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Frequency Limitation Due to Switching Transition of the Bias Current in Bidirectional RSFQ Logic

机译:频率限制由于双向RSFQ逻辑偏置电流的切换转换

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Switching time limitations of the ac bias current of Josephson junctions in bidirectional rapid single flux quantum (RSFQ) logic circuits are investigated in order to determine the limits to the maximum possible operating frequency. We introduce a new approach based on modifying the bias current parameters and determining the inductance values in the circuit for reducing the switching transition time of the bias current through the junctions. We have simulated and optimized the timing and the operation of the bidirectional nondestructive readout and Josephson transmission line cells in this respect to demonstrate the results of utilizing the proposed approach. We successfully reduced the unwanted spike-type signals across the inductances which are made through the transitions during the fast switching times limiting the operation frequency. This is while we have also removed the consequent destructive spikes at the output. We have included the effects of other determining parameters of the circuit in this investigation and found their relatively optimal values to improve the temporal behavior of the bidirectional RSFQ cells. The results of the proposed approach leading to the fastest possible operation of the considered gates obtained in this work are thoroughly reported.
机译:研究了双向快速单磁通量子(RSFQ)逻辑电路的Josephson结的交流偏置电流的切换时间限制,以确定对最大可能工作频率的限制。我们介绍了一种基于修改偏置电流参数的新方法,并确定电路中的电感值,以降低通过结的偏置电流的切换转变时间。我们已经模拟和优化了双向非破坏性读数和约瑟夫森传输线单元的时序和操作,以证明利用所提出的方法的结果。我们在快速切换时间内限制了操作频率的快速切换时间期间,我们成功地降低了通过转换的电感的不需要的峰值型信号。这是我们在输出时删除了随后的破坏性尖峰。我们已经包括其他确定电路的效果在本研究中,并发现它们相对优选的值来提高双向RSFQ细胞的时间行为。彻底报道了所提出的方法的结果,该方法导致在本作品中获得的考虑门的最快运行。

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