DocumentCode
920838
Title
46 Gb/s DEMUX, 50 Gb/s MUX, and 30 GHz static frequency divider in silicon bipolar technology
Author
Felder, Alfred ; Möller, Michael ; Popp, Jösef ; Böck, Josef ; Rein, Hans-Martin
Author_Institution
Corp. Res. & Dev., Siemens AG, Munich, Germany
Volume
31
Issue
4
fYear
1996
fDate
4/1/1996 12:00:00 AM
Firstpage
481
Lastpage
486
Abstract
High-speed multiplexers, demultiplexers, and static frequency dividers are key electronic components in future optical broadband communication systems. In this paper we present a 50 Gb/s multiplexer, a 46 Gb/s demultiplexer, and a 30 GHz static frequency divider. The IC´s were fabricated in a self-aligning double-polysilicon bipolar technology using state-of-the-art production process modules. The achieved results are record speeds not only for silicon, but, except for the static divider, for all semiconductor technologies. The high performance of this chipset shows that circuits in silicon bipolar technology will play an important role in future multigigabit-per-second fiber-optic communication systems, at data rates of 20 Gb/s or even at 40 Gb/s
Keywords
SONET; bipolar digital integrated circuits; broadband networks; demultiplexing equipment; digital communication; elemental semiconductors; frequency dividers; integrated circuit measurement; multiplexing equipment; optical communication equipment; optical fibre communication; silicon; synchronous digital hierarchy; 30 GHz; 46 Gbit/s; 50 Gbit/s; SONET/SDH; Si; demultiplexers; multigigabit-per-second communication; multiplexers; optical broadband communication systems; optical fibre communication; production process modules; self-aligning double-polysilicon bipolar technology; static frequency divider; Bipolar integrated circuits; Broadband communication; Electronic components; Frequency conversion; High speed optical techniques; Multiplexing; Optical devices; Optical frequency conversion; Optical recording; Silicon;
fLanguage
English
Journal_Title
Solid-State Circuits, IEEE Journal of
Publisher
ieee
ISSN
0018-9200
Type
jour
DOI
10.1109/4.499723
Filename
499723
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