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Mitigation of sense amplifier degradation using input switching

机译:使用输入开关减轻感测放大器的退化

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To compensate for time-zero (due to process variation) and time-dependent (due to e.g. Bias Temperature Instability (BTI)) variability, designers usually add design margins. Due to technology scaling, these variabilities become worse, leading to the need for bigger design margins. Typically, only worst-case scenarios are considered, which will not present the actual workload of the targeted application. Alternatively, mitigation schemes can be used to counteract the variability. This paper presents a run-time design-for-reliability scheme for memory Sense Amplifiers (SAs); SAs are an integral part of any memory system and are very critical for high performance. The proposed scheme mitigates the impact of time-dependent variability due to aging by using an on-line control circuit to create a balanced workload. The simulation results show that the proposed scheme can reduce the most critical figures-of-merit, namely the offset voltage shift and the sensing delay of the SA with up to ∼40% and ∼10%, respectively, depending on the stress conditions (temperature, voltage, workload).
机译:为了补偿零时(由于工艺变化)和时间相关(例如由于偏置温度不稳定性(BTI))的变化,设计人员通常会增加设计余量。由于技术的扩展,这些差异变得更糟,导致需要更大的设计余量。通常,仅考虑最坏的情况,这不会显示目标应用程序的实际工作量。或者,可以使用缓解方案来抵消可变性。本文提出了一种用于存储器检测放大器(SA)的运行时可靠性设计方案。 SA是任何内存系统不可或缺的一部分,对于高性能至关重要。所提出的方案通过使用在线控制电路来创建平衡的工作量,减轻了由于老化而导致的随时间变化的影响。仿真结果表明,根据应力条件,所提方案可以降低最关键的品质因数,即SA的失调电压偏移和感测延迟分别高达〜40%和〜10%(温度,电压,工作量)。

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