Bandpass Interference filter / VPF-25C-10-50-53500

VPF can transmit a specified wavelength range at a spectrum width (half-width) as precise as 1nm to 40nm. It is used to select spectral line from light-sources range from discharge lamp to different lasers wavelength.

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Part Number
VPF-25C-10-50-53500
¥24,000
◦The filters are made of dielectric coating and metallic coating which assure a steep rise and a sharp cut-off spectrum.
◦The filters are metallically framed which make it easy to be mounted into a holder.
◦Large choice of spectrum, range from UV 214nm to IR 1550nm.
More Information
Catalog Code W3119
RoHS Yes
CE No
Download Product's Datasheet
Guide ▶For filter size of 50 mm, please see VPF-50S or see the high transmittance filter interference filter (YIF).
WEB Reference Catalog Code/W3121, WEB Reference Catalog Code/W3118
▶For custom sizes or center wavelengths or specified spectrum halfwidth which are not mentioned on-line or in this catalog, please contact our Sales Division.
Attention ▶The filters characteristic depends on the angle of incident. If the angle of the light axis inclines, the center wavelength switches to shorter wavelength side and the transmittance may decrease. The selected spectrum width is precise more the inclination tolerance is small. Make sure that the incident angle is set at 0 degrees for an efficient experiment.
▶The filter usage temperature of environment is set at 23℃ (Celsius), increased temperature moves the center wavelength longer wavelength side.
▶Therefore a high precision set up is required for obtaining an efficient experiment each filter thickness is different.
▶Interference filters are heat absorptive, therefore they are not fit to use with high power laser and high energy pulsed laser.
Thickness t <7mm
Coating Dielectric multi-layer coating, Metal coating
Surface Quality (Scratch-Dig) 80−50
Type Broadband
Center wavelength 535.0+3.0/-0.0nm
Half bandwidth 10.0±2.0nm
Laser or Emission line spectrum Ti
Maximum transmittance >50%
Incident angle
Blocking range <0.01%(1nm~3.0μm)