

Germanium provides excellent infrared optical performance with its high refractive index, broad spectral transmission range, and robust mechanical properties. Covering the 2–16 μm infrared range while remaining opaque in the visible spectrum, it is widely used in thermal imaging systems, infrared lasers, and other advanced optical applications.

Silicon offers a cost-effective solution for infrared optics with good thermal conductivity, excellent thermal stability, low thermal expansion coefficient, lightweight properties, and reliable performance. Widely used for infrared optical lenses, silicon supports thermal imaging systems, forward-looking infrared systems, mobile sensors, and other advanced applications.

Chalcogenide glass enhances infrared optical performance with its wide spectral transmission range, high transmittance, and excellent thermal stability. Its superior processing properties support precision molding of complex optical components, making it an ideal material for advanced infrared imaging systems.

Zinc selenide offers broad 600 nm–16 μm spectral transmission, low absorption, and excellent thermal shock resistance. It is widely used in thermal imaging systems, selected visible-light optical systems, and as a substrate for high-performance optical components.

Zinc sulfide delivers excellent optical performance with good refractive index uniformity, high consistency, and superior image transmission capabilities. Its high infrared transmittance makes it suitable for advanced infrared optical components and imaging systems.

Calcium fluoride offers excellent optical performance with low refractive index, low reflection losses, and high near-infrared transmittance. Its low chromatic aberration and reliable optical properties make it suitable for excimer laser systems and specialized optical applications.

Calcium Fluoride (CaF₂) reflectors offer excellent infrared performance with low absorption, high stability, and low chromatic aberration. Its unique optical properties enable efficient energy management and reliable performance in infrared systems, including excimer laser and thermal imaging applications.

Zinc Sulfide (ZnS) ball covers provide excellent infrared transmission, high refractive index uniformity, and superior optical clarity. With outstanding mechanical and thermal stability, ZnS is widely used as a protective window and optical cover for infrared imaging systems, offering reliable performance in demanding environments.

Prisms are precision optical components designed to redirect, split, or disperse light through controlled refraction and reflection. Manufactured from high-quality optical materials, they provide excellent transmission performance and optical accuracy, making them widely used in imaging systems, scientific instruments, and advanced optical applications.

Optical windows provide reliable protection for optical systems while maintaining excellent light transmission performance. Manufactured from high-quality infrared materials, they offer superior durability, environmental resistance, and optical clarity, making them widely used in thermal imaging, laser systems, and advanced detection applications.