Physical Optical Instruments
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This optical beam splitter cube divides a beam of light into two separate beams. The coating minimizes absorption loss, achieving approximately 50% transmission and 50% reflection.

This ball lens features an ultra-high-precision diameter and face. It is manufactured in different materials and offered in diameters ranging from 1-50mm.

This infrared optical lens is suitable for instruments and apparatuses requiring specialized applications. It is engineered for optimal performance within the infrared spectrum, ensuring high transmission and minimal distortion.

BK7 windows feature low distortion, low scatter, and excellent parallelism, making them suitable for both laser and non-laser applications. These windows are ideal for use in imaging systems, laser systems, and various scientific instruments where minimal distortion and high transmission are critical.

Corner cube prisms, also known as retroreflectors, reflect light back towards its source, irrespective of the prism's orientation. They consist of three mutually perpendicular reflecting surfaces, ensuring the beam exiting the prism is parallel to the incident beam.

Dove prisms are reflective prisms used to invert an image. Light entering one of the sloped faces undergoes total internal reflection from the inside of the longest face and emerges from the opposite sloped face.

These fused silica windows offer low distortion, low scatter, and excellent parallelism. They are suitable for both laser and non-laser applications requiring high optical performance.

This optical wedge prism is designed to deviate a beam of light by a specific angle. Its precise geometry ensures accurate and predictable beam deviation for optical systems and instruments.

The double concave lens diverges a parallel beam of light from a point source to produce an upright, virtual image. These lenses are used in optical systems to reduce image size, increase focal length, or correct for aberrations.

Rod lenses are used across medical, electronic, information, agriculture, and communication sectors. They are suitable for focusing, collimating, or redirecting light beams.

This optical lens assembly is designed for seamless integration into various optical instruments. It provides optimal light transmission and minimal distortion for accurate performance.

This 7X magnifying loupe is designed for detailed inspection. The precision-ground lens provides clear and distortion-free viewing.

This achromatic doublet lens maintains a consistent focal length, regardless of aperture. It delivers enhanced off-axis performance by minimizing chromatic aberration.

This high-precision micro lens is designed for optical instruments. It features a small form factor and clear optical properties, making it suitable for applications requiring miniaturization and high-resolution imaging.

This plano concave lens is designed for optical applications requiring beam divergence. The lens is manufactured from high-quality optical materials and finished with precision for minimal distortion.

This plano-convex lens is designed with one flat surface and one convex surface. It is suitable for use in imaging systems, telescopes, collimators, and condensers.

Precision cylindrical lenses are designed for a variety of optical applications. Manufactured from high-quality optical materials, they feature a curved surface in one dimension to focus or expand light in a single axis.

Colored glass optical filters are designed to selectively transmit specific wavelengths of light. These filters come in various colors and shapes for use in scientific instruments, photography, and stage lighting.