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A Thermal Energy Harvesting Power Supply With an Internal Startup Circuit for Pacemakers

机译:用于起搏器的带有内部启动电路的热能收集电源

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A complete thermal energy harvesting power supply for implantable pacemakers is presented in this paper. The designed power supply includes an internal startup and does not need any external reference voltage. The startup circuit includes a prestartup charge pump (CP) and a startup boost converter. The prestartup CP consists of an ultralow-voltage oscillator followed by a high-efficiency modified Dickson. Forward body biasing is used to effectively reduce the MOS threshold voltages as well as the supply voltage in oscillator and CP. The steady-state circuit includes a high-efficiency boost converter that utilizes a modified maximum powerpoint tracking scheme. The system is designed so that no failure occurs under overload conditions. Using this approach, a thermal energy harvesting power supply has been designed using 180-nm CMOS technology. According to HSPICE simulation results, the circuit operates from input voltages as low as 40 mV provided from a thermoelectric generator and generates output voltages up to 3 V. A maximum power of 130 W can be obtained from the output of the boost converter, which means that its efficiency is 60%. A minimum voltage of 60 mV and a maximum time of 400 ms are needed for the circuit to start up.
机译:本文介绍了用于植入式起搏器的完整热能收集电源。设计的电源包括内部启动,不需要任何外部参考电压。启动电路包括一个预启动电荷泵(CP)和一个启动升压转换器。启动前CP由一个超低压振荡器和一个高效的Dickson修改器组成。正向主体偏置用于有效降低MOS阈值电压以及振荡器和CP中的电源电压。稳态电路包括一个利用改进的最大功率点跟踪方案的高效升压转换器。该系统设计成在过载条件下不会发生故障。使用这种方法,已经使用180纳米CMOS技术设计了一种热能收集电源。根据HSPICE仿真结果,该电路使用热电发电机提供的低至40 mV的输入电压工作,并产生高达3 V的输出电压。升压转换器的输出可获取最大130 W的功率,这意味着它的效率是60%。电路启动需要最少60 mV的电压和最长400 ms的时间。

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