DocumentCode
415960
Title
Low-cost optical sub-assemblies for metro access applications
Author
Hogan, William K. ; Wolf, Robert K. ; Shukla, Anand ; Deane, Phil
Author_Institution
Transmission Products Group, JDS Uniphase, Rochester, MN, USA
Volume
1
fYear
2004
fDate
1-4 June 2004
Firstpage
203
Abstract
The fiber optic communications industry is experiencing significant change as datacom 10 Gb/s Ethernet (10 GbE) networks merge with telecom SONET 10G networks in the drive to reach metro access applications. Lower data rate (1G Ethernet, 1G and 2G fiber channel, and SONET OC-48) applications have already merged to some extent as various versions are available within the SFF or SFP standard transceiver form factors. Traditional 10 Gb/s optical subassemblies (OSAs), developed for SONET OC-192 applications, used variations of the expensive butterfly type package. However, smaller form factor modules (such as the XFP that uses SFF optical connectors and LC duplex optical connectors) require much smaller OSAs. To meet the size limitation of packaging 10G OSAs into the XFP transceiver and also meet the 10 GbE market challenge of providing low-cost solutions, new 10 Gb/s OSA components are needed.
Keywords
SONET; local area networks; metropolitan area networks; modules; optical fibre communication; optical interconnections; optical receivers; optical transmitters; 10 Gbit/s; LC duplex optical connectors; OSA; SFF transceiver form factor; SFP transceiver form factor; XFP modules; XFP transceiver; butterfly type package; datacom Ethernet networks; fiber optic communications; low-cost optical sub-assemblies; metro access applications; telecom SONET networks; Connectors; Ethernet networks; Flexible printed circuits; High speed optical techniques; Optical fiber communication; Packaging; Plastics; SONET; Telecommunications; Transceivers;
fLanguage
English
Publisher
ieee
Conference_Titel
Electronic Components and Technology Conference, 2004. Proceedings. 54th
Print_ISBN
0-7803-8365-6
Type
conf
DOI
10.1109/ECTC.2004.1319338
Filename
1319338
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