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High-Quality CO2 Laser Reflecting Mirror - 25mm | Durable Suppliers & Factory in China
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High-Quality CO2 Laser Reflecting Mirror - 25mm | Durable Suppliers & Factory in China

CO2 laser mirrors are essential components manufactured from high-quality materials, including copper and specialized dielectric coatings. These mirrors are designed to maximize reflectivity at specific laser wavelengths, ensuring optimal performance in various applications such as engraving, cutting, and marking. As a leading supplier and factory in China, we provide top-tier CO2 laser mirrors that guarantee precise beam direction and efficiency, making them an ideal choice for industries that rely on advanced laser technology. Trust our expertise as manufacturers to deliver superior products that enhance your laser systems

    Product Details
    01

    Material characteristics

    The base material of the reflective mirror is silicon, copper, Mo. The silicon is the normal coating material and it has the advantage of low cost, strong durability and stable thermal properties. The copper is usually used in the high power CO2 laser owing to its high thermal conductivity. The Mo can be used in a poor condition owing to its high surface strength and it can bear high power without surface coating, with long life span.

    02

    Principle

    The reflective mirror is usually used as the end mirror or the folding reflective mirror in the laser cavity during the light transmission, while it is acted as the role of the beam turn-back mirror outside the laser cavity. A CO2 laser mirror is a key optical component used in CO2 laser systems, which typically operate at a wavelength of 10.6 microns in the infrared spectrum. These mirrors are designed to reflect the high-power infrared laser beam with minimal loss and distortion.

    03

    Use

    CO2 laser mirrors are essential components in various industrial and scientific applications. They are primarily used in CO2 laser systems for tasks such as laser cutting, engraving, and marking, especially in materials like wood, plastics, metal, and glass. These mirrors help direct and focus the laser beam accurately, ensuring high precision and efficiency in the laser processes. CO2 laser mirrors are also used in research and development, including spectroscopy and medical applications like laser surgery, where precise beam delivery is critical.

    Model Material Diameter (mm) Diameter (inch) Focal Length (mm) Focus Length (inch) Thickness (mm) Type / Origin
    JL19.05F1 ZnSe 19.05 0.75 38.1 1.5 2 Chinese Material
    JL19.05F2 ZnSe 19.05 0.75 50.8 2 2 Chinese Material
    JL19.05F3 ZnSe 19.05 0.75 63.5 2.5 2 Chinese Material
    JL19.05F4 ZnSe 19.05 0.75 76.2 3 2 Chinese Material
    JL19.05F5 ZnSe 19.05 0.75 101.6 4 2 Chinese Material
    JL19.05F1 ZnSe 19.05 0.75 38.1 1.5 2 Imported Material
    JL19.05F2 ZnSe 19.05 0.75 50.8 2 2 Imported Material
    JL19.05F3 ZnSe 19.05 0.75 63.5 2.5 2 Imported Material
    JL19.05F4 ZnSe 19.05 0.75 76.2 3 2 Imported Material
    JL19.05F5 ZnSe 19.05 0.75 101.6 4 2 Imported Material
    JL20F1 ZnSe 20 0.787 38.1 1.5 2.2 Chinese Material
    JL20F2 ZnSe 20 0.787 50.8 2 2.2 Chinese Material
    JL20F3 ZnSe 20 0.787 63.5 2.5 2.2 Chinese Material
    JL20F4 ZnSe 20 0.787 76.2 3 2.5 Chinese Material
    JL20F5 ZnSe 20 0.787 101.6 4 2.5 Chinese Material
    JL20F1 ZnSe 20 0.787 38.1 1.5 2.2 Imported Material
    JL20F2 ZnSe 20 0.787 50.8 2 2.2 Imported Material
    JL20F3 ZnSe 20 0.787 63.5 2.5 2.2 Imported Material
    JL20F4 ZnSe 20 0.787 76.2 3 2.5 Imported Material
    JL20F5 ZnSe 20 0.787 101.6 4 2.5 Imported Material
    ⅡⅥ ZnSe 20 0.787 38.1 1.5 2.2 Standard
    ZnSe 20 0.787 50.8 2 2.2 Standard
    ZnSe 20 0.787 63.5 2.5 2.2 Standard
    ZnSe 20 0.787 76.2 3 2.5 Standard
    ZnSe 19.05 0.75 38.1 1.5 2 High Power
    ZnSe 19.05 0.75 50.8 2 2 High Power
    ZnSe 19.05 0.75 63.5 2.5 2 High Power
    ZnSe 19.05 0.75 76.2 3 2 High Power
    ZnSe 25.4 0.75 38.1 1.5 2 High Power
    ZnSe 25.4 1 50.8 2 3 High Power
    ZnSe 25.4 1 63.5 2.5 3 High Power
    ZnSe 25.4 1 76.2 3 3 High Power
    JL25.4F1 ZnSe 25.4 1 50.8 2 3 Standard
    JL25.4F2 ZnSe 25.4 1 63.5 2.5 3 Standard
    JL25.4F3 ZnSe 25.4 1 76.2 3 3 Standard
    JL25.4F4 ZnSe 25.4 1 101.6 4 3 Standard
    JL25.4F5 ZnSe 25.4 1 127 5 3 Standard
    JL38.1F1 ZnSe 38.1 1.5 76.2 3 4 Standard
    JL38.1F2 ZnSe 38.1 1.5 127 5 4 Standard
    JL38.1F3 ZnSe 38.1 1.5 190.5 7.5 4 Standard
    JL38.1F4 ZnSe 38.1 1.5 127 5 7.87 Standard
    JL38.1F5 ZnSe 38.1 1.5 190.5 7.5 7.87 Standard
    JL38.1F6 ZnSe 38.1 1.5 127 5 9 Standard
    JL38.1F7 ZnSe 38.1 1.5 190.5 7.5 9 Standard
    Frequently Asked Questions

    What are the primary base materials used for CO2 laser reflecting mirrors?

    The primary base materials are Silicon (Si), Copper (Cu), and Molybdenum (Mo). Silicon is cost-effective with stable thermal properties; Copper offers high thermal conductivity for high-power systems; Molybdenum is highly durable and operates without coatings in harsh conditions.

    How does a CO2 laser reflecting mirror function inside and outside the laser cavity?

    Inside the laser cavity, the mirror functions as an end mirror or a folding reflective mirror to guide light transmission. Outside the cavity, it acts as a beam turn-back mirror to redirect the laser beam to the target location.

    What applications are CO2 laser mirrors typically used for?

    They are widely used in industrial laser cutting, engraving, and marking systems for processing wood, plastics, metals, and glass. They are also utilized in scientific research, spectroscopy, and medical laser surgeries.

    At what wavelength do these CO2 laser components typically operate?

    CO2 laser mirrors and ZnSe optical components are designed to operate in the infrared spectrum, typically at a wavelength of 10.6 microns, to handle high-power beams with minimal loss.

    What is the benefit of using ZnSe (Zinc Selenide) for laser optics?

    ZnSe is highly transparent in the infrared range, particularly at 10.6 microns. It provides extremely low optical absorption, making it ideal for focusing lenses and windows in high-power CO2 laser systems.

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