• 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 » ADVA and II-VI debut 100ZR pluggable coherent transceiver

ADVA and II-VI debut 100ZR pluggable coherent transceiver

June 21, 2022
in All
A A

ADVA and II‐VI introduced a jointly-built, 100ZR pluggable coherent transceiver for the optical network edge.

The new Coherent 100ZR, which is rated for both commercial- and industrial-temperature (C-temp and I-temp) operating ranges, features the II-VI Steelerton coherent digital signal processor (DSP). The device plugs directly into existing head-ends, switches, and routers, enabling existing network elements to transmit 100 Gbps signals over links stretching up to several hundred kilometers. 

“With this new application-specific transceiver technology, service providers can now benefit from the simplicity and robustness of coherent technology in the access network and seamlessly upgrade millions of 10Gbit/s Ethernet links to 100Gbit/s,” said Henning Hinderthür, VP of product line management at ADVA. “While this product design is perfectly tailored to this application, it will also achieve economies of scale by leveraging II-VI’s track record of manufacturing transceivers in high volume.”

“We’ve had great feedback from both carriers and OEMs on this product, and are pleased to partner with ADVA on this key milestone for the industry,” said Matthias Berger, VP of coherent technology at II-VI Incorporated. “The transceiver includes the Steelerton™ DSP, a first-of-its-kind and game-changing coherent processor, due to its small size and low power consumption, which are both key to achieving the standard QSFP28 power dissipation requirement of less than 5 watts. What makes this transceiver even more compelling for carriers is the embedded auto-tunable Flextune™ technology, which lowers operational expenses by simplifying network deployments. It’s the ideal combination of cost-effective coherent technology with plug-and-play ease of use.”

https://adva.li/coherent-100zr-slides

https://www.adva.com/en/newsroom/press-releases/20220621-adva-and-ii-vi-incorporated-unveil-industrys-first-100zr-pluggable-coherent-transceiver

II-VI tapes out DSP for 100 Gbps coherent optical access

Tuesday, June 07, 2022  II-VI, Optical, Silicon  

II‐VI announced tape-out of its Steelerton digital signal processor (DSP) for 100 Gbps coherent transmission in optical access and aggregation networks.  

The company says its Steelerton DSP, miniaturized and with ultralow power dissipation, typically of 2 W, was designed specifically to enable 100 Gbps digital coherent optics (DCO) in a pluggable QSFP28 format, one of the most widely deployed 100 Gbps transceiver form factors in access networks.

“The Steelerton DSP promises to bring 100 Gbps QSFP28-DCO transceivers into the mainstream in access networks,” said Matthias Berger, Vice President, Coherent Technology, II-VI Incorporated. “It’s a breakthrough solution that enables wide-scale deployment of full C-band tunable coherent transceivers into QSFP28 ports, of which there are tens of millions in service. The Steelerton DSP is less than one-fifth the size and consumes less than half the power of any other 100 Gbps coherent DSP commercially available.”

https://ii-vi.com/news/ii-vi-incorporated-develops-ultralow-power-dsp-for-100-gbps-coherent-transmission-in-optical-access-networks/

Tags: ADVABlueprint columnsII-VI
ShareTweetShare
Previous Post

PCIe 7.0 spec doubles data rate to 128 GT/s

Next Post

New subsea cable planned between Egypt and Greece

Staff

Staff

Related Posts

ADVA posts Q2 revenue of EUR 149.4 million, up by 3.0%
Financials

ADVA announces planned CEO transition

May 23, 2023
Adtran joins EU’s Software enabled Fiber optic multisensing Network project
Optical

Adtran joins EU’s Software enabled Fiber optic multisensing Network project

April 4, 2023
Blueprint: Brazil looks to municipal Wi-Fi 6E
Blueprints

Blueprint: Brazil looks to municipal Wi-Fi 6E

February 21, 2023
ADVA supplies its Oscilloquartz synchronization to Chilean service provider
Optical

Brandywine leverages ADVA for defense-grade M-Code advanced timing

January 24, 2023
Blueprint: Building wholesale networks with OTN
All

Blueprint: Building wholesale networks with OTN

December 20, 2022
Oracle opens cloud region in Chicago
All

Oracle opens cloud region in Chicago

December 20, 2022
Next Post
Nokia launches 5G Innov Lab in France

Nokia launches 5G Innov Lab in France

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