About the Mellanox MMS1C10-CM 100GB BASE-PSM4 1310nm LC QSFP28 Transceiver
The Mellanox MMS1C10-CM 100GB BASE-PSM4 1310nm LC QSFP28 Transceiver is a powerful solution designed for high-performance data centers and cloud infrastructure. Offering an impressive 100Gbps data rate over single-mode fiber (SMF), this transceiver combines speed and efficiency, making it ideal for applications requiring rapid, stable connectivity over extended distances of up to 500 meters.
Description
The Mellanox MMS1C10-CM BASE-PSM4 1310nm LC QSFP28 Transceiver is engineered to meet the demands of modern, high-speed networking environments. With a transmission speed of 103.125 GHz, this transceiver allows for smooth and reliable data flow across long distances, making it a top choice for data centers, cloud storage facilities, and enterprise networks. Its QSFP28 form factor is compact and efficient, designed for seamless integration into network equipment. With a 1310nm wavelength and support for single-mode fiber, it ensures stable, high-quality data transmission for up to 500 meters, perfect for various high-bandwidth applications.
User Experience
Users benefit from the reliable, high-speed performance of the Mellanox MMS1C10-CM BASE-PSM4 1310nm LC QSFP28 Transceiver, enabling a smooth experience with minimal downtime. This transceiver’s robust build and digital compatibility make it easy to monitor and maintain, ensuring sustained peak performance in high-demand environments. Its compact design simplifies installation in a wide range of network setups, giving users more flexibility.
Why Choose the Mellanox QSFP28 Transceiver?
The Mellanox 100GB BASE-PSM4 1310nm LC QSFP28 Transceiver stands out for its combination of speed, range, and reliability. With a high 100Gbps bandwidth and up to 500 meters of reach, it’s designed for scalable networking needs. Its single-mode fiber capability and digital features enhance data accuracy, providing users with a dependable connectivity solution. The QSFP28 form factor also allows for easy upgrades and future scalability, making it a future-proof choice for evolving network demands.