Plano Convex Lens 1.5mm Diameter 1.0mm Focal Length
SLM-1.5-01P
Micro lenses are spherical plano convex/biconvex lenses with diameters smaller than 4mm. These small lenses are designed for use in equipment and instruments that demand lighter and smaller footprint optics.
◦Spherical plano convex lenses are useful when parallel beams are converged or lights from sources are converted to parallel beams, i.e., at infinite conjugate ratios.
◦Spherical biconvex lenses are useful when lights from sources are converged or images are relayed to other optical systems, i.e., at unit conjugate ratios.
◦Since these lenses are designed at the wavelength 587.6nm (yellow helium line [d]), the focal lengths of them vary at other wavelengths.
◦Spherical biconvex lenses are useful when lights from sources are converged or images are relayed to other optical systems, i.e., at unit conjugate ratios.
◦Since these lenses are designed at the wavelength 587.6nm (yellow helium line [d]), the focal lengths of them vary at other wavelengths.
| Name | Plano Convex Lens 1.5mm Diameter 1.0mm Focal Length | 
|---|---|
| Weight | 0.0050kgs | 
| Standard Coatings Available | No | 
| Guide | 
                            
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| Remark | - | 
| Attention | 
                            
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| Diameter φD | 1.5mm | 
| Focal length | 1.0mm | 
| Material | LaSF9 | 
| Material | LaSF9 | 
| Design Wavelength | 587.6nm | 
| Coating | Uncoated | 
| Centration | Please contact | 
| Surface Quality (Scratch-Dig) | 40-20 | 
| Lens Type | Plano convex | 
| Diameter φD | φ1.5mm | 
| Focal length f | 1.0mm | 
| Back focal length fb | 0.56mm | 
| Edge thickness te | 0.35mm | 
| Center thickness tc | 0.8mm | 
| Radius of curvature r | 0.85mm | 
            In stock
        
    
            SKU
        
SLM-1.5-01P
    
    
                $121.00
                            
            
            
Micro lenses are spherical plano convex/biconvex lenses with diameters smaller than 4mm. These small lenses are designed for use in equipment and instruments that demand lighter and smaller footprint optics.