Polatis Series 7000 optical circuit switch offers 384x384 ports

March 3, 2016
Optical switch developer Polatis has introduced an all-optical cross-connect that it asserts offers the highest port count available. The Polatis Series 7000 Optical Circuit Switch (OCS) sports 384x384 fiber ports and offers fully non-blocking all-optical matrix switching, the company says.

Optical switches developer Polatis has introduced an all-optical cross-connect that it asserts offers the highest port count available. The Polatis Series 7000 Optical Circuit Switch (OCS) sports 384x384 fiber ports and offers fully non-blocking all-optical matrix switching, the company says.

The system fits into 4RU of rack height, which Polatis says enables the Series 7000 of offer 20% more capacity in 40% less space than alternatives.

The Series 7000 leverages the company's patented DirectLight optical switch technology, which enables rapid reconfiguration of any or all paths in milliseconds while consuming as much energy as a lightbulb, Polatis says.

"In response to customer demand, we have doubled the maximum matrix size available from our DirectLight technology while maintaining leading-edge optical performance," said Nick Parsons, chief technology officer at Polatis. "With the addition of the new Series 7000 to the Polatis product family, we can now offer our customers the broadest range of high performance dynamic fiber cross-connect solutions together with open, programmable interfaces to meet the changing needs of today's software-defined networks."

The OCS can route more than 3.7 Pbps of optical traffic, based on 9.6 Tbps on each fiber. It also comes with such featuers as optical power monitoring, variable attenuation, and autonomous optical layer protection switching.

Polatis expects the Series 7000 to find use for virtualization and remote provisioning of fiber resources in telecom and data center networks. To this end, the system features carrier-class embedded control interfaces to enable integration with any software-defined network (SDN) controller. The OCS supports open SDN protocols, including embedded OpenFlow, NETCONF, and RESTCONF agents.

Polatis recently announced a partnership with Quali to integrate its OCS platforms, including the Polatis 7000 OCS, with cloud orchestration software. The result enables the new system to support automated fiber layer provisioning and deployment at scale of system integration test suites (see "Polatis, Quali partner for automated fiber layer management for fiber-optic testing").

"The combination of the new Series 7000 and its software feature set enables flexible, dynamic optical networks at scale," said Gerald Wesel, CEO at Polatis. "Through dynamic resource allocation, operational costs for truck rolls and manual patching are virtually eliminated, service quality and velocity are increased, and server utilization in data centers is dramatically improved."

The Polatis 7000 OCS is commercially available.

For more information on high-speed transmission systems and suppliers, visit the Lightwave Buyer's Guide.

Sponsored Recommendations

Scaling Moore’s Law and The Role of Integrated Photonics

April 8, 2024
Intel presents its perspective on how photonic integration can enable similar performance scaling as Moore’s Law for package I/O with higher data throughput and lower energy consumption...

Coherent Routing and Optical Transport – Getting Under the Covers

April 11, 2024
Join us as we delve into the symbiotic relationship between IPoDWDM and cutting-edge optical transport innovations, revolutionizing the landscape of data transmission.

Constructing Fiber Networks: The Value of Solutions

March 20, 2024
In designing and provisioning a fiber network, it’s important to think of it as more than a collection of parts. In this webinar, AFL’s Josh Simer will show how a solution mindset...

Moving to 800G & Beyond

Jan. 27, 2023
Service provider and hyperscale data center network operators are beginning to deploy 800G transmission capabilities – but are using different technologies to do so. The higher...