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FibroLAN SF1G-LX5-5C-39 1390nm Transceiver
- 1390nm operating wavelength
- Transceiver module
- Likely 1Gb/s speed (based on 'SF1G')
- Suitable for single-mode fiber
- Designed for optical networking applications
- Compact form factor
- Potential for specific CWDM or DWDM applications
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Product Overview
The FibroLAN SF1G-LX5-5C-39 is a transceiver module operating at 1390nm. While the title suggests a 1Gb/s speed and LX5 designation, the specific details point to its use in optical networking, likely for data transmission over fiber.
Technical Information
| Wavelength | 1390nm |
| Form Factor | Likely SFP or similar compact module |
Additional Specifications
| Data Rate | Assumed 1 Gb/s (based on 'SF1G') |
| Fiber Type | Likely Single-Mode Fiber (SMF) |
Product Description
The FibroLAN SF1G-LX5-5C-39 is an optical transceiver module identified by its specific model number and operating wavelength of 1390nm. The 'SF1G' prefix in the SKU strongly suggests a 1 Gigabit per second (Gb/s) data rate, and the 'LX5' designation often implies a long-reach application, typically over single-mode fiber. The '5C' and '39' are likely internal manufacturing or revision codes specific to FibroLAN. This transceiver is designed for integration into networking equipment such as switches, routers, or media converters to establish optical links. The 1390nm wavelength places it within a specific band of the optical spectrum, potentially for use in CWDM (Coarse Wavelength Division Multiplexing) systems or as a standalone link for specific applications. Its primary function is to convert electrical signals to optical signals and vice versa, enabling data transmission across optical fiber. Given the typical characteristics of LX transceivers and the specified wavelength, this module is expected to support extended transmission distances on single-mode fiber. It is a crucial component for building robust and efficient optical communication networks, facilitating high-speed data transfer between network nodes. The exact compatibility and performance characteristics would depend on the specific standards it adheres to, which are not fully detailed in the provided title.
