The Cisco QSFP28 transceiver module is a high-performance, energy-efficient solution designed for extending network connections. This module supports 100 Gigabit Ethernet, offering a data transfer rate of 100 Gbps for applications requiring high-speed data transmission. It features PAM4 modulation format to enhance the efficiency of data transmission over a maximum distance of 2 km using LC single-mode connectors. With a power consumption of only 4.3 W, it provides an economical operation while maintaining high performance. Additionally, it operates reliably within a temperature range of 0 °C to 70 °C, making it versatile for various environmental conditions. Compliant with ITU-T G.652 and Laser Class 1 standards, this plug-in module ensures safety and reliability for all types of networking projects.
- Supports 100 Gigabit Ethernet for high-speed data transfer
- Operational over a distance of up to 2 km with LC single-mode connectors
- Low power consumption at 4.3 W for energy-efficient operation
- Complies with ITU-T G.652 and Laser Class 1 standards for reliability and safety
- Suitable for a wide range of temperatures, ensuring performance in diverse environments
Enhanced connectivity
The Cisco QSFP28 transceiver module offers a robust solution for extending network connections over a distance of up to 2 km, utilizing LC single-mode connectors to ensure stable and reliable long-distance data transmission.
High-speed performance
Designed to meet the demands of data centers, this module supports a data transfer rate of 100 Gbps, making it ideal for 100 Gigabit Ethernet applications. The PAM4 modulation format further enhances data transmission efficiency.
Efficient operation
With a maximum power consumption of 4.3 W, this plug-in module combines performance with energy efficiency, adhering to Laser Class 1 standards for safe and cost-effective operation.
Wide temperature range
Capable of operating in a wide range of temperatures from 0 °C to 70 °C, this transceiver module is designed for reliability and durability in various environmental conditions, ensuring consistent performance.