About This Part
The Finisar FTL410QE4C-FB is a high-performance Quad Small Form-Factor Pluggable Plus (QSFP+) optical transceiver, a critical component within the Finisar family of advanced networking solutions. This module is engineered for 40 Gigabit Ethernet (40GbE) applications, adhering to the IEEE 802.3ba 40GBASE-SR4 standard. It operates over four independent full-duplex lanes, each transmitting at 10 Gbps, aggregating to a total data rate of 40 Gbps. Utilizing 850 nm wavelength VCSEL arrays, the FTL410QE4C-FB is designed for short-reach connections over multimode fiber, typically reaching up to 100 meters on OM3 fiber or 150 meters on OM4 fiber. Its MPO/MTP connector interface facilitates high-density cabling solutions, making it ideal for environments requiring robust and efficient optical links. This Finisar QSFP+ transceiver is widely deployed in modern data centers, enterprise networks, and high-performance computing (HPC) clusters. It is commonly installed in network switches, routers, and server network interface cards (NICs) to establish high-bandwidth interconnects between aggregation layers, top-of-rack switches, and core network infrastructure. The FTL410QE4C-FB solves critical bandwidth bottlenecks, enabling seamless upgrades from 10GbE to 40GbE infrastructure without extensive recabling. It is an essential component for cloud service providers, large enterprises, and telecommunications operators seeking to enhance network capacity and reduce latency in their demanding environments. For B2B clients seeking robust yet cost-effective infrastructure solutions, Revo Distribution Limited offers used and refurbished units of the Part Number FTL410QE4C-FB. Revo Distribution Limited specializes in providing high-quality, tested, and reliable networking equipment, enabling telecom operators and data centre providers to expand or upgrade their networks efficiently and sustainably. By sourcing refurbished Finisar transceivers like this, businesses can significantly reduce capital expenditure while maintaining high performance standards. This approach not only provides a cost-effective alternative to new hardware but also extends the operational lifecycle of existing infrastructure, supporting environmentally conscious procurement strategies and ensuring continued network resilience.