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Product Overview |
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The FTLX3613M323 Finisar 10GBase-DWDM transceiver module is designed to deliver 10Gbps data transmission over single-mode fiber with a reach of up to 40 kilometers. It fits into XFP slots and uses duplex LC connectors, making it a practical choice for network setups requiring reliable long-distance optical links, especially in DWDM environments. |
General Information |
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| Brand | Finisar |
| Part Number | FTLX3613M323 |
Technical Information |
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| Form Factor | XFP |
| Media | SMF |
| Type | DFB |
| Protocols | 10GBase-DWDM,10 Gigabit Ethernet |
| Connector | LC Duplex |
| DOM Support | Yes |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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This Finisar transceiver module enables 10 gigabit per second data transmission over single-mode fiber, ideal for long-distance network links. Often found in telecom and data center environments, it supports Dense Wavelength Division Multiplexing (DWDM) to maximize fiber capacity. Network engineers and IT professionals typically use this module to upgrade or build high-speed optical networks. Key Features
This module is commonly deployed in metropolitan area networks and enterprise backbones where long-reach optical links are necessary. It provides a stable connection across substantial distances while fitting into standard XFP slots, helping maintain network performance without adding complexity. |
Use Cases |
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The FTLX3613M323 Finisar 10Gbps XFP transceiver is tailored for environments requiring high-bandwidth, long-distance optical connectivity with Dense Wavelength Division Multiplexing (DWDM) capabilities. It is particularly suited for enterprise networks and service provider infrastructures where link reliability and efficient fiber management are critical. How It's Used:
This transceiver module enhances network scalability by enabling seamless integration into existing DWDM frameworks while maintaining performance over extended distances. It supports operational efficiency by reducing the need for additional amplification and simplifying fiber infrastructure in complex network layouts. |