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X-ray CT scanner Product List and Ranking from 14 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

X-ray CT scanner Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. null/null
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. null/null
  4. 4 コムスキャンテクノ Kanagawa//Other manufacturing
  5. 4 テクノアルファ Tokyo//Electronic Components and Semiconductors

X-ray CT scanner Product ranking

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. 研究開発機器 中古販売サービス
  2. X線CT装置【小型コンパクト卓上機】VOXIA テクノアルファ
  3. Straight to the point price: 2.8 million yen CT that breaks common sense [Sample shooting now accepting applications] アールエフ
  4. High-Power X-ray CT "CT Compact"
  5. 4 [Analysis Case] Evaluation of the Internal Structure of Cylindrical Lithium-Ion Batteries Using X-ray CT 一般財団法人材料科学技術振興財団 MST

X-ray CT scanner Product List

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Case Study (2) Current Status and Trends of X-ray and CT Equipment

Materials explaining fluoroscopy and CT devices using microfocus X-ray equipment are being distributed!

X-ray CT irradiates X-rays from many directions, and the computer calculates the cross-sectional shape inside the material from the distribution of the transmitted X-rays. The direction of the cross-section is perpendicular to the fluoroscopic image, parallel to the X-ray beam, and the fluoroscopic image overlaps the internal state of the material; however, X-ray CT displays only a specific cross-section without overlapping the internal state of the material. In micro-focus CT, a method called "third-generation CT," which only rotates the sample, is adopted. This document briefly summarizes the current status and trends of fluoroscopy and CT devices using micro-focus X-ray equipment. It includes an overview of X-ray CT devices, the principles of CT, the characteristics of micro-focus CT, and application examples using micro-focus CT. [Contents] ■ Overview of X-ray CT devices ■ Principles of CT ■ Methods of X-ray CT ■ Characteristics of micro-focus CT ■ Detectors for micro-focus CT, and more *For more details, please refer to the PDF document or feel free to contact us.

  • X-ray inspection equipment
  • others

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[Free] Results-Oriented AIIT PBL Management Tactics from the Activities of the Murakoshi PT

[Free Distribution of Proceedings] Comprehensive Understanding of 3D Image Analysis! 14 Papers Condensed into 60 Pages - Wisdom from 20 Years in the Industry: X-ray CT/Image Analysis/Three-Dimensional/Contract Services

◆Collected Papers 1. Practical Software Technology for Three-Dimensional Image Processing 2. Micro CT 3. Observation and Three-Dimensional Analysis of Glass Fibers in Resin Molded Products Using X-ray CT 4. Analysis of Orientation Behavior of Metallic Injection Molded Products Using X-ray CT 5. Three-Dimensional Tissue Observation of Thick-Walled Spheroidal Graphite Cast Iron Using High-Resolution X-ray CT 6. Internal Quality Assessment of Cast Products Using X-ray CT and ExFact VR 2.0 7. Three-Dimensional Damage Diagnosis of Cement Concrete Pavements 8. Development of Evaluation Method for Lithium-Ion Battery Electrodes Using Three-Dimensional Void Network Analysis 9. Study on Particle Segregation Phenomenon in Hydrogen Storage Alloy Filler Layer by Extracting Particle Size Distribution from Three-Dimensional Images 10. Examination of Macroscopic Structural Evaluation Method for Composites Based on CT Value Histogram 11. Production and Evaluation of Transparent Visualization Models Using 3D Data of Actual Internal Structures 12. New Technology for Effectively Displaying 3D Images of Actual Objects with Internal Structures 13. Application of Multidirectional Imaging System for Polarized Imaging to Quality Visualization of Resin Molded Products (Special Issue: Latest Trends in Measurement, Testing, Inspection, and Analysis) 14. Outcome-Oriented AIIT PBL Operational Tactics: Activities of Murakoshi PT in FY 2015

  • Contract Analysis
  • Image analysis software
  • Image Processing Software

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X線CT装置【小型コンパクト卓上機】VOXIA

国内完全カスタムメイドにより、お客様に最適な構成でX線検査装置を製造。製品カタログ進呈中

『VOXIA』は、約350kgの軽量・コンパクトなX線CT装置です。 ご提供の際には、撮影対象や業務フローに合わせ、装置構成をフルカスタマイズ。 国内外の一流メーカーよりX線管・検出器を選定し、 装置構成の実証実験を重ねてきたノウハウに基づき、お客様の用途に最適な選択肢をご提案いたします。 【カスタマイズできる要素の例】 ■X線管(最大電圧、マイクロフォーカス密閉管) ■検出器(画素数、画素ピッチ、感度) ■試料ステージ(搭載可能重量、軸の動作範囲、軸数) ■解析ソフトウェア(検査ニーズに応じてカスタマイズ可能) ※詳しくは<カタログをダウンロード>より資料をご覧ください。

  • X-ray fluorescence analyzer

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Straight to the point price: 2.8 million yen CT that breaks common sense [Sample shooting now accepting applications]

NAOMi-CT 001C/X-ray Computed Tomography Device *Sample imaging currently accepted

Breaking common sense with the 2.8 million yen CT "NAOMi-CT 001C" sample shooting now accepting applications. *Available for delivery at 29 locations nationwide, including the non-invasive transparent disassembly research institute. 【Features】 - 3D instant diagnosis in 45 seconds (*) - Shooting in 16 seconds, display in 45 seconds (*) - Approximately 400 images taken in a 360-degree rotation - Freely observe 3D slide views at any cross-section - Convenient software is continuously being developed (all will be distributed for free) Sample shooting is also currently accepting applications. *Available for delivery at 29 locations nationwide, including the non-invasive transparent disassembly research institute. *For more details, please feel free to contact us.

  • X-ray inspection equipment

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X-ray CT method

X-ray Computed Tomography

By irradiating the sample with X-rays, a two-dimensional transmission image of the internal structure of the sample is obtained. Additionally, X-ray CT (Computed Tomography) images are constructed from continuous imaging data obtained by rotating the sample. - Non-destructive, allowing for the examination of the internal structure and defect shapes of the sample. - Capable of constructing 3D images and cross-sectional images at arbitrary locations. - The X-ray energy can be set between 30 kV and 160 kV, making it suitable for a wide range of materials from organic substances to electronic components. - With a dedicated stage, X-ray CT measurements of the sample can be performed under tensile/compressive or cooling/heating conditions. This document introduces application examples, principles, and data examples. For more details, please download the document or contact us.

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  • Contract Analysis
  • Other contract services

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[Analysis Case] Artifact Reduction in CT Images Using AI Technology

Reduce metal artifacts in CT images with AI technology to improve image analysis accuracy!

X-ray CT measurements allow for the non-destructive observation of the three-dimensional structure of samples. However, due to the nature of using X-ray beams, measurements of samples containing a large amount of metal may produce dark line-like artifacts known as metal artifacts, which can hinder the measurement of internal structures and image analysis. This document presents a case study on optimizing CT image reconstruction based on material information and physical models of the sample. This technology can reduce artifacts, enabling clearer evaluation of internal structures. Measurement method: X-ray CT, computational science, and data analysis Product fields: Electronic components, manufacturing equipment and parts, LSI and memory, daily goods Analysis objectives: Shape evaluation, structural evaluation 【Features】 ■ Clear observation of structures obscured by metal artifacts ■ Useful for CT observation of both resin and metal For more details, please download the document or contact us.

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  • Other image-related equipment
  • Contract Analysis

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[Analysis Case] High-Resolution X-ray CT Observation of Lithium-Ion Batteries

You can non-destructively check the internal layered structure and abnormal areas of the battery.

Lithium-ion polymer batteries are widely used in everyday products such as mobile batteries and electronic devices. This document presents a case study of analyzing a laminated lithium-ion polymer battery using X-ray CT. By using X-ray CT, it is possible to observe the internal structure of a 20mm x 40mm battery without destruction and to check for the presence and location of foreign objects or voids measuring a few micrometers. For more details, please download the document or contact us.

  • Contract Analysis
  • Contract measurement

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Stitching imaging using X-ray CT - Balancing wide-field observation and high-resolution observation.

It is possible to capture multiple CT images by connecting them vertically.

Generally, the field size and resolution of X-ray CT are in a trade-off relationship, where increasing the resolution results in a smaller field size. Therefore, X-ray CT has a imaging method called "stitching," which allows multiple CT images to be vertically connected. With the stitching imaging method, it is possible to observe a wide field size even under high-resolution conditions.

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  • Contract Analysis
  • Contract measurement

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[Analysis Case] Evaluation of the Internal Structure of Cylindrical Lithium-Ion Batteries Using X-ray CT

Non-destructive measurement of the distance between electrodes inside batteries and defect investigation is possible.

X-ray CT allows for non-destructive observation of internal structures and dimensional measurements of products. This document presents a case study of a cylindrical lithium-ion battery (φ14mm×H50mm). X-rays were sufficiently transmitted from the outer casing to the interior electrodes, and initially, a wide-area observation was conducted to confirm the three-dimensional structure of the entire battery. Subsequently, by performing magnified observations on specific areas, we identified voids within the positive electrode, foreign substances between the positive and negative electrodes, and disturbances in the electrode layers. Additionally, measurements of the inter-electrode distance were conducted from the obtained cross-sectional images. Measurement method: X-ray CT Product field: Secondary batteries Analysis purpose: Shape evaluation, failure analysis, defect analysis, product investigation For more details, please download the document or contact us.

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  • Contract measurement
  • Contract Analysis

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[Analysis Case] Three-Dimensional Structure Observation and Numerical Analysis of Porous Ceramics

Evaluation and analysis of porous structures is possible using X-ray CT.

Porous ceramics are lightweight and have low thermal conductivity due to their numerous pores, making them useful as insulation materials and filters. The structure of the pores directly affects the fluids passing through the porous ceramics, so capturing three-dimensional images and understanding numerical values such as porosity and specific surface area is important. This document presents a case study comparing the differences in porosity, specific surface area, and pore size distribution by conducting 3D structural observations using X-ray CT on two types of samples and analyzing the images.

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  • Ceramics
  • Contract Analysis
  • X-ray inspection equipment

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ComscanX Premium

Designed and manufactured stages and enclosures tailored for photography purposes! X-ray CT equipment capable of developing inspection software.

We would like to introduce our product, 'ComscanX Premium.' We also handle the design of the entire non-destructive testing system, including X-ray CT equipment, as well as the development of inspection software. We have a track record of producing hybrid devices that can operate in dynamic mode (where the X-ray tube and detector rotate) while applying heat, pressure, gas, etc., to the sample, and in static mode (where the sample stage rotates) for high-resolution imaging. 【Features】 ■ X-ray Tube - Various types of reflection/transmission, sealed/open tubes - Tube voltage: 90–300kV ■ X-ray Detector - Various sizes available - Maximum flat panel sensor size: 427mm x 427mm *For more details, please download the PDF or feel free to contact us.

  • X-ray inspection equipment
  • X-ray Inspection Machine

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X-ray CT device "ComscanX" series

From tabletop models to custom-made solutions. We propose efficient X-ray CT systems tailored to your samples.

Our company supports non-destructive testing with the rich lineup of X-ray CT devices in the 'ComscanX' series. The 'ComscanX Desktop/ComscanX Mini' series features compact size and low cost, making it possible for customers with budget and space limitations to implement non-destructive testing. The 'ComscanX Performance' series offers a maximum imaging field of Φ700mm and an X-ray tube voltage of up to 300kV, making it suitable for large and high-density samples. 【Features】 ■ Cost-effective X-ray CT ■ X-ray CT suitable for various applications in both hardware and software ■ Customizable X-ray CT ■ Support with various ideas related to imaging *For more details, please download the PDF or feel free to contact us.

  • X-ray inspection equipment
  • X-ray Inspection Machine

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What is environmental risk? Enriching life through the formation of a circular society!

Keywords: Environmental risk, soil, heavy metals, volatile organic compounds, machine learning, industrial by-products, pollution issues.

Many heavy metals are both essential resources for our lives and toxic substances. For example, mercury is a liquid metal used in the production of alloys. Mercury can exist as a liquid or gas at room temperature and pressure, making it easy for humans to ingest. In particular, the highly toxic methylmercury undergoes bioaccumulation and exists in high concentrations in the environment. "Environmental risk" is a field of study that evaluates both the effective use of resources necessary for industrial and agricultural purposes and the associated impacts on human health and the environment. Ignoring environmental risks in social development leads to environmental pollution and the emergence of public nuisances. Unfortunately, even today, environmental issues caused by heavy metal contamination persist in some developing countries. In my research, using "environmental risk" as a keyword, I analyze the effective utilization of industrial by-products and evaluate the mobility characteristics of new substances in the ground environment through the use of advanced technologies such as machine learning for future predictions based on statistical analysis and 3D visualization of ground environments using X-ray CT.

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