首页> 外文期刊>IEEE Transactions on Microwave Theory and Techniques >Analysis and Design of a Double-Quadrature CMOS VCO for Subharmonic Mixing at $Ka$-Band
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Analysis and Design of a Double-Quadrature CMOS VCO for Subharmonic Mixing at $Ka$-Band

机译:用于KaKa波段亚谐波混频的双正交CMOS VCO的分析和设计

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摘要

In this paper, we analyze the potentials of a four-phase 14-GHz CMOS voltage-controlled oscillator, tailored to a sub-harmonic receiver, for signal processing at Ka-band. When mild phase accuracies between in-phase and quadrature down-converted signals are required, the four-phase oscillator displays roughly the same phase noise figure-of-merit as quadrature oscillator counterparts. However, the operation at half-frequency leads to an improved performance due to a higher quality factor of the tuning varactors, and because the local oscillator circuitry and signal path run at different frequencies, relaxing coupling issues. A detailed time-variant analysis of phase noise in multiphase oscillators is introduced and validated by both simulations and experiments. Prototypes realized in a 65-nm technology occupy an active area of 0.5 mm2 and show the following performances: a 26% frequency tuning range (from 12.2 to 15.9 GHz), maximum phase error from pi/4 of 2deg, and a phase noise of -110 dBc/Hz at 1 MHz from 14 GHz, while consuming 18 mA from 0.8-V supply.
机译:在本文中,我们分析了为次谐波接收器量身定制的四相14 GHz CMOS压控振荡器的电势,用于在Ka波段进行信号处理。当在同相和正交下变频信号之间需要适度的相位精度时,四相振荡器显示的相位噪声品质因数与正交振荡器相对应。但是,由于调谐变容二极管的品质因数较高,并且由于本机振荡器电路和信号路径以不同的频率运行,因此以半频运行会导致性能提高,从而缓解了耦合问题。引入了详细的时相分析多相振荡器中的相位噪声,并通过仿真和实验进行了验证。用65纳米技术实现的原型占据0.5平方毫米的有效面积,并显示出以下性能:26%的频率调谐范围(从12.2至15.9 GHz),从pi / 4到2deg的最大相位误差以及从200 dpi的相位噪声。从14 GHz在1 MHz时为-110 dBc / Hz,而从0.8V电源消耗18 mA。

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