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Digital Filters Built of Locally Connected Nanoelectronic Devices

机译:数字滤波器内置本地连接的纳米电子器件

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This paper presents an architecture of digital wave filters for processing bit-stream signals with nanoelectronic devices. We use three kinds of circuit modules for the filters. One of the modules is an integer delay built of unit delay cells connected in series. The rest of the modules are two types of adders based on bit-sorting networks which are built by connecting AND-OR gate pair cells regularly and locally. Using only the three modules we construct bandpass and band-elimination digital wave filters in which the circuit cells are connected locally. This local-connection architecture helps to surmount some difficulties in applying nanoelectronic devices. We designed a building block for the filters with quantum-dot cellular automata (QCA) and simulated its filtering operation. The simulation results show that the filter responds as we theoretically estimated.
机译:本文介绍了数字波滤波器的架构,用于处理具有纳米电子器件的比特流信号。我们为滤波器使用三种电路模块。其中一个模块是由串联连接的单元延迟单元构成的整数延迟。该模块的其余部分是基于位分拣网络的两种类型的添加剂,该网络通过定期和本地连接和栅极对单元而构建。仅使用三个模块,我们构建带通和消除数字波滤波器,其中电路电池在本地连接。这种本地连接架构有助于超越应用纳米电子器件的一些困难。我们为具有量子点蜂窝自动机(QCA)的过滤器设计了一个构建块,并模拟其过滤操作。仿真结果表明,滤波器随着理论估计的响应。

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