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Top Hat Beam Shaping Lenses FBSR
FBSR-1064-4.0
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1788 $
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Top Hat Beam Shaping Lenses FBSR
FBSR-1064-4.0
Available: 0
1788 $

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Top Hat Beam Shaping Lenses FBSR

Top Hat Beam Shaping Lenses FBSR

FBSR beam shapers generate round homogeneous Top Hat spots. Each FBSR is made for a fixed input beam diameter with a ±5% tolerance. Lenses for wavelengths and beam diameters other than standard, can be produced on request.

1788 $
delivery Estimated delivery time: 2 - 5 days
Qty discount: 5-9 pcs. of the same item - 5% OFF! 10+ pcs. 10% OFF!
Products
Specifications
Operation Instructions
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Description
Operation Wavelength
Input Beam Diameter @ 1/e²
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Code Operation Wavelength Input Beam Diameter @ 1/e² Price Delivery Add to cart
FBSR-1064-1.0 1064 nm 1.0 mm 1788 $ Request
FBSR-1064-1.5 1064 nm 1.5 mm 1788 $ Request
FBSR-1064-2.0 1064 nm 2.0 mm 1788 $ Request
FBSR-1064-2.5 1064 nm 2.5 mm 1788 $ Request
FBSR-1064-3.0 1064 nm 3.0 mm 1788 $ Request
FBSR-1064-3.5 1064 nm 3.5 mm 1788 $ Request
FBSR-1064-4.0 1064 nm 4.0 mm 1788 $ Request
FBSR-1064-4.5 1064 nm 4.5 mm 1788 $ Request
FBSR-1064-5.0 1064 nm 5.0 mm 1788 $ Request
FBSR-1064-5.5 1064 nm 5.5 mm 1788 $ Request
FBSR-1064-6.0 1064 nm 6.0 mm 1788 $ Request
FBSR-1030-1.0 1030 nm 1.0 mm 1788 $ Request
FBSR-1030-1.5 1030 nm 1.5 mm 1788 $ Request
FBSR-1030-2.0 1030 nm 2.0 mm 1788 $ Request
FBSR-1030-2.5 1030 nm 2.5 mm 1788 $ Request
FBSR-1030-3.0 1030 nm 3.0 mm 1788 $ Request
FBSR-1030-3.5 1030 nm 3.5 mm 1788 $ Request
FBSR-1030-4.0 1030 nm 4.0 mm 1788 $ Request
FBSR-1030-4.5 1030 nm 4.5 mm 1788 $ Request
FBSR-1030-5.0 1030 nm 5.0 mm 1788 $ Request
FBSR-1030-5.5 1030 nm 5.5 mm 1788 $ Request
FBSR-1030-6.0 1030 nm 6.0 mm 1788 $ Request
FBSR-532-1.0 532 nm 1.0 mm 1788 $ Request
FBSR-532-1.5 532 nm 1.5 mm 1788 $ Request
FBSR-532-2.0 532 nm 2.0 mm 1788 $ Request
FBSR-532-2.5 532 nm 2.5 mm 1788 $ Request
FBSR-532-3.0 532 nm 3.0 mm 1788 $ Request
FBSR-532-3.5 532 nm 3.5 mm 1788 $ Request
FBSR-532-4.0 532 nm 4.0 mm 1788 $ Request
FBSR-532-4.5 532 nm 4.5 mm 1788 $ Request
FBSR-532-5.0 532 nm 5.0 mm 1788 $ Request
FBSR-532-5.5 532 nm 5.5 mm 1788 $ Request
FBSR-532-6.0 532 nm 6.0 mm 1788 $ Request
FBSR-515-1.0 515 nm 1.0 mm 1788 $ Request
FBSR-515-1.5 515 nm 1.5 mm 1788 $ Request
FBSR-515-2.0 515 nm 2.0 mm 1788 $ Request
FBSR-515-2.5 515 nm 2.5 mm 1788 $ Request
FBSR-515-3.0 515 nm 3.0 mm 1788 $ Request
FBSR-515-3.5 515 nm 3.5 mm 1788 $ Request
FBSR-515-4.0 515 nm 4.0 mm 1788 $ Request
FBSR-515-4.5 515 nm 4.5 mm 1788 $ Request
FBSR-515-5.0 515 nm 5.0 mm 1788 $ Request
FBSR-515-5.5 515 nm 5.5 mm 1788 $ Request
FBSR-515-6.0 515 nm 6.0 mm 1788 $ Request
FBSR-355-1.0 355 nm 1.0 mm 1788 $ Request
FBSR-355-1.5 355 nm 1.5 mm 1788 $ Request
FBSR-355-2.0 355 nm 2.0 mm 1788 $ Request
FBSR-355-2.5 355 nm 2.5 mm 1788 $ Request
FBSR-355-3.0 355 nm 3.0 mm 1788 $ Request
FBSR-355-3.5 355 nm 3.5 mm 1788 $ Request
FBSR-355-4.0 355 nm 4.0 mm 1788 $ Request
FBSR-355-4.5 355 nm 4.5 mm 1788 $ Request
FBSR-355-5.0 355 nm 5.0 mm 1788 $ Request
FBSR-355-5.5 355 nm 5.5 mm 1788 $ Request
FBSR-355-6.0 355 nm 6.0 mm 1788 $ Request
FBSR-343-1.0 343 nm 1.0 mm 1788 $ Request
FBSR-343-1.5 343 nm 1.5 mm 1788 $ Request
FBSR-343-2.0 343 nm 2.0 mm 1788 $ Request
FBSR-343-2.5 343 nm 2.5 mm 1788 $ Request
FBSR-343-3.0 343 nm 3.0 mm 1788 $ Request
FBSR-343-3.5 343 nm 3.5 mm 1788 $ Request
FBSR-343-4.0 343 nm 4.0 mm 1788 $ Request
FBSR-343-4.5 343 nm 4.5 mm 1788 $ Request
FBSR-343-5.0 343 nm 5.0 mm 1788 $ Request
FBSR-343-5.5 343 nm 5.5 mm 1788 $ Request
FBSR-343-6.0 343 nm 6.0 mm 1788 $ Request

SPOT GEOMETRY

 

Top Hat width approximately 2 * λ * f / d, with f = focal length, d = beam diameter @1/e2
Efficiency up to 95%
Homogeneity ca. ± 2.5% (rel. to average intensity of the Top Hat plateau)
Side modes (strongest) ~70x weaker than line plateau (< 1.5% of input energy)
Depth of focus (DOF) ~30% of the Rayleigh length

 

SUBSTRATE SPECIFICATIONS

 

Material Fused silica
Transmission >99%
Damage threshold @ 10 ns 10 J/cm² @ 1064 nm
5 J/cm² @ 532 nm
3 J/cm² @ 355 nm
Dimensions ⌀25.4 x 3 mm

REQUIREMENTS FOR OPERATION

 

Input beam Gaussian beam TEM00, M² of 1.4 or better
Apertures within the optical setup Clear aperture along the whole beam path should be at least 2.2x larger than the beam diameter @ 1/e²

 

INTEGRATION INTO BEAM PATH

 

Alignment

Alignment in lateral direction (translation) is necessary.
Rotation around the optical axis helps to align the orientation of the Top Hat.

Recommended mount: 990-0051 X-Y positioner.

Optical equipment Required: focusing optics. Top Hat is generated in the focal plane of this optic.
Useful: beam expander for adjustment of the beam diameter (effective beam diameter to the FBS2 design input beam diameter) and for adjustment of the beam diameter to the desired spot size.
Helpful: beam profiler to check the profiles while aligning.
EKSMA Optics Top Hat Beam Shaping Lenses FBSR
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FBSR series Top Hat beam shapers are single-piece optical elements designed for the generation of round Top Hat profiles. FBSR beam shapers are so-called focal beam shapers and can generate a Top Hat profile in the focal plane of nearly any focusing optics. Each FBSR lens is designed for a fixed input beam diameter (@1/e²) and specific operation wavelength. FBSR beam shaper can be combined with any objective or F-Theta lens, it can be integrated into the beam path at nearly any position, even in front of or within a beam expander / telescope.

FBSR generate Top Hat spots with long depth of focus (DOF), which is about 30% of the Rayleigh length compared to a Gaussian spot in a similar optical setup. Within this range the Top Hat profile doesn’t change and shows nearly constant peak intensity.

The width of the Top Hat spot generated by FBSR is approximately 1.5 times larger than the diffraction-limited Gaussian spot size. The size of the Top Hat size depends on the focal length of the focusing optics (f), the beam diameter @1/e² (d), and the operation wavelength (λ). The achieved Top Hat size is typically smaller than 100 µm, and can easily be scaled by using different additional focusing optics.

The approximate size of the Top Hat can be calculated by the formula:

2 * λ * f / d or λ / NA, where NA is the numerical aperture of the focused beam.