Off-Axis Collimator

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Off-Axis Collimator

Collimator chishandiso chinodiwa chekuyedza chemazuva ano optical instrument installment, kutumwa uye kuyedza, uye inonyanya kushandiswa kugadzira optical machine installment uye kutumwa, optical system latent parameter kuyerwa, kuongororwa kwemhando yemufananidzo, etc. Zvinoenderana nezvinangwa zvakasiyana zvakagamuchirwa, collimator inogona kushandiswa kune zvakawanda zvinangwa, senge gadziriso yekuona, kutarisisa kure, kukanganisa, chinzvimbo cheiyo focal-yekufambiswa kwendege uye focal-inotamisa chiyero chemuchina wese, kupera-kusvika-kumagumo mufananidzo bvunzo, nezvimwe.

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DESCRIPTION

Products Detail

 

 

Product Model

C320F15_OA

Lighting Aperture

Φ320mm

Focal Distance

4.8m

System Wave Aberration

nani pane RMS λ/20 (λ=632.8nm, nzvimbo yepakati yekuona)

Obscuration Ratio

An off-axis paraboloid-type optical nzira inogamuchirwa,

pasina zvipingamupinyi muhurongwa

Kushanda tembiricha

20±5℃

Misa

<1.5T

Saizi yeMain Body Envelopment

3.0m (L)×1.3m(W)×1.6m(H)

 

The Off-Axis Collimator is a high-precision optical instrument designed to align and direct light beams in non-central optical systems. It features a set of curved mirrors or lenses that direct light along an off-axis path, allowing for parallel beam collimation without introducing spherical aberrations typically associated with traditional on-axis collimators. This design makes it ideal for use in astronomical telescopes, laser systems, and precision optical testing where high accuracy and the avoidance of optical distortions are crucial. The Off-Axis Collimator typically includes adjustable mirrors and fine-tuning mechanisms for precise alignment and ensures that light remains parallel across a wide range of wavelengths. Its ability to handle large apertures and reduce optical aberrations makes it suitable for high-performance optical systems, where even minor imperfections can lead to significant errors.

 

The advantages of the Off-Axis Collimator include its ability to eliminate optical distortions, such as coma and spherical aberrations, which are common in on-axis systems. This ensures that the light beam remains parallel, providing high-accuracy collimation even in demanding applications. Its compact design and adaptability make it a versatile tool in both laboratory settings and field applications, particularly for high-resolution imaging and laser systems. The collimator also offers easy integration into existing setups, improving the overall performance and precision of optical instruments without requiring significant modifications.

Bata isu kuti uwane rumwe ruzivo nezve yedu Off-Axis Collimator

uye kuti inogona sei kusimudzira yako optical masisitimu.

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Precision Optical Alignment Solutions

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