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A Power Efficient Regulated Charge Pump Based on Charge Sharing for Contactless Devices: An Alternative to Four-Phase Charge Pumps

机译:基于电荷共用的功率有效调节电荷泵,无接触式设备:四相电荷泵的替代方案

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摘要

In this paper, a regulated charge sharing based charge pump with boosted transfer clocks able to operate without overlapped phases for low supply voltage is presented. The overlapping period required for the threshold voltage cancellation is removed when applying the charge sharingconcept to a conventional four-phase charge pump. In order to overcome this issue, transfer clocks with higher amplitude than power supply are used to control the gate of charge transfer transistors. The charge sharing based charge pump with boosted transfer clocks and the conventional four-phasecharge pump are both fabricated using a 55 nm UMC High Voltage CMOS technology. Experimental measurement results reveal that the power efficiency of the charge sharing charge pump with boosted transfer clocks can be 20% higher than a traditional four-phase charge pump for an output programmingcurrent of 20 μA. Thus, charge sharing based charge pumps are suited for low power contactless devices using an embedded NOR Flash memory for storage and code execution.
机译:本文介绍了一种具有能够在不重叠的阶段操作的增压传输时钟的受调节电荷共用的电荷泵。在将电荷共享概念应用于传统的四相电荷泵时,去除阈值电压消除所需的重叠时段。为了克服这个问题,使用比电源更高的振幅的传输时钟来控制电荷传输晶体管的栅极。基于电荷共用的电荷泵,具有升压传输时钟和传统的四个Phasecharge泵,均使用55nm UMC高压CMOS技术制造。实验测量结果表明,具有升压传递时钟的电荷共用电荷泵的功率效率可以高于传统的四相电荷泵,用于输出编程电流20 μ a。因此,基于电荷共用的电荷泵适用于使用嵌入式NOR闪存的低功耗非接触式设备,用于存储和代码执行。

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