AddOn Cisco XENPAK-10GB-SR Compatible TAA Compliant 10GBase-SR XENPAK Transceiver (MMF, 850nm, 300m, SC)

Manufacturer: AddOn
Mfr. Part: XENPAK-10GB-SR-AO

100% compatible and guaranteed to work

AddOn Cisco XENPAK-10GB-SR Compatible TAA Compliant 10GBase-SR XENPAK Transceiver (MMF, 850nm, 300m, SC)

About This Product

Overview

This Cisco® XENPAK-10GB-SR compatible XENPAK transceiver provides 10GBase-SR throughput up to 300m over multi-mode fiber (MMF) using a wavelength of 850nm via an SC connector. It can operate at temperatures between 0 and 70C. Our transceiver is built to meet or exceed OEM specifications and is guaranteed to be 100% compatible with Cisco®. It has been programmed, uniquely serialized, and tested for data-traffic and application to ensure that it will initialize and perform identically. All of our transceivers comply with Multi-Source Agreement (MSA) standards to provide seamless network integration. Additional product features include Digital Optical Monitoring (DOM) support which allows access to real-time operating parameters. This transceiver is Trade Agreements Act (TAA) compliant. We stand behind the quality of our products and proudly offer a limited lifetime warranty.

  • XENPAK offers enhanced dependability with maximum productivity
  • Optical fiber cable compatible - Spans afar and provides speedy data transmission rates between servers and network components
  • With its thicker diameter to carry the light of multiple wavelengths, multi-mode fiber optic cable supports the high bandwidth to carry more information with greater fidelity
  • Hot-swappable form factor for added reliability and dependability
  • XENPAK with data networking application/usage for maximum dependability and convenience

Quick Specifications

Product Model
XENPAK-10GB-SR
Product Type
XENPAK
Application/Usage
Data Networking
Total Number of Ports
1
Connector Type
SC
Interfaces/Ports Details
1 x SC Duplex 10GBase-SR
Media Type Supported
Optical Fiber
Fiber Optic Cable Core/Cladding Specification
50 µm 62.5 µm