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An 82.9%-Efficiency Triple-Output Battery Management Unit for Implantable Neuron Stimulator in 180-nm Standard CMOS

机译:用于180nm标准CMOS的可植入神经元刺激器的效率为82.9%的三输出电池管理单元

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This brief presents a high-efficiency battery management unit combining a single-inductor dual-output (SIDO) buck converter with two charge pumps (CPs) to provide three voltage levels (6 V, -6 V, and 2 V) for neuron stimulators in implantable medical devices. The stacked power stage in the buck converter mitigates the voltage stress issue in the power stage to manage 3.2-4.8 V battery voltage. By cascading a buck converter and CPs, the voltage across the CP power stage is reduced to generate 6 V and -6 V high voltage outputs without using high voltage devices. As a result, the proposed battery management could provide 6 V, -6 V, and 2 V output voltages from 3.2 to 4.8 V input voltage using a 180-nm standard CMOS process. The measurement results demonstrate that the proposed battery management achieved a peak efficiency of 82.9% with an available input voltage of 3.2-4.8 V.
机译:本简介介绍了一种高效的电池管理单元,该单元将单电感器双输出(SIDO)降压转换器与两个电荷泵(CP)结合在一起,可为神经元刺激器提供三个电压电平(6 V,-6 V和2 V)在植入式医疗设备中。降压转换器中的堆叠式功率级可减轻功率级中的电压应力问题,以管理3.2-4.8 V电池电压。通过级联降压转换器和CP,可以降低CP功率级上的电压,以产生6 V和-6 V高压输出,而无需使用高压器件。结果,建议的电池管理可使用180 nm标准CMOS工艺从3.2到4.8 V输入电压提供6 V,-6 V和2 V输出电压。测量结果表明,所建议的电池管理在3.2-4.8 V的可用输入电压下实现了82.9%的峰值效率。

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