DocumentCode :
3431013
Title :
Synfinity II-a high-speed interconnect with 2 GBytes/sec self-configurable physical link
Author :
Koyanagi, Yoichi ; Horie, Takeshi ; Miyoshi, Takashi ; Ishii, Mitsuo
Author_Institution :
Fujitsu Labs. of America Inc., Sunnyvale, CA, USA
fYear :
2001
fDate :
2001
Firstpage :
23
Lastpage :
29
Abstract :
We developed a high-speed low-latency interconnect chipset, Synfinity II. It is aimed to provide a common interconnect infrastructure which is applicable to connect microprocessors, memories, I/O devices and storage/network subsystems. To build a high-performance system, not only high bandwidth but also low latency is required for the interconnect. Moreover RAS (reliability, availability, serviceability) features are key attributes for high quality data communication. Synfinity II interconnect is designed to achieve following goals: high-bandwidth and low-latency data transfer, scalable and flexible architecture, RAS features, and cost effectiveness. This paper describes how we achieved these goals in Synfinity II. Details of the 2 GBytes/sec/direction physical link, the interface chip, MIC2, and the six-port switch chip, Router2, are also explained. The switch chip Router2 provides 24 Gbytes/sec aggregate bandwidth. These chips performed stable data transfer and the RAS functions were confirmed in the workstation cluster system
Keywords :
computer interfaces; data communication equipment; multiprocessor interconnection networks; 2 GBytes/sec self-configurable physical link; I/O devices; MIC2; RAS functions; Router2; Synfinity II; cost effectiveness; high-speed interconnect; interface chip; low-latency interconnect chipset; memories; microprocessors; storage/network subsystems; switch chip Router2; workstation cluster system; Aggregates; Availability; Bandwidth; Costs; Data communication; Delay; Microprocessors; Switches; Telecommunication network reliability; Workstations;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Hot Interconnects 9, 2001.
Conference_Location :
Stanford, CA
Print_ISBN :
0-7695-1357-3
Type :
conf
DOI :
10.1109/HIS.2001.946689
Filename :
946689
Link To Document :
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