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soft(cam) - List of Manufacturers, Suppliers, Companies and Products | IPROS GMS

Last Updated: Aggregation Period:Jul 29, 2026~Aug 25, 2026
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soft Product List

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<For Customers> Solving various issues with large-capacity CAD data!

Are you currently having trouble with large-capacity CAD data support?

Recently, the performance of CAD systems and software has improved significantly, greatly increasing their capabilities compared to the past. This has also led to larger file sizes for CAD data itself. Data that poses no issues within native systems can cause problems when used with other brand CAD systems or various CAE/CAM software, leading to inquiries from customers who are experiencing difficulties with loading and processing. Therefore, by using the Simplifier function of our core technology software "3D_Evolution," it is possible to quickly and easily create data containing only the necessary elements for each workflow. This has resulted in positive feedback from many customers. ~~~~~~~~~~~~~~~~ 1-Month Free Trial Available! ~~~~~~~~~~~~~~~~ Our software is not only appealing to end users but also to trading companies, so we would be grateful if you could contact us.

  • Other CAD
  • Data conversion software
  • soft

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Interference Check Using CADPAC-CREATOR for the Machinery Industry

Thoroughly check for interference during the design phase with 2D/3D integrated design CAD!

In the machinery industry, interference checks during the design phase are essential to ensure product quality and safety. Interference between parts can lead to assembly defects and product malfunctions, resulting in increased costs due to rework. CADPAC-CREATOR integrates 2D and 3D data to visualize interference during the design phase, addressing these issues. This allows designers to quickly and accurately identify interference points and make necessary corrections. 【Usage Scenarios】 - Design of mechanical components - Simulation of assembly processes - Creation of 3D models of products 【Benefits of Implementation】 - Reduction of design errors - Decrease in rework labor - Improvement in product quality

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  • 2D CAD machine
  • 3D CAD
  • Other CAD
  • soft

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CADPAC-CREATOR for Architectural Design Consideration

CAD for architectural design consideration that fuses 2D and 3D.

In the architectural industry, design considerations require both creative freedom in design and an efficient design process to realize it. Particularly, it is important to quickly materialize diverse shapes and complex designs while ensuring smooth information sharing among stakeholders. CADPAC-CREATOR provides a design environment that integrates 2D and 3D, addressing these challenges. It enables shape design based on free thinking and efficiently supports everything from design to presentation. 【Usage Scenarios】 - Consideration of building exterior design - Interior design considerations - Creation of 3D models for presentations - 3D conversion of existing 2D drawings 【Benefits of Implementation】 - Increased design freedom - Reduced design time - Smooth information sharing among stakeholders - Ensured compatibility through support for various file formats

  • cadpac-creator_02.png
  • 2D CAD machine
  • 3D CAD
  • Other CAD
  • soft

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Automotive STL Workshop 2

Easily reduce the weight of STL data!

In the automotive industry, weight reduction is essential for improving fuel efficiency and performance. STL data created with 3D printers and scanners tends to have large file sizes, which can hinder subsequent design changes and analysis work. STL Workshop 2 achieves the lightweighting of STL data and contributes to the efficiency of the design process. 【Use Cases】 - Lightweighting of prototypes created with 3D printers - Lightweighting of part data captured with scanners - Modifications of STL data due to design changes 【Benefits of Implementation】 - Reduction in data editing time - Shortening of design cycles - Improved file management efficiency due to reduced data size

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【建築検証向け】STL編集ソフト「STL工房2」

簡単操作でSTLデータを簡略化し、建築検証を効率化!

建築業界における検証作業では、3Dモデルの正確性と効率的なデータ処理が求められます。特に、設計段階でのモデル修正や、構造解析のためのデータ準備において、STLデータの軽量化は重要な課題です。ファイル容量が大きいと、編集や解析に時間がかかり、検証プロセス全体の遅延につながる可能性があります。STL工房2は、STLデータの軽量化を実現し、建築検証におけるデータ処理の効率化を支援します。 【活用シーン】 * 建築設計モデルの検証 * 構造解析用データの準備 * 3Dプリンター出力前のデータ調整 【導入の効果】 * データ処理時間の短縮 * 検証作業の効率化 * 設計・製造プロセスの最適化

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STL Workshop 2 for Prosthetics and Orthotics

Easily simplify STL data with simple operations to support the fitting of prosthetics and orthotics!

In the prosthetics and orthotics industry, precise fitting of prosthetic devices tailored to each individual patient is required. STL data represents shape data obtained from 3D scanners, but the file sizes can be large, making editing cumbersome. STL Workshop 2 facilitates the lightweight processing and editing of STL data, streamlining the design and manufacturing process of prosthetic devices. This contributes to improved fitting accuracy and reduced production time. 【Usage Scenarios】 - Editing body shape data of patients obtained from 3D scanners - Combining with design data for prosthetic devices - Data adjustment before outputting with a 3D printer 【Benefits of Implementation】 - Reduces the file size of STL data, shortening editing time - Makes data modification and adjustment easier, improving fitting accuracy - Enables smooth data integration with 3D printers

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【アート造形向け】STL工房2

簡単操作でSTLデータを簡略化!造形制作を効率化。

アート業界における造形制作では、3Dプリンターやその他のデジタルファブリケーション技術を用いた作品制作が一般的です。STLデータは、これらの技術で利用される標準的なファイル形式ですが、ファイルサイズが大きくなりがちで、編集や修正に手間がかかることがあります。STL工房2は、このような課題に対し、STLデータの軽量化と編集の容易さを提供します。これにより、アーティストはよりスムーズに作品制作を進めることができます。 【活用シーン】 ・3Dプリンターでの造形 ・3Dスキャナーで取り込んだデータの修正 ・デジタル彫刻作品の制作 【導入の効果】 ・データ容量の削減による編集時間の短縮 ・造形データの品質向上 ・試作回数の削減

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Improving PCB design efficiency with CAMCORE EX for electronic components.

Centralize the management of drawings and processing data to streamline the editing process of processing data for circuit board design.

In the circuit board design of the electronic components industry, a quick response to design changes and the accuracy of processing data are required. In particular, it is important to address modifications during the prototype stage and to accommodate small-lot, varied production. If editing processing data is cumbersome, it can lead to delays in the design cycle and increased costs. CAMCORE EX facilitates easy changes to processing conditions and paths by managing drawings and processing data in the same file, thereby speeding up NC data creation. 【Usage Scenarios】 - Creation of processing data in circuit board design - Response to design changes during the prototype stage - Accommodation of small-lot, varied production 【Benefits of Implementation】 - Shortening of the design cycle - Increased efficiency in processing data editing tasks - Cost reduction

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CAMCORE EX for Toy Prototyping

Manage drawings and processing data in the same file! Shorten the prototyping period.

In the toy industry, rapid response to design changes is required during the prototyping phase. Particularly, if it takes time to modify processing data for fine-tuning designs or verifying functionality, it can impact the overall schedule of the prototype. CAMCORE EX contributes to shortening the prototyping period by managing drawings and processing data in the same file, making it easier to change processing conditions and paths. 【Usage Scenarios】 - Design prototyping of toys - Shape confirmation before mold production - Production of prototypes for functionality verification 【Benefits of Implementation】 - Reduction in time required for prototyping - Flexible response to design changes - Cost reduction

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【家具製造向け】CADSUPER Lite

組立図作成に特化。直感操作で効率的な作図を実現。

家具製造業界では、製品の組み立て手順を明確に示す組立図の作成が重要となります。特に、部品点数の多い家具においては、正確で分かりやすい図面が、製造ラインの効率化や組み立てミスの削減に直結します。不十分な図面は、手戻りや品質低下の原因となり得ます。CADSUPER Liteは、作図機能に特化し、シンプルなメニュー構成と直感的な操作性で、ストレスなく思い通りの作図環境を提供します。 【活用シーン】 ・部品の配置や接合部の詳細を示す組立図の作成 ・製造ラインでの作業指示図の作成 ・協力会社との図面共有 【導入の効果】 ・組立図作成の効率化 ・組み立てミスの削減 ・製造プロセス全体の円滑化

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Aerospace Version Vericut 9.6

Improving aircraft safety with AI and precision machining.

In the aerospace industry, the precision of part machining is extremely important to ensure the safety and reliability of aircraft. In particular, accurate manufacturing without machining errors is required for structural and engine components of aircraft. Vericut 9.6 addresses these challenges by simulating machine tools using G-code NC programs and detecting collisions and machining defects in advance. Vericut supports a wide variety of machine tools, including multi-axis machining such as high-efficiency, high-precision 5-axis machining, as well as lathes, composite machines, and multi-surface machining machines. 【Use Cases】 * Manufacturing of aircraft parts * Machining of complex shapes with high collision risk * Machining of parts requiring high precision 【Benefits of Implementation】 * Reduction of machining errors * Improvement of aircraft safety * Reduction of manufacturing costs

  • Milling machine
  • lathe
  • Other machine tools
  • soft

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Vericut 9.6 for Medical Devices

Improving the safety of medical device manufacturing with AI and precision machining.

In the medical device industry, the safety and reliability of products are the top priorities. CNC-machined medical device parts require high precision and quality, as they directly impact patient safety. Even a slight mistake in machining can lead to product malfunction or risks to patients. Vericut 9.6 reduces these risks by simulating G-code NC programs at the stage of machining to verify accuracy. 【Usage Scenarios】 - Safety verification in CNC machining of medical device parts - Interference checks in machining complex-shaped parts - Cost reduction through optimization of machining time 【Benefits of Implementation】 - Improved product reliability by reducing machining errors - Shortened development time by reducing the number of prototypes - Mitigation of cost increases due to machining defects

  • Milling machine
  • lathe
  • Other machine tools
  • soft

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CAST-DESIGNER for Medical Devices

Rapid gate system design and CAE analysis with a single software.

In the precision parts manufacturing of the medical device industry, product quality and safety are the top priorities. Especially in the manufacturing of precision parts with complex shapes, optimizing mold design is essential to suppress the occurrence of defective products and reduce manufacturing costs. CAST-DESIGNER is equipped with CAD functions for gate system design and analysis capabilities, enabling quick adjustments of appropriate gate systems and processing conditions. It also includes GEO-DESIGNER, which allows for rapid initial stage analysis, facilitating design concepts that avoid defect risks. [Usage Scenarios] - Mold design for precision medical device parts - Reducing defect rates in the manufacturing of complex-shaped parts - Reducing manufacturing costs [Effects of Implementation] - Shortening the mold design period - Cost reduction through the decrease of defective products - Stable supply of high-quality medical device parts

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  • simulator
  • Other analyses
  • Other CAD related software
  • soft

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DesignFlowExtractor for Manufacturing Industry

3D data to 2D drawings! Significantly improve work efficiency.

In the manufacturing industry, the creation of part drawings is essential for product design and manufacturing processes. The conversion from 3D CAD data to 2D drawings has required a lot of time and effort, leading to decreased work efficiency. Particularly in the mold industry, a significant amount of time has been spent on shape verification and angle correction of 3D data, making the transition to 2D drawings challenging. DesignFlowExtractor performs shape verification and angle correction of three-dimensional data, allowing for conversion to two-dimensional data in just 10 clicks. This achieves a reduction in work time and increased efficiency. 【Use Cases】 - Creation of 2D drawings in the mold industry - Modification and updating of part drawings - Shape verification of 3D data 【Benefits of Implementation】 - Reduction in work time - Improvement in operational efficiency - Reduction of errors

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The definitive domestic 2D CAD for plant design.

2D CAD that streamlines equipment layout in plant design through intuitive operation.

In plant design, the accurate placement and optimization of equipment layout are crucial for ensuring safety and functionality. In particular, efficient equipment placement in limited spaces impacts the overall productivity and maintainability of the plant. Improper placement can lead to a lack of workspace and interference with piping and wiring. CADSUPER Lite specializes in drawing functions, allowing for smooth equipment placement tasks in plant design due to its simple menu structure and intuitive operability. 【Usage Scenarios】 - Consideration of equipment layout within the plant - Examination of piping and wiring routes - Modification and additional design of existing facilities - Collaboration with partner companies on drawings 【Benefits of Implementation】 - Increased efficiency in equipment placement tasks - Reduction of design errors - Smoother information sharing among stakeholders

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Vericut 9.6 for Watch Manufacturing

Improving the quality and efficiency of watch parts through the fusion of AI and precision machining.

In the watch manufacturing industry, there is a demand for the efficient production of high-quality watch components. Particularly for parts that require complex shapes and fine processing, balancing machining accuracy and productivity is crucial. Machining defects and process delays can lead to a decline in product quality and increased costs. Vericut 9.6 addresses these challenges through AI-powered simulation and optimization features. 【Usage Scenarios】 - Machining of complex-shaped watch components - Optimization of tool paths in fine processing - Simulation of multi-axis machining 【Benefits of Implementation】 - Reduction in machining time - Improvement in machining accuracy - Extension of tool life - Reduction of defective products

  • Milling machine
  • lathe
  • Other machine tools
  • soft

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3DViewStation for Machine Tools

High-speed display of various 2D/3D data! For simulation of machine tools.

In the machine tool industry, verifying 3D models during the design phase and conducting machining simulations are crucial. Particularly when complex shapes and high-precision machining are required, accurate visualization of 3D models and integration with machining simulation results are essential. Inaccurate model displays or a lack of consistency with simulation results can lead to an increase in the number of prototypes and a decline in product quality. 3DViewStation rapidly displays various 3D/2D data, streamlining design verification and machining simulations. 【Usage Scenarios】 - Design reviews of machine tools - Verification of machining simulation results - Interference checks of parts - Visualization of work procedures 【Benefits of Implementation】 - Reduction of design errors - Shortening of prototype periods - Improvement of product quality - Cost reduction

  • 3D measuring device
  • Other CAD related software
  • 3D CAD
  • soft

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Prosthetics/Mesh2Surface for Rhinoceros

Easily create CAD models from 3D scan data.

In the prosthetics industry, precise design of prosthetic limbs tailored to the patient's body is required. It is particularly important to accurately capture the patient's body shape while balancing comfort and functionality. Traditional design methods have posed challenges due to the time and cost involved. Mesh2Surface for Rhinoceros facilitates the conversion from 3D scan data to CAD models, achieving greater efficiency in prosthetic design. 【Use Cases】 - Prosthetic design from scan data of the patient's body shape - Modifications and improvements based on the shape of existing prosthetics - Data creation for prosthetic manufacturing using a 3D printer 【Benefits of Implementation】 - Reduced design time - Lower design costs - Design of prosthetics that fit the patient's body - Provision of high-quality prosthetics

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Automation of Programs with MazaCAM for Machine Tools

Easy and interactive! Streamlining the creation and conversion of programs for machine tools.

In the machine tool industry, there is a constant demand for improved productivity and cost reduction. Particularly in the case of small-batch production and the processing of complex shapes, the efficiency of program creation is crucial. Manual programming and trial-and-error on control devices reduce machine operating time and lead to decreased productivity. MazaCAM allows even beginners to easily create programs through interactive programming, thereby reducing machine downtime. By creating programs while the machine is in operation, work efficiency can be enhanced. 【Usage Scenarios】 * Utilization in various machine tools such as NC lathes and machining centers * Reduction of setup time through the reuse and editing of existing programs * Rapid response to design changes by creating programs from CAD/CAM data 【Benefits of Implementation】 * Reduction in program creation time * Improvement in machine operating rates * Strengthened capability to handle small-batch production of various types

  • 2D CAM
  • 3D CAM
  • Other CAM related software
  • soft

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EZ Jig for Rhino for Research and Development

Streamline experimental fixture design! Accelerate prototyping with 3D printer collaboration.

In research and development experiments, testing and inspections are repeated. To enhance the accuracy of experiments and efficiently acquire data, it is necessary to quickly prepare jigs that are suitable for the purpose. However, traditional jig design often requires specialized knowledge and can be time-consuming. "EZ Jig for Rhino" enables jig design through intuitive operations without the need for expertise in 3D CAD. By collaborating with 3D printers, it allows for the rapid creation of necessary jigs when needed, contributing to the efficiency of experiments. 【Usage Scenarios】 - Design of experimental jigs - Fixtures for prototypes - Measuring jigs - Component fixation in research and development 【Benefits of Implementation】 - Reduction in jig design time - Shortening of prototype development time - Improvement in experimental accuracy - Acceleration of research and development

  • Other CAD related software
  • Inspection fixture
  • Assembly Jig
  • soft

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Beyond CAD, connecting data - Orizuru 3D

Don't just finish with design. Move the CAD data to the next stage.

How to directly link design data to processing and manufacturing preparation. This is an important theme in improving productivity and preventing rework. If 3D data can be smoothly transferred to subsequent processes, it can reduce verification work and expedite estimates and manufacturing preparations. However, the situation on the ground is not that simple. Even if 3D modeling is progressing in the design department, the manufacturing side still faces issues with interpreting drawings and individual confirmations, leading to a disconnect in information. When this gap occurs between design and manufacturing, it results in repeated confirmations of the same shape, leading to variations in judgment and delays in response. The solution to this design-manufacturing gap is 'Orizuru 3D.' Through shape recognition, similarity searches, automatic estimates, and lightweight 3D displays, it expands design data into procurement and manufacturing preparation, accelerates on-site decision-making, and supports the creation of workflows that are less reliant on individual expertise. 【Features】 ■ Automatic estimation ■ Lightweight 3D rendering in a web browser *For more details, please download the PDF. ■ Reference Article What is CAM/CAD? Explaining the differences from CAE and how it is utilized in manufacturing https://www.cct-inc.co.jp/koto-online/archives/330

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CAMCORE EX for Automotive Parts Manufacturing

Manage drawings and processing data in the same file to streamline the editing of processing data.

In the automotive parts manufacturing industry, a quick response to design changes and high-quality parts processing are required. Particularly in the prototyping stage and low-volume, high-variety production, modifications and optimizations of processing data occur frequently, making work efficiency crucial. CAMCORE EX facilitates easy changes to processing conditions and paths by managing drawings and processing data in the same file, thereby reducing NC data creation time. [Usage Scenarios] - Prototyping of automotive parts - Low-volume, high-variety production - Quick response to design changes [Benefits of Implementation] - Reduction in processing data editing time - Increased efficiency in NC data creation - Achievement of high-quality parts processing

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Lightweight Design Using CAMCORE EX for Aerospace Applications

Centralized management of drawings and processing data to streamline lightweight design of aerospace components.

In the aerospace industry, reducing the weight of components is essential for improving fuel efficiency and performance of aircraft. Achieving weight reduction requires high-precision design and manufacturing. CAMCORE EX facilitates the creation of NC data during design changes by managing drawings and processing data in the same file, contributing to a reduction in the number of prototypes. 【Usage Scenarios】 - Design of aircraft components - Design of components for space exploration vehicles - Design of drone components 【Benefits of Implementation】 - Shortened design and manufacturing periods - Realization of component weight reduction - Cost reduction

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Reduce the burden of inspection tasks for semiconductor manufacturing! DX methods to start from today.

A system suitable for creating Excel record sheets for specification verification from drawing data.

In the semiconductor manufacturing industry, accurate verification of the detailed specifications listed in the drawings is required to ensure product quality and reliability. In particular, the task of manually transcribing complex design information and specifications related to numerous components into record sheets like Excel is not only time-consuming and labor-intensive but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" addresses these issues by efficiently extracting the necessary textual information from drawing data and automating the transcription process to Excel. 【Use Cases】 - Measurement records - Dimension inspection records - Material confirmation documents, etc. 【Benefits of Implementation】 - Increased efficiency in specification verification tasks - Reduction of transcription errors - Accelerated verification processes

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Reduce the burden of inspection tasks for medical device manufacturing! DX methods to start from today.

A system suitable for creating Excel record sheets for specification confirmation from drawing data.

In the medical device manufacturing industry, accurate verification of detailed specifications outlined in drawings is essential to ensure product safety and reliability. In particular, the task of manually transcribing complex design information and specifications related to numerous components into record sheets like Excel is not only time-consuming and labor-intensive but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" addresses these issues by efficiently extracting the necessary textual information from drawing data and automating the transcription process to Excel. 【Use Cases】 - Measurement records - Dimensional inspection records - Material confirmation documents, etc. 【Benefits of Implementation】 - Increased efficiency in specification verification tasks - Reduction of transcription errors - Accelerated verification processes

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Reduce the burden of equipment inspection operations for energy infrastructure! DX methods.

A system suitable for creating Excel record sheets for specification verification from drawing data.

In the energy infrastructure industry, accurate verification of the detailed specifications listed in the drawings is required to ensure the safety and reliability of equipment. In particular, the task of manually transcribing complex design information and specifications for numerous pieces of equipment into record sheets such as Excel is not only time-consuming and labor-intensive but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" addresses these issues by efficiently extracting the necessary textual information from drawing data and automating the transcription process to Excel. 【Use Cases】 - Measurement records - Dimension inspection records - Material confirmation documents, etc. 【Benefits of Implementation】 - Increased efficiency in specification verification tasks - Reduction of transcription errors - Acceleration of verification processes

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Reduce the burden of inspection work for shipbuilding! DX methods to start from today.

A system suitable for creating welding inspection record sheets from drawing data.

In the shipbuilding industry, accurate verification of the detailed specifications outlined in the drawings is essential to ensure product safety and reliability. In particular, the task of manually transcribing complex design information and specifications related to numerous parts into recording sheets like Excel is not only time-consuming and labor-intensive but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" addresses these issues by efficiently extracting the necessary textual information from drawing data and automating the transcription process to Excel. 【Usage Scenarios】 - Welding inspection records 【Benefits of Implementation】 - Increased efficiency in inspection record tasks - Reduction of transcription errors - Accelerated verification processes

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Reduce the burden of inspection tasks for robot manufacturing! DX methods

A system suitable for creating operation verification record sheets from drawing data.

In the robot manufacturing industry, accurate verification of the detailed specifications listed in the drawings is required to ensure product safety and reliability. In particular, the task of manually transcribing complex design information and specifications related to numerous components into record sheets like Excel not only takes time and effort but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" solves these issues by efficiently extracting the necessary text information from drawing data and automating the transcription process to Excel. 【Usage Scenarios】 - Dimension verification during operation validation - Recording of component specifications - Inspection records 【Benefits of Implementation】 - Increased efficiency in specification verification tasks - Reduction of transcription errors - Faster verification processes

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DX methods to reduce the burden of inspection tasks for drone manufacturing starting today.

A system suitable for creating Excel record sheets for specification verification from drawing data.

In the drone manufacturing industry, accurate verification of detailed specifications outlined in drawings is essential to ensure product safety and reliability. In particular, the task of manually transcribing complex design information and specifications regarding numerous components into record sheets like Excel is not only time-consuming and labor-intensive but also carries the risk of human error. These challenges can lead to delays in specification verification and decisions based on incorrect information. Our "DrawingExtractor" addresses these issues by efficiently extracting necessary textual information from drawing data and automating the transcription process to Excel. 【Use Cases】 - Measurement records - Dimensional inspection records - Material confirmation documents, etc. 【Benefits of Implementation】 - Increased efficiency in specification verification tasks - Reduction of transcription errors - Faster verification processes

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