Infrared optics for OEM, engineering, and sourcing teams.

Precision CO2 Laser Line Optics

25.4mm CVD ZnSe Cylindrical Lens with 63.4mm EFL

High-grade 25.4mm CVD ZnSe cylindrical lens with 63.4mm EFL for CO2 laser systems. In-stock quality optics with custom specs. Inquiry at iroptical!

Product family Cylindrical Lenses

Product Overview

Manufactured from optical-grade chemical vapor deposition Zinc Selenide, this 25.4 mm diameter cylindrical lens offers exceptional transmission across the 0.6 µm to 16 µm infrared spectrum. Engineered specifically for high-power CO2 laser applications, it provides precise one-dimensional light focusing and beam shaping with extremely low scatter and absorption.

Technical Specifications

ParameterSpecification
Substrate MaterialCVD Zinc Selenide (ZnSe)
Diameter (Dia)25.4 mm (+0.0/-0.1 mm)
Effective Focal Length (EFL)63.4 mm @ 10.6 µm (±1%)
Center Thickness (CT)3.91 mm (±0.1 mm)
Edge Thickness (ET)3.00 mm (Reference)
Surface Quality40-20 Scratch-Dig

Primary Applications

Optimized for focused line generation, this component is widely used in industrial laser cutting, engraving, and line-scan inspection optics. It is also an ideal choice for integration into anamorphic beam assemblies and custom IR lenses for mid-to-far infrared optical systems.

Customization & In-Stock Availability

At iroptical, we maintain a vast inventory of standard ZnSe optics to support rapid prototyping and batch production schedules without quality compromises. For OEM demands, our engineering team provides full custom fabrication, specialized AR coatings, and optical cell integration.

Technical Support & Direct Inquiry

Avoid thermal lensing and unexpected beam distortion caused by inferior optical coatings or delayed deliveries. Contact our application engineers directly at sales@iroptical.com or submit an inquiry today to receive technical data and instant quotation support.

Technical Parameters

Detailed specifications are not available for this product yet. Please contact the team for application guidance.

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