Title :
64-Gb/s highly reliable network switch (RHiNET-2/SW) using parallel optical interconnection
Author :
Nishimura, Shinji ; Kudoh, Tomohiro ; Nishi, Hiroaki ; Yamamoto, Junji ; Harasawa, Katsuyoshi ; Matsudaira, Nobuhiro ; Akutsu, Shigeto ; Amano, Hideharu
Author_Institution :
RWCP Opt. Interconnection Hitachi Lab., Tokyo, Japan
fDate :
12/1/2000 12:00:00 AM
Abstract :
RHiNET-2/SW is a network switch that enables high-performance optical network based parallel computing system in a distributed environment. The switch used in such a computing system must provide high-speed, low-latency packet switching with high reliability. Our switch allows high-speed 8-Gb/s/port optical data transmission over a distance of up to 100 m, and the aggregate throughput is 64 Gb/s. In RHiNET-2/SW, eight pairs of 800-Mb/s/spl times/12-channel optical interconnection modules and a one-chip CMOS ASIC switch LSI (a 784-pin BGA package) are mounted on a single compact board. To enable high-performance parallel computing, this switch must provide high-speed, highly reliable node-to-node data transmission. To evaluate the reliability of the switch, we measured the bit error rate (BER) and skew between the data channels. The BER of the signal transmission through one I/O port was better than 10/sup -11/ at a data rate of 800 Mb/s /spl times/10 b with a large timing-budget margin (870 ps) and skew of less than 140 ps. This shows that RHiNET-2/SW can provide high-throughput, highly reliable optical data transmission between the nodes of a network-based parallel computing system.
Keywords :
CMOS integrated circuits; application specific integrated circuits; data communication; electro-optical switches; integrated circuit reliability; integrated optoelectronics; large scale integration; multiprocessor interconnection networks; packet switching; parallel architectures; 12-channel optical interconnection modules; 140 ps; 64 Gbit/s; 8 Gbit/s; 800 Mbit/s; 870 ps; CMOS ASIC switch; Gb/s highly reliable network switch; aggregate throughput; bit error rate; computing system; distributed environment; high reliability; high-performance optical network; high-performance parallel computing; high-speed highly reliable node-to-node data transmission; high-speed low-latency packet switching; highly reliable optical data transmission; network-based parallel computing system; optical data transmission; parallel computing system; parallel optical interconnection; signal transmission; Aggregates; Bit error rate; Data communication; High speed optical techniques; Optical fiber networks; Optical interconnections; Optical packet switching; Optical switches; Packet switching; Parallel processing;
Journal_Title :
Lightwave Technology, Journal of