An operating distance, m
agnitude, resolution power,
and definition will be
determined pursuant to the
specifications of the
F-theta Objective Lens and
the Tube Lens respectively.
Focal Lemgth : 150mm
Tube Magnification : 0.75x
Focal Lemgth : 200mm
Tube Magnification : 1.0x
Laser DUAL TUBE SPEC
Model
Tube Lens
Illumination
Magni
fication
Illumination
Spot
Diameter
(Beam
Diameter :
4~8mm)
Depth
of Focus
(Beam
Diameter :
4~8mm)
DUAL
TUBE LENS
Focal Lemgth : 50mm
TubeMagnification : 0.25x
M PLAN
APO NUV 20X
5X
Koehler
Illumination
1.69(um)
~ 0.8(um)
± 2.7(um)
~ ±0.33(um)
Focal Lemgth : 100mm
Tube Magnification : 0.5x
M PLAN
APO NUV 20X
10X
Koehler
Illumination
1.69(um)
~ 0.8(um)
± 2.7(um)
~ ±0.33(um)
Focal Lemgth : 200mm
Tube Magnification : 1.0x
M PLAN
APO NUV 20X
20X
Koehler
Illumination
1.69(um)
~ 0.8(um)
± 2.7(um)
~ ±0.33(um)
Laser Scriber SPEC
MODEL
Tube Lens
Illumination
Features
Laser Scriber
0.25~2.0X
Tube Lens
Coaxial, Backlight
·Minimization of cutting line width
·Customized design according to laser wavelength
·Possible to acquire images of the processed surface
·Images can be obtained according to the desired scale
Raman Module SPEC
MODEL
Features
Raman Module
Principle of Raman Effect
· The diffusion phenomenon that changes a wavelength of light is called as Raman
Scattering or Raman Effect, and it refers to a phenomenon that if the scattered
light is diffused by illuminating a strong light with narrow-band on a transparent
object, the line of a spectrum with a little longer or a little shorter wavelength
in addition to a light with the same wavelength as the incident light is observed.