元件数最少的低灵敏度电压型奇数-n阶OTA-C椭圆滤波器结构的解析合成

Chun-Ming Chang
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引用次数: 2

摘要

虽然最近提出了具有最小有源和无源元件数量的电流型奇n阶运算跨导放大器和电容(OTA-C)椭圆滤波器结构,但其对应的电压型椭圆滤波器尚未报道。本文采用一种新的解析综合方法,即将一个复杂的n阶传递函数创新地代数分解为n个简单可行的方程,提出了元件数最少的电压型奇-n阶OTA-C椭圆滤波器结构。采用0.35 μ m过程对电压型三阶OTA-C椭圆低通滤波器进行Hspice仿真,验证了滤波器参数精确、低灵敏度和低功耗的性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical synthesis of low-sensitivity voltage-mode odd-nth-order OTA-C elliptic filter structure with the minimum number of components
Though the current-mode odd-nth-order operational transconductance amplifier and capacitor (OTA-C) elliptic filter structure with the minimum number of active and passive components was presented recently, yet none of its counterpart, the voltage-mode ones, have been reported. After a new analytical synthesis method, namely, an innovative algebraic decomposition of a complex nth-order transfer function into n simple and feasible equations, the voltage-mode odd-nth-order OTA-C elliptic filter structure with the minimum number of components is proposed in this paper. The Hspice simulation with 0.35 mum process for a voltage-mode third-order OTA-C elliptic low-pass filter, employing only four OTAs and three grounded capacitors, validates not only precise filtering parameters but low sensitivity and low power consumption performances.
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