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SFP-10G-DW-46.12-I integrates a cooled EML transmitter and a PIN receiver into an industrial-grade 10G SFP+ DWDM optical module, guaranteeing precise 1546.12nm optical signaling and comprehensive DOM diagnostics over single-mode fiber runs up to 40km.
| Arista Part Number | SFP-10G-DW-46.12-I | Vendor Name | LINK-PP |
| Form Factor | SFP+ | Max Data Rate | 10.7Gbps |
| Wavelength | 1546.12nm | Max Cable Distance | 40km |
| Connector | Duplex LC | Media | SMF |
| Transmitter Type | EML | Receiver Type | PIN |
| TX Power | -1 to +2dBm | RX Power | -16 to -1dBm |
| Receiver Sensitivity | <-15.5dBm | DOM Support | Yes |
| Operating Temperature Range | -40 to 85°C | Protocols | SFP+ MSA Compliant, CPRI, eCPRI |
Arista SFP-10G-DW-46.12-I Compatible LINK-PP module is an industrial-grade 10G SFP+ DWDM transceiver designed for reliable, long-distance data transmission over single-mode fiber. It combines a precise 1546.12nm wavelength, a 40km reach, and real-time DOM diagnostics to ensure stable network operations. This module delivers robust optical efficiency and seamless hardware compatibility for demanding infrastructure deployments.
This transceiver features a hot-pluggable SFP+ footprint that allows for seamless installation and maintenance without disrupting network uptime. It is fully compliant with the SFP+ MSA and SFF-8472 standards, ensuring broad interoperability across diverse vendor hardware. The standardized design guarantees reliable physical and electrical connections.
The module delivers a steady 10Gbps data rate to meet the bandwidth demands of modern networks. It is specifically tailored for edge backhaul infrastructure, providing the reliable data throughput needed to connect remote sites to the core network. The higher transmission speed helps prevent traffic bottlenecks at the edge.
By utilizing Dense Wavelength Division Multiplexing (DWDM) technology, this module allows operators to expand network capacity without laying new fiber cables. It multiplexes tight wavelength spacing to maximize the utilization of existing single-mode fiber infrastructure. This provides a highly cost-effective solution for scaling network bandwidth.
Operating at a precise ITU grid wavelength of 1546.12nm, this module ensures clean channel isolation within dense optical frameworks. The transmitter uses a cooled EML laser to maintain stable wavelength accuracy even under varying temperature conditions. This strict spectral control minimizes signal interference with neighboring channels.
Equipped with a high-sensitivity PIN photodiode, this transceiver supports reliable data links across single-mode fiber distances of up to 40km. It manages optical link budgets efficiently to overcome signal attenuation over extended geographic spans. This makes it ideal for regional transport and metropolitan area networks.
The module incorporates an industry-standard duplex LC connector interface to ensure secure, low-loss physical fiber connections. This compact optical interface enables high port density on network line cards and switches. The snap-in locking mechanism prevents accidental disconnections and stabilizes signal coupling.
Featuring Digital Optical Monitoring (DOM) support, the module provides network administrators with critical real-time diagnostics. It allows for the continuous tracking of internal parameters such as transceiver temperature, laser bias current, and received optical power. These telemetry insights help identify and resolve physical layer issues before link failure occurs.
| Pictures | ID# | Description | Price | Stock | Add to Cart |
Q: Does the LS-DW3910-40I utilize a cooled EML laser or a standard DFB laser to hold its 1546.12nm line? By C***e on 2026-05-04
A: It integrates a highly precise, cooled Electro-absorption Modulated Laser (EML) to completely prevent wavelength drift across the dense 100GHz C-Band channel spectrum. By admin on 2026-05-05
Q: Does the DOM circuitry monitor internal power supply voltage variations caused by unstable solar/battery power grids at remote cell sites? By J***r on 2026-01-18
A: Yes, the real-time digital optical diagnostics report precise internal module voltage fluctuations, protecting the laser from power anomalies. By admin on 2026-01-19
Q: Does the transceiver design comply with RoHS and CE hazardous substance guidelines for deployment across dense EU public sectors? By H***t on 2025-10-21
A: Yes, the product is fully certified with RoHS, CE, and FCC stamps, fulfilling all necessary regulatory frameworks for global infrastructure rollout. By admin on 2025-10-22
Q: Can this specific module run on an active 100GHz ITU-T grid system alongside adjacent DWDM channels? By L***h on 2025-07-05
A: Yes, it is fixed to Channel 39 (1546.12nm) on the standard 100GHz grid, ensuring clean channel separation without bleeding into neighboring bands. By admin on 2025-07-06
Q: Can this module run reliably over legacy G.652.D dark fiber that has multiple physical fusion splices along the path? By M***n on 2025-04-10
A: Yes, it is fully optimized for standard single-mode fiber (SMF) grids, but you must ensure the cumulative insertion loss from the fusion splices doesn't exceed the module's maximum optical link budget safety margins. We highly recommend conducting an OTDR trace to verify that the total attenuation falls well within the transceiver’s rated receiver sensitivity limits. By admin on 2025-04-11
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