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A robust high-efficiency cross-coupled charge pump circuit without blocking transistors

机译:不堵塞晶体管的稳健高效交叉耦合电荷泵电路

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摘要

A fully integrated cross-coupled charge pump circuit with a new clock scheme has been presented in this paper. The new clock scheme ensures that all NMOS pre-charge transistors are turned off when the voltages of main clock signals are high. Notably, all PMOS transfer transistors will be turned off when the voltages of the main clock signals are low. As a result, the charge pump eliminates all of the reversion power loss and reduces the ripple voltage. The proposed charge pump has a better performance even in scenarios where the main clock signals are mismatched. The proposed charge pump circuit was simulated using spectre in the TSMC 0.18 mu m CMOS process. The simulation results show that the proposed charge pump circuit has a high voltage conversion efficiency and low ripple voltage.
机译:本文提出了一种具有新时钟方案的完全集成的交叉耦合电荷泵电路。 新时钟方案确保当主时钟信号的电压高时,所有NMOS预充电晶体管都关闭。 值得注意的是,当主时钟信号的电压低时,所有PMOS传输晶体管都将被关闭。 结果,电荷泵消除了所有逆转功率损耗并降低了纹波电压。 即使在主时钟信号不匹配的情况下,所提出的电荷泵也具有更好的性能。 使用TSMC 0.18 mu M CMOS工艺中的幽灵模拟所提出的电荷泵电路。 仿真结果表明,所提出的电荷泵电路具有高压转换效率和低纹波电压。

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