DocumentCode
146248
Title
On circuit design of on-chip non-blocking interconnection networks
Author
Yikun Jiang ; Mei Yang
Author_Institution
Dept. of Electr. & Comput. Eng., Univ. of Nevada, Las Vegas, NV, USA
fYear
2014
fDate
2-5 Sept. 2014
Firstpage
192
Lastpage
197
Abstract
Single-hop non-blocking networks have the advantage of providing uniform latency and throughput, which is important for cache-coherent many-core systems. This paper focuses on high performance circuit designs of multi-stage non-blocking networks as alternatives to crossbars. Existing work shows that Benes networks have much lower transistor count and smaller circuit area but longer delay than crossbars. To reduce the timing delay, we propose to design the Clos network built with larger size switches. Using less than half number of stages than the Benes network, the Clos network with 4×4 switches can significantly reduce the timing delay. The circuit designs of both Benes and Clos networks in different sizes are conducted considering two types of implementation of the configurable switch: with NMOS transistors only and full transmission gates (TGs). The layout and simulation results under 45nm technology show that the TG-based implementation demonstrates much better signal integrity than its counterpart. Clos networks achieve average 65% lower timing delay than Benes networks with even smaller area and power consumption.
Keywords
integrated circuit layout; microprocessor chips; multistage interconnection networks; Benes network; Clos network; NMOS transistor; cache coherent many core system; configurable switch; full transmission gate; multistage nonblocking network; on-chip nonblocking interconnection networks; on-circuit design; single-hop nonblocking network; size 45 nm; Delays; Layout; MOSFET; Ports (Computers); Power demand; Benes; Cadence Virtuoso; Clos; Crossbars; Layout; Network-on-Chip (NoC); Schematic;
fLanguage
English
Publisher
ieee
Conference_Titel
System-on-Chip Conference (SOCC), 2014 27th IEEE International
Conference_Location
Las Vegas, NV
Type
conf
DOI
10.1109/SOCC.2014.6948925
Filename
6948925
Link To Document