해당 제품은 0.4λ RMS의 비구면 형상 오차가 특징인 CNC 연마 비구면 렌즈입니다. 정밀한 비구면 형상 오차로 인해 이미징 및 레이저 포커싱 어플리케이션 등에서 구면 수차를 보정해야 하는 용도로 사용하는 데 적합합니다. 광학 어셈블리에서 여러 구면 렌즈를 대체하여 무게와 비용을 절감하는 데 사용할 수도 있습니다. 6 - 50mm의 직경으로 제공되며 개구수(NA) 값이 높아 광 처리량이 극대화됩니다.
This comparison of the performance of aspheric, achromatic, and spherical PCX lenses in different situations reveals the ideal use cases for each type of lens.
Computer Generated Hologram metrology provides a new solution for overcoming traditional asphere metrology. Learn more about CGH metrology at Edmund Optics.
Are all aspheric lenses from Edmund Optics® polished using magnetorheological finishing (MRF)?
No, advances in subaperture polishing have allowed for the fabrication of aspheres with surface figure error down to λ/20 (0.25µm). However, MRF is still...
What are the challenges associated with increasing the diameter of optics like aspheric lenses?
The CNC polishing equipment used to fabricate the optics must have a large enough range of motion to properly polish the full asphere, and the weight of the...
CNC polished aspheric lenses offer high numerical apertures while creating diffraction-limited spot sizes and are ideal for high-precision applications.
Deviations in surface form relative to an ideal shape at higher spatial frequencies than Zernike polynomial aberrations but lower frequencies than roughness.
Meta description: Ideal for volume applications, including laser diode collimation, bar code scanners, and optical data storage. Can be molded into diameters as small as 1mm.
Cinema lenses designed to create content tailored for online streaming utilize aspheres to shoot with a shallow depth of field while maintaining quality.
Aspherized Achromatic Lenses, exclusive to Edmund Optics, are doublet lenses consisting of two cemented optical elements that are matched for their color-correction ability and small RMS spot size.
Modifying Stock Optics Tip #3: Turn A Sphere Into An Asphere
Join Andrew Fisher, Manufacturing R&D Engineer at Edmund Optics, as he discusses some tips for modifying stock optical components to fit your application's needs.
The diffraction pattern caused when light passes through an aperture is called the Airy Disk. Find out how the Airy Disk can impact your image at Edmund Optics.
Although a common misconception, individual optical lenses do not always form an image when the object plane is placed a focal length away from the lens.
Modifying Stock Optics Tip #4: Add A Coating To A Stock Lens
Join Andrew Fisher, Manufacturing R&D Engineer at Edmund Optics, as he discusses some tips for modifying stock optical components to fit your application's needs.
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