An energy-efficient 32-bit bit-parallel superconducting SFQ specialized processor

IF 5.6 Q1 ENGINEERING, ELECTRICAL & ELECTRONIC Superconductivity Pub Date : 2024-06-01 DOI:10.1016/j.supcon.2024.100099
Peiyao Qu , Huanli Liu , Xiangyu Zheng , Jiahong Yang , Liliang Ying , Jie Ren , Haihang You , Guangming Tang
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Abstract

As the demand for energy efficiency rises, researchers are increasingly prioritizing the quest for energy-efficient chip design. Superconducting SFQ circuit technology has garnered attention due to its ultra-high speed and low power consumption characteristics. In this paper, we propose a layout method called Maximum Operating Frequency Constraint (MOFC) for SFQ circuit design. Using this method, we demonstrated a 32-bit bit-parallel string-matching processor fabricated based on SIMIT-Nb03P technology, which holds practical value. The MOFC method focuses on achieving high bit-width processor design within constrained area cost in SFQ circuits, contributing to less energy consumption. To the best of our knowledge, this represents the first demonstrated instance of a superconducting SFQ chip achieving successful internal 32-bit data parallel processing. Our chip has been fabricated and tested, revealing not only its capability for 32-bit bit-parallel processing at a high speed of 12 GHz but also its achievement of an energy efficiency ratio of up to 251 GOPS/W.

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高能效 32 位并行超导 SFQ 专用处理器
随着对能源效率要求的不断提高,研究人员越来越把追求高能效芯片设计放在首位。超导 SFQ 电路技术因其超高速和低功耗特性而备受关注。在本文中,我们为 SFQ 电路设计提出了一种名为 "最大工作频率约束(MOFC)"的布局方法。利用这种方法,我们展示了基于 SIMIT-Nb03P 技术制造的 32 位并行串匹配处理器,该处理器具有实用价值。MOFC 方法的重点是在 SFQ 电路的有限面积成本内实现高位宽处理器设计,从而降低能耗。据我们所知,这是超导 SFQ 芯片首次成功实现内部 32 位数据并行处理。我们的芯片已经制作完成并通过了测试,不仅显示出它能够以 12 GHz 的高速进行 32 位并行处理,而且还实现了高达 251 GOPS/W 的能效比。
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