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An Energy-Efficient Implantable-Neural-Stimulator System with Wireless Charging and Dynamic Voltage Output

机译:具有无线充电和动态电压输出的节能型植入式神经刺激器系统

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Neural stimulators have become more and more widely used as an effective tool in neural therapies. To address power supply and consumption issues in this application, an energy-efficient Implantable-Neural-Stimulator system composed of a pulse generator and a wireless charger is proposed and implemented in 0.8μm 40V Bipolar-CMOS-DMOS (BCD) process. By adopting a Single Ended Primary Inductor Converter (SEPIC) and optimizing the switching frequency and the gate width of its power MOSFET, the stimulating output voltage range can cover 0~12V with a maximum output ripple of 0.31%. The proposed charger can charge the implantable battery wirelessly by an inductively coupled resonance circuit. In addition, it can adjust the charging voltage to keep it constantly only a little higher than the battery voltage, which reduces the charging headroom voltage and greatly improves the charging efficiency. The measured maximum power efficiencies of these two modules reach as high as 78.04% and 70.67%, respectively.
机译:神经刺激器已越来越广泛地用作神经疗法中的有效工具。为了解决此应用中的电源和功耗问题,提出了一种由脉冲发生器和无线充电器组成的节能型植入式神经刺激器系统,并以0.8μm40V双极性CMOS-DMOS(BCD)工艺实现。通过采用单端初级电感转换器(SEPIC)并优化其功率MOSFET的开关频率和栅极宽度,可激励输出电压范围可以覆盖0〜12V,最大输出纹波为0.31%。提出的充电器可以通过电感耦合谐振电路对可植入电池进行无线充电。另外,它可以调节充电电压以使其恒定恒定仅比电池电压高一点,从而降低了充电裕量电压并大大提高了充电效率。这两个模块的实测最大功率效率分别高达78.04%和70.67%。

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