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Rigaku

CT Lab HX 130

CT Lab HX 130 — Inventory photo
Fig. 01CT Lab HX 130Inventory photo[1]

What it is

The X-ray generating unit uses a sealed tube with a fixed anode and air cooling, providing a focal spot size of 5 μm. The system includes fixed filters of aluminium 1.0 mm and copper 0.1 mm and 0.2 mm. The detector is a semiconductor flat panel with an imaging area of 11.4 mm by 145.7 mm, a pixel size of 49.5 μm, and an array of 2352 by 2944 pixels, producing 14-bit images. The sample stage offers 140 mm of Z-axis travel, optional XY stages with ±3 mm range, and accepts sample boards of 130 mm or 200 mm diameter; the maximum field of view is 200 mm in diameter and 270 mm in height, with a sample load capacity of 5 kg. The X-ray source operates at 130 kV and 39 W.[1][2]

How it works

The CT Lab HX 130 provides adjustable source-to-object distance (SOD) and source-to-detector distance (SDD), enabling users to select between a high-resolution mode with a voxel size of 2.1 μm and a large-field-of-view mode covering 200 mm. The X-ray source voltage and current settings, as well as the beam filter, can be adjusted to optimize contrast and penetration for different sample materials and thicknesses.[2]

Applications

The CT Lab HX 130 is used in electronics to scan full circuit boards as well as individual components. In geology, it enables high-resolution imaging of rock interiors for mineralogical studies. For metallic parts, it provides both low-resolution full-part rendering for quality control and high-resolution scans to reveal voids and cracks in materials such as aluminium. In life science, it offers high-contrast imaging of plants, insects, and animal tissues.[2]

What do the numbers mean?

Optics & imaging2

Detector Type
Semiconductor Flat Panel Detector[1]
Accurate?
Detector Area
11.4 mm x 145.7 mm[1]
Accurate?

Control & software1

Operation by controller software in control panel screen (Electronic Control)[1]
Accurate?

Dimensions & facilities1

Sample Board Size
φ130 mm or φ200 mm (Sample load: 5 kg)[1]
Accurate?

Configuration & options18

X-ray Generating Unit:[1]
Accurate?
XY Motorized Stage[1]
Accurate?
X-ray Generating Method
Fixed Anode[1]
Accurate?
Tube Sealed[1]
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Air Cooling[1]
Accurate?
X-ray Focal Size
Mini 5 μm[1]
Accurate?
Fixed Filter
Al 1.0 mm, Cu 0.1 mm, & Cu 0.2 mm[1]
Accurate?
X-ray Detecting Unit:[1]
Accurate?
Pixel Size
49.5 μm x 49.5 μm[1]
Accurate?
Pixel Volume
2352 pixel x 2944 pixel[1]
Accurate?
Output Image Bit
14 bit[1]
Accurate?
Sample Stage:[1]
Accurate?
Z Axis
Up / Down direction[1]
Accurate?
Movable Range
140 mm[1]
Accurate?
XY Axes (Optional)[1]
Accurate?
Moveable Range
X axis and Y axis: ± 3 mm[1]
Accurate?
Sample Mountable Field of View
Max.φ200 mm x 270 mm[1]
Accurate?
Sample Stick Size
φ5 mm[1]
Accurate?
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Where are the manuals?

Generated from public-source data on file. Enter your email to access — nothing is published; details are routed privately.

Not publicly documented

Field notes

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Frequently asked questions

What is the typical resolution capability of this class of CT metrology system?General reference — not yet source-verified

Resolution depends on X-ray source spot size, detector pixel size, source-to-sample and sample-to-detector distances, and sample geometry. Class-level systems range from sub-micrometer for small samples to several micrometers for larger packages or assemblies.

What sample sizes and weights can be accommodated?General reference — not yet source-verified

Systems vary, but class-level tools typically accommodate samples from a few millimeters to several centimeters in diameter, with weight limits determined by the precision rotation stage and load capacity of the sample holder.

How is the measurement accuracy validated or calibrated?General reference — not yet source-verified

Calibration uses reference artifacts with known dimensions and geometries, such as ball bars or step gauges, to establish scale and distortion corrections. Manufacturers provide procedures for system geometry calibration and periodic verification using certified reference standards.

Is prior sample preparation required before scanning?General reference — not yet source-verified

CT metrology is non-destructive, so samples typically require no preparation beyond mounting. However, very large or highly attenuating samples may need to be trimmed or reduced in size to achieve acceptable X-ray transmission. Samples must be fixed to the rotation stage to prevent movement during the scan.

Not publicly documented

The following facts about the CT Lab HX 130 are absent from this record as of this revision. First-hand knowledge or a citation closes a gap; every submission is reviewed before publication.

  • No publicly documented production dates or lifecycle milestones (introduction, end of production, EOL) for the CT Lab HX 130 are on record.

    Answerable by: OEM historical records or a trade-press announcement

  • No publicly documented variants, configuration options, or revision breakpoints of the CT Lab HX 130 are on record.

    Answerable by: an OEM product catalog or an engineer who ordered or specified the tool

  • The control-system platform and OS era of the CT Lab HX 130 are not on record.

    Answerable by: an engineer who operated it or OEM installation records

  • No publicly documented failure modes or field errata for the CT Lab HX 130 are on record.

    Answerable by: a field service engineer, process engineer, or maintenance technician

  • The process node or technology generation of the CT Lab HX 130 is not on record.

    Answerable by: an OEM datasheet or a fab qualification report

No research found yet — worked with this tool? Share what you know.

Sources & citations

Sources (3)Every fact above is drawn from these public sources
  1. [1]Inventory photo
  2. [2]CT Lab HX - Products | Cairnhill — cairnhill.comcairnhill.com
  3. [3]CT Lab HX 130 CT Scanner - RSU — science.rsu.lvscience.rsu.lv
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Last updated Sep 30, 2026.

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