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Maximum Reduction in Peak Voltage Using Stepped Currents to Deliver Charge to $RC$ Circuits

机译:使用步进电流将电荷传递至$ RC $电路,从而最大程度地降低峰值电压

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This brief analyzes the performance achievable by regularly sampled piecewise constant current waveforms in reducing the peak voltage across the driving terminals of an $RC$ circuit when delivering a given charge over a given time duration into the terminals, as compared with using a fixed current. It is shown analytically for two and three current steps and numerically for more steps that the biggest achievable peak voltage reduction obtained with a simple series $RC$ circuit cannot be exceeded with a more complicated $RC$ circuit. Then the biggest peak voltage reduction that can be obtained is approximately 22.98% using either an infinite number of current steps of infinitesimal duration or a constant voltage drive. These are new basic results on $RC$ circuits and have application to the design of neurostimulators.
机译:本文简要分析了通过定期采样的分段恒定电流波形在降低 $ RC $ 与使用固定电流相比,在给定时间内将给定电荷输送到端子时的电路。从两个和三个电流阶跃的分析结果可以看出,对于更多阶跃的数值显示,通过简单的序列 $ RC $ 可实现的最大峰值电压降低电路不能超过更复杂的 $ RC $ 电路。然后,使用无限长持续时间的无限数量的电流阶跃或恒定电压驱动,可获得的最大峰值电压降低约为22.98%。这些是 $ RC $ 电路上的新基本结果,并已应用于神经刺激器的设计中。

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