We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Design support software.
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Design support software Product List and Ranking from 20 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

Design support software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. FAI Aichi//IT/Telecommunications
  2. null/null
  3. LIGHTz つくば本社 Ibaraki//software
  4. 4 AIONA Tokyo//IT/Telecommunications
  5. 5 マーブル  エンベデッドプロダクト事業本部 プロダクト事業部 Tokyo//IT/Telecommunications

Design support software Product ranking

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. Reduction of design man-hours × Improvement of product performance can coexist. FAI
  2. SX-Master Artisan Design Environment
  3. [Data] Trade-off design using multi-purpose topology optimization FAI
  4. 4 An AI reviewer that supports design and development by leveraging manufacturing know-how. AIONA
  5. 5 GEO-DESIGNER for Medical Devices システムクリエイト

Design support software Product List

31~44 item / All 44 items

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

Preventing design rework of construction machinery parts by utilizing 3D CAD data.

For construction machinery parts: We will solve the issue of frequent rework and reconsideration due to the discovery of defects in the design process using blooplinter's design rework reduction feature. '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 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 variability 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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Utilization of Similar Shape Search for Construction Machinery Parts Production Technology Department

Utilizing past assets through similar shape search for the design of jigs and equipment for construction machinery parts.

For construction machinery parts: The production technology department faces the challenge of not being able to find past designs of similar jigs and equipment, leading to new considerations each time. This issue is resolved with the similar shape search function 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 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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Aerospace CADPAC-CREATOR

Support for strength analysis in the aerospace field using 2D3D integrated design CAD.

In the aerospace industry, advanced strength analysis is essential to ensure the safety and reliability of products. In particular, the design of aircraft fuselages and components must withstand use in harsh environments. Inadequate design can lead to serious accidents. CADPAC-CREATOR integrates 2D and 3D data, making it easy to create and edit the shape data necessary for strength analysis. 【Usage Scenarios】 - Design of aircraft components - Structural design of spacecraft - Strength analysis simulation 【Benefits of Implementation】 - Reduced design time - Improved design quality - Cost reduction

  • cadpac-creator_02.png
  • 2D CAD machine
  • 3D CAD
  • Other CAD
  • Design support software

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DesignFlowExtractor for Home Appliance Design

3D data to 2D drawings! Improve design efficiency.

In the field of home appliance design, the utilization of 3D data is essential due to the miniaturization and high functionality of products. However, in collaboration with manufacturing sites and partner companies, there are often cases where 2D drawings are necessary, and the task of converting from 3D to 2D can become a burden for designers. DesignFlowExtractor facilitates the process by performing shape verification and angle correction of three-dimensional data, making it easier to expand into two-dimensional data. As a result, designers can proceed with drawing creation more efficiently. 【Usage Scenarios】 - Design of home appliance enclosures - Creation of component drawings - Collaboration with manufacturing departments 【Benefits of Implementation】 - Reduction in design time - Decrease in drawing creation errors - Smooth information sharing

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"Orizuru 3D" that doesn't stop the data halfway.

From design to the site. Information becomes powerful only when it is connected.

In product development, the uninterrupted flow of information across design, manufacturing, and maintenance directly correlates with the speed of decision-making and the reduction of rework. It is essential to create a state where the same data can be connected and used, rather than having separate information for each department. However, on-site, information from the design phase is often not adequately passed on to subsequent processes, leading to situations where documents must be searched for again or previous processes revisited for confirmation. Continued fragmentation like this can result in variability in decision-making and delays in response. The solution to this information disconnect is 'Orizuru 3D'. Through shape recognition, similarity search, automatic estimation, and lightweight 3D visualization, it expands design data into estimation, procurement, and manufacturing process design, making it easier to facilitate cross-departmental confirmation and decision-making. 【Features】 ■ Automatic estimation ■ Lightweight 3D rendering in a web browser *For more details, please download the PDF. ■ Reference Article What is a digital thread in manufacturing? A detailed explanation of its differences from digital twins and use cases. https://www.cct-inc.co.jp/koto-online/archives/379

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  • Design support software

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Collaboration of Automotive PLM and Utilization of 3D CAD Data

Integrate automotive PLM and 3D CAD data to eliminate the fragmentation of design information.

For the automotive sector: We will address the challenge of disconnected information between core systems like PLM and 3D CAD data by utilizing the 3D CAD data application features 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 professionals. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checking of requirements in accordance with design standards ■ Differential checks during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Passing on design know-how to new personnel 【Implementation Effects】 ■ Reduction of variability 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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Modularization of automobiles and reuse of design data

Streamlining the development of automotive derivatives through modularization and design data reuse.

For the automotive industry: We address the challenge of not advancing the modularization of parts and mechanisms, leading to redesign for each derivative model, with 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 for quick access to necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse verification tasks that previously 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 variability 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 use of skilled professionals' know-how

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Improving quality through automated requirement checks in automotive parts design.

Automate the checking of automotive parts design requirements to be faster and more reliable.

For automotive parts: We will solve the issue of design requirement check omissions being discovered in later processes or after mass production, which incurs correction costs, with the automatic requirement check feature 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 ■ 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 variability 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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Reducing Rework in Shipbuilding Design: Utilizing 3D CAD Techniques

Preventing shipbuilding design revisions in advance by utilizing 3D CAD data.

For shipbuilding: We will solve the issue of frequent rework and reconsideration due to the discovery of defects in the post-design process 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 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 variability 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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Modularization of shipbuilding and reuse of design data

Streamlining the development of derivative shipbuilding models through modularization and the reuse of design data.

For shipbuilding: We address the challenge of not progressing in the modularization of parts and mechanisms, leading to redesigning 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 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 verification tasks that previously relied on the experience of skilled workers. [Utilization 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 ■ Passing on 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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Reducing Rework in Railway Vehicle Parts Design: Techniques for Utilizing 3D CAD

Preventing design rework of railway vehicle parts by utilizing 3D CAD data.

For railway vehicle parts: To address the issue of frequent rework and reconsideration due to the discovery of defects in the design post-process, we will solve this with blooplinter's design rework reduction feature. 'blooplinter' is a knowledge utilization tool that links design know-how and past cases 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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Standardization through the reuse of design data for railway vehicle parts.

Promote the standardization of parts in collaboration with the purchasing department by reusing design data for railway vehicle components.

For railway vehicle parts: We are facing the challenge of purchasing and designing similar parts anew each time, which hinders the standardization of parts and prevents cost reduction. This issue can be resolved with 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 checking of requirements according to design standards ■ Confirmation of differences during design changes ■ Sharing of trouble cases and prevention of recurrence ■ Passing on 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 use of skilled workers' know-how

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Shortening design time through the reuse of design data for construction machinery parts.

Reuse design data of construction machinery parts to shorten the period from design to production preparation.

For construction machinery parts: We address the challenge of being unable 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 cases 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 design quality variation and promotion of standardization ■ Shortening of development periods through reduced design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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Soft transformation of the manufacturing site realized through information utilization DX for the machinery industry.

Reduce drawing time by up to 60%: Visualize the tacit knowledge on-site to prevent rework.

In the machinery industry, rapid responses to complex designs and specification changes, as well as the inheritance of know-how from skilled technicians, are crucial for improving design efficiency. The dispersion of drawings and specifications, along with a lack of information sharing among responsible parties, can lead to rework and mistakes, potentially resulting in delays in development timelines and increased costs. Our product addresses these challenges by optimizing the visualization, sharing, and communication of technical information, thereby supporting its utilization on-site and contributing to the overall efficiency of the design process. 【Usage Scenarios】 - Streamlining the review of design drawings - Rapid sharing of specifications and procedures - Design support leveraging the know-how of experienced professionals 【Benefits of Implementation】 - Reduction of rework in the design process - Shortening of lead times through smoother information sharing - Alleviation of dependency on individuals by promoting knowledge transfer

  • Document and Data Management
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