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Mode-Selectable High-Efficiency Low-Quiescent-Current Synchronous Buck DC–DC Converter

机译:模式选择高效低静态电流同步降压DC-DC转换器

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In this paper, a mode-selectable synchronous buck DC–DC converter with high efficiency and low quiescent current is proposed, which is suitable particularly for use as an Li-ion battery charger. The high efficiency is obtained by applying dynamic power management technology under light load, which makes some modules of the chip enter into sleep state and the quiescent current of the whole chip down to 45 $ muhbox{A}$. At the same time, power metal–oxide semiconductor (MOS) devices are also shut down to decrease the dissipation of the system. A simple loop compensation method is also proposed, which can eliminate the influence brought by the high equivalent resistance of the output's capacitor on the stability of the system loop. The converter has been made with a 0.5-$muhbox{m}$ complementary MOS process. Experimental results show that the peak efficiency is 94% at an output current of 100 mA when the supply voltage is 2.7 V. Moreover, the output voltage can recover within 14 $muhbox{s}$ at 400-mA load step.
机译:本文提出了一种模式选择的同步降压型DC-DC转换器,该转换器具有高效率和低静态电流,特别适合用作锂离子电池充电器。通过在轻负载下应用动态电源管理技术来获得高效率,这使得芯片的某些模块进入睡眠状态,并且整个芯片的静态电流降至45 $ muhbox {A} $。同时,功率金属氧化物半导体(MOS)器件也被关闭以减少系统的功耗。还提出了一种简单的环路补偿方法,该方法可以消除输出电容器的高等效电阻对系统环路稳定性的影响。该转换器采用0.5-muhbox {m} $互补MOS工艺制成。实验结果表明,当电源电压为2.7 V时,在100 mA的输出电流下,峰值效率为94%。此外,在400 mA负载阶跃下,输出电压可在14μh内恢复。

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