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A Content-Addressable Memory Structure using Novel Majority Gate with 5-input in Quantum-dot Cellular Automata

机译:一种内容可寻址的内存结构,使用具有5输入量子点蜂窝自动机的多个大门

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Quantum-dot Cellular Automata (QCA) technology is one of the most important new nanotechnologies and is a suitable replacement for CMOS circuits. Majority gate and Inverter are the primary building blocks in QCA circuits. Content Addressable Memory (CAM) is a type of memory used in applications that require high speed. In this paper, a novel five input majority gate is introduced. This gate is simulated with QCADesigner tool and compared with previous same structures. Then, the proposed gate used to design a CAM cell in a single layer after deriving the minority gate from the proposed majority gate. The proposed CAM cell has a simple and robust structure and does not require wire crossover, also it reduces circuit complexity by 7% in term of cell count compared to existing structures.
机译:量子点蜂窝自动机(QCA)技术是最重要的新型纳米技术之一,是CMOS电路的合适替代品。大多数门和逆变器是QCA电路中的主要构建块。内容可寻址存储器(CAM)是需要高速的应用中使用的内存类型。本文介绍了一种新颖的五种输入多数门。使用QCadeIgner工具模拟该门,并与先前相同的结构进行比较。然后,在从所提出的多数栅极导出少数栅极之后,所提出的栅极用于在单层中设计凸轮电池。所提出的凸轮电池具有简单且稳健的结构,并且不需要电线交叉,而且与现有结构相比,电池计数期间,它的电路复杂度降低了7%。

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