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Superconductive electronics-a high speed and low power technology complementing III-V technologies for advanced systems

机译:超导电子产品 - 一种高速和低功率技术补充III-V技术为先进系统

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Superconductive electronics offers a unique combination of high bandwidth and low power for mission critical hardware such as digital processors at 20 to 100 GHz, microwatt per bit analog to digital converters, large digital switches at multi-Gb/s data rates, and low noise parametric amplifiers. This cryogenic technology, typically operating at a few degrees or a few tens of degrees Kelvin, depends upon the unique physics of superconducting materials such as Nb, NbN, and YBaCuO, and the fundamental circuit element, the Josephson junction (JJ) to create unique architectures of unprecedented design efficiency and performance. These circuits are based on the single flux quantum (SFQ) logic family, a technology that has no parallel in semiconductor electronics. Digital data is transmitted by voltage pulses with amplitude less than 1 mV, but at extremely high speeds. Individual gates have been operated as high as 370 GHz. In this paper, we present a brief overview of superconductive digital technology, describe some recent circuits, and discuss how the challenges to superconductive technology are being met, including the use of multi-chip module (MCM) technology, and the potential use of III-V HBT and HEMT circuits to provide interface drivers and amplifiers, possibly operated cryogenically.
机译:超导电子设备提供了高带宽和低功耗的独特组合,可用于20到100 GHz的数字处理器,每位数量转换器,Microwatt,多GB / S数据速率的大量数字开关,以及低噪声参数放大器。此深冷技术,通常在几度或几十开氏度的操作,取决于超导材料,如Nb的,氮化铌,和YBaCuO,其根本电路元件的独特物理,该约瑟夫逊结(JJ)来创建独特前所未有的设计效率和性能的架构。这些电路基于单磁通量子(SFQ)逻辑系列,该技术在半导体电子器件中没有平行的技术。数字数据由电压脉冲传输,幅度小于1 mV,但在极高的速度下。个人门已高达370 GHz。在本文中,我们介绍了超导数字技术的简要概述,描述了一些最近的电路,并讨论了如何满足对超导技术的挑战,包括使用多芯片模块(MCM)技术,以及III的潜在使用-V HBT和HEMT电路提供界面驱动器和放大器,可能会低温操作。

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