Ross Optical Industries Fused Silica Lens L-QPX009

Description
Fused Silica material has advantages over regular optical glasses. It is often used in deep UV or NIR systems due to its high transmission in those spectral regions. Due to the material’s inherently hard SiO2 amorphous structure and its exceptional chemical homogeneity, it displays high laser damage threshold and endures high operating temperatures. These lenses are often used in laser and imaging systems.
Description
Fused Silica material has advantages over regular optical glasses. It is often used in deep UV or NIR systems due to its high transmission in those spectral regions. Due to the material’s inherently hard SiO2 amorphous structure and its exceptional chemical homogeneity, it displays high laser damage threshold and endures high operating temperatures. These lenses are often used in laser and imaging systems.

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Description
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Fused Silica Lens - L-QPX009 - Ross Optical Industries
El Paso, TX, USA
Fused Silica Lens
L-QPX009
Fused Silica Lens L-QPX009
Fused Silica material has advantages over regular optical glasses. It is often used in deep UV or NIR systems due to its high transmission in those spectral regions. Due to the material’s inherently hard SiO2 amorphous structure and its exceptional chemical homogeneity, it displays high laser damage threshold and endures high operating temperatures. These lenses are often used in laser and imaging systems.

Fused Silica material has advantages over regular optical glasses. It is often used in deep UV or NIR systems due to its high transmission in those spectral regions. Due to the material’s inherently hard SiO2 amorphous structure and its exceptional chemical homogeneity, it displays high laser damage threshold and endures high operating temperatures. These lenses are often used in laser and imaging systems.

Supplier's Site

Technical Specifications

  Ross Optical Industries
Product Category Optical Lenses
Product Number L-QPX009
Product Name Fused Silica Lens
Lens Type Spherical Lens
Lens Application Infrared (optional feature); Visible; Ultraviolet (optional feature)
Focal Length 25 mm (0.9843 inch)
Center Thickness 4.8 mm (0.1890 inch)
Edge Thickness 2 mm (0.0787 inch)
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