首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Self-start-up fully integrated DC-DC step-up converter using body biasing technique for energy harvesting applications
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Self-start-up fully integrated DC-DC step-up converter using body biasing technique for energy harvesting applications

机译:使用身体偏置技术进行自启动全集成的DC-DC升压转换器,用于能量收集应用

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摘要

An ultra-low power, self-start-up switched-capacitor Two Branch Charge Pump (TBCP) circuit for low power, low voltage, and battery-less implantable applications is proposed. In order to make feasible the low voltage operation, the proposed charge pump along with Non-Overlapped Clock generator (NOC) are designed working in sub-threshold region by using body biasing technique. A four-stage TBCP circuit is implemented with both NMOS and PMOS transistors to provide a direct load flow. This leads to a significant drop in reverse charge sharing and switching loss and accordingly improves pumping efficiency. A post-layout simulation of designed four-stage TBCP has been performed by using an auxiliary body biasing technique. Consequently, a low start-up voltage of 300?mV with a pumping efficiency of 95% for 1?pF load capacitance is achieved. The output voltage can rise up-to 1.88?V within 40?μs with 0.2% output voltage ripple in case of using 400?mV power supply. The designed circuit is implemented by 180-nm standard CMOS technology with an effective chip area of 130.5?μm?×?141.8?μm while the whole circuit consumes just 3.2?μW.
机译:提出了一种超低功耗,自启动开关电容器两个分支电荷泵(TBCP)电路,用于低功耗,低电压和较少的电池植入应用。为了使低电压操作进行可行,通过使用体偏置技术在子阈值区域中设计了所提出的电荷泵以及非重叠的时钟发生器(NOC)。使用NMOS和PMOS晶体管实现四级TBCP电路,以提供直接载荷流。这导致反向电荷共享和开关损耗的显着下降,并因此提高了泵送效率。已经通过使用辅助体偏置技术进行设计的四级TBCP的后布局模拟。因此,实现了300·MV的低启动电压,泵送效率为95%,对于1ΩPF负载电容。输出电压可以在40℃以内上升至1.88Ωv,在使用400μm电源时,输出电压纹波在0.2%的输出电压纹波。设计电路由180nm标准的CMOS技术实现,有效芯片面积为130.5ΩΩ·×141.8?μm,而整个电路仅消耗3.2ΩΩμw。

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