10G DUPLEX SFP+

10G SFP+ LR Fiber Optic Transceiver Module 1310nm 10km Duplex LC SMF DDM | FLD-SFP+LR | Fiberland

10G SFP+ Duplex 1310nm 10km

Rate10GReach10kmWavelength1310InterfaceDUPLEX LC
Fiberland part number
FLD-SFP+LR
Unit price10.00USD / piece

Key Specifications

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Form TypeSFP+

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Technical Specifications

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14 specifications shown
Fiberland Part NumberFLD-SFP+LRVendor NameFIBERLAND
Data Rate10GWavelength1310
Reach10kmForm TypeSFP+
Optical InterfaceDUPLEX LCDDM SupportYES
Commercial Temp.0~70℃Industrial Temp.-40~85℃
Compatible BrandsCisco,Huawei,Nvidia...200+ brandsComplianceCE,FCC,ROHS,REACH
Warranty3 YearsModeSM

Product Compatibility Mapping

Cross-reference the original manufacturer part number with the corresponding Fiberland part number before confirming the target device and firmware.

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Verified cross-references46 manufacturer part numbersAcross 21 brands
Showing 8 of 46 verified matches

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Original part numberBrandFiberland part numberProduct description
SFP-10G-LRCISCOFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFP-10G-LR-SCISCOFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFP-10G-LR-XCISCOFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFP-10G-LR10-ICISCOFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFP-10G-LRARISTAFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFP-10G-LR-HARISTAFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
EX-SFP-10GE-LRJUNIPERFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.
SFPP-10GE-LRJUNIPERFLD-SFP+LR10GBASE-LR SFP+ transceiver, 1310 nm, 10 km over single-mode fiber, duplex LC.

A part-number cross-reference is a model-selection starting point, not a blanket device guarantee. Final fit depends on the exact device, firmware or OS, target port and requested coding profile.

See Where This Product Fits in the Network

Review common data-center, DCI, campus, server and metro-network connections before confirming speed, reach, fiber type and connector.

Application planning

Optical Transceiver Application and Link Map

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Optical transceiver application diagram covering data center, DCI, campus, server and metro networks

Review the Quality-Control and Test Flow

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Testing and quality

Quality Control and Test Flow

Review the sequence from material verification and firmware programming through optical, temperature, compatibility and final QA inspection.

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Quality control flow covering material, firmware, optical, temperature, compatibility and final QA checks

Frequently Asked Questions

Answers to common compatibility, installation and troubleshooting questions.

Why does replacing an OEM transceiver with a compatible transceiver result in no link?

First verify that the compatible replacement matches the OEM module's form factor, data rate, wavelength, reach, fiber type, connector, and interface standard. Then confirm that it has the correct compatibility coding for the host platform.

Will DOM values appear correctly on third-party transceivers?

With a properly compatible module and supported host platform, DOM/DDM values should normally be accessible through the network equipment's management interface.

How do I choose the correct compatible optical transceiver?

Start with the host equipment and port requirements, then match the data rate, form factor, wavelength, reach, connector, fiber type, optical standard, and OEM compatibility. For high-speed interfaces, also verify FEC and other platform-specific requirements.

Does the OEM part number need to match exactly?

The exact OEM reference is useful for identifying compatibility, but the optical specifications and host-platform requirements must also match the intended application.

Can a transceiver be compatible with the switch but still fail to link?

Yes. Host compatibility and optical-link compatibility are separate issues. A module may be correctly recognized while the link fails because of fiber, wavelength, FEC, polarity, configuration, or link-budget problems.

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Technical proof for faster project review

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