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  • Asphere Lenses Asphere Lenses The complex surface profile of an asphere can significantly reduce or even eliminate spherical aberrations comparing to spherical lenses. Hence, asphericals have been increasingly more widely explored and adopted during the optical design stage. Aspher
  • Spherical Lenses Spherical Lenses Hyperion offers a variety of spherical/ singlet lenses across the spectrum, including Plano-Convex/Concave, Bi-Concave/Convex, Positive and Negative Meniscus in a wide range of materials.
  • Cylindrical Lenses Cylindrical Lenses Cylindrical lenses are used to focus, expand or condense light into a single dimension. Cylindrical lenses are widely used in laser scanners, optical information processing and computing, dye lasers o...
  • IR Asphere Lenses IR Asphere Lenses At Hyperion Optics, we work with various infrared materials. Besides spherical parts, with increasing demand of IR aspheric components, designers are more likely to use aspheric parts in LIRP projects...
  • Concave Mirror Concave Mirror The concave mirror is the reflection imaging, it is not the light through, but the reflection back to the imaging instrument, the light observes the reflection law. A concave mirror is a spherical mir...
  • Singlet Lenses Singlet Lenses Singlet lens is a lens consisting of a pure single element, which can be considered as the fundamental element of developing optical systems. Based on optical engineers’ design, multiple singlet lens...
  • Mirrors Mirrors Hyperion offers a variety of laser, flat, metal substrate, focusing, or specialty Optical Mirrors in a multitude of reflective coating options, including Protected Aluminum, Enhanced Aluminum, Protected Silver, Protected Gold, or Dielectric.
  • Parabolic Mirrors Parabolic Mirrors Parabolic reflectors are used to collect energy from a distant source (for example sound waves or incoming star light). Since the principles of reflection are reversible, parabolic reflectors can also...
  • Parabolic Mirror Parabolic Mirror Hyperion Optics offer custom parabolic mirrors for use from the UV(200 to 400nm) to the IR (1to 40µm) wavebands. Parabolic mirrors are typically designed as a segment of a larger...
  • The Application and Development of Cylindrical Lens in Modern Optoelectronic Products The Application and Development of Cylindrical Lens in Modern Optoelectronic Products The image monitoring and imaging devices currently being promoted provide us with an irreplaceable safety and comfort...Perhaps, while we are enjoying the convenience of optoelectronic products, we ar...
  • The Use of Cylindrical Lens The Use of Cylindrical Lens Cylindrical Lens can be used in a single axial convergence or divergence of the beam and found in optical measurement, laser scanning, spectroscopy, laser diode output beam shaping, the X-ray light mi...
  • The correct way to install optical lenses The correct way to install optical lenses In the installation process, if our installation method is incorrect, the optical lenses will be contaminated. Therefore, the previous operating procedures should be complied with. If a large number o...
  • How to Effectively Eliminate Spherical Aberration in Optical System Design How to Effectively Eliminate Spherical Aberration in Optical System Design Spherical aberration is caused by a sphere on the surface of the lens. The light emitted from the same point on the optical axis converges through the lens at different points in the image field space...
  • The Characteristics and Applications of Zinc Selenide Lens The Characteristics and Applications of Zinc Selenide Lens CharacteristicsSmall focused spot with wipe resistance, small power loss with strong photo permeability. As the most economic transmission focus element, lens are suitable for heat treatment with a la...
  • Round Concave Mirriors Round Concave Mirriors Round concave mirrors are catoptric imaging. Mirrors( including convex) are reflecting back for imaging rather than get through the light, ray of light follows the law of reflection, that is what we c...