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用于柔性电力电子器件的丝网印刷无源元件。

Screen printed passive components for flexible power electronics.

作者信息

Ostfeld Aminy E, Deckman Igal, Gaikwad Abhinav M, Lochner Claire M, Arias Ana C

机构信息

Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, California 94720, USA.

出版信息

Sci Rep. 2015 Oct 30;5:15959. doi: 10.1038/srep15959.

Abstract

Additive and low-temperature printing processes enable the integration of diverse electronic devices, both power-supplying and power-consuming, on flexible substrates at low cost. Production of a complete electronic system from these devices, however, often requires power electronics to convert between the various operating voltages of the devices. Passive components-inductors, capacitors, and resistors-perform functions such as filtering, short-term energy storage, and voltage measurement, which are vital in power electronics and many other applications. In this paper, we present screen-printed inductors, capacitors, resistors and an RLC circuit on flexible plastic substrates, and report on the design process for minimization of inductor series resistance that enables their use in power electronics. Printed inductors and resistors are then incorporated into a step-up voltage regulator circuit. Organic light-emitting diodes and a flexible lithium ion battery are fabricated and the voltage regulator is used to power the diodes from the battery, demonstrating the potential of printed passive components to replace conventional surface-mount components in a DC-DC converter application.

摘要

添加剂和低温印刷工艺能够以低成本在柔性基板上集成各种电子设备,包括供电设备和耗电设备。然而,用这些设备生产完整的电子系统通常需要电力电子器件在设备的各种工作电压之间进行转换。无源元件——电感器、电容器和电阻器——执行诸如滤波、短期能量存储和电压测量等功能,这些功能在电力电子和许多其他应用中至关重要。在本文中,我们展示了在柔性塑料基板上丝网印刷的电感器、电容器、电阻器和一个RLC电路,并报告了使电感器串联电阻最小化的设计过程,这使得它们能够用于电力电子领域。然后将印刷电感器和电阻器集成到一个升压稳压电路中。制作了有机发光二极管和柔性锂离子电池,并使用该稳压电路从电池为二极管供电,展示了印刷无源元件在DC-DC转换器应用中替代传统表面贴装元件的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ea7c/4626765/f0ac10e81c2e/srep15959-f1.jpg

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