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An exponent-scalable method for very small capacitance spread and large time constant of switched-capacitor integrator

机译:一种指数可伸缩的方法,用于非常小的电容扩展和开关电容集成器的大时间常数

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摘要

For switched-capacitor (SC) integrator, an exponent-scalable method to obtain very small capacitance spread and large time constant is presented. Based on Nagaraj-89 SC integrator, an additional SC feedback branch with an extra clock phase is employed, resulting in capacitance spread to the 3rd power in z-domain transfer function. Furthermore, with (N - 2) additional SC feedback branches using (N - 2) extra clock phases, capacitance spread to the Nth power can be achieved in z-domain transfer function. Compared with previous SC integrators, this proposed exponent-scalable method is analyzed, and it is verified by simulation that larger time constant can be realized with less capacitor area. Moreover, Monte-Carlo simulation shows low relative standard deviation of time constant is also maintained.
机译:对于开关电容(SC)积分器,介绍了获得非常小的电容扩展和大时间常数的指数可伸缩方法。 基于Nagaraj-89 SC积分器,采用具有额外时钟相位的附加SC反馈分支,导致电容扩展到Z域传递函数中的第三电源。 此外,使用(N-2)使用(N-2)额外的时钟相,可以在Z域传递函数中实现扩展到第n个功率的电容。 与以前的SC集成商相比,分析了这种提出的指数可缩放方法,通过模拟验证,可以使用较少的电容器区域实现较大的时间常数。 此外,Monte-Carlo仿真也显示了时间常数的低相对标准偏差。

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