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CMOS computational circuits with improved performances

机译:具有改进性能的CMOS计算电路

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The paper presents an original approach of designing analog signal processing circuits, based on the re-using of the same functional core for implementing two circuit functions: signal gain with theoretical null distortions and signal squaring. The advantages of the increased modularity and controllability and of the reduced design costs represent an immediate consequence of the double function realized by the proposed structures. Because the most important circuit complexity is concentrated for implementing the core of the structure, both circuit area and power consumption per each realized function can be strongly reduced using this method. The overall error of the transconductance amplifier is 0.4% and the approximation error for the squaring circuit is 0.27%, in the condition of a low-voltage low-power operation (a supply voltage of 1.5V and a medium current consumption of 50μA for each implemented circuit function).
机译:本文提出了一种设计模拟信号处理电路的原始方法,该方法基于重复使用相同的功能内核来实现两种电路功能:理论上具有零失真的信号增益和信号平方。增加的模块化和可控制性以及降低的设计成本的优点代表了所提出的结构实现的双重功能的直接结果。由于最重要的电路复杂度集中在实现结构的核心上,因此使用此方法可以大大减少每个实现功能的电路面积和功耗。在低电压低功率工作(电源电压为1.5V,中等电流消耗为50μA的情况下)下,跨导放大器的总误差为0.4%,平方电路的近似误差为0.27%已实现的电路功能)。

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