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

Last Updated: Aggregation Period:Jan 28, 2026~Feb 24, 2026
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Analysis software Product List

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[Analysis Case] Eddy Current Analysis of Perforated Conductors Using External Coils

Comparison under three conditions: FEM, external field coils, and measurement values! An analysis with the coils moved was also conducted.

We will introduce the analysis results using the finite element method (FEM) with coils and external field coils for the same analysis target. We adopted "Team Workshop Problem 7," which involves placing a coil on a perforated conductor. Since this problem has measurement values, we compared the results under three conditions: FEM, external field coil, and measurement values, and also conducted an analysis with the coil moved. The results from the external field and FEM overlapped in the graphs, and the comparison with the measurement values was also favorable. 【Case Overview】 ■ Software Used: PHOTO-EDDYjω ■ Analysis Conditions - Frequency: 200 [Hz] - Current Value: 2742 [AT] - Electrical Conductivity of Conductor: 3.526×10^7 [S/m] ■ Results from External Field and FEM: The graphs overlapped, and the comparison with measurement values was also favorable. *For more details, please refer to the related links or feel free to contact us.

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CAE tool "Simcenter 3D"

Support for model creation! CAD/FEM models can be used on the same platform!

"Simcenter 3D" is an integrated CAE tool of the high-end CAD [NX] series, equipped with CAD features that are advantageous for creating analysis models. Since this product inherits the capabilities of high-end CAD [NX], it excels in the manipulation of complex shape formation, simplification, and FEM mesh control. In recent years, analysis models have been trending towards increased complexity and scale, leading to a rise in the time and effort required for model creation. The ability to easily create the desired mesh and develop analysis models that closely resemble reality is a significant advantage. [Features] ■ Powerful FEM modeling ■ Seamless coupled analysis ■ Next-generation design through topology optimization ■ Collaboration with control and physical testing *For more details, please refer to the PDF materials or feel free to contact us.

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General-purpose CAE preprocessor "Jupiter-Pre"

Support for over 100 million nodes, high customizability, and fast automatic mesh generation.

Jupiter-Pre is a general-purpose CAE software equipped with pre-processing functions for various finite element method (FEM) analyses, characterized by large-scale support, high customizability, and fast automatic meshing. It supports almost all CAE models, including models for linear analysis of simple shapes, models for nonlinear large-scale analysis, and multiphysics models. ############################################################################ For information on features and case studies, please visit the product page linked above. Feel free to contact us with any questions, no matter how small.

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Two-Dimensional Finite Element Method Analysis Software 'CADTOOL FEM8'

Low-cost introduction possible! Entry-level CAD tool for finite element method analysis.

"CADTOOL FEM8" is a two-dimensional finite element analysis software that integrates pre-post and solver functions, allowing for the introduction of finite element method analysis at a low cost. By specializing the analysis target to two dimensions, the price of the software itself is kept low, and as it is a packaged product, there are no annual maintenance fees. It enables easy finite element method analysis without requiring advanced knowledge, making it recommended for designers in the early stages of design. Since it allows for quantitative observation of stress distribution and deformation, it expands the design freedom. 【Features】 ■ All-in-one package with integrated pre-post and solver functions ■ Easy operation suitable for designer CAE in the early stages of design and beginners in finite element method analysis ■ Three analysis modes: plane stress analysis, plane plate bending analysis, and rotating body stress analysis ■ Fast automatic creation of high-quality meshes ■ High operability that can be used as a calculator *For more details, please refer to the PDF materials or feel free to contact us.

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Safety Standards Verification & Reporting Tool 'SDC Verifier'

You can perform everything from specification verification to report creation!!!

【Features】 ◆ Load Creation and Management Easily create combinations of FEM loads, combinations of FEM analysis results, load groups, and load cycles, as well as cycle loads and proportional loads used for fatigue evaluation. ◆ Detection Tools Equipped with the ability to automatically detect complex structural elements such as frames, panels, plates, beam members, and joints, and calculate their dimensions. ◆ Standard Verification Capable of evaluating buckling of plates and beam structures, strength evaluation of tube structures, strength and buckling evaluation of frame structures such as cranes, and welding fatigue evaluation according to BS7608. ◆ Report Generation FEM analysis results, standard verification results, and contour diagrams can be directly incorporated into reports. There is a template function that allows for the reuse of a series of calculation processes. 【Application Examples】 ○ Evaluation of welding fatigue safety factors ○ Integrity evaluation of crane structural components against wind loads ○ Buckling evaluation of hull panels

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[Case Study] Accuracy Verification of Stress Using Finite Covering Method (FCM)

Compared to the finite element method (FEM)! Verified with models using three patterns of voxel sizes.

Finite element analysis using voxels has the advantage of being easy to operate, fast, and not incurring human costs; however, it also has the disadvantage of causing stress wave phenomena. To eliminate this disadvantage, we apply the Finite Covering Method (FCM) to improve analysis accuracy. Here, we will verify how the analysis accuracy is improved by using the Finite Covering Method (FCM) while changing the mesh size and comparing it with the Finite Element Method (FEM). [Contents] ■ Overview ■ Analysis Model ■ Analysis Results *Detailed information about the case study can be viewed through the related links. For more details, please feel free to contact us.

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Explanation material "CAE Trivia" *with product explanation

A clear explanation of the merits and basic knowledge. Introduction of software specialized in the analysis of civil engineering structures.

Our company, which specializes in commissioned analysis of structures and ground, is currently distributing explanatory materials that introduce information related to "CAE" in an easy-to-understand manner for beginners. In addition to basic knowledge such as benefits, we also introduce FEM, one of the analysis methods, along with images of analysis models. Furthermore, we provide a detailed explanation of the features and functions of the structural analysis software "ISCEF," which is specialized for civil engineering structures. [Contents] ■ Basic information on CAE (structural analysis, vibration analysis, etc.) ■ Benefits of introducing CAE (evaluation of large-scale structures, etc.) ■ What is FEM? (with images of analysis model examples) ■ Introduction to the structural analysis software "ISCEF" *For more detailed information, please refer to the [PDF download].

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Breaking down the barriers between designers and analysts: "Simcenter 3D"

It is a CAE tool that directly imports design data and handles coupled analysis (multiphysics) within a single framework.

"Simcenter 3D," a powerful tool that integrates CAE solutions from various specialized fields, can perform coupled analysis (multiphysics) simulations such as structural-fluid, structural-thermal, structural-thermal-fluid, and structural-mechanical analyses. It allows for the direct import of design data, mesh creation, and analysis all within a single framework. This is a digital tool for the future that removes the barriers between designers and analysts.

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[Example] Hull strength analysis using the finite element method

A full hull model close to the actual structure was created, and strength analysis of the model was conducted.

**Case Overview** ■Product Name: NX Nastran ■Analysis: Linear Static Analysis ■Industry: Railways and Shipping Finite element method strength calculations are widely used in hull design. The hull structure, composed of many components such as decks, side plates, double bottoms, bulkheads, and longitudinal and transverse strength frames, is complex, making it difficult to analyze just a part of it. This example created a full model that closely resembles the actual structure and conducted a strength analysis of the entire hull model. - Creation of complex hull FEM models using Femap's mesh generation capabilities - Creation and management of loads such as static/dynamic water pressure and cargo conditions - Improved computational efficiency through continuous analysis of multiple load cases - Analysis of large-scale models made possible by NX Nastran's parallel processing capabilities □ For other features and details, please refer to the catalog.

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webFalcon: WEB version pre-post framework

Would you like to develop a CAE solution that can be operated on a cloud server in a short period and at a low cost?

webFalcon is a framework that enables the development of web-based CAE applications in a short period of time, supporting both 2D and 3D. It already includes a standard FEM solver, but the solver to be integrated can be changed. A series of CAE processes can be performed on the web, and if operated on a cloud server, there is the advantage of being able to share system resources such as solvers and pre/post-processing among multiple users. Sutra Systems will develop a CAE system that can be realized on the web using webFalcon in a short time and at a low cost.

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General-purpose linear and nonlinear structural analysis system "DIANA"

A general-purpose structural analysis system developed for the civil engineering and architecture fields, accompanied by materials introducing crack analysis features.

This is a general structural analysis system developed by DIANA FEA BV (Netherlands) using the Finite Element Method (FEM). It has a significant track record of use in Japan, particularly in the civil engineering and construction fields, and has received high praise for its nonlinear analyses, especially in concrete crack propagation analysis, elasto-plastic finite displacement analysis of steel structures, and staged construction analysis of ground. 【Main Features】 - Integrated pre-post functionality from model creation to result processing - Easy modeling of reinforcement (embedded reinforcement elements) - Capable of concrete crack models (distributed crack model, discrete crack model) - Consideration of adhesion between different materials (interface elements)

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3DEXPERIENCE SIMULIA <Solid Element Creation Function>

You can display various predefined standards and customizable criteria that define mesh quality!

The solid element creation feature "FEM Solid" of 3DEXPERIENCE SIMULIA provides a tool for creating 6-sided meshes along with a mesh algorithm using 4-sided fillers. It allows the display of various predefined criteria and customizable standards that define mesh quality. Targeted at professionals who wish to quickly and efficiently mesh complex solid geometries while managing the quality of the generated elements and the number of elements within the mesh across a wide range. 【Features】 ■ Provides a tool for creating 6-sided meshes along with a mesh algorithm using 4-sided fillers ■ Allows the display of various predefined criteria and customizable standards that define mesh quality *For more details, please refer to the PDF document or feel free to contact us.

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[Example] Large-scale finite element analysis of train vehicle dynamics

An eigenvalue analysis of a 10-car train model was conducted using NX Nastran, and the natural frequencies up to 20 Hz were obtained.

**Case Overview** ■Product Name: NX Nastran ■Analysis: Modal Analysis ■Industry: Railways and Shipping Since railway vehicles operate in a coupled manner, it is necessary to analyze the motion characteristics of the entire train when considering vehicle dynamics. To accurately predict the vibrations generated in various parts of the moving vehicle, a vehicle simulation using a finite element model (FEM) that closely resembles the actual structure, rather than a uniform beam or equivalent plate structure, is required. On the other hand, such analyses heavily depend on the computational environment, model creation, and result visualization capabilities, necessitating parallel computing solutions and efficient pre/post-processing software. This example involves creating the vehicle body using Femap and conducting a modal analysis of a 10-car train model with NX Nastran to determine the natural frequencies up to 20 Hz. Additionally, the application of FEMAP and GLView for post-processing large-scale finite element analyses will be introduced.

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Recommended Operating Models for the General-Purpose Acoustic Analysis Software "Actran"

Recommended operating model for applications that achieve large-scale acoustic space and high-frequency domain analysis.

"Actran" is a finite element method-based acoustic analysis software. It supports element types that are common with structural FEM models associated with modeling, enabling large-scale acoustic space and high-frequency domain analysis. Our company handles the recommended operating model for "Actran," the 'Be-Clia Type-S11IS57,' so please make use of it. 【Features】 ■ HEXAGON Collaborative Model <Actran> ■ Based on finite element and infinite element (or PML) models ■ Capable of acoustic analysis for structural coupling, fluid coupling, mechanical coupling, and magnetic field coupling ■ Rich element library *For more details, please refer to the related links or feel free to contact us.

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General-purpose acoustic analysis system "Actran" *Free case study collection available!

Sound simulation in 3D detailed models is now possible! Analyze radiated sound and noise generated from various structures! Large-scale acoustic analysis is also possible.

"Actran" is a general-purpose tool for acoustic analysis. By selecting the optimal solver (Finite Element Method, Finite Volume Method, Statistical Energy Analysis) according to the target, it enables analysis tailored to objectives (accuracy, cost) and development phases. It also allows for understanding the sound propagation mechanism through animation and auditory prediction using sound playback functionality. 【Features】 ■ Supports both structural vibration sound and fluid sound ■ Coupled calculations between flow, structural vibration, and sound ■ Compatible with not only FEM (Finite Element Method) but also SEA (Statistical Energy Analysis) ■ Includes thermal and simplified CFD functions, considering the effects of background differences on sound propagation. ■ Large-scale acoustic analysis with hundreds of millions of degrees of freedom, essential for high-frequency analysis beyond the audible range ■ Supports three fluid sound sources (Lighthill, Mohring, pressure fluctuations on structural surfaces) ■ Supports random sound fields. Acoustic transmission loss analysis using diffuse boundary conditions is also possible. ■ Capable of both frequency response and time history response analysis ■ Analysis using experimental data is also possible ■ Optimization through automated continuous execution of parameter studies *For more details, please refer to the PDF materials or feel free to contact us.

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Case Study: Thermal Fluid Analysis of a Muffler

This is an introduction to the recommended software Femap Thermal/Flow for customers who are starting thermal fluid analysis with Femap.

**Case Overview** ■Product Name: Femap Thermal, Femap Flow ■Analysis: Thermal Fluid Analysis ■Industry: Automotive Femap Thermal/Flow is software for thermal fluid analysis that operates as a Femap application. It can be used with the same operational feel as Femap. Through the combination of Femap Thermal and Femap Flow for thermal fluid analysis, we calculated the flow of exhaust gases within the muffler and the temperature distribution of the muffler due to high-temperature exhaust. By using Femap Thermal and Femap Flow simultaneously, thermal fluid analysis can be conducted. It can solve complex problems such as heat transfer at the fluid-structure interface, fluid flow, thermal conduction in structures, and consideration of radiation at the surface of structures. In this case, we conducted thermal fluid analysis focused on the muffler. We confirmed that we could obtain necessary parameters for design by determining the temperature difference of exhaust gases at the inlet and outlet, the flow of exhaust gases within the muffler, and the temperature of the surface of the muffler structure. □ For other functions and details, please refer to the catalog.

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Fluid analysis solver "Femap Flow"

Fluid analysis plus in the Femap environment!

Femap Flow is a fluid analysis solver that is used as an add-on to Femap. Customers who are currently using Femap and wish to conduct fluid analysis can do so by adding it to their existing Femap environment, allowing them to perform fluid analysis using the Femap GUI. 【Features】 Not only can fluid analysis be performed, but by using Femap's GUI and model files, structural-fluid coupled analysis with NX Nastran can also be easily conducted. Additionally, by adding the Femap add-on thermal analysis software, Thermal, thermal-fluid coupled analysis can also be easily performed. 【Application Examples】 ○ Steady-state and unsteady fluid analysis are possible. ○ Analysis considering viscosity and compressibility is possible for liquid and gas layers at sonic speeds (up to Mach 4). ○ Modeling of Newtonian and non-Newtonian fluids is possible. ○ Turbulence models such as the FTV model, Mixing Length model, and k-ε model can be utilized. ○ Periodic boundary conditions can be modeled. ○ Fans can be defined not only at boundary surfaces but also in flow injection. ◎ For more detailed information, please refer to the catalog or contact us directly.

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CAE tool "Simcenter Femap"

Advanced analysis with multiple methods is possible! An integrated pre-post system capable of complex finite element modeling.

"Simcenter Femap" is a highly integrated CAE tool that combines the preprocessor "Femap" and the finite element method solver "Simcenter Nastran." With Femap, complex finite element modeling can be performed with simple operations, and Simcenter Nastran allows for various advanced analyses, including linear static analysis, eigenvalue analysis, nonlinear analysis, and heat transfer analysis. Additionally, Femap can be customized through an API, and our company offers API development services. [Femap's Pre/Post Features] ■ Seamless access to CAD data ■ Support for multiple solvers ■ User-friendly GUI ■ Meshing toolbox ■ Powerful auto-meshing capabilities ■ Advanced post-processing features *For more details, please refer to the PDF materials or feel free to contact us.

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Preparation for the Power Engineering Technician Examination!

The Japan Society of Mechanical Engineers' Computational Mechanics Engineer Examination is approaching on December 10th (Saturday), and we have planned a seminar that will also serve as exam preparation.

■Details■ Date: November 22, 2016 (Tuesday) / November 29, 2016 (Tuesday) Time: 13:30 - 16:30 (Registration starts: 13:00) Venue: CAE Solutions Inc. (Our company) Iidabashi Office, 5th Floor Training Room 2-1-10 Iidabashi, Chiyoda-ku, Tokyo

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[Data] Simcenter FEMAP Construction Field Analysis Case Studies

We will introduce the analytical functions and case studies used in the construction field!

This document introduces analysis examples in the construction field using 'Simcenter FEMAP,' which consists of a pre-post processor (FEMAP) and a structural finite element method solver (Simcenter Nastran). FEMAP is a product specialized in creating finite element models, allowing the definition of pressure conditions through equations and enabling settings such as hydraulic pressure. Additionally, it offers convenient features for model creation and analysis result display, such as virtual cross-section representation of beam/bar elements and simultaneous display of multiple analysis results. 【Contents】 ■ About Simcenter FEMAP ■ Usable analysis functions ■ Stress analysis of composite girders ■ Stability verification of dam embankments *For more details, please refer to the PDF document or feel free to contact us.

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[Information] Simcenter FEMAP Functions for the Construction Field

Used in various fields around the world! Introducing analysis functions in the construction sector!

This document introduces the analysis capabilities of 'Simcenter FEMAP' in the construction field, which consists of the pre- and post-processor (FEMAP) and the structural finite element method solver (Simcenter Nastran). Simcenter Nastran is used in various fields worldwide and is widely utilized in the construction sector as well. For example, it is used to evaluate stress distribution in composite structures made of steel and concrete, and to assess the stability of concrete dam embankments. 【Contents】 ■ About Simcenter FEMAP ■ Available analysis functions ■ Batch placement of shell elements representing steel ■ Batch placement of GAP elements (spring elements) ■ Sweep along element edges *For more details, please refer to the PDF document or feel free to contact us.

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Introduction to Desktop Structural Analysis Program

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

【Features】 ○ A structural analysis solution that combines the pre- and post-processor "Femap" with the analysis solver "NX Nastran" ○ A series of tasks for finite element analysis, including the creation of analysis models from 3D-CAD generated shape data, analysis, and result display, can be accomplished with a single software on one PC ○ Operates on PCs equipped with Windows, allowing work in a familiar environment ○ High operability ○ Easy-to-implement pricing ○ Supports 64-bit environments ○ Capable of handling large-scale analyses ◎ For more detailed information, please refer to the catalog or contact us directly.

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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, allowing for the optimization of wireless connectivity, including 5G, ensuring electromagnetic compatibility (EMC), and enabling 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, when combined with other Altair tools, optimizes system performance through machine learning and reduces modeling time for complex systems. Feko is used globally 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.

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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 space programs 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. NX Nastran inherits this high reliability and proven performance while incorporating the latest analysis technologies, making it a suitable solution 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 including Windows, UNIX, and Linux - Supports 64-bit modules, memory-sharing 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 many other diverse modules available, so please contact us for more detailed information.

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EMAG Technologies

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

"EMAG Technologies" offers software for real-time analysis, detection, tracking, and mapping of electromagnetic fields and waves. We provide products that meet 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.

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[Example] Thermal conduction analysis using thermal coupling functionality

We analyzed the temperature distribution of heat conduction due to heat generation from the chip in a structure composed of a chip, substrate, edge guide, and case.

【Case Overview】 ■Product Name: Femap Thermal ■Analysis: Thermal Analysis ■Industry: Mechanical Components Modeling thermal connections between components can be challenging due to thermal resistance from contact and heat conduction at adhesive joints. By using the thermal coupling feature, it is possible to define conductive conductance, thermal conductivity, or thermal resistance values between distant meshes that do not share nodes, allowing for thermal coupling in calculations between these distant meshes. This is an excellent feature that automatically considers the positional relationships of elements and allocates the degree of thermal coupling for each element. In this analysis case, we will analyze the temperature distribution due to heat generation from a chip within a structure consisting of four types of components: chip, substrate, edge guide, and case. The adhesive between the chip and substrate, as well as the edge guide that connects the substrate and case, were modeled using thermal coupling. □ For other functions and details, please refer to the catalog.

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Analysis software "ElecImager/2D"

Introducing software that visualizes the distribution of soil resistivity in color for measurement support and data QC!

"ElecImager/2D" is software developed by Applied Geoscience Co., Ltd. that supports measurement and analysis of the two-dimensional electrical exploration method known as "resistivity imaging." It consists of three programs that provide a more detailed and comfortable analysis environment. Designed for PC-Windows, it features a user-friendly interface utilizing menus, dialogs, and mouse controls typical of Windows. 【Features】 ■ User-friendly design utilizing the Windows interface ■ Adoption of standard Windows printing functionality ■ Support for creating measurement control files for McOHM-21 and others ■ Easy data quality control (QC) using potential decay curves and apparent resistivity cross-sections ■ Capable of analyzing measurement data with arbitrary electrode configurations *For more details, please refer to the PDF materials or feel free to contact us.

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CAE Technology Research Conference 2016 (Free Participation Fee)

The keynote speech will feature hot topics on the science of sports and presentations on fire simulation research.

CAE Utilization Technology Research Conference 2016 "Let's Talk about CAE in Kudanshita!" / "6th DADiSP Utilization Technology Research Conference" The CAE Utilization Technology Research Conference is celebrating its 6th year since the DADiSP Utilization Technology Research Conference. We have many user case studies planned. This event is packed with useful and up-to-date information on cloud CAE, composite materials, optimization, and more, which you won't hear elsewhere. ============================= ● Date and Time: August 5, 2016 (Friday) 10:00 AM - 5:30 PM (Networking event from 5:30 PM) ● Capacity: 80 participants ● Venue: Hotel Grand Palace 1-1-1 Iidabashi, Chiyoda-ku, Tokyo (• 1-minute walk from Kudanshita Station on the Tokyo Metro Tozai Line, Exit 7 (Fujimi Exit)) ● Registration: http://www.cae-sc.com/events/cae-conf-2016.html ■ Organized by: CAE Solutions Co., Ltd.

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Recommended Operating Model for Charged Particle Orbit Analysis Software "BEAM"

Electric and magnetic fields are highly accurate up to the element neighborhood! The calculations of electric and magnetic fields created by the source use analytical integral formulas.

"BEAM" is a charged particle trajectory analysis software. It calculates the trajectories of charged particles in electromagnetic fields computed by ELF/MAGIC and ELFIN. Since the electric and magnetic fields on the trajectories of charged particles are calculated directly from the source, there is no need to create a spatial mesh. We handle the recommended model "Be-Clia Type-M12IS98," so please feel free to contact us. 【BEAM Features】 ■ No spatial mesh required ■ High-precision spatial electric and magnetic fields ■ Compatible with ELF/MAGIC and ELFIN ■ Space charge effects ■ Collaboration model with Elf Co., Ltd. *For more details, please refer to the related links or feel free to contact us.

  • Other PCs and OA equipment
  • Analysis software

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