采用短毫米波CMOS技术的低功耗超高速无线通信

M. Fujishima
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引用次数: 0

摘要

近年来,人们对60ghz频段的短距离高速无线通信进行了研究。为了实现更高速度的无线通信,同时保持低功耗,移动应用程序D频段(110-170 GHz)有望提供更宽的频段。因此,我们研究了d波段CMOS电路来实现低功耗超高速无线通信。而在D频段,由于没有提供足够的器件模型,研究一般只能从器件建模开始。本文演示了一种功耗为98 mW的10gbps无线收发器,该收发器使用135 GHz频段,并对该架构进行了优化,以实现低功耗和高数据传输速率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Low-power ultrahigh-speed wireless communication with short-millimeter-wave CMOS technology
Recently, short-distance high-speed wireless communication using a 60 GHz band has been studied for mobile application. To realize higher-speed wireless communication while maintaining low power consumption for mobile application D band (110-170 GHz) is promising since it can potentially provide a wider frequency band. Thus, we have studied D-band CMOS circuits to realize low-power ultrahigh-speed wireless communication. In the D band, however, since no sufficient device model is provided, research generally has to start from device modeling. In this paper, a 10 Gbps wireless transceiver with a power consumption of 98 mW is demonstrated using the 135 GHz band, where the architecture is optimized to realize both low power and high data transfer rate.
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