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Improved Accuracy Pseudo-Exponential Function Generator With Applications in Analog Signal Processing

机译:精度更高的伪指数函数发生器及其在模拟信号处理中的应用

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摘要

A new CMOS current-mode pseudo-exponential circuit based on the $n$-order Taylor series expansion will be presented. The most important advantage of the circuit with respect to the previously reported similar ones is the smaller value of the total computing error (under 0.3 dB), for a maximal output range of the proposed function generator greater than 40 dB. The total error could be very easily reduced by increasing the number of terms considered in the Taylor expansion. The circuit also presents the advantage of the independence of the output current on technological parameters. The frequency response is improved due to the strong inversion operation of all MOS transistors and to the current-mode operation of the circuit. The circuit area is relatively small due to the exclusively utilization of MOS transistors. The SPICE simulations confirm the theoretical estimated results. The proposed exponential function generator is designed in 0.12- $mu$m CMOS technology and it consumes a reasonable power (less than 0.3 mW) for obtaining the previous mentioned computing error and has a low-voltage operation (a minimal accepted supply voltage under 1.2 V). The total silicon occupied area of the exponential function generator with third-order approximation is about 5.9 $mu{hbox {m}}times {hbox {7.9}} mu{hbox {m}}$.
机译:将提出一种基于$ n $阶泰勒级数展开的新型CMOS电流模式伪指数电路。相对于先前报道的类似电路,该电路最重要的优点是,对于建议的函数发生器的最大输出范围大于40 dB,总计算误差的值较小(低于0.3 dB)。通过增加泰勒展开式中考虑的项数,可以很容易地减少总误差。该电路还具有输出电流与工艺参数无关的优势。由于所有MOS晶体管的强反相操作以及电路的电流模式操作,频率响应得以改善。由于仅利用了MOS晶体管,所以电路面积相对较小。 SPICE仿真证实了理论估计结果。拟议的指数函数发生器采用0.12-μmCMOS技术设计,并且消耗合理的功率(小于0.3mW)来获得上述计算误差,并且具有低电压操作(在1.2以下的最小可接受电源电压) V)。具有三阶近似的指数函数发生器的总硅占据面积约为5.9 $ mu {hbox {m}}乘以{hbox {7.9}} mu {hbox {m}} $。

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