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首页> 外文期刊>Journal of Computational Electronics >Energy-efficient magnetic 5:2 compressors based on SHE-assisted hybrid MTJ/FinFET logic
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Energy-efficient magnetic 5:2 compressors based on SHE-assisted hybrid MTJ/FinFET logic

机译:基于SHE辅助MTJ / FinFET混合逻辑的节能5:2磁性压缩机

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摘要

Energy dissipation in integrated circuits has become a matter of grave concern. Various approaches at different levels of abstraction such as logic-in-memory structures based on magnetic tunnel junction (MTJ) devices and approximate computing can be employed to reduce energy consumption. Efficient hybrid MTJ/FinFET designs for exact and approximate 5:2 compressors are proposed herein. The proposed designs use the spin Hall effect (SHE)-assisted writing method to store data in MTJs, which significantly improves the energy efficiency of the MTJ switching as compared with the conventional spin transfer torque (STT) method. The circuits are simulated in HSPICE using 7-nm FinFET and SHE perpendicular MTJ models. The results indicate that the proposed approximate designs provide significant improvements in terms of energy consumption and device count compared with their exact counterpart. The first and second proposed approximate designs improve the power consumption by 51%, read delay by 16% and 26%, and transistor count by 63% and 70%, respectively, as compared with the exact design. The second approximate compressor offers a significantly lower error rate (27% versus 48%) in comparison with the first approximate design, as well as better performance parameters. The imprecise 5:2 compressors are used in image processing applications to assess their accuracy metrics. Comprehensive MATLAB simulations indicate that the proposed approach provides great capabilities for image processing applications considering various accuracy and quality metrics.
机译:集成电路中的能量耗散已经成为严重关注的问题。可以采用处于不同抽象级别的各种方法(例如基于磁隧道结(MTJ)器件的内存中逻辑结构和近似计算)来减少能耗。本文提出了用于精确和近似5:2压缩机的高效混合MTJ / FinFET设计。拟议的设计使用自旋霍尔效应(SHE)辅助写入方法将数据存储在MTJ中,与传统的自旋传递扭矩(STT)方法相比,这大大提高了MTJ开关的能量效率。在HSPICE中使用7纳米FinFET和SHE垂直MTJ模型对电路进行仿真。结果表明,与精确的同类设计相比,拟议的近似设计在能耗和设备数量方面提供了显着的改进。与精确设计相比,第一种和第二种提议的近似设计分别将功耗降低了51%,读取延迟提高了16%和26%,晶体管数量分别提高了63%和70%。与第一个近似设计相比,第二个近似压缩机提供了明显更低的错误率(27%比48%),以及更好的性能参数。不精确的5:2压缩器用于图像处理应用程序,以评估其精度指标。全面的MATLAB仿真表明,考虑到各种精度和质量指标,所提出的方法为图像处理应用程序提供了强大的功能。

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