Superconducting Asynchronous Logic for Ultra-low Power High Performance Computing
High performance computing is bottlenecked by increasing power demands and memory bandwidth, while superconducting electronics are bounded in circuit complexity due to a limit on the number of switching devices on a single chip. This thesis proposes a modular, asynchronous superconducting computing...
Main Author: | Blackburn, L. Camron |
---|---|
Other Authors: | Gershenfeld, Neil |
Format: | Thesis |
Published: |
Massachusetts Institute of Technology
2022
|
Online Access: | https://hdl.handle.net/1721.1/142825 https://orcid.org/0000-0002-7435-3840 |
Similar Items
-
Ultra low power asynchronous-logic quasi-delay-insensitive circuit design
by: Ho, Weng Geng
Published: (2016) -
Ultra low-power asynchronous-logic design for high variation-space and wide operation-space applications
by: Lin, Tong
Published: (2014) -
Design of ultra-low power asynchronous-logic quasi-delay-insensitive circuit templates
by: Chng, Clive Kuan Nee.
Published: (2011) -
An ultra-low power asynchronous-logic in-situ self-adaptive VDD system for wireless sensor networks
by: Lin, Tong, et al.
Published: (2013) -
Design methodologies for low-power asynchronous-logic digital systems
by: Law, Chong Fatt
Published: (2011)