OPTELICS Series

Real Color Confocal Microscope OPTELICS® C130

Applications:

  • Feature measurement of color filters
  • Height measurement of photo spacers for LCD
  • Observations/measuerement of pigments, metallic materials and Micro Machines
  • Other observations/measurements

 

Features

  • Can observe a real color and high resolution image without color blur because this microscope takes in confocal image under white light illumination using a Xe-lamp.
  • Measurements of line width, height, figuration, roughness and such are conducted by choosing optimum wavelengths for each sample from the very wide wavelength region.
  • Realized image taking-in speed of 117 frames at maximum.
  • A console based on ergonomic design is employed adding to compact main body and an electric shuttle is mounted for z-direction movement in order to realize very easy operation.
  • The main body is compact and of high rigidity in addition to the built-in anti vibration function.
  • Very stable observations and measurements are available without being affected by installation surroundings, having strength against floor vibration.


 

Five Line Confocal Microscope OPTELICS® S130

Applications:

  • Observation and measurement of inner part information as well as surface information, in various kinds of materials such as films, glasses, polymers and so on.
  • Shape measurement of MEMS
  • Measurements of patterns in semiconductors
  • Height measurements in the LCD related field
  • Other observations and various measurements

Features:

  • The wavelength most suited to a sample or a purpose can be selected from 5 kinds of wavelengths.
  • By selecting the the illuminating light wavelength, surface and also inner part of a multilayer structured sample can be observed.
  • 3D images of each layer out of a multilayer structured sample can be generated and observed.
  • By selecting the 405 nm wavelength (purple color), very high resolution can be obtained.
  • Acquirement of color image is conducted by synthesizing three frame images of 1.3 million pixels for each R, G and B color and a very high resolution color image is realized, accordingly.
  • Maximum 110 frames per second in the high speed mode is realized.
  • An electric operation knob is installed for movement in Z axis direction, making the operation very simple and easy.
  • Standard equipment of an electric revolver makes it very easy to change objective lens from the console.
  • Auto gain and auto focus functions are equipped, which remarkably improves operability.
  • Because the body of microscope itself is compact and highly rigid and in addition anti-vibration function is equipped, the microscope is highly resistant to floor vibration and very stable observations and measurements can be carried out without being affected by installation environment.

Wide view area confocal microscope

Ultra Wide View Confocal Microscope HD100D

Applications:

  • Observations and measurements of highly uneven samples such as a fracture cross section of metal.
  • Crystal grain observations of rocks and ores.
  • Evaluation of a steep slope surface as can be seen in such as metal pitting corrosion or erosion.
  • Observations of living things such as insects.
  • Feature measurements of high aspect samples such as micro machines.
  • Observations of fibers such as bonded textile and paper.
  • Evaluation of bumps out of diamond abrasive coating.
  • Figuration measurements of photo spacers for LCD.
  • Other observations and various kinds of measurements.

Features:

  • Have succeeded in achieving both wide view and high 3D measurement accuracy, which has been thought to be very difficult, by developing and employing objective lens optimized for this purpose in the optical system.
  • High resolution images and high accuracy measurement data can be obtained even at low magnification.
  • The high scanning speed (15 images/sec) provides real time observation on a monitor, which can be compatible with moving samples.
  • A sequence of operation from focusing to data analysis including measurements and controlling can be performed by a mouse and a keyboard.
  • Operationality and operation efficiency of routine works can be improved by utilizing a macro function that is a combination of automatic process commands.