IR Optics
Featured Product from Avantier Inc.
Avantier delivers high-performance infrared optics for advanced applications like thermal imaging, spectroscopy, and high-power lasers. We ensure optimal performance across the infrared spectrum with our custom-crafted components.
Avantier utilizes diamond turning machines to achieve sub-nanometer surface finishes and sub-micrometer form accuracies. This allows us to produce precise IR lenses, IR windows, and complex assemblies. Our diamond fly cutting machine also enables intricate diffraction gratings for advanced IR optics design.
Diverse Materials & Coatings
Choosing the right material and coating is essential for IR optics performance. We offer a wide selection of IR substrates and anti-reflection (AR) coatings to maximize transmission and durability.
| Component Types/Materials | Transmission Wavelength (um) | Lenses | Windows | Prisms | Filters | Mirrors |
| Zinc Selenide (ZnSe) | 0.5 – 20 | Φ1-500mm | Φ1-500mm | 1-100mm | Φ1-500mm | Φ1-500mm |
| Calcium Fluoride (CaF2) | 0.13-10 | Φ1-280mm | Φ1-280mm | 1-100mm | Φ1-280mm | Φ1-280mm |
| Zinc Sulfide (ZnS) | 0.4-12 | Φ3-200mm | Φ3-200mm | 10-60mm | Φ3-200mm | Φ3-200mm |
| Fused Silica | 0.185-2.1 | Φ1-500mm | Φ1-500mm | 1-300mm | Φ1-500mm | Φ1-500mm |
| Silicon (Si) | 1.2 – 8 | Φ1-400mm | Φ1-400mm | 1-100mm | Φ1-400mm | Φ1-400mm |
| Germanium (Ge) | 2-14 | Φ3-450mm | Φ3-450mm | – | Φ3-450mm | – |
| Sapphire | 0.15-5 | Φ1-300mm | Φ1-300mm | 1-150mm | Φ1-300mm | Φ1-300mm |
| Magnesium Fluoride (MgF2) | 0.13-10 | Φ1-200mm | Φ1-200mm | 1-80mm | Φ1-200mm | Φ1-200mm |
| Chalcogenide | 1 – 14 *typical.25 *max | Φ1-300mm | Φ1-300mm | – | – | – |
| Gallium Arsenide (GaAs) | 0.9-18 | Φ1-150mm | Φ1-150mm | Φ1-60mm | – | – |
| BaF2 | 0.15-12.5 | Φ1-280mm | Φ1-280mm | 1-100mm | Φ1-280mm | Φ1-280mm |
| KBr?KCl | -25 | – | Φ1-50mm | – | – | – |
| LiF | Φ1-100mm | Φ1-100mm | – | – | – |
Contact us today to discuss your specific requirements and begin designing your custom IR optics solution.
Related Content:
Case Study: Wide FOV Infrared Lens Design