首页> 外文会议>2012 IEEE/ACM International Conference on Computer-Aided Design : Digest of Technical Papers. >Analytical-based approach for capacitor placement with gradient error compensation and device correlation enhancement in analog integrated circuits
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Analytical-based approach for capacitor placement with gradient error compensation and device correlation enhancement in analog integrated circuits

机译:模拟集成电路中基于分析的电容器放置方法,具有梯度误差补偿和器件相关性增强

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摘要

Switched capacitors are commonly used in analog design. The circuit performance based on this technique relies on the accuracy of capacitance ratios, which are affected by random and systematic mismatches. To meet the accuracy requirement, designers can increase the layout area of unit capacitors to reduce random mismatch. Since increasing layout area enlarges the distance between unit capacitors, it induces more gradient errors, which results in larger systematic mismatch. Therefore, the better way for reducing the gradient errors is to carefully determine the locations of unit capacitors in a capacitor array. Moreover, the resulting placement must have high capacitance correlation in order to enhance yield. In this paper, we first explore the attributes of a good capacitor placement, which can reduce gradient errors and increase capacitance correlation. Then, an analytical-based approach is proposed to complete capacitor placement considering these issues. Finally, the results are optimized by arbitrarily swapping two unit capacitors. Compared with the simulated annealing based approach, the proposed method not only achieves better placement results but also gets 34x faster for the largest benchmark capacitor array.
机译:开关电容器通常用于模拟设计。基于该技术的电路性能取决于电容比的精度,电容比的精度受随机和系统失配的影响。为了满足精度要求,设计人员可以增加单位电容器的布局面积,以减少随机失配。由于增加的布局面积会扩大单位电容器之间的距离,因此会引起更多的梯度误差,从而导致更大的系统失配。因此,减小梯度误差的更好方法是仔细确定电容器阵列中单位电容器的位置。而且,所得到的放置必须具有高电容相关性以提高产量。在本文中,我们首先探讨了良好电容器放置的属性,可以减少梯度误差并增加电容相关性。然后,考虑到这些问题,提出了一种基于分析的方法来完成电容器的放置。最后,通过任意交换两个单元电容器可以优化结果。与基于模拟退火的方法相比,该方法不仅获得了更好的放置结果,而且对于最大的基准电容器阵列而言,其速度提高了34倍。

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