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Linear Active Resistor Based on CMOS Square-Root Circuits for VLSI Applications

机译:基于CMOS平方根电路的线性有源电阻器,用于VLSI应用

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The main advantages of the new proposed CMOS active resistor are the improved linearity, the small area consumption and the improved frequency response. An original technique for linearizing the I(V) characteristic of the active resistor will be proposed, based on the utilization of a new linear differential amplifier and on a current-pass circuit. The linearization of the original differential structure is achieved by compensating the quadratic characteristic of the MOS transistor operating in the saturation region by original square-root circuits. The errors introduced by the second-order effects will be estimated, while the frequency response of the circuit is very good as a result of biasing all MOS transistors in the saturation region and of the currentmode operation of the square-root circuits. The active resistor is implemented in 0.35μm CMOS technology, the SPICE simulation confirming the theoretical estimated results and showing a linearity error under a percent for an extended input range (±400mV) and a small value of the supply voltage (±2.5V).
机译:新提出的CMOS有源电阻器的主要优点是线性度提高,面积消耗小以及频率响应提高。基于使用新型线性差分放大器和电流通过电路,将提出一种使有源电阻器的I(V)特性线性化的原始技术。通过利用原始的平方根电路补偿在饱和区域中工作的MOS晶体管的二次特性,可以实现原始差分结构的线性化。将估计由二阶效应引起的误差,同时由于对饱和区域中的所有MOS晶体管进行偏置以及平方根电路的电流模式工作,电路的频率响应将非常好。有源电阻器采用0.35μmCMOS技术实现,SPICE仿真证实了理论上的估计结果,并在扩展输入范围(±400mV)和较小电源电压(±2.5V)的情况下,显示了线性误差在一个百分比以下。

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