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Product Overview |
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The Finisar 10Gbps 10GBase-DWDM XFP transceiver module enables long-distance data transmission over single-mode fiber at 1532.68nm wavelength. It fits into standard XFP ports and uses duplex LC connectors, making it a practical choice for telecom and data center networks that require reliable 10G connectivity across up to 40km. |
General Information |
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| Brand | Finisar |
| Part Number | FTLX3613M356 |
Technical Information |
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| Form Factor | XFP |
| Media | SMF |
| Type | DFB |
| Protocols | 10GBase-DWDM,10Gbps,10G Ethernet |
| DOM Support | Yes |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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The Finisar FTLX3613M356 is a 10Gbps XFP transceiver designed for long-distance fiber optic communication. It transmits data over single-mode fiber using DWDM at a wavelength of 1532.68nm, making it suitable for dense wavelength-division multiplexing applications. Often found in telecom and enterprise networks, this module is built for environments requiring reliable, high-speed data transfer across spans up to 40km. Network engineers and operators benefit from its compatibility with standard XFP slots and duplex LC connectors. Key Features
This transceiver is typically deployed in metro and long-haul network segments where space and channel density are critical. It plays a key role in expanding bandwidth without laying new fiber, fitting seamlessly into existing DWDM systems. |
Use Cases |
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The Finisar FTLX3613M356 XFP transceiver is designed for high-performance networking environments where long-distance, high-speed data transmission is critical. It is ideal for telecom operators, large data centers, and enterprise networks that require sustained 10Gbps connectivity over extended single-mode fiber links up to 40km. How It's Used:
This transceiver module supports operational efficiency by providing scalable 10G connectivity over long distances without signal degradation. Its compatibility with standard XFP ports and duplex LC connectors simplifies integration into existing fiber infrastructures, enhancing network flexibility and performance. |