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MRV SFP27DWLR12-44 2.7Gb/s SMF 120km 1542.14nm SFP Transceiver
- Data Rate: 2.7Gb/s
- Fiber Type: Single-Mode Fiber (SMF)
- Maximum Distance: 120km
- Wavelength: 1542.14nm
- Form Factor: SFP
- Manufacturer: MRV
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Product Overview
The MRV SFP27DWLR12-44 is a 2.7Gb/s SFP transceiver designed for single-mode fiber (SMF) applications over long distances. It operates at a wavelength of 1542.14nm, providing a robust solution for extended network links.
Technical Information
| SKU | SFP27DWLR12-44 |
| Manufacturer | MRV |
| Product Type | SFP Transceiver |
| Data Rate | 2.7Gb/s |
Additional Specifications
| Fiber Type | SMF |
| Distance | 120km |
| Wavelength | 1542.14nm |
Product Description
The MRV SFP27DWLR12-44 is a high-performance SFP (Small Form-Factor Pluggable) transceiver engineered for demanding long-haul network deployments. With a data rate of 2.7Gb/s, it is suitable for applications requiring significant bandwidth over extended distances. The module utilizes single-mode fiber (SMF), which is the standard for long-distance communication due to its lower signal attenuation and dispersion characteristics compared to multimode fiber. Operating at a specific wavelength of 1542.14nm, this transceiver is designed to transmit data reliably across distances of up to 120 kilometers. This makes it an excellent choice for connecting geographically dispersed sites, backbone networks, or other scenarios where extended reach is a primary requirement. The SFP form factor ensures compatibility with a wide array of networking equipment, including switches, routers, and network interface cards that support the SFP standard. This MRV transceiver is built to meet the rigorous demands of telecommunications and enterprise networks. Its ability to achieve 120km transmission at 2.7Gb/s highlights its advanced optical design and manufacturing. The precise wavelength of 1542.14nm is crucial for interoperability within dense wavelength-division multiplexing (DWDM) systems or for dedicated point-to-point links, ensuring signal integrity and network stability over its specified range.

