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コアコンセプト・テクノロジー 本社

EstablishmentSeptember 17, 2009
capital566000000Ten thousand
addressTokyo/Toshima-ku/11th floor, Diagate Ikebukuro, 1-16-15 Nanchikubo, Ikebukuro
phone03-6457-4344
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last updated:Jun 06, 2025
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当社で行っている「DX支援」についてご紹介いたします。

[Information] Guidebook for 3D Technologies Supporting DX in the Manufacturing Industry

Those who master 3D will dominate the DX era! The manufacturing industry will change with 3D data and digital twins.

In this document, we introduce the utilization of 3D technology for each stage of the manufacturing process. In recent years, with the trend of digital transformation (DX), the wave of digitalization is also sweeping through the supply chain. Among these, the digital twin system is gaining particular attention. We explain the overview of 3D technology, which plays a central role in realizing digital twins, as well as the business benefits, so please take a moment to read it. 【Contents】 ■ The Importance of 3D Technology in Manufacturing - Digital twins that eliminate the dependence on individuals in manufacturing - Essential 3D technology for building digital twins - Improvement of productivity and efficiency through 3D technology *For more details, please download the PDF or feel free to contact us.

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[Information] A Must-Read for Manufacturing Industry Stakeholders! A Textbook on ESG Management

What are the benefits of the manufacturing industry engaging in ESG management? An explanation with abundant diagrams and corporate examples.

This document explains the basic concepts of ESG management and the benefits for the manufacturing industry in engaging in ESG management. ESG management is believed to contribute to enhancing a company's image and risk management, and is thought to improve long-term corporate value. Each element of environment, society, and corporate governance is introduced in detail. Please feel free to download and take a look. [Contents] ■ ESG Management and the Manufacturing Industry - Overview of ESG Management - Benefits of ESG Management for the Manufacturing Industry *For more details, please download the PDF or feel free to contact us.

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[Reference] A Textbook on DX in Manufacturing Industry Explained with Illustrations and Case Studies

Explaining everything from the basics of DX to the necessary technologies for each step of the manufacturing process!

This document explains the overview and necessity of DX in the manufacturing industry, as well as introduces what can be achieved through manufacturing DX. It provides a detailed explanation of the differences between DX and IT implementation, examples of smart factory images, and the reasons why manufacturing DX is necessary. It also includes examples of improved traceability due to the introduction of DX, making it easy to reference. Please take a look. [Contents] ■ The necessity of manufacturing DX - What is manufacturing DX? - Why is manufacturing DX necessary? - What can be achieved through manufacturing DX? *For more details, please download the PDF or feel free to contact us.

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[Information] A must-see for manufacturing industry professionals! The forefront of procurement DX.

Significantly streamline the procurement process, which is fraught with issues such as order and delivery mistakes, reliance on individuals, and inefficiency!

This document provides a thorough explanation of procurement operations in the digital age. It explains the differences between a typical procurement workflow and the workflow when procurement DX is implemented. It also introduces the specific effects brought about by procurement DX. The content is designed to be easy to reference, so please feel free to download and take a look. [Contents] ■ Overview of Procurement DX ■ What is Procurement DX? ■ Effects of Procurement DX *For more details, please download the PDF or feel free to contact us.

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[Orizuru 3D Implementation Case] Misumi Group Headquarters Co., Ltd.

A case of co-developing the machine parts procurement AI platform "meviy," which advocates a time strategy.

We would like to introduce a case study of the implementation of "Orizuru 3D" at Misumi Group Headquarters, Inc. The company faced a shortage of 3D shape processing technology in the development of its AI platform "meviy," aimed at reducing the time required for customer procurement of machine parts. To accelerate development and promote in-house production, a joint venture company called "DT Dynamics" was established. A mixed scrum team consisting of employees from CCT and DT Dynamics was formed to facilitate technology transfer. [Case Overview] ■ Issues and Requests: As a user issue, in the procurement area where many analog processes remain, there was a significant waste of effort and time in drafting from 3D data to 2D drawings and in estimating. ■ Solutions: - Joint development of a 3D-based UI and AI automatic estimation using the shape processing technology cultivated with Orizuru. - Formation of a large-scale development team utilizing Ohgi. *For more details, please download the PDF or feel free to contact us.

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[Orizuru 3D Introduction Case Study] Takenaka Corporation

A case of supporting the development of a design management system to realize open BIM.

We would like to introduce a case study of the implementation of "Orizuru 3D" at Takenaka Corporation. As we advance digitalization to improve and stabilize design quality, there was a request to realize advanced simulations and multifaceted design verifications in order to make better proposals to our clients more quickly. After the implementation, architects, structural engineers, and equipment designers were able to conduct various verifications and simulations simultaneously, enabling them to provide high-value proposals to clients swiftly. [Case Overview (Partial)] ■ Issues and Requests - Since we have agreements with clients based on design documents, general BIM cannot provide beneficial information for decision-making in digital data. - We want to establish an environment where we can link and manage 3D BIM models (shapes) with data (information) such as finishes and specifications for each room. *For more details, please download the PDF or feel free to contact us.

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[Orizuru MES Implementation Case] Yoko Co., Ltd.

Challenge towards complete automation for realizing smart factories!

We would like to introduce a case study of the implementation of "Orizuru MES" at Yokoo Co., Ltd., which engages in the development, manufacturing, and sales of electronic components. The company faced limitations in productivity as manual operations could not be conducted during nighttime and holidays, resulting in a maximum operating rate of only 40%. To address this, they established an unmanned line that operates automatically during nighttime and holidays without the need for human intervention. This led to an increase in the operating rate from the previous maximum of 40% to over 80%, significantly boosting processing output. [Case Overview (Partial)] ■Challenges and Requests - The transportation and installation of work and tool sets to the processing machines on the semiconductor fixture manufacturing line were done manually. - Structural challenges faced by the manufacturing industry, such as the difficulty of technology transfer and a shortage of personnel, had become apparent. *For more details, please download the PDF or feel free to contact us.

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[For the Manufacturing Industry] Orizuru 3D Implementation Case Study

A solution that realizes design efficiency from 3D data.

Streamlining design efficiency in the manufacturing industry is a critical issue directly linked to the speed and cost of product development. If there are inefficiencies in the process, such as taking too long to create 2D drawings and estimates from 3D data, it can lead to a decrease in competitiveness. Orizuru 3D addresses these challenges by utilizing 3D shape processing technology to enhance the design process. 【Use Cases】 - Reduction of time for creating 2D drawings from 3D data - Realization of automatic estimates using AI - Streamlining design and procurement operations 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, reducing procurement operations by 92% - Shortening of design periods - Acceleration of development through in-house core technology production

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Aerospace-Oriented Orizuru 3D Quality Inspection Solution

Utilizing 3D data to streamline the quality inspection process for aerospace components.

In the aerospace industry, strict quality inspections are required to ensure the safety and reliability of products. Particularly in the inspection of parts with complex shapes, the use of 3D data is essential. Converting 3D data to 2D drawings and conducting manual inspections not only take time and incur costs but also carry the risk of human error. Orizuru 3D utilizes three-dimensional shape processing technology to realize an efficient quality inspection process based on 3D data. 【Usage Scenarios】 - Dimensional inspection of aircraft parts - Shape inspection of spacecraft components - Quality control in the manufacturing process 【Benefits of Implementation】 - Inspections can be conducted using only 3D data, eliminating the need for 2D drawing creation - Reduction in inspection time and costs - Improvement in inspection accuracy

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Case Study of Orizuru 3D for Medical Device Prototypes

A solution to accelerate prototype production from 3D data.

In the medical device industry, rapid response to design changes and shortening the time required for prototyping are crucial. By accurately reproducing shapes from 3D data and early detection of issues during the prototyping phase, we contribute to reducing development time and costs. Orizuru 3D eliminates the hassle of creating 2D drawings from 3D data, enabling rapid prototype production. 【Usage Scenarios】 - Prototyping of medical devices - Design verification - Shape confirmation during the prototyping phase 【Benefits of Implementation】 - Parts procurement is possible with only 3D data, eliminating the need for 2D drawings - Shortened development time - Cost reduction

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Efficiency Improvement of Design Reviews Using Orizuru 3D for Home Appliances

Accelerating design reviews of home appliances using 3D data utilization.

In the home appliance industry, design reviews require early evaluation of product shape and functionality to shorten development time. Converting 3D data to 2D drawings and conducting reviews on paper are time-consuming and labor-intensive, leading to decreased efficiency. Orizuru 3D enables design reviews using only 3D data, streamlining the review process. 【Usage Scenarios】 * Design reviews of home appliances * Confirmation of prototype shapes * Simulation of design changes 【Benefits of Implementation】 * Reviews can be conducted using only 3D data, eliminating the need for 2D drawings * Reduction in review time * Early detection and correction of design changes

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Orizuru 3D Case Study for Semiconductor Manufacturing Processes

Achieving efficiency in semiconductor manufacturing processes through the utilization of 3D data.

In the semiconductor manufacturing process, the 3D representation of design data is advancing, and there is a demand for improved efficiency in data collaboration during the manufacturing process. The conversion from 3D data to 2D drawings and the time required for creating estimates are challenges that lead to longer manufacturing lead times. Orizuru 3D utilizes 3D shape processing technology to address these issues. It enables direct procurement of parts from 3D data, contributing to the efficiency of the manufacturing process. 【Usage Scenarios】 - Procurement of parts from 3D data - Reduction of estimation time - Shortening of manufacturing lead times 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction of development time - Strengthening of competitiveness through in-house core technology development

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Case Study of Orizuru 3D Implementation for Energy Equipment Maintenance

Utilizing 3D data to streamline maintenance operations for energy facilities.

In the energy industry, equipment maintenance is essential for stable operation, requiring rapid parts procurement and accurate information management. Particularly, procuring parts for aging equipment and identifying parts when drawings are not available pose challenges that consume significant time and costs. Orizuru 3D addresses these issues by quickly obtaining necessary information from 3D data and streamlining the parts procurement process. 【Use Cases】 - Parts procurement for aging equipment - Parts identification when drawings are unavailable - Parts arrangement from 3D data 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction in parts procurement time - Contribution to stable operation of equipment

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[For Steelmaking] Orizuru 3D Implementation Case Study

Utilizing 3D data to streamline maintenance operations for steelmaking equipment.

In the steel industry, stable operation of equipment is essential, and rapid parts procurement and accurate information management are required. In particular, there are challenges in procuring parts for aging equipment and identifying parts when drawings are not available, which can take a lot of time and cost. Orizuru 3D addresses these challenges by quickly obtaining necessary information from 3D data and streamlining the parts procurement process. 【Usage Scenarios】 - Parts procurement for aging equipment - Parts identification when drawings are not available - Parts arrangement from 3D data 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction in parts procurement time - Contribution to stable operation of equipment

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Case Study of Orizuru 3D for Railway Infrastructure Maintenance

Utilizing 3D data to streamline the maintenance operations of railway infrastructure.

In the preservation of railway infrastructure, stable operation of equipment is essential, and rapid procurement of parts and accurate information management are required. In particular, there are challenges in procuring parts for aging equipment and identifying parts when no drawings are available, which can take a lot of time and cost. Orizuru 3D addresses these challenges by quickly obtaining necessary information from 3D data and streamlining the parts procurement process. 【Usage Scenarios】 - Parts procurement for aging equipment - Parts identification when there are no drawings - Parts arrangement from 3D data 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction in parts procurement time - Contribution to stable operation of equipment

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[Shipbuilding] Orizuru 3D Implementation Case Study

Utilizing 3D data to streamline welding inspection operations.

In the shipbuilding industry, welding inspections require high quality and safety assurance. In particular, accurately inspecting welds in complex-shaped structures is a time-consuming and costly challenge. Orizuru 3D addresses these challenges by quickly obtaining necessary information from 3D data and streamlining the inspection process. 【Usage Scenarios】 - Confirmation of weld shapes - Creation of inspection records - Inspections from 3D data 【Benefits of Implementation】 - Reduction of inspection time - Improvement of inspection accuracy - Strengthening of quality control

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Orizuru 3D Quality Inspection Solution for Precision Machinery

Utilizing 3D data to streamline the shape analysis of precision machine parts.

In the precision machinery industry, precise shape analysis is essential to guarantee the quality and performance of products. The use of 3D data is crucial for inspecting parts with complex shapes. Converting 3D data to 2D drawings and manual inspections not only take time and incur costs but also carry the risk of human error. Orizuru 3D utilizes three-dimensional shape processing technology to achieve an efficient quality inspection process based on 3D data. 【Usage Scenarios】 - Dimensional inspection of precision machine parts - Quality control in the manufacturing process 【Benefits of Implementation】 - Inspection can be conducted using only 3D data, eliminating the need for 2D drawing creation - Reduction in inspection time and costs - Improvement in inspection accuracy

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[For Semiconductors] Orizuru 3D Case Study

Utilizing 3D data to expedite information understanding and maintenance response for semiconductor equipment.

In the semiconductor industry, accurate understanding of equipment information and prompt maintenance response are crucial for the stable operation of specialized equipment in clean rooms. Particularly for equipment without existing drawings, confirming the structure and identifying necessary parts can be time-consuming, increasing the burden of maintenance tasks. Orizuru 3D provides an environment where equipment information can be intuitively grasped from 3D data, supporting the acceleration of maintenance responses and parts verification. 【Usage Scenarios】 - Procurement of parts for aging equipment in clean rooms - Identification of parts when drawings are not available - Arrangement of parts from 3D data 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction in parts procurement time - Contribution to the stable operation of equipment

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Streamlining parts procurement for food factories Orizuru 3D

Utilizing 3D data to streamline equipment maintenance operations in food factories.

In a food factory, stable operation of equipment is essential for maintaining product quality and productivity. Rapid procurement of parts and accurate information management are crucial elements in the maintenance operations of a food factory. In particular, there are challenges related to the time and cost involved in procuring parts for aging equipment and identifying parts when there are no drawings available. Orizuru 3D addresses these challenges by quickly obtaining the necessary information from 3D data and streamlining the parts procurement process. 【Use Cases】 - Procurement of parts for aging equipment - Identification of parts when there are no drawings - Arrangement of parts from 3D data 【Benefits of Implementation】 - Elimination of the need for 2D drawing creation, leading to more efficient procurement operations - Reduction in parts procurement time - Contribution to stable operation of equipment

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A textbook on DX in manufacturing that is also useful for the electronics industry.

Explaining the basic knowledge useful for promoting DX in the electronics industry!

In the electronic equipment industry, there is a demand for the efficiency of various processes such as design data management, simulation, prototyping, and evaluation in design support. In particular, a quick response to design changes and the reduction of design errors are crucial. This document explains the overview and necessity of DX (Digital Transformation) in the manufacturing industry and supports problem-solving in the design process. 【Usage Scenarios】 - Version management of design data - Utilization of simulations - Streamlining of prototyping and evaluation processes 【Benefits of Implementation】 - Shortening of design periods - Improvement of design quality - Cost reduction

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Textbook on Manufacturing Industry DX for Improving Work Machinery on Site

From the basics of DX to the necessary technologies, explained with illustrations and examples!

In the machine tool industry, remote monitoring is crucial for understanding the operational status of machines in real-time and for early detection of anomalies. This enables a reduction in downtime and an improvement in production efficiency. This document explains the overview and necessity of DX (Digital Transformation) in the manufacturing industry, as well as what can be achieved through manufacturing DX. It provides a detailed explanation of the differences between DX and IT implementation, examples of smart factory concepts, and the reasons why manufacturing DX is necessary. It also includes examples of improved traceability due to the introduction of DX, making it easy to reference. Please take a look. 【Usage Scenarios】 - Remote monitoring of machine tool operational status - Early response through anomaly detection - Improvement of production efficiency 【Effects of Implementation】 - Real-time understanding of machine operational status - Reduction of downtime through early detection of anomalies - Increase in productivity

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