material
Select the optimal optical material based on transmission range, mechanical properties and application requirements.
Note: Felix Glass provides custom fabrication across all listed materials.
Send your drawing or specification for a material selection recommendation and quotation.
Recommended Optical Dome Materials Comparison
Material
Transmission
Main Advantages
Typical Applications
Sapphire
UV – 5 μm
Extremely high hardness, scratch resistance, high temperature
High‑temperature windows, underwater, aerospace
ZnSe (Zinc Selenide)
0.6 – 14 μm
Excellent LWIR transmission, low absorption
Thermal imaging, IR cameras, CO₂ laser
ZnS (Zinc Sulfide)
0.4 – 14 μm
Wide spectral transmission, stronger mechanical properties
Military IR systems, thermal imaging
Germanium (Ge)
2 – 14 μm
High refractive index, excellent LWIR performance
Thermal cameras, infrared imaging systems
Silicon (Si)
1.2 – 15 μm
Lightweight, high thermal conductivity, good IR transmission
LWIR imaging, IR sensors, laser systems
BK7 / H‑K9L
350 – 2500 nm
Cost‑effective, excellent visible transmission, easy processing
Security cameras, LiDAR, optical sensors
Fused Silica
180 – 2500 nm
Very low thermal expansion, excellent UV transmission
UV optics, laser systems, LiDAR, scientific instruments
Borosilicate
350 – 2500 nm
Thermal shock resistance, economical
Industrial cameras, outdoor sensors
Calcium Fluoride (CaF₂)
0.2 – 8 μm
Excellent UV‑IR transmission, low dispersion
UV imaging, spectroscopy, IR windows
Magnesium Fluoride (MgF₂)
0.2 – 7 μm
Excellent UV performance, chemical resistance
UV optical systems, spectroscopy
Barium Fluoride (BaF₂)
0.2‑12 μm
Broad infrared transmission range
Thermal IR detectors, spectroscopy
Zirconium
0.3 – 7 μm
Good mid‑IR transmission
IR fiber systems, infrared sensors
Chalcogenide
1 – 12 μm
Moldable IR material, lightweight
Thermal imaging, compact IR optics
IRG206
1‑12 μm
Chalcogenide glass, precision moldable IR
Compact thermal imaging lenses
IRG26
2‑14 μm
High IR transmission, low transition temperature
Uncooled IR camera optics
YAG Crystal
0.3‑5 μm
High hardness, excellent thermal stability
Laser host, harsh‑environment windows
YVO₄ Yttrium Vanadate
0.4‑5 μm
High birefringence, good mechanical strength
Laser polarizers, beam splitters
LiNbO₃ Lithium Niobate
0.4‑5 μm
Superior electro‑optic & acousto‑optic properties
Optical modulators, nonlinear optics
GaAs Gallium Arsenide
1‑18 μm
Broad far‑IR transmission, high refractive index
Far‑IR optics, CO₂ laser components
Aluminum Oxynitride (AlON)
UV – 5 μm
Transparent armor grade, extreme hardness
Defense optical windows, protective domes
Multi‑spectral Spinel (MgAl₂O₄)
UV – 5 μm
High impact resistance, multi‑spectral capability
Aerospace, missile seeker domes, defense windows




