AddOn IBM® 22R4902 Compatible TAA Compliant 4GBase-SW Fibre Channel SFP Transceiver (MMF, 850nm, 500m, LC)

Manufacturer: AddOn
Mfr. Part: 22R4902-AO

100% application tested and guaranteed to work

AddOn IBM® 22R4902 Compatible TAA Compliant 4GBase-SW Fibre Channel SFP Transceiver (MMF, 850nm, 500m, LC)

About This Product

Overview

This IBM® 22R4902 compatible SFP transceiver provides 4GBase-SW Fibre Channel throughput up to 500m over multi-mode fiber (MMF) using a wavelength of 850nm via an LC connector. It is guaranteed to be 100% compatible with the equivalent IBM® transceiver. This easy to install, hot swappable transceiver has been programmed, uniquely serialized and data-traffic and application tested to ensure that it will initialize and perform identically. It is built to meet or exceed the specifications of IBM®, as well as to comply with MSA (Multi-Source Agreement) standards to ensure seamless network integration. This transceiver is Trade Agreements Act (TAA) compliant. We stand behind the quality of our products and proudly offer a limited lifetime warranty.

  • SFP offers enhanced dependability with maximum productivity
  • With Fiber Channel technology, get fast data transfer rate over optical fiber cable
  • High performance, low latency and reliable connectivity for speedy file transfers and data processing is what 4 Gigabit Ethernet is a pro at
  • Optical fiber cable compatible - Spans afar and provides speedy data transmission rates between servers and network components
  • Multi-mode fiber mode support for reliable, fast transfer, sharing, and access to the data and information
  • Hot-swappable form factor for added reliability and dependability
  • SFP with optical network application/usage for maximum productivity and usability

Quick Specifications

Product Model
22R4902-AO
Product Type
SFP
Application/Usage
Optical Network Data Networking
Total Number of Ports
1
Connector Type
LC
Interfaces/Ports Details
1 x LC Fiber Channel Network
Media Type Supported
Optical Fiber
Fiber Mode Supported
Multi-mode