造多层高性能RF无源元件

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This paper demonstrates the feasibility to manufacture high performance radio-frequency passive components on cellulose substrates by exploiting two novel technologies: the vertically integrated inkjet printing and the copper laminate method. Both processes are substrate independent and thus suitable for fabricating circuits on paper as well; moreover, in a future perspective, they can be easily combined together in order to exploit their complementarity. Passive components such as capacitors and inductors, with Qs up to 22, never registered before on cellulose substrates, and Self-Resonant-Frequency (SRF) up to 4 GHz are described. The obtained values of the capacitance and inductance per unit area are 0.8 pF/mm and 43 nH/mm, respectively.
机译:本文展示了通过利用两种新技术在纤维素基材上制造高性能射频无源组件的可行性:垂直集成喷墨印刷和铜层压方法。两种工艺都与基材无关,因此也适用于在纸上制造电路。而且,在未来的前景中,它们可以很容易地组合在一起以利用它们的互补性。描述了Qs高达22的无源元件,例如电容器和电感器,以前从未在纤维素基板上记录过,而自谐振频率(SRF)则高达4 GHz。所获得的每单位面积的电容和电感值分别为0.8 pF / mm和43 nH / mm。

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