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A microprocessor based on a two-dimensional semiconductor

机译:基于二维半导体的微处理器

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摘要

The advent of microcomputers in the 1970s has dramatically changed our society. Since then, microprocessors have been made almost exclusively from silicon, but the ever-increasing demand for higher integration density and speed, lower power consumption and better integrability with everyday goods has prompted the search for alternatives. Germanium and III–V compound semiconductors are being considered promising candidates for future high-performance processor generations and chips based on thin-film plastic technology or carbon nanotubes could allow for embedding electronic intelligence into arbitrary objects for the Internet-of-Things. Here, we present a 1-bit implementation of a microprocessor using a two-dimensional semiconductor—molybdenum disulfide. The device can execute user-defined programs stored in an external memory, perform logical operations and communicate with its periphery. Our 1-bit design is readily scalable to multi-bit data. The device consists of 115 transistors and constitutes the most complex circuitry so far made from a two-dimensional material.
机译:1970年代微型计算机的出现极大地改变了我们的社会。从那时起,微处理器几乎完全由硅制成,但是对更高集成密度和速度,更低功耗以及与日用品的更好集成性的不断增长的需求促使人们寻求替代方案。锗和III-V化合物半导体被认为是未来高性能处理器世代的有前途的候选者,基于薄膜塑料技术或碳纳米管的芯片可以将电子智能嵌入物联网的任意对象中。在这里,我们介绍了使用二维半导体-二硫化钼的微处理器的1位实现。该设备可以执行存储在外部存储器中的用户定义程序,执行逻辑操作并与其外围设备进行通信。我们的1位设计易于扩展到多位数据。该器件由115个晶体管组成,构成了迄今为止由二维材料制成的最复杂的电路。

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