Reconfigurable fully differential first order all pass filter using digitally controlled CMOS DVCC

I. A. Khan, M. I. Masud, S. A. Moiz
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引用次数: 21

Abstract

The paper presents a reconfigurable fully differential all pass filter based on CMOS differential voltage current conveyor. The proposed topology uses two differential voltage current conveyors along with two resistors and two capacitors. The phase angle of the realized fully differential all pass filter can be controlled through an n-bit digital control word. Thus the proposed filter topology provides increased immunity to external noise, reduced even-order harmonics, high resolution capability and reconfigurability. The proposed filter circuit is simulated by using PSPICE. The results thus obtained justify the theory.
可重构全差分一阶全通滤波器使用数字控制的CMOS DVCC
提出了一种基于CMOS差动电压电流输送器的可重构全差动全通滤波器。所提出的拓扑结构使用两个差分电压电流传送带以及两个电阻和两个电容器。所实现的全差分全通滤波器的相位角可以通过一个n位数字控制字来控制。因此,所提出的滤波器拓扑结构增加了对外部噪声的抗扰性,降低了偶次谐波,具有高分辨率和可重构性。利用PSPICE对所提出的滤波电路进行了仿真。这样得到的结果证明了这个理论是正确的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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