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Analysis and Design of Open-Loop Multiphase Local-Oscillator Generator for Wireless Applications

机译:无线应用中开环多相本振发生器的分析与设计

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Multiphase local-oscillator (LO) generators have been widely adopted in modern wireless communication systems. This paper describes the analysis and design of two open-loop multiphase (quadri and octave) LO generators, which can lead to speed relaxation of the phase-locked loop and voltage-controlled oscillator when compared with conventional frequency-division methods. The mathematical model, sizing considerations, and two design examples targeting mobile-TV applications are presented. The first one is an octave-phase LO generator designed in 90-nm CMOS featuring multiple switchable phase correctors in cascade. It covers the VHF-III and UHF bands with an optimized phase precision within 0.8$^{circ}$ . The second one combines quadri- and octave-phase LO generation to cover the full band of mobile TV from 170 to 1700 MHz. Optimized in 65-nm CMOS, it can be operated in octave-phase mode for image-reject harmonic-reject downconversion or in quadri-phase mode for simple image-reject downconversion. Extensive simulations accounting for process variations show that the achieved phase precisions are within 1.5$^{circ}$ (quadri) and 1$^{circ}$ (octave). The phase-noise performance is comparable with state-of-the-art solutions.
机译:多相本地振荡器(LO)发生器已被现代无线通信系统广泛采用。本文介绍了两个开环多相(正交和倍频)LO发生器的分析和设计,与传统的分频方法相比,它们可导致锁相环和压控振荡器的速度放宽。给出了数学模型,尺寸考虑因素和针对移动电视应用的两个设计示例。第一个是采用90nm CMOS设计的八度相位LO发生器,具有级联的多个可切换相位校正器。它覆盖了VHF-III和UHF频段,具有在0.8 $ ^ {circ} $以内的最佳相位精度。第二个则结合了四相和倍频LO生成,从而覆盖了170至1700 MHz的移动电视的整个频段。它在65 nm CMOS上进行了优化,可以在八度相位模式下运行,以实现图像抑制谐波抑制下变频,或者在四相模式下运行,从而实现简单的图像抑制下变频。广泛的模拟说明了工艺变化,表明所达到的相位精度在1.5 $ ^ circ(quadri)和1 $ ^ circ($八度)之内。相位噪声性能可与最新解决方案相媲美。

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