Precision fused silica laser lenses designed for high-power laser beam focusing, collimation and beam shaping. Available in plano-convex, bi-convex, plano-concave and meniscus configurations with UV-grade AR coatings.
| Material | UV Fused Silica (SiO₂) |
| Transmission Range | 185 – 2,500 nm |
| Lens Types | Plano-Convex, Bi-Convex, Plano-Concave, Meniscus |
| Diameter Range | 3mm – 100mm |
| Focal Length Range | 5mm – 2,000mm |
| Surface Quality | 20-10 / 10-5 (MIL-PRF-13830B) |
| Surface Flatness | λ/4 @ 632.8nm (test plate) |
| Centration | < 3 arc min |
| Coating | AR @ 193/266/355/532/1064nm |
| LIDT | > 10 J/cm² @ 1064nm, 10ns |
Select the optimal optical material based on your wavelength, power, thermal environment and mechanical requirements.
Select the optimal substrate material based on your wavelength, environment, and budget requirements.
Not sure which material to choose?
Ask AI Optical EngineerCoatings are engineered around your specific wavelength and operating conditions.
We optimize specifications to match your system requirements — not over-specify. Tighter tolerances increase cost without always improving system performance. Our engineers will work with you to identify which parameters actually matter for your application and where standard tolerances are sufficient. Typical manufacturing capabilities:
Every component undergoes 100% inspection before shipment. We provide full inspection documentation including interferometer reports, spectral transmission curves, surface quality images and dimensional measurement data. Equipment capabilities:
Focal length tolerance: Standard tolerance is ±1%. For precision applications requiring ±0.5% or tighter, specify during ordering. Tighter focal length tolerance requires additional measurement and selection, increasing cost.
Thermal lensing: At high average powers (>50W CW), even fused silica can develop thermal lens effects due to dn/dT (11 × 10⁻⁶/K). For high-power systems, consider the thermal focal shift in your beam delivery design.
Surface quality for high power: 20-10 scratch-dig is standard for most laser focusing. For intracavity or very high peak power applications, specify 10-5 to minimize scatter-induced damage sites.
Fused silica is the standard for UV and high-power laser lenses. Use this guide to verify it matches your system requirements.
| Your Requirement | Best Material | Why |
|---|---|---|
| UV laser (< 350nm) | Fused Silica ✓ | Fused silica is the standard for UV laser optics. Transmits from 185nm with excellent purity. |
| Visible-NIR (350-2000nm) | Nbk7 | For visible-NIR lasers, N-BK7 is more economical. Fused silica is overkill unless high power demands it. |
| IR beyond 2.5um | Znse | Fused silica is opaque beyond 2.5um. Use ZnSe for CO2 laser, Ge for thermal IR. |
| Your Requirement | Best Material | Why |
|---|---|---|
| High-power (> 100W CW) | Fused Silica ✓ | Low thermal expansion and high LIDT make fused silica essential for high-power laser focusing. |
| Low-power (< 50W) | Nbk7 | For low-power visible-NIR lasers, N-BK7 provides adequate performance at lower cost. |
| Your Requirement | Best Material | Why |
|---|---|---|
| Ultrafast (< 100fs) | Caf2 | For femtosecond lasers, CaF2 offers lower group velocity dispersion to minimize pulse broadening. |
| Nanosecond or longer / CW | Fused Silica ✓ | For ns-pulsed or CW lasers, fused silica provides excellent performance. |
The following documentation is available upon request for qualified engineering projects:
CAD & dimensional specs per your requirements
Material properties, transmission curves & certificates
Spectrophotometric measurement data
Surface quality, flatness, centration & dimensional data
CoC with full traceability per project requirements
Application-specific specification documentation
Documentation availability depends on project scope and order quantity. Request details during RFQ.
Tell us your wavelength, application and operating conditions. PhotonEdge AI Optical Engineer can help you identify the key specifications before you request a quote.
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