Customized Square Sapphire Optical Window with Through Hole

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November 20, 2025
Catégorie Connexion: Saphir Windows optique
Dossier: In this video, we explore the precision engineering and versatile applications of our Customized Square Sapphire Optical Window with Through Hole. Learn how these high-performance windows, crafted from synthetic sapphire, offer unmatched durability, thermal stability, and optical clarity for demanding environments. Discover their customization options and see how they integrate into laser systems, medical devices, and aerospace applications.
Caractéristiques Du Produit Connexes:
  • Made from high-purity synthetic sapphire (Al₂O₃), offering exceptional hardness and chemical resistance.
  • Features a precision-drilled through hole for mechanical integration, alignment, or fluid/gas channels.
  • Excellent thermal stability and wide spectral transmission from UV to NIR.
  • Customizable in size, thickness, shape, and hole diameter/position to meet specific requirements.
  • High surface quality with options for scratch/dig specifications (80/50, 60/40, 40/20).
  • Ideal for laser systems, medical devices, aerospace, and high-temperature environments.
  • Chamfered edges around holes to minimize stress and prevent cracking.
  • Available in standard sizes (2", 3", 4", 6") or fully customized dimensions.
FAQ:
  • What are the key advantages of using synthetic sapphire for optical windows?
    Synthetic sapphire offers exceptional hardness (second only to diamond), excellent thermal stability, chemical resistance, and wide-spectrum optical transmission, making it ideal for demanding applications.
  • Can the through hole be customized in size and position?
    Yes, the through hole can be precisely drilled to your specifications, including diameter and location, with chamfered edges to reduce stress and ensure durability.
  • What surface quality options are available for these windows?
    We offer high surface quality with scratch/dig options of 80/50, 60/40, or 40/20, along with typical flatness of 2λ, ensuring optimal optical performance and mechanical reliability.