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Simultaneous Optimization of Analog Circuits With Reliability and Variability for Applications on Flexible Electronics

机译:具有可靠性和可变性的模拟电路的同时优化,用于柔性电子产品

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摘要

Flexible electronics are a possible alternative for portable consumer applications and have many advantages. However, the circuit design for flexible electronics is still challenging, especially for sensitive analog circuits. Due to the different properties of flexible thin-film transistors (TFTs), conventional CMOS design techniques cannot be used directly on flexible electronics. Significant parameter variations and degradation effects of flexible TFTs further increase difficulties for circuit designers. In this paper, a reliability-aware circuit sizing approach is proposed for the analog circuits with flexible TFTs. The process variation, bending, and degradation effects of flexible TFTs in the optimization flow are considered simultaneously. Instead of optimizing the fresh yield and lifetime yield separately, a unified optimization approach is proposed to consider the two yield issues simultaneously. As shown in the experimental results, the proposed approach can further improve the lifetime yield and significantly reduce the design overhead with a fast computation time.
机译:柔性电子产品是便携式消费类应用的可能替代品,并具有许多优势。然而,用于柔性电子设备的电路设计仍然具有挑战性,特别是对于敏感的模拟电路。由于柔性薄膜晶体管(TFT)的特性不同,常规CMOS设计技术无法直接用于柔性电子设备。柔性TFT的重要参数变化和降级效果进一步增加了电路设计人员的难度。本文针对具有柔性TFT的模拟电路,提出了一种提高可靠性的电路尺寸确定方法。同时考虑了优化流程中柔性TFT的工艺变化,弯曲和降级效果。代替单独优化新鲜产量和终生产量,提出了一种统一的优化方法来同时考虑这两个产量问题。如实验结果所示,所提出的方法可以进一步提高使用寿命,并以快速的计算时间显着减少设计开销。

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