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Analytical synthesis of voltage-mode even/odd-nth-order differential difference current conveyor and fully differential current conveyor II-grounded resistor and capacitor universal filter structures

机译:电压模式偶数/奇数阶差分差分电流传输器和全差分电流传输器的分析合成II接地的电阻器和电容器通用滤波器结构

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摘要

A complete definition of an odd/even-nth-order notch or band-reject filter transfer function is presented. Based on the differences between the input voltage and (i) an nth-order high-pass; (ii) a traditional nth-order notch; and (iii) an nth-order all-pass filtering transfer function, a systematic method has been proposed to derive a universal filter structure that can realize voltage-mode odd/even-nth-order low-pass, band-pass, high-pass, all-pass and traditional notch filters. The intrinsic capability of voltage-mode addition and subtraction of the two active elements, differential difference current conveyors and fully differential current conveyors, is used to advantage in the aforementioned synthesis procedure. Based upon the definition of an nth-order notch or band-reject filter transfer function proposed in this paper, the aforementioned universal one has been further extended to the newly defined nth-order band rejection filter. The voltage and current tracking errors of the two active elements are compensated by varying the resistances of the proposed filter. Filtering feasibility, stability, component sensitivities, linear and dynamic ranges, power consumption, and noise are simulated using H-Spice with 0.35 mu m process. Compared to some of the recently reported universal biquads, the new one is shown to enjoy the lowest component sensitivities and the best output accuracy for all-pass signals. Moreover, Monte Carlo and two-tone tests for intermodulation linearity simulations are also investigated. Copyright (c) 2014 John Wiley & Sons, Ltd.
机译:给出了奇/偶数陷波或带阻滤波器传递函数的完整定义。基于输入电压与(i)n次高通之间的差异; (ii)传统的n阶缺口; (iii)n阶全通滤波传递函数,提出了一种系统方法来推导通用滤波器结构,该结构可以实现电压模式奇/偶n阶低通,带通,高通通过,全通和传统陷波滤波器。两个有源元件(差动差分电流传输器和全差分电流传输器)的电压模式加法和减法的固有能力在上述合成过程中得到了好处。基于本文提出的n阶陷波或带阻滤波器传递函数的定义,上述通用范围已进一步扩展到新定义的n阶带阻滤波器。通过改变所提出的滤波器的电阻,可以补偿两个有源元件的电压和电流跟踪误差。使用H-Spice的0.35微米工艺对滤波的可行性,稳定性,组件灵敏度,线性和动态范围,功耗和噪声进行了仿真。与最近报道的一些通用双二阶相比,新双二阶在全通信号方面具有最低的组件灵敏度和最佳的输出精度。此外,还研究了用于互调线性仿真的蒙特卡洛和二音测试。版权所有(c)2014 John Wiley&Sons,Ltd.

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