用于存储和计算的多操作模式铁电通道器件

Yibo Sun, Shuiyuan Wang, Xiaozhang Chen, Zhenhan Zhang, Peng Zhou
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引用次数: 2

摘要

传统的冯·诺伊曼架构将内存与中央处理器(CPU)分开,导致在数据量激增时CPU和内存之间的数据传输瓶颈加剧。新兴技术,如内存计算(IMC),为克服内存和计算分离所带来的限制提供了一种新的方法。然而,现有的IMC工作通常局限于单一(门控或漏控)操作模式来实现功能。本文提出了一种能够实现多工作模式的二维铁电通道器件。此外,通过切换操作模式实现了丰富的功能,如逻辑、非易失性存储器和模拟神经可塑性调制。提供了一种促进多模式操作的设备,并为新兴计算体系结构的进一步发展提供了一种有前途的技术解决方案。
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Multioperation Mode Ferroelectric Channel Devices for Memory and Computation
The traditional von Neumann architecture separates memory from the central processing unit (CPU), resulting in aggravated data transfer bottlenecks between the CPU and memory during a data volume surge. Emerging technologies, such as in‐memory computing (IMC), provide a new way to overcome the limitations due to the separation of memory and computation. However, existing IMC efforts are generally limited to a single (gate‐control or drain‐control) mode of operation to achieve functionality. Herein, a 2D ferroelectric channel device that enables the feasibility of multioperation modes is proposed. In addition, rich functionalities, such as logic, nonvolatile memory, and neuromimetic plasticity modulation, by switching the operating modes are realized. A device that facilitates multimodal operations and a promising technical solution for further development of burgeoning computing architecture is provided.
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