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A 24-GHz DCO With High-Amplitude Stabilization and Enhanced Startup Time for Automotive Radar

机译:具有高幅度稳定性和增强的汽车雷达启动时间的24 GHz DCO

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In this paper, the optimized design strategies for the implementation of a CMOS digitally controlled oscillator (DCO) are investigated. Moreover, the boosting mechanism for a DCO with and without negative resistance is considered. The proposed design methodology is based on an in-depth mathematical analysis of the startup condition and amplitude of oscillation. This approach results in an optimized topology for a Colpitts Clapp-DCO (CC-DCO). The improved performance is achieved through the negative resistance boosting mechanism. The negative resistance enhances the startup time and increases amplitude stabilization across a wide tuning range (TR). Moreover, it improves the phase noise (PN) performance while suppresses the amplitude-to-phase conversion. The proposed 24-GHz CMOS enhanced CC-DCO (ECC-DCO) is implemented in 65-nm TSMC CMOS process. It can effectively reduce the startup time by 41%. Also, it boosts and stabilizes the amplitude across a TR of 29%. The amplitude varies by 1.5% across the 22-29-GHz TR. The ECC-DCO consumes 12.8 mW. It shows a PN of -106 dBc/Hz at 1-MHz offset frequency and achieves -185-dBc/Hz figure of merit (FoM) and -194-dBc/Hz FoM for tuning.
机译:本文研究了用于实现CMOS数字控制振荡器(DCO)的优化设计策略。此外,考虑具有和不具有负电阻的DCO的升压机制。所提出的设计方法基于对启动条件和振荡幅度的深入数学分析。这种方法可为Colpitts Clapp-DCO(CC-DCO)提供优化的拓扑。通过负电阻增强机制可实现更高的性能。负电阻会延长启动时间,并在较宽的调谐范围(TR)内增加幅度稳定度。此外,它改善了相位噪声(PN)性能,同时抑制了幅度到相位的转换。拟议的24 GHz CMOS增强型CC-DCO(ECC-DCO)是在65nm TSMC CMOS工艺中实现的。它可以有效地将启动时间减少41%。同样,它可以提高和稳定整个29%的TR上的幅度。在22-29 GHz TR上,幅度变化1.5%。 ECC-DCO消耗12.8 mW。它显示了在1-MHz偏移频率下的PN为-106 dBc / Hz,并且调谐时达到-185-dBc / Hz的品质因数(FoM)和-194-dBc / Hz的FoM。

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