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Performance and variability trade-off with gate-to-source/drain overlap length

机译:栅极到源极/漏极重叠长度的性能和可变性折衷

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摘要

The impact of gate-to-source/drain overlap length on performance and variability of 65 nm CMOS is presented. The device and circuit variability is investigated as a function of three significant process parameters, namely gate length, gate oxide thickness, and halo dose. The comparison is made with three different values of gate-to-source/drain overlap length namely 5 nm, 0 nm, and -5 nm and at two different leakage currents of 10 nA and 100 nA. The Worst-Case-Analysis approach is used to study the inverter delay fluctuations at the process corners. The drive current of the device for device robustness and stage delay of an inverter for circuit robustness are taken as performance metrics. The design trade-off between performance and variability is demonstrated both at the device level and circuit level. It is shown that larger overlap length leads to better performance, while smaller overlap length results in better variability. Performance trades with variability as overlap length is varied. An optimal value of overlap length of 0 nm is recommended at 65 nm gate length, for a reasonable combination of performance and variability.
机译:提出了栅极-源极/漏极重叠长度对65 nm CMOS性能和可变性的影响。研究了器件和电路的可变性,这是三个重要工艺参数的函数,即栅极长度,栅极氧化物厚度和晕圈剂量。比较的是栅-源/漏重叠长度的三个不同值,即5 nm,0 nm和-5 nm,以及两个不同的泄漏电流10 nA和100​​ nA。最坏情况分析方法用于研究过程角上的逆变器延迟波动。用于设备鲁棒性的设备驱动电流和用于电路鲁棒性的逆变器的级延迟被用作性能指标。性能和可变性之间的设计权衡在器件级和电路级均得到了证明。结果表明,较大的重叠长度会导致更好的性能,而较小的重叠长度会导致更好的可变性。随着重叠长度的变化,性能以可变性为代价。建议在栅极长度为65 nm时将重叠长度的最佳值设为0 nm,以实现性能和可变性的合理组合。

著录项

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    Harish BP; Bhat Navakanta;

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  • 年度 2012
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