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Product Overview |
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The FTLX6824MCC Finisar transceiver module offers tunable DWDM capabilities within the C-Band, providing 11.3Gbps data transmission over single-mode fiber up to 80km. Its XFP form factor and LC connectors make it compatible with many network devices, fitting well into systems that demand flexible wavelength management and long-range communication. |
General Information |
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| Brand | Finisar |
| Part Number | FTLX6824MCC |
Technical Information |
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| Form Factor | XFP |
| Media | SMF |
| Type | DFB |
| Power Consumption | 3.5 W |
| Connector | LC Duplex |
| DOM Support | Yes |
Physical Characteristics |
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| Weight | 3.00 |
| Condition | Refurbished |
Product Description |
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The FTLX6824MCC is a tunable DWDM transceiver designed to deliver reliable 11.3Gbps optical data transmission over long distances. It is commonly used in optical communication networks that require flexible wavelength selection within the C-Band range, making it ideal for dense wavelength division multiplexing systems. Built for network engineers and operators managing fiber optic infrastructure, this module allows precise wavelength tuning to optimize channel allocation and improve network efficiency. Its compatibility with single-mode fiber and an 80km reach makes it suitable for metropolitan and regional network deployments. Key Features
These transceiver modules are typically found in telecom and enterprise network setups where long-haul, high-speed optical links are essential. They play a key role in expanding bandwidth while maintaining signal integrity over extended distances. |
Use Cases |
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The FTLX6824MCC Finisar XFP transceiver is designed for network environments requiring high-speed, long-distance optical connectivity with flexible wavelength management. It is best suited for service providers and enterprise IT departments managing DWDM systems across metropolitan and regional networks where channel tuning and spectral efficiency are critical. How It's Used:
This module enhances operational efficiency by allowing network operators to adapt wavelengths dynamically without hardware swaps, streamlining capacity planning. Its compatibility with existing XFP platforms aids in scaling network performance while maintaining low latency across extended fiber links. |