We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Support tools.
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Support tools Product List and Ranking from 107 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

Support tools Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

  1. ガイオ・テクノロジー Tokyo//IT/Telecommunications
  2. Translead Tokyo//Service Industry
  3. LIGHTz つくば本社 Ibaraki//software
  4. 4 IDAJ Kanagawa//software
  5. 5 Kaminashi inc. Tokyo//Information and Communications

Support tools Product ranking

Last Updated: Aggregation Period:Jun 24, 2026~Jul 21, 2026
This ranking is based on the number of page views on our site.

  1. Embedded Software Unit Testing "Coverage Master winAMS" ガイオ・テクノロジー
  2. Translead CRM Translead
  3. What is QC Circle activity? An explanation of its purpose, basic elements, and effective implementation methods. Kaminashi inc.
  4. 4 Logistics Business Optimization Support Tool "RaLC" シーイーシー
  5. 4 Intellectual Property Business Support DX Tool "AINinja" トヨタテクニカルディベロップメント

Support tools Product List

241~254 item / All 254 items

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Reducing Rework in Aircraft Parts Design: Techniques for Utilizing 3D CAD

Prevent design rework of aircraft components by utilizing 3D CAD data.

For aircraft parts: We will solve the issue of frequent rework and reconsideration due to the discovery of defects in the post-design process with the rework reduction feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past cases to 3D CAD data, allowing for quick access to necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse the verification tasks that relied on the experience of skilled professionals. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel [Implementation Effects] ■ Reduction of variation in design quality and promotion of standardization ■ Shortening of development time through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

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Improving quality through automated requirement checks in aircraft component design.

Automate the design requirement checks for aircraft components to be faster and more reliable.

For aircraft parts: We address the issue of design requirement check omissions being discovered in later processes or after mass production, leading to correction costs, with the automatic requirement check function of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing for quick access to necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse the verification tasks that relied on the experience of skilled professionals. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel 【Implementation Effects】 ■ Reduction of design quality variation and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

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  • Support tools

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Collaboration of PLM for aircraft parts and utilization of 3D CAD data

Integrating PLM of aircraft components with 3D CAD data to eliminate the fragmentation of design information.

For aircraft parts: We will solve the issue of disconnected information between core systems such as PLM and 3D CAD data with the 3D CAD data utilization feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing users to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that relied on the experience of skilled professionals. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel 【Implementation Effects】 ■ Reduction of variation in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

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  • Support tools

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Modularization of aircraft components and reuse of design data.

Streamlining the development of derivative aircraft components through modularization and reuse of design data.

For aircraft components: We will address the challenge of not advancing the modularization of parts and mechanisms, resulting in the need to redesign for each derived model, through the design data reuse feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing users to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that were previously reliant on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel 【Implementation Effects】 ■ Reduction of variability in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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  • Support tools

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Shortening design period by reusing design data for railway vehicle parts.

Reuse design data for railway vehicle components to shorten the period from design to production preparation.

For railway vehicle parts: We address the challenge of not being able to utilize past design data and having to start design and production preparation from scratch each time by using the design data reuse feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing you to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse the verification tasks that relied on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel 【Implementation Effects】 ■ Reduction of variation in design quality and promotion of standardization ■ Shortening of development time through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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  • Support tools

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PLM integration of railway vehicle parts and utilization of 3D CAD data.

Integrate PLM and 3D CAD data for railway vehicle parts to eliminate the fragmentation of design information.

For railway vehicle parts: We will address the issue of disconnected information due to the lack of integration between core systems like PLM and 3D CAD data by utilizing the 3D CAD data capabilities of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing users to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that were previously reliant on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Confirmation of differences during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transfer of design know-how to new personnel 【Implementation Effects】 ■ Reduction of variability in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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  • Support tools

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Cost reduction effects of rework in railway vehicle component design.

Visualize the costs associated with design rework of railway vehicle components and make it easier to explain the reduction effects to management.

For railway vehicle parts: The issue of not being able to visualize the man-hours and costs due to design rework, making it difficult to explain to management, will be resolved with the design rework reduction feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past cases to 3D CAD data, allowing users to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that were previously reliant on the experience of skilled workers. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Confirmation of differences during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel [Implementation Effects] ■ Reduction of variability in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

  • others
  • Support tools

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Improving quality through automatic requirement checks in construction machinery parts design.

Automate the design requirement checks for construction machinery parts to be faster and more reliable.

For construction machinery parts: We will solve the issue of design requirement check omissions being discovered in later processes or after mass production, leading to correction costs, with the automatic requirement check function of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past cases to 3D CAD data, allowing for quick searches of necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse the verification tasks that relied on the experience of skilled workers. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Confirmation of differences during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel [Implementation Effects] ■ Reduction of variation in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

  • others
  • Support tools

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PLM integration of construction machinery parts and utilization of 3D CAD data.

Integrate PLM of construction machinery parts with 3D CAD data to eliminate fragmentation of design information.

For construction machinery parts: We will solve the issue of disconnected information between core systems like PLM and 3D CAD data with the 3D CAD data utilization feature of blooplinter. 'blooplinter' is a knowledge utilization tool that links design know-how and past examples to 3D CAD data, allowing users to quickly find the necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that were previously reliant on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements in accordance with design standards ■ Difference confirmation during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Transmission of design know-how to new personnel 【Implementation Effects】 ■ Reduction of variability in design quality and promotion of standardization ■ Shortening of development periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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  • Support tools

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Field Decision Support Tool for the Energy Industry

Visualizing the cause of failure and verification procedures from on-site data.

In the energy industry, equipment maintenance is essential for the stable operation of facilities. Particularly in large-scale equipment such as power plants and plants, failures leading to shutdowns can result in significant losses. It is necessary to effectively utilize past failure cases and inspection records to conduct rapid and accurate cause investigation and recovery operations. The AI-FTA Agent enables the identification of failure causes based on past materials and provides appropriate response procedures. 【Usage Scenarios】 - Maintenance of power generation equipment, substation equipment, and plant equipment - Rapid cause investigation during failures - Inheritance of know-how from veteran technicians 【Benefits of Implementation】 - Reduction in failure response time - Improvement in equipment operating rates - Support for the development of technicians

  • Other Software
  • Support tools

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Streamline translation with CAT tools! What are CAT tools that make reviews easy?

Differences from machine translation! An introduction to the basic knowledge of CAT tools suitable for translation in a column.

It is said that the amount a single translator can translate manually is about 6 pages (1500 words) per day. If you are thinking, "I want to make the translation process more efficient" or "I want to reduce translation costs and effort," implementing CAT tools can provide various benefits. In this column, we explain knowledge related to CAT tools, including their advantages and disadvantages, and how they differ from machine translation. *For more detailed information, you can view it through the related links. *For more details, please refer to the PDF materials or feel free to contact us.

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12 Recommended Comparisons of SFA (Sales Support Tools)!

We will explain the features, differences, and selection points in a column format!

Are you struggling with wanting to implement an SFA (Sales Force Automation) tool but not knowing which one is good after comparing them, and thinking 'I don't want to fail since I'm spending money'? There are many SFA products available, and the reality is that it's difficult to compare their differences and advantages. In this article, our company, which has advised over 7,000 clients, has compared the features and pricing structures of 12 major SFA products. We will also introduce key points for selecting an SFA, so please use this as a reference for your implementation. *You can view the detailed content of the column through the related links. For more information, please feel free to contact us.

  • SFA/Sales Support System
  • Support tools

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What is lead acquisition? Introducing sales strategies and tools for acquiring potential customers.

Explaining methods for lead acquisition, effective approaches, and success stories!

Acquiring leads (potential customers) is a strategy aimed at increasing future customers through various sales and marketing activities, along with subsequent customer nurturing and retention. In this article, we will explain methods for lead acquisition, effective approaches, and success stories. *For detailed content of the column, please refer to the related links. For more information, feel free to contact us.*

  • Technical and Reference Books
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[Case Study on Manga Content] Unicharm Corporation

Revised the manga for employee training tools! Multi-device compatibility for viewing on PCs and smartphones.

We would like to introduce a case study of the implementation of "manga content" at Unicharm Corporation. The company reused a 34-page manga that was previously created as an internal tool, with some revisions for this purpose. The manga that was created earlier was entirely aimed at a Japanese audience, but this time, in order to make it usable globally, expressions that only Japanese people would understand were extracted and revised, and it was made compatible with multiple devices for viewing on PCs and smartphones. 【Case Overview】 ■ Purpose: A tool for considering business goals ■ Reasons for using manga: - Easy to view at hand - Accessible for busy employees, such as young staff and sales personnel, to read during spare moments ■ Results: Although it was not the time for setting goals, there were approximately 250 views *For more details, please refer to the related links or feel free to contact us.

  • Other contract services
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