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Analysis software(3d) - メーカー・企業と業務用製品 | イプロスものづくり

更新日: 集計期間:Apr 22, 2026~May 19, 2026
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Analysis softwareの製品一覧

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[Analysis Case] Transient Flow Analysis of an Internal Gear Pump

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within the internal gear pump can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like internal gear pumps, optimal meshes for analysis can be quickly and automatically generated based on 3D CAD data by setting parameters such as the number of teeth. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Furthermore, many volumetric pumps, including internal gear pumps, may experience cavitation during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis
  • Analysis software

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SpectraView V2-NI/cDAQ

Capture vibration waveforms at high speed! Used by many customers.

"SpectraView V2-NI/cDAQ" is software that connects the data logger "cDAQ series" manufactured by National Instruments Japan to a computer, allowing for real-time FFT analysis while collecting high-speed vibration waveform data and more. It is the NI product version of the "Spectra View" series, which is loved by many customers. Its compact design makes it useful for equipment maintenance tasks and on-site testing, enabling the recording and analysis of various data. 【Features】 ■ Easy high-speed data recording and analysis ■ Capable of capturing vibration waveforms at high speed ■ Simple data measurement ■ Significant efficiency improvements in work ■ Suitable for collecting test data across a wide range of fields *For more details, please refer to the PDF materials or feel free to contact us.

  • Other information systems
  • Analysis software

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Aerospace GEO-DESIGNER

Significant reduction of design and processing lead time in advance through simple and speedy analysis.

In the aerospace industry, strength analysis of components is essential to ensure product safety and reliability. Particularly for aircraft parts used in harsh environments, strength evaluation during the design phase significantly affects product performance. Geo-Designer greatly enhances productivity in the design process and reduces costs in the manufacturing process. By conducting rapid analysis in the early stages, it significantly reduces design changes and rework during manufacturing, while also serving as a sales tool that allows for quick identification of risks and optimal proposals and estimates. 【Usage Scenarios】 - Design of aircraft components - Analysis of components requiring strength evaluation - Identification of issues in the manufacturing process 【Benefits of Implementation】 - Reduction of design changes and rework - Acceleration of optimal proposals and estimates - Reduction of manufacturing costs

  • simulator
  • Other analyses
  • Analysis software

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[Example] Particle-PLUS AC Magnetron Sputtering

Introduction of analysis examples using "Particle-PLUS": "AC Magnetron Sputtering Simulation"

"Particle-PLUS" is a simulation software suitable for research, development, and manufacturing of devices and materials using plasma. - It specializes in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, it can quickly obtain results without the need for full device simulations. - It excels in plasma simulations for low-pressure gases, where calculations using fluid models are challenging. - It supports 2D (two-dimensional) and 3D (three-dimensional) analyses, allowing for efficient analysis of complex models. - As a strength of our in-house developed software, customization to fit the customer's equipment is also possible. ◆ Supports various applications ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us.

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Particle Method 3D Rarefied Fluid Analysis Software 'DSMC-Neutrals'

Analysis of gas flow under low pressure conditions can be performed with analysis software that also supports rarefied gases (rarefied fluids).

**Features** - Adopts unstructured mesh, allowing for calculations that directly reflect the complex shapes of actual devices. - High parallel efficiency enables quick computation results even for large-scale geometries. - Utilizes a particle method, ensuring convergence to a solution even with poor-quality computational grids, unlike fluid models. - Comprehensive technical support ensures that even those new to simulation or busy with experiments can reliably achieve results. **Supports Various Cases** - Simulation of rarefied gas flow in a vacuum chamber. - Simulation of thin film generation in semiconductor manufacturing. - Chemical vapor deposition (CVD), organic light-emitting diode (OLED), molecular beam epitaxy (MBE). - Film deposition simulations involving chemical reactions like CVD. **Outputs Various Calculation Results** - Calculation of chemical reactions. - Calculation of chemical reactions from Arrhenius-type reaction data. - Calculation of dissociation, recombination, and molecular (atomic) exchange reactions. - Ability to set multiple reaction equations on the GUI. *For more details, please refer to the catalog or feel free to contact us.*

  • Other analyses
  • Contract Analysis
  • Analysis software

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Semiconductor plasma analysis software 'Particle-PLUS'

"Particle-PLUS" is a plasma and rarefied fluid analysis software that excels in ICP and CCP analysis using particle methods.

"Particle-PLUS" is software suitable for research and development of devices using plasma, compatible with ICP and CCP. - Excels in simulations of low-pressure gases where fluid modeling is difficult - Calculation functions for inductive heating for ICP simulations - Advanced physical model analysis such as CCP and external circuit models - Capable of simultaneously simulating ICP and CCP - Supports 2D and 3D, efficiently analyzing complex models - As a strength of our in-house developed software, customization to fit customer devices is possible ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD), etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us at sales@wavefront.co.jp.

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Precision of Data for Pharmaceuticals with 'CrystalDiffract'

Refinement of pharmaceutical crystal structures using the Rietveld method.

In the pharmaceutical industry, the crystal form of a drug significantly affects its efficacy and stability. Accurate identification of crystal forms and precise structural analysis are essential for the success of drug development. Crystal structure analysis using powder diffraction data plays a crucial role in quality control and formulation design of pharmaceuticals. CrystalDiffract supports the refinement of data in the crystal structure analysis of drugs. 【Use Cases】 - Analysis of polymorphism in active pharmaceutical ingredients - Identification of crystal forms in formulations - Evaluation of crystallinity in quality control 【Benefits of Implementation】 - Improvement in drug quality - Reduction in development time - Enhancement of research efficiency

  • wv_fraction.png
  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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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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  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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Rapid Structural Analysis for Chemical Reactions 'CrystalDiffract'

Refining chemical reaction data using the Reitbelt method.

In the study of chemical reactions, the structural analysis of reaction products is essential for elucidating reaction mechanisms and exploring efficient reaction conditions. Powder diffraction data provides crucial information about the crystal structure of reaction products, but analyzing the data requires advanced expertise and time. CrystalDiffract offers a refinement function for powder diffraction data using the Rietveld method to address this challenge. This enables researchers to analyze crystal structures quickly and accurately, thereby accelerating their research on chemical reactions. 【Use Cases】 - Identification of reaction products - Optimization of reaction conditions - Research on catalytic reactions - Development of new materials 【Benefits of Implementation】 - Reduction of research time through rapid structural analysis - Improvement in research quality through accurate structural information - Compatibility with a variety of samples - Efficient presentation of research results

  • wv_fraction.png
  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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CrystalDiffract for the analysis of mineral composition in geology

Refinement of mineral diffraction data using the Rietveld method.

In the field of geology, particularly in mineral research, powder diffraction data is essential for the identification and structural analysis of minerals. Precise analysis of diffraction data is required to accurately understand the types and compositions of minerals. CrystalDiffract contributes to improving the accuracy of data analysis in mineral research by refining powder diffraction data using the Rietveld method. 【Use Cases】 - Identification of mineral samples - Quantitative analysis of mineral composition - Crystal structure analysis 【Effects of Implementation】 - High-precision analysis of diffraction data - Acquisition of detailed information about minerals - Improved research efficiency

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  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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Orientation analysis for polymers using 'CrystalDiffract'

Refining polymer orientation data using the Rietveld method.

In the polymer industry, it is important to accurately understand the orientation state of molecular chains in order to grasp the properties of materials. In particular, precise analysis of orientation that affects strength and durability is essential in product development. CrystalDiffract evaluates orientation from powder diffraction data and supports the characterization of polymer materials. 【Usage Scenarios】 - Orientation analysis of polymer films - Orientation analysis of fiber materials - Orientation analysis of molded products 【Benefits of Implementation】 - Quantitative evaluation of orientation state - Improved accuracy in predicting material properties - Reduced product development time

  • wv_fraction.png
  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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Diffraction Data Analysis for Materials Science 'CrystalDiffract'

Refinement of powder diffraction data using the Rietveld method.

In the field of materials science, the identification of substances is an important challenge in the development of new materials and quality control. Powder diffraction data is a crucial source of information for determining the crystal structure of substances, but analyzing the data requires specialized knowledge and time. In particular, advanced analytical techniques are needed for samples containing multiple substances or for the identification of trace components. CrystalDiffract supports efficient analysis of powder diffraction data with its refinement capabilities using the Rietveld method. 【Use Cases】 - Identification of crystal structures in the research and development of new materials - Detection of foreign matter in quality control - Composition analysis of multiphase mixtures 【Benefits of Implementation】 - Accelerated substance identification through high-precision crystal structure analysis - Easy data analysis without the need for specialized knowledge - Quantitative analysis of each component in multiphase mixtures

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  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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Crystal structure for metal structure analysis 'CrystalDiffract'

Analyzing the structure of metal materials using the Reitbelt method.

In the metal industry, structural analysis requires the acquisition of precise crystal structure data to understand the properties of materials. Particularly in the development of new materials and quality control, even minor structural differences can significantly impact material performance, necessitating high-precision data analysis. CrystalDiffract provides a refinement function using the Rietveld method to assist in the analysis of powder diffraction data for metal materials. 【Use Cases】 - Crystal structure analysis of metal materials - Structural evaluation in new material development - Utilization of structural data in quality control 【Benefits of Implementation】 - Acquisition of high-precision structural data - Accurate understanding of material properties - Increased efficiency in research and development

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  • cd_img2.png
  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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Lighting Simulator CAD + API with Programming

The main operations of the "Lighting Simulator CAD" can perform various actions and analyses through commands issued from external sources.

【Practical Benefits of Implementation】 - Reduction of prototype costs - Validation of experimental results - Shortening of design time - Development of analysis methods - Acquisition of design knowledge 【Strengths】 - The user interface is good, allowing for quick learning after implementation. - Operations and analyses can be performed immediately without special knowledge. - After importing 3D CAD data, analysis models can be easily constructed. - The ease of use and speed of results enable quick reflection in design. - Short analysis times make it convenient for examining numerous cases. - Results are relatively consistent with experimental outcomes, facilitating smoother development. - Predictions from results reduce the number of sample productions. - By handling light sources other than visible light, analysis results are beneficial for design.

  • 企業:Camerium
  • 価格:500,000 yen-1 million yen
  • simulator
  • Other lighting equipment
  • LED Module
  • Analysis software

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Structural analysis for battery material research using 'CrystalDiffract'

Analyzing the structure of battery materials using the Rietveld method "CrystalDiffract"

In the field of energy, particularly in the research and development of batteries, structural analysis of materials is essential for performance improvement. The performance of batteries is greatly influenced by the crystal structures of electrode materials and electrolytes, necessitating precise structural analysis using powder diffraction data. CrystalDiffract is a powerful tool for accurately understanding the structures of battery materials and aiding in material design. 【Use Cases】 - Crystal structure analysis of battery materials - Phase analysis of electrode materials - Structural evaluation of electrolytes 【Benefits of Implementation】 - Clarification of the relationship between material structure and performance - Contribution to the improvement of battery performance - Increased efficiency in research and development

  • wv_fraction.png
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  • cd_igor.png
  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Analysis software

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