LPe35002-M2 Emulex 2-Port 32Gb Fibre Channel HBA | UAE
LPE35002-M2 Overview
The Emulex is a high-performance host bus adapter designed for PCIe 4.0 x8 slots. It features two 32Gb Fibre Channel Gen 7 ports, providing robust connectivity for data centers and enterprise environments. Ideal for enhancing storage network performance, this adapter ensures reliable and efficient data transfer.
5,388.00 AED
Description
LPe35002-M2 Emulex 2-Port 32Gb Fibre Channel HBA
The Emulex is a Gen 7 Fibre Channel Host Bus Adapter designed to provide high-speed connectivity between enterprise servers and Fibre Channel storage networks. It provides two 32GFC ports and supports 32Gb, 16Gb and 8Gb Fibre Channel link speeds with automatic detection.
The adapter uses a PCIe Gen4 x8 host interface, providing high-bandwidth connectivity to compatible servers. It is also compatible with PCIe 3.0 systems according to Lenovo’s product documentation.
The includes short-wave optical SFP+ transceivers with LC connectors and supports point-to-point and switched-fabric Fibre Channel topologies. It also supports NVMe over Fibre Channel (NVMe/FC) for demanding storage workloads and low-latency storage environments.
FAQs
What is Emulex LPe35002-M2?
Emulex is a dual-port 32Gb Fibre Channel Host Bus Adapter (HBA) designed for enterprise storage and SAN environments.
How many ports does Emulex LPe35002-M2 have?
The has two Fibre Channel ports for high-speed storage network connectivity.
What speed does support?
The for high-speed data transfer.
What interface does Emulex LPe35002-M2 use?
The LPe35002-M2 uses a PCIe 4.0 x8 host interface for high-bandwidth server connectivity.
Does Emulex support short-wave Fibre Channel?
Yes. The features short-wave Fibre Channel technology for compatible optical storage networking environments.
Is Emulex a low-profile HBA?
Yes. The features a low-profile PCIe form factor for compatible server systems.
What is Emulex LPe35002-M2 used for?
The is designed for data centers, enterprise storage systems and Fibre Channel storage networks requiring reliable high-speed connectivity.

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