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Inspection Systems Product List and Ranking from 288 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.

Inspection Systems 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. エーディーディー Kyoto//software
  2. フロンティアシステム Shiga//Testing, Analysis and Measurement
  3. 太洋テクノレックス 本社 和歌山 Wakayama//Electronic Components and Semiconductors
  4. Comet Technologies Japan K.K. Comet Yxlon Kanagawa//Testing, Analysis and Measurement
  5. 5 第一実業ビスウィル Osaka//Food and Beverage

Inspection Systems 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. We will exhibit at NePCON Japan 2026. 太洋テクノレックス 本社 和歌山
  2. Inline tunnel-type coating defect inspection system esφi (Esfi)
  3. [Case Study] One-Shot 3D Shape Measuring Instrument 'VR-3200' ブル精密 (株)ブル精密 本社
  4. 4 AI Image Inspection Device "EYEbeGenesis" 山善
  5. 4 [Free Offer] Comprehensive Coverage of Basic Knowledge with FAQ and Glossary on Appearance Inspection AI コーピー 本社

Inspection Systems Product List

646~660 item / All 683 items

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[Must-see for Appearance Inspection Personnel] Free distribution of a collection of frequently asked questions during appearance inspections!

We will provide a free document that collects frequently asked questions such as 'Is it possible to conduct inspections with a sense close to human vision?' and 'Is testing possible when introducing it?'

Are you facing any of the following issues in your visual inspection process? ■ Relying on skilled inspectors... ■ Struggling with the training and hiring of inspectors... ■ Inconsistent inspection quality... These concerns may be resolved by automating the visual inspection process. For those responsible who may have uncertainties such as "I'm worried about implementing it suddenly" or "What should I prepare?", we have created a document summarizing frequently asked questions and their answers that we often receive. To alleviate your concerns about automating visual inspections, we are offering a document that compiles many of the questions and answers we receive, free of charge. Please download it from the link below! By automating the visual inspection process, you can achieve: - Reduction in manpower and improvement of the workplace environment - Cost savings - Prevention of human errors - High precision in inspections and many other benefits. For more details, please check the PDF download or feel free to contact us.

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AI automatic visual inspection system capable of real-time defect classification.

High-precision image recognition with easy operation! This is an AI automatic visual inspection system that can detect product abnormalities and defects, achieving improvements in quality and production efficiency.

Our "NuLMiL" is an AI automatic visual inspection system that learns defective patterns with each application and automatically classifies types of defects. The AI, trained with color-coded image data differentiated for each type of defect, automatically identifies and classifies defects based on the applied colors. Through deep learning of good and defective products, it learns patterns of anomalies and defects to build a model for evaluating the appearance of products. This enables high detection accuracy with a small amount of defective product data, allowing for the classification of defect types as well as the detection of unknown defects. We have many achievements, including holes in tile materials, cracks in aluminum processed products, scratches on semiconductor wafers, scratches on aluminum processed products, burrs from holes in metal parts, and scratches on aircraft coatings. 【Features】 ■ Deep learning for good and defective product training ■ High-precision detection with a small amount of defective product data ■ Detection of unknown defects in addition to classification of defect types *For more details, please refer to the PDF document or feel free to contact us.

  • Other inspection equipment and devices

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Market Size Analysis Report of Baggage Security Inspection Systems

It is projected to reach 5.91 billion dollars by the end of the forecast period in 2032.

The global market size for checked baggage security screening systems is estimated to reach 4.35 billion USD by 2025. The global revenue is projected to grow at a high compound annual growth rate (CAGR) of 4.5% by the end of the forecast period in 2032, reaching 5.91 billion USD. The checked baggage security screening systems market plays a crucial role in ensuring aviation safety by automatically scanning checked baggage to detect prohibited items, explosives, weapons, and other threats. These systems are integrated into baggage handling systems (BHS), allowing for rapid, non-intrusive, and thorough inspections without causing delays to flight schedules. Regulations set by aviation authorities such as TSA, ICAO, and ECAC further promote the upgrade and new implementation of advanced security screening platforms worldwide. [Contents] - Market Overview - Market Share Forecast until 2034 (by Product Type, Application, End User, Technology, Distribution Channel) - Regional Market Share Forecast until 2034 - Latest Industry Trends

  • Other security and surveillance systems

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[Market Report] Global Market for X-ray Inspection Systems

X-ray inspection system global market enhances precision and safety across various industries.

The global X-ray inspection system market is poised for significant growth, revolutionizing accuracy and safety across various industries. This dynamic market recorded a robust revenue of approximately $858.23 million in 2022 and is projected to surge to a remarkable valuation of $1.6731 billion by 2031. This exceptional growth is supported by a steady compound annual growth rate (CAGR) of 7.7% during the forecast period from 2023 to 2031. X-ray inspection systems are at the forefront of quality control and non-destructive testing, with their importance emphasized in fields such as manufacturing, healthcare, aerospace, and automotive. These advanced systems enable meticulous analysis, ensuring the integrity of products and components while safeguarding the safety of consumers and end-users. For application methods, please check the [PDF download] button or apply directly through the related links.

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Web Comparison System

This is a product that allows for easy automatic comparison of old and new drawings and documents.

The web comparison system enables high-performance drawing and document comparisons. - It allows for the comparison of PDF/TIFF drawings, automatically comparing scanned drawings or drawings with different page counts. - It is also possible to compare documents such as Excel, Word, DocuWorks, and PDF, and generate a list of discrepancies. - This is an on-premise product used as an internal system. - Since files are not sent to the cloud, security is assured. - It can be used with just a web browser on a PC, and no software installation is required. - It is also possible to use the trial version for business purposes to measure effectiveness. *For more details, please download the PDF or feel free to contact us.*

  • Other information systems

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Technical Data: Application Cases of Active Thermography Inspection

Non-destructive testing by a thermal inspector

The inspection and measurement technology utilizing infrared rays has seen remarkable expansion in recent years, thanks to improvements in sensor performance and reductions in cost. Infrared detection elements are arranged in numerous matrices or along lines, and furthermore, infrared cameras can now continuously use both room temperature and cooled elements, leading to an accelerated expansion of application areas. Examples of these applications will be introduced. ⇒ For more details, please download the catalog and read on. For further inquiries, please contact us.

  • Company:KJTD
  • Price:Other
  • Other inspection equipment and devices

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Case Study of 100 Million Pixel Camera for Drones - Wind Turbine Edition

Helps ensure reliable inspection operations! In addition to high sensitivity characteristics, it achieves a wide dynamic range.

We would like to introduce examples of the overseas use of the Phase One high-resolution 100-megapixel camera 'iXM-100', developed for drone mounting. The subject of this shoot was a wind turbine. Even with subjects that are white and difficult to distinguish, like the blades of a wind turbine, each image made it easy to identify key features, allowing for seamless stitching. Additionally, due to the extremely high resolution, we found that even when maintaining a safe distance from the subject, we could still obtain sufficiently clear images. 【Shooting Environment】 ■ Location: Overseas, Denmark ■ Shooting Environment: Aerial photography from a drone, ensuring safety while shooting from approximately 10 meters away ■ Drone: DJI Matrice 300 ■ Camera: Phase One iXM-100 100-megapixel camera ■ Camera Settings: Aperture f/8, ISO 160, Shutter Speed 1/1250 ■ Lens Used: 80mm AF (autofocus) lens (approximately equivalent to 63mm on a 35mm sensor) *For more details, please refer to the PDF document or feel free to contact us.

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Inline Automatic Inspection System "maXYmos TL ML"

Improving work efficiency through automation of visual inspections! Immediate detection of quality anomalies with real-time analysis.

"maXYmos TL ML" is a process monitoring system that analyzes sensor data obtained on the manufacturing line and automatically determines the quality of each product. It replaces traditional visual inspections, achieving a reduction in inspection labor and uniformity in judgment accuracy. Real-time analysis allows for quick detection of abnormalities and quality management. Designed to comply with FDA regulations, it has a wealth of achievements with overseas medical device manufacturers. It is equipped with validation support features, enabling immediate operation after installation. 【Features】 ■ Certified equipment under 21 CFR Part 11. Widely adopted by overseas medical device manufacturers. ■ Switching from visual inspection allows for more precise and efficient detection of defective products. ■ Easy operation via a touch panel to set judgment criteria. ■ Real-time analysis is possible without the need for data organization or processing. *In addition to the product catalog, we are currently offering materials that include case studies of overseas implementations. You can view them via "PDF Download." Please feel free to contact us with any inquiries.

  • Other security and surveillance systems

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Electric Mecha DR Solution "XVL Studio Z"

Downloadable free evaluation version available! Achieve virtual verification of the entire product with lightweight 3D data! Reduces issues discovered after prototyping!

"XVL Studio Z" is a hybrid DR solution for electric and mechanical designs made possible by the ultra-lightweight 3D format XVL. By utilizing design data from both electric and mechanical components, it reduces issues that may arise after prototyping through various virtual verifications in the pre-prototyping stage. ★Currently offering a free evaluation version of "XVL Studio Z"★ → The free evaluation version installer is available in two types: <Japanese 32-bit version, Japanese 64-bit version>. 【Features】 ■ Interference, contact, and clearance checks for the entire product ■ Sharing of verification results ■ Bulk replacement of electronic component shapes ■ Electric checks ■ List confirmation of changes ■ Illustration creation *For more details, please refer to the PDF document or feel free to contact us.

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Proposal for Automation of Resin Molding Product Inspection

I want to promote the automation of appearance inspection for resin molded products and secondary processing! Explaining the issues related to implementation.

We want to advance the automation of visual inspection for resin molded parts! We have implemented it, but we are unable to utilize it effectively! Let us solve that question! We will present a proposal. ADDI Co., Ltd. has extensive experience in developing inspection equipment, allowing us to handle a wide range of resin products. With this know-how, we can provide delivery solutions that meet our customers' needs. "Our products are difficult to inspect automatically" or "We have been turned down by other companies' equipment." The image processing visual inspection system "iVision" will solve these concerns! [Contents of the Image Processing Visual Inspection Proposal (Regarding Resin Inspection)] ■ Let's use appropriate cameras and lighting. ■ Differences in resin manufacturing types will also affect inspections. ■ If foiling or secondary processing is performed, suitable inspections are also necessary. We are currently offering a proposal that outlines the inspection issues arising from the manufacturing methods of resin products and subsequent processing! *For details, please download the catalog in PDF format. First, we will confirm with the customer "what" and "in what condition" they want to conduct inspections, and based on that, we will consider the appropriate cameras, lighting, etc., and then propose the necessary inspection equipment.

  • Image Processing Software

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Fully automated inspection system for the appearance of rod-shaped resin molded products.

A fully automated inspection system that automatically detects various defects such as shorts and burrs on the outer circumference of rod-shaped resin molded products.

A fully automated image processing visual inspection system that aligns the orientation of parts from a parts feeder, conducts inspections of various defects on the end faces and outer peripheries of the parts using a rotating mechanism, and separates and discharges good and defective products!

  • Image Processing Software

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Automatic inspection system for extruded products

An automatic inspection system that installs a camera near the exit of the extrusion molding machine to conduct inspections immediately after molding.

When inspecting long materials like those produced by extrusion molding, it is common to cut them to an appropriate length or to rewind them and conduct inspections at that time. However, by installing a camera near the exit of the molding machine and performing inspections immediately after molding, it becomes possible to quickly detect any abnormalities that occurred during the molding process, and inspections can be carried out without having to go through a separate process for inspection.

  • Image Processing Software

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Inspection system for conducting inspections during the secondary processing (printing process) of resin molded products.

Perform imaging according to the printing conditions in the printing process of resin molded products and conduct automatic inspection.

In the secondary processing of resin molded products, the printing process may involve multiple layers of printing. If inspection is conducted after all printing processes are completed, it becomes difficult to determine at which stage the defects occurred. Additionally, since time has passed since the printing was done, if there is an issue in the printing process, the response may be delayed, potentially leading to an increase in defects during that time. Therefore, by conducting automatic inspections immediately after each printing stage is completed, it becomes possible to promptly identify which printing process caused the defects, allowing for improvements in the process. Furthermore, by capturing images in environments tailored to each stage immediately after printing, it is possible to reliably detect defects. Our system can accommodate this by installing multiple cameras in a single inspection system.

  • Image Processing Software

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A system for inspecting films and paper that are transported at high speed in a roll-to-roll manner.

A inspection system that installs a camera on a roll-to-roll transport device to conduct visual inspections during the winding process.

In the paper manufacturing, sewing, and resin film processing industries, roll-to-roll winding devices are used. A camera is installed on these devices to create a system that conducts defect inspections, such as surface dirt, during the winding process. When a defect is detected, measures are taken, such as stopping the winding device or displaying the distance from the starting position to the location of the detected defect.

  • Image Processing Software

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