扭矩
转换器
隧道磁电阻
计算机科学
功率消耗
电子工程
加速度
航程(航空)
功率(物理)
CMOS芯片
电气工程
数字信号处理
信号(编程语言)
财产(哲学)
旋转扭矩传递
信号处理
感应耦合
随机数生成
接口(物质)
工程类
隧道枢纽
逻辑门
数字信号处理器
材料科学
物理
非线性系统
作者
Xiaohan Li,Yingqian Xu,Ran Zhang,Caihua Wan,S. L. Xiong,D. H. Kong,J. H. Xia,Guoqiang Yu,Xiufeng Han
摘要
Analog-to-digital converters (ADCs) serve as a crucial interface between the physical and digital worlds, playing an essential role across a wide range of applications. However, achieving an ADC that simultaneously offers high speed, high resolution, and low power consumption remains a significant challenge. Recent advances in spintronics, particularly in spin–orbit torque magnetic tunnel junctions (SOT-MTJs), have shown significant promise for the development of true random number generators (TRNGs). In this study, we propose and demonstrate an ADC architecture based on SOT-MTJ-driven TRNGs with tunable resolution. We experimentally verify the stochastic switching behavior of SOT-MTJs and utilize this property to implement a resolution-adjustable ADC. Circuit-level simulations implemented on a Field-Programmable Gate Array platform confirm the feasibility of the proposed design. Our results further broaden the application of SOT-MTJs, which may play an important role in external signal processing and artificial intelligence hardware acceleration in the future.
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