Filtre coupé de 650 nm

Cut Off Filter
May 20, 2023
Category Connection: Filtre optique à passage court
Brief: Découvrez le filtre optique passe-court 650 nm, un filtre de coupure IR de haute qualité conçu pour les caméscopes. Ce filtre personnalisé garantit une haute perméabilité dans le spectre visible (400-630 nm) tout en bloquant efficacement la lumière proche infrarouge (700-1 100 nm). Idéal pour les applications d'imagerie numérique telles que les appareils photo de téléphones portables, les caméras d'ordinateur et les caméras de voiture.
Related Product Features:
  • Precision optical coating technology for high permeability in the visible spectrum (400-630nm).
  • Effective near-infrared cutoff (700-1100nm) to eliminate infrared light effects on CCD or CMOS imaging.
  • Customizable for various digital imaging applications, including mobile phone and car cameras.
  • High transmittance (≥90%) in the visible region for clear and accurate imaging.
  • Low transmittance (≤1%) in the infrared region to prevent unwanted light interference.
  • Available in multiple models (e.g., KK-SP650, ir-cut650) to suit different imaging needs.
  • Durable construction with a metallic sheath option for enhanced protection.
  • Wide range of applications, from industrial cameras to night vision and laser systems.
Faqs:
  • What is the primary function of the 650nm Short Pass Optical Filter?
    The 650nm Short Pass Optical Filter is designed to allow high permeability in the visible light spectrum (400-630nm) while blocking near-infrared light (700-1100nm), ensuring clear and accurate imaging in digital cameras.
  • What types of cameras can benefit from this IR cutoff filter?
    This filter is ideal for various digital imaging applications, including mobile phone cameras, built-in computer cameras, car cameras, and industrial cameras, where precise visible light imaging is required.
  • How does the filter achieve high transmittance in the visible spectrum?
    The filter uses precision optical coating technology, alternating high and low refractive index films on an optical substrate, to achieve ≥90% transmittance in the visible region (400-630nm) while minimizing infrared interference.
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