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Context-independent performance modeling of operational amplifiers using Pareto fronts

机译:使用帕累托前沿的运算放大器上下文无关的性能建模

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The use of performance trade-off fronts, also known as Pareto fronts, in emerging design methodologies for analog integrated circuits is a keystone to overcome the limitations of the traditional top-down methodologies. However, most techniques reported so far to generate the fronts neglect the effect of the surrounding circuitry (such as the output load impedance) on the Pareto-front, thereby making it only valid for the context where the front was generated. This strongly limits its use in hierarchical analog synthesis because of the heavy dependence of key performances on the surrounding circuitry, but, more importantly, because this circuitry remains unknown until the synthesis process. We propose a new technique to generate the trade-off fronts that is independent of the load that the circuit has to drive. This idea is exploited for a Miller operational amplifier, and experimental results show that this is a promising approach to solve the issue.
机译:在新兴的模拟集成电路设计方法中使用性能折衷前沿(也称为帕累托前沿)是克服传统自上而下方法的局限性的基石。但是,到目前为止,大多数报道的产生前沿的技术都忽略了周围电路对帕累托前沿的影响(例如输出负载阻抗),从而使其仅在产生前沿的情况下有效。由于关键性能对周围电路的严重依赖性,这极大地限制了它在分层模拟综合中的使用,但更重要的是,由于该电路在合成过程之前仍然未知。我们提出了一种新的技术来产生折衷的前沿,该前沿与电路所要驱动的负载无关。 Miller运算放大器采用了这种想法,实验结果表明,这是解决该问题的一种有前途的方法。

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