We produced a large-throughput optical interconnection for a distributedparallel computing system. It transmits optical data at a rate of over 800-Mbit/s/spl times/10-bit through a 50-m single-mode fiber, using a CMO...
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We produced a large-throughput optical interconnection for a distributedparallel computing system. It transmits optical data at a rate of over 800-Mbit/s/spl times/10-bit through a 50-m single-mode fiber, using a CMOS MUX/DEMUX and retiming circuits. We measured the BER to be less than 10/sup -9/.
We produced a large-throughput optical interconnection for a distributedparallel computing system. It transmits optical data at a rate of over 800-Mbit/s×10-bit through a 50-m single-mode fiber, using a CMOS MUX...
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With the aim of producing a switch LSI with several-hundred-Gb/s-class throughput, we first developed LAN-LSIs with 10-Gb/s-class optical input/output (I/O) buffer. The optical I/O buffer was supplied as a set consist...
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With the aim of producing a switch LSI with several-hundred-Gb/s-class throughput, we first developed LAN-LSIs with 10-Gb/s-class optical input/output (I/O) buffer. The optical I/O buffer was supplied as a set consisting of an optical-electrical package, soft or hard macros of the optical interface, and library files for a targeted CMOS technology. Using such library files, system LSI designers can implement an optical interface in their chips in a conventional design manner.
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