超导磁场可编程门阵列的可重构逻辑单元

N. Katam, Haolin Cong, M. Pedram
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引用次数: 0

摘要

现场可编程门阵列(fpga)是半导体工业中最成功的电路之一。在快速单通量量子(RSFQ)技术缺乏可靠的MOSFET三端开关的情况下,很难实现像FPGA这样的可重构电路。然而,最近提出的超导磁FPGA (SMFPGA)通过控制放置在节能RSFQ偏置网络中的磁约瑟夫森结(MJJs)的临界电流来实现可控开关。为了实现具有较小面积的可配置逻辑块(CLB),我们设计了一个可重构门,可以实现四种基本逻辑功能:AND, OR, XOR和NOT。实现这四个功能的可编程性是通过在电路的特定位置引入mjs并对其临界电流进行编程来实现的。通过能够将不同端口的偏置电流和闸内JJ的临界电流改变为两个不同的值,栅极可以重新配置。这使得CLB的尺寸比早期设计小十倍,并简化了SMFPGA。我们描述了可重构门的设计方法和仿真结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reconfigurable Logic Cell for Superconducting Magnetic Field Programmable Gate Array
Field Programmable gate arrays (FPGAs) are one of the most successful circuits in the semiconductor industry. In the absence of a reliable three-terminal switch like MOSFET for rapid single flux quantum(RSFQ) technology, it was difficult to implement FPGA like reconfiguralbe circuits. However, a recently proposed superconducting magnetic FPGA (SMFPGA) implements a controllable switch by controlling the critical current of magnetic Josephson Junctions (MJJs) placed in energy-efficient RSFQ bias network. For implementing a configurable logic block (CLB) with a smaller area for the said FPGA, we designed a reconfigurable gate that can implement four basic logical functions: AND, OR, XOR and NOT. The programmability to implement the four functions is achieved by introducing MJJs in the circuit at specific locations and programming their critical current. The gate is made reconfigurable by having the ability to change both the bias current at different ports and the critical current of a JJ in the gate to two different values. This makes the size of CLB ten times smaller compared to the earlier design and simplifies the SMFPGA. We describe the design methodology and the simulation results of the reconfigurable gate.
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