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Biphasic-current-pulse self-calibration techniques for monopolar current stimulation

机译:单相电流刺激的双相电流脉冲自校准技术

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Monopolar biphasic current stimulation is widely used for neural prosthetic devices. The major design challenge is to ensure charge-balanced stimulation. This paper describes a compact negative-feedback self-calibration scheme to minimize the current amplitude mismatch between the anodic and the cathodic pulses for achieving the charge balance without using any large-value blocking capacitors and long duration of interpulse shorting. Dummy transmission gate technique is also adopted in the calibration circuit to minimize the charge injection error. With a 0.35-μm high-voltage CMOS process, the maximum amplitude mismatch between two current pulses in the stimulator is < 0.3 μA (0.03%) after calibration with a full-scale stimulation current of 1 mA. It corresponds to < 7.5 nA residual DC current error for supporting 10-µs pulse and high stimulation rate of 2500 pulses per second (pps).
机译:单极双相电流刺激被广泛用于神经修复设备。主要的设计挑战是确保电荷平衡刺激。本文介绍了一种紧凑的负反馈自校准方案,该方案可在不使用任何大容量阻塞电容器且脉冲间短路持续时间较长的情况下,最大限度地减小阳极和阴极脉冲之间的电流幅度失配,以实现电荷平衡。校准电路中还采用了虚拟传输门技术,以最大程度地减小电荷注入误差。使用0.35μm的高压CMOS工艺,在用1 mA的满量程刺激电流进行校准后,刺激器中两个电流脉冲之间的最大幅度失配小于<0.3μA(0.03%)。它对应于小于7.5 nA的残余DC电流误差,以支持10 µs脉冲和每秒2500脉冲(pps)的高激励速率。

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