Sub-1mW RF Voltage Controlled Oscillator Design Optimization for IoT

F. Haddad, I. Ghorbel, W. Rahajandraibe, A. Slimane, S. Traiche, R. Touhami
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引用次数: 2

Abstract

This paper presents a sub-1mW radiofrequency voltage controlled oscillator (VCO) design optimization approach. The relation between components and specifications of the LC-VCO is studied, which allows to easily identify its design trade-offs. This approach has been applied to optimize the design of two different topologies of sub-1mW LC-VCOs in 130nm CMOS process suitable for IoT applications. The first VCO is using the current-reused technique and the second one is based on CMOS cross-coupled topology operating in the sub-threshold region. Post-layout simulation results in both circuits show a total power consumption of only $136\mu \mathrm {W}$ and $267\mu \mathrm {W}$ with a phase noise of-114dBc/Hz @lMHz at the operation frequency of 2.4GHz.
物联网Sub-1mW射频压控振荡器设计优化
本文提出了一种sub-1mW射频压控振荡器(VCO)的优化设计方法。研究了LC-VCO的元件和规格之间的关系,从而可以很容易地确定其设计权衡。该方法已应用于优化设计两种不同拓扑的亚1mw lc - vco,适用于物联网应用的130nm CMOS工艺。第一个VCO采用电流复用技术,第二个VCO基于CMOS交叉耦合拓扑,工作在亚阈值区域。两种电路的布局后仿真结果显示,在2.4GHz工作频率下,总功耗仅为$136\mu \mathrm {W}$和$267\mu \mathrm {W}$,相位噪声为114dbc /Hz @lMHz。
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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