Zinc Selenide Aspherical Lens
Number:PAsSE-
Zinc selenide aspherical lenses have the characteristics of low absorption and thermal shock resistance, and are commonly used in thermal imaging systems. They can also be used in some visible light optical systems. It has a high numerical aperture and can collect a large amount of light energy, including quantum lasers (QCL). It can be coated with MgF2, UV-AR, UV-VIS, VIS-EXT, VIS-NIR, NIR I, NIR II, Telecom NIR, SWIR, SWIR, YAG-BBAR and other film systems. UM OPTICS has complete production equipment and experience in optical crystals, components, and coating, and can provide high-quality zinc selenide non spherical transparent mirrors.
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The product undergoes multiple inspections before being stored, and the quality is guaranteed. Please use it with confidence.
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Optical products are special items and cannot be returned or exchanged unless there is a quality issue with the product itself
If you need customization or bulk production, please contact us online and we will offer you a discounted price.
Dia(mm) | Focal Length(mm) | Center Thickness(mm) | Edge Thickness(mm) | Design Wavelength(μm) | Radius of Curvature(mm) | Surface Quality | Compare | |
---|---|---|---|---|---|---|---|---|
Screen | Screen | Screen | Screen | Screen | Screen | Screen | ||
More+ Less | 2-300 | 15-5000 | 0.12-60 | 0.12-60 | Custom | Custom | 60-40 | |
Zinc Selenide Aspherical Lens Number:PAsSE-
Dia(mm):2-300
Focal Length(mm):15-5000
Center Thickness(mm):0.12-60
Edge Thickness(mm):0.12-60
Design Wavelength(μm):Custom
Radius of Curvature(mm):Custom
Surface Quality:60-40
Diameter Tolerance(mm):+0.0/-0.1
Thk Tolerance(mm):±0.1
Substrate Material:Zinc Selenide(ZnSe)
PV@632.8nm:λ/4
Centering:<3′
Clear Aperture:>90%
Coating:Uncoated
REACH:Compliant
ROHS:Compliant
|
Material Data | |
Physical Properties | |
Crystal Structure | Cubic |
Density [g/cm3] | 5.27 |
Resistivity [Ω.cm] | ~1012 |
Melting Point [℃] | 1525 |
Chemical Purity [%] | 99.9996 |
Thermal Expansion [1/K] | 7.1*10-6@273K 7.8*10-6@373K 8.3*10-8@473K |
Thermal Conductivity [J/K.m.s] | 18.0@298K |
Specific Heat Capacity [J/g.K] | 0.339@298K |
Knoop Hardness [kg/mm2] | 110 |
Bending Strength [Mpa] | 55 |
Young's Modulus [GPa] | 67.2 |
Poisson's Coefficient | 0.28 |
Optical Properties | |
Transmission Range | 0.5-22μm |
Refractive index inhomogeneity [△n/n] | <3*10-6@632.8μm |
Absorption Coefficient [1/cm] | 5.0*10-3@1300nm 7.0*10-4@2700nm 4.0*10-4@3800nm 4.0*10-4@5250nm 5.0*10-4@10600nm |
Thermal light coefficient [1/k,298-358k] | 1.07*10-4@632.80nm 7.0*10-5@1150nm 6.2*10-5@3390nm 6.1*10-5@10600μm |
Wavelengh(nm) | Refractive Index(n) | Wavelengh(nm) | Refractive Index(n) |
620 | 2.5994 | 10600 | 2.4028 |
1000 | 2.4892 | 13000 | 2.385 |
3800 | 2.4339 | 14600 | 2.3705 |
5000 | 2.4295 | 16600 | 2.3487 |
7000 | 2.4218 | 17800 | 2.3333 |
9000 | 2.4122 | 18200 | 2.3278 |
Incidence Mode | Damage Threshold(J/cm2) |
Normal Incidence | >20 |
Brewster's Corner | >15 |
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