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Specialty Lenses

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Positive Meniscus Lenses Positive Meniscus Lenses New
  • Positive Meniscus Lens Designs
  • Minimize Spherical Aberration and Reduce Spot Sizes
  • 350 – 2,200nm Wavelength Range
Gradient Index (GRIN) Rod Lenses Gradient Index (GRIN) Rod Lenses
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  • Ideal for Fiber Coupling and Laser Diode Applications
  • Comparable Performance to Conventional Aspherical Singlets
  • Multiple Sizes and Wavelength Options
Microlens Arrays Microlens Arrays
  • Square Lens and Fly’s Eye Configurations
  • Precision Fused Silica Substrates
Cylindrical Microlens Arrays Cylindrical Microlens Arrays
  • Generate Non-Gaussian Line Patterns
  • Ideal for Light Homogenization
  • Excellent Performance from 193nm – 2.5μm
Multi-Lens Arrays Multi-Lens Arrays
  • Integrated, Monolithic Design
  • Single Sided Arrays Create Even Illumination in Pairs
  • Double Sided Arrays Ideal for Laser Top Hat Profile Generation
Fast Axis Collimators Fast Axis Collimators
  • Aspheric Cylindrical Lens Designs for Fast Axis Collimation
  • Standard AR Coating for 790 – 990nm
  • Ideal for Laser Diode Collimation
  • Slow Axis Collimators Also Available
Slow Axis Collimators Slow Axis Collimators
Focusable Collimators Focusable Collimators
  • Can Be Coupled to Standard 0.22 NA Fiber Optic Cables
  • Options Available for UV-VIS or VIS-NIR
  • Multiple Focal Length or Aperture Options
Rod Lenses Rod Lenses
TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. Learn More
  • Focuses Collimated Light into a Line
  • Available in Diameters as Small as 1mm
Spherical Aberration Compensation Plates Spherical Aberration Compensation Plates
TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. TECHSPEC® components are designed, specified, or manufactured by Edmund Optics. Learn More
  • Precision N-BK7 Substrate
  • Optimized for Use in Collimated Light with Small Fields of View
  • Transmitted Wave Front Accurate to λ/16
3D Printed Gradient Index (GRIN) Lenses 3D Printed Gradient Index (GRIN) Lenses
  • Additively Manufactured through 3D Printing
  • Highly Customizable Technology Enables Complex Lens Designs
  • Variable Index by Alternating Polymer Material
Molded Compound Parabolic Concentrators (CPCs) Molded Compound Parabolic Concentrators (CPCs) New
  • Ideal for Concentrating Solar Energy
  • 2.5 and 5mm Exit Diameters
  • 45° Acceptance Angle
Linear Microlens Arrays Linear Microlens Arrays
  • Fused Silica and Silicon Substrates
  • 1x4 and 1x8 Lens Array Configurations
  • Ideal for Fiber Coupling and Collimating
Dynamic Optics Deformable Lenses Dynamic Optics Deformable Lenses New
  • Transmissive Adaptive Optics for Wavefront Correction
  • Visible AR Coating for >97% Transmission
  • Ideal for Aberration Correction in Microscopy Applications

Specialty Lenses are Optical Lenses that are unique in design or purpose. Specialty Lenses are used in a range of applications for a wide variety of industries, including communications, R&D, industrial, or lab integration. Edmund Optics offers the world’s largest inventory of optical components, including unique Specialty Lenses.

Edmund Optics’ Specialty Lenses include Compound Parabolic Concentrators (CPCs), Microlens Arrays, or Multi-Lens Arrays. Compound Parabolic Concentrators (CPCs) are ideal for light collection applications.  Microlens Arrays are used for light homogenization applications. Multi-Lens arrays are ideal for use in illumination or projection systems.

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