Marvell® QLogic® QLE2690/2692: Single-port and Dual-port Enhanced 16GFC Fibre Channel Adapters
●Enhanced 16GFC
■Compared to 16GFC, the Marvell QLogic Enhanced 16GFC solution offers higher per-port performance (up to 650K IOPS) with low power consumption. In addition, Marvell StorFusion technology delivers streamlined provisioning, QoS, and improved resiliency while addressing the needs of IT organizations that require reliability, integrated management, and guaranteed network performance.
■Enhanced 16GFC technology resolves data center complexities by enabling a storage network infrastructure that supports powerful virtualization features, application-aware services, and simplified management. The QLE2690/2692 Adapters provide advanced storage networking features capable of supporting the most demanding virtualized and private cloud environments, while fully leveraging the capabilities of high-performance 16GFC and all-flash arrays (AFAs). Powerful management tools automate and simplify SAN provisioning to help reduce cost and complexity, while the unmatched 16GFC performance eliminates potential I/O bottlenecks in today’s powerful multiprocessor, multicore servers.
●Key Benefits
■The latest and most advanced 16GFC HBA from Marvell, available in single- and dual-port versions
■Up to 1.3 million IOPS fuel high performance in AFA and high-density virtualized environments
■Marvell StorFusion™ technology accelerates deployment, simplifies diagnostics, enhances reliability, and optimizes performance
■NVMe™ over Fibre Channel capability allows simultaneous access to NVMe and SCSI based Storage on the same port
■Port isolation design offers deterministic and scalable performance on each port
QLE2690 、 QLE2692 、 QLE2690-SR-CK 、 QLE2690-SR-BK 、 QLE2692-SR-CK 、 QLE2692-SR-BK |
|
|
|
Supplier and Product Introduction |
|
|
|
Please see the document for details |
|
|
|
|
|
|
|
English Chinese Chinese and English Japanese |
|
01/21 |
|
Rev. L |
|
BK3258007-00 |
|
393 KB |
- +1 Like
- Add to Favorites
Recommend
All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.