Infrared Fluoride Optical Window Lens (BaF2): High Transmittance and Durability for UV/IR Applications (D22 x 1mm)
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High optical transmittance with over 90% efficiency in the range of 0.35μm to 9μm for superior performance in infrared applications. Durable and moisture-resistant (BaF2) fluoride lens ideal for use in harsh environments and high temperature applications up to 2526 degrees Fahrenheit. Precision engineered with less than 5 seconds parallelism and a thickness tolerance of ±0.1mm for optimal optical performance. Versatile use on U-V and IR optical windows, prisms and lenses, making it for infrared detection, cell culture and infrared analysis. Exceptional mechanical properties with a Young's modulus of 56.4 GPa and a hardness of 82 kg/mm², ensuring long-lasting reliability and performance.
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Description
Amazon
High optical transmittance with over 90% efficiency in the range of 0.35μm to 9μm for superior performance in infrared applications. Durable and moisture-resistant (BaF2) fluoride lens ideal for use in harsh environments and high temperature applications up to 2526 degrees Fahrenheit. Precision engineered with less than 5 seconds parallelism and a thickness tolerance of ±0.1mm for optimal optical performance. Versatile use on U-V and IR optical windows, prisms and lenses, making it for infrared detection, cell culture and infrared analysis. Exceptional mechanical properties with a Young's modulus of 56.4 GPa and a hardness of 82 kg/mm², ensuring long-lasting reliability and performance.
High optical transmittance with over 90% efficiency in the range of 0.35μm to 9μm for superior performance in infrared applications. Durable and moisture-resistant (BaF2) fluoride lens ideal for use in harsh environments and high temperature applications up to 2526 degrees Fahrenheit. Precision engineered with less than 5 seconds parallelism and a thickness tolerance of ±0.1mm for optimal optical performance. Versatile use on U-V and IR optical windows, prisms and lenses, making it for infrared detection, cell culture and infrared analysis. Exceptional mechanical properties with a Young's modulus of 56.4 GPa and a hardness of 82 kg/mm², ensuring long-lasting reliability and performance.