Analysis software(3D CAD) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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Analysis software Product List

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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.

  • Company:B7
  • Price:Other
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Optical analysis software FREDmpc (Fred)

The world's only optical engineering software that performs ultra-fast computational processing using GPUs.

FREDmpc was developed to provide developers with the most valuable resource, "time." Optical simulation tools play a crucial role in providing preliminary analysis results in the development of optical systems and products, as well as in forensic analysis used for evaluation in manufacturing and testing. Therefore, whether the software used can produce results more accurately in a shorter time is extremely important for developers. By being over 100 times faster and providing more accurate results than calculations using a CPU, FREDmpc allows developers to spend more time on design.

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  • Scientific Calculation and Simulation Software
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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP3

[Excel-based simulation software] Check out the operation feel in the video now! Free trial download available! Limited-time campaign too!

"μ-Excel" is a low-cost thermal, structural, and electromagnetic analysis software that overturns the common belief that analysis software is expensive. It operates on Excel, allowing for professional simulations with a familiar user experience. You can check the user experience through videos for each work step! The video available here is "Step3 DXF Import." Using the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will introduce how you can import DXF files created in CAD, making model creation more efficient. ▽▼▽ Please also check out other videos! ▼▽▼ Step0 Introduction Step1 Starting Excel Step2 Model Creation ▼Step3 DXF Import Step4 Mesh Creation Step5 Execute Calculation Step6 Add Materials Step7 Display Results Step8 Create Graphs Step9 Save As Step10 Surface Flux Calculation Step11 Torque Calculation

  • Scientific Calculation and Simulation Software

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[Analysis Case] Transient Flow Analysis of Vane Pumps

By utilizing the PumpLinx simulator for pump transient flow characteristics, flow analysis within the vane pump can be conducted smoothly.

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

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[Analysis Case] Transient Flow Analysis of Axial Piston Pump

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within axial piston pumps can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates corresponding to the pump type being analyzed, the time and effort spent on mesh generation, which typically takes a lot of resources for fluid analysis of standard pumps, can be significantly reduced and streamlined. For example, even for complex mechanisms like axial piston pumps, optimal meshes for analysis can be automatically and quickly generated based on 3D CAD data by setting parameters such as the number of cylinders. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Moreover, in many volumetric pumps, including axial piston pumps, there is a possibility of cavitation occurring during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

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

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

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

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