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405nm High Performance Laser Line Filter 12.5mm Dia.

High Performance Laser Line Bandpass Filters

High Performance Laser Line Bandpass Filters

Stock #12-268
£276.25
Qty 1+
£276.25
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Diameter (mm):
12.50 +0.0/-0.1
Center Wavelength CWL (nm):
405.00
Full Width-Half Max FWHM (nm):
1.50 - 2.8
Minimum Transmission (%):
>90
Optical Density OD (Average):
≥6.0
Coating:
Hard Coated
Blocking Wavelength Range (nm):
353.5 - 401 & 409.1 - 495.3
Bandwidth (nm):
1.5
Clear Aperture CA (mm):
≥10
Surface Quality:
60-40
Angle of Incidence (°):
0 ±2
Construction:
Mounted in Black Anodized Ring
Environmental Durability:
MIL-STD-810F Paragraphs 501.4, 502.4, and 507.4
Mount Thickness (mm):
3.5 ±0.1
OD 5 Blocking Wavelength Range (nm) :
353.5 - 401 & 409.1 - 495.3
OD 6 Blocking Wavelength Range (nm):
372.6 - 398.9 & 411.1 - 445.5
Physical Durability:
MIL-C-48497A Paragraphs 4.5.3.1, 4.5.3.2, 4.5.3.3, 4.5.4.2, and 4.5.5.3
Substrate: Many glass manufacturers offer the same material characteristics under different trade names. Learn More
Low Fluorescence N-BK7 or equivalent
Substrate Thickness (mm):
2.0 ±0.1
Type:
Bandpass Filter

Regulatory Compliance

RoHS 2015:
Reach 209:

Product Family Description

  • Over 90% Transmission at Specified Laser Lines
  • Hard Coated Design
  • Designed for Laser Applications

Available for use with common gas and solid state lasers, High Performance Laser-Line Bandpass Filters are designed to offer maximum transmission of stimulated emission, while eliminating noisy spontaneous emission. These laser line filters are available at popular diode and Nd:YAG laser lines, including 532nm, 785nm, and 1064nm. High Performance Laser-Line Bandpass Filters are ideal for laser-based fluorescence instrumentation, Raman spectroscopy, or for analytical or medical laser systems. Due to their steep edges, High Performance Laser-Line Bandpass Filters are excellent complements to TECHSPEC® Notch Filters and Laser Line Longpass Filters.

Note: These filters are optimized for high spectral performance rather than high Laser Induced Damage Thresholds (LIDT). A typical LIDT for these filters is 0.1 J/cm2 @ 532nm, 10ns.

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