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SEE evaluation of a low-power 1#x03BC;m-SOI 80C51 for extremely harsh environments

机译:有关极其恶劣环境,请参阅评估低功耗1μm-soi 80c51

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In this paper, we present the SEE characterization of an 80C51 microcontroller optimized for high temperature and low-power applications. Its microarchitecture has been completely redesigned with deep low-power optimizations. It has been manufactured in a 1μm SOI process with tungsten metallization layers ensuring a high sustained operating temperature of 225 °C. The SEE characterization presented here have been carried out in the Cyclotron Research Centre of Louvain-la-Neuve. It shows a very high threshold LET of 90 MeV/mg/cm2 at a nominal Vdd of 5 V, while it is latchup immune due to SOI. Thanks to the power-optimized microarchitecture, its power consumption is only 8.5 mW/MIPS, which is close to a LEON2 FT manufactured in a far more sensitive 0.18μm process, making it a very low-power 80C51 for extremely harsh environments. Hardening by using a harsh process allows to use standard design tools and advanced aggressive low-power techniques. Even if the SOI 1μm technology used here is very big, results obtained in this work show that it can compete for low-power microcontrollers with a 0.18μm sub-micron technology hardened by using power hungry tripple modular redundancy. Whereas this harsh process approach offers quite better SEE tolerance.
机译:在本文中,我们介绍了针对高温和低功耗应用优化的80C51微控制器的SEE表征。它的微架构已经完全重新设计,具有深度低功耗优化。它已在1μMSOI工艺中制造,具有钨金属化层,确保高225℃的高持续工作温度。这里呈现的SEE表征已经在Louvain-La-Neuve的回旋加速器研究中心进行。它显示了一个非常高的阈值,使得在5V的标称VDD的标称VDD处具有90 mev / mg / cm 2 ,而由于SOI,它是闩锁免疫。由于功率优化的微架构,其功耗仅为8.5 MW / MIPS,靠近在更敏感的0.18μm的过程中制造的Leon2 FT,使其成为极其恶劣环境的非常低功率80C51。使用严苛的过程硬化允许使用标准设计工具和高级攻击性低功耗技术。即使这里使用的SOI1μM技术非常大,在本工作中获得的结果表明,它可以通过使用功率饥饿的Tripple模块化冗余来竞争具有0.18μm的低功耗微控制器。然而,这种恶劣的过程方法提供了更好的看宽容。

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