The EnGenius SFP3312-20 is a high-performance 10G network transceiver module designed to enhance connectivity and data transmission in network environments. This advanced module is engineered for high-speed, reliable networking and is compatible with a range of network equipment, making it a versatile choice for various applications.
The SFP3312-20 operates at a wavelength of 1310 nanometers, enabling efficient data transmission over optical fiber networks. It is specifically crafted for use with multimode fiber (MMF) and supports a transmission distance of up to 300 meters. This capability makes it well-suited for data centers, enterprise networks, and other high-demand environments where speed and reliability are crucial.
The module is designed with a small form-factor pluggable (SFP+) interface, which allows for easy installation and replacement. Its hot-swappable feature means it can be replaced without powering down the network equipment, minimizing downtime and ensuring continuous operation. The SFP3312-20 adheres to industry standards, ensuring compatibility with a broad range of networking devices and platforms, which provides flexibility in network design and deployment.
Constructed to meet high standards of quality and durability, the SFP3312-20 ensures stable performance even under demanding conditions. It features built-in diagnostic capabilities that allow for real-time monitoring of the module’s performance, including parameters such as optical power levels and temperature. This helps network administrators maintain optimal performance and quickly identify and address any potential issues.
The EnGenius SFP3312-20 is an excellent choice for those seeking a reliable and high-speed transceiver module for their network infrastructure. Its robust design, ease of use, and compatibility with various systems make it a valuable addition to any high-speed network environment. Whether for upgrading existing networks or setting up new ones, the SFP3312-20 delivers the performance and reliability needed to meet modern networking demands.