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Structural Analysis Software(si) - 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:Jun 03, 2026~Jun 30, 2026
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Structural Analysis Softwareの製品一覧

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[Example] Rotor Dynamics

Introducing the rotational system analysis capabilities of Simcenter Nastran!!!

**Case Overview** ■Product Name: Simcenter Nastran ■Analysis: Eigenvalue analysis, linear transient analysis, frequency response analysis ■Industry: Mechanical components Stable operation is extremely important for various rotating machinery such as turbines, jet engines, generators, fluid equipment, and electric products, and vibration prevention is an essential challenge. In this example, we will introduce the rotating system analysis capabilities of Simcenter Nastran using a representative model of rotor dynamics. □ For other features and details, please refer to the catalog.

  • Other analyses
  • Structural Analysis Software

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Introduction to Desktop Structural Analysis Program

Creating geometry and analysis models, executing analyses, and post-processing, all realized in one software!!

【Features】 ○ A structural analysis solution that combines the pre- and post-processor "Simcenter Femap" with the analysis solver "Simcenter Nastran." ○ The entire process of creating analysis models, performing analyses, and displaying results from shape data created in 3D-CAD is realized in one software on a single PC. ○ High operability. ○ Easy to implement pricing. ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Structural Analysis
  • Structural Analysis Software

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Solid Edge Simulation (Analysis Package)

Embedded in Solid Edge, utilizing simulation technology Simcenter Femap and Nastran for designers.

Solid Edge Simulation is equipped with the industry-standard solver NASTRAN and utilizes Femap technology for pre- and post-processing, allowing for the creation of thin plate meshes and the ability to change mesh sizes on a per-part basis. 【Key Points for Selection】 - The technology of Femap with NX NASTRAN is integrated into the Solid Edge interface, making the analysis features user-friendly even for beginners. - Automatic mesh generation - Flexible mesh size adjustments in manual mode - User-friendly UI and analysis features focused on design - Types of analysis: ○ Linear static analysis ○ Linear buckling analysis ○ Eigenvalue analysis ○ Heat conduction analysis (steady/transient) ○ Optimization ○ MOTION analysis ○ Vibration response analysis Additionally, coupled analyses such as: ○ Linear static analysis + steady heat conduction ○ Linear buckling analysis + steady heat conduction are possible. - Scalable integration with the higher-level Femap is available. The Solid Edge Premium package primarily supports linear static analysis and MOTION analysis. For more details, please download the catalog or contact us.

  • 企業:TAC
  • 価格:Other
  • 3D CAD
  • Structural Analysis Software

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3DEXPERIENCE SIMULIA <buckling, special elements, etc.>

We also ensure consistency with the user interface used by design engineers!

"3DEXPERIENCE SIMULIA" is an enhanced version of "Generative Part Structural Analysis" equipped with multiple analyses for static, frequency, and buckling analysis. It is a product tailored to the needs of analysis specialists, while also ensuring consistency with the user interface used by design engineers. With "SIMULIA," designers can perform advanced analyses themselves, allowing for repeated cycles of design, analysis, and redesign to improve quality. 【Features】 ■ Equipped with multiple analyses for static, frequency, and buckling analysis ■ Ensures consistency with the user interface used by design engineers ■ Improves product performance and reduces physical prototypes ■ Allows designers to perform advanced analyses themselves ■ Enables repeated cycles of design, analysis, and redesign to enhance quality *For more details, please refer to the PDF document or feel free to contact us.

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  • Other analyses
  • Structural Analysis
  • Other operation management software
  • Structural Analysis Software

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3DEXPERIENCE SIMULIA <Nonlinear Analysis>

Provides advanced contact features! Models the nonlinear elasticity of material plasticity and superelastic materials.

"3DEXPERIENCE SIMULIA" extends the capabilities of "CATIA V5 Analysis," enabling more advanced simulations that include nonlinear effects. It primarily models the plasticity of materials such as metals and the nonlinear elasticity of hyperelastic materials like rubber. In "Nonlinear Structural Analysis," it also offers more advanced contact features, such as the automatic creation of contact surfaces based on the proximity of geometries. 【Features】 ■ Enables more advanced simulations that include nonlinear effects (such as large displacements and material nonlinearities) ■ Primarily models the plasticity of materials such as metals and the nonlinear elasticity of hyperelastic materials like rubber ■ Provides more advanced contact features, including the automatic creation of contact surfaces based on the proximity of geometries *For more details, please refer to the PDF document or feel free to contact us.

  • image_31.png
  • Other analyses
  • Structural Analysis
  • Other operation management software
  • Structural Analysis Software

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[Example] External Super Element

Reduction of analysis costs, enhancement of information security!!!

【Case Overview】 ■Product Name: Simcenter Femap with Nastran There has been an image that Super Elements (SE) are only applicable in the aerospace and automotive fields and can only be used by a few dedicated analysts. There has been no pre-post that fully supports SE analysis, and the data creation process has been complicated, which has hindered its widespread adoption until now. Simcenter Femap supports external Super Elements from Simcenter Nastran, making SE analysis accessible to everyone.

  • Other analyses
  • Structural Analysis Software

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Introduction to a top-class finite element solver.

A solution that incorporates high reliability, proven results, and the latest analytical technologies abundantly.

NASTRAN is an analysis program born from a space program where failure is not an option, and for over 40 years, it has maintained high reliability and a proven track record in meeting the stringent demands of various fields such as aerospace/defense, construction, automotive, shipbuilding, machinery, and electrical/electronics. Simcenter Nastran inherits this high reliability and proven track record while incorporating the latest analysis technologies, making it a solution suitable for the 21st century. 【Features】 - Supports large-scale problems and advanced nonlinear analysis - Flexible selection of the number of implementations based on analysis content - Operates on multiple operating systems such as Windows, UNIX, and Linux - Supports 64-bit modules, memory-shared parallel processing, and parallel processing on cluster machines 【Available Analyses】 - Linear static analysis: SOL101 - Eigenvalue analysis: SOL103 - Buckling analysis: SOL105 - Steady-state heat conduction analysis: SOL153 - Transient heat conduction analysis: SOL159 - Linear transient analysis: SOL109/112 - Frequency response analysis: SOL108/111 - Response spectrum analysis: SOL109/112, etc. *There are also various other modules available, so please contact us for more detailed information.

  • Other analyses
  • Structural Analysis Software

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[Example] Vibration of liquid tanks and sloshing of the liquid surface during an earthquake.

Case study using seismic waves from the Great East Japan Earthquake!!

**Case Overview** ■Product Name: Simcenter Fema with Nastran ■Industry: Construction There are many structural forms for containers that store liquids and their supports. During an earthquake, the sloshing of the liquid surface inside the tank generates dynamic liquid pressure that acts on the container's side walls and bottom plate, leading to tank damage and rocking vibrations that can cause parts of the bottom plate to lift, resulting in tank damage. This case study utilized the virtual fluid boundary and phantom elements of Simcenter Nastran to perform transient response analysis on three types of tanks, as shown in the right diagram, using the seismic waves from the 2011 Great East Japan Earthquake (M9). Below, we present the sloshing behavior and dynamic liquid pressure distribution during the earthquake. * Downloaded from K-NET For more detailed information, please refer to the catalog or contact us directly.

  • Other analyses
  • Structural Analysis Software

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3DEXPERIENCE SIMULIA <Contact Condition Definition>

Accurately represent the interactions and connections of components! Designers can perform advanced analysis themselves.

"3DEXPERIENCE SIMULIA" improves product performance through virtual testing before creating physical prototypes, reduces the need for material prototypes, and drives technological innovation. It expands the capabilities of "Generative Part Structural Analysis," allowing for the analysis of assemblies and individual parts. In assembly analysis, it accurately represents the interactions and connections between parts, enabling more realistic and precise simulations. 【Features】 ■ Enables analysis of assemblies and individual parts ■ In assembly analysis, it accurately represents the interactions and connections between parts, allowing for more realistic and precise simulations ■ Advanced analysis can be performed by the designers themselves ■ Allows for repeated design-analysis-redesign cycles to improve quality *For more details, please refer to the PDF document or feel free to contact us.

  • image_31.png
  • Other analyses
  • Structural Analysis
  • Other operation management software
  • Structural Analysis Software

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3DEXPERIENCE SIMULIA <Static Analysis and Eigenvalue Analysis>

Vibration characteristics of components can also be evaluated! Analysis of volumetric components, surface components, and more can be performed.

"3DEXPERIENCE SIMULIA" assists designers in understanding the behavior of their designs and accurately calculating displacements and stresses within components under various loading conditions. By calculating natural frequencies and associated mode shapes, it evaluates the vibrational characteristics of components. It is also capable of analyzing volumetric parts, surface parts, and wireframe geometries. "SIMULIA" enhances product performance through virtual testing before creating physical prototypes, reduces the need for material prototypes, and drives technological innovation. 【Features】 - Assists designers in understanding the behavior of their designs and accurately calculating displacements and stresses within components under various loading conditions. - Evaluates the vibrational characteristics of components by calculating natural frequencies and associated mode shapes. - Capable of analyzing volumetric parts, surface parts, and wireframe geometries. *For more details, please refer to the PDF document or feel free to contact us.

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  • Other analyses
  • Structural Analysis
  • Other operation management software
  • Structural Analysis Software

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"SimGlycan" Glycan & Glycopeptide Structure Analysis Software

Tools for glycomics using mass spectrometry data of glycan chains and glycopeptides.

It automatically reads MS/MS and MSn data obtained from major manufacturers' mass spectrometers to predict glycan structures. Furthermore, it comprehensively supports glycopeptide analysis using LC-MS/MS data. SimGlycan matches the experimentally obtained MS/MS data with its proprietary database and ultimately generates a ranked list of candidate structures.

  • Separation device
  • Analytical Equipment and Devices
  • Other environmental analysis equipment
  • Structural Analysis Software

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"SimLipid" lipid structure analysis software

Software tool for lipidomics using mass spectrometry data of lipids.

High-throughput identification and quantification of lipid species can be performed from MS data such as LC-, MALDI-, ESI-, precursor ion scans, and neutral loss scans. We support all data types from major mass spectrometry manufacturers, including Triple Quad, qTOF, TOF, QqTOF, ion mobility, and ITMS systems, aiming to provide a complete solution for discovery lipidomics and targeted lipidomics research.

  • Separation device
  • Analytical Equipment and Devices
  • Other environmental analysis equipment
  • Structural Analysis Software

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[Example] Efficiency improvement of repetitive calculations using the super element function.

Reduce the computational load of large-scale models!! It can also be utilized for information security!!

**Case Overview** ■Product Name: Simcenter Femap with Nastran ■Industry: Mechanical Components The super-element feature of Simcenter Nastran reduces computational load by dividing large models for analysis or by simplifying parts of the model (external super-elements), thus making the analysis model smaller and shortening computation time when changes are made to other parts. In this case, we validated the analysis accuracy and evaluated the reduction in computation time by simplifying the unchanged boss section as an external super-element and analyzing it in conjunction with the mesh model of the blade section during the eigenvalue design of the fan blades. This method saves computation time, especially in design phases where performance evaluations and repeated calculations at the component level are common, and the more unchanged parts there are, the more significant the benefits. Additionally, by converting in-house component models into super-elements and providing them to other companies, the shapes can be treated as black boxes, thus enhancing information security. □ For other features and details, please refer to the catalog.

  • Other machine elements
  • Structural Analysis Software

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『SOLIDWORKS Simulation』

Properly understand design to promote technological innovation that wins in the market!

"SOLIDWORKS Simulation" is a tool for improving quality, reducing costs, and shortening delivery times in manufacturing. It is fully integrated with "SolidWorks CAD," which is used by many designers, allowing for the verification of maximum design proposals in the shortest time without the troubles of critical data conversion between different tools. Additionally, by continuously refining its features based on feedback from many customers who use it every year, it can always be utilized as a new and high-quality design environment. 【Features】 ■ An easy-to-use tool that designers can handle themselves ■ Convenience of improving design proposals based on calculated answers ■ A product lineup that balances versatility and expandability ■ A tool that allows focus on timely prototyping ■ An optimal solution to minimize implementation risks and maximize benefits *For more details, please refer to the PDF document or feel free to contact us.

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When it comes to structural analysis, Abaqus is the go-to. It predicts contact and crack propagation with high precision.

Integration of implicit and explicit methods. For elucidating a wide range of phenomena such as heat, electricity, magnetic fields, and fluids.

In nonlinear structural analysis, the three key nonlinearities are material, geometry, and boundary conditions. In recent design practices, there is a necessity to consider contact in assembly components using complex material models. Abaqus can accurately model not only classical metal material constitutive laws but also failure models due to rate dependence and polymers such as rubber and resin. Additionally, the innovative formulation of surface-to-surface contact achieves more robust convergence and higher analysis accuracy compared to other structural analysis tools. The general contact feature requires minimal user setup, significantly reducing the time needed to define contact in complex assemblies found in automobiles, aircraft, consumer electronics, and portable electronic devices.

  • 企業:IDAJ
  • 価格:Other
  • Structural Analysis
  • Stress Analysis
  • Other analyses
  • Structural Analysis Software

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Structural analysis software for designers, Altair Inspire.

Generative Design / Topology Optimization / Rapid Simulation

Altair Inspire is a structural and mechanical analysis software developed by Altair, a pioneer in topology optimization, for designers. It allows design engineers, product designers, and architects to easily and efficiently create and validate designs with excellent structural characteristics. Inspire utilizes the design concept generation and analysis technologies of Altair OptiStruct, which leads the industry, as well as motion analysis technology based on MotionSolve. The software is easy to learn and, when combined with existing CAD tools, helps reduce rework in structural design, costs, development time, material usage, and product weight. ■ Key Features of the Product - Generation and analysis of structurally efficient concepts - Support for optimization and analysis of parts and assemblies - Quick and easy cleanup and defeaturing (removal of unnecessary parts) of problem areas within shapes - Understanding of behavior for linear static analysis and modal analysis - User-friendly interface that can be learned in a short time - Analysis of complex mechanisms and verification and application of loads

  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis
  • Structural Analysis Software

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Crystal Structure Analysis for Cosmetic Ingredient Analysis 'SingleCrystal'

Visualizing the structure of cosmetic ingredients with CrystalMaker and SingleCrystal.

In the cosmetics industry, accurate structural analysis of ingredients is required to verify the safety and efficacy of products. This is particularly important for new ingredients or complex formulations, where understanding the structure of the components is crucial. Inaccurate structural analysis can impact product quality control and efficacy evaluation. SingleCrystal is a program designed for simulating and measuring diffraction patterns from X-rays, neutrons, and TEM (transmission electron microscopy) obtained from single crystals. By collaborating with CrystalMaker, it dynamically visualizes the structures of cosmetic ingredients and supports component analysis. 【Use Cases】 - Crystal structure analysis of cosmetic ingredients - Structural evaluation of new ingredients - Analysis of interactions between formulated components 【Benefits of Implementation】 - Visualization of ingredient structures, improving analysis accuracy - Accelerated decision-making in product development - Increased efficiency in research and development

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

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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

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

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Structural Analysis of Pollutants for Environmental Analysis 'SingleCrystal'

Visualizing the structure of contaminants with CrystalMaker and SingleCrystal.

In the field of environmental science, understanding the structure of substances is essential for the identification and analysis of pollutants. In particular, advanced analytical techniques are required to identify trace pollutants and predict the behavior of substances in the environment. SingleCrystal supports the structural analysis of pollutants through diffraction pattern simulations from single crystals. By collaborating with CrystalMaker, it generates dynamic diffraction patterns based on the structural data of pollutants, thereby streamlining the analysis. 【Use Cases】 - Structural analysis of pollutants - Identification of substances in the environment - Simulation of diffraction patterns 【Benefits of Implementation】 - Deepens understanding of pollutant structures - Reduces analysis time - Enhances research efficiency

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

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SingleCrystal for crystal structure analysis of biomaterials

Dynamically generate diffraction patterns of biomaterials in collaboration with CrystalMaker.

In the research and development of biomaterials, structural analysis of materials is essential for understanding their properties and developing better materials. In particular, analysis using X-ray diffraction and electron microscopy is an important method for examining the crystal structure of materials in detail. SingleCrystal supports these analyses and streamlines the structural analysis of biomaterials. By introducing SingleCrystal, it becomes easier to simulate and analyze the diffraction patterns of biomaterials, contributing to the acceleration of research and development. 【Usage Scenarios】 - Crystal structure analysis of biomaterials - Analysis of X-ray diffraction and electron microscopy data - Evaluation of material properties 【Effects of Introduction】 - Promotion of structural understanding through visualization of diffraction patterns - Improvement of experimental efficiency through simulation - Automation of indexing using a unique grid tool

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

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Dynamic diffraction pattern "SingleCrystal" for battery research.

Accelerating structural analysis of battery materials in collaboration with CrystalMaker.

In the field of battery research, it is important to understand the structure of materials in detail to aim for the development of new materials and the enhancement of existing materials' performance. In particular, to elucidate the structural changes accompanying the charging and discharging of batteries, as well as the relationship between the crystal structure of electrode materials and their performance, diffraction pattern analysis is essential. SingleCrystal strongly supports the structural analysis of battery materials through the simulation of diffraction patterns from single crystals. In collaboration with CrystalMaker, it dynamically generates diffraction patterns based on structural data of materials, making it easier to compare with experimental results. 【Use Cases】 - Crystal structure analysis of battery materials - Tracking structural changes during charging and discharging - Diffraction pattern analysis of electrode materials 【Benefits of Implementation】 - Deepening understanding of material structures and improving research efficiency - Accelerating the development of new materials - Contributing to the improvement of battery performance

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

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Crystal Structure Analysis of Artifacts for Archaeology 'SingleCrystal'

Support for structural analysis in artifact investigation.

In archaeological artifact studies, detailed analysis of the material and structure of artifacts is crucial for understanding their origins and manufacturing techniques. Particularly for artifacts with crystalline structures, it is necessary to analyze the structure using methods such as X-ray diffraction to clarify their characteristics. SingleCrystal supports the structural analysis of artifacts by simulating and measuring diffraction patterns from single crystals. In collaboration with CrystalMaker, it is also possible to generate dynamic diffraction patterns based on structural data. 【Application Scenarios】 * Crystalline structure analysis of artifacts * Simulation of X-ray diffraction patterns * Structural analysis using TEM (Transmission Electron Microscopy) 【Benefits of Implementation】 * Deepening the understanding of the material and structure of artifacts * Increasing efficiency in archaeological research * Enhancing the potential for new discoveries

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

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Analysis of Diffraction Patterns for Materials Science 'SingleCrystal'

Generate dynamic diffraction patterns in conjunction with CrystalMaker.

In the field of materials science, understanding the precise relationship between crystal structures and diffraction patterns is essential for structural determination. In particular, to obtain accurate structural information from diffraction experimental data such as X-ray, neutron, and TEM, comparing simulations with experimental results becomes crucial. SingleCrystal supports the efficiency of structural determination by simulating diffraction patterns from single crystals and facilitating comparisons with experimental data. 【Use Cases】 - Analysis of diffraction patterns in X-ray diffraction, neutron diffraction, and TEM experiments - Identification and refinement of crystal structures - Simulation of diffraction patterns and comparison with experimental data 【Benefits of Implementation】 - Reduction of analysis time through automatic indexing of diffraction patterns - Visualization of structural data and dynamic generation of diffraction patterns in collaboration with CrystalMaker - Support for a wide range of structural analyses through simulation functions compatible with various experimental forms

  • crystal
  • X-ray Diffraction Equipment
  • Other physical property measurements and component analysis
  • Structural 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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  • leucite-films.jpg
  • anorthite-mix.jpg
  • simulated-mixture.jpg
  • simulated-phase-transition.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Structural Analysis Software

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Molecular Structure Analysis and Modeling for Drug Discovery: 'CrystalMaker'

A visualization tool for crystal structures and molecular structures that accelerates drug discovery research.

In the drug discovery industry, understanding the structure and function of compounds is essential for new drug development. In particular, accurate visualization of molecular structures aids in predicting drug efficacy and identifying drug discovery targets. CrystalMaker supports structural analysis in drug discovery research through molecular structure modeling and crystal structure construction. 【Use Cases】 - Structural analysis of drug discovery targets - Molecular structure modeling of compounds - Drug efficacy prediction through crystal structure visualization 【Benefits of Implementation】 - Increased efficiency in drug discovery research - Shortened new drug development timelines - Improved research outcomes

  • CrystalMaker_0.png
  • building-spinel.jpg
  • cm-office.jpg
  • crystalviewer-viewer.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Other physical property measurements and component analysis
  • Structural Analysis Software

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Clarifying the Deterioration Mechanism for Food Science: 'CrystalMaker'

Scientifically supporting food quality management.

In the field of food science, it is essential to analyze the structure and composition of food in detail to maintain its quality and ensure safety. In particular, the crystal structure and molecular structure of food have a significant impact on its texture, shelf life, and flavor, making it important to accurately understand these structures. CrystalMaker contributes to food quality management by visualizing and analyzing the crystal and molecular structures of food. [Application Scenarios] - Analysis of the crystal structures of food additives and ingredients - Analysis of the relationship between food storage conditions and crystal structures - Elucidation of the relationship between food texture, flavor, and molecular structures [Effects of Implementation] - Understanding the mechanisms of food quality deterioration - Development of technologies to extend the shelf life of food - Development of new textures and flavors in food

  • CrystalMaker_0.png
  • building-spinel.jpg
  • cm-office.jpg
  • crystalviewer-viewer.jpg
  • crystal
  • X-ray Diffraction Equipment
  • Other physical property measurements and component analysis
  • Structural Analysis Software

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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
  • Structural 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
  • Structural Analysis Software

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