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Laser Diodes & Sources

980nm FBG PUMP Laser

These lasers are designed as pump sources for erbium doped fiber amplifier (EDFA) applications. Processes and techniques of coupling the fiber to the laser allow high output powers that are very stable with both time and temperature. The series pump module utilizes a fiber Bragg grating design for enhanced wavelength and power stability performance. This product has been designed to ensure superior wavelength locking over drive current, temperature and optical feedback changes. Devices are available with kink free output powers to 600mW.

980nm FBG PUMP Laser

Configuration options

Build & quote

Configure the options below and add your exact build to the enquiry — we confirm the part number and availability.

We confirm the exact part number for your configuration on enquiry.

Wavelength: 980nm · Power: >400mW · Grade: Standard · Isolator: Non · Monitor: Yes · TEC Cooling: No · Package: 10-pin · Fiber Type: Hi1060 · Fiber Cover: 0.9mm Tube · Fiber Length: 1.0 m · Connector: FC/APC

Application context

Why this design is used

Application guidance is tied to the configured wavelength, fiber interface and optical-budget fields for this family.

Laboratory optical integration

980nm FBG PUMP Laser: Laboratory optical integration depends on preserving the optical budget through the complete path. The 980nm wavelength specification sets source and detector compatibility. The fiber/interface entry (Hi1060, PM980) must match the connected components.

Fiber-optic instrumentation

980nm FBG PUMP Laser: Fiber-optic instrumentation depends on preserving the optical budget through the complete path. The 980nm wavelength specification sets source and detector compatibility. The fiber/interface entry (Hi1060, PM980) must match the connected components.

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Datasheets & documents

System integration

Integration and compatibility

Use these checks to connect 980nm FBG PUMP Laser to the surrounding optical, mechanical and control system. Every value shown is taken from this model's own specification record.

Optical interface and fiber
Fiber Type: Hi1060, PM980 · Fiber Cover: 0.9mm Tube
Specify connector polish and fiber architecture together. FC/PC, FC/APC and SMA interfaces, and single-mode, multimode and polarization-maintaining fibers, impose different return-loss, mode-field and alignment requirements.
Wavelength and loss budget
Wavelength: 980nm
Check the Laser Diodes & Sources passband, insertion loss, return loss and power handling at the actual source wavelength; a nominal telecom-band label is not a substitute for the configured range.

Technical FAQ

Integration questions for 980nm FBG PUMP Laser

Which fiber and connector does the 980nm FBG PUMP Laser use?

Fiber Type: Hi1060, PM980 · Fiber Cover: 0.9mm Tube. Specify connector polish and fiber architecture together. FC/PC, FC/APC and SMA interfaces, and single-mode, multimode and polarization-maintaining fibers, impose different return-loss, mode-field and alignment requirements.

How should the 980nm FBG PUMP Laser be included in an optical power budget?

Wavelength: 980nm. Check the Laser Diodes & Sources passband, insertion loss, return loss and power handling at the actual source wavelength; a nominal telecom-band label is not a substitute for the configured range.

Need this configured?

Share your wavelength, fiber type, connector, power handling and control requirements and we will qualify the matching configuration and part number.

Model selection

Nearby series comparison

Compare 980nm FBG PUMP Laser with the closest available models in the Laser Diodes & Sources family. Confirm option-dependent values on the final configuration before ordering.

Selection parameter980nm FBG PUMP Laser (current)980nm EDFA Butterfly Laser980nm Fiber Coupled FP Laser Source - 400-600mW
Wavelength range980nm980nm980nm
Optical performanceConfirm for this modelConfirm for this modelConfirm for this model
Fiber typeHi1060, PM980Hi1060, PM980, 50/125Hi1060, PM980, 50/125
Connector / controlFC/APC, FC/PC, Non, SpecialNon, FC/APC, SpecialConstant Current, Constant Power