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Design Optimization Of A Current Mirror Amplifier Integrated Circuit Using A Computational Statistics Technique

机译:基于计算统计技术的电流镜放大器集成电路设计优化

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In this work, we implement a computational statistics technique for design optimization of integrated circuits (ICs). Integration of a well-known circuit simulation software and central composite design method enables us to construct a second-order response surface model (RSM) for each concerned constraint. After construction of RSMs, we verify the adequacy and accuracy using the normal residual plots and their residual of squares. The constructed models are further employed for design optimization of current mirror amplifier ICs with 0.18 μm CMOS devices. By considering the voltage gain, cut-off frequency, phase margin, common-mode rejection ratio and slew-rate, six designing parameters including the width and length of different transistors are selected and optimized to fit the targets.
机译:在这项工作中,我们实现了一种用于计算机集成电路(IC)设计优化的计算统计技术。著名的电路仿真软件和中央复合设计方法的集成使我们能够为每个相关约束构建一个二阶响应表面模型(RSM)。在构造RSM之后,我们使用正常残差图及其平方的残差来验证适当性和准确性。所构建的模型可进一步用于具有0.18μmCMOS器件的电流镜放大器IC的设计优化。通过考虑电压增益,截止频率,相位裕度,共模抑制比和压摆率,选择并优化了六个设计参数,包括不同晶体管的宽度和长度,以适合目标。

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