PLMA-YDF-30/400-VIII, PM Yb-Doped Double Clad, Optical Fiber

PLMA-YDF-30/400-VIII, PM Yb-Doped Double Clad, Optical Fiber

SKU PLMA-YDF-30/400-VIII
UOM Meter(s)

Coherent 30/400 Ytterbium-doped double clad fiber is designed to combine the features of large 30 µm core diameter for generating high pulse energy together with a large 400 µm cladding optimized for high average powers, while still delivering good beam quality through the adoption of LMA fiber design. Available with latest generation of glass technology, the Gen. VIII 30/400-YDF fiber is available in two versions-standard and PANDA-stye PM.



This product requires a purchase of a minimum quantity of : 2


Price $475.23 USD


Details

Features & Benefits

  • NuCOAT fluoroacrylate coating - Greater fiber durability in extreme operating and storage conditions
  • LMA core design - operates at highest CW powers possible and delivers good beam quality
  • "Few" moded core design - Easy to maintain single mode LP01 beam through fiber & components
  • PANDA-style stress structure for increased birefringence - Superior optical performance and uniformity
  • All fiber proof tested to > 100 kpsi - Critical for ensuring long term reliability when coiling

Typical Applications

  • Marking
  • Welding
  • Cutting

Resources

Datasheets
Datasheets

Specs

General

Large Mode Area
Large Mode Area
Polarization Maintaining
Polarization Maintaining
Fiber Application
Laser Components
Fiber Application
Laser & Amplifier
Product Family
NuYDF
Product Family
NuPANDA
Active Dopant
Ytterbium
Claddings
Double
Coating Material
Low Index Acrylate
Minimum Operating Wavelength (nanometers)
1060
Maximum Operating Wavelength (nanometers)
1115
Core Diameter (micrometers)
30
Core Numerical Aperture (NA)
0.06
First Cladding NA
0.46
Cladding Absorption
0.9 ± 0.1 dB/m at 915 nm
Cladding Absorption
2.7 dB/m near 975 nm
Cladding Attenuation
≤ 15 dB/km at 1095 nm
First Cladding Diameter (micrometers)
400
Coating Diameter (micrometers)
550
Proof Test Level
100 kpsi (0.7 GN/m²)
Birefringence
3