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A sudden power-outage resilient nonvolatile microprocessor for immediate system recovery

机译:突然断电的弹性非易失性微处理器,可立即恢复系统

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In energy harvesting applications, a power supply generated from a renewable power source is unstable that may induce a sudden power outage, losing data being processed. This paper introduces a sudden power-outage resilient nonvolatile microprocessor based on a flashback architecture for immediate system recovery, where nonvolatile storage elements, called magnetic-tunnel-junction (MTJ), are exploited with standard CMOS gates. In the proposed architecture, data stored within a past few clocks are also kept in redundant MTJ-based nonvolatile flip-flops (NV-FF), while storing the current data in NV-FFs. Even if a sudden outage induces a failure of storing the data partly, the inconsistency of the stored data is automatically and immediately recovered by reordering the past data, which enables a continuous operation. A nonvolatile Cortex-M0 processor based on the proposed architecture is implemented using 90nm CMOS/100nm MTJ technologies. It demonstrates the immediate system recovery after a sudden power outage with a 32% area reduction compared to a triple modular redundancy based equivalent microprocessor.
机译:在能量收集应用中,可再生电源产生的电源不稳定,可能会导致突然断电,从而丢失正在处理的数据。本文介绍了一种基于闪回架构的突然断电的弹性非易失性微处理器,用于立即系统恢复,其中,通过标准CMOS门利用称为磁隧道结(MTJ)的非易失性存储元件。在提出的架构中,过去几个时钟内存储的数据也保存在基于MTJ的冗余非易失性触发器(NV-FF)中,同时将当前数据存储在NV-FF中。即使突然中断导致部分存储数据失败,也可以通过对过去的数据进行重新排序来自动立即恢复所存储数据的不一致性,从而实现连续操作。使用90nm CMOS / 100nm MTJ技术实现了基于所提出架构的非易失性Cortex-M0处理器。与基于三重模块化冗余的等效微处理器相比,它演示了突然断电后立即恢复系统的情况,其面积减少了32%。

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