soft Product List and Ranking from 1825 Manufacturers, Suppliers and Companies | IPROS

Last Updated: Aggregation Period:Apr 15, 2026~May 12, 2026
This ranking is based on the number of page views on our site.

soft Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Apr 15, 2026~May 12, 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. シネマレイ 名古屋本社 Aichi//Information and Communications
  3. ユニオンシステム Osaka//Information and Communications
  4. 4 アドバン Nagano//others
  5. 5 JIPテクノサイエンス Tokyo//Information and Communications

soft Product ranking

Last Updated: Aggregation Period:Apr 15, 2026~May 12, 2026
This ranking is based on the number of page views on our site.

  1. Safety Education and Technical Education VR シネマレイ 名古屋本社
  2. Quicker and more accurate construction cost estimation! Drawing extraction software Hiroi-kun III アークシステム 本社
  3. Super Build/SS7 Op.木造ラーメン ユニオンシステム
  4. 4 "AI-OCR" that digitizes handwritten invoices with high precision *customizable アドバン
  5. 5 Easy operation with just a click" - Drawing extraction software "Hiroi-kun III アークシステム 本社

soft Product List

3001~3030 item / All 6483 items

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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.

  • Scientific Calculation and Simulation Software
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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.

  • Scientific Calculation and Simulation Software
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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.

  • Scientific Calculation and Simulation Software
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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.

  • Heat shielding sheet
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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.

  • Scientific Calculation and Simulation Software
  • soft

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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.

  • Scientific Calculation and Simulation Software
  • soft

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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.

  • Scientific Calculation and Simulation Software
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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

  • Scientific Calculation and Simulation Software
  • soft

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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
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Document 'What is Vector Magnetic Property Analysis'

Publication of an explanation of vector magnetic characteristic analysis technology for the realization of high-efficiency motors!

This document explains the vector magnetic characteristic analysis technology for achieving high-efficiency motors. This technology is supported by Professor Masato Enokizono (Emeritus Professor at Oita University, currently the representative of the Vector Magnetic Characteristic Technology Research Institute), and we have cited information from the Vector Magnetic Characteristic Technology Research Institute, which the professor leads. [Contents] 1. The target is the reduction of iron loss in electromagnetic steel sheets. 2. Iron loss is the sum of eddy current loss and hysteresis loss. 3. Vector magnetic characteristics of electromagnetic steel sheets. 4. Conventional measurements are scalar magnetic measurements. 5. Developed vector magnetic measurements. 6. Actual measurement results. 7. Database creation as magnetic characteristics. *For more details, please refer to the PDF document or feel free to contact us.

  • Scientific Calculation and Simulation Software
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Document 'Vector Magnetic Property Analysis Technical Column'

Published on vector magnetic characteristic analysis technology for achieving high-efficiency motors!

This document is a technical column edited and compiled based on the content related to "Vector Magnetic Characteristic Analysis" mentioned in past newsletter columns. We would like to disseminate information on the importance of vector magnetic characteristic analysis technology for achieving high-efficiency motors. [Contents] ■1. Vector Magnetic Characteristic Analysis Technology - Prologue - ■2. Top Runner Method and IE4 ■3. Inverter Technology and Energy Saving ■4. Will Increasing Size Lead to IE3? ■5. Electrical Steel Sheets are Excellent ■6. Focus on the Vector Magnetic Characteristics of Electrical Steel Sheets *For more details, please refer to the PDF document or feel free to contact us.

  • Other Software
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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP 0

[Excel-based simulation software] Check out the operation feel in the video now! Free trial version available for download! 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 genuine simulations with a familiar user experience. You can check the operation experience through videos for each work step! The video available here is "Step 0: Introduction" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will introduce its features that gently guide you through 2D axisymmetric analysis using the finite element method via Excel macros. ▽▼▽ Please also check out other videos! ▼▽▼ ▼ Step 0: Introduction Step 1: Starting Excel Step 2: Model Creation Step 3: DXF Import Step 4: Mesh Creation Step 5: Running Calculations Step 6: Adding Materials Step 7: Displaying Results Step 8: Creating Graphs Step 9: Saving with a Name Step 10: Surface Flux Calculation Step 11: Torque Calculation

  • Scientific Calculation and Simulation Software
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP2

[Excel-based simulation software] Check out the operation feel in the video now! Free trial version available for download! 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 operation feel through videos for each work step! The video available here is "Step 2 Model Creation" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will introduce the steps to build a model using the included modeler with points, lines, and surfaces. ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel ▼Step 2 Model Creation Step 3 DXF Import Step 4 Mesh Creation Step 5 Execute Calculation Step 6 Add Materials Step 7 Display Results Step 8 Create Graphs Step 9 Save As Step 10 Surface Flux Calculation Step 11 Torque Calculation

  • 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
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP4

[Excel-based simulation software] Check out the operation feel in the video now! A free trial version is also 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 interface. You can check the operation feel through videos for each work step! The video available here is "Step 4: Mesh Creation." - Taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the auto-mesh function, specification of mesh density, and periodic boundary condition functions during motor analysis, etc. - ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel Step 2 Model Creation Step 3 DXF Import ▼Step 4 Mesh Creation Step 5 Execute Calculation Step 6 Add Materials Step 7 Display Results Step 8 Create Graphs Step 9 Save As Step 10 Surface Flux Calculation Step 11 Torque Calculation

  • Scientific Calculation and Simulation Software
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP5

[Excel-based simulation software] Check out the operation feel in the video now! Free trial version available for download! 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 "Step 5: Execute Calculation" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, it easily sets calculation conditions with macros for each theme, and introduces that the protected USB key is only needed during calculations. ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel Step 2 Model Creation Step 3 DXF Import Step 4 Mesh Creation ▼Step 5 Execute Calculation Step 6 Add Materials Step 7 Display Results Step 8 Create Graphs Step 9 Save As Step 10 Surface Flux Calculation Step 11 Torque Calculation

  • Scientific Calculation and Simulation Software
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP7

[Excel-based simulation software] Check out the operation feel in the video now! Free trial version available for download! 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 operation experience through videos for each work step! The video available here is "Step 7 Result Display" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will introduce the display of vector diagrams, contour diagrams, and magnetic flux line diagrams, as well as the ability to create documents using cut and paste. ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel Step 2 Model Creation Step 3 DXF Import Step 4 Mesh Creation Step 5 Execute Calculation Step 6 Add Materials ▼Step 7 Result Display Step 8 Create Graphs Step 9 Save As Step 10 Surface Magnetic Flux Calculation Step 11 Torque Calculation

  • Scientific Calculation and Simulation Software
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP8

[Excel-based simulation software] Check out the operation feel in the video now! A free trial version is also 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 interface. You can check the operation feel through videos for each work step! The video available here is "Step 8: Graph Creation" - taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the function that stores result values at arbitrary coordinates in cells, enabling the original spreadsheet and graph functions of Excel. ▽▼▽ Please also check out other videos! ▼▽▼ Step 0 Introduction Step 1 Starting Excel Step 2 Model Creation Step 3 DXF Import Step 4 Mesh Creation Step 5 Execute Calculation Step 6 Add Materials Step 7 Display Results ▼Step 8 Graph Creation Step 9 Save As Step 10 Surface Magnetic Flux Calculation Step 11 Torque Calculation

  • Scientific Calculation and Simulation Software
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Technical Document "Fundamentals of Electromagnetic Simulation"

Electromagnetic phenomena, Maxwell's equations, and examples of analysis using the finite element method! Explained with illustrations and diagrams.

This document introduces the world of electromagnetic simulation, covering electromagnetic phenomena, Maxwell's equations, and examples of analysis using the finite element method. It is an excerpt from the analysis know-how video site "Analysis Know-How.com" by μ-EXCEL. We provide clear explanations using illustrations and graphs. We encourage you to take a look. 【Contents】 ■ Electromagnetic phenomena ■ Maxwell's equations ■ Vector operations ■ Numerical calculations ■ Finite element method ■ Motor analysis ■ Other analyses 【We have launched Analysis Know-How.com (https://mu-excel.com)!】 - In the "Home" menu, you can find a list of know-how collections - The "View Details" button provides know-how points and videos - The "Category" menu allows you to filter by genre and series - Use "Search by Keyword" to further narrow down related videos - In the "Blog," we will introduce updated videos as they become available ★ You can download sample software from the link below. *For more details, please refer to the PDF document or feel free to contact us.

  • Other biomass
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Introduction to the electrostatic current version of μ-EXCEL

Calculating the current density within the conductor and the resistance between the electrodes.

In the electrostatic current version, we calculate the current density within the conductor and the resistance between the electrodes. It addresses a variety of themes such as thermistors, heating wires, printed circuit boards, and sensor electrodes. For more details, please refer to the "Introduction to 163 ex Electrostatic Current Version" on 【Analysis Know-How.com】. Key points are as follows: - The electrostatic current version checks the current distribution within the conductor. - It is a simple analysis, but there are various themes. - For thermistors, we examine the current density between the electrodes. - For heating wires in rear glass, we consider how to ensure an even current flow. - In printed circuit boards, we estimate heat generation from the current density in the wiring. - For sensor electrodes, we estimate the material of the lower layer based on resistance values.

  • Scientific Calculation and Simulation Software
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【μ-EXCEL 磁場単位のまとめ】

磁場の単位にはMKSA系とCGS系があります 磁束密度はテスラとガウス 磁界強度はA/mとエルステッド

磁場の単位をまとめます、MKSA系とCGS系とわかりにくいので条件設定や結果を見るときに注意下さい 詳細は【解析ノウハウ.com】の「153 磁場の単位」をご覧ください ポイントはこちら ・磁場の単位のまとめ ・μ-EXCELではCGS系を使います ・解析条件では電流密度(A/m2)を与えます ・材料追加でH(Oe)とB(Gauss)のBHカーブを定義 ・コンター表示のBの単位はGauss ・評価点・グラフのBの単位はGauss

  • Scientific Calculation and Simulation Software
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【μ-TM 誘導加熱の磁場・温度解析ソフト】

3次元誘導加熱解析ソフト、コイルの移動なども簡単に設定できます

解析に不慣れな設計・研究の方にも、手軽に操作できるソフトに仕上げています。簡単なコイル設定で、加熱コイルの移動もインターフェースで簡単に設定できます 詳細は【解析ノウハウ.com】の「063 μ-TMの紹介」をご覧ください ポイントはこちら ・誘導加熱・温度解析の専用ソフト ・加熱コイルの有限要素分割は不要 ・複雑なコイル形状やコイルの移動が簡単 ・ウィザード形式で解り易い条件設定 ・3次元誘導加熱解析をもっと身近に さらに ・お客様の問題に踏み込んだ、プロのコンサルティングをご提供 ・受託解析や、カスタム開発も、安価にご提供いたします

  • Scientific Calculation and Simulation Software
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Understanding phenomena with contour lines and vector representation on 【Analysis Know-How.com】.

The color represents size, and the vector indicates direction with an arrow! The color and length of the arrow also have meaning.

Contour lines represent size with color, and vectors represent direction with arrows. For details, please refer to "NO.021 Contour Lines and Vector Representation" on 【Analysis Know-How.com】. Key points are as follows: - Contour lines are also referred to as contour displays. - Temperature distribution and magnetic field strength are represented with color. - Vectors refer to arrows. - The direction of the magnetic field and the flow of heat are represented by the direction of the arrows. - The color and length of the arrows also have significance. - Additionally, there are representations using lines such as magnetic flux lines and equipotential lines.

  • Scientific Calculation and Simulation Software
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【解析ノウハウ.com】温度解析の伝達・輻射境界

温度解析モデルの最外周に外気との熱的境界を設定!温度が高いほど輻射境界の熱放出が大きくなります

外気への熱の流れには伝達と輻射の2つの境界条件があります 詳細は【解析ノウハウ.com】の「No.158 温度解析の伝達・輻射境界」をご覧ください ポイントはこちら ・温度解析モデルの最外周に外気との熱的境界を設定する ・伝達と輻射境界が考慮できる、対流境界は出来ない ・伝達境界では外気との温度差に比例した熱が流れる ・輻射境界では温度差の4乗に比例した熱が流れる ・切り替えスイッチについて ・温度が高いほど輻射境界の熱放出が大きい

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【Analysis Know-How.com】MRI Magnetic Shielding Room Design Software

With one button, execute calculations from mesh division! Complex analyses can be performed by anyone.

Would you like to conduct a simulation to check if the 5GAUSS line leaks from the room by yourself? We have developed software that is easy to operate, even for construction design personnel who are not familiar with analysis. By setting the room layout and the number of shields, you can simply press the execute button to output the 5GAUSS line diagram. By performing repeated calculations, you can consider the optimal shield placement and the minimum number of shields needed. For more details, please see "062 μ-MRI Introduction" on [Analysis Know-How.com]. Here are the key points: - Dedicated software for MRI shield rooms - Specification of room layout and the number of shield layers for walls and floors - One-button operation for mesh division and calculation execution - Instant display of the 5GAUSS line - Complex analyses made accessible to anyone Additionally: - We provide professional consulting that addresses your specific issues - We offer contract analysis and custom development at affordable prices.

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【Analysis Know-How.com】Creating Animations

You can also save GIF files! Animations can be created with time-based changes and movements in the analysis.

You can display animations of unsteady temperature analysis and changes in results during motor rotation, and you can also save them as GIF files. For details, please refer to "035 Creating Animations" on [Analysis Know-How.com]. Here are the key points: - Animations can be created for analyses with temporal changes and movements. - Creation of animations for unsteady temperature analysis. - Creation of animations for rotating motors. - GIF files can be created.

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【解析ノウハウ.com】磁場の単位のまとめ

材料追加でH(Oe)とB(Gauss)のBHカーブを定義!解析条件では電流密度(A/m2)を与えます

磁場の単位をまとめます、MKSA系とCGS系とわかりにくいので条件設定や結果を見るときに注意下さい 詳細は【解析ノウハウ.com】の「153 磁場の単位」をご覧ください ポイントはこちら ・磁場の単位のまとめ ・μ-EXCELではCGS系を使います ・解析条件では電流密度(A/m2)を与えます ・材料追加でH(Oe)とB(Gauss)のBHカーブを定義 ・コンター表示のBの単位はGauss ・評価点・グラフのBの単位はGauss

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【解析ノウハウ.com】インピーダンスの周波数特性

Z(インピーダンス)は、Z=RX/(R+X)Cとex静電場版から、Rはex静電流版で計算できます!

インピーダンスには周波数特性があります。等価回路では抵抗R部とキャパシタンスC部の並列回路で表現できます。交流場では周波数が低い時R部に電流が流れ、周波数が高くなるとC部に電流が流れます 詳細は【解析ノウハウ.com】の「NO.161 インピーダンスの周波数特性」をご覧ください ポイントはこちら ・インピーダンスには周波数特性があります ・導電率σから抵抗R(レジスタンス)が ・誘電率εから抵抗X=1/ωC(リアクタンス)が求まります ・Z(インピーダンス)は、Z=RX/(R+X) ・Cとex静電場版から ・Rはex静電流版で計算できます

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Introduction to the EX Eddy Current Version on 【Analysis Know-How.com】

Input the frequency of the excitation coil, the permeability and conductivity of the material! It can be defined as multiple conductors.

Calculates the magnetic field shielding effect due to eddy currents, as well as the distribution of eddy currents, heat generation distribution, and heat generation amount. When defined as multiple conductors, the eddy currents in each conductor can be calculated in a closed state. For details, please refer to "NO.049 ex Eddy Current Number Introduction" on 【Analysis Know-How.com】. Key points are as follows: - Input the frequency of the excitation coil, and the permeability and conductivity of the material. - Eddy currents are closed within the conductors. - Can be defined as multiple conductors. - As a result, eddy currents flow in each conductor, reducing losses. - Displays the magnetic field, eddy current, and heat generation distribution. - Outputs the total heat generation amount (loss amount).

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