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Review on Physically Flexible Nonvolatile Memory for Internet of Everything Electronics

机译:面向万物互联电子的物理灵活非易失性存储器综述

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Solid-state memory is an essential component of the digital age. With advancements in healthcare technology and the Internet of Things (IoT), the demand for ultra-dense, ultra-low-power memory is increasing. In this review, we present a comprehensive perspective on the most notable approaches to the fabrication of physically flexible memory devices. With the future goal of replacing traditional mechanical hard disks with solid-state storage devices, a fully flexible electronic system will need two basic devices: transistors and nonvolatile memory. Transistors are used for logic operations and gating memory arrays, while nonvolatile memory (NVM) devices are required for storing information in the main memory and cache storage. Since the highest density of transistors and storage structures is manifested in memories, the focus of this review is flexible NVM. Flexible NVM components are discussed in terms of their functionality, performance metrics, and reliability aspects, all of which are critical components for NVM technology to be part of mainstream consumer electronics, IoT, and advanced healthcare devices. Finally, flexible NVMs are benchmarked and future prospects are provided.
机译:固态存储器是数字时代的重要组成部分。随着医疗保健技术和物联网(IoT)的发展,对超高密度,超低功耗内存的需求正在增长。在这篇综述中,我们对制造物理上灵活的存储设备的最著名方法提出了一个全面的观点。为了将来用固态存储设备代替传统的机械硬盘,一个完全灵活的电子系统将需要两个基本设备:晶体管和非易失性存储器。晶体管用于逻辑运算和门控存储器阵列,而非易失性存储器(NVM)设备则需要在主存储器和缓存存储器中存储信息。由于晶体管和存储结构的最高密度体现在存储器中,因此本文的重点是灵活的NVM。讨论了灵活的NVM组件的功能,性能指标和可靠性方面,所有这些都是NVM技术成为主流消费电子,IoT和高级医疗设备的一部分的关键组件。最后,对灵活的NVM进行基准测试,并提供未来的前景。

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