Coatings and hot mirrors
Reflect unwanted wavelengths with an interference coating or hot mirror. Define incidence angle and spectral limits for the actual light path.
Backlight Optics / IR Blocking Materials
Explore infrared-blocking coatings, polymer films, absorbing glass and formed filters for backlight integration. Chips, strips, caps and filter rails can be developed around selected LEDs and optical paths.
Add items to your Interest List for application review and quotation. Selection does not confirm stock, price, fit or design release.
Specify the source spectrum, useful transmission band, blocking region and physical space before selecting a material.
Reflect unwanted wavelengths with an interference coating or hot mirror. Define incidence angle and spectral limits for the actual light path.
Absorbing materials attenuate unwanted light within the material. Thickness, temperature and source spectrum affect the result and the thermal load.
Develop custom sizes and filter-to-source placement with the LED rail. Use product-page curves as illustrative guidance where marked, then specify the required spectral limits.
Open a group to compare descriptions and select references.
Interference coatings and combined constructions transmit the required visible spectrum while rejecting selected wavelengths. Specify substrate, spectral edge, angular response and package geometry.
PN: IRF-03001-00
Further development requiredCustom multilayer coating on optical glass for visible transmission and infrared rejection. Source spectrum, passband, blocking limits, angle range and cut geometry define the design. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03007-00
Further development requiredInterference filter on glass for multicolor Class B display development. Listed gauges are 1 or 2 mm, with published transmission 90%. Select gauge, source and incidence-angle range. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03014-00
Further development requiredInterference-coating family for multicolor NVIS display development. Select the spectral edge, substrate, source chromaticity and incidence-angle range together. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03022-00
Further development requiredCustom infrared-blocking coating on glass for NVIS or dual-mode backlights. Specify the LED spectrum, cutoff, transition slope, blocking band, angle range and chip, strip or window dimensions. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03023-00
Further development requiredCustom source or display filter using glass, polymer, coating or laminated construction. Define the required NVIS class, output color, environment and complete spectral limits. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03024-00
Further development requiredCustom absorbing, reflective or combined filter for source-level, light-guide or display-window integration. Qualify the actual construction and source together. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
Candidate materials for chips, strips and custom shapes. Confirm wavelength-dependent blocking, thickness, temperature limits and adhesive compatibility.
PN: IRF-03002-00
Further development requiredAbsorbing polymer filter, nominal 0.50 mm, identified for multicolor Class B backlight development with white LEDs. Published transmission 29%; measurement basis and paired-source evidence require confirmation. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03003-00
Further development requiredFlexible absorbing polymer, nominal 0.25 mm, identified for Class A white-light development. Published transmission 30%. LED-strip installation and temperature limits require validation. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03004-00
Further development requiredFlexible absorbing film, nominal 0.25 mm, with published transmission greater than 60%. Full spectral blocking data is required; no NVIS class is assigned. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03005-00
Further development requiredAbsorbing polymer, nominal 0.50 mm, identified for Class A development with NVIS Green B output from white LEDs. Published transmission 29%; verify source and measurement basis. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03006-00
Further development requiredAbsorbing polymer, nominal 1.00 mm, identified for Class A development with NVIS White output. Published transmission 34%; verify source and measurement basis. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03012-00
Further development requiredCustom infrared-absorbing polymer in film, sheet or formed geometry. Specify actual thickness, wavelength-resolved blocking, temperature and source compatibility. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
Formed source filters cover LEDs or arrays. Package fit and sealed bypass paths are part of the optical design.
PN: IRF-03008-00
Further development requiredShaped polymer filtering rail for LED strips or arrays. Typical wall thickness 0.508 mm; overall dimensions, spectral material, ends, mounting and light sealing are custom. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03009-00
Further development requiredPolymer cap covering the top and sides of an SMD LED. White-output design with published photopic transmission 36% for a cool-white source. Match the LED package and seal bypass paths. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03010-00
Further development requiredPolymer cap for an SMD LED used in a multicolor display backlight. Published photopic transmission 24%. Match the LED spectrum, package and required NVIS class. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03011-00
Further development requiredColored polymer cap family for SMD LEDs. Select output color, LED spectrum, package geometry and class-specific radiance limits as one configuration. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
Glass-based spectral control can be used directly or as part of a coated or hybrid assembly. Absorption, reflection losses, gauge and heat load affect performance.
PN: IRF-03015-00
Further development requiredAbsorbing glass for white-output NVIS development. At 1 mm reference thickness, internal transmission is at least 0.83 at 500 nm and at most 0.19 at 600 nm. Surface reflection is excluded. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03016-00
Further development requiredAbsorbing glass for NVIS Green A output development, with data referenced to 2 mm thickness. Output color does not establish goggle Class A compliance. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03017-00
Further development requiredAbsorbing glass for NVIS Green A output development, with data referenced to 3 mm thickness. Verify transmission at the actual supplied gauge. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03018-00
Further development requiredNear-infrared absorbing glass for spectral attenuation or hybrid filter assemblies. Reference data uses 1 mm thickness. No standalone NVIS compliance is established. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03019-00
Further development requiredHeat-absorbing glass with data referenced to 2 mm thickness. Internal transmission limits are 0.14 at 800 nm and 0.03 at 900 nm. Absorbed optical power heats the component. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03020-00
Further development requiredThin absorbing glass for white-output NVIS development. Nominal thickness 0.50 mm. Published luminance transmission ranges from 36.5% to 38.5% across four specified LED sources. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
PN: IRF-03021-00
Further development requiredAbsorbing glass for NVIS Green A output development. Nominal thickness 2.00 mm. Published luminance transmission ranges from 17.8% to 18.7% across three specified white LEDs. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
Visible-transmitting, infrared-reflecting optics for a designed incidence angle. Provide a path for rejected energy and verify spectral leakage.
PN: IRF-03025-00
Further development requiredVisible-transmitting, infrared-reflecting mirror for 45° incidence. Diameter 12.5 mm; thickness 1.10 ±0.20 mm. Average transmission exceeds 85% over 400–690 nm and average reflectance exceeds 95% over 750–1125 nm. No NVIS qualification is implied. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
An alternative location in the optical path. This display-overlay reference is not qualified for direct contact with an LED.
PN: IRF-03013-00
Further development requiredPolymer filter family for installation over a display, with nominal luminance-transmission options of 20% or 30%. Select the exact construction and verify the complete display. Direct LED contact is unqualified. Development reference — further application development and verification required. Define the source, geometry, spectral limits and operating conditions before release. Finished-display NVIS compliance is not established.
Absorbing filters convert rejected optical energy to heat. Reflective coatings and hot mirrors redirect it. In dual-mode backlights, source isolation, light leaks and fluorescence from inactive day LEDs can affect night-mode performance.
Request application-specific spectral data, dimensions, tolerances and test conditions by FPD.DEV part number. Confirm filter-to-LED pairing and verify the complete display.
Connect this material selection to the rest of the system.
The LED spectrum, drive level and filter geometry must be considered together.
Review diffusion, polarization, light recovery and leakage in the assembled backlight.
Save candidate parts to the Interest List. We will develop custom dimensions and requirements into a drawing and agree the evaluation scope.
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