• Home
  • Events Calendar
  • Blueprint Guidelines
  • Privacy Policy
  • Subscribe to Daily Newsletter
  • NextGenInfra.io
No Result
View All Result
Converge Digest
Sunday, April 19, 2026
  • Home
  • Events Calendar
  • Blueprint Guidelines
  • Privacy Policy
  • Subscribe to Daily Newsletter
  • NextGenInfra.io
No Result
View All Result
Converge Digest
No Result
View All Result

Home » Fujitsu, NTT and NEC Target 400G Coherent Optical Transmission

Fujitsu, NTT and NEC Target 400G Coherent Optical Transmission

December 11, 2012
in All
A A

Fujitsu, NTT and NEC are jointly developing 400 Gbps/channel-class digital coherent optical transmissions technology.

The companies have undertaken a joint R&D project that aims to leverage the technological capabilities that have enabled the commercialization of 100Gbps-class optical transmission. The R&D initiative was commissioned and is sponsored by Japan’s Ministry of Internal Affairs and Communications (MIC) as part of the “Research and Development Project for the Ultra-high Speed and Green Photonic Networks”.

Specifically, Fujitsu, NTT and NEC have pursued R&D on 100Gbps-class digital coherent optical communications technology as part of the MIC’s “Research and Development on High Speed Optical Transport System Technologies” program (2009) and “Research and Development on Ultra-high Speed Optical Edge Node Technologies” program (2010-2011).

As a result of the previous research, a digital coherent DSP-LSI was commercialized in 2012 and is now being being deployed by each company. The new initiative will accelerate this work for 400Gbps-class optical transmissions.

The joint research project is targeting dual-polarization quadrature phase shift keying (DP-QPSK)(3), which is currently in use for 100Gbps transmissions, together with dual-polarization 16 quadrature amplitude modulation (DP-16QAM), which takes advantage of an even greater number of quadrature carriers.

The companies said that by incorporating these modulation techniques into a high-density 60-channel fiber, the technology will be able to bring about optical networks capable of 24 Tbps/fiber.  The goal will require development of the first compensation technology for nonlinear optical effects within an optical fiber.  This is the primary limiting factor standing in the way of long-distance transmission of multiple quadrature modulated signals. When employed together with enhanced-performance versions of existing compensation technologies for chromatic dispersion and polarization mode dispersion, the new technology will achieve longer transmission distances.

The companies will pursue the implementation of adaptive modulation/demodulation technology that can employ a host of modulation techniques depending on the transmission route using a single hardware device, thereby leading to the construction of flexible network

http://www.fujitsu.com/global/news/pr/archives/month/2012/20121211-02.html

Tags: 400GBlueprint columnsFujitsuJapanNECNTT
ShareTweetShare
Previous Post

FCC Approves Changes to AWS-4 Spectrum Requirements

Next Post

Sandvine Books $4.5 Million Follow-On Orders in Europe

Staff

Staff

Related Posts

Nokia Integrates MantaRay SON into NTT DOCOMO’s Multi-Vendor 5G Network
5G / 6G / Wi-Fi

Nokia Integrates MantaRay SON into NTT DOCOMO’s Multi-Vendor 5G Network

November 24, 2025
NTT Showcases Optical–Quantum and Expands IOWN Strategy
Optical

NTT Showcases Optical–Quantum and Expands IOWN Strategy

November 18, 2025
NVIDIA to Invest $1B in Nokia, Partnership for AI-RAN and Data Center Networking
5G / 6G / Wi-Fi

Nokia Wins 5G RAN Contract from SoftBank in Japan

November 5, 2025
NTT Achieves Less Than 1ms Latency, Below 1μs Jitter at 400Gbps
Data Centers

NTT Launches Ultra-Low Latency IOWN Photonic Interconnect Service in Hong Kong

November 1, 2025
SoftBank Expands All-Optical Nationwide with Cisco 400G
Clouds and Carriers

SoftBank Expands All-Optical Nationwide with Cisco 400G

October 23, 2025
STACK Expands with ¥39.7B Financing for 36MW Tokyo Campus
Data Centers

STACK Expands with ¥39.7B Financing for 36MW Tokyo Campus

October 22, 2025
Next Post
TeliaSonera Receives US$525 Million for Kcell’s IPO

TeliaSonera Receives US$525 Million for Kcell's IPO

Please login to join discussion

Categories

  • 5G / 6G / Wi-Fi
  • AI Infrastructure
  • All
  • Automotive Networking
  • Blueprints
  • Clouds and Carriers
  • Data Centers
  • Enterprise
  • Explainer
  • Feature
  • Financials
  • Last Mile / Middle Mile
  • Legal / Regulatory
  • Optical
  • Quantum
  • Research
  • Security
  • Semiconductors
  • Space
  • Start-ups
  • Subsea
  • Sustainability
  • Video
  • Webinars

Archives

Tags

5G All AT&T Australia AWS Blueprint columns BroadbandWireless Broadcom China Ciena Cisco Data Centers Dell'Oro Ericsson FCC Financial Financials Huawei Infinera Intel Japan Juniper Last Mile Last Mille LTE Mergers and Acquisitions Mobile NFV Nokia Optical Packet Systems PacketVoice People Regulatory Satellite SDN Service Providers Silicon Silicon Valley StandardsWatch Storage TTP UK Verizon Wi-Fi
Converge Digest

A private dossier for networking and telecoms

Follow Us

  • Home
  • Events Calendar
  • Blueprint Guidelines
  • Privacy Policy
  • Subscribe to Daily Newsletter
  • NextGenInfra.io

© 2025 Converge Digest - A private dossier for networking and telecoms.

No Result
View All Result
  • Home
  • Events Calendar
  • Blueprint Guidelines
  • Privacy Policy
  • Subscribe to Daily Newsletter
  • NextGenInfra.io

© 2025 Converge Digest - A private dossier for networking and telecoms.

This website uses cookies. By continuing to use this website you are giving consent to cookies being used. Visit our Privacy and Cookie Policy.
Go to mobile version