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Analysis Software Product List and Ranking from 292 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

Analysis Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. システムプラス 本社 Kanagawa//Industrial Electrical Equipment
  2. SAS Institute Japan JMP Japan Division Tokyo//software
  3. ミューテック Tokyo//software
  4. 4 ウェーブフロント 本社 Kanagawa//software
  5. 5 フォトン Kyoto//software

Analysis Software Product ranking

Last Updated: Aggregation Period:Apr 22, 2026~May 19, 2026
This ranking is based on the number of page views on our site.

  1. FEMtools Model Update システムプラス 本社
  2. JMP SAS Institute Japan JMP Japan Division
  3. [FEM Analysis Case] Stress Analysis of a Crusher
  4. 4 Impact and Collision Analysis Software PAM-CRASH 日本イーエスアイ
  5. 5 High-precision casting analysis software ProCAST 日本イーエスアイ

Analysis Software Product List

601~630 item / All 1311 items

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Explanation document "Causes of Designer CAE Failures and Points for Success" *Currently distributed*

Introducing the selection points for CAE with illustrations. Information on low-cost platforms equipped with abundant features is also included.

We are currently distributing materials that outline key points to consider for efficiently advancing product development using "CAE." The materials introduce common post-implementation concerns in a conversational format, while clearly explaining points to consider for solving these issues, making it easy for beginners to understand. [Contents] ■ Story during implementation (during/after implementation) ■ Common post-implementation concerns ■ Examples of points for success ■ Introduction to ANSYS Discovery *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • Analysis Software

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Integrated Electromagnetic Field Analysis Solution Ansys Electronics

A group of electromagnetic field analysis software that leads the industry with high speed and excellent cost efficiency.

We provide four software options—Ansys HFSS, Ansys Maxwell, Ansys SIwave, and Ansys Q3D Extractor—to analyze a wide range of products, including 3D models of antennas, connectors, waveguides, motors, and busbars, as well as substrates and semiconductor packages, in order to accommodate various electromagnetic field analyses. The low-frequency and high-frequency analysis spaces are distinguished by the size of the analysis space relative to the wavelength; in the low-frequency region, the electromagnetic field is uniformly distributed within the space, while in the high-frequency region, the electromagnetic field is distributed as waves. With Ansys's electromagnetic field solutions, you can efficiently analyze by selecting the appropriate software for the analysis space size and using solvers tailored to the analysis target.

  • Company:IDAJ
  • Price:Other
  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Software

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Partial Discharge Analysis Software

Capable of acquiring up to 18,000 charges per second at 50Hz! Introduction to partial discharge analysis software.

We would like to introduce our "Partial Discharge Analysis Software." It captures data to the PC while communicating in real-time with the DAC-PD-9. It can measure the charge amount for each phase and can acquire up to 18,000 charge amounts per second at 50Hz. In wideband measurements, it automatically discriminates the polarity of the discharge waveform and displays the occurrence count for both positive and negative discharges. Two-dimensional and three-dimensional graphs can be created from the saved data, which can be utilized as partial discharge analysis data. 【Features】 ■ Can measure the charge amount for each phase ■ Can acquire up to 18,000 charge amounts per second at 50Hz ■ Two-dimensional and three-dimensional graphs can be created from saved data, usable as partial discharge analysis data ■ By selecting V-Q mode, it automatically captures the maximum partial discharge charge amount corresponding to the rise and fall of the test voltage, allowing for the measurement of voltage-charge characteristics *For more details, please refer to the PDF document or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Other embedded systems (software and hardware)
  • Analysis Software

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Casting mold analysis software "GEO-DESIGNER"

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

"GEO-DESIGNER" is a powerful Design for Manufacturing (DFM) tool. It has a significant effect on enhancing productivity in the design process and reducing costs in the manufacturing process. By quickly conducting evaluation analyses in the early stages, it greatly reduces design changes and rework during manufacturing, while also serving as a sales tool that allows for rapid identification of risks and optimal proposals and estimates.

  • simulator
  • Other analyses
  • Analysis Software

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Vascular blood flow imaging analysis software "Capimetrics"

It is possible to measure the blood flow velocity and diameter of capillaries! There are numerous papers on the software.

● The analysis software Capimetrics is made in the UK and is customized under a licensing agreement for the European medical device software (for TOKU Capillaro). ● It has an overwhelming track record in blood flow analysis and evaluation at research institutions. 'Capimetrics' is a vascular blood flow image analysis software that can analyze recorded AVI format videos. In Europe, it is a software that has been customized to fit the blood flow scope 'TOKU Capillaro', which is a medical device in conjunction with a scope. It is equipped with an automatic movement correction function that can handle slight blurring, allowing for the measurement of flow velocity using two different principles and the measurement of vascular diameter. In addition to this software, we offer a "research set" that includes the main unit of 'TOKU Capillaro', a dedicated stand, a laptop, attachments, extension cables, and more. 【Features】 ■ Analysis can be performed from recorded AVI format videos. ■ Equipped with an automatic movement correction function that can handle slight blurring. ■ Capable of measuring flow velocity using two different principles. *For more details, please refer to the PDF document or feel free to contact us.

  • Image analysis software
  • Analytical Equipment and Devices
  • Analysis Software

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Image-based structural analysis software "VOXELCON"

Easy modeling of any shape! 3D editing, analysis, measurement, and material property calculation of CT images based on images.

"VOXELCON" is a powerful image-based structural analysis software that directly models and utilizes CT images obtained from physical objects and STL data from CAD for analysis and measurement. It is equipped with a variety of reverse engineering functions as structural analysis and measurement capabilities. It is effective in various scenarios, from cast products to composite materials, and from the design stage to quality control. Additionally, voxel segmentation is ultra-fast, capable of creating a mesh of 100 million voxels in just a few seconds, and is extremely robust, with very few failures. 【Features】 ■ Direct use of physical data ■ Various reverse engineering functions ■ Ultra-fast and robust voxel segmentation ■ Large-scale solver included ■ Cutting-edge multi-scale analysis *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Example] Shape optimization of table legs considering meat thickness.

Lightweight design considering the generated stress and the thickness of the member. Here is an example of applying shape optimization to the table leg.

Here, we will perform shape optimization on the table legs, minimizing the volume while ensuring that the Mises stress does not exceed a specified value. In shape optimization, we can optimize based on Mises stress or maximum principal stress. Additionally, by applying symmetry conditions, we will conduct the analysis using a quarter model of the entire structure. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Other analyses
  • Contract Analysis
  • Analysis Software

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[Case Study] Analysis of Complex Shape Models - Reducing Labor Costs -

"VOXELCON" is a structural analysis software that directly models STL data from CT and CAD for analysis and measurement purposes.

When creating an analysis model by meshing a detailed CAD model created as design data, the following issues can be noted: - The number of elements becomes enormous, leading to high computational costs. - Meshing is difficult and requires the expertise and techniques of experienced individuals. Additionally, the analysis results depend on the meshing. - In some cases, automatic element meshing is not possible. However, even if you try to analyze using a simplified shape... - The effort required for simplification is significant. - Evaluating the impact of simplification on analysis accuracy is cumbersome. These issues can be resolved by VOXELCON's voxel mesh generation technology. Even complex shapes can be easily converted into analysis models, thereby reducing the human labor required for analysis. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Other analyses
  • Contract Analysis
  • Analysis Software

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[Case Study] Shape Optimization for Equalizing Reaction Forces ★ Detailed Materials Available

Consider "reaction force" as a manufacturing requirement! Reduce the reaction force values at points with high fixed-point reaction forces!

We will perform non-parametric shape optimization to ensure that the reaction forces at the bolted fixed points are equal, and we will introduce a case that reduces the reaction force values at locations with high fixed point reaction forces. The analysis model completely fixes four bolted points and sets a load of 1,000N in the Z-axis direction. In the evaluation of the initial shape, the reaction force value at the lower left part was the highest, reaching 415.1N. 【Case Overview】 ■Optimization Conditions - Objective Function: Volume Minimization - Constraints: Reaction force of 250N in the Z-axis direction at each fixed point, 3.0 times the compliance of the initial shape - Shape Variation Restrictions (constraints related to manufacturing requirements): Minimum thickness, maintaining the plane of the Z component on one side For further details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Contract Analysis
  • simulator
  • Analysis Software

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[Example] Shape optimization considering stress

Using "OPTISHAPE-TS"! Introducing optimization cases with different stress constraints based on model parts.

In strength design, stress serves as an important guideline. When conducting strength assessments based on stress, it is necessary to vary the evaluation stress values according to different parts, rather than relying solely on the maximum value. In such cases, by specifying constraint stress values for each region, it is possible to obtain an optimal shape that constrains stress at multiple evaluation points and all locations. This time, we will introduce an optimization case with different stress constraints applied to various parts of the model. [Contents] ■ Overview ■ Analysis Model ■ Optimization Conditions ■ Results ■ Discussion *Detailed information about the case can be viewed through the related links. For more details, please feel free to contact us.

  • Structural Analysis
  • Contract Analysis
  • Stress Analysis
  • Analysis Software

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[Case Study] Accuracy Verification of Displacement and Temperature Using Finite Covering Method (FCM)

I will introduce the issues of voxel analysis and a case study applying FCM as a solution!

The displacement solution of static stress analysis or the temperature solution of steady-state heat conduction analysis rarely produces errors as long as the shape is represented accurately; however, there are problems where the errors can become significant. When the original shape does not match the voxel pitch, discrepancies in the shape occur. Therefore, to achieve better accuracy in the analysis, it is necessary to refine the mesh, which increases the model size. Here, we will introduce a case study applying FCM as a solution to this issue. [Contents] ■ Overview - Issues with voxel analysis ■ Analysis Model - Boundary conditions ■ Analysis Results - Static stress analysis / Steady-state heat conduction analysis *Detailed information about the case study can be viewed through the related links. For more details, please feel free to contact us.

  • Structural Analysis
  • Analysis Software

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Example: Injection Molding - Reducing clamping force to downsize the molding machine.

We will collaborate with 3D TIMON to explore gate positions that can be injected even with small molding machines, thereby reducing production costs.

Optimizing molding conditions parametrically in resin flow analysis can be relatively easily achieved, but automatically changing the cavity shape and runner layout while optimizing is challenging. To facilitate these optimizations, we developed "AMDESS for 3D TIMON" in collaboration with Toray Engineering Co., Ltd. Here, we present a case study of optimizing the gate position to minimize clamping force while automatically re-modeling the runner when changing the gate position. [Contents] ■ Overview ■ Analysis Model ■ Optimization Conditions ■ Results ■ Discussion *Detailed information about the case study can be viewed through the related links. For more information, please feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Technical Column] The Theory of OPTISHAPE-TS: "Waving Phenomenon"

The Difficulty of Nonparametric Optimization! Introduction to a Technical Column

In the previous discussion, I explained that the checkerboard phenomenon is a challenging issue in topology optimization. I also discussed the technique of filtering as a workaround, but highlighted the difficulty in finding the right balance. A completely different approach has been proposed to avoid the checkerboard pattern without modifying the optimization problem. The idea is to have design variables at the nodes rather than at the elements, and to interpolate within the elements using a C^0 continuous function. Please feel free to download and take a look. [Contents] ■ Episode 5: The Difficulty of Non-Parametric Optimization Part 4 "Wavy Phenomenon" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Column] The Theory of OPTISHAPE-TS: Checkerboard Phenomenon

I will explain the difficulties of non-parametric optimization from another perspective!

In the previous sections, we explained that in non-parametric optimization, the number of design variables to be determined is large, meaning that the dimensionality of the space to be explored is high, which is why optimization algorithms using sensitivity are employed. In this article, we will further explain the difficulties of non-parametric optimization from another perspective. Please feel free to download and take a look. [Contents] ■ Episode 4: The Difficulty of Non-Parametric Optimization Part 3 "Checkerboard Phenomenon" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Technical Column] The Theory of OPTISHAPE-TS: "Optimization of Functions"

What does "optimizing a function" mean? An explanation from the perspective of the difficulties it presents.

In the previous article, I briefly explained non-parametric optimization. In that context, I mentioned that non-parametric optimization is a method for optimizing functions. In this article, I will explain what "optimizing a function" means, in order to deepen your understanding of the challenges it presents. Please feel free to download and take a look. [Contents] ■ Episode 2: The Challenges of Non-Parametric Optimization Part 1 "Optimization of Functions" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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[Technical Column] The Theory of OPTISHAPE-TS: "Shape Optimization"

An explanation of what the H-gradient method specifically entails! Introduction to a technical column.

In the previous four articles, we discussed the challenges of non-parametric optimization and the positioning of the H1 gradient method as a solution. From here, we will explain specifically what the H1 gradient method entails. Please feel free to download and take a look. [Contents] ■ Episode 6: The Emergence of the H1 Gradient Method and Its Background Part 1 "Shape Optimization" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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Theory of OPTISHAPE-TS Compliance Sensitivity Part 3

Sensitivity of compliance for a one-dimensional cantilever beam! Explanation of the derivation concept.

In the previous article, we introduced the Lagrange multiplier method as a condition that solutions must satisfy in optimization problems with equality constraints. This time, we will apply that concept to derive the sensitivity of compliance. Please feel free to download and take a look. [Contents] ■ Episode 25: Sensitivity of Compliance Part 3 "Lagrange Multiplier Method" *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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Theory of OPTISHAPE-TS Compliance Sensitivity Part 4

Introduction to a technical column on problems involving design variables represented by functions!

In the previous articles, we explained the compliance and its sensitivity when introducing two-dimensional design variables for a one-dimensional cantilever beam. This time, we will finally replace the design variables from a finite-dimensional vector to an infinite-dimensional function and construct the problem. Please feel free to download and take a look. [Contents] ■ Episode 26 Sensitivity of Compliance Part 4 "Problems with Design Variables Represented by Functions" *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis
  • Analysis Software

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3D General-purpose Thermal Fluid Analysis Software

A thermal fluid analysis software that anyone can use! Implementation is possible at a cost of several hundred thousand yen!

● The thermal fluid analysis software "PHOENICS" is equipped with pre-processing, post-processing, and solver programs as standard (※). (※) Basic flow of PHOENICS: Setting analysis conditions ⇒ Modeling ⇒ Running analysis ⇒ Processing results ● It is capable of pre-processing tasks such as shape definition, data import from CAD, mesh creation, and setting analysis conditions, as well as post-processing tasks like displaying results such as temperature distribution maps, pressure contours, and velocity vectors after analysis. ● PHOENICS incorporates initial values, physical property values, boundary conditions, and many other functions, allowing users to customize PHOENICS and create their own dedicated calculation modules. ● Therefore, it is a versatile thermal fluid analysis software designed with ease of use in mind for both beginners and advanced users, making it accessible to a wide range of users. ● With PHOENICS, it is possible to implement it for several hundred thousand yen. For more information on other features and characteristics, please contact us.

  • Thermo-fluid analysis
  • Other analyses
  • Analysis Software

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Electromagnetic field analysis software 'Altair Feko'

You can use multiple frequency domain/time domain EM solvers with a single license.

"Altair Feko" is an electromagnetic field analysis software that features multiple analysis methods and allows the use of two types of analysis methods for a single problem, which is a remarkable characteristic. Unlike previous electromagnetic field analysis software, it can perform analyses across a very wide frequency range without compromising accuracy. It can be applied to antenna design and antenna placement, among other uses. 【Features】 ■ GPU acceleration for solvers ■ A fully parallel processing solver optimized to utilize multiple distributed memory CPU resources ■ An optimized out-of-core solver that derives solutions even when reaching the limits of RAM *For more details, please refer to the PDF materials or feel free to contact us.

  • Software (middle, driver, security, etc.)
  • Analysis Software

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3D Ion Beam Trajectory Analysis Software / μ-Beam

Consider the ion trajectories in electrostatic and magnetic fields, dielectrics, electrodes, conductors, coils, magnets, magnetic materials, and space charge!

μ-Beam is a three-dimensional trajectory analysis module for charged particles that takes into account space charge. It can simulate ion beam control. μ-Beam is the trajectory analysis module within the electromagnetic field analysis system μ-MF by Mutech. 【Features】 - Trajectory analysis of charged particles in electric and magnetic fields - Input functions for initial position, initial velocity, and assigned current of charged particles - Function to read condition setting CSV files from Excel - Specification of calculation range and automatic calculation stop function - Trajectory analysis considering classical and relativistic effects - The trajectory calculation method employs Runge-Kutta *For more details, please request documentation or view the PDF data available for download.

  • Electron beam lithography equipment
  • Analysis Software

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3D Finite Element Method Electromagnetic Field Analysis Software / μ-MF

After confirming the basic characteristics with μ-EXCEL, proceed to more detailed three-dimensional analysis! Easy and fast calculations for electrostatic fields, static magnetic fields, alternating magnetic fields, and magnetic hysteresis analysis!

Three-dimensional electromagnetic field analysis is indeed difficult. Therefore, we have devised a way for simple problems to be easily set up and analyzed by beginners, while also allowing for more advanced analyses. μ-MF is an FEM electromagnetic field analysis system optimized for solving user-specific problems through the objectification of a subdivided module group. In μ-MF, when you set the type of problem using a wizard-style GUI, it guides you through the condition settings. Depending on the type of analysis, it combines subdivided solver modules to achieve the most efficient analysis. 【Features】 - Customizable object-oriented system - Capable of analyzing large-scale problems with over one million unknowns on a PC - High-speed computation using fast matrix solvers (ICCG, MRT) - Equipped with the latest technologies for coupled problems and material modeling - Comprehensive options for iron loss analysis and trajectory analysis - Modules starting from 900,000 yen - Rental: 450,000 yen per year, starting from 45,000 yen per month Furthermore, - We provide professional consulting that delves into your specific problems - We also offer contract analysis and custom development at affordable prices *For more details, please contact us or refer to the PDF data.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Software

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3D Microwave and Optical Wave Analysis Software / μ-WAVE

FDTD method (Finite-Difference Time-Domain), equipped with orthogonal grid pre-post processing, for high-speed analysis of electromagnetic fields in the time domain!

The optical wave and microwave analysis software μ-WAVE is a highly practical electromagnetic wave simulation tool. μ-WAVE quickly analyzes the electromagnetic field distribution in the time domain. 【Features】 - Adopts FDTD and CIP methods for analysis - High-speed computation for problems on the scale of 10 million cells (when using FDTD) - Realizes infinite boundaries without PML (when using CIP) - The time step determined by the Courant condition remains unchanged even with partially small cells (significantly reduces computation time) (CIP) - Evaluates wideband absorption and scattering characteristics in a single calculation - Comes standard with a dedicated GUI designed for ease of use - Priced from 3.15 million yen *For details, please request materials or view the PDF data available for download.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Software

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