soft Product List and Ranking from 1838 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Sep 02, 2026~Sep 29, 2026
This ranking is based on the number of page views on our site.

soft Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 02, 2026~Sep 29, 2026
This ranking is based on the number of page views on our site.

  1. アークシステム 本社 Kanagawa//others
  2. B7 Tokyo//Information and Communications
  3. Bentley Systems LLC Tokyo//Service Industry
  4. 4 ユニオンシステム Osaka//Information and Communications
  5. 5 ウェーブフロント 本社 Kanagawa//others

soft Product ranking

Last Updated: Aggregation Period:Sep 02, 2026~Sep 29, 2026
This ranking is based on the number of page views on our site.

  1. Quicker and more accurate construction cost estimation! Drawing extraction software Hiroi-kun III アークシステム 本社
  2. Data extraction software "Hiroi-kun III" supports CAD and PDF drawing data. アークシステム 本社
  3. Learn from U.S. retail companies! Presentation of materials summarizing tips for retail strategy planning. マンハッタン・アソシエイツ
  4. 4 Cloud-based estimation and quotation for the construction industry [Raku Oh! Workspace] アークシステム 本社
  5. 5 Company Overview: Bentley Systems Japan Branch Bentley Systems LLC

soft Product List

3001~3030 item / All 6563 items

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[Technical Column] The Theory of OPTISHAPE-TS: "Time Complexity"

A simple analysis example of using an optimization algorithm for the number of trials is also included!

In the previous discussions, I explained that non-parametric optimization, mathematically, is optimization focused on functions, and in practice, it becomes a problem of finding a number of design variables comparable to the scale of the finite element model (number of nodes, number of elements). In this article, I will explain the optimization algorithms for solving such problems. Please feel free to download and take a look. [Contents] ■ Episode 3: The Difficulty of Non-Parametric Optimization Part 2 "Time Complexity" *For more details, please refer to the PDF materials or feel free to contact us.

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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 entails.

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, 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 "Function Optimization" *For more details, please refer to the PDF document or feel free to contact us.

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[Technical Column] The Theory of OPTISHAPE-TS Topology Optimization

The emergence of the H1 gradient method and its background! Introduction to a technical column on structural optimization design software.

In the previous article, I explained the calculation procedure of the force method, which is an H1 gradient method in shape optimization, including the previously proposed growth strain method. In this article, I will explain the H gradient method in topology optimization. Please feel free to download and take a look. 【Contents】 ■ Episode 7: The Emergence of the H1 Gradient Method and Its Background Part 2 "Topology Optimization" *For more details, please refer to the PDF document or feel free to contact us.

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

An explanation of what the 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.

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

An explanation of the important property of completeness among the characteristics of space! Introduction to a technical column.

In the previous article, we explained normed spaces and inner product spaces. A normed space is a space equipped with a norm that generalizes the concept of size, while an inner product space is a space equipped with an inner product. In this article, we will explain the important property of completeness among these spaces. Please feel free to download and take a look. [Contents] ■ Episode 11: What is the H1 Gradient Method? Part 4 "Completeness" *For more details, please refer to the PDF document or feel free to contact us.

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[Column] The Theory of OPTISHAPE-TS: "What is H1 in the first place?"

An explanation of the function space H1 from several perspectives! Introduction to a technical column.

In the previous two articles, I explained what the H1 gradient method is in shape optimization and topology optimization, along with its historical background. In this article, I will explain what "H1" in the H1 gradient method refers to. Please feel free to download and take a look. [Contents] ■ Episode 8: What is the H1 Gradient Method? Part 1 "What is H1 in the first place?" *For more details, please refer to the PDF document or feel free to contact us.

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[Technical Column] Optimization Algorithm Using the H1 Gradient Method

An overview of the structural optimization algorithm used in OPTISHAPE-TS! Introduction to the technical column.

In the previous articles, we explained the theoretical background of the H1 gradient method. Since the discussion became mathematically complex, in this article, we will introduce a more approachable topic: an overview of the structural optimization algorithm used in OPTISHAPE-TS. Please feel free to download and take a look. 【Contents】 <Chapter 17: Optimization Algorithm Using the H1 Gradient Method> ■ Solve the state equations and calculate the value of the evaluation function ■ Solve the adjoint equations and calculate the sensitivity of the evaluation function ■ Calculate the variation of design variables using the H1 gradient method ■ Calculate the weighting coefficients for the variations ■ Update the design variables ■ Satisfy the unsatisfied constraint functions *For more details, please refer to the PDF document or feel free to contact us.

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The theory of OPTISHAPE-TS: Evaluating the maximum value of the KS function.

Introduction to the evaluation method for maximum values using something called the KS function!

In OPTISHAPE-TS, it is possible to evaluate the maximum values of functions distributed over the model, such as "maximum Mises stress" and "maximum displacement." However, if we literally use the maximum value as the evaluation function, we will not be able to evaluate the derivatives, making it impossible to determine sensitivity. This time, I will introduce a method for evaluating maximum values using a function called the KS function, which is adopted in OPTISHAPE-TS. Please feel free to download and take a look. [Contents] ■ Episode 18 Evaluating the Maximum Value of Functions: KS Function *For more details, please refer to the PDF document or feel free to contact us.

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Theory of OPTISHAPE-TS Compliance Sensitivity Part 2

Compliance with design variables! An introduction to substitution method and direct differentiation method in a column.

We would like to introduce a technical column on our structural optimization design software "OPTISHAPE-TS." The discussion began in the previous article about deriving the sensitivity of compliance. This article is the second installment, where we will consider the derivative of compliance with respect to design variables. Please feel free to download and take a look. [Contents] ■ Episode 23: Sensitivity of Compliance Part 2 "Substitution Method and Direct Differentiation Method" *For more details, please refer to the PDF document or feel free to contact us.

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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 approach.

In the previous article, we introduced the Lagrange multiplier method as a condition that the solutions of optimization problems with equality constraints should satisfy. 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.

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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 document or feel free to contact us.

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[Technical Column] The Theory of OPTISHAPE-TS: Sigmoid Function

A thorough explanation of linear spaces, also serving as a review! Introduction to our company's technical column.

This time, I will discuss the idea related to the optimization problem of a function that takes values within a certain specified range, specifically focusing on the sigmoid function. When solving non-parametric optimization problems using the H1 gradient method, we consider that an initial value of the function, which serves as the design variable, is given, and we update the design variable by adding an incrementing term to it. Therefore, this function must be an element of a linear space. I will carefully explain the concept of linear space as a review. Please feel free to download and take a look. [Contents] ■ Episode 29: Sigmoid Function *For more details, please refer to the PDF document or feel free to contact us.

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Case Study Collection 1 of CAD Model Generation Software 'S-Generator'

Examples of outputting CAD data from STL data! Explained clearly with illustrations!

This document is a collection of case studies on problem-solving using the CAD model generation software 'S-Generator', Volume 1. It includes examples such as "CAD model generation from engine block STL data," "CAD model generation from the topology optimization results of a chair," and "CAD model generation from the topology optimization results of a bracket." We provide detailed explanations of the overview, work content, and utilization of the generated surfaces, so please feel free to download and take a look. [Contents] ■ Case Study 1: CAD model generation from engine block STL data ■ Case Study 2: CAD model generation from the topology optimization results of a chair ■ Case Study 3: CAD model generation from the topology optimization results of a bracket *For more details, please refer to the PDF document or feel free to contact us!

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Structural optimization design software 'HiramekiWorks'

Responding to practical needs on the design site. Smoothly create prototype models of optimized result shapes with easy editing of STL data for 3D printing!

HiramekiWorks is an add-in structural optimization design software for 3D CAD SOLIDWORKS, boasting a proven track record in the manufacturing industry. Using the analysis conditions set in SOLIDWORKS, you can complete everything from running the analysis to importing the result model with just one click. Additionally, the optimized result shapes can be easily edited into STL data for 3D printing using the included "Geometry Editor," making it simple and smooth to create prototype models. Would you like to try designing something that has never been done before with our software, which incorporates unique know-how? 【Features】 ■ Easy optimization in a familiar environment ■ Addresses practical needs such as weight reduction and stress reduction under various conditions ■ Automatically generates solid models of the optimized result shapes ■ Easily generates STL data for 3D printing using the Geometry Editor *For more details, please refer to the related links or feel free to contact us. We are currently offering the "HiramekiWorks Product Catalog" and "STL Editing Case Studies" (S-Generator Case Studies) for PDF download!

  • Scientific Calculation and Simulation Software
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Case Studies of Structural Optimization Design Software 'OPTISHAPE-TS' Volume 3

We will introduce case studies on the optimization of spot-welded parts and examples of shapes that equalize reaction forces ★ Detailed explanations of analysis models, optimization conditions, and discussions!

In this case study collection, we introduce problem-solving examples using the structural optimization design software 'OPTISHAPE-TS'. We present examples of optimizing spot-welded flat plate stiffeners, optimizing the optimal arrangement of spot welds themselves, and optimizing shapes to equalize reaction forces. We provide a detailed explanation of the analysis model, optimization conditions, results, and discussions using diagrams. Please feel free to download and take a look. [Featured Examples] ■ Shape optimization of spot-welded flat plate stiffeners ■ Topology optimization to reduce spot welding ■ Shape optimization to equalize reaction forces *For more details, please refer to the PDF materials or feel free to contact us! *Those who are not Ipros members can also download the materials from the related links below (within our company site).

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Web schedule sharing software "Hot Scheduler"

Now, it's clear at a glance who is doing what! Comprehensive security with cloud solutions for businesses.

"Hot Scheduler" is a web-based schedule sharing system that can be used for managing and sharing employee schedules, as well as reserving meeting rooms. It allows you to view the schedules of selected group members in a single screen, presented in a chronological graphical bar format, making it easy to see at a glance who is doing what at any given moment. [Features] ■ Smooth handling of inquiries since you can see members' schedules at your desk ■ Freedom to set up groups and register common schedules collectively ■ Schedule sharing possible with external parties and even overseas ■ Reservation and status checking for meeting rooms and shared equipment ■ Monthly view for a clear understanding of future plans *For more details, please refer to the PDF document or feel free to contact us.

  • Labor Management System
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Easy Aluminum Cable System for Labor-saving and Improved Safety in Electrical Work

Adopting aluminum conductors achieves a weight reduction of 30-50%. It contributes to labor savings during installation and improved maneuverability.

The "Easy Aluminum Cable System" is a low-voltage aluminum conductor CV cable (Easy Aluminum Cable) composed of dedicated terminals, terminal blocks, connection materials, and tools. We provide a packaged set of necessary components to apply the Easy Aluminum Cable on-site. 【Features】 ■ Improved workability ■ Labor-saving ■ Significant reduction in line extension work time → Possible shortening of construction period ■ Reduction in labor for electrical work *Catalogs are also available. If you would like a catalog, please contact us using the inquiry button.

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3D Ion Beam Trajectory Analysis Software / μ-Beam

Consider the ion trajectories in electrostatic fields 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 materials or view the PDF data available for download.

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

After confirming the basic characteristics with μ-EXCEL, proceed to a 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, a wizard-style GUI guides users in setting the problem type and conditions. 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 Additionally, - We offer professional consulting that delves into your specific problems - We provide contract analysis and custom development at affordable prices *For more details, please contact us or refer to the PDF data.

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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, rapidly analyzes 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 rapidly analyzes electromagnetic field distribution in the time domain. 【Features】 - Adopts FDTD and CIP methods for analysis - High-speed computation for problems with 10 million cells (when using FDTD) - Realizes infinite boundaries without PML (when using CIP) - Time steps determined by Courant condition do not need to be changed even if small cells are partially present (significant reduction in 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 more details, please request documentation or view the PDF data available for download.

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3D Induction Heating and Temperature Analysis Software / μ-TM

Powerful complex heating coil shapes, high-frequency heating, temperature, heat generation, and magnetic field distribution are visible!

Induction heating is utilized in various machinery and equipment. It ranges from cooking with IH heating to machining, pressing, and casting. The challenges include the complex arrangement of induction heating coils, making model definition difficult, and the need for analyses that consider temperature dependence; otherwise, discrepancies may arise between the actual temperature distribution and the results. μ-TM addresses these challenges by being a dedicated module for induction heating. 【Features】 - Seamless magnetic field analysis and transient temperature analysis using induction heating coils - Easy modeling as coils can be set independently of finite elements - Further reduction of analysis workload with a condition-setting menu specialized for the problem - For beginners, a combination with our proprietary orthogonal grid mesher, AirCube, is recommended - For precise model shapes, a combination with Femap is suggested Additionally, - We provide professional consulting that delves into customer issues - We also offer contract analysis and custom development at low costs *For more details, please request materials or view the PDF data from the download section.

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Orthogonal Lattice Correspondence Pre-Post System / AirCube

Pre-post system for creating orthogonal lattice meshes for electromagnetic wave analysis, electromagnetic field analysis, and fluid analysis!

AirCube is a pre-post system specifically designed for orthogonal grids that supports the finite difference method, widely used in fluid analysis, electromagnetic wave analysis, and sound field analysis. It can easily link to your solver. Compared to conventional software, it is simple, user-friendly, and multifunctional, capable of meeting various needs. Additionally, it demonstrates high performance even with large-scale models and can accommodate complex shapes. 【Pre-Processing Functions】 - Boundary condition support such as PML - CAD input - Shape library including cylinders and rectangular prisms - High-speed automatic cell division - Solver control for time steps and output steps 【Post-Processing Functions】 - Cut surface contours - Graphs - Point extraction plots - Whole model representation of half models - Automatic processing using session files - Animation features *For more details, please request documentation or view the PDF data available for download.

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Ion beam design software

For the axisymmetric model, we will use an Excel macro to easily evaluate the results.

Ion beam device design software. Limited to axisymmetric models, but allows for easy operation and evaluation of results using Excel macros. Calculates electric field distribution, magnetic field distribution, and trajectory distribution. The space charge effect can be considered.

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Unsteady temperature distribution analysis of heating and cooling mechanisms / μ-Excel Thermal Conductivity Edition

Visualize thermal conductors, heating elements, cooling pipes, temperatures of heating/cooling cycles, and heat flux!

μ-Excel is analysis software that uses a two-dimensional (or axisymmetric) finite element method. The μ-Excel series consists of individual packages for each analysis theme, allowing for smooth analysis through customized input and output screens for each theme. Additionally, it utilizes Excel macros in the GUI, enabling operation in a familiar Excel environment without discomfort. It is evolving into a rich variety of themes, not only for electromagnetic field analysis but also for heat, structure, fluid, and electromagnetic waves. Please look for the series that matches your theme (currently, there are a total of 11 series). 【Features】 - Transient temperature analysis - Temperature and heat flow distribution - Specification of heat-generating bodies and cooling pipes - Consideration of contact thermal conductivity between materials - Transmission boundaries, radiation boundaries, material temperature dependence (under development) * It can be implemented at a lower cost compared to other analysis software. The academic version is even more advantageous! * For more details, please contact us or download the PDF.

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Electrode Surroundings, Electric Field and Potential Distribution Analysis due to Charge / μ-Excel Electrostatic Field Version

You can see the electrostatic field distribution of dielectrics, metals, floating conductors, electrode potentials, and charge configurations!

μ-Excel is analysis software that uses a two-dimensional (or axisymmetric) finite element method. The μ-Excel series consists of individual packages for each analysis theme, allowing for smooth analysis through customized input and output screens for each theme. Additionally, it utilizes Excel macros in the GUI, enabling operation in a familiar Excel environment without discomfort. It is evolving into a rich variety of themes, not only for electromagnetic field analysis but also for heat, structure, fluid, and electromagnetic waves. Please look for the series that matches your theme (currently, there are a total of 11 series). 【Features】 - Electrostatic field analysis - Calculation of electric field, potential distribution, and electric field vector - Setting of relative permittivity for composite dielectrics and potential for electrodes - Consideration of anisotropy in permittivity - Ability to set charge density *Compared to other analysis software, it can be introduced at a lower price. The academic version is even more advantageous! *For more details, please contact us or download the PDF.

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Magnetosputtering / Magnetic Shield Magnetic Field Distribution / μ-Excel Static Magnetic Field Version

Visualizing the magnetic field distribution of coils, permanent magnets, and nonlinear magnetic materials, as well as the saturation state of magnetic materials! "Static Magnetic Field Version" for magnet sputtering devices and magnetic shielding devices.

μ-Excel is analysis software that uses a two-dimensional (or axisymmetric) finite element method. The μ-Excel series consists of individual packages for each analysis theme, allowing for smooth analysis through customized input and output screens for each theme. Additionally, it uses Excel macros in the GUI, enabling operation in a familiar Excel environment without discomfort. It is evolving into a rich variety of themes, not only for electromagnetic field analysis but also for heat, structure, fluid, and electromagnetic waves. Please look for the series that fits your theme (currently, there are a total of 11 series). 【Features】 - Calculation of spatial magnetic fields and fields within magnetic materials - Output of magnetic field distribution, magnetic field lines, and magnetic field vectors - DC excitation using magnets and coils - Nonlinearity and magnetic saturation of magnetic materials *It can be introduced at a lower price compared to other analysis software. The academic version is even more economical! *For details, please contact us or download the PDF.

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Current flow in liquids, conductors, semiconductor bulk analysis / μ-Excel electrostatic current version

Easy operation! Visualize potential, electric field, and current distribution using parameters such as insulators, conductive liquids and solids, electrode potential, and conductivity!

μ-Excel is analysis software that uses a two-dimensional (or axisymmetric) finite element method. The μ-Excel series consists of individual packages for each analysis theme, allowing for smooth analysis through customized input and output screens for each theme. Additionally, it utilizes Excel macros in the GUI, enabling users to operate it seamlessly with familiar Excel. It is evolving into a rich variety of themes, not only for electromagnetic field analysis but also for heat, structure, fluid, and electromagnetic waves. Please look for the series that matches your theme (currently, there are a total of 11 series). 【Features】 - Analysis of current flow in conductive materials - Calculation of electric field, potential distribution, and current vector - Setting of conductivity and electrode potential *Compared to other analysis software, it can be introduced at a lower cost. The academic version is even more advantageous! *For details, please request materials or view the PDF data from the download.

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"Heat and Electromagnetic Field Analysis Software" Free Demo Version / Free Trial Version

Download now! [Excel-based simulation software] - Easy to use even for on-site personnel.

"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 genuine simulations with a familiar user experience. 【Do you have any of these concerns?】 - You don't need the advanced features of expensive analysis software... - You want analysis results right away... - You're worried about learning how to operate the analysis software... For those individuals, we recommend our subscription service!  ■ Unlimited use for just 9,800 yen for one month  ■ You can choose from multiple themes, such as magnetic field analysis and temperature analysis  ■ Free trial version available for web download  ■ Operates in Excel, enabling genuine simulations with a familiar user experience ▽ Download now from the "Sample Software" at the bottom of the page! ▽ ▽ You can also watch the user experience in videos by searching for "Analysis Know-How.com"! ▽ *Voice: Read Aloud *Analysis can be performed in various scenarios. Induction heating version (trial version available) / Static magnetic field version (trial version available) / Electrostatic field version (trial version available) / Heat conduction version (trial version available) / Electromagnetic force version / Magnetization torque version / Stress version / Induction machine version / Mold cooling version / Dielectric stress version / Ion beam version

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[For Heat Insulation Coating Contractors] Temperature Simulation Software μ-COOL

With just simple information input, the temperature effect before and after painting can be measured on the spot!

μ-COOL is a temperature simulation software that calculates temperature effects on Excel. By simply inputting painting conditions and room sizes, you can calculate the temperature effects before and after painting on the spot. It serves as a powerful persuasive tool during discussions with clients. ■Features - Utilizes Excel macros - Uses NEDO's solar radiation database - Allows setting the size of facilities (factories), etc. - Calculates indoor temperature changes over 10 days - Calculates temperature reduction effects with and without heat-reflective paint - Customizable *For more details* If you have any questions or concerns, please feel free to contact us!

  • Heat-insulating and moisture-permeable roofing
  • soft

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Vector Magnetic Property Analysis 【Analysis Case Study 1】

An example of analysis using a model of non-oriented electrical steel sheet shaped into a ring is presented!

This document presents an analysis example using a model of isotropic electromagnetic steel plates shaped into a ring. It provides a detailed explanation of the ring model voltage source, as well as comparison results with measured hysteresis curves. 【Contents】 ■1.1 Analysis Model and Objectives ■1.2 Analysis Conditions and Calculation Time ■1.3 Magnetic Field Distribution and Iron Loss Distribution Results ■1.4 Alternating Magnetic Flux and Rotating Magnetic Field Results ■1.5 Comparison Results with Measured Hysteresis Curves ■1.6 Current Waveform Results ■1.7 Interface Settings Screen *For more details, please refer to the PDF document or feel free to contact us.*

  • Other Software
  • soft

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