Corning® ER Specialty Optical Fibers: Erbium-Doped Fibers

2022-05-24
■For Use in Optical Amplifiers and Fiber Lasers
●Manufactured with Corning’s patented outside vapor deposition (OVD) process, Corning® ER specialty fibers set the world standard for uniformity and reliability. Corning offers Erbium-doped fibers with or without hermetic coating. The hermetic coating offers significant advantage with respect to mechanical reliability and resistance to hydrogen-induced optical attenuation degradation. These Erbium-doped fibers have a proven track record in state-of-the-art optical amplifiers, and exhibit consistently low splice loss when coupled with fibers such as Corning® HI 1060 FLEX, Corning® HI 980, and Corning® SMF-28e+®optical fiber. Erbium-doped fibers designs are available for conventional C-band, L-band, and reduced clad (80 μm) applications.
■Features
●Outstanding consistency and uniformity using Corning’s patented OVD process
●OVD manufacturing consistency provides repeatability for gain spectrum allowing for the reduction of lot qualifications in amplifier deployment
●Hermetic coating for increased environmental stability and reliability
●Dual acrylate coating system provides excellent protection from micro-induced attenuation and superior mechanical robustness
●Short and long cutoff wavelength C-band versions available
●Excellent geometry control
●Mode-field diameter designed to match Corning® High-Index specialty fiber, allowing for efficient coupling with an EDFA

Corning

ER 1550C3ER 1550C3 LCRC ER 1550C3ER 1600L3RC ER 1600L3

More

Part#

Erbium-Doped Fibers

More

Single and multi-wavelength optical amplifiers (EDFA) ]Digital and analog systems ]CATV amplifiersCorning® ER Specialty Optical FibersErbium-Doped Fibers ]

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

October 2020

OEM-075-AEN

298 KB

- The full preview is over. If you want to read the whole 4 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: