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Analysis software(fem) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
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Analysis software Product List

76~90 item / All 133 items

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EMSolution-Lite

Introduction to 2D Electromagnetic Field Analysis Software

EMSolution-Lite is a budget version of EMSolution (electromagnetic field analysis) specifically designed for two-dimensional analysis. While the analysis model is limited to two dimensions, it allows users to utilize most of EMSolution's features (equivalent to the Professional package) for models with up to 100,000 elements. It was created in response to users' demands for an easy way to perform two-dimensional electromagnetic field analysis. For example, it can perform no-load analysis of PM motors as well as PWM voltage source analysis. Additionally, it can analyze the slip-torque characteristics of induction motors. Circuit and motion coupling analysis for electromagnets and actuators is also possible. We encourage you to use it for two-dimensional analysis and parameter surveys of motors, actuators, and more.

  • Magnetic field analysis/electromagnetic wave analysis
  • simulator

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Antenna and radar electromagnetic field analysis software Altair Feko

Cutting-edge simulation tools for antenna design and placement, as well as RCS.

Feko is a high-frequency electromagnetic simulation software that has over 20 years of history and represents the industry. Based on this strong legacy, a cost-effective parallel solver package is now enabling product design for the increasingly connected world. Feko addresses a wide range of high-frequency electromagnetic fields, enabling the optimization of wireless connectivity, including 5G, ensuring electromagnetic compatibility (EMC), and conducting radar cross-section (RCS) and scattering analysis. From antenna simulation and placement, wireless coverage, network planning, and spectrum management to electromagnetic compatibility (EMC/EMI), radome modeling, bioelectromagnetics, and RF devices, Feko, combined with other Altair tools, optimizes system performance through machine learning and reduces modeling time for complex systems. Feko is globally used across various industries, including aerospace, defense, automotive, telecommunications, and consumer electronics, shortening time to market. Feko's customers achieve enhanced connectivity and functionality through robust simulation-driven product design and deployment strategies.

  • Magnetic field analysis/electromagnetic wave analysis

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[Case Study] Static Analysis of Movable Blades for Water Wheels 'AIFEM'

Examples of products that create a wealth of solutions for diverse applications!

We would like to introduce an application case of static analysis for movable blades of water turbines using our intelligent structural analysis software "AIFEM." This software supports engineers in solving engineering problems related to statics, dynamics, and thermodynamics associated with structures. We defined displacement constraints on the fixed ring of the guide vanes and applied water flow pressure loads in front of and behind the guide vanes, conducting simulations under three operating conditions: rated, maximum lift, and boost. [Case Overview] - We defined displacement constraints on the fixed ring of the guide vanes and applied water flow pressure loads in front of and behind the guide vanes, conducting simulations under three operating conditions: rated, maximum lift, and boost. *For more details, please download the PDF or feel free to contact us.

  • 水車用可動翼の静解析2.PNG
  • Other analysis software

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[Case Study] Strength Analysis of Turbine Top Cover 'AIFEM'

Examples of products that use a friendly and user-friendly wizard-style interactive interface!

We would like to introduce a case study on the strength analysis of the turbine top cover using our intelligent structural analysis software "AIFEM." This software provides fast and accurate finite element analysis and design optimization functions, supporting companies in establishing efficient optimal design processes. By defining a pressure load on the bottom surface of the top cover and using a 1/4 model with rotational symmetry boundary conditions, we simulated the deformation of the top cover. This analysis takes into account geometric nonlinearity. [Case Overview] ■ Defined a pressure load on the bottom surface of the top cover and simulated the deformation using a 1/4 model with rotational symmetry boundary conditions. ■ Geometric nonlinearity is considered. *For more details, please download the PDF or feel free to contact us.

  • タービントップカバーの強度解析2.PNG
  • Other 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.)

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EMAG Technologies

A variety of products are lined up, including EM.Cube, EM.Picasso, and CubeCAD!

"EMAG Technologies" is a product that provides software for real-time analysis, detection, tracking, and mapping of electromagnetic fields and waves. We offer products that cater to various needs in the field of electromagnetic simulation. Our offerings include the modular 3D electromagnetic simulation suite "EM.Cube," which grows according to modeling needs, and "EM.Terrano," which is used to analyze various propagation scenes. 【Product Lineup (Excerpt)】 ■EM.Cube ■EM.Tempo ■EM.Terrano ■EM.Libera ■EM.Picasso ■EM.Ferma *For more details, please refer to the related links or feel free to contact us.

  • Company:B7
  • Price:Other
  • Software (middle, driver, security, etc.)

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Free Seminar: "Challenges in Sports Rehabilitation and Muscle Strength Analysis"

March 18, 2020 (Wednesday) - Held a seminar on muscle strength analysis technology in the fields of sports and rehabilitation.

This seminar aims to discuss the challenges faced in various fields by leading experts in the theories of two-joint muscles, sports for people with disabilities, and rehabilitation, while exploring the direction of muscle strength analysis. Additionally, we will introduce training support tools based on the FEMS program. If you are interested, we kindly ask you to attend this seminar. 【Seminar Overview】 ■ Date and Time - March 18, 2020 (Wednesday) - 13:00-17:00 (Registration starts at 12:30) - A networking event (light refreshments) is planned from 17:00 to 19:00 ■ Venue - Seminar Room, Computational Mechanics Research Center, Inc. (8F Tokyu Togoshi Building, 1-7-1 Togoshi, Shinagawa-ku, Tokyo) ■ Organized by: Computational Mechanics Research Center, Inc. ■ Participation Fee: Free (Pre-registration required) ■ Capacity: 50 people *For more details, please refer to the PDF document or feel free to contact us.

  • Technical Seminar

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Material "New Eddy Current Equivalent Circuit Method" *Free distribution ongoing

Overview of the new eddy current equivalent circuit method (CLN equivalent circuit method) and analysis examples.

This document introduces a new eddy current equivalent circuit method (CLN equivalent circuit method) developed by our company. The CLN equivalent circuit method is a type of model order reduction, based on a new technique that utilizes the orthogonalization of predetermined functions, similar to the mode synthesis method. The conductor shape is represented by a mesh, but unlike conventional FEA, it determines the resistance and inductance of the ladder circuit by alternately performing static magnetic field and static electric field analyses. Additionally, by coupling the ladder circuit with electrical circuits and control circuits, it is possible to solve the eddy current field, including skin effect and proximity effect. 【Features】 ■ Equivalent circuits that include frequency dependence can be obtained in less computation time than conventional methods. ■ Not only frequency domain simulations but also time domain simulations are possible. ■ Conductors can be created using meshes and analyzed with FEA. ■ It is possible to achieve the same computational accuracy at a lower computational cost than conventional FEA circuit coupling analyses. *For more details, please refer to the PDF document or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Contract Analysis
  • simulator

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[Example] Rotating Dynamics Eigenvalue Analysis

We conducted a modal complex eigenvalue analysis at the specified rotation speeds to investigate the whirling modes due to rotation, changes in damping, and critical speeds.

**Case Overview** ■Product Name: Simcenter Nastran ■Analysis: Modal Analysis of Natural Frequencies ■Industry: Other The vibration characteristics of rotating bodies exhibit whirl motion due to centrifugal force, tilt vibrations, and gyroscopic effects as the axis rotates, resulting in changes in eigenvalues. When the direction of rotation and whirl motion align, it is referred to as forward whirl; when they are opposite, it is called backward whirl. When the rotational speed matches the eigenvalue of the axis, the amplitude of the whirl increases, leading to instability in the rotating system and potential damage to components. The speed at this point is referred to as the critical speed. In this analysis, modal complex eigenvalue analysis was conducted for specified rotational speeds to investigate the whirl modes induced by rotation, changes in damping, and critical speeds. □ For other functions and details, please refer to the catalog.

  • Other analyses

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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

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Printed Circuit Board Strength Analysis Software for the Automotive Industry

Streamlining the vibration durability evaluation of power electronics products!

With the evolution of power electronics products in the automotive industry, the strength analysis of printed circuit boards (PCBs) has become increasingly important. However, evaluating the vibration durability of PCBA with complex structures has been a time-consuming and costly process using traditional methods, hindering efficient development. "FEMFAT MELCOM" is a strength analysis software for printed circuit boards developed to address these challenges. 【Usage Scenarios】 - Vibration durability evaluation of printed circuit boards in the development of automotive power electronics products - Structural analysis during the design phase of power electronics products such as inverters and DC-DC converters - Optimization in the strength design, material selection, and manufacturing processes of printed circuit boards 【Benefits of Implementation】 - Significant time savings and cost reductions compared to traditional testing - High-precision prediction of the vibration durability of PCBA with complex structures - Early detection of issues during the design phase, contributing to improved efficiency and quality in product development.

  • Structural Analysis

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