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Micro CT

Micro CT

Benefits of device

  • 300nm detail resolution for high-precision imaging
  • Compact desktop design fits most laboratories
  • Suitable for field use and harsh environments
  • Economical for medium- and low- density samples
  • Maintenance-free tube-sealed X-ray source

Description

Computed Tomography (CT) is a non-destructive testing (NDT) method for analyzing samples and serves as a key tool for non-destructive evaluation (NDE). It is increasingly replacing traditional destructive sectioning methods.

Computed tomography has gone beyond the conventional boundaries of non-destructive testing. The CT technology used in industrial scanners is tailored to a wide range of industries.

It is a radiological method that uses X-rays to visualize both internal and external structures.

Over time, industrial computed tomography is playing an increasingly important role as a measurement tool. Compared to tactile or optical systems, its advantage lies in capturing data comprehensively and non-destructively.


System applications

  • Nominal-to-actual comparison – Deviations from the CAD model are visualized through color mapping.
  • Dimensional inspection – A single scan enables precise measurement of complex internal and external features.
  • Electronic testing – Defects in electronic components, such as PCBs or batteries, can be quickly identified using X-ray imaging.
  • Joint inspection – One scan reveals whether welded, soldered, glued, or riveted joints are truly defect-free.
  • Wall thickness analysis
  • Structural analysis – 3D structural characterization provides valuable insight through high-resolution X-ray microscopy.
  • 4D analysis – Material behavior under external influences and over time can be analyzed using 4D techniques.
  • Fiber composite analysis – Fiber composite analysis visualizes the 3D distribution and orientation of individual elements within the composite material.
  • Grain size and distribution analysis – Grain size and distribution are critical factors in determining hardness and strength, making them essential to analyze.

Technical specifications

Micro CT nanoVoxel-1000 nanoVoxel-2000 nanoVoxel-3000 nanoVoxel-4000 nanoVoxel-5000
Imaging Area [mm] 145x114 244x195 244x195 427x427 427x427
Maximum Sample Size [mm] 300x200 400x300 450x350 600x550 600x600
Maximum Sample Weight [kg] 15 15 15 25/100 25/100
X-ray Source [KV] 110 150 240/225/190/160 300/240/225/190/160 300/240/225/190/160
Dimensions [mm] 900x500x660 1620x1100x1700  2460x1250x1950 2770x1440x2040 2770x1540x2040
Weight [kg] 500 2400 5000 7500 8000

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