A novel nanoionics-based switch for microwave applications

J. Nessel, R. Lee, C. Mueller, M. Kozicki, Minghan Ren, J. Morse
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引用次数: 26

Abstract

This paper reports the development and characterization of a novel switching device for use in microwave systems. The device utilizes a switching mechanism based on nanoionics, in which mobile ions within a solid electrolyte undergo an electrochemical process to form and remove a conductive metallic “bridge” to define the change of state. The nanoionics-based switch has demonstrated an insertion loss of ∼0.5dB, isolation of ≫0dB, low voltage operation (1V), low power (∼¼W) and low energy (∼nJ) consumption, and excellent linearity up to 6 GHz. The switch requires fewer bias operations (due to non-volatile nature) and has a simple planar geometry allowing for novel device structures and easy integration into microwave power distribution circuits.
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一种用于微波应用的新型纳米离子开关
本文报道了一种用于微波系统的新型开关器件的研制和特性。该装置利用基于纳米离子的开关机制,其中固体电解质中的移动离子经过电化学过程形成和移除导电金属“桥”来定义状态的变化。基于纳米离子的开关具有插入损耗为~ 0.5dB,隔离度为~ 0dB,低电压工作(1V),低功率(~¼W)和低能量(~ nJ)消耗,以及高达6 GHz的优秀线性度。该开关需要较少的偏置操作(由于非易失性),并且具有简单的平面几何结构,允许新颖的器件结构和易于集成到微波功率分配电路中。
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