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A low drop-out regulator for subcutaneous electrical stimulation of nanofibers used in muscle prosthesis

机译:一种低爆墨调节剂,用于肌肉假体中使用的纳米纤维的皮下电刺激

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A low-dropout regulator (LDO) for the electrical stimulation of ionic electroactive polymers (iEAPs) used in subcutaneous muscle prosthesis is presented. The special requirement of the application and the characteristics of iEAPs impose several design challenges for the stimulator. In this paper, these challenges are discussed and solutions are provided. The proposed LDO, designed and simulated in IBM 0.13-μm CMOS technology, uses external-capacitor-less architecture to enable a fully on-chip solution for providing stable stimulation across a wide load range, as required by the properties of iEAPs. The LDO also offers precise line and load regulations, as well as improved power supply rejection (PSR) to suppress the supply noise when the LDO is powered up through wireless power transfer (WPT) links. Simulation results are provided suggesting that the proposed LDO can be used as a stable and precise stimulation source for controlling the movement of iEAPs with a potential application in muscle prostheses.
机译:提出了一种用于皮下肌肉假体的离子电活性聚合物(IEAP)的电刺激的低丢失调节剂(LDO)。应用的特殊要求和IEAP的特征对刺激器施加了几种设计挑战。在本文中,讨论了这些挑战并提供了解决方案。所提出的LDO,在IBM 0.13-μmCMOS技术中设计和模拟,使用外部电容器架构,使完全片上的解决方案能够通过IAP的特性所要求的宽负载范围内提供稳定的刺激。 LDO还提供精确的线路和负载规则,以及改进的电源抑制(PSR),以抑制LDO通过无线电力传输(WPT)链路电源时的电源噪声。提供了仿真结果表明,所提出的LDO可以用作控制IEAP运动的稳定和精确的刺激源,肌肉假体在肌肉假体中的潜在应用。

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