10G BIDI SFP+

10G BiDi SFP+ ZR Fiber Optic Transceiver Module TX1490/RX1550nm 80km Simplex LC SMF DDM | FLD-BIDI-SFP+ZR | Fiberland

10G SFP+ BiDi TX1490/RX1550nm 80km

Rate10GReach80kmWavelength1490/1550InterfaceBIDI LC
Fiberland part number
FLD-BIDI-SFP+ZR
Unit price130.00USD / piece

Key Specifications

Select a specification to see how it affects model selection.

View complete table
Form TypeBIDI SFP+

Check this recorded value against the target device and project requirements before quotation approval.

Technical Specifications

Filter the product record by the information needed for engineering or purchasing review.

14 specifications shown
Fiberland Part NumberFLD-BIDI-SFP+ZRVendor NameFIBERLAND
Data Rate10GWavelength1490/1550
Reach80kmForm TypeBIDI SFP+
Optical InterfaceBIDI 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.

Search Full Compatibility Database
Verified cross-references4 manufacturer part numbersAcross 4 brands
Showing 4 of 4 verified matches

Swipe horizontally to view every field.

Original part numberBrandFiberland part numberProduct description
SFP-XG-LH80-SM1490-BIDIH3CFLD-BIDI-SFP+ZR10GBASE-BX SFP+ transceiver, TX 1490 nm/RX 1550 nm, 80 km over one strand of single-mode fiber, simplex LC.
02314RECHUAWEIFLD-BIDI-SFP+ZR10GBASE-BX SFP+ transceiver, TX 1490 nm/RX 1550 nm, 80 km over one strand of single-mode fiber, simplex LC; manufacturer model OSX080B00.
TN-SFP-10G-U-80TRANSITION NETWORKSFLD-BIDI-SFP+ZR10GBASE-BX SFP+ transceiver, TX 1490 nm/RX 1550 nm, 80 km over one strand of single-mode fiber, simplex LC.
AT-SP10BD80/I-14ALLIED TELESISFLD-BIDI-SFP+ZR10GBASE-BX SFP+ transceiver, TX 1490 nm/RX 1550 nm, 80 km over one strand of single-mode fiber, simplex 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

Compare representative network topologies and link paths to identify the appropriate product family for the intended deployment.

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

Review the Quality-Control and Test Flow

Follow the checkpoints used to verify materials, firmware, optical performance, temperature stability, compatibility and final inspection.

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.

View full testing diagram
Quality control flow covering material, firmware, optical, temperature, compatibility and final QA checks

Frequently Asked Questions

Answers to common compatibility, installation and troubleshooting questions.

How do I find a compatible transceiver for an OEM part number?

Search using the OEM part number and verify the form factor, data rate, wavelength, transmission distance, connector, fiber type, and host-platform compatibility.

How can I verify compatibility before ordering?

Check the network-device manufacturer and model, port type, required data rate, OEM transceiver reference if available, wavelength, reach, connector, fiber type, and software or firmware version when relevant.

Why is there no TX optical power from the compatible transceiver?

Check whether the port is administratively enabled and whether the host has disabled the transmitter because of an unsupported-module condition or configuration issue. If the module is correctly recognized and enabled, further hardware testing may be required.

Does using compatible optics affect transmission distance?

Compatibility coding itself does not determine transmission distance. Reach is primarily determined by the optical specification, fiber type, wavelength, link loss, connector quality, and network design.

Why does the link work at one end but show an error at the other end?

Each transceiver must be compatible with its own host device. In a mixed-vendor link, one end may be correctly coded while the transceiver at the opposite end is not fully compatible with its switch or router.

Tell Us What Your Project Needs

Engineering resources

Technical proof for faster project review

Move from model selection to internal approval with the documents, compatibility checks and verification paths buyers use most.