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Microelectromechanical reprogrammable logic device

机译:微机电可重编程逻辑器件

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摘要

In modern computing, the Boolean logic operations are set by interconnect schemes between the transistors. As the miniaturization in the component level to enhance the computational power is rapidly approaching physical limits, alternative computing methods are vigorously pursued. One of the desired aspects in the future computing approaches is the provision for hardware reconfigurability at run time to allow enhanced functionality. Here we demonstrate a reprogrammable logic device based on the electrothermal frequency modulation scheme of a single microelectromechanical resonator, capable of performing all the fundamental 2-bit logic functions as well as n-bit logic operations. Logic functions are performed by actively tuning the linear resonance frequency of the resonator operated at room temperature and under modest vacuum conditions, reprogrammable by the a.c.-driving frequency. The device is fabricated using complementary metal oxide semiconductor compatible mass fabrication process, suitable for on-chip integration, and promises an alternative electromechanical computing scheme.
机译:在现代计算中,布尔逻辑运算是通过晶体管之间的互连方案设置的。随着组件级别的小型化以提高计算能力正在迅速接近物理极限,因此人们积极地寻求替代的计算方法。未来计算方法中的期望方面之一是在运行时提供硬件可重新配置性以允许增强的功能。在这里,我们演示了基于单个微机电谐振器的电热频率调制方案的可重编程逻辑器件,该器件能够执行所有基本的2位逻辑功能以及n位逻辑运算。逻辑功能是通过主动调节在室温和适度真空条件下工作的谐振器的线性谐振频率来实现的,该线性谐振频率可通过交流驱动频率重新编程。该器件采用互补金属氧化物半导体兼容的大规模制造工艺制造,适用于片上集成,并有望提供一种替代的机电计算方案。

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