AddOn - SFP+ transceiver module (equivalent to: Hirschmann M-SFP-10-SR/LC-EEC) - 10GbE - 10GBase-SR - LC multi-mode - up to 984 ft - 850 nm - TAA Compliant
- Ethernet 10GBase-SR connectivity for high-speed data transfer
- Supports a maximum transfer distance of 300 m
- Incorporates Digital Optical Monitoring for enhanced network reliability
- Hot-pluggable design allows for easy installation without network disruption
- TAA-compliant, meeting strict government standards
The AddOn SFP+ transceiver module is a high-performance, wired connectivity solution designed for 10 Gigabit Ethernet networks. It features dual LC multi-mode connectors and supports a data transfer rate of 10 Gbps, making it ideal for high-speed data applications. With a maximum operating temperature range from -40°C to 85°C and humidity range operating from 5 - 85% RH, it is engineered to perform reliably in a variety of environmental conditions. The module is compliant with MSA SFF-8432, MSA SFF-8472, and RoHS standards, ensuring compatibility and safety. Additionally, it offers features such as Digital Optical Monitoring (DOM) support, ESD Protector, hot-pluggable capability, and low EMI, making it a versatile choice for enhancing network performance while maintaining environmental responsibility.
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Enhanced connectivity
The AddOn SFP+ transceiver module offers Ethernet 10GBase-SR connectivity, ensuring high-speed data transfer rates of up to 10 Gbps for efficient network performance.
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Robust environmental adaptability
Designed to operate in a wide range of temperatures from -40°C to 85°C and humidity levels from 5 - 85% RH, this module is built to withstand harsh environmental conditions.
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Advanced optical technology
With Digital Optical Monitoring (DOM) support and an optical wavelength of 850 nm, this module provides precise, real-time tracking of signal parameters, enhancing network reliability.
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Eco-friendly and safe
Featuring lead-free construction and low EMI, along with ESD Protector, the module adheres to strict RoHS compliance, ensuring a minimal environmental footprint and enhanced user safety.