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Non-polarizing beam splitter - メーカー・企業と製品の一覧

Non-polarizing beam splitterの製品一覧

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Non-polarizing beam splitter

A revolutionary polarization-independent beam splitter that can be used with high-power lasers.

Spectral Optics' TrueSplit is a groundbreaking product in beam splitter technology. Most unpolarized beam splitters use hybrid metal coatings or optical cement that absorbs energy. TrueSplit does not use adhesives with hard dielectric coatings. As a result, it achieves absorption below 3%, P-S polarization performance, and a damage threshold of over 20 J/cm². Furthermore, it can achieve almost any R/T ratio (not just 50/50) and nearly any wavelength. The standard unit has a size of 2 ½ inches x 2 ½ inches with an effective diameter of 5/8 inches, and other sizes can be manufactured.

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Unpolarized beam splitter, wideband hybrid type

Effective for use in multiple reflections! Unpolarized beam splitter that enhances polarization contrast in optical microscopes, vertical illumination, CCD cameras, and more.

The wideband hybrid type of unpolarized beam splitter features a hybrid film structure that combines metal and dielectric films. While the effective wavelength range is broad, the differences in transmission/reflection characteristics for P and S polarization are controlled within 6%, allowing for the production of beam angles (transmission angles) with a deviation of less than 2 minutes to reduce beam misalignment. By applying an AR coating (anti-reflective film) optimized for the specified wavelength range, the transmission efficiency can be maximized, and by applying a black coating treatment, unwanted reflections (stray light) can be eliminated, making it possible to address glare and ghosting issues.

  • Processing Contract
  • prism

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Unpolarized beam splitter, narrowband dielectric type

Cube-type dielectric non-polarizing beam splitter for controlling laser light sources optimized for arbitrary wavelengths.

This is a cube-type polarization-independent beam splitter designed for controlling laser light sources that emit at specific wavelengths and outputs. While the effective wavelength range is broad, the difference in transmission characteristics for P and S polarization is controlled within 3%, and the beam deviation angle (transmission angle) can be manufactured within 2 minutes to reduce beam misalignment. By applying an AR coating (anti-reflective film) optimized for the specified wavelength range, the transmission efficiency can be maximized, and by applying a black coating treatment, unwanted reflections (stray light) can be eliminated, addressing glare and ghosting issues. It can be designed for any control wavelength, such as for a 532nm diode laser (semiconductor laser), a 632.8nm helium-neon (He-Ne) laser, or a 1064nm neodymium-doped yttrium aluminum garnet (Nd:YAG) laser. It is widely used in fields such as semiconductor manufacturing equipment and automatic optical inspection devices for line irradiation, position detection, and optical processing in machining and measurement instruments.

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  • prism

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