Testbed for phased array communications from 275 to 325 GHz

T. Merkle, A. Tessmann, M. Kuri, S. Wagner, A. Leuther, S. Rey, M. Zink, H. Stulz, M. Riessle, I. Kallfass, T. Kürner
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引用次数: 29

Abstract

The first modular 4-channel frontend for exploring phased array communications at a carrier frequency of 300 GHz was developed. A metamorphic HEMT process with a gate length of 35 nm was the key enabling technology for the integration of each transmit and receive channel. All channels implemented the quadrature direct conversion architecture. The measured RF bandwidth exceeded 55 GHz for the receive array respectively 45 GHz for the transmit array using a continuous wave baseband test signal. Phase shifting in the local oscillator path was the focus of this work. The concept was realized by using four synchronized direct digital synthesis channels followed by a high power frequency multiplier-by-12 MMIC. Investigating and assessing the array coherency at 300 GHz by the use of higher order modulation schemes was also proposed, highlighted on the example of a 16-QAM signal at 4 Gbaud in comparison to phase noise measurements of each channel.
275至325 GHz相控阵通信测试平台
开发了第一个用于探索载波频率为300 GHz的相控阵通信的模块化4通道前端。栅极长度为35 nm的变质HEMT工艺是实现收发通道集成的关键使能技术。所有通道均采用正交直接转换架构。采用连续波基带测试信号,接收阵列测得的射频带宽超过55 GHz,发射阵列测得的射频带宽超过45 GHz。本振路径中的相移是本工作的重点。这个概念是通过使用四个同步的直接数字合成通道,然后是一个高功率的12倍频MMIC来实现的。还提出了使用高阶调制方案研究和评估300ghz下阵列的相干性,重点介绍了4gbaud下16 qam信号的示例,并与每个通道的相位噪声测量结果进行了比较。
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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