• Home
  • Events Calendar
  • Blueprint Guidelines
  • Privacy Policy
  • Subscribe to Daily Newsletter
  • NextGenInfra.io
No Result
View All Result
Converge Digest
Tuesday, May 5, 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 » CoreOptics and Marconi Launch 10 Gbps Distortion Tolerant Transponder

CoreOptics and Marconi Launch 10 Gbps Distortion Tolerant Transponder

September 5, 2004
in Uncategorized
A A

CoreOptics and Marconi announced the industry’s first 10 Gbps adaptive distortion tolerant transponder platform. The key technology is enabled by CoreOptics’ MLSE electronic equalization engine that acts adaptively as part of the receiver to compensate for both optical and electrical distortions accumulated along the transmission link. The distortion tolerant transponder could enable transmission of 10 Gbps services on the widely deployed 2.5 Gbps metro networks.

The companies said the key benefits of the new distortion tolerant transponder platform include a reduction in initial capital expenditure, by eliminating the need for the conventional Dispersion Compensation Modules (DCMs) and Dual-Stage amplifiers. Additional OPEX savings include simplification of network planning, installation and provisioning by enabling a complete set of plug-and-play features. http://www.coreoptics.comhttp://www.marconi.com

Tags: AllOptical
ShareTweetShare
Previous Post

SupportSoft Completes Core Networks Acquisition

Next Post

Intel Sets Sights on WiMAX, Digital Home Initiatives

Staff

Staff

Related Posts

Microsoft Inks 5-Year, Multi-Billion Deal with KT to Drive AI in Korea
Optical

Open RAN xHaul and IPoDWDM Solutions Take Center Stage

February 27, 2025
Ribbon Communications Secures $385 million credit facility
Optical

Ribbon Completes DWDM Deployment for Bharti Airtel

October 27, 2024
Tech Update video: Ayar Labs’ Optical I/O Chiplets
Optical

ECOC24 video: What’s Next for Optical DSPs? 1.6T and Beyond

September 24, 2024
NTT Achieves Less Than 1ms Latency, Below 1μs Jitter at 400Gbps
Optical

NTT Achieves Less Than 1ms Latency, Below 1μs Jitter at 400Gbps

April 12, 2024
#OFC24: A New Class of Silicon Photonics for AI Data Centers
Video

Big Power Savings with 800G Linear Receive Optics

April 4, 2024
AFL acquires Optical Telecom for DAS expertise
Optical

Fujikura’s AFL to build fiber manufacturing factory in Poland

October 18, 2023
Next Post

1394 Trade Association Takes Steps to Wireless Firewire

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