基于单片机的忆阻器表征专用硬件接口电路的研制

Robinson De La Fuente, I. Vourkas, M. Pérez
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引用次数: 2

摘要

在过去十年中,阻性开关器件(忆阻器)技术的发展显示出这种新兴纳米电子器件在从存储到计算和传感等几个潜在应用领域的巨大潜力。随着忆阻器技术的不断成熟,越来越多的器件可以在商业上使用,从而为从事相关研究课题的研究人员以及希望在课堂上进行忆阻器相关实验的大学教学实验室和学者提供便利。然而,对忆阻器电路的实验工作需要特别小心和监督,因为这种器件既高度敏感(即,很容易烧坏),而且与其他分立电路元件相比仍然相当昂贵。在这种情况下,开发集成仪器解决方案,为使用忆阻器的实验工作提供安全的方法变得越来越重要,并且一些这样的工具已经进入市场。在这个方向上,我们展示了我们在设计和开发仪器印刷电路板(PCB)方面的一些早期结果,旨在为忆阻器的测量提供一个特别的低成本解决方案。PCB上的驱动电路通过基于微控制器的系统进行接口,为各种测量提供了方便的编程和采集。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
On the Development of MCU-based ad hoc HW Interface Circuitry for Memristor Characterization
The evolution of resistive switching device (memristor) technology during the last ten years has shown the great potential of such emerging nanoelectronic devices in several potential applications, ranging from memory to computing and sensing. As memristor technology is continuously maturing, more devices become commercially available and thus accessible to investigators working on relevant research topics, as well as to university teaching labs and academics who wish to incorporate memristor-related experiments in their classrooms. However, experimental work on circuits with memristors requires particular caution and supervision, given that such devices are both highly sensitive (i.e., can easily burn out) and still quite expensive compared to other discrete circuit components. In this context, the development of integrated instrumentation solutions that provide a safe way to experimental work with memristors is becoming increasingly relevant, and some such tools have already reached the market. In this direction, we present some early results from our experience on the design and development of an instrumentation printed circuit board (PCB), designed to provide an ad hoc low-cost solution for measurements on memristors. The driving circuitry on the PCB is interfaced through a microcontroller-based system, providing easy programming and acquisition for a variety of measurements.
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