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CW-SFP1G80-31 SFP module achieves 1.25Gbps line rates and 80km SMF transmission at the 1310nm CWDM grid, using a DFB laser and PIN detector with matched bandwidth. Real-time DDM functionality reports bias current, temperature, supply voltage, and optical power levels on demand, enabling proactive link supervision. The module’s wavelength accuracy and overall optical stability are maintained within defined limits across the full 0 - 70°C ambient range.
| FS Part Number | CW-SFP1G80-31 | Vendor Name | LINK-PP |
| Form Factor | SFP | Max Data Rate | 1.25Gbps |
| Wavelength | 1310nm | Max Cable Distance | 80km |
| Connector | Duplex LC | Media | SMF |
| Transmitter Type | DFB | Receiver Type | PIN |
| TX Power | -1 to +4dBm | RX Power | -26 to -1dBm |
| Receiver Sensitivity | -26dBm | Receiver Overload | -1dBm |
| EMC (Electromagnetic Compatibility) | Supported | DDM Support | Yes |
| Operating Temperature Range | 0 to 70°C | Protocols | SFP MSA、SFF-8472 |
FS CW-SFP1G80-31 Compatible LINK-PP module is a commercial-grade 1310nm CWDM SFP module built for 1Gbps data rates over 80km single-mode fiber links. It adopts a standard hot-pluggable SFP footprint, meets SFP MSA requirements, and integrates a duplex LC port along with real-time Digital Diagnostic Monitoring (DDM) for operational visibility. This module operates reliably within a 0 to +70°C case temperature range and is tailored for regional backbone extensions.
The hot-pluggable SFP mechanical design allows field replacement without powering down the host chassis. Electrical and management interfaces are fully compliant with the SFP MSA, guaranteeing interoperability with a broad array of switches, routers, and media converters.
Its 1Gbps line rate delivers adequate throughput for connecting regional backbone nodes and aggregation points. This connectivity supports stable data exchange over metropolitan or campus ring topologies where moderate bandwidth and extended reach are required.
By operating on the CWDM wavelength grid, this transceiver enables multiple optical channels to share one physical fiber pair. This multiplexing approach increases spectral utilization and defers costly new fiber installations.
The 1310nm window is selected for its low attenuation in single-mode fiber and its moderate chromatic dispersion behavior over the intended span. This wavelength choice simplifies link budgeting without requiring exotic dispersion-compensation techniques.
The 80km reach capability covers long physical spans between sites without requiring external optical amplifiers or regenerators. It relies on a DFB laser source to deliver sufficient optical power for sustaining link integrity over the full distance.
The duplex LC interface provides a secure, latch-based connection to standard single-mode fiber patch cords. Its compact design ensures consistent physical mating and minimizes insertion loss during routine plug-and-play operations.
The Digital Diagnostic Monitoring (DDM) feature gives network administrators live access to key internal operating parameters. It tracks temperature, supply voltage, laser bias current, and optical Rx/Tx power levels to simplify fault detection and link supervision.
| Pictures | ID# | Description | Price | Stock | Add to Cart |
Q: Can our network management system track real-time optical power and transmitter bias current on this 1310nm channel using digital diagnostic monitoring? By D***s on 2026-02-02
A: Yes, the module features full SFF-8472 compliant DDM support over the standard 2-wire serial interface. Your monitoring tools can poll calibrated real-time telemetry, including operating temperature, supply voltage, laser bias current, TX optical power, and RX optical power to monitor the status of links spanning up to 80km. By admin on 2026-02-03
Q: Our telco PoP rack maintains an ambient temperature around 28°C to 35°C. Is this LS-CW311G-80C CWDM module safe from thermal-induced wavelength drift across long-haul 80km runs? By E***r on 2025-11-17
A: Yes. This module is specified for a commercial case temperature range (0°C to +70°C). At an ambient of 35°C, the internal case temperature will remain within this limit (though not “well below”), and the DFB laser’s center wavelength is guaranteed to stay within 1310 ± 6.5nm across the entire operating temperature range per design. This ensures stable transmission through the CWDM passband without adjacent-channel crosstalk under normal operating conditions. By admin on 2025-11-18
Q: What type of fiber cable does this 1310nm CWDM module require, and can it support a real-world 60km to 70km run through passive CWDM filters? By Y***y on 2025-04-21
A: This module is designed for standard single-mode fiber with a duplex LC connector. An actual 60km to 70km link is generally feasible thanks to its high-power DFB laser and sensitive PIN receiver. However, because real-world performance depends on total fiber attenuation, splice quality, and the insertion loss of your CWDM MUX/DEMUX units, we always recommend calculating your total channel loss before final deployment. By admin on 2025-04-22
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