Product Name: BlueOptics AXM765-BO Network Transceiver Module SFP+ 1550 nm
Product Description: The BlueOptics AXM765-BO Network Transceiver Module SFP+ 1550 nm is a cutting-edge solution designed for high-performance network systems that require seamless and efficient data transmission over long distances. Featuring a Single Fiber (BiDi) Small Form-factor Pluggable Plus (SFP+) interface, this module ensures compatibility with a wide variety of network devices including switches, routers, and other telecommunications equipment. It operates on a wavelength of 1550 nm, which is ideal for long-haul data transfers, helping to minimize attenuation and loss over distances up to 80 kilometers, depending on the fiber type used. This makes it an excellent choice for enterprises that require reliable connectivity between data centers, metropolitan area networks (MANs), or within large campuses. The BlueOptics AXM765-BO module supports data rates of up to 10 Gbps, providing you with the bandwidth necessary for high-speed applications such as video conferencing, data streaming, and cloud computing.
Constructed with high-quality components, this module ensures durability and long-term operation stability. The hot-pluggable feature enables easy installation and replacement without interrupting network traffic, ensuring minimal downtime. It is engineered to meet multi-source agreement (MSA) standards, ensuring broad compatibility with various hardware manufacturers. Integrated digital diagnostics monitoring (DDM) capabilities provide real-time data on key parameters like power output, receiver sensitivity, and operating temperature, thus aiding in proactive network management and ensuring optimal performance.
Whether you are upgrading existing infrastructure or building a new network, the BlueOptics AXM765-BO Network Transceiver Module SFP+ 1550 nm offers both flexibility and reliability. Its robust design alongside precision engineering guarantees efficient, secure, and stable connectivity solutions tailored to meet the demands of modern networking environments.