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SRAM supply voltage scaling: A reliability perspective

机译:SRAM供电电压缩放:可靠性透视

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SRAM leakage power is a significan fraction of the total power consumption on a chip. Various system level techniques have been proposed to reduce this leakage-power by reducing (scaling) the supply voltage. SRAM supply voltage scaling reduces the leakage-power, but it increases stored-data failure rate due to commonly known failure mechanisms, for example, soft-errors. This work studies SRAM leakage-power reduction using system level design techniques, with a data-reliability constraint. A statistical or probabilistic setup is used to model failure mechanisms like soft-errors or process-variations, and error-probability is used as a metric for reliability. Error models which combine various SRAM cell failure mechanisms are developed. In a probabilistic setup, the bit-error probability increases due to supply voltage reduction, but it can be compensated by suitable choices of error-correction code and data-refresh (scrubbing) rate. The trade-offs between leakage-power, supply voltage reduction, data-refresh rate, error-correction code, and decoding error probability are studied. The leakage-power ?? including redundancy overhead, coding power, and data-refresh power ?? is set as the cost-function and an error-probability target is set as the constraint. The cost-function is minimized subject to the constraint, over the choices of data-refresh rate, error-correction code, and supply voltage. Using this optimization procedure, simulation results and circuit-level leakage-power reduction estimates are presented.
机译:SRAM泄漏功率是芯片上总功耗的显着分数。已经提出了各种系统级技术来通过减少(缩放)电源电压来减少这种泄漏功率。 SRAM电源电压缩放降低漏电功率,但由于常识的故障机制,它会增加存储数据故障率,例如软误差。这项工作研究SRAM漏功率降低使用系统级设计技术,具有数据可靠性约束。统计或概率的设置用于模型的故障机制等软错误或过程变化,并且错误概率被用作度量的可靠性。开发了组合各种SRAM单元故障机制的错误模型。在概率设置中,位误差概率由于电源电压降低而增加,但可以通过合适的纠错码和数据刷新(擦洗)速率来补偿。研究了漏电功率,电源电压降低,数据刷新率,纠错码和解码误差概率之间的权衡。泄漏功率?包括冗余开销,编码功率和数据刷新功率?被设置为成本函数,并将误差概率目标设置为约束。在数据刷新率,纠错码和电源电压的选择上,通过约束最小化的成本函数。使用该优化过程,提出了仿真结果和电路电平漏功率降低估计。

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