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A 83 peak efficiency 1.65 V to 11.4V dynamic voltage scaling supply for electrical stimulation applications in standard 0.18μm CMOS process

机译:标准0.18μmCMOS工艺中的电气刺激应用的83%峰值效率1.65 V至11.4V动态电压缩放电源

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In this paper, we present a dynamic voltage scaling supply (DVSS) for electrical stimulation applications. The core architecture of the proposed DVSS is based on a 7x series-parallel charge pump structure. It converts 1.65V DC input into N × 1.65V DC output in which the number of N can be dynamically scaled from 1 to 7. The DVSS circuit consumes a static power of 20μW and achieves a peak efficiency of 83.3% under a constant current load of 500μA at output voltage of 3 × 1.65V. The DVSS circuit has a fast response time of 146ns when switching from standby to the maximum 11.4V output. It has an intrinsic energy recycling mechanism to effectively reduce the energy wastage when switching DVSS from active to standby state. The DVSS circuit is designed and implemented in a standard 0.18μm CMOS process without high-voltage (HV) transistor option, which saves mask cost and provides possibility for HV stimulation system to be designed and integrated in more advanced technology node.
机译:在本文中,我们为电刺激应用提供了一种动态电压缩放电源(DVS)。 所提出的DVSS的核心架构基于7倍系列平行电荷泵结构。 它将1.65V DC输入转换为N×1.65V DC输出,其中N的数量可以从1到7动态缩放。DVSS电路消耗20μW的静功率,并在恒定电流负载下实现83.3%的峰值效率 以3×1.65V的输出电压为500μA。 当从待机切换到最大11.4V输出时,DVSS电路的快速响应时间为146ns。 它具有内在的能量回收机构,以在切换从主动到待机状态的DVS时有效地降低能量浪费。 DVSS电路采用标准的0.18μmCMOS工艺设计和实现,无需高压(HV)晶体管选项,可节省掩模成本并提供高级技术节点中的HV刺激系统的可能性。

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