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CWDM-SFP10G-1610 10G CWDM optical module integrates a cooled 1610nm EML laser and PIN receiver into a hot-pluggable SFP+ footprint, leveraging low-dispersion optical signaling to transmit up to 40km over single-mode fiber while delivering granular real-time telemetry via digital optical monitoring (DOM).
| HPE Part Number | CWDM-SFP10G-1610 | Vendor Name | LINK-PP |
| Form Factor | SFP+ | Max Data Rate | 10.7Gbps |
| Wavelength | 1610nm | Max Cable Distance | 40km |
| Connector | Duplex LC | Media | SMF |
| Transmitter Type | EML | Receiver Type | PIN |
| TX Power | -1 to +5dBm | RX Power | -23 to -6dBm |
| Receiver Sensitivity | -16dBm | DOM Support | Yes |
| Operating Temperature Range | 0 to 70°C | Protocols | SFP+ MSA Compliant, SFF 8472,SFF 8431,802.3ae, ITU-T |
HPE CWDM-SFP10G-1610 Compatible LINK-PP module is a 10G CWDM SFP+ transceiver engineered for extended-reach optical links across harsh operating environments. Built with a 1610nm cooled EML laser and PIN receiver, this optical module delivers reliable 40km transmission over single-mode fiber with real-time digital optical monitoring via a duplex LC interface.
Designed with a hot-pluggable SFP+ footprint, this transceiver enables quick field replacements without interrupting active network equipment. Full compliance with SFP+ MSA and SFF-8472 standards guarantees seamless interoperability across multi-vendor switches and routers.
The module delivers 10Gbps line-rate performance to upgrade optical infrastructure and data pipelines between geographically separated facilities. It easily bridges remote enterprise campuses, regional data hubs, and aggregation switches with reliable, high-speed 10G connectivity.
Integrating Coarse Wavelength Division Multiplexing (CWDM) technology allows network operators to run multiple independent channels over existing single-mode fiber pairs. This approach maximizes cable utilization and avoids the high costs of laying new physical optical lines.
Operating at the 1610nm optical channel, the transmitter aligns with standard ITU-T CWDM grid configurations. Its built-in cooled EML laser maintains precise wavelength stability even under extreme temperature fluctuations.
Paired with a high-sensitivity PIN photodiode, the optical system maintains strong signal integrity over distances up to 40km. This 40km reach makes it an effective choice for metro-area links and long-distance backhauls.
Equipped with an industry-standard duplex LC connector, the compact housing ensures secure latching and low optical insertion loss. The slim form factor allows high port density in tightly packed patch panels and switches.
Onboard Digital Optical Monitoring gives technicians live visibility into key metrics like Tx/Rx power, operating temperature, laser bias current, and supply voltage. These diagnostic feeds help prevent sudden network downtime through proactive link maintenance.
| Pictures | ID# | Description | Price | Stock | Add to Cart |
Q: Can we monitor module temperature remotely to prevent failures at hot sites? By G***s on 2026-05-12
A: Yes. With DOM enabled, supported network equipment can report the module’s temperature and optical power levels. Your NOC can set thresholds to identify overheating, declining received power, or abnormal transmit-power readings before the link is affected. By admin on 2026-05-13
Q: We’re running an 8-channel CWDM MUX spanning 1470nm to 1610nm — where exactly does this optic patch in? By H***m on 2025-09-13
A: Patch this transceiver directly into the dedicated 1610nm channel port on your CWDM tray. Just ensure the remote end also uses a 1610nm module on its matching MUX port, as different CWDM wavelengths cannot interoperate. By admin on 2025-09-14
Q: We are building a CWDM ring for LTE backhaul. Is this module suitable? By F***t on 2025-03-17
A: Yes. It is suitable for 10Gbps CWDM optical systems and LTE-related optical links, provided the network uses the 1610nm CWDM channel and single-mode fiber. By admin on 2025-03-18
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