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LS-DW2910-80C SFP+ optical module delivers 10G DWDM connectivity over single-mode fiber up to 80km using a C-Band cooled EML transmitter tuned to 1554.13nm (100GHz ITU C29) paired with an APD photodetector. It supports full real-time digital optical monitoring (DOM), enabling continuous tracking of laser bias current, optical power, temperature, and supply voltage.
| LINK-PP Part Number | LS-DW2910-80C | Vendor Name | LINK-PP |
| Form Factor | SFP+ | Max Data Rate | 10.7Gbps |
| Wavelength | 1554.13nm | Max Cable Distance | 80km |
| Connector | Duplex LC | Media | SMF |
| Transmitter Type | EML | Receiver Type | APD |
| TX Power | -1 to +5dBm | RX Power | -23 to -6dBm |
| Receiver Sensitivity | -23dBm | DDM/DOM | Supported |
| Operating Temperature Range | 0 to 70°C | Protocols | 10GBASE-ZR/ZW, SDH STM64, SFF-8431, SFF-8472 |
LINK-PP LS-DW2910-80C is engineered with MSA-compliant hot-pluggable hardware, 100GHz C-Band DWDM multiplexing, and long-range optics capable of bridging 80km spans. Featuring standard duplex LC connectivity and continuous digital optical monitoring, it addresses core network demands for high port density and proactive link management.
The module features a hot-pluggable SFP+ footprint that allows easy installation and replacement without powering down host systems. It strictly complies with the SFP+ Multi-Source Agreement (MSA) to ensure seamless electrical and mechanical compatibility across standard networking equipment.
This transceiver provides a continuous 10Gbps data rate to support bandwidth-intensive traffic aggregation in telecom carrier networks. It serves as a dependable physical-layer link for routing intermediate and long-distance cellular backhaul connections between regional aggregation hubs.
Dense Wavelength Division Multiplexing (DWDM) technology enables multiple independent channels to transmit simultaneously over a single optical fiber pair. This capability maximizes existing fiber infrastructure capacity and lowers overall cabling costs without requiring new fiber deployment.
Operating at a fixed 1554.13nm nominal wavelength, the transmitter aligns precisely with the standard 100GHz ITU-T C-Band grid (Channel C29). This tight channel spacing prevents optical crosstalk and facilitates seamless integration into multi-channel DWDM multiplexer/demultiplexer systems.
A built-in cooled EML laser and a high-sensitivity APD receiver provide the optical power budget required to span up to 80km on single-mode fiber. This extended reach makes the device well-suited for long-haul core links and wide-area metro network spans without in-line amplification.
The industry-standard duplex LC optical receptacle ensures stable physical connectivity and low insertion loss when mated with standard SMF patch cords. Its compact connector design also allows for high-density port configurations across front-panel switches and patch panels.
Integrated Digital Optical Monitoring (DOM) capabilities comply fully with SFF-8472 digital diagnostic standards. Network administrators can continuously track critical operating metrics — including optical transmit/receive power, laser bias current, module temperature, and supply voltage — to simplify maintenance and link troubleshooting.
LINK-PP LS-DW2910-80C DWDM module adheres to international manufacturing and safety standards, holding full certifications for ISO 9001, CE, RoHS, and FCC. These credentials confirm that the module meets strict environmental, electrical, and optical quality requirements for commercial network deployments.
Every 10G DWDM transceiver undergoes rigorous optical and electrical evaluations to verify signal integrity and transmission stability before shipment. This comprehensive testing process ensures that each module operates reliably at full 10G line rates over its designated 80km span.
The transceiver conforms to established telecommunications and industry manufacturing standards to maintain high build reliability. Adhering to these global quality benchmarks ensures dependable long-term hardware durability in production environments.
Each module is systematically tested across major brand switches, routers, and transport platforms to ensure EEPROM recognition and seamless link startup. This validation minimizes host configuration errors and enables dependable plug-and-play network deployment.
Each LS-DW2910-80C 10G DWDM SFP+ module undergoes strict physical layer validation to guarantee stable optical performance and compliance with industry standards. Discover our complete quality inspection process at the LINK-PP Test Support Center.
Measure exact central wavelength accuracy for precise DWDM channel alignment.
Evaluate transmitter optical waveform quality and signal jitter characteristics.
Verify physical transmission integrity and data throughput without packet loss.
Check module operational stability across working temperature ranges.
LINK-PP LS-DW2910-80C 10G DWDM optical transceivers are securely packaged and dispatched through trusted global carriers for safe transit. Robust handling and efficient logistics streamline reliable order fulfillment to enterprise and telecom destinations worldwide.
Protect sensitive optical components against electrostatic discharge during transit.
Safeguard internal laser alignment from mechanical vibration and impacts.
Prepare and dispatch orders rapidly to accelerate customer network deployments.
Deliver optical modules worldwide using reliable international freight carrier services.
Deploying the LINK-PP LS-DW2910-80C 10G DWDM module involves hot-swapping it into an SFP+ switch slot and connecting single-mode fiber patch cords to the duplex LC port. Configured for 100GHz C29 DWDM channels, it efficiently aggregates intermediate traffic across long-range telco backhaul links between regional aggregation hubs.
LINK-PP offers end-to-end technical support, from pre-sales consultation to post-deployment assistance, ensuring smooth integration and reliable network performance.
Professional guidance to help you select the optimal LS-DW2910-80C module for your network design and application needs.
Validated compatibility with LINK-PP switches and other mainstream networking platforms for seamless deployment.
Comprehensive step-by-step guidance for installation, configuration, and initial setup, ensuring accurate deployment and reliable, stable operation from the start.
Ongoing technical support throughout the product lifecycle, delivering long-term stability for enterprise and carrier-grade networks.
LINK-PP provides after-sales support for the smooth deployment and reliable operation of the optical modules.
15-day no-reason return and refund
Free replacement for dead-on-arrival (DOA) or defective items within the initial period
Free repair services for manufacturing defects throughout the warranty period
Warranty exclusions and conditions apply
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Compatible | LINK-PP | LINK-PP | LINK-PP | LINK-PP | LINK-PP | LINK-PP |
Data Rate (Max) | 10.7Gbps | 10.7Gbps | 10.7Gbps | 10.7Gbps | 10.7Gbps | 10.7Gbps |
Wavelength | 1554.13nm | 1545.32nm | 1546.12nm | 1546.92nm | 1547.71nm | 1548.51nm |
Connector | Duplex LC | Duplex LC | Duplex LC | Duplex LC | Duplex LC | Duplex LC |
Cable Distance (Max) | 80km | 40km | 40km | 40km | 40km | 40km |
Cable Type | SMF | SMF | SMF | SMF | SMF | SMF |
TX Power | -1 to +5dBm | -1 to +2dBm | -1 to +2dBm | -1 to +2dBm | -1 to +2dBm | -1 to +2dBm |
Receiver Sensitivity | -23dBm | -15.5dBm | -15.5dBm | -15.5dBm | -15.5dBm | -15.5dBm |
Operating Temperature | 0 to 70°C | 0 to 70°C | 0 to 70°C | 0 to 70°C | 0 to 70°C | 0 to 70°C |
Temperature | Commercial | Commercial | Commercial | Commercial | Commercial | Commercial |
Form Factor | SFP+ | SFP+ | SFP+ | SFP+ | SFP+ | SFP+ |
Transmitter Type | EML | EML | EML | EML | EML | EML |
Receiver Type | APD | PIN | PIN | PIN | PIN | PIN |
DDM/DOM | Supported | Supported | Supported | Supported | Supported | Supported |
Protocols | 10GBASE-ZR/ZW, SDH STM64, SFF-8431, SFF-8472 | SFP+ MSA, CPRI, eCPRI, SFF-8472, SFF-8431 | SFP+ MSA, CPRI, eCPRI, SFF-8472, SFF-8431 | SFP+ MSA, CPRI, eCPRI, SFF-8472, SFF-8431 | SFP+ MSA, CPRI, eCPRI, SFF-8472, SFF-8431 | SFP+ MSA, CPRI, eCPRI, SFF-8472, SFF-8431 |
| Pictures | ID# | Description | Price | Stock | Add to Cart |
Q: What should the optical loss budget be between the TX and RX ends to ensure normal link operation? By E***m on 2026-05-03
A: With a minimum TX output of -1dBm and an APD receiver sensitivity of -23dBm, the module provides an optical power budget of 22dB. This budget accommodates line loss, splices, and connector attenuation across typical 80km single-mode fiber runs when proper engineering margins are maintained. By admin on 2026-05-04
Q: Does the module report real-time transmit and receive optical power via standard CLI commands? By T***r on 2026-03-12
A: Yes, it supports digital optical monitoring in accordance with SFF-8472, enabling compatible switch or router CLIs to read real-time TX/RX power, bias current, operating voltage, and internal temperature. By admin on 2026-03-13
Q: Why does this module require single-mode fiber instead of multimode fiber? By C***g on 2025-10-18
A: Multimode fiber suffers from severe attenuation around 1550nm as well as modal dispersion, which degrades signal integrity over extended spans. Standard single-mode fiber provides low attenuation and eliminates modal dispersion, which is required for an 80km reach. By admin on 2025-10-19
Q: Is this module compatible with switches configured for standard 10GBASE-ZR Ethernet links? By S***z on 2025-06-24
A: Yes, it complies with 10GBASE-ZR physical-layer specifications and SFF-8431 electrical interface standards, so it can interoperate with switch/router ports configured for 10G long-reach optics, provided the host port is compatible and supports the required coding configuration. By admin on 2025-06-25
Q: Will this transceiver work directly with standard 100GHz grid DWDM passive multiplexers? By J***l on 2025-02-11
A: Yes, the LS-DW2910-80C operates on ITU channel C29 at 1554.13nm, aligning with standard 100GHz C-band DWDM mux/demux channel grids that support this wavelength. By admin on 2025-02-12
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