Improving the efficiency of mixed-structure charge pumps by the multi-phase technique

N. Huang, M. Shiau, Z. Hsieh, Hong-Chong Wu, Don-Gey Liu
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引用次数: 13

Abstract

In this paper, a new design for efficiency enhance switching-capacitor DC-DC voltage converter based on combination of traditional charge-transfer-switch charge pump and cross-coupled output stage. In order to get a high output power and pump-efficiency. By using multi-phase technique, its can increase both of pump-efficiency and power-efficiency. The propose multi-phase mixed-structure charge pump can operate at 1 MHz switching-frequency on the 0.1µF pump-capacitors. After the simulation by using HSPICE 0.35µm TSMC process, our work can converter the input low DC-voltage (VDD=1.5V) up near to 5 times of it (VOUT= 7.4688), the pump-efficiency can reaches to 99.58%, and the output power can be increased. The new proposed charge pump circuit is suitable for low-voltage applications in CMOS process because there is no threshold voltage drop in every stage even at the output stage. A great achievement has been obtained.
利用多相技术提高混合结构电荷泵的效率
本文将传统的电荷转移开关电荷泵与交叉耦合输出级相结合,设计了一种新的提高效率的开关电容DC-DC电压变换器。以获得较高的输出功率和泵效率。采用多相技术,既能提高泵效率,又能提高功率效率。所提出的多相混合结构电荷泵可以在0.1µF的泵电容器上以1 MHz的开关频率工作。采用HSPICE 0.35µm TSMC工艺进行仿真后,我们的工作可以将输入低直流电压(VDD=1.5V)转换为其(VOUT= 7.4688)的近5倍,泵浦效率达到99.58%,输出功率得到提高。新提出的电荷泵电路适用于CMOS工艺中的低压应用,因为即使在输出级,每个级也没有阈值电压降。取得了巨大的成就。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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