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基于单电压差分增益放大器的混合模式通用滤波器和双模正交振荡器。

Single VDGA-Based Mixed-Mode Universal Filter and Dual-Mode Quadrature Oscillator.

作者信息

Roongmuanpha Natchanai, Tangsrirat Worapong, Pukkalanun Tattaya

机构信息

School of Engineering, King Mongkut's Institute of Technology Ladkrabang (KMITL), Bangkok 10520, Thailand.

出版信息

Sensors (Basel). 2022 Jul 15;22(14):5303. doi: 10.3390/s22145303.

Abstract

This article presents the circuit designs for a mixed-mode universal biquadratic filter and a dual-mode quadrature oscillator, both of which use a single voltage differencing gain amplifier (VDGA), one resistor, and two capacitors. The proposed circuit has the following performance characteristics: (i) simultaneous implementation of standard biquadratic filter functions with three inputs and two outputs in all four possible modes, namely, voltage-mode (VM), current-mode (CM), trans-admittance-mode (TAM), and trans-impedance-mode (TIM); (ii) electronic adjustment of the natural angular frequency and independently single-resistance controllable high-quality factor; (iii) performing a dual-mode quadrature oscillator with simultaneous voltage and current output responses; (iv) orthogonal resistive and/or electronic control of the oscillation condition and frequency; (v) employing all grounded passive components in the quadrature oscillator function; and (vi) simpler topology due to the use of a single VDGA. VDGA non-idealities and parasitic elements are also investigated and analyzed in terms of their influence on circuit performance. To prove the study hypotheses, computer simulations with TSMC 0.18 μm CMOS technology and experimental confirmatory testing with off-the-shelf integrated circuits LM13600 have been performed.

摘要

本文介绍了一种混合模式通用双二次滤波器和一种双模正交振荡器的电路设计,它们均使用一个单电压差分增益放大器(VDGA)、一个电阻器和两个电容器。所提出的电路具有以下性能特点:(i)在所有四种可能的模式下,即电压模式(VM)、电流模式(CM)、跨导模式(TAM)和跨阻模式(TIM),同时实现具有三个输入和两个输出的标准双二次滤波器功能;(ii)自然角频率的电子调节以及独立的单电阻可控高品质因数;(iii)执行具有同时电压和电流输出响应的双模正交振荡器;(iv)振荡条件和频率的正交电阻和/或电子控制;(v)在正交振荡器功能中采用全接地无源元件;(vi)由于使用单个VDGA而具有更简单的拓扑结构。还研究并分析了VDGA的非理想特性和寄生元件对电路性能的影响。为了验证研究假设,已使用台积电0.18μm CMOS技术进行了计算机仿真,并使用现成的集成电路LM13600进行了实验验证测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/36ea/9320765/65cd409d32c5/sensors-22-05303-g001.jpg

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