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A switched-capacitor DC-DC converter using delta-sigma digital pulse frequency modulation control method

机译:使用delta-sigma数字脉冲频率调制控制方法的开关电容器DC-DC转换器

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This paper presents a switched capacitor (SC) DC-DC converter using digital control method based on delta-sigma pulse frequency modulation (PFM) to accomplish a fast transient recovery time when output load changes rapidly. The DC-DC converter utilizes the first-order error feedback delta-sigma algorithm to control the switching frequency of the digitally controlled oscillator (DCO) using thermometer code. The load voltage of the SC DC-DC converter is regulated by the switching frequency of the DCO output based on the error between the load voltage and the reference voltage. The digital control method has two operation modes for fast transient recovery time; course and fine tuning modes to change the DCO's switching frequencies fast and accurately. The proposed converter accomplishes 72% power conversion efficiency, settling time of less than 460ns, and maximum deliverable output power of 230mW. The estimated total power consumption of the control loop is less than 0.82mW at 1.6V operation voltage.
机译:本文提出了一种基于Δ-Σ脉冲频率调制(PFM)的数字控制方法的开关电容器(SC)DC-DC转换器,可在输出负载快速变化时实现快速的瞬态恢复时间。 DC-DC转换器利用一阶误差反馈delta-sigma算法使用温度计代码控制数字控制振荡器(DCO)的开关频率。 SC DC-DC转换器的负载电压基于负载电压和参考电压之间的误差,由DCO输出的开关频率调节。数字控制方法具有两种操作模式,可实现快速的瞬态恢复时间。航向和微调模式,可快速准确地更改DCO的开关频率。拟议的转换器可实现72%的功率转换效率,不到460ns的建立时间以及230mW的最大可输出输出功率。在1.6V工作电压下,控制环路的估计总功耗小于0.82mW。

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