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首页> 外文期刊>Journal of Low Power Electronics >Design and Implementation of an Area and Power Efficient Switched-Capacitor Based Embedded DC-DC Converter
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Design and Implementation of an Area and Power Efficient Switched-Capacitor Based Embedded DC-DC Converter

机译:基于面积和功率高效开关电容器的嵌入式DC-DC转换器的设计与实现

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摘要

In this paper, we propose an embedded switched capacitor based DC-DC converter with high power efficiency and high power density. The converter consists of an array of cross-coupled elements rotationally controlled with non-overlapped interleaved signals. The cross-coupled switched capacitor helps to reduce switching losses. The clock signals help to eliminate shoot through current and reduce ripple. The other contribution is that the converter is integrated with frequency regulation loop, thus adjusting the switching losses according to load and improving the efficiency over a wide range of load current. Further, with the incorporation of the dynamic leaker, the response of the converter is improved under fast transients. The converter is designed in 0.18 μm CMOS technology. The output voltage is adjustable in the range of 1.3 v-1.6 v from the input voltage of 3.3 v. The silicon characterization of the converter gave the measured data consistent with the simulated results. The peak power efficiency of the converter for the unregulated and regulated output are 87% and 75% respectively, while the output ripple is below 30 mV. The output current driving capability of the converter is upto 26 mA with the 490 pF embedded capacitor (including load capacitor). With the help of push-pull dynamic leaker circuit, the dips and peaks due to a load transient are reduced in addition, settling time is also improved. The power density of the converter is 0.45 Watt/mm~2.
机译:在本文中,我们提出了一种具有高功率效率和高功率密度的基于嵌入式开关电容器的DC-DC转换器。转换器由一系列交叉耦合的元件组成,这些元件通过非重叠的交错信号进行旋转控制。交叉耦合的开关电容器有助于减少开关损耗。时钟信号有助于消除直通电流并减少纹波。另一个贡献是该转换器与频率调节环路集成在一起,从而根据负载调整开关损耗,并在较宽的负载电流范围内提高了效率。此外,通过合并动态泄漏器,可以在快速瞬变情况下改善转换器的响应。该转换器采用0.18μmCMOS技术设计。输出电压可从3.3 v的输入电压在1.3 v至1.6 v的范围内调节。转换器的硅特性给出的测量数据与仿真结果一致。对于未稳压和稳压输出,转换器的峰值功率效率分别为87%和75%,而输出纹波低于30 mV。使用490 pF嵌入式电容器(包括负载电容器)时,转换器的输出电流驱动能力高达26 mA。借助推挽动态漏电电路,还可以减少由于负载瞬变而引起的峰值和峰值,还可以缩短建立时间。转换器的功率密度为0.45 Watt / mm〜2。

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