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Accortec FTLX8541E2-ACC 850nm Transceiver
- 850nm wavelength for multi-mode fiber
- Supports data rates up to 10 Gbps
- Compliant with SFP+ form factor standards
- Hot-pluggable module
- Digital Diagnostic Monitoring (DDM) support
- Low power consumption
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Product Overview
The Accortec FTLX8541E2-ACC is an 850nm SFP+ transceiver designed for 10 Gigabit Ethernet applications over multi-mode fiber. It is optimized for short-reach data center and enterprise networking.
Technical Information
| Wavelength | 850nm |
| Form Factor | SFP+ |
| Fiber Type | Multi-Mode |
Additional Specifications
| Data Rate | 10 Gbps |
| Connector Type | LC Duplex |
| Reach | Up to 300m (OM3) |
Product Description
The Accortec FTLX8541E2-ACC is a high-performance SFP+ (Small Form-factor Pluggable Plus) transceiver module designed for 10 Gigabit Ethernet (10GbE) applications. It operates at an 850nm wavelength, making it suitable for use with multi-mode fiber optic cables. This configuration is widely adopted for short-reach connections within data centers, server aggregation, and high-speed interconnects between network devices. This transceiver supports data rates of up to 10 Gbps, providing the necessary bandwidth for demanding applications and high-density network environments. Its SFP+ form factor ensures compatibility with a broad range of networking equipment, including switches, routers, and network interface cards that support the SFP+ standard. The module is hot-pluggable, allowing for seamless installation and replacement without interrupting network traffic. Equipped with Digital Diagnostic Monitoring (DDM) capabilities, the FTLX8541E2-ACC allows network administrators to monitor critical operational parameters in real-time, such as optical output power, optical input power, temperature, and voltage. This feature is crucial for performance management, fault detection, and ensuring the reliability of the optical link. The module is designed for low power consumption and robust performance, making it an efficient choice for modern data center infrastructure.

