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Analytical Models of Output Voltages and Power Efficiencies for Multistage Charge Pumps

机译:多级电荷泵的输出电压和功率效率的分析模型

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摘要

Accurate analytical models of the output voltage and the power efficiency of voltage doublers and PMOS charge pumps are derived using dynamic charge transfer waveforms and charge balance methods, respectively. Since the on-resistance of switching devices and the parasitic capacitance can be estimated precisely, the proposed models are more accurate than the other existing models. The model-generated values agree well with simulations and measurements for these two charge pumps using 0.18 μm CMOS technology. The expressions for the output voltages prove that the PMOS charge pump can provide more output current without a significant increase in the sizes of transistors. Finally, the design methodology that is based on these models is developed to determine the transistor sizes, capacitance, and number of stages for the maximum power efficiency.
机译:分别使用动态电荷传输波形和电荷平衡方法得出了输出电压以及倍压器和PMOS电荷泵的功率效率的准确分析模型。由于可以精确估算开关器件的导通电阻和寄生电容,因此所提出的模型比其他现有模型更为精确。模型生成的值与使用0.18μmCMOS技术的这两个电荷泵的仿真和测量结果非常吻合。输出电压的表达式证明,PMOS电荷泵可以提供更多的输出电流,而不会显着增加晶体管的尺寸。最后,开发了基于这些模型的设计方法,以确定晶体管的尺寸,电容和级数以实现最大功率效率。

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