Expand this Topic clickable element to expand a topic
Skip to content
Optica Publishing Group

25.8 Gbps Error Free Transmission over 10 km at Wavelengths from 1271 to 1331nm by Uncooled (25 to 85°C) Directly Modulated DFB Lasers for 100G-CWDM4

Not Accessible

Your library or personal account may give you access

Abstract

We successfully demonstrated 25.8 Gbps error free transmission through an 11.4km-long fiber using 1.3 μm directly modulated DFB lasers at the CWDM wavelengths for temperatures as high as 85°C.

© 2015 Optical Society of America

PDF Article  |   Presentation Video
More Like This
Uncooled CWDM 25-Gbps EA/DFB Lasers for Cost-Effective 100-Gbps Ethernet Transceiver over 10-km SMF Transmission

Shigeki Makino, Hiroaki Hayashi, Kazunori Shinoda, Takeshi Kitatani, Takashi Shiota, Shigehisa Tanaka, Masahiro Aoki, Kazuhiko Naoe, Noriko Sasada, Shunya Yamauchi, Masato Shishikura, Tadashi Hatano, Naofumi Morohashi, and Hiroaki Inoue
PDP21 Optical Fiber Communication Conference (OFC) 2008

Uncooled CWDM 25-Gbps EA/DFB Lasers for Cost-Effective 100-Gbps Ethernet Transceiver over 10-km SMF Transmission

Shigeki Makino, Hiroaki Hayashi, Kazunori Shinoda, Takeshi Kitatani, Takashi Shiota, Shigehisa Tanaka, Masahiro Aoki, Kazuhiko Naoe, Noriko Sasada, Shunya Yamauchi, Masato Shishikura, Tadashi Hatano, Naofumi Morohashi, and Hiroaki Inoue
PDP21 National Fiber Optic Engineers Conference (NFOEC) 2008

106-Gb/s PAM4 Operation of Directly Modulated DFB Lasers from 25 to 70ºC for Transmission over 2-km SMF in the CWDM range

Takayuki Nakajima, Masaru Onga, Yuji Sekino, Akira Nakanishi, Noriko Sasada, Shigenori Hayakawa, Shigetaka Hamada, and Kazuhiko Naoe
Tu1D.4 Optical Fiber Communication Conference (OFC) 2021

Presentation Video

Presentation video access is available to:

  1. Optica Publishing Group subscribers
  2. Technical meeting attendees
  3. Optica members who wish to use one of their free downloads. Please download the article first. After downloading, please refresh this page.

Contact your librarian or system administrator
or
Log in to access Optica Member Subscription or free downloads


More Like This
Uncooled CWDM 25-Gbps EA/DFB Lasers for Cost-Effective 100-Gbps Ethernet Transceiver over 10-km SMF Transmission

Shigeki Makino, Hiroaki Hayashi, Kazunori Shinoda, Takeshi Kitatani, Takashi Shiota, Shigehisa Tanaka, Masahiro Aoki, Kazuhiko Naoe, Noriko Sasada, Shunya Yamauchi, Masato Shishikura, Tadashi Hatano, Naofumi Morohashi, and Hiroaki Inoue
PDP21 Optical Fiber Communication Conference (OFC) 2008

Uncooled CWDM 25-Gbps EA/DFB Lasers for Cost-Effective 100-Gbps Ethernet Transceiver over 10-km SMF Transmission

Shigeki Makino, Hiroaki Hayashi, Kazunori Shinoda, Takeshi Kitatani, Takashi Shiota, Shigehisa Tanaka, Masahiro Aoki, Kazuhiko Naoe, Noriko Sasada, Shunya Yamauchi, Masato Shishikura, Tadashi Hatano, Naofumi Morohashi, and Hiroaki Inoue
PDP21 National Fiber Optic Engineers Conference (NFOEC) 2008

106-Gb/s PAM4 Operation of Directly Modulated DFB Lasers from 25 to 70ºC for Transmission over 2-km SMF in the CWDM range

Takayuki Nakajima, Masaru Onga, Yuji Sekino, Akira Nakanishi, Noriko Sasada, Shigenori Hayakawa, Shigetaka Hamada, and Kazuhiko Naoe
Tu1D.4 Optical Fiber Communication Conference (OFC) 2021

10-km Transmission of 106-Gb/s PAM4 with Directly Modulated DFB Lasers in the CWDM Range

Shuhei Ohno, Masaru Onga, Takayuki Nakajima, Akira Nakanishi, Noriko Sasada, Shinichi Tanaka, Ryosuke Nakajima, and Kazuhiko Naoe
M2D.7 Optical Fiber Communication Conference (OFC) 2023

Uncooled Clear-Eye-Opening Operation (25 to 95°C) of 25.8/28-Gbps 1.3-µm InGaAlAs-MQW Directly Modulated DFB Lasers

T. Fukamachi, A. Nakamura, Y. Sakuma, S. Hayakawa, R. Washino, M. Mukaikubo, K. Okamoto, T. Nakajima, K. Motoda, K. Naoe, K. Nakahara, Y. Wakayama, and K. Uomi
Th3A.7 Optical Fiber Communication Conference (OFC) 2014

Select as filters


Select Topics Cancel
© Copyright 2024 | Optica Publishing Group. All rights reserved, including rights for text and data mining and training of artificial technologies or similar technologies.