超低功耗负载无关型LC压控振荡器的实现

D. Martynenko, G. Fischer, O. Klymenko
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引用次数: 5

摘要

本文研究了外部负载对常用交叉耦合LC压控振荡器结构关键参数的影响。结果表明,即使是高欧姆的外部负载也会降低谐振器的阻抗,限制频率调谐范围,降低相位噪声,增加结构的功耗。此外,在已有分析的基础上,实现了一种与负载无关的新型LC压控振荡器结构,并对其进行了表征。在所提出的VCO拓扑结构中,通过在公共集电极配置中连接VCO输出,谐振器与外部负载隔离。从而实现了在1.8电压下功耗为540 μW的振荡器。测量到VCO的频率调谐范围在6.30 GHz ~ 8.59 GHz之间,在整个调谐范围内,频率偏移1 MHz处的相位噪声优于-100 dBc/MHz。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Implementation of the ultra-low power load-independent LC VCO
In this paper the influence of the external load on the key parameters of the commonly used cross-coupled LC VCO architecture is investigated. It is shown, that even high ohmic external load decreases the impedance of the resonator, limits the frequency tuning range, degraded the phase noise and increases the power dissipation of the structure. Additionally, based on the carried out analyses, the novel load-independent LC VCO architecture is implemented and characterized. In the presented VCO topology, the resonator is isolated from the external load, by connecting the VCO outputs in the common collector configuration. As a result, the oscillator with the power consumption of 540 μW from the 1.8 supply voltage is achieved. The measured frequency tuning range of the VCO lies between 6.30 GHz and 8.59 GHz and the phase noise is better than -100 dBc/MHz at the frequency offset of 1 MHz within entire tuning range.
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