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MTNetworks SFP Bidi 1.25G ZR 1490nm/1550nm 80km

The MTNetworks MT-SFP-ZRA/B is a 1.25Gbps BiDi SFP optical transceiver designed for long-distance optical communication over a single strand of single-mode fiber (SMF). Supporting transmission distances of up to 80 km, the module utilizes WDM technology to transmit and receive optical signals through a single LC optical interface. It is optimized for Gigabit Ethernet, Fibre Channel, and other 1.25Gbps optical networking applications requiring reliable bidirectional optical connectivity over long-reach fiber links.

Designed in a hot-pluggable SFP form factor, the module features a single LC optical connector, integrated Digital Diagnostic Monitoring (DDM) compliant with SFF-8472, and full interoperability with the SFP Multi-Source Agreement (MSA). The transceiver is available as complementary wavelength pairs for bidirectional deployment over a single fiber. Real-time monitoring of temperature, supply voltage, laser bias current, transmit optical power, and receive optical power enables simplified network management for carrier, enterprise, ISP, metropolitan, and access optical networks.

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Specifications


The MTNetworks MT-SFP-ZRA/B is a 1.25Gbps BiDi SFP optical transceiver designed for long-distance optical communication over a single strand of single-mode fiber (SMF). Supporting transmission distances of up to 80 km, the module utilizes WDM technology to transmit and receive optical signals through a single LC optical interface. It is optimized for Gigabit Ethernet, Fibre Channel, and other 1.25Gbps optical networking applications requiring reliable bidirectional optical connectivity over long-reach fiber links.

Designed in a hot-pluggable SFP form factor, the module features a single LC optical connector, integrated Digital Diagnostic Monitoring (DDM) compliant with SFF-8472, and full interoperability with the SFP Multi-Source Agreement (MSA). The transceiver is available as complementary wavelength pairs for bidirectional deployment over a single fiber. Real-time monitoring of temperature, supply voltage, laser bias current, transmit optical power, and receive optical power enables simplified network management for carrier, enterprise, ISP, metropolitan, and access optical networks.  

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