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Novel asynchronous registers for sequential circuits with quantum-dot cellular automata

机译:用于具有量子点细胞自动机的时序电路的新型异步寄存器

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Quantum-dot cellular automata (QCA) are nano-scale devices for implementing logic circuits. The disadvantage of QCA circuits is that its layout determines the timing of the circuit. This is the “layout = timing” problem in QCA circuits. Null convention logic (NCL) has been proposed as a solution to this problem. However the asynchronous registers used in NCL are bulky and require a large number of QCA cells. We propose a new architecture for these asynchronous registers that results in a 75% decrease in the number of QCA cells used in them. At the heart of the new register is a newly designed threshold gate. We have used the proposed register to implement an NCL-based serial adder. This new adder is fully asynchronous and therefore solves the “layout = timing” problem to a large extent. Our new adder also requires fewer QCA cells than previously proposed serial adders.
机译:量子点细胞自动机(QCA)是用于实现逻辑电路的纳米级设备。 QCA电路的缺点在于其布局决定了电路的时序。这是QCA电路中的“布局=时序”问题。空约定逻辑(NCL)已被提出来解决此问题。但是,NCL中使用的异步寄存器体积庞大,并且需要大量QCA单元。我们为这些异步寄存器提出了一种新的架构,该架构可使它们使用的QCA单元数量减少75%。新寄存器的核心是新设计的阈值门。我们已经使用建议的寄存器来实现基于NCL的串行加法器。这个新的加法器是完全异步的,因此在很大程度上解决了“布局=时序”问题。我们的新加法器还比以前建议的串行加法器需要更少的QCA单元。

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