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Network transceiver module CBO FIM35050-BO SFP+ 10 Gbit/s 1550 nm
The CBO FIM35050-BO SFP+ 10 Gbit/s 1550 nm module is a hot-pluggable fiber-optic transceiver designed for 10 Gbps links over single-mode fiber. It provides a 1550 nm wavelength transmitter and receiver pair suited for long-reach connections between switches, routers and other network equipment. The module’s SFP+ form factor ensures compatibility with equipment that supports pluggable 10 Gbit/s optical interfaces and is intended for use in data center, carrier and enterprise environments requiring reliable optical connectivity.
The module supports a 10 Gbit/s data rate and 1550 nm wavelength, enabling extended reach on single-mode fiber while maintaining low power consumption and stable optical performance. Its SFP+ form factor allows straightforward hot-plug installation and interoperability with standard 10G SFP+ slots. The compact design reduces space requirements in dense equipment racks and is suitable for systems that require flexible optical interface options without major hardware changes.
Install the transceiver into an available SFP+ slot on compatible network equipment until it seats firmly and the device recognizes the module. Connect single-mode fiber cables with duplex LC connectors, observing proper polarity and using appropriate fiber management. Configure corresponding interface settings on the switch or router (speed set to 10 Gbit/s, optical mode enabled as required) and verify link status and optical levels through the device management interface. For equipment that supports hot swapping, the module may be inserted or removed while the host remains powered, following the host hardware guidelines.
Use certified single-mode fiber with low insertion loss and maintain clean LC connectors to ensure stable optical performance. Verify compatibility with the host equipment’s SFP+ ports and firmware before deployment. For long-reach links, check optical budget and consider using appropriate amplification or dispersion compensation if required by link distance and fiber characteristics.
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