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Flying and decoupling capacitance optimization for area-constrained on-chip switched-capacitor voltage regulators

机译:用于面积限制片上开关电容电压调节器的飞行和去耦电容优化

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Switched-capacitor voltage regulators (SCVRs) are widely used in on-chip power management, due to high step-down efficiency and feasibility of integration. In this work, we present theoretical analysis and optimization methodology for flying and decoupling capacitance values for area-constrained on-chip SCVRs to achieve the highest system-level power efficiency. The proposed models for efficiency and droop voltage are validated with on-chip 2:1 SCVR implementations in both 65nm and 32nm CMOS, which show high model accuracy. The maximum and average error of the predicted optimal ratio between flying and decoupling capacitance are 5% and 1.7%, respectively.
机译:由于较高的降压效率和集成可行性,开关电容器电压稳压器(SCVR)广泛用于片上电源管理。在这项工作中,我们呈现了用于面积限制片上SCVR的飞行和去耦电容值的理论分析和优化方法,以实现最高的系统级功率效率。提出的效率和下垂电压模型用片上2:1 SCVR实现,在65nm和32nm CMOS中,显示出高模型精度。飞行和去耦电容之间的预测最佳比率的最大和平均误差分别为5%和1.7%。

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