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Product Overview |
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The Finisar FTLX3613M328 module delivers 10Gbps DWDM connectivity over single-mode fiber, supporting distances up to 40 kilometers. It fits into XFP slots and uses duplex LC connectors, making it suitable for various network setups requiring precise wavelength control and reliable long-range performance. |
General Information |
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| Brand | Finisar |
| Part Number | FTLX3613M328 |
Technical Information |
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| Form Factor | XFP |
| Media | SMF |
| Type | DFB |
| Protocols | 10GBase-DWDM,10GbE |
| Connector | LC Duplex |
| DOM Support | Yes |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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The Finisar FTLX3613M328 is a high-speed 10Gbps network transceiver designed for long-distance data transmission over single-mode fiber. It’s commonly used in telecommunications and data center environments where reliable and fast DWDM connectivity is required. Built for network engineers and system integrators, this module fits into XFP ports and helps extend network reach without sacrificing signal integrity. It’s often found in metro Ethernet and service provider networks. Key Features
This transceiver module is typically deployed in optical transport networks where distance and bandwidth are critical. It helps maintain clear signal transmission over long distances, making it a dependable choice for network upgrades and expansions. |
Use Cases |
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The Finisar FTLX3613M328 XFP transceiver is commonly deployed in enterprise and carrier network environments where precise wavelength management and long-distance 10Gbps connectivity are required. It is ideal for organizations with existing DWDM infrastructure seeking to extend single-mode fiber links without compromising signal integrity. How It's Used:
This transceiver module enhances network scalability by allowing precise channel allocation in dense wavelength division multiplexed networks. Its compatibility with standard XFP interfaces ensures straightforward integration into existing hardware, supporting operational efficiency and bandwidth consolidation in complex fiber infrastructures. |