利用负电容设计宽调谐范围毫米波压控振荡器

Qiyang Wu, T. Quach, A. Mattamana, S. Elabd, S. Dooley, J. Mccue, P. Orlando, G. Creech, W. Khalil
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引用次数: 18

摘要

介绍了单端和差分拓扑的负电容电路,并对其进行了分析和表征。新颖的数控设计在保持低功耗的同时,扩展了传统数控电路的带宽。为了比较不同设计方案的性能,提出了一个优值(FOM)。采用130 nm CMOS技术,将一种功率和面积高效的数控方案应用于毫米波LC压控振荡器(LC- vco)上进行演示。采用NC电路抵消LC-tank的寄生电容,扩大了VCO的调谐范围;与参考LC-VCO电路相比,调谐范围增加了35%。基于nc的LC-VCO在q波段实现了27%的调谐范围,这是报道的最高调谐范围。实测结果与工作在34.5-45.4 GHz频段的LC-VCO的理论分析结果非常接近。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of Wide Tuning-Range mm-Wave VCOs Using Negative Capacitance
Negative capacitance (NC) circuits of single-ended and differential topologies are presented, analyzed and characterized. The novel NC designs extend the bandwidth of conventional NC circuits while maintaining low power consumption. To compare the performance of the designs, a figure of merit (FOM) is proposed. A power and area efficient NC scheme employing a 130 nm CMOS technology is applied to a mm-wave LC Voltage Controlled Oscillator (LC-VCO) for demonstration. The VCO tuning range is extended by employing the NC circuit to cancel the parasitic capacitance of the LC-tank; resulting in a 35% tuning range increase as compared to the reference LC-VCO circuit. The NC-based LC-VCO achieved a 27% tuning range in the Q-Band, which is the highest reported. Measured results compare closely to the theoretical analysis of the LC-VCO operating from 34.5-45.4 GHz.
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