3D printed millimeter wave receiver integrating a graphene subharmonic mixer and a diagonal horn antenna

A. Hadarig, S. Ver Hoeye, C. Vázquez, R. Camblor, Miguel Fernández, G. Hotopan, L. Alonso, F. Las-Heras
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引用次数: 2

Abstract

This work presents a millimeter/submillimeter wave frequency receiver integrating a graphene subharmonic mixer and a diagonal horn antenna. The device receives the RF signal through the diagonal horn antenna directly connected to the WR-3 input of the mixer. The desired frequency mixing performance is obtained using the non-linear behavior of a few-layer graphene film placed on a microstrip line gap. Using the internally generated 6th, 8th and 10th harmonic components of the input signal provided by the WR-28 standard waveguide in the 26-40 GHz the downconversion operation of the RF signal to a 300 MHz intermediate frequency is performed. A prototype of the receiver has been manufactured using high precision 3D printing technology. The performance of this device is characterized taking into account the behavior of the IF power in the 220-330 GHz band. Measured radiation patterns are also included.
集成石墨烯次谐波混频器和对角喇叭天线的3D打印毫米波接收器
这项工作提出了一种集成了石墨烯次谐波混频器和对角喇叭天线的毫米波/亚毫米波频率接收器。设备通过直接连接到混频器WR-3输入端的对角喇叭天线接收射频信号。利用放置在微带线隙上的几层石墨烯薄膜的非线性特性,获得了所需的混频性能。利用WR-28标准波导提供的输入信号内部产生的26-40 GHz的第6、8和10次谐波分量,将射频信号下变频到300 MHz中频。该接收器的原型已经使用高精度3D打印技术制造出来。该器件的性能考虑了220-330 GHz频段中频功率的特性。测量的辐射模式也包括在内。
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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