The 1.25G SFP LX transceiver offers reliable long-distance data transmission at 1.25Gbps over single-mode fiber (SMF) with a reach of up to 20 kilometers. Operating at a wavelength of 1310nm, it is ideal for applications requiring stable and high-quality transmission over moderate distances, such as enterprise networks, data centers, and telecommunications. The module uses an LC connector for compact and high-density optical connections. With its low power consumption and efficient performance, this transceiver is an excellent choice for businesses that require cost-effective, long-distance optical communication without sacrificing reliability.
More →The 1.25G SFP 1310nm transceiver provides reliable, long-distance data transmission at 1.25Gbps over single-mode fiber (SMF) with a reach of up to 40 kilometers. Designed with a 1310nm wavelength, this module is ideal for applications in telecommunications, metropolitan area networks (MANs), and data centers where stable, high-quality communication is needed over moderate to long distances. It uses an LC connector for high-density, reliable optical connections and is a cost-effective solution for long-range optical networking. The module is also designed to meet IEEE 802.3z standards, ensuring compatibility with a wide range of devices.
More →The 1.25G SFP 1550nm transceiver is engineered for long-distance data transmission at 1.25Gbps over single-mode fiber (SMF) with a reach of up to 80 kilometers. Operating at a wavelength of 1550nm, it is optimized for high-performance, long-range applications like telecommunications, fiber-optic networks, and high-speed data centers. The module offers stable, high-quality transmission and comes equipped with an LC connector, providing efficient and high-density optical connections. Designed to meet industry standards, the 1.25G SFP 1550nm 80km module ensures compatibility with a wide range of optical networking devices, making it an ideal solution for businesses seeking reliable, long-distance communication.
More →The 1.25G SFP Bidi 40km transceiver is designed for long-distance data transmission at 1.25Gbps over single-mode fiber (SMF), with a reach of up to 40 kilometers. It features a 1310nm transmitter and a 1550nm receiver, providing stable and high-quality signal transmission. This module is ideal for telecom networks, data centers, and long-haul optical networks, offering a reliable solution for long-distance communications. The LC connector ensures high-density optical connections, while the low power consumption makes it a cost-effective choice for high-performance applications. With easy integration into existing networks, this module is a versatile option for businesses requiring long-range, high-speed data transmission.
More →The 1.25G SFP CWDM (Coarse Wavelength Division Multiplexing) transceiver operates within the 1510-1610nm wavelength range, offering reliable data transmission over single-mode fiber (SMF) up to 40 kilometers. Designed for high-capacity networks, it efficiently utilizes multiple wavelength channels for long-distance optical communications. With its LC connector, it ensures high-density, cost-effective deployments in metro and long-haul networks. The CWDM technology allows for the transmission of multiple signals over a single fiber, providing scalability and flexibility in optical systems. It is ideal for use in telecom, data centers, and enterprise networks, ensuring robust, high-speed data delivery over long distances.
More →The 1.25G SFP 1550nm transceiver is designed for ultra-long-distance data transmission at 1.25Gbps over single-mode fiber (SMF), with a reach of up to 120 kilometers. Operating at a wavelength of 1550nm, it is optimized for high-performance, long-range applications like telecommunications, metropolitan area networks (MANs), and long-haul optical networks. The module provides reliable, high-quality transmission and is equipped with an LC connector, ensuring high-density, efficient optical connections. With low power consumption and a compact form factor, the 1.25G SFP 1550nm 120km is an ideal solution for applications requiring high reliability and long-distance communication.
More →The 10G SFP+ CWDM transceiver (1270-1450nm) offers high-performance 10Gbps data transmission over single-mode fiber (SMF) with a maximum reach of up to 40km. Utilizing coarse wavelength division multiplexing (CWDM), the module supports multiple channels over a single fiber by using wavelengths in the range of 1270nm to 1450nm. This technology maximizes fiber utilization and minimizes the need for additional fibers, making it an efficient and cost-effective solution for long-distance data transmission. The 10G CWDM SFP+ is ideal for enterprise networks, data center interconnections, and metro area networks (MANs) requiring long-range, high-speed communication.
More →The 10G SFP+ Tx1270/Rx1330nm 20km transceiver provides a cost-effective solution for 10Gbps data transmission over a single fiber, with a maximum reach of 20km. This bi-directional module uses different wavelengths for transmitting and receiving, with 1270nm for transmission and 1330nm for reception, allowing for efficient utilization of optical fiber resources. The 10G Bidi is ideal for applications in data centers, enterprise networks, and metropolitan area networks (MANs), where fiber conservation and cost-efficiency are crucial. With its low power consumption and reliable long-distance performance, it ensures high-performance connectivity in space-constrained environments.
More →The 10G Bidi 80km provides long-range 10Gbps data transmission over single-mode fiber (SMF) with a maximum reach of up to 80km. It utilizes a 1490nm wavelength for transmission and a 1550nm wavelength for reception, allowing efficient use of optical fiber by supporting bi-directional data transfer over a single fiber. This transceiver is perfect for high-performance networking applications such as long-distance data center interconnects, enterprise networks, and metropolitan area networks (MANs). The 10G SFP+ module ensures reliable connectivity with low power consumption, making it a cost-effective solution for high-speed, long-distance optical communication.
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