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Last Updated: Aggregation Period:Jun 17, 2026~Jul 14, 2026
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Efficiency Product List

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Overwhelmingly improve design operations in the manufacturing industry with 3D CAD, even in the face of labor shortages.

We will also introduce successful examples and practical advice! To maintain and strengthen competitiveness even in the face of labor shortages, improving design efficiency is key.

For small and medium-sized manufacturing companies, addressing the labor shortage is a crucial issue in corporate management. Even with a small workforce, it is essential to invest in labor-saving digital tools, such as 3D CAD, under strong leadership to maintain and enhance competitiveness. However, it is common to encounter strong resistance from the field when transitioning to 3D design, especially from those accustomed to 2D design. In this article, we will discuss the importance of transitioning from 2D CAD to 3D CAD, methods to improve design efficiency, and successful case studies. At the end of the article, we will also introduce a customer case study from Creo, so if you're interested, please be sure to read until the end. *You can view the detailed content of the article through the related links. For more information, feel free to contact us.*

  • 3D CAD
  • Efficiency

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Efficiency in product design and equipment design! "Automation of design/drafting using AI"

Utilizing AI in product design and equipment design to create an efficient design environment! Assisting in the automation and efficiency of design tasks such as standardized CAD operations.

At Toyohashi Design, we build an efficient environment in product design, equipment design, and inspection processes by utilizing "AI," assisting in the automation and efficiency of manufacturing sites. Of course, we can automatically design drawings from 3D to 2D and from 2D to 3D, and by incorporating the work of veteran engineers into AI automation, we contribute to further improving the accuracy of design tasks and the quality of design. <Use Cases> A "Handwritten Inspection Auto Recognition Program" that recognizes various handwritten instructions with AI and automatically corrects drawings. By having AI take on about 80% of simple tasks that consume time and effort in design, such as routine CAD work, engineers can focus on the remaining 20% of their work, thereby enhancing the speed and quality of design. *There is a case where the working time for creating piping drawings was reduced to 1/10. Additionally, by performing image analysis with AI, we can also facilitate the automation of inspection processes in production sites. We have examples of offshore development and annotation work in Myanmar, and we will respond with plans that meet your needs. *For more details, please refer to the related link page or feel free to contact us.

  • Embedded system design service
  • Efficiency

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Efficiency with low-cost CAM and 5-axis machining! BobCADCAM × MX220

Reduce introduction costs while increasing efficiency in processing complex shapes all at once!

Small Fab refers to small-scale, decentralized microfactories. By setting up small labs in offices or research and development centers, it allows for rapid and low-cost prototyping and small-scale production using tools like CAD/CAM, 3D printers, CNC machines, and 3D scanners, without the need for factory-like facilities. It is a flexible and practical manufacturing system directly linked to solving on-site challenges. The 3D digital tools are rarely operated with just one product. This time, we will promote work efficiency by using the 3D CAD/CAM software "BobCADCAM" and the 5-axis machining center "Yornew MX220." Despite its overwhelmingly low price, this low-cost software comes with comprehensive features and offers a perpetual license with zero annual maintenance costs. It achieves significant cost reductions over long-term use while being equipped with rich functionalities. In addition to utilizing this software, using the compact indexing 5-axis machining machine "MX220," which can process multiple complex shapes at once, allows for the automatic generation of tool paths according to indexing angles, enabling efficient chamfering and deburring.

  • mx220_table.png
  • mx220_linear.jpg
  • bob_シミュレーション.jpg
  • 3D CAD
  • 3D CAM
  • Machining Center
  • Efficiency

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Improving the efficiency of automobile inspection and utilizing 3D CAD data.

Streamlining the automobile inspection process by utilizing 3D CAD data to standardize verification quality.

For the automotive sector: We will address the challenge of time-consuming verification work and the variability in quality of checks among reviewers by utilizing the 3D CAD data capabilities 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 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 ■ Differential checks 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 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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  • Efficiency

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Efficiency improvement in automotive parts inspection and utilization of 3D CAD data.

Streamlining the inspection of automotive parts by utilizing 3D CAD data to standardize quality assurance.

For automotive parts: We will solve the issue of time-consuming inspection work and the variability in quality checks among reviewers 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 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 inspection work 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 variability in design quality and promotion of standardization ■ Shortening of development time through reduction of design and inspection man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

  • others
  • Efficiency

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Efficiency improvement in shipbuilding drawing inspection and utilization of 3D CAD data.

Streamlining shipbuilding inspection work using 3D CAD data to enhance efficiency and standardize quality assurance.

For shipbuilding: We will solve the issue of time-consuming drawing checks and the variability in quality of confirmations by different reviewers with the 3D CAD data utilization 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 work that relied on the experience of skilled professionals. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements according to 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 professionals' know-how

  • others
  • Efficiency

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Classifying and searching three-dimensional shapes as they are, significantly improving design efficiency.

A must-see for 3D CAD engineers in the automotive, machinery, and electronics industries! You can classify and search libraries using only three-dimensional shapes, significantly improving design efficiency!

3D Shape Matching (Patent No. 7190147) Aries 3D-Matching searches for parts that match the target shape and size from a registered library and outputs them in order of highest match degree. You can easily access design data registered in PLM from the matching results. This promotes the effective use of past design assets and significantly improves work efficiency. Our company has obtained a patent for this AI technology (Patent No. 7190147). Classification by Part Shape The classification function of Aries 3D-Matching focuses solely on the three-dimensional shape of parts, classifying them into specified classes and outputting class names in order of highest match degree. You can easily access data registered in PLM from the classification results. This promotes the effective use of data and greatly enhances work efficiency. Functionality as PLM Aries 3D-Matching is equipped not only with the function of searching three-dimensional shapes but also with features as a PLM product. It includes comprehensive functions such as management of classification results, graphic data, supplementary information, text search, and permission management.

  • Data Search Software
  • Efficiency

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Streamlining the compliance check for automotive parts design standards.

Streamlining the compliance check for automotive parts-specific standards starting from 3D CAD data.

For automotive parts: We address the challenge of time-consuming compliance checks with industry and internal standards, which can lead to rework just before mass production, through the specification compliance check 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 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 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 periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the use of skilled workers' know-how

  • others
  • Efficiency

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Streamlining the compliance check for shipbuilding design standards.

Streamlining shipbuilding-specific compliance checks based on 3D CAD data.

For shipbuilding: In response to the challenge of the time-consuming confirmation of compliance with industry and internal standards, which can lead to rework just before mass production, we solve this with the compliance check 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 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

  • others
  • Efficiency

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Streamlining the compliance requirements check for shipbuilding design regulations.

Streamlining the checks for shipbuilding-specific regulations and certification requirements based on 3D CAD data.

For shipbuilding: The complexity of confirming regulatory and certification requirements poses a risk of oversight that may be discovered after mass production. This issue is resolved by 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 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 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 time through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

  • others
  • Efficiency

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Streamlining the compliance check for aircraft parts design standards.

Streamlining the compliance check for aircraft component-specific standards based on 3D CAD data.

For aircraft parts: We address the challenge of time-consuming compliance checks with industry and internal standards, which can lead to setbacks just before mass production, through the specification compliance check 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 checks 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
  • Efficiency

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Streamlining the compliance check for railway vehicle parts design standards.

Streamlining the compliance check of railway vehicle parts specifications starting from 3D CAD data.

For railway vehicle parts: We address the challenge of time-consuming compliance checks with industry and internal standards, which can lead to setbacks just before mass production, through the standard compliance check 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 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 ■ 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

  • others
  • Efficiency

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Streamlining the compliance check for construction machinery parts design standards.

Streamlining the compliance check of construction machinery parts specific standards based on 3D CAD data.

For construction machinery parts: We address the challenge of taking too much time to confirm compliance with industry standards and internal standards, which can lead to rework just before mass production, with the compliance check 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 were previously reliant on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checks of requirements according to 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

  • others
  • Efficiency

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Streamlining the compliance check for automotive design standards.

Streamlining the automotive-specific compliance check starting from 3D CAD data.

For the automotive industry: We address the challenge of time-consuming compliance checks with industry and internal standards, which can lead to setbacks just before mass production, through the specification compliance check 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 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 periods through reduction of design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

  • others
  • Efficiency

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Streamlining the compliance requirements check for automobile design regulations.

Streamlining the checks for automotive-specific regulations and certification requirements based on 3D CAD data.

For automobiles: To address the challenge of complex regulatory and certification requirement checks, which can lead to risks of oversight being discovered after mass production, we solve this with blooplinter's automatic requirement checking feature. 'blooplinter' is a knowledge utilization tool that links design know-how and past cases to 3D CAD data, allowing users to quickly find necessary information. It manages past drawings, design decisions, trouble cases, and check items alongside 3D shapes, enabling anyone to reuse the verification tasks that were previously reliant on the experience of skilled professionals. [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 professionals' know-how

  • others
  • Efficiency

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Streamlining the compliance requirements check for automotive parts design.

Streamlining the checks for automotive parts-specific regulations and certification requirements starting from 3D CAD data.

For automotive parts: The complexity of confirming regulatory and certification requirements poses a risk of oversight that may be discovered after mass production. This issue is resolved with the automatic requirement-checking 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 were previously reliant on the experience of skilled professionals. [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 by reducing design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled professionals' know-how

  • others
  • Efficiency

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Streamlining compliance requirements check for aircraft component design.

Streamlining the check of aviation component-specific regulations and certification requirements based on 3D CAD data.

For aircraft parts: The complexity of confirming regulatory and certification requirements poses a risk of oversight that may be discovered after mass production. This issue is resolved by the automatic requirement checking 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 professionals. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checking 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 professionals' know-how

  • others
  • Efficiency

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Efficiency Improvement of Welding Inspection by Twyn for Metal Processing

Revolutionizing welding inspection with AR technology, automatic generation of inspection reports.

In the metal processing industry, particularly in welding inspection, maintaining quality and reducing inspection time are important challenges. Deficiencies in welding not only compromise the strength and safety of products but also lead to rework and increased costs. Twyn enables easy detection of misalignments and defects in welding by overlaying 3D-CAD data with the actual product. This improves inspection accuracy and allows for the establishment of an efficient inspection system. 【Usage Scenarios】 - In-process welding inspection - Pre-shipment inspection - Incoming inspection 【Benefits of Implementation】 - Early detection of welding deficiencies - Reduction of inspection time - Improvement in inspection accuracy

  • 2021-02_SVK_Costumer_Slavia Productions_Jig and Fixture.jpg
  • 2023-10_CSZ_Customer_Loko_IMG-4973.jpg
  • 2024-01_SVK_Customer_SlaviaProductions_DSCF0082.jpg
  • Image Processing Software
  • Efficiency

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Efficiently design factory layouts with point cloud modeling software!

Complete interference checks for equipment relocation and large line updates digitally. Make updates to existing equipment smarter through factory modeling.

"ClassNK-PEERLESS" is software that quickly and easily models equipment, piping, and steel structures within a factory from point cloud data measured by a 3D laser scanner. Even for shapes that are difficult to trace from point clouds in CAD, it is equipped with modeling features that reach those hard-to-reach areas, allowing for easy modeling. This enables a dramatic improvement in spatial visibility through detailed shape modeling. [Usage Scenarios] 3D data creation of the current state for updating aging factory equipment Interference checks with existing columns and beams during the establishment of large-scale lines *For more details, please download the PDF or feel free to contact us.

  • Modeler
  • Efficiency

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Achieve efficiency in order management! 'Web Parts Catalog Solution'

Easily order parts online, making part selection clear and accurate through links with 3D models and 2D illustrations!

Are you still using paper or PDF for your parts catalog? Are you exchanging information about parts replacement using photos, phone calls, or faxes? Information in paper or PDF format quickly becomes outdated, making it impossible to provide users with the latest information. Additionally, using photos or phone calls does not allow for detailed verification of shapes, which can lead to incorrect orders and waste time and costs. The "Web Parts Catalog Solution" allows you to operate a parts catalog online, providing users with the latest information. By linking 3D models (or illustrations) with parts lists, you can easily and accurately identify parts. By integrating with order management systems, it enables a smooth process from parts selection to ordering, thereby improving the efficiency of after-sales service operations. 【Features】 ■ Provides users with the latest information ■ Seamlessly integrates with core systems for order management ■ Prevents incorrect orders with accurate parts identification ■ Supports multiple devices ■ Multilingual support *For more details, please download the PDF or feel free to contact us.

  • Other machine elements
  • Efficiency

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