Edge Filter 633nm US LPF
Description
Iridian specializes in providing custom Edge filter solutions for a wide range of applications. Our in house design software, multiple process options and 20 years’ experience dealing with a wide range of applications allow you to optimize your Short pass filter( SPF) and Long Pass filter (LPF) performance and cost for your needs. Our filters are all deposited using energetic sputtering, ensuring a hard durable, environmentally stable coating. The resulting filters also have exceptionally high transmittance levels and blocking from the visible to the MWIR (300nm to 10um). We partner with you from prototype to volume production to support you and the success of your business.
Edge Filter 633nm US LPF
Specifications |
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Diameter: | -- mm |
Thickness: | -- mm |
Transmission Wavelength Range: | 633-1200nm |
Cut-On Wavelength: | 633 nm |
Transmission: | 98 % |
Blocking (Optical Density): | OD>=6 |
Features
High transmission in the bandpass region- typically greater than 95%
Accurate wavelength control and uniformity
Low passband IL and ripple
Steep slopes from full transmission to full blocking
Blocking >OD6 (60dB)
Wide blocking ranges
CWL at any wavelength from the UV to the mid IR (~340nm to 10 µm)
For pricing, technical or any other questions please contact the supplier
- No registration required
- No markups, no fees
- Direct contact with supplier
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Ships from:
Canada
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Sold by:
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On FindLight:
External Vendor
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Frequently Asked Questions
An Edge filter is used to control the transmission of light within a specific wavelength range.
The filters are deposited using energetic sputtering, which ensures a hard durable and environmentally stable coating.
The filters have exceptionally high transmittance levels, typically greater than 95% in the bandpass region.
The filters have a blocking capability of >OD6 (60dB), providing effective blocking from the visible to the MWIR range.
Yes, the Edge filters can be customized to have a CWL (center wavelength) at any wavelength from the UV to the mid IR (~340nm to 10 µm).