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Interconnect-free parallel logic circuits in a single mechanical resonator

机译:单个机械谐振器中的无互连并行逻辑电路

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摘要

In conventional computers, wiring between transistors is required to enable the execution of Boolean logic functions. This has resulted in processors in which billions of transistors are physically interconnected, which limits integration densities, gives rise to huge power consumption and restricts processing speeds. A method to eliminate wiring amongst transistors by condensing Boolean logic into a single active element is thus highly desirable. Here, we demonstrate a novel logic architecture using only a single electromechanical parametric resonator into which multiple channels of binary information are encoded as mechanical oscillations at different frequencies. The parametric resonator can mix these channels, resulting in new mechanical oscillation states that enable the construction of AND, OR and XOR logic gates as well as multibit logic circuits. Moreover, the mechanical logic gates and circuits can be executed simultaneously, giving rise to the prospect of a parallel logic processor in just a single mechanical resonator.
机译:在常规计算机中,需要晶体管之间的布线以实现布尔逻辑功能的执行。这导致处理器中数十亿个晶体管物理互连,这限制了集成密度,导致巨大的功耗并限制了处理速度。因此,非常需要一种通过将布尔逻辑浓缩成单个有源元件来消除晶体管之间的布线的方法。在这里,我们演示了仅使用单个机电参量谐振器的新颖逻辑体系结构,其中二进制信息的多个通道被编码为不同频率下的机械振荡。参数谐振器可以混合这些通道,从而产生新的机械振荡状态,从而可以构建AND,OR和XOR逻辑门以及多位逻辑电路。此外,机械逻辑门和电路可以同时执行,这使得仅在一个机械谐振器中就可以使用并行逻辑处理器。

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