绝热电路
逻辑门
电子线路
逻辑族
数字电子学
绝热过程
物理
变压器
逆变器
快速单通量量子
加法器
约瑟夫森效应
电气工程
计算机科学
电子工程
超导电性
光电子学
工程类
量子力学
电压
CMOS芯片
作者
Naoki Takeuchi,Kota Arai,Nobuyuki Yoshikawa
标识
DOI:10.1088/1361-6668/ab87ad
摘要
Abstract Adiabatic superconductor logic (ASL) families are energy-efficient because they can operate with a switching energy much less than the I c Φ 0 product, where I c is the critical current for Josephson junctions, Φ 0 is the flux quantum, and I c Φ 0 is generally on the order of 10 –19 J. A switching energy of 0.03 I c Φ 0 has been demonstrated by adiabatic quantum-flux-parametron (AQFP) logic, which indicates the possibility of extremely energy-efficient digital circuits using ASL. ASL uses signal transformers to propagate and invert the signal current; otherwise, it is difficult to design inverters. However, signal transformers are generally difficult to miniaturize. Therefore, to realize high-density and energy-efficient superconductor circuits, ASL that does not use signal transformers is required. In this paper, we propose ASL without signal transformers, which we call directly coupled quantum-flux-parametron (DQFP). DQFP logic is based on AQFP, but it can invert signal current without using signal transformers. We conducted numerical simulation of a DQFP inverter chain to show that DQFP logic can invert signal current without signal transformers, and that DQFP logic can operate adiabatically. Then, we designed and fabricated basic DQFP circuits, such as an inverter chain and a full adder. All the circuits were found to have wide operating margins. Our results indicate that DQFP logic is suitable for high-density and energy-efficient superconductor circuits.
科研通智能强力驱动
Strongly Powered by AbleSci AI