首页> 外文会议>IEEE International Solid- State Circuits Conference >12.1 An FPGA-Accelerated Fully Nonvolatile Microcontroller Unit for Sensor-Node Applications in 40nm CMOS/MTJ-Hybrid Technology Achieving 47.14μW Operation at 200MHz
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12.1 An FPGA-Accelerated Fully Nonvolatile Microcontroller Unit for Sensor-Node Applications in 40nm CMOS/MTJ-Hybrid Technology Achieving 47.14μW Operation at 200MHz

机译:12.1 FPGA加速的完全非易失性微控制器单元,用于40nm CMOS / MTJ混合技术中的传感器节点应用,在200MHz时可实现47.14μW

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Recently, the demand for low-power, high-performance microcontroller units (MCUs) for power-supply-critical sensor node applications has been increasing. In response to this demand, the use of nonvolatile memory elements for realizing MCUs for sensor node applications has been actively researched and developed. The latest nonvolatile MCUs (NV-MCUs) demonstrated 32b operation at 30MHz [1] and 8b operation at 100MHz [2]. However, this performance level is not suitable for sensor node applications that process large numbers of received signals and extract valuable information from them immediately to reduce the amount of transfer data to a data center. The use of various nonvolatile devices has also been proposed. However, these devices exhibit critical drawbacks when applied to sensor node applications, including limited endurance and low compatibility with standard CMOS. A spintronics-based nonvolatile device with unlimited endurance, a short switching time, and CMOS compatibility is a promising candidate for designing a low-power, high-performance NV-MCU.
机译:最近,对电源关键型传感器节点应用的低功率,高性能微控制器单元(MCU)的需求不断增长。响应于该需求,已经积极地研究和开发了使用非易失性存储元件来实现用于传感器节点应用的MCU。最新的非易失性MCU(NV-MCU)展示了32b在30MHz [1]下的工作以及8b在100MHz [2]上的工作。但是,此性能级别不适用于处理大量接收信号并立即从中提取有价值的信息以减少传输到数据中心的数据量的传感器节点应用程序。还已经提出了各种非易失性设备的使用。但是,这些设备在应用于传感器节点应用时会表现出严重的缺陷,包括有限的耐用性和与标准CMOS的低兼容性。基于自旋电子学的非易失性器件具有无限的耐用性,较短的切换时间和CMOS兼容性,是设计低功耗,高性能NV-MCU的有希望的候选者。

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