SHENZHEN LEISHI SENSING OPTOELECTRONICS CO., LTD.

Sapphire Window Optical Window

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Application fields

It is used in various photometers and spectrometers, and is also widely applied in the sapphire observation Windows of reaction furnaces, high-temperature furnaces, reactors and other products, as well as in lasers and industries.

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Sapphire window pane

Sapphire window plates have excellent optical transmittance characteristics, high mechanical properties, and can withstand high temperatures. They are highly suitable for use in window panels, such as mobile phone camera Windows, mobile phone panels, watch covers, and smart wearable panels, etc.

 

Product Details

Sapphire is used as a light guide for immersion infrared spectroscopy acquisition and also for the transmission of 2.94-micron Er:YAG lasers. Sapphire has excellent surface hardness and its transmittance ranges from ultraviolet to mid-infrared wavelengths. Sapphire can only be scratched by a few substances other than itself. The uncoated substrate is chemically inert and insoluble in water, common acids or bases even at a maximum temperature of approximately 1000°C. Our sapphire window has a Z-axis cross-section, so the C-axis of the crystal is parallel to the optical axis, eliminating the birefringence effect of transmitted light.

Sapphire can be divided into coated and uncoated types. Uncoated sapphire is mainly used in applications within the range of 150 nm to 4.5 um, while coated sapphire products have anti-reflective films on both sides and are mainly applied in the wavelength ranges of 1.65 um to 3 um and 2um to 5 um.

Material Sapphire
Size Range 3 – 500mm
Size Tolerance ±0.1mm
Thickness Tolerance ±0.1mm
Parallelism < 3′
Clear Aperture >95%
Protective Edge Chamfer 0.1 – 0.5*45°
Coating Specification 1.6 – 3um & 2 – 5um Tave>93%
Chemical Composition AL₂O₃ Transmission Wavelength Range 1000nm – 14000nm
Melting Point 2045°C Refractive Index n = 1.769
Density 3.98 – 4.1g/cm³ Dielectric Constant 7.5 – 10
Coefficient of Thermal Expansion (1/°C) 5.7×10⁻⁶@300K Resistivity >10¹⁶Ω(25°C)
Specific Heat 0.18Cal/gm°k(25°C) Band Gap (ev) 1.4
Density 3.98 – 4.1g/cm³ Young’s Modulus (GPa) 138.5@298K
Mohs Hardness 9 Apparent Elastic Limit (Mpa) 49.46
Elastic Modulus 340 – 380Gpa Poisson’s Ratio 0.31@293K
Compressive Strength 2.1Gpa Thermal Conductivity (j/k.m.s) 55@300K
Tensile Strength 0.19Gpa Heat Capacity (j/g.k) 0.32
Absorption Coefficient 0.01@2500nm – 11000nm Thermo – optic Coefficient dn/dT(1/°C) 160 – 120×10⁻⁶@3000nm – 12000nm
Chemical Properties Not corroded by acid – base at room temperature; Can be eroded by HF hydrofluoric acid at 300°C


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