logo
Welcome to Wuhan Star Optic Technology Co., Ltd
86-027-87002137

1064nm Optical Glass Lenses High Power Magnification Laser Beam Expander

Basic Properties
Place of Origin: Wuhan, China
Brand Name: STAR OPTIC
Certification: RoHS, ISO9001
Model Number: LBE
Trading Properties
Minimum Order Quantity: 5pcs
Price: Negotiable
Payment Terms: T/T, Western Union, Paypal
Supply Ability: 50000pcs/Month
Product Summary
1064nm Laser Beam Expander, High Power Magnification Beam Expanders Overview: Laser Beam Expander is used to compress the divergence angle of the beam by expanding the diameter of the laser beam, so it is widely used in laser ranging system or laser focus system. The beam through a laser beam ...

Product Details

Highlight:

1064nm Optical Glass Lenses

,

Laser Beam Expander 1064nm

Product Name: Laser Beam Expander
Wavelength: 1064nm
Magnification: 2x, 3x, 4x, 5x, 10x, 20x
Structure: Air-spaced
Applications: Laser Ranging System Or Laser Focus System
Coating: Narrowband Or Wideband AR Coatings
Product Description

1064nm Laser Beam Expander, High Power Magnification Beam Expanders

Overview:

Laser Beam Expander is used to compress the divergence angle of the beam by expanding the diameter of the laser beam, so it is widely used in laser ranging system or laser focus system. The beam through a laser beam expander features a smaller divergence angle, which can achieve the ideal effect in long distance measurement, and also can get smaller and higher energy beam spot in the laser processing applications.

 

Star Optic offers Beam Expanders can expand or reduce the diameter of a collimated beam by a factor of 2, 3, 5, 10, or 20. These Galilean beam expanders use a low-aberration, air-spaced design optimized to provide a wavefront error of less than λ/4 (i.e., diffraction-limited performance) and minimize the impact on the M2 value of the expanded beam. An expanded beam can be focused to a narrow diffraction-limited waist, which can be necessary for use with optics or instruments that have narrow input apertures

 

These fixed-magnification laser beam expanders are offered with optics that have either narrowband or wideband AR coatings.

 

 

 

General Specifications of 1064nm Laser Beam Expander:

Material N-BK7 or UV Fused Silica
Mount Material Black Anodized Aluminum
Transmitted Wavefront Distortion λ/4 @632.8nm (RMS)
Surface Quality 60/40 scratch-Dig
Mount Thread M22x0.75mm
Coating

Multi Layer AR Coating

Total Transmission >98%@Design Wavelength

Damage Threshold

>5J/cm2, 20ns, 20Hz, @1064nm

 

 

 

Standard Products Of 1064nm Laser Beam Expander:

PN. Magnification

Wavelength

(nm)

Max Input Aperture

(mm)

Max Eixt Aperture

(mm)

Diameter

(mm)

Length

(mm)

Mount Thread
LBE-2X-1064 2 1064 10.4 21.6 27 39.7 M22×0.75
LBE-3X-1064 3 1064 10.4 21.6 27 68.5 M22×0.75
LBE-4X-1064 4 1064 10.4 21.6 27 76 M22×0.75
LBE-5X-1064 5 1064 10.4 21.6 27 71.8 M22×0.75
LBE-6X-1064 6 1064 6 21.6 27 74 M22×0.75
LBE-8X-1064 8 1064 6 21.6 27 68 M22×0.75
LBE-10X-1064 10 1064 6 21.6 27 71.5 M22×0.75
LBE-12X-1064 12 1064 6 21.6 27 77.7 M22×0.75
LBE-15X-1064 15 1064 6 21.6 27 74 M22×0.75
LBE-20X-1064 20 1064 6 21.6 27 83 M22×0.75
LBE-22X-1064 22 1064 6 21.6 27 92.3 M22×0.75

 

Related Products
  • UV FS Spherical Glass Lens MgF2 Coating Double Convex Lens With Fixed Mount

    Double Convex (Bi-Convex) Spherical Lens, UV Fused Silica, Finite Imaging Lens Overview: Double-Convex (DCX) Lens, also referred to as bi-convex lens, has two positive, symmetrical faces with equal radii on both sides. These lenses are generally recommended for finite imaging applications. Bi-convex lenses are most suitable where the object and image are on opposite sides of the lens and the ratio of the image and object distances (conjugate ratio) is between 0.2 and 5. Star
  • CaF2 Cylindrical Concave Lens Curved Surface Cylinder Laser Lenses

    Plano Concave Cylindrical Lens, Rectangular, UV Fused Silica Overview: Plano Concave Cylindrical lens is also called negative cylindrical lens act as plano-concave spherical lenses, except on only one axis. These lenses are used in applications that require one dimensional shaping of a light source. A typical application is to use a single cylindrical lens to turn a collimated laser into a line generator. Pairs of cylindrical lenses may be used to anamorphically shape images.
  • BK7 Optical Mirrors Dielectric Laser Line Mirror 4th Harmonic Wavelengths

    Dielectric Laser Line Mirror, Nd:YAG Wavelengths From Fundamental To 4th Harmonic Overview: Star Optic fabricates laser line mirrors with dielectric high reflectance coatings that offer high damage thresholds, making them well suited for use with a range of high-powered CW or pulsed laser sources. General Specifications of Dielectric Laser Line Mirror: Material BK7 Grade A optical glass, UV grade fused silica Dimension Tolerance +0.0/-0.2mm Thickness Tolerance ±0.2mm Clear
  • Large Feild Angle Optical Waveplate 12.7mm True Zero Order Waveplate

    True Zero Order Λ/2 Half Wave Plate, Large Feild Angle, For Imaging Systems Overview: Comparing with normal two plates design Zero order waveplates having a relatively larger thickness which reduces the field angle, the True zero order wave plates are made of a very thin plate or cemented with a BK7 substrate, which ensures the best possible field angle, temperature and wavelength performance. True zero order waveplate is widely used in laser Lab and optical instrument. True

Send An Inquiry