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Introducing "Core Concept Technology × Aras Innovator." Our company has a proven track record of successfully implementing "Aras Innovator" for business transformation, and we will leverage this knowledge to address your company's challenges. We can achieve everything from product planning and design to manufacturing and after-sales support while maximizing the use of existing systems. 【Benefits of Collaboration】 ■ Centralization of data and streamlined information flow to reduce lead times ■ Reliable and rapid reflection of design changes ■ Integrated management of BOM (EBOM, MBOM, and service BOM collaboration) ■ Optimization of production planning *For more details, please download the PDF or feel free to contact us.
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In the field of precision components, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents, and to swiftly and accurately communicate specification changes and design revisions to relevant departments. Dispersed information and inadequate history management can lead to rework, delays in delivery, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and bill of materials - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Prevention of oversight in revisions - Rapid reflection of design changes - Increased efficiency in information management
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In the field of heat treatment equipment, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents, and to swiftly and accurately communicate specification changes and design revisions to relevant departments. The dispersion of information and delays in communication can lead to rework, delays in delivery, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and bill of materials - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Prevention of communication gaps - Rapid reflection of design changes - Improved efficiency in information management
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In the field of water treatment equipment, it is essential to properly manage design data, parts lists, manufacturing information, and related documents, and to quickly and accurately disseminate specification changes and design revisions to relevant departments. Dispersed information and inadequate history management can lead to rework, delays in delivery, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and parts lists - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Prevention of update omissions - Rapid reflection of design changes - Improved efficiency in information management
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In the field of compressors and compressors, it is essential to properly manage design data, parts lists, manufacturing information, and related documents, and to quickly and accurately communicate specification changes and design revisions to the relevant departments. Dispersed information and delays in communication can lead to rework, delays in delivery, and increased costs. The core concept technology × aras Innovator supports the digital transformation (DX) of the entire engineering chain through PLM construction. 【Usage Scenarios】 - Centralized management of design data and parts lists - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Prevention of communication gaps - Rapid reflection of design changes - Streamlining of information management
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In the machinery industry, it is important to suppress equipment downtime and maintain stable operations. It is required to minimize equipment downtime and maximize production efficiency. By early detection of equipment anomalies and conducting planned maintenance, it contributes to improving productivity and reducing costs. Orizuru MES supports the gradual transformation into a smart factory while leveraging existing equipment and systems, and enhances equipment maintenance. 【Usage Scenarios】 - Monitoring equipment operating status - Early response through anomaly detection - Optimization of maintenance planning 【Effects of Implementation】 - Reduction of equipment downtime - Reduction of maintenance costs - Improvement of productivity
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In the aerospace parts manufacturing field, high quality and traceability are required. Misuse of parts or inadequate management poses a risk of serious accidents, making a strict management system essential. Orizuru MES enhances quality management in aerospace parts manufacturing by streamlining the tracking of parts, inventory management, and the management of inspection and defect information while utilizing existing equipment, systems, and procedures. 【Usage Scenarios】 * Tracking from parts receipt to shipment * Real-time understanding of parts inventory status * Recording and analyzing quality inspection data 【Benefits of Implementation】 * Cost reduction through improved efficiency in parts management * Early detection and response to quality issues * Increased reliability through improved traceability
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In the metal processing industry, responding to small-lot production of various types and the inheritance of skilled workers' techniques are challenges. There is a demand for improved production efficiency, reduced defective products, and cost reduction. Orizuru MES enables a gradual transition to a smart factory while utilizing existing equipment, systems, and procedures. 【Usage Scenarios】 - Visualization of process management - Real-time tracking of work progress - Collection and analysis of quality data 【Benefits of Implementation】 - Increased productivity - Reduction of defective products - Cost reduction
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In the pharmaceutical industry, strict management and documentation of the manufacturing process are required. In particular, ensuring traceability in the manufacturing process, quality control, and the establishment of rigorous quality management and documentation are crucial. This can lead to potential quality issues and increased response burdens. Orizuru MES supports the visualization and documentation of manufacturing data, management of quality information, and enhancement of traceability while leveraging existing equipment, systems, and procedures. 【Usage Scenarios】 - Data collection and analysis of the manufacturing process - Automation of quality control processes - Ensuring traceability 【Benefits of Implementation】 - Thorough compliance with regulations - Improvement in quality management - Increased efficiency of the manufacturing process
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In semiconductor manufacturing, improving yield is a critical issue directly linked to profitability. Minor abnormalities and defects in the manufacturing process can lead to significant losses. Orizuru MES visualizes the manufacturing process while leveraging existing equipment, systems, and procedures, enabling early detection and improvement of issues. This is expected to lead to improved yield, reduced defects, and increased productivity. 【Use Cases】 - Data collection and analysis of the manufacturing line - Investigation of the causes of defects - Optimization of the manufacturing process 【Benefits of Implementation】 - Increased yield rate - Reduced defect occurrence rate - Enhanced productivity
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In the food industry, there is a growing awareness of consumer safety, making traceability essential. By making information traceable from the acceptance of raw materials to manufacturing and shipping, rapid response to issues, investigation of causes, and thorough quality management are required. Orizuru MES is a solution that supports the enhancement of traceability in food manufacturing while utilizing existing equipment, systems, and procedures. 【Usage Scenarios】 - Tracking from the arrival of raw materials to the shipment of products - Recording and managing quality data during the manufacturing process - Managing information such as lot numbers and expiration dates 【Benefits of Implementation】 - Rapid investigation and response to food incidents - Improvement of product quality and gaining customer trust - Strengthening compliance and risk management
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In apparel manufacturing, responding to demand fluctuations and improving inventory management efficiency are essential. Particularly in the apparel industry, where seasonal trend changes are rapid, issues such as excess inventory and stockouts leading to lost opportunities are significant challenges. "Orizuru MES" supports inventory management and process visualization while leveraging existing systems and equipment. This helps reduce unnecessary costs and contributes to the suppression of stockouts and excess inventory. [Usage Scenarios] * Improvement of inventory management accuracy * Enhancement of demand forecasting accuracy * Reduction of stockout risks [Effects of Implementation] * Increased inventory turnover rate * Maximization of sales opportunities * Cost reduction
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In the field of chemical manufacturing, it is important to properly understand equipment, inventory, and production data to ensure stable operations. Particularly in environments that handle multiple processes and equipment, information fragmentation can lead to a decline in quality and productivity. Orizuru MES supports the visualization of manufacturing data and equipment information, as well as the management of inventory, performance, and defect information, while leveraging existing equipment, systems, and procedures. This leads to improved accuracy in site management and stable operations. 【Usage Scenarios】 - Visualization of equipment operating status and production performance - Centralized management of inventory and inbound/outbound information - Early detection of abnormalities and defect information 【Benefits of Implementation】 - Improved accuracy in site management - Faster response to abnormalities - Stable operations and increased productivity
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In the energy industry, it is important to understand the operational status of equipment and manage operational information appropriately. Particularly in sites that operate large-scale equipment, it is crucial to minimize delays in responding to equipment shutdowns or abnormalities. Orizuru MES supports the visualization of equipment information and operational status, as well as the management of performance and abnormality information, while leveraging existing equipment, systems, and procedures. 【Usage Scenarios】 - Visualization of equipment operational status and abnormality information - Management of maintenance information and performance - Centralized understanding of equipment operation data 【Benefits of Implementation】 - Early identification of equipment shutdown causes - Increased efficiency in equipment operation - Improved accuracy in site management
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In the manufacturing field of precision machinery, it is essential to accurately grasp the production status across multiple processes while maintaining high quality standards. In particular, if progress and quality information for each process become fragmented, it can lead to delays in addressing defects and an increase in rework. Orizuru MES supports the visualization of process, performance, and quality information while leveraging existing equipment, systems, and procedures. This contributes to stabilizing quality and improving management accuracy in the production site. 【Usage Scenarios】 - Real-time monitoring of process progress - Recording and management of quality data and defect information - Centralized management of materials and inventory information 【Benefits of Implementation】 - Stabilization of quality - Reduction of rework and defect response - Improvement of productivity
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In the manufacturing of industrial equipment, it is important to properly manage processes, materials, and progress tracking according to the order details. In particular, when information is dispersed across multiple processes and related departments, it is more likely to cause discrepancies in work instructions and delays in delivery. Orizuru MES supports information management from order to process, performance, and inventory while leveraging existing equipment, systems, and procedures. This leads to improved visibility in on-site operations and enhanced accuracy in production management. 【Usage Scenarios】 - Progress management for each process - Recording of work instructions and performance information - Understanding and collaboration of inventory and material information 【Benefits of Implementation】 - Improved accuracy in delivery management - Promotion of on-site visibility - Increased production efficiency
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In the field of resin and plastic manufacturing, it is essential to maintain stable production while minimizing quality variations. In particular, if molding conditions, manufacturing performance, and defect information are not properly recorded and managed, it may take time to identify the causes and implement improvements. Orizuru MES supports the visualization of processes, performance, inventory, and defect information while leveraging existing equipment, systems, and procedures. This leads to improved accuracy in quality management and stable on-site operations. 【Usage Scenarios】 - Collection and management of performance data in the molding process - Tracking and addressing defects on a lot-by-lot basis - Understanding inventory and inbound/outbound information 【Benefits of Implementation】 - Stabilization of quality - Acceleration of cause identification - Improvement of productivity
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In the manufacturing site of construction machinery, it is essential to maintain stable production while appropriately managing a variety of components and multiple processes. In particular, if the progress of processes, component information, and manufacturing results are dispersed, it may affect the accuracy of delivery management and on-site responses. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This leads to improved accuracy in site management and enhanced production efficiency. 【Usage Scenarios】 - Real-time understanding of process progress - Centralized management of component and inventory information - Recording and utilization of manufacturing performance data 【Benefits of Implementation】 - Improved accuracy of delivery management - Faster on-site responses - Increased productivity
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In the manufacturing of heavy electrical and electronic equipment, it is important to appropriately manage progress and performance across many materials and processes. In particular, if information and inventory status are fragmented by process, it can lead to discrepancies in work instructions and delays in arrangements. Orizuru MES supports centralized management of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to improved visibility on the shop floor and enhanced accuracy in production management. 【Usage Scenarios】 - Progress management by process - Understanding of material and inventory information - Collection and management of performance data 【Benefits of Implementation】 - Improved accuracy in work management - Increased efficiency in inventory management - Enhanced production efficiency
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In the manufacturing sites of residential equipment, it is essential to accurately grasp the progress and inventory status of each process while handling a variety of products and components. Particularly in environments where there are significant differences between products, the fragmentation of process, inventory, and performance information can lead to increased management burdens and delays in response. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to the efficiency of site management and the establishment of a stable production system. 【Usage Scenarios】 - Understanding process progress - Managing inventory and inbound/outbound information - Recording manufacturing performance and defect information 【Benefits of Implementation】 - Increased efficiency in site management - Reduction of response delays - Improvement in productivity
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In the manufacturing site of packaging materials and containers, it is required to continue stable production while managing tracking and quality information for each lot. In particular, if information related to manufacturing performance, inventory, and quality is dispersed, it may take time to identify causes and implement improvements. Orizuru MES supports the visualization of process, inventory, performance, and defect information while leveraging existing equipment, systems, and procedures. This leads to enhanced traceability and improved accuracy in on-site management. 【Usage Scenarios】 - Lot-based tracking management - Understanding inventory and inbound/outbound information - Recording quality data and performance information 【Effects of Implementation】 - Accelerated cause identification - Strengthened traceability - Increased productivity
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In the construction materials manufacturing site, it is essential to accurately grasp the progress and inventory status of various products and components at each stage. In particular, if the information regarding processes, inventory, and actual performance becomes fragmented, it can lead to delays in on-site responses and increased management burdens. Orizuru MES supports the visualization of process, inventory, and actual performance information while leveraging existing equipment, systems, and procedures. This contributes to improved accuracy in on-site management and the establishment of a stable production system. 【Usage Scenarios】 - Real-time tracking of process progress - Centralized management of inventory and inbound/outbound information - Recording and sharing of manufacturing performance and defect information 【Benefits of Implementation】 - Improved accuracy in on-site management - Reduction of response delays - Increased productivity
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In the manufacturing of railway vehicles and equipment, it is important to appropriately manage progress and achievements across many processes and components. Especially in environments where high quality standards are required, failing to accurately grasp process history and performance information can lead to increased verification work and response burdens. Orizuru MES supports centralized management of process, performance, and inventory information while leveraging existing equipment, systems, and procedures. This leads to improved accuracy in progress management and greater visibility across the entire site. 【Usage Scenarios】 - Understanding progress status for each process - Management of component and inventory information - Recording of performance data and defect information 【Benefits of Implementation】 - Improved accuracy in progress management - Increased efficiency in understanding history - Promotion of visibility in production sites
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In the manufacturing site of agricultural machinery, it is essential to maintain stable production while appropriately managing a variety of components and multiple processes. Particularly, when process progress, component information, and manufacturing results are dispersed, it can lead to delays in on-site responses and a decrease in management accuracy. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to the efficiency of on-site management and the stabilization of the production system. 【Usage Scenarios】 - Visualization of process progress - Centralized management of component and inventory information - Recording of manufacturing results and abnormal information 【Effects of Implementation】 - Faster on-site responses - Improved management accuracy - Increased productivity
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In the field of mold manufacturing, it is important to accurately grasp progress and achievements while appropriately managing processes that require high precision. Particularly in sites where processes are divided into multiple parts, the dispersion of progress status, work achievements, and material information can lead to increased management burdens and delays in response. Orizuru MES supports the visualization of process, achievement, and inventory information while leveraging existing equipment, systems, and procedures. This leads to improved accuracy in site management and smoother process operations. 【Usage Scenarios】 - Progress management for each process - Recording and sharing work achievements - Understanding material and inventory information 【Effects of Implementation】 - Improved accuracy in process management - Reduction of oversight in responses - Increased productivity
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In the manufacturing site for tools and jigs, it is essential to accurately grasp the progress of processes, inventory status, and performance information while managing a diverse range of items. Particularly in environments with a high degree of individual customization, if information regarding production status, inventory, and usage history becomes dispersed, it can lead to increased management burdens and variability in responses. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to improved management accuracy and stable site operations. 【Usage Scenarios】 - Understanding the progress of the manufacturing process - Managing inventory and usage status - Recording and sharing performance information 【Effects of Implementation】 - Improved management accuracy - Increased efficiency in site responses - Enhanced productivity
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In shipbuilding, it is essential to accurately grasp progress and achievements across numerous components and lengthy processes. Particularly when information and component statuses are dispersed across different processes, it can lead to an increase in verification tasks and delays in response. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to improved accuracy in progress management and increased efficiency in on-site operations. 【Usage Scenarios】 - Real-time tracking of process progress - Centralized management of component and inventory information - Recording and sharing of manufacturing performance and defect information 【Benefits of Implementation】 - Improved accuracy in progress management - Faster on-site response - Increased productivity
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In the manufacturing site of rubber products, it is essential to manage information about processes and performance appropriately while controlling quality variations. In particular, if one cannot fully grasp the performance and defect information for each lot, it may take time to identify the causes and implement improvements. Orizuru MES supports the visualization of process, performance, inventory, and defect information while utilizing existing equipment, systems, and procedures. This leads to improved accuracy in quality management and stable on-site operations. 【Usage Scenarios】 - Lot-based tracking management - Recording of manufacturing performance and defect information - Understanding of inventory and inbound/outbound information 【Effects of Implementation】 - Accelerated cause investigation - Improved accuracy of quality management - Increased productivity
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In the manufacturing of air conditioning equipment, it is important to properly manage progress, inventory, and performance across many components and assembly processes. In particular, if information and component status are dispersed across different processes, it can lead to delays in on-site responses and increased management burdens. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to improved accuracy in on-site management and the establishment of a stable production system. 【Usage Scenarios】 - Understanding process progress - Centralized management of component and inventory information - Recording of manufacturing performance and abnormal information 【Benefits of Implementation】 - Improved management accuracy - Increased efficiency in on-site responses - Enhanced productivity
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In the manufacturing site of furniture and fixtures, it is essential to accurately grasp the progress of processes, inventory, and performance information while handling a variety of item numbers and materials. Particularly, when process information and material status are dispersed, it can lead to delays in on-site responses and increased management burdens. Orizuru MES supports the visualization of process, inventory, and performance information while leveraging existing equipment, systems, and procedures. This contributes to improved accuracy in production management and stable on-site operations. 【Usage Scenarios】 - Progress management for each process - Understanding of material and inventory information - Recording of manufacturing performance and defect information 【Benefits of Implementation】 - Improved accuracy in production management - Faster on-site responses - Increased productivity
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In the manufacturing site of wires and cables, it is essential to maintain stable production while appropriately managing performance and process information for each lot. In particular, when information about processes, performance, and inventory is dispersed, it may take time to identify causes and make decisions. Orizuru MES supports the visualization of process, performance, and inventory information while leveraging existing equipment, systems, and procedures. This leads to enhanced traceability and improved accuracy in on-site management. 【Usage Scenarios】 - Performance management by lot - Understanding process progress - Recording and sharing inventory and inbound/outbound information 【Benefits of Implementation】 - Improved traceability - Faster cause identification - Increased productivity
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In space development, it is important to centrally manage a wide range of information, including design data, manufacturing data, bill of materials, and related documents, to facilitate rapid collaboration from design to manufacturing. The dispersion of data and delays in collaboration can lead to rework, project delays, and increased costs. Core Concept Technology × aras INNOVATOR addresses these challenges by supporting the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Use Cases】 - Management of satellite design data - Management of rocket component manufacturing processes - Rapid sharing of design change information 【Benefits of Implementation】 - Reduced lead time through data centralization - Quick response to design changes - Improved efficiency in BOM management
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In the manufacturing industry, it is important to manage everything from product planning and design to manufacturing and after-sales support in a seamless manner, quickly sharing and collaborating on design data, manufacturing data, bill of materials, and related documents. The dispersion of data and delays in collaboration can lead to rework, prolonged lead times, and increased costs. The core concept technology × aras INNOVATOR supports the resolution of these challenges through the establishment of PLM. 【Usage Scenarios】 * Streamlining the product information management process * Evaluating the impact on quality during design changes * Accelerating information sharing between design and manufacturing 【Benefits of Implementation】 * Visualization of product information through data centralization * Improved quality through rapid reflection of design changes * Enhanced efficiency in information management through integrated BOM management
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In the field of agricultural machinery, it is essential to properly manage product design data, bill of materials, manufacturing information, and related documents to ensure smooth collaboration from design to production preparation. The dispersion of information and delays in collaboration can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM) to address these challenges. 【Usage Scenarios】 - Centralized management of design data and bill of materials - Rapid sharing of design change information - Management of related documents necessary for production preparation 【Benefits of Implementation】 - Visualization of product information - Quick response to design changes - Improved efficiency in BOM management
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In the field of communication equipment, it is important to properly manage design data, bill of materials, manufacturing information, and related documents, and to quickly disseminate design changes to relevant departments. Information dispersion and delays in collaboration can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through PLM implementation. 【Usage Scenarios】 - Management of design data for communication equipment - Sharing of design change information and history management - Centralized management of bill of materials and related documents 【Benefits of Implementation】 - Visualization of product information - Rapid reflection of design changes - Optimization of BOM management
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In the energy equipment sector, it is essential to properly manage design data, parts lists, and related documents involved in plant design and equipment management, and to quickly disseminate design changes to relevant departments. The dispersion of information and inadequate management can lead to project delays and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of plant design data - Rapid sharing of design change information - Strengthened management of parts lists and related documents 【Benefits of Implementation】 - Reduced lead time - Quick reflection of design changes - Optimization of BOM management
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In the medical device field, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents, and to quickly disseminate design changes to relevant departments. Dispersed information and delays in collaboration can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM) to address these challenges. 【Usage Scenarios】 - Management of design data for medical devices - Sharing and history management of design change information - Centralized management of bill of materials and related documents 【Benefits of Implementation】 - Visualization of product information - Rapid reflection of design changes - Streamlining of BOM management
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In the field of industrial machinery, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents to ensure smooth collaboration from design to production preparation. The dispersion of information and delays in communicating design changes can lead to rework, delivery delays, and increased costs. Core Concept Technology × Aras Innovator supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and bill of materials - Rapid sharing of design change information - Management of related documents necessary for production preparation 【Benefits of Implementation】 - Visualization of product information - Quick response to design changes - Improved efficiency in BOM management
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In the field of transportation equipment, it is essential to properly manage product information that includes numerous parts and related documents, and to ensure that design changes are reliably communicated to relevant departments. The dispersion of information and delays in communication can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Use Cases】 - Management of design change information history - Centralized management of bill of materials (BOM) and related documents - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Reduction of rework - Rapid reflection of design changes - Optimization of BOM management
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In the field of electrical and electronic equipment, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents, and to quickly and accurately communicate design changes to relevant departments. Information dispersion and update omissions can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through PLM implementation. 【Usage Scenarios】 - Centralized management of design data and bill of materials - Management of approval flow during design changes - Information sharing between development and manufacturing departments 【Benefits of Implementation】 - Prevention of update omissions - Rapid reflection of design changes - Streamlining of BOM management
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In the field of architecture and construction materials, it is essential to properly manage design data, parts lists, and related documents, and to accurately communicate specification changes and drawing revisions to relevant departments. The dispersion of information and delays in revision management can lead to rework, delivery delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and related documents - Sharing of specification change information and history management - Coordination of drawing revision information between departments 【Benefits of Implementation】 - Prevention of oversight in revisions - Rapid reflection of specification changes - Streamlining of information management
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In the materials and chemical fields, it is essential to properly manage specification information, formulation information, manufacturing information, and related documents, and to quickly disseminate specification changes to relevant departments. Dispersed information and inadequate management can lead to rework, development delays, and increased costs. The core concept of technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of specification information and related documents - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Rapid reflection of specification changes - Visualization of information management - Improved operational efficiency
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In the field of semiconductor manufacturing equipment, it is essential to properly manage design data, bill of materials, manufacturing information, and related documents, and to quickly and accurately communicate design changes of complex equipment to relevant departments. Information dispersion and delays in communication can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and bill of materials - Sharing of design change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Reduction of rework - Rapid reflection of design changes - Streamlining of BOM management
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In the field of industrial robots, it is essential to properly manage design data, parts lists, manufacturing information, and related documents, and to quickly disseminate specification changes and design revisions to relevant departments. Delays in information distribution and sharing can lead to rework, development delays, and increased costs. Core Concept Technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and parts lists - Sharing of specification change information and history management - Information collaboration between development and production preparation departments 【Benefits of Implementation】 - Reduction of rework - Rapid reflection of design changes - Streamlining of BOM management
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In the field of measurement and analysis equipment, it is essential to properly manage design data, parts lists, manufacturing information, and related documents, and to accurately communicate design changes related to precision and specifications to the relevant departments. Dispersed information and delays in revision management can lead to rework, development delays, and increased costs. The core concept technology × aras INNOVATOR supports the digital transformation (DX) of the entire engineering chain through the establishment of Product Lifecycle Management (PLM). 【Usage Scenarios】 - Centralized management of design data and related documents - Sharing of specification change information and history management - Information collaboration between development and manufacturing departments 【Benefits of Implementation】 - Prevention of missed revisions - Rapid reflection of design changes - Streamlining of information management
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