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Finisar FTLX6611MCC 10Gb/s XFP 40km 1546nm Duplex LC SMF Transceiver
- Form Factor: XFP
- Data Rate: 10Gb/s
- Wavelength: 1546nm
- Reach: 40km
- Fiber Type: Single-Mode Fiber (SMF)
- Connector Type: LC Duplex
- Application: 10G Ethernet/SONET/SDH
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Product Overview
The Finisar FTLX6611MCC is a 10Gb/s XFP transceiver designed for 40km transmission over single-mode fiber. It operates at a wavelength of 1546nm and features a duplex LC connector, supporting high-speed data center and metro network applications.
Technical Information
| Product Type | Transceiver Module |
| Interface Type | XFP |
| Data Rate | 10 Gbps |
| Wavelength | 1546 nm |
Additional Specifications
| Max Distance | 40 km |
| Fiber Type | SMF |
| Connector | LC Duplex |
| Digital Diagnostic Monitoring (DDM) | Yes |
Product Description
The Finisar FTLX6611MCC is a high-performance 10 Gigabit Ethernet XFP transceiver module designed for demanding network environments. It provides reliable data transmission up to 40 kilometers over single-mode fiber optic cables, utilizing a specific wavelength of 1546nm. This makes it an excellent choice for metro Ethernet, data center interconnects, and other long-reach applications requiring high bandwidth. Compliant with the XFP Multi-Source Agreement (MSA), this transceiver ensures interoperability with a wide range of networking equipment. The duplex LC connector provides a secure and standard interface for fiber optic connections, facilitating easy installation and maintenance. The module is engineered to meet stringent performance requirements for speed, reliability, and signal quality. Equipped with Digital Diagnostic Monitoring (DDM), the FTLX6611MCC allows for real-time monitoring of critical operating parameters such as optical power, temperature, and voltage. This feature is invaluable for network administrators in managing performance, troubleshooting issues, and ensuring the overall health of the network infrastructure. Its robust design and advanced optical technology make it a dependable component for high-capacity networks.


