We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Design Support Tools.
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Design Support Tools Product List and Ranking from 4 Manufacturers, Suppliers and Companies | IPROS GMS

Design Support Tools Product List

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Design support tool "Strategy Time Chart Standard"

We will support your design with a drawing tool that creates timing charts.

"StrategyTimeChartSTD" is a design support tool that thoroughly pursues ease of use. Basic operations, such as waveform drawing, can be easily performed with a mouse. It smartly and comprehensively supports the functions that developers working in the field need, such as automatic waveform generation and timing violation detection. It also supports files from various design tools and measurement devices, allowing for immediate integration into existing design, analysis, and review workflows. 【Features】 - Easily draw beautiful timing charts - Automatically generate waveforms for clocks, buses, and counters - Automatically generate waveforms from logical expressions, truth tables, and pattern notations - Capable of drawing sine waves, capacitor charge/discharge waveforms, and digital four-value representations - A variety of editing functions For more details, please contact us or download the catalog.

  • Development support tools (ICE, emulators, debuggers, etc.)
  • Design Support Tools

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Case Study: Agent-type RAG × Advanced Design Support | Major Electronic Components Manufacturer

A case where a system was implemented to understand the designer's intent and provide guidance and answers!

We would like to introduce a case where "generative AI" was implemented in development support at a major electronic components manufacturer. The company faced the challenge that the accuracy of responses from standard RAG (Retrieval-Augmented Generation) was insufficient for specialized tools. In response, they built an advanced design support tool utilizing agent-based RAG. This enabled the learning of past design data and the performance prediction of new design proposals. 【Case Overview】 ■Challenges - Insufficient response accuracy of standard RAG for specialized tools - Need to integratively utilize electrical and mechanical characteristic data in design support ■Results - Early detection and prevention of design errors - Reduction in design time *For more details, please refer to the related links or feel free to contact us.

  • Other information systems
  • Design Support Tools

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Design support tool 'Ansys SCADE Architect'

Critical system design and architecture support tool

"Ansys SCADE Architect" is a model creation environment that supports SysML, enabling system engineers to more easily perform system and architecture design. Additionally, it provides a mechanism for seamless progression from architecture design to software design and display design using SCADE Suite or SCADE Display. This allows for the consistent construction of the software development process from model-based systems engineering (MBSE). 【Features】 ■ Integration of design environments ■ Modeling with SysML ■ Verification of system design ■ Integration with SCADE LifeCycle report generation ■ Collaboration with other SysML tools ■ Customization of the SysML language, etc. *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • project management
  • Development support tools (ICE, emulators, debuggers, etc.)
  • Other embedded systems (software and hardware)
  • Design Support Tools

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Improving quality through automated requirement checks in automotive design.

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

For automobiles: We 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 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 previously relied on the experience of skilled workers. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checking 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 use of skilled workers' know-how

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Utilization of Similar Shape Search for the Automotive Production Technology Department

Automotive jig and equipment design also utilizes past assets through similar shape search.

For the automotive sector: We address the challenge of not being able to find past designs of similar jigs and equipment in the production technology department, leading to new considerations each time, by utilizing 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 previously 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 time through reduction of design and verification man-hours ■ Continuous sharing and promotion of the use of skilled workers' know-how

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Standardization through the reuse of automotive parts design data.

Promote the standardization of parts in collaboration with the purchasing department by reusing automotive component design data.

For the automotive sector: We address the challenge of not being able to reduce costs due to the repeated purchase and design of similar parts from scratch, which hinders parts standardization, 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 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 checking 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 design quality variability 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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Cost reduction of automobile prototypes and similar shape search.

Enhancing pre-prototyping discussions for automobiles through similar shape searches to reduce costs.

For the automotive sector: We will solve the issue of insufficient similarity consideration leading to unnecessary prototyping costs with the similarity 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 immediate 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 line 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

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Shortening design time by reusing automotive parts design data.

Reuse design data for automotive parts to shorten the period from design to production preparation.

For automotive 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 blooplinter's design data reuse feature. '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 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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Collaboration of PLM in automotive parts and utilization of 3D CAD data

Integrating automotive parts PLM with 3D CAD data to eliminate the fragmentation of design information.

For automotive 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 checking 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 workers' know-how

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Cost reduction for prototype automotive parts and similar shape search.

Strengthening pre-production examination of automotive parts through similar shape search to reduce costs.

For automotive parts: We will solve the issue of insufficient similarity reviews during each prototype, which leads to unnecessary prototyping costs, with the similarity 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 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 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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Standardization through the reuse of design data for shipbuilding components.

Promote the standardization of parts in collaboration with the purchasing department by reusing shipbuilding component design data.

For shipbuilding: We solve the issue of not being able to reduce costs due to the continuous need to purchase and design similar parts from scratch, which hinders the standardization of parts, 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 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 ■ 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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Reduction of estimated cost examination through similar shape search in shipbuilding.

Accelerating shipbuilding estimates and rough cost analysis through similar shape searches.

For shipbuilding: To address the challenge of spending time searching for similar parts every time an estimate or rough cost is considered, which slows down the proposal speed, we will solve this 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 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 verification tasks that relied 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 variation in design quality and promotion of standardization ■ Shortening of development time by reducing design and verification man-hours ■ Continuous sharing and promotion of the use of skilled workers' know-how

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Cost reduction effects of rework in aircraft component design.

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

For aircraft parts: The issue of not being able to visualize the man-hours and costs associated with design rework, making it difficult to explain to management, will be resolved with blooplinter's design rework reduction feature. '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 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 time through reduction of design and verification man-hours ■ Continuous sharing and promotion of the use of skilled workers' know-how

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Improving quality through automated requirement checks in railway vehicle parts design.

Automate the design requirement checks for railway vehicle parts to be faster and more reliable.

For railway vehicle 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 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 ■ 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 use of skilled workers' know-how

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Training young railway vehicle parts designers and utilizing knowledge.

Accelerating the development of young designers for railway vehicle parts by utilizing knowledge from 3D CAD data.

For railway vehicle parts: We address the challenge of young designers' training relying on on-the-job training (OJT) at the site, which slows down the training speed, with the young training and design knowledge utilization 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 previously relied on the experience of skilled workers. [Utilization 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 ■ Passing on design know-how to new personnel [Implementation Effects] ■ Reduction of design quality variation and promotion of standardization ■ Shortening of development periods by reducing design and verification man-hours ■ Continuous sharing and promotion of the utilization of skilled workers' know-how

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Development of young designers for construction machinery parts and utilization of knowledge.

Accelerating the development of young designers for construction machinery parts by utilizing knowledge from 3D CAD data.

For construction machinery parts: We address the challenge of young designers' training relying on on-the-job training (OJT) at the site, which slows down the training speed, through the young talent development and design knowledge utilization 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 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 ■ 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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Cost reduction effects of rework in construction machinery parts design.

Visualize the costs associated with design rework of construction machinery parts, making it easier to explain the reduction effects to management.

For construction machinery parts: The issue of not visualizing 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 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 according to 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 design quality variation and promotion of standardization ■ Shortening of development periods by reducing design and verification man-hours ■ Continuous sharing and promotion of the use of skilled workers' know-how

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Reducing Rework in Automotive Design: Techniques for Utilizing 3D CAD

Preventing automotive design rework in advance by utilizing 3D CAD data.

For the automotive sector: We will solve the issue of frequent rework and reconsideration due to the discovery of defects in the design post-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 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 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

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Development of young automotive designers and utilization of knowledge.

Accelerating the development of young automotive designers through the utilization of 3D CAD data knowledge.

For the automotive sector: We address the challenge of young designers' training relying on on-the-job training (OJT) in the field, which slows down the training speed, with the young talent development and design knowledge utilization 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 dependent 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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Cost reduction effects of automotive design rework.

Visualize the costs associated with automotive design rework and make it easier to explain the reduction effects to management.

For the automotive industry: We address the challenge of not being able to visualize the man-hours and costs associated with design rework, making it difficult to explain to management, through the design rework reduction 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 workers. [Use Cases] ■ 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 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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Reduction of estimated cost review time through similar shape search for automobiles.

Accelerating the estimation and approximate cost analysis of automobiles through similar shape search.

For the automotive sector: The challenge of taking time to search for similar parts during cost estimation and rough cost discussions, leading to slow proposal speeds, is addressed by 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 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 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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Collaboration with automotive suppliers and utilization of 3D CAD data

Facilitating the collaboration of design data with automotive suppliers through the use of 3D CAD data.

For the automotive sector: We will solve the issue of inefficient exchange of design data with suppliers and the resulting rework due to misunderstandings through 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 professionals. [Utilization Scenarios] ■ Fast search for past similar design cases ■ Automatic checking 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

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Utilization of Similar Shape Search for the Automotive Parts Production Technology Department

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

For automotive 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 can be 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 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 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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Development of young automotive parts designers and utilization of knowledge.

Accelerating the development of young automotive parts designers by leveraging knowledge from 3D CAD data.

For automotive parts: We will address the challenge of young designers' training relying on on-the-job training (OJT) at the workplace, which slows down the training speed, through the young talent development and design knowledge utilization features 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 dependent on the experience of skilled workers. 【Usage Scenarios】 ■ Fast search for past similar design cases ■ Automatic checking 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 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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  • Design Support Tools

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Cost reduction effects of rework in automotive parts design.

Visualize the costs associated with design rework of automotive parts and make it easier to explain the reduction effects to management.

For automotive 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 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 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 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 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

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Reduction of estimated cost examination through similar shape search for automotive parts.

Accelerating the estimation and rough cost analysis of automotive parts through similar shape search.

For automotive parts: The challenge of taking time to search for similar parts every time we consider estimates and rough cost calculations, resulting in slow proposal speed, is resolved by 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 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 according to 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 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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Modularization of automotive parts and reuse of design data.

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

For automotive parts: We address the challenge of not advancing the modularization of parts and mechanisms, leading to redesign for each derived 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 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 seasoned 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 seasoned professionals' know-how

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Collaboration with automotive parts suppliers and utilization of 3D CAD data.

Facilitating the collaboration of design data with automotive parts suppliers through the use of 3D CAD data.

For automotive parts: We address the issue of inefficient design data exchange with suppliers and rework caused by misunderstandings through the utilization features of blooplinter's 3D CAD data. '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 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

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Improving quality through automated requirement checks in shipbuilding design.

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

For shipbuilding: 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 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 relied on the experience of skilled workers. [Usage Scenarios] ■ Fast search for past similar design cases ■ Automatic checking 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 Shipbuilding Production Technology Department

Utilizing past assets through similar shape search for shipbuilding jigs and equipment design.

For shipbuilding: 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 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 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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