Electronically Tunable Current-Mode Square-Root-Domain First Order All-Pass Filters and Their Quadrature Oscillator Applications

F. Z. Adalar, A. Kircay, M. S. Keserlioglu
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Abstract

This paper proposes square-root-domain currentmode first order inverting and non-inverting all-pass filters. The proposed filters are designed by using state-spacesynthesis method with current-mode square-root circuits, squarer/divider circuits, current mirrors, current sources and grounded capacitors without any external resistors. Therefore, the proposed filters are appropriate to develop into an integrated circuit. The center frequency can be adjusted electronically by changing the values of the external current sources. A current-mode quadrature oscillator has been included to be an example for the practice. The proposed oscillator is obtained by cascading inverting and non-inverting all-pass filters loop. 3 Volts power supply was used to operate the all-pass filter circuits and the oscillator circuit. In order to demonstrate the performances of them, the PSPICE simulations have been provided to confirm the theoretical analyses. The filters are simulated by using TSMC 0.25 μm Level 3 CMOS process parameters for this purpose.
电子可调谐电流模式平方根域一阶全通滤波器及其正交振荡器应用
本文提出了平方根域电流模一阶反相滤波器和非反相全通滤波器。该滤波器采用状态空间综合方法设计,采用电流型平方根电路、平方/分频电路、电流镜、电流源和无外部电阻的接地电容。因此,所提出的滤波器适合发展成集成电路。中心频率可以通过改变外部电流源的值来电子调节。一个电流型正交振荡器已包括作为一个例子,为实践。该振荡器由级联反相和非反相全通滤波器环路获得。采用3伏电源驱动全通滤波电路和振荡器电路。为了验证它们的性能,通过PSPICE仿真验证了理论分析。采用台积电0.25 μm 3级CMOS工艺参数对滤波器进行仿真。
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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