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A proposal for high-performance CCII-based analogue CMOS design

机译:基于CCII的高性能模拟CMOS设计的建议

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A novel fully differential CMOS second-generation current conveyor (CCII) topology is presented. It can be considered as a universal fully differential programmable active element. The circuit operates in moderate inversion region, and features high linearity over a wide input range. Current gain between terminals X and Z can be continuously tuned in a wide range. These features are essential to extend the utilization of CCII-based circuits to high-performance VLSI applications. Analogue design based on this new cell is illustrated by various examples. The proposed CCII has been fabricated in a 0.5-μm CMOS technology and its main performance characteristics have been measured. They are in good agreement with theory and demonstrate that operation in moderate inversion can lead to distortion levels much lower than those achieved in strong inversion. Experimental results for a Tow-Thomas biquadratic filter fabricated on the same chip are also presented, showing continuous frequency tuning in more than a decade.
机译:提出了一种新颖的全差分CMOS第二代电流传输器(CCII)拓扑。它可以被视为通用的全差分可编程有源元件。该电路工作在中等反转范围,并在较宽的输入范围内具有高线性度。端子X和Z之间的电流增益可以在很宽的范围内连续调节。这些功能对于将基于CCII的电路的应用扩展到高性能VLSI应用至关重要。各种示例说明了基于此新单元的模拟设计。拟议的CCII采用0.5-μmCMOS技术制造,并且已测量了其主要性能特征。它们与理论高度吻合,并表明在中等反演条件下运行可导致失真水平远低于在强反演中实现的失真水平。还介绍了在同一芯片上制造的Tow-Thomas双二次滤波器的实验结果,显示了十多年来的连续频率调谐。

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