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soft(3D Scan) - 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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Graduating from "manual work" "ACAD-DENKI 2026"

[New Feature Details Now Available] Supports data utilization in the familiar .dwg format. Reduces "errors" and "losses" in electrical control design.

■Do you have such issues? Mistakes and time loss occur in paper-based inspection and parts aggregation. Inconsistent drawing styles lead to non-uniformity in diagrams. Data integration is impossible, making it difficult to shorten the lead time from design to manufacturing. ■Are you spending time on operations like this? - Creating electrical diagrams with general-purpose CAD. - Manually checking relay contacts. - Manually picking parts and creating a separate parts list. - Clicking and editing IO addresses and comments one by one. The entire industry is being asked to reduce product size and wiring, leading to increased workload. However, the shortage of personnel is becoming serious, increasing the burden on each employee. To respond to future modular design needs, it is necessary to improve such manual electrical control design. By introducing ACAD-DENKI 2026, it is possible to solve the challenges you face. ■Features An operating experience that extends from AutoCAD/BricsCAD. Smooth data exchange with other companies. Free from paper drawings and markers. Options for collaboration with manufacturing. Customization support!

  • 2D CAD Electrical
  • soft

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[Video Now Available] Supporting CAD Conversion for Piping Design

Automatic modeling of piping, smoothly displaying large volumes of point clouds.

"The data is too heavy to handle properly—" "Removing the noise captured during scanning takes an enormous amount of time and effort—" "I am manually creating CAD models of piping based on point cloud data—" ⇒ Such challenges are solved by "InfiPoints." ■ What is 'InfiPoints'? ○ Overwhelming performance that makes the most of 3D scanner data ・ Displays any point cloud data smoothly without data size limitations ○ High-precision noise removal, automatic piping modeling, and interference simulation features ・ Automatically removes noise such as people captured during scanning ・ Automatically recognizes piping shapes from point cloud data and creates CAD models ・ Easily simulates collisions between point clouds and CAD *Please check out the video* ---------------------------------------------- Free trial currently available ☆ Feel free to contact us ☆ ----------------------------------------------

  • 3D measuring device
  • soft

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Inspection jigs and mechanism design equipment

Our jointly developed editing machine "PASSCAM," specialized in fixture mechanism design, is also part of the lineup!

We would like to introduce the inspection jigs and mechanical design equipment that we possess. We have 3D CAD software such as SolidWorks, as well as machining equipment like FANUC's RoboDrill. We also have a collaborative development editing machine specialized for jig mechanism design called "PASSCAM." 【Inspection Jigs and Mechanical Design Equipment】 ■ SolidWorks 2023 ■ PASSCAM ■ RoboDrill FANUC α-28 LiB5 ■ RoboDrill FANUC α-D21 LiA 5 *For more details, please refer to our company brochure.

  • Inspection fixture
  • soft

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[Video Now Available] Effective Utilization of 3D Measuring Instruments like FARO

"InfiPoints" displays large volumes of point clouds smoothly and automatically models piping.

"Data is too heavy to handle properly—" "Removing noise captured during scanning takes an enormous amount of time and effort—" "I am manually creating CAD models of piping based on point cloud data—"    ⇒ Such challenges are solved by "InfiPoints." ■ What is 'InfiPoints'? ○ Overwhelming performance that makes the most of 3D scanner data    ・Displays any point cloud data smoothly without data size limitations ○ High-precision noise removal, automatic piping modeling, and interference simulation features    ・Automatically removes noise such as people captured during scanning    ・Automatically recognizes piping shapes from point cloud data and creates CAD models    ・Easily simulates collisions between point clouds and CAD *Please check out the video  ----------------------------------------------         Free trial currently available     ☆Feel free to contact us☆  ----------------------------------------------

  • 3D measuring device
  • soft

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[Video Now Available] For Facility Modeling, Choose InfiPoints

"InfiPoints" significantly improves work efficiency with automatic CAD modeling of planes and piping.

"The data is too heavy to handle properly—" "Removing the noise captured during scanning takes an enormous amount of time and effort—" "I am manually creating CAD models of piping based on point cloud data—" ⇒ Such challenges are solved by "InfiPoints." ■ What is 'InfiPoints'? ○ Overwhelming performance that makes the most of 3D scanner data - Displays any point cloud data smoothly without data size limitations ○ High-precision noise removal, automatic piping modeling, and interference simulation features - Automatically removes noise such as people captured during scanning - Automatically recognizes piping shapes from point cloud data and creates CAD models - Easily simulates collisions between point clouds and CAD *Please be sure to check out the video* ---------------------------------------------- Free trial currently available ☆ Feel free to contact us ☆ ----------------------------------------------

  • 3D measuring device
  • soft

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Design tools for next-generation device developers [START] Case studies

Introduction to the features of the all-around tool START that responds to the flow of the times.

[START] is a software that serves as a "CAM tool capable of design," an "I/F tool for consolidating different formats," a "fusion tool for 2D/3D," and a "tool that combines manual operation with programming execution," all in one, offering excellent cost performance that can accommodate various industries and products. Other special features: ■ Circuit diagram creation ■ Resistance value measurement ■ Bwire batch editing/3D DRC ■ Special correction ■ Image editing ■ Reverse engineering ■ Pre-simulation calculations ■ ODB input/output ■ Cutting plotter direct output ■ Various simulation I/F ■ DEMITASNX with back annotation I/F *For details, please refer to the catalog available for download below "PDF Download."

  • 2D CAD Electrical
  • soft

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Visualization of complex formulas and phenomena for education: 'Mathematica'

Bringing ideas from the educational field to life. Equipped with countless functions.

In the educational field, it is required to present complex concepts in an easy-to-understand manner and provide practical exercises in the creation of teaching materials to deepen students' understanding. Particularly in fields such as science, mathematics, and engineering, simulations based on concrete data and visual representations are crucial for enhancing learning effectiveness. Inadequate teaching materials can lead to decreased student motivation and delays in understanding. 'Mathematica' serves as a processing system equipped with countless functions, supporting educators in material creation that embodies ideas and provides students with surprise and discovery in response to these challenges. 【Usage Scenarios】 - Visualization of complex formulas and phenomena - Creation of interactive exercise problems - Development of teaching materials based on data analysis - Introduction to programming learning 【Effects of Implementation】 - Increased student motivation - Promotion of understanding of abstract concepts - Development of practical problem-solving skills - Reduction of the burden on educators in material creation

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  • Mathematical processing
  • Visualization
  • Other research software
  • soft

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Data analysis of manufacturing lines using 'Mathematica' for the manufacturing industry.

Supporting quality control in manufacturing. Seamlessly from ideas to results.

In quality control within the manufacturing industry, maintaining stable product quality and early detection and investigation of defects are essential. In particular, complex data analysis and understanding subtle variations in the manufacturing process are directly linked to product reliability. Inappropriate analysis or decisions not based on data can lead to quality deterioration and production losses. 'Mathematica' serves as a processing system equipped with countless functions, becoming a partner in the realization of ideas and research and development, providing surprises and discoveries. 【Usage Scenarios】 - Anomaly detection through data analysis of manufacturing lines - Performance prediction and quality improvement of products - Statistical analysis and visualization of experimental data - Automation of appearance inspection using image processing 【Benefits of Implementation】 - Increased efficiency in quality control operations - Improvement and stabilization of product quality - Reduction in defect occurrence rates - Rapid decision-making based on data

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  • Mathematical processing
  • Visualization
  • Other research software
  • soft

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Market Risk Modeling for Finance with 'Mathematica'

Accelerating financial risk analysis with countless built-in functions.

In the financial industry, it is essential to accurately analyze complex market fluctuations and diverse risk factors to predict future trends. In particular, advanced computational capabilities and flexible modeling functions are indispensable for evaluating market risk, credit risk, and operational risk. Inadequate analysis can lead to unexpected losses or opportunity costs. 'Mathematica' is a processing system equipped with numerous functions specialized for the financial sector, seamlessly guiding users from ideas to results. 【Use Cases】 - Market risk modeling - Credit risk assessment - Portfolio optimization - Derivative pricing - Algorithmic trading strategy development 【Benefits of Implementation】 - Accelerated advanced risk analysis - Construction of sophisticated predictive models - Support for data-driven decision-making - Promotion of the development of new financial products - Streamlining of the analysis process

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  • Mathematical processing
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  • soft

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Economic Data Statistical Modeling 'Mathematica' for Economics

Seamlessly from idea to result in economic statistical modeling.

In the field of economics, intricate data analysis and statistical modeling require precise calculations and flexible responses. Particularly in forecasting economic phenomena and formulating policies, building accurate models and deriving rapid results are crucial. Inappropriate analytical tools can lead to incorrect conclusions and inefficient decision-making. Mathematica is a processing system equipped with countless functions to meet the needs of statistical modeling in economics. 【Use Cases】 - Statistical modeling of economic data - Construction of econometric models - Simulation analysis - Development of forecasting models 【Benefits of Implementation】 - Increased efficiency in advanced statistical analysis - Realization of highly accurate economic forecasts - Acceleration of research and development - Promotion of new discoveries and insights

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  • Mathematical processing
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Advanced Simulation 'Mathematica' for Scientific Research

Seamlessly simulating scientific research from idea to result.

In the field of scientific research, advanced simulations are required to elucidate and predict complex phenomena. In particular, precise calculations and flexible data processing capabilities are crucial elements that influence the quality of research. Insufficient computational power and cumbersome interfaces can lead to delays in research and missed opportunities for new discoveries. 'Mathematica' is a powerful tool that embodies the ideas of simulation in scientific research, serving as a partner in research and development, providing surprises and discoveries. 【Usage Scenarios】 - Simulation of complex physical phenomena - Construction of data-driven predictive models - Algorithm development and validation - Design and analysis of mathematical models 【Effects of Implementation】 - Increased efficiency and acceleration of research and development - Promotion of new insights and discoveries - Improved accuracy through advanced computational processing - Easier visualization and sharing of research results

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  • Mathematical processing
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Mathematical Model Construction for Engineering 'Mathematica'

Built-in countless functions to assist in design optimization.

In the field of engineering, particularly in design optimization, there is a demand for performing complex calculations and simulations accurately and efficiently. Considering various conditions and parameters from the initial to the final stages of design to derive optimal solutions leads to improvements in product performance and reductions in development time. Insufficient analysis or calculation errors can result in redesigns or decreased product performance. 'Mathematica' serves as an essential tool for design optimization, providing seamless support from the realization of ideas to the derivation of results in response to these challenges. 【Usage Scenarios】 - Construction and analysis of complex mathematical models - Exploration of design space through parameter studies - Application of optimization algorithms - Visualization and evaluation of simulation results 【Benefits of Implementation】 - Streamlining and accelerating the design process - Discovery of more accurate design solutions - Reduction of development costs - Improvement of product performance

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  • Mathematical processing
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  • soft

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Building Demand Forecasting Models for the Energy Industry 'Mathematica'

Advanced energy demand forecasting. Equipped with countless functions.

In the energy industry, accurate demand forecasting is essential for stable supply and efficient operations. In particular, responding to demand fluctuations caused by climate change and social conditions requires advanced analytical capabilities and rapid data processing. Uncertain forecasts can lead to opportunity losses and increased costs due to oversupply or shortages. 'Mathematica' serves as a processing system equipped with countless functions, becoming a partner in the realization of ideas and research and development, providing surprises and discoveries. 【Usage Scenarios】 - Building demand forecasting models based on past weather data, economic indicators, and event information - Improving forecasting accuracy through real-time data acquisition and analysis - Identifying future demand patterns using machine learning 【Benefits of Implementation】 - Optimization of inventory management and power generation planning through improved demand forecasting accuracy - Contribution to the stabilization of energy supply and cost reduction - Discovery of new business opportunities

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  • Mathematical processing
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  • soft

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Using 'Mathematica' for noise reduction in medical imaging

Transforming ideas in medical image analysis into rapid results. Equipped with countless functions.

In the field of medical imaging analysis, advanced data processing capabilities are required to improve diagnostic accuracy and discover new insights. In particular, capturing subtle changes from complex image data and conducting quantitative evaluations are crucial for diagnostic support and research and development. Inadequate analysis tools can lead to oversights and incorrect judgments. 'Mathematica' incorporates numerous essential functions for medical image analysis, such as image processing, neural networks, and machine learning, supporting everything from the realization of ideas to the derivation of results. 【Use Cases】 - Noise reduction and enhancement of medical images - Automation of lesion detection and segmentation - Quantitative analysis based on image data - Development of diagnostic support models using machine learning 【Benefits of Implementation】 - Contributes to improved diagnostic accuracy - Reduces analysis time and enhances efficiency - Promotes new research and development

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  • Mathematical processing
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Molecular Structure Visualization and Analysis for Pharmaceuticals 'Mathematica'

Molecular modeling ideas, leading to rapid results. Equipped with countless functions.

In the pharmaceutical industry, molecular modeling requires advanced computational power and flexible data processing for the analysis and simulation of complex molecular structures. Particularly in the early stages of new drug development, accurately predicting the properties of candidate compounds and efficiently screening them significantly impacts the speed and success rate of research and development. Inadequate analysis tools can lead to increased time and costs, as well as potential delays in development. 'Mathematica' serves as an integrated system with countless built-in functions, providing a partner for the realization of ideas and research and development. 【Usage Scenarios】 - Visualization and analysis of molecular structures - Simulation of compound property predictions - Exploration of candidate compounds in drug design - Protein structure analysis - Applications in chemoinformatics 【Effects of Implementation】 - Improved computational efficiency in molecular modeling - Shortened research and development cycles - Promotion of new discoveries and insights - Extraction of insights from complex data

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  • Mathematical processing
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Data Feature Extraction for Data Science: 'Mathematica'

Seamlessly from idea to result in data science pattern recognition.

In the field of data science, it is essential to extract meaningful patterns from complex data and utilize them for predictions and decision-making. Particularly in pattern recognition, high-precision analysis and rapid presentation of results significantly influence the speed of research and development. Inadequate analysis tools can lead to oversights and incorrect conclusions. 'Mathematica' is equipped with outstanding capabilities in all areas of technical computation in data science, including neural networks and machine learning, and strongly supports advanced analysis in pattern recognition. 【Usage Scenarios】 - Feature extraction from large datasets - Development of anomaly detection algorithms - Pattern identification in image recognition - Trend analysis of time series data 【Benefits of Implementation】 - Improved pattern recognition accuracy - Reduced analysis time - Promotion of new insights discovery - Enhanced efficiency in research and development

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  • Mathematical processing
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Orbital Design and Analysis of Satellites for Space Development 'Mathematica'

Seamless orbital calculations. Equipped with countless functions.

In the field of space development, accurate orbital calculations for satellites and spacecraft are essential for mission success. In particular, precise orbital predictions that take into account complex gravitational fields and perturbations lead to safe and efficient operations. Inaccurate calculations can pose risks such as orbital deviations and fuel wastage. 'Mathematica' has countless built-in functions available in the fields of science and engineering, supporting advanced orbital calculations. [Usage Scenarios] - Orbital design and analysis for satellites - Orbital planning for interplanetary missions - Perturbation calculations in orbit - Planning for orbital maneuvers [Effects of Implementation] - Increased mission success rates through high-precision orbital calculations - Accelerated development cycles due to reduced computation time - Modeling and simulation of complex physical phenomena - Utilization as a research and development partner

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  • Mathematical processing
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Traffic Volume Data Analysis and Future Forecasting for Transportation 'Mathematica'

Seamlessly predict traffic flow. It has countless built-in functions.

In the field of transportation, accurate traffic flow predictions are required for urban planning, infrastructure development, and accident prevention. In particular, predictions that take into account complex traffic networks and diverse vehicle movements are essential for efficient road operations and ensuring safety. Inadequate predictions can lead to worsening congestion and increased accident risks. 'Mathematica' is a processing system that incorporates countless functions available in the fields of science and engineering, supporting complex calculations and analyses in traffic flow predictions. 【Application Scenarios】 - Analysis of traffic volume data and future predictions - Optimization of signal control - Simulation of congestion occurrence - Operation planning for public transportation 【Effects of Implementation】 - Realization of more accurate traffic flow predictions - Mitigation of congestion and reduction of travel time - Increased efficiency in urban planning and infrastructure development - Establishment of a safe traffic environment

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  • Mathematical processing
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Optimization for Improved Durability in the Coatings Industry: 'Design-Expert'

Experimental planning tool contributing to the control of the physical properties of coatings.

In the paint industry, it is essential to optimize various factors in the formulation ingredients and manufacturing processes to maximize product performance. In particular, precisely controlling physical properties such as film durability, adhesion, and color tone directly impacts product quality and customer satisfaction. To efficiently and effectively improve these physical properties, it is crucial to identify important factors among a wide range of experimental conditions and establish optimal product compositions and manufacturing processes. The graphical design of experiments (DOE) tool, "Design-Expert," provides robust support for planning experiments based on scientific evidence and analyzing results, aiding in the realization of ideal physical property control. 【Application Scenarios】 - Optimization of formulation ingredients for improved paint durability - Examination of surface treatment conditions for enhanced adhesion - Stabilization of color tone and ensuring reproducibility - Streamlining manufacturing processes and reducing costs - Development of new functional paints 【Benefits of Implementation】 - Identification of critical factors enabling efficient experimentation - Detailed physical property analysis using response surface methodology and other techniques - Discovery of optimal product compositions and manufacturing processes - Reduction of development time and costs - Improvement and stabilization of product quality

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  • Other analyses
  • Data Mining
  • Other research software
  • soft

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Material evaluation for electronic device applications using 'SingleCrystal'

Accelerate device development in collaboration with CrystalMaker.

In the development of electronic device materials, the evaluation of material properties is a crucial factor that influences product performance. Especially as devices become more compact and high-performance, it is essential to accurately understand the microstructure of materials and reflect this understanding in the design. SingleCrystal deepens the understanding of material properties by simulating the diffraction patterns of single crystal materials and enabling comparisons with experimental results, thus supporting problem-solving in device development. In collaboration with CrystalMaker, it is also possible to generate dynamic diffraction patterns based on structural data. 【Use Cases】 - Material evaluation for semiconductor devices - Structural analysis of thin-film devices - Reliability assessment of electronic components 【Benefits of Implementation】 - Enhanced understanding through visualization of material properties - Increased efficiency in device design - Reduced development time

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  • crystal
  • X-ray Diffraction Equipment
  • Other physical property measurements and component analysis
  • soft

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Crystal structure analysis for semiconductor thin films 'CrystalDiffract'

Refinement of thin film powder diffraction data using the Rietveld method.

In the field of semiconductor thin films, structural analysis of thin films is a crucial factor that influences product quality and performance. In particular, accurately understanding the crystal structure and composition of thin films is essential for comprehending device characteristics and conducting optimal designs. Powder diffraction data is an important source of information for analyzing the structure of thin films, but refining the data requires advanced technology and expertise. CrystalDiffract was developed to address this challenge. 【Usage Scenarios】 - Crystal structure analysis of thin films - Structural evaluation of multilayer films - Composition analysis of thin film materials 【Benefits of Implementation】 - Accurate information regarding the structure of thin films - Optimization of device design - Increased efficiency in research and development

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  • crystal
  • X-ray Diffraction Equipment
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Crystal Animation for Semiconductor Design: "CrystalMaker"

Classic software for visualizing crystal structures and molecular structures.

In semiconductor design, understanding the properties of materials and designing optimal structures is a crucial factor that influences product performance. In particular, to enhance the reliability and efficiency of semiconductor devices, it is necessary to accurately grasp the crystal structure and molecular structure of materials and base the design on them. Even slight differences in structure can significantly impact device performance, making visualization and detailed analysis of structures essential. CrystalMaker is designed to help semiconductor designers intuitively understand the structure of materials and apply that understanding to their designs. 【Usage Scenarios】 - Crystal structure analysis of semiconductor materials - Material selection in device design - Visualization of simulation results - Analysis of the relationship between structure and physical properties - Development of new materials 【Benefits of Implementation】 - Easier visual understanding of material structures - Streamlining of the design process - Reduction in product development time - Improved accuracy of performance predictions - Realization of innovative device designs

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  • crystal
  • X-ray Diffraction Equipment
  • Other physical property measurements and component analysis
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