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The Design of CMOS 13.56-MHz High Efficiency 1×/3× 1.99V/6.29V Active Rectifier for Implantable Neuromodulation Systems

机译:用于植入式神经调节系统的CMOS 13.56MHz高效1×/ 3×1.99V / 6.29V有源整流器的设计

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A 13.56MHz high efficiency CMOS 1X/3X active rectifier with a novel active triple-voltage(3X) rectifier is proposed and verified. The proposed rectifier is specially designed for medical implant systems. It provides 1X/3X dual output voltage (1.99V and 6.29V) allowing the implantable neuromodulation system to operate with high power conversion efficiency (PCE) while stimulating simultaneously. A start-up control circuit is also added to achieve robust start-up mechanism. On-chip delay compensation control is implemented to increase the conduction time, avoid reverse current, and enhance the efficiency. In addition, the rectifier can sustain a higher input inductive voltage without the overstress problem by adding cascode power transistors. The measured dual output voltages of the 1X/3X rectifier are 1.99V and 6.29V while the input inductive voltage is 2.75V. The proposed rectifier achieves 84.2% in PCE with total 57mW output power under 13.56 MHz operation frequency. Based on its capability to provide large output voltage for stimulation with high PCE, the proposed 1X/3X active rectifier is suitable for implantable neuro-modulation systems.
机译:提出并验证了一种具有新型有源三电压(3X)整流器的13.56MHz高效CMOS 1X / 3X有源整流器。建议的整流器是专门为医疗植入系统设计的。它提供1X / 3X双输出电压(1.99V和6.29V),使植入式神经调节系统可以在同时刺激的同时以高功率转换效率(PCE)运行。还添加了启动控制电路,以实现可靠的启动机制。实施片上延迟补偿控制可增加导通时间,避免反向电流并提高效率。此外,通过添加共源共栅功率晶体管,整流器可以维持较高的输入感应电压而不会出现过应力问题。测量的1X / 3X整流器双输出电压分别为1.99V和6.29V,而输入电感电压为2.75V。拟议的整流器在13.56 MHz的工作频率下,其PCE达到84.2%,总输出功率为57mW。基于其能够为高PCE刺激提供大输出电压的能力,建议的1X / 3X有源整流器适用于植入式神经调节系统。

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