We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Simulation Software.
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Simulation Software Product List and Ranking from 41 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

Simulation Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. アスペンテックジャパン/AspenTech Tokyo//software
  2. FsTech Kanagawa//software
  3. null/null
  4. 4 IDAJ Kanagawa//software
  5. 5 シュレーディンガー Tokyo//software

Simulation Software Product ranking

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
This ranking is based on the number of page views on our site.

  1. Aspen Plus process simulation software アスペンテックジャパン/AspenTech
  2. Engine simulation software "GT-POWER" IDAJ
  3. Thermal Fluid Simulation Software 'AICFD' FsTech
  4. 4 Offline programming of arc welding robots
  5. 5 Process simulation software Aspen HYSYS アスペンテックジャパン/AspenTech

Simulation Software Product List

406~420 item / All 664 items

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Application examples of the alloy design tool Thermo-Calc for Ni-based superalloys.

Introducing analysis examples for Ni-based superalloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for Ni-based superalloys using the alloy design tool Thermo-Calc. Thermo-Calc can optimize alloy processes, predict the effects of processes on microstructure, and forecast properties. 【Thermo-Calc】 - Temperature-phase diagram for Ni-24Al-15Cr-19Co - Temperature-phase diagram for 718Plus - Evaluation of the solvus temperature of the γ’ phase - Evaluation of equilibrium distribution coefficients - Evaluation of liquid phase density for Ni-Cr-Al-XMo - Evaluation of lattice constants for γ/γ’ phases - Evaluation of oxidation and sulfidation treatments - Evaluation of viscosity and surface tension for CMSX-10 - Electrical properties (electrical resistivity, electrical conductivity) - Thermal properties (thermal conductivity, thermal resistivity, thermal diffusivity) 【Diffusion Module DICTRA】 - Diffusion between GTD-111 alloy and coating - Diffusion in welds of steel materials and nickel alloys 【Precipitation Module TC-PRISMA】 - Precipitation of γ‘ and γ’‘ phases in 718 alloy 【Property Models for Ni Alloys】 - Anti-phase boundary energy - Temperature dependence of properties in frozen microstructures - Coarsening rate constant of precipitates

  • Rare metals
  • alloy
  • Non-ferrous metals

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Application examples of the alloy design tool Thermo-Calc for copper alloys.

Introducing analysis examples for copper alloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for copper alloys using the alloy design tool Thermo-Calc. Thermo-Calc allows for the optimization of alloy processes, the impact of processes on microstructure, and the prediction of properties. 【Thermo-Calc】 - Phase diagrams for Cu-Zn and Cu-Sn - Isothermal sections for Cu-Mn-Sn and Cu-Ni-Sn - Vertical sections (with fixed element ratios) - Liquid phase projection diagram for Cu-Ag-Sn - Evaluation of liquid phase density for Cu-Co-Fe - Evaluation of surface tension and viscosity - Evaluation of liquidus/solidus temperatures - Solidification calculations for Cu-8.32Ni-1.68Si 【Diffusion Module DICTRA】 - Interface movement and microsegregation during the solidification process 【Precipitation Module TC-PRISMA】 - Precipitation calculations for Ni2Si precipitate phase during aging process - Precipitation calculations for Co-Fe precipitate phase during aging process

  • 製品ロゴ.jpg
  • alloy
  • Non-ferrous metals
  • Other metal materials

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Application examples of the alloy design tool Thermo-Calc for titanium alloys.

Introducing analysis examples for titanium alloys! The alloy design tool Thermo-Calc can be used for material development and various manufacturing processes!

This is a collection of calculation examples for titanium alloys using the alloy design tool Thermo-Calc. Thermo-Calc can optimize alloy processes, predict the effects of processes on microstructures, and forecast properties. 【Thermo-Calc】 - Temperature - phase fraction diagram for Ti-43.3Al-4.3Nb-1.2Mo-0.1B (at%) - Phase diagram of the Ti3Al-Nb pseudo-binary system - Evaluation of transformation temperature (β transus) - Evaluation of volume fractions of α and β phases - Surface tension of the liquid phase - Electrical resistivity of Ti6242Si - Thermal conductivity of Ti64 【Diffusion Module DICTRA】 - Evaluation of α phase fraction according to cooling rate

  • alloy
  • Non-ferrous metals
  • Other metal materials

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NC machine simulation software "VERICUT"

Identify mistakes and inefficient areas! Collisions in the "virtual machine" serve to protect the actual machines.

"VERICUT" is simulation software for G-code NC programs executed on machine tools. Before processing on machine tools, it verifies NC data created by CAM software on a PC. It reproduces the machine tool and its movements on the PC, preventing errors and troubles such as collisions caused by the program. By utilizing CAD data, it is also possible to conduct detailed inspections of leftover material and overcutting. 【Features】 ■ Supports simulation of "G-code NC programs" for various NC machine tools ■ Faithfully reproduces in-machine operations in detail ■ Reproduces all elements in 3D, detecting collisions and interferences ■ Significantly reduces verification work on actual machines, enabling quick start of processing ■ Reduces costs associated with machine damage and troubles *For more details, please refer to the PDF document or feel free to contact us.

  • Other CAM related software

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Lithography simulation software

Eliminate waste of cost and time, and achieve high-performance, low-cost product development in a short period.

At Intersoft, we handle "Lithography Simulation Software." We offer a variety of products, including "FullChip," which supports a computing environment consisting of a layout server and multiple clients, as well as the very user-friendly, flexible, and powerful "HyperLith" and "EM-Suite." We eliminate costs and wasted time, enabling high-performance, low-cost product development in a short period. 【Product Lineup (Partial)】 ■FullChip ■HyperLith ■EM-Suite ■TEMPESTpr2 ■TRIG, etc. *For more details, please refer to the PDF materials or feel free to contact us.

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

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OpenLM Server

Maximize the usage efficiency of expensive network licenses!

OpenLM Core is software that further monitors and analyzes the usage of licenses managed by various license managers in detail. It also maximizes usage efficiency with various accompanying tools. Rather than explaining it, we encourage you to install the trial version (without any purchase conditions) and try it out for yourself. You will gain access to information about licenses that you have not been able to obtain from license managers until now. This enables various responses and allows you to actively work to enhance license usage efficiency. We guarantee a 15% reduction in license costs, and some companies have achieved a 30% reduction. Please estimate how much this could amount to.

  • Other CAD related software
  • Industrial PCs
  • others

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Latest 3D Data Utilization Case: Equipment Installation Simulation 'MR'

Solving layout issues during equipment installation!

By checking the layout issues that arise when replacing existing equipment in factories or introducing new equipment before starting work, a smooth working environment can be established. 【Equipment Introduction Simulation 'MR'】 Introduction simulation using "HoloLens" *For more details, please refer to the PDF document or feel free to contact us.

  • 3D Printer

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ACT Analysis Simulation Software

Supporting a wide range of industrial sectors! Achieving high-precision analysis simulations!

Our company conducts research and development, sales, and consulting services for analysis simulation software across a wide range of industrial sectors. We have tools that can accurately simulate complex material behavior and mechanical properties in manufacturing and design processes. Since we possess the source program, customization to meet customer needs is also possible. In addition to having extensive analysis results in various industrial fields, we are capable of optimal shape analysis using AI technology. 【Features】 ■ Analysis simulation software that supports a wide range of industrial sectors ■ Ability to accurately simulate complex material behavior and mechanical properties in manufacturing and design processes ■ Customization available to meet customer needs due to possession of the source program ■ Capability for optimal shape analysis using AI technology *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis
  • Thermo-fluid analysis
  • Analysis Services

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About NC data simulation software NCVIEW

Achieving safe processing and improving productivity! Specializing in simulation verification of the NC data applied to machine tools.

"NCVIEW" is a domestic NC data simulation system that reproduces machine tools in a virtual space and simulates NC data precisely and at high speed. It continuously monitors interference accidents, which are the most undesirable troubles in machining, and notifies the situation with an alarm if any abnormalities occur. It is also excellent for verifying machining using macro programs. 【Features】 ■ Precise and high-speed simulation of NC data ■ Continuous monitoring of interference accidents, with alarm notifications for any abnormalities ■ Excellent for verifying machining with macro programs ■ Equipped with a wealth of features to improve machining productivity ■ Actively responds to customization requests *For more details, please refer to the PDF materials or feel free to contact us.

  • 2023-02-13_09h43_47.png
  • simulator

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Troubles during processing: Tool collision and damage

Expert metalworking know-how is essential for prediction and prevention... 'NCVIEW' makes this a reality!

There may be mistakes in NC data or manual operations that cause tools to collide with workpieces, jigs, or machine structures, which can lead to spindle damage and is considered a dangerous accident, also referred to as tool interference. Additionally, various factors such as the type of workpiece, the number of cutting edges, material and shape of the tool, coolant, cutting speed, rotation speed, and poor chip removal can also lead to tool breakage. Preventing and predicting these issues requires the expertise of skilled metalworking professionals, but the tool and holder interference check in 'NCVIEW' makes this possible. [Causes of Trouble] ■ Mistakes in NC data ■ Manual operations causing tools to collide with workpieces, jigs, or machine structures → A dangerous accident that can lead to spindle damage, known as tool interference ■ Various factors such as the type of workpiece, the number of cutting edges, material and shape of the tool, coolant, cutting speed, rotation speed, and poor chip removal → Tool breakage *For more details, please refer to the PDF document or feel free to contact us.

  • simulator

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Troubles during processing: Human error

It can lead to serious troubles that may result in interference incidents... "NCVIEW" allows for efficient verification of troubles!

Even if you create NC data through CAM after modeling in CAD, if there are errors in the data input into the CAD/CAM, you will not obtain correct NC data. Even if the NC data is accurate, mistakes in the NC macro program, incorrect tool compensation settings, or errors in the workpiece's position, orientation, or coordinate system settings can lead to significant problems, such as reduced operational efficiency and quality defects, and in some cases, even interference accidents. By using 'NCVIEW,' which allows simulations in an environment similar to the actual machining setup and has a macro debugger, you can efficiently verify machining troubles. [Causes of Problems] ■ If there are errors in the data input into CAD/CAM, correct NC data cannot be obtained. ■ Mistakes in the NC macro program. ■ Tool compensation settings are not correctly set. ■ Errors in the workpiece's position, orientation, or coordinate system settings. → This can lead to significant problems, such as reduced operational efficiency and quality defects, and in some cases, even interference accidents. *For more details, please refer to the PDF document or feel free to contact us.

  • simulator

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Suppress defects! Predict the types and locations of defects with casting simulation!

A suitable casting plan! We aim to create high-quality castings with an extremely low defect rate.

Our company conducts "casting simulation." Using casting simulation software, we analyze in advance to predict the types, locations, and severity of defects. We aim to create high-quality castings while minimizing the number of prototypes and reducing the defect occurrence rate to the lowest possible level. Please feel free to contact us when you need our services. 【Features】 ■ Suitable casting plans ■ Pre-analysis using casting simulation software ■ Prediction of types, locations, and severity of defects ■ Reduction of the number of processes such as prototypes while minimizing the defect occurrence rate *For more details, please refer to the PDF materials or feel free to contact us.

  • Contract Analysis

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[White Paper] Development of Battery Management Systems

Publication on the development of a battery management system using Simulink and model-based design.

In various industries, the increasing reliance on energy storage through battery packs has heightened the importance of Battery Management Systems (BMS) that can ensure maximum performance, safe operation, and optimal lifespan under diverse charge and discharge conditions as well as environmental conditions. This white paper explains how to develop BMS algorithms and software by performing system-level simulations using "Simulink." Model-based design using "Simulink" allows for a better understanding of battery pack behavior, adjustment of software architecture, testing of various operational cases, and early execution of hardware tests, thereby reducing design errors. [Contents] ■ Desktop Simulation: Modeling of BMS Software ■ Modeling and Characterization of Battery Cells ■ Modeling of Power Electronics and Passive Components ■ Development of Monitoring Control Algorithms *For more details, please refer to the PDF document or feel free to contact us.

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

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Development of Autonomous Driving and ADAS using MATLAB/Simulink

We will systematically and in detail explain the increasingly complex technology areas of autonomous driving and ADAS.

In the development of autonomous driving and ADAS (Advanced Driver Assistance Systems), there are many technologies that need to be considered and developed across a wide range of areas related to "perception, decision-making, and operation." This white paper systematically and thoroughly explains the increasingly complex technological domains of autonomous driving and ADAS. Furthermore, it highlights the following seven important applications and functions in autonomous driving development, introducing features and solutions using MATLAB/Simulink for each: - Image processing and deep learning - LiDAR signal processing - Sensor fusion - Advanced driving control (model predictive control, reinforcement learning) - Generation of driving scenarios for various algorithm verification - External collaboration (Unreal integration, ROS integration) - Code generation

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

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FIMMWAVE (Waveguide mode solver)

FIMMWAVE is software that allows for easy mode analysis of complex waveguide and fiber structures using a waveguide mode solver.

A large number of complementary solvers ・FIMMWAVE contains a variety of robust and computationally efficient solvers optimised for such structures. ・FIMMWAVE combines:methods based on semi-analytic techniques, which allow to tackle efficiently problems with strong variations in refractive index, thin layers, etc. ・numerical methods such as finite elements (FEM) or finite differences (FDM), providing robust solutions to arbitrary problems.

  • Company:CTflo
  • Price:Other
  • Contract Analysis
  • Other analyses
  • simulator

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