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Towards 100 Gbps: A Fully Electronic 90 Gbps One Meter Wireless Link at 230 GHz

机译:迈向100 Gbps:230 GHz的全电子90 Gbps一米无线链路

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In this paper we present a fully-electronic, high spectral efficiency one meter wireless link working at a maximum speed of 90 Gbps. It is based on a RF Tx and Rx front-end chipset working at a tunable carrier of 220-260 GHz. The chipset was manufactured in a SiGe 0.13 μm HBT technology with ft/fmax=350/550 GHz. The Tx delivers a maximum output power of 8.5 dBm and its dc power consumption is 960 mW. The receiver peak conversion gain is 21 dB and its minimum single side band noise figure is 9.5 dB with a power consumption of 1 W. The 6-dB bandwidth measured between the Tx baseband input and the Rx baseband output is 15 GHz. To increase the speed of our previous work of 65 Gbps based on a QPSK modulation scheme, an increase in the spectral efficiency of the link is needed. Applying a back off in the Tx of 4 dB, a link based on a 16-QAM modulation scheme with an spectral efficiency of 2 bits per hertz was achieved. For data-rates of 80 Gbps and below, the EVM achieved was under 11.2%, while for 90 Gbps the measured EVM was 15%.
机译:在本文中,我们提出了一种全电子化,高频谱效率的一米无线链路,其最大速度为90 Gbps。它基于工作在220-260 GHz可调载波上的RF Tx和Rx前端芯片组。该芯片组采用SiGe 0.13μmHBT技术制造,具有f t /F max = 350/550 GHz。 Tx的最大输出功率为8.5 dBm,其直流功耗为960 mW。接收器峰值转换增益为21 dB,其最小单边带噪声系数为9.5 dB,功耗为1W。在Tx基带输入和Rx基带输出之间测得的6 dB带宽为15 GHz。为了提高我们以前基于QPSK调制方案进行的65 Gbps工作的速度,需要提高链路的频谱效率。在4 dB的Tx中应用退避,实现了基于16-QAM调制方案的链路,其频谱效率为每赫兹2位。对于80 Gbps及以下的数据速率,获得的EVM低于11.2%,而对于90 Gbps,测得的EVM为15%。

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