Full-printed inductors on flexible plastic foils for electromagnetic energy harvesting Fabrication, characterization, modeling

E. Benevent, E. Bergeret, M. Egels, P. Pannier, A. Aliane, A. Daami, R. Coppard
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引用次数: 2

Abstract

The fabrication, characterization and modeling of fully-printed inductors on flexible plastic foils are presented. An appropriate equivalent circuit is proposed to model the frequency behavior of a screen-printed spiral inductor on PEN (polyethylene naphthalate) substrate. A cascade open-short-thru de-embedding method for microwave on-wafer characterization is applied. The paper is focused on high-value inductors and the results are compared from 40 MHz to 10 GHz. Five turns inductors present a 90 nH and 105 nH inductances with a self-resonance frequency equal to 1.3 GHz. These inductances are sufficient to be used for electromagnetic energy harvesting in UHF (ultra-high frequency) RFID (radio-frequency identification) passive tags if their quality factors are improved.
电磁能量采集用柔性塑料薄膜全印刷电感器制造、表征、建模
介绍了柔性塑料薄膜上全印刷电感器的制作、表征和建模方法。提出了一种合适的等效电路来模拟在聚萘二甲酸乙二醇酯(聚萘二甲酸乙二醇酯)衬底上丝网印刷螺旋电感的频率特性。提出了一种用于微波片上表征的级联开短通脱包方法。本文重点研究了高值电感,并对40 MHz和10 GHz的结果进行了比较。五匝电感分别产生90 nH和105 nH的电感,自谐振频率为1.3 GHz。这些电感足够用于UHF(超高频)RFID(射频识别)无源标签的电磁能量收集,如果它们的质量因素得到改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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