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LINK-PP LS-BL495510-80I is an industrial-grade, single-fiber 10G SFP+ BiDi optical transceiver engineered for long-haul 80km transmissions over single-mode fiber (SMF), utilizing a simplex LC/UPC interface that maximizes fiber capacity by transmitting at 1490nm-TX and receiving at 1550nm-RX on a single strand.
| LINK-PP Part Number | LS-BL495510-80I | Vendor Name | LINK-PP |
| Form Factor | SFP+ | Max Data Rate | 10.7Gbps |
| Wavelength | 1490nm-TX/1550nm-RX | Max Cable Distance | 80km |
| Connector | Simplex LC | Media | SMF |
| Transmitter Type | EML | Receiver Type | APD |
| TX Power | -1 to +5dBm | RX Power | -23 to -6dBm |
| Receiver Sensitivity | -22dBm | Receiver Overload | -6dBm |
| Operating Temperature Range | -40 to 85°C | Protocols | IEEE 802.3ae, SFF-8472, SFF-8431, 10GBASE-ZR/ZW |
LINK-PP LS-BL495510-80I integrates single-fiber BiDi technology, an 80km long-haul reach, and real-time DOM monitoring into a rugged, industrial-grade 10G SFP+ optical transceiver. This specialized module optimizes single-mode fiber infrastructure while ensuring reliable network operations in harsh outdoor environments.
This robust transceiver delivers steady 10Gbps throughput across rugged single-mode fiber infrastructures. It serves as a foundational building block for heavy-duty industrial sub-stations and grid communication networks that demand continuous uptime.
Engineered to withstand extreme temperature fluctuations, this module guarantees stable link uptime in unconditioned environments. It is ideal for deploying remote cell sites, roadside cabinets, and oil or gas field networks.
By isolating transmit and receive paths onto distinct optical wavelengths, this BiDi module operates over a single strand of glass. This bidirectional setup cuts fiber leasing costs in half by removing the need for a dedicated return fiber.
The module features advanced laser components capable of overcoming significant attenuation across extended distances. It bridges distant regional hubs and metro distribution nodes without requiring intermediate optical amplifiers.
Utilizing a single LC connector port, the hardware streamlines cable management inside crowded distribution frames. The precision-polished UPC mating interface minimizes signal reflections to maintain excellent data clarity.
Internal diagnostic software tracks live operational variables such as transceiver temperature, supply voltage, and laser power levels. This telemetry data allows engineers to perform predictive maintenance and locate faults before a link drops.
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Q: What is the correct matching wavelength configuration required at the remote end of the fiber link? By P***h on 2026-04-25
A: This module transmits at 1490nm and receives at 1550nm, so it must be paired with a matching module that transmits at 1550nm and receives at 1490nm. By admin on 2026-04-26
Q: Can this module be safely deployed in unconditioned outdoor aggregation enclosures that experience extreme sub-zero weather? By O***h on 2025-10-29
A: Yes, the industrial hardware architecture is designed to withstand freezing cycles down to -40°C without experiencing wavelength or signal drift. By admin on 2025-10-30
Q: Can I use standard multi-mode fiber patch cables to establish a short-distance link with this 80km SFP module? By Q***n on 2025-06-06
A: No, this is a long-haul module that must be paired exclusively with single-mode fiber to prevent extreme modal dispersion and signal loss. By admin on 2025-06-07
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