Precision Optical Wedge Prisms are designed for accurate laser beam steering and fine angular adjustment. With high surface accuracy and anti-reflection coating, they effectively minimize ghost images and improve system stability.
UV Fused Silica Wedge Prisms are designed for precise laser beam steering in ultraviolet and visible applications. Featuring high surface accuracy and low reflection loss, these wedge prisms effectively reduce ghost images and ensure stable optical alignment.
Broadband Polarizing Beam Splitter Prisms are designed to separate laser beams into orthogonal linear polarizations over a wide wavelength range. With high damage threshold and epoxy-free optical contact bonding, these PBS prisms ensure stable polarization performance in demanding laser systems.
High Power Polarizing Beam Splitter Prisms are designed for demanding laser systems requiring high damage threshold and excellent extinction ratio. Using dielectric coatings and precision optical bonding, these PBS prisms deliver stable polarization separation for high-power applications.
This short pass optical filter is designed to transmit shorter wavelengths while effectively blocking longer wavelengths, offering sharp spectral cutoff and stable performance for spectroscopy and imaging applications.
The optical bandpass filter selectively transmits a defined wavelength range while effectively blocking unwanted spectral regions. This optical bandpass filter features stable center wavelength control and high blocking performance for demanding spectral applications.
This long pass optical filter is manufactured from UV fused silica and designed to deliver high transmission above the cutoff wavelength while effectively blocking shorter wavelengths, making it ideal for precision optical and imaging systems.
Silicon plano convex lenses provide excellent transmission in the 1.2–8 μm infrared band, featuring high thermal conductivity and precise focusing performance, making them ideal for imaging, beam collimation, and laser applications.
Germanium Plano Convex (PCX) Lenses are made from high-purity germanium, with transmission in the 2.0–16μm range. They are widely used in infrared imaging, thermal vision, and optical systems for harsh environments. With high refractive index and durability, they are ideal for advanced infrared applications.
The Germanium Meniscus Lens combines a convex and a concave surface to alter the direction and focus of light beams. Designed for infrared wavelengths from 2.0μm to 16μm, it delivers high transmission, low reflection, and excellent thermal stability.
The silicon round infrared window offers high thermal conductivity and stable IR transmission, making it a reliable protective window for infrared imaging and high-power optical systems.
The germanium round infrared window provides high transmission from 2.0 to 16 μm, combining a high refractive index with excellent thermal stability for thermal imaging and infrared sensing applications.