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soft Product List and Ranking from 377 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

soft Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

  1. GEベルノバ・ソフトウェア・ジャパン Tokyo//software
  2. B7 Tokyo//software
  3. インフォコム サイエンスグループ Tokyo//software
  4. 4 ウェーブフロント 本社 Kanagawa//software
  5. 5 日本イーエスアイ Tokyo//software

soft Product ranking

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

  1. Multivariate analysis software 'Proficy CSense 2024' GEベルノバ・ソフトウェア・ジャパン
  2. 3D-LiDAR SLAM software '@mobi-SLAM' パナソニック アドバンストテクノロジー
  3. "Kubota Air Handling Unit" General Catalog クボタ空調
  4. 4 Multivariate analysis software "SIMCA" インフォコム サイエンスグループ
  5. 5 Lighting and optical analysis software "Lighting Simulator CAD" Camerium

soft Product List

91~120 item / All 1508 items

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2D MRI Shield Room Design Software / μ-Excel MRI Version

Medical architecture, for design and construction companies, detects the number of shields, equipped with MRI coils, and identifies the 5 Gauss line!

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】 - Dedicated package for architecture and construction companies - Selection of MRI coils for 1.5T and 3T - Only requires setting the room outline and the number of shielding materials - With just one calculation button, it goes from meshing to calculation to result display - Displays 5 Gauss lines *It can be introduced at a lower price compared to other analysis software. The academic version is even more affordable! *For more details, please request materials or view the PDF data from the download.

  • simulator
  • soft

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Vector magnetic characteristic analysis software for iron loss evaluation / μ-E&S [Technical documentation available]

Aiming for low loss, accurately measure the actual state of electromagnetic materials and understand and analyze their vector magnetic properties! Supporting low loss and high efficiency for EV motors and more.

This is an introduction to the next-generation iron loss evaluation method, the "E&S Model." Based on an evaluation method called vector magnetic characteristics, it has become possible to obtain a more detailed analysis of the loss distribution in steel materials compared to conventional methods. It can calculate high-precision magnetic fields, magnetic flux densities, and iron loss distributions that are not achievable with other software. 【Features】 - By considering vector magnetic characteristics, magnetic vectors can be calculated with high precision. - It can compute rotating magnetic fields and hysteresis. - It is designed as an easy-to-use tool specifically for iron loss evaluation. - It includes permanent magnet excitation functionality and torque calculation functionality. *For more details, please contact us or download the PDF.

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Vector Magnetic Characteristic Iron Loss Analysis Software 'μ-E&S'

Supports low loss and high efficiency of EV motors! Capable of analyzing rotating magnetic fields and hysteresis.

"μ-E&S" is a loss analysis software that can simulate the distribution of magnetic flux density, magnetic field, and iron loss based on actual measurements of motor laminated iron cores. By analyzing vector magnetic characteristics, it can identify areas where iron loss occurs significantly, making it a useful tool for the miniaturization, lightweighting, low loss, and high efficiency of motors. 【Features】 ■ High-precision calculation of magnetic vectors ■ Capable of calculating rotating magnetic fields and hysteresis ■ Equipped with permanent magnet excitation function and torque calculation function *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Vector Magnetic Characteristic Analysis 【Analysis Case Study Document 2】

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

This document presents an analysis example using a model of isotropic electromagnetic steel sheets shaped into a ring. It provides detailed explanations on various topics, including the ring model voltage source (differences in steel materials), magnetic field distribution, and iron loss distribution results. [Contents] ■2.1 Analysis Model and Objectives ■2.2 Analysis Conditions and Calculation Time ■2.3 Magnetic Field Distribution and Iron Loss Distribution Results ■2.4 X-Direction Hysteresis Curve Results ■2.5 Y-Direction Hysteresis Curve Results ■2.6 Current Waveform Results *For more details, please refer to the PDF document or feel free to contact us.

  • PM motor
  • soft

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Vector Magnetic Characteristic Analysis 【Analysis Case Study 4】

A basic analysis example aimed at the iron loss distribution of SPM (Surface Permanent Magnet Motor) is presented!

This document presents a basic analysis example aimed at the iron loss distribution of SPM (Surface Permanent Magnet) motors. It provides a detailed explanation of the analysis model and objectives, as well as the magnetic flux lines, magnetic field distribution, and iron loss distribution results. [Contents] ■4.1 Analysis Model and Objectives ■4.2 Analysis Conditions and Calculation Time ■4.3 Magnetic Flux Lines, Magnetic Field Distribution, Iron Loss Distribution Results ■4.4 Results of Inclination Angle θB and Aspect Ratio α Distribution ■4.5 X-Direction Hysteresis Curve Results ■4.6 Y-Direction Hysteresis Curve Results ■4.7 Lissajous Waveform Results ■4.8 Current Waveform Results *For more details, please refer to the PDF document or feel free to contact us.

  • PM motor
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP 1

[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 "Step 1 Starting Excel." Using the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will demonstrate the analysis based on a macro-enabled workbook prepared for each analysis theme, showing that all input data and result information fit on the sheets. ▽▼▽ 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

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP6

[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 6: Adding Materials" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, we will introduce how to add the BH curve for magnetic materials to the material sheet and freely reference the material database. ▽▼▽ 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 Adding Materials Step 7 Display Results Step 8 Create Graphs Step 9 Save As Step 10 Surface Flux Calculation Step 11 Torque Calculation

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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The operation is simple, check it out in the video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP9

[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 9: Save As" - taking the "Magnetic Torque Version" of the "μ-Excel" series as an example, by saving with a name such as the date, all input and output data can be completed in a single Excel file, making data organization easy. ▽▼▽ 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

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Easy operation, check with a video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP10

[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 10 Surface Magnetic Flux Calculation" - taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the flow of surface magnetic flux evaluation created by the magnetized magnets unique to the magnetization torque version. ▽▼▽ Please be sure to check out other videos as well! ▼▽▼ 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 Magnetic Flux Calculation Step 11 Torque Calculation

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Easy operation, check with video! 'Heat, Structure, and Electromagnetic Field Analysis Software' STEP11

[Excel-based simulation software] Check out the operation feel in the video now! Free trial download 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 experience. You can check the user experience through videos for each work step! The video available here is "Step 11 Torque Calculation" - taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the torque calculation after incorporating magnets magnetized into the motor, which is unique to the magnetization torque version (further expanding into motor characteristic analysis). ▽▼▽ 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 Magnetic Flux Calculation ▼Step 11 Torque Calculation

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Video site "Analysis Know-How.com"

Introducing the usage and analysis know-how of the thermal, structural, and electromagnetic field analysis software "μ-EXCEL." Easily searchable and viewable from your smartphone!

"Analysis Know-How.com" is a dedicated site that introduces know-how to support the introduction, utilization, and application of the thermal, structural, and electromagnetic field analysis software "μ-EXCEL." Each video is compact, lasting about 1 to 2 minutes, allowing you to easily check the topics you want to know during your spare time using your smartphone or other devices. 【What is "μ-EXCEL"?】 It is software that operates on Excel and allows for full-scale simulations with simple operations. Versions are available for electromagnetic force, motor characteristics, heat conduction, and more. We also offer a subscription service that can be used from one month. *For more details, please check the link below. Feel free to contact us as well.

  • simulator
  • soft

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Analysis software "μ-Excel" <Available for purchase at Mutech Rakuten Market>

Familiar usability based on Excel. Full-scale thermal, structural, and electromagnetic field analysis available for subscription at a low price. *Special benefits included.

"μ-Excel" is an affordable thermal, structural, and electromagnetic analysis software. It operates on Excel, allowing for professional simulations with a familiar interface. The software is structured in a series based on different analysis themes, each equipped with dedicated macros for easy use. At the newly opened Mutech Rakuten store, you can purchase the subscription version of this product. 【Features】 ■ Input and output data are stored in sheets, allowing for flexible data processing. ■ Implements necessary tools for finite element analysis, such as modelers and meshers. ■ Easy condition setting, with results obtainable in just a few minutes. ■ Adopts 2D or axisymmetric finite element methods. ■ Equipped with DXF import functionality and a material database feature. *For more details, please download the PDF or feel free to contact us. ★ We are celebrating the grand opening of the Mutech Rakuten store! ★ - Eligible product: μ-Excel Subscription New 3-month License - Benefit: 2000 yen OFF coupon - Period: February 8, 2022 (Tuesday) 10:00 - March 1, 2022 (Tuesday) 9:59

  • simulator
  • soft

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【解析ノウハウ.com】静磁場解析の境界条件

磁場解析では物体の周りに空間領域が必要!モデル化範囲を決めるときは境界条件に注意

解析領域の最外周で、磁束が垂直になる、平行になるの2つの境界条件があります 詳細は【解析ノウハウ.com】の「NO.156 静磁場解析の境界条件」をご覧ください ポイントはこちら ・磁場解析では物体の周りに空間領域が必要 ・モデルの最外周には境界条件が必要 ・磁束が垂直になるのが自然境界条件 ・平行になるのが固定境界条件 ・μ-EXCELでは自然境界条件に自動設定 ・モデル化範囲を決めるときは境界条件に注意

  • Other motors
  • soft

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Analysis Know-How.com Evaluation Points and Graph Display

You can freely perform calculations in Excel! The calculation results are interpolated at arbitrary coordinates for each node and element.

As a result of processing, the values of arbitrary coordinates are stored in cells, and graphs can also be displayed. For details, please refer to "NO.022 Evaluation Points and Graph Display" on 【Analysis Know-How.com】. Key points are as follows: - Results of arbitrary evaluation point coordinates are stored in cells on the evaluation sheet. - These results are displayed in graphs. - Excel calculations can be freely performed. - Calculation results are interpolated at arbitrary coordinates for each node and element.

  • Other analyses
  • soft

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【解析ノウハウ.com】コンター表示を見やすく

小さい領域は外形表示を非表示に!表示分割数、外形表示の有無等を変えると評価しやすくなります

コンター表示の最大最小値指定、表示分割数、外形表示の有無等を変えると評価しやすくなります 詳細は【解析ノウハウ.com】の「No.103 コンター表示を見やすく」をご覧ください ポイントはこちら ・コンターは等高線表示のこと ・最大最小値を指定して、基準値以上の領域を見つける ・最大最小値を指定して、パラメタ解析比較を行う ・表示分割数を小さくして、値を読み取る ・小さい領域は外形表示を非表示に

  • simulator
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Introduction to μ-EXCEL Electrostatic Current Version on 【Analysis Know-How.com】

Estimate heat generation from current density in wiring on printed circuit boards! It's a simple analysis, but there are various themes.

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

  • Other analyses
  • soft

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Can the resistance value R be determined?

In the electrostatic version, R is calculated from the heat generation energy! In the two-dimensional model, the depth dimension is specified for calculation!

In the electrostatic current version, we calculate the current distribution flowing through the conductor between the electrodes. From the current distribution, we can derive the amount of heat generated, and at the same time, we can also calculate the resistance value R between the electrodes. Once the resistance R is obtained, it can be used for circuit calculations, etc. For more details, please refer to "NO.162 Can the resistance value be determined?" on 【Analysis Know-How.com】. Key points are as follows: - We want to determine the resistance R between electrodes with a complex structure. - It can be calculated from the heat loss energy of the current flowing through the conductor. - In the electrostatic current version, R is calculated from the heat energy. - In a two-dimensional model, the depth dimension is specified for calculation. - If R is determined, it can be used for circuit calculations.

  • Other analyses
  • soft

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【解析ノウハウ.com】ex静電場版の紹介

誘電体・電極で構成、電荷も設定可!キャパシタンスを求める事も出来ます!

静電場版では誘電体と電極による電位・電場分布を求めます、電荷を指定する事も出来ます。キャパシタンスを求める事も出来ます。詳細は【解析ノウハウ.com】の「NO.025 EX静電場版の紹介」をご覧ください ポイントはこちら ・静電場分を見る ・誘電体・電極で構成、電荷も設定可 ・等電位線、電場コンター・電場ベクトル表示 ・電場・電位グラフ出力 ・キャパシタンス算出

  • Other analyses
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【解析ノウハウ.com】キャパシタンスは求まるの?

平行平板コンデンサのキャパシタンスCは理論式がある!軸対称モデルも計算できます!

静電場版でキャパシタンスCが算出できます。静電場版では誘電体に蓄えられた電気エネルギーからCを算出しています。任意の形状・複合誘電体のキャパシタンスを求める事が出来ます。詳細は【解析ノウハウ.com】の「NO.142 キャパシタンスは求まるの?」をご覧ください ポイントはこちら ・平行平板コンデンサのキャパシタンスCは理論式がある ・誘電体に蓄えられる全電気エネルギーからも算出できる ・静電場版はエネルギーからCを算出 ・2次元モデルでは奥行き寸法を指定して計算 ・軸対称モデルも計算できる

  • Other analyses
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Steady-state thermal analysis sets heat capacity to zero!

In the thermal conduction module, it is possible to calculate the time variation of temperature! If you only want to know the temperature distribution, set the heat capacity to zero for steady-state thermal analysis!

In the heat conduction module, unsteady heat analysis is performed. You can track how the temperature changes over time. If you only want to know the final temperature distribution, you can set the heat capacity to zero and perform steady-state heat analysis. For more details, please refer to "NO.009 Steady-State Heat Analysis Requires Setting Heat Capacity to Zero" on 【Analysis Know-How.com】. Here are the key points: - The heat conduction module allows for the calculation of time-dependent temperature changes (unsteady). - The material properties provided are thermal conductivity and heat capacity. - Thermal conductivity measures how easily heat is transferred, with units of W/mK. - Heat capacity measures how easily temperature increases, with units of J/m³K. - If you only want to see the final temperature, you can perform steady-state calculations. - This can be done by setting the heat capacity to zero. - The heat transfer handbook is recommended.

  • Other analyses
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【AnalysisKnowHow.com】Magneto-sputtering analysis available in the trial version!

The key is the magnitude of the X component at the position where the Y component crosses zero! It can be done in about 10 minutes from modeling to result display.

The magnetic field distribution analysis of magnetron sputtering was conducted using an axisymmetric model. From the distribution of the magnetic flux density components on the target, we estimate the erosion. The magnitude of the X component at the position where the Y component crosses zero is crucial. This process can be completed in about 10 minutes, from modeling to result display. Furthermore, it can be done with the free trial version of the static magnetic field! Please give it a try. For more details, please refer to NO.020 on "Analysis Know-How.com." You can download the trial version from the sample software on the special site below: https://premium.ipros.jp/mutec/product/detail/2000623620/?hub=148+2991245

  • Other analyses
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How to specify flow rate with an equivalent heat transfer coefficient!

Specify the flow rate of the cooling pipe in temperature analysis with an equivalent heat transfer coefficient! The calculation formula has been organized!

There are times when we evaluate the effect of cooling pipes through temperature analysis. Originally, this calculation requires a high-level analysis function known as "thermal fluid analysis." If such precision is not required, I would like to evaluate it simply using approximate calculations. Therefore, I have considered a method to approximate the flow velocity of the cooling pipes with an equivalent heat transfer coefficient. I have organized the formulas for calculating the heat transfer coefficient of cooling pipes from the literature, and by providing the flow velocity, I can calculate the equivalent heat transfer coefficient. The outlet temperature can also be estimated. Please refer to No. 015 on "Analysis Know-How.com."

  • Other analyses
  • soft

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【Analysis Know-How.com】Electromagnetism is difficult, so I took a quick look!

You can feel like you understand something a little without taking much time! Please take a look during your spare moments!

MUTECH is a company that provides simulation services centered around electromagnetism. However, for many engineers, electromagnetism can be a challenging topic. What are Maxwell's equations? Divergence, rotation, and vector operations are all so confusing! So, first, we took a rough look at it; this way, you can feel like you understand something without spending too much time. Please take your time to learn more thoroughly along this point! On the analysis know-how website, we have uploaded a video titled "Into the World of Electromagnetic Simulation." Please take a look during your spare time! Additionally, MUTECH offers: - Professional consulting that delves into our clients' issues - Affordable contract analysis and custom development services.

  • Other analyses
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[Analysis Know-How.com] μ-EXCEL Analysis Know-How Video Site Launched

The video contains compact content of about 1 to 2 minutes! You can easily check the topics you want to know using your smartphone or other devices.

"Analysis Know-How.com" is a website that collects videos introducing the benefits of the analysis software μ-EXCEL, provided by Mutech, which is easy, fast, and suitable for initial assessments, along with analysis know-how. The videos are compact, lasting about 1 to 2 minutes, and allow for filtered searches by keywords and categories. You can easily check the items you want to know using your smartphone during your spare time. On the "Home" menu, you can find a list of know-how collections. By clicking the "View Details" button, you can view the key points of the know-how and the videos. In the "Category" menu, you can narrow down by genre or series. The "Keyword Search" allows you to further refine related videos. In the "Blog," we will introduce updated and additional videos as they become available. μ-EXCEL is available as a subscription service for 9,800 yen per month (excluding tax). Additionally, we offer: - Professional consulting that delves into your issues. - Contract analysis and custom development at affordable prices. For more details, please feel free to contact us.

  • Other analyses
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Electromagnetic Field Analysis Software 【μ-EXCEL Magnetization Torque Version】

"Excel-based simulation software" Check out the operation feel in the video now! Free trial download is also available!

"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 10 Surface Magnetic Flux Calculation" - taking the "Magnetization Torque Version" of the "μ-Excel" series as an example, we will introduce the flow of evaluating the surface magnetic flux created by the magnetized magnets unique to the magnetization torque version. ▽▼▽ 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 Magnetic Flux Calculation Step 11 Torque Calculation

  • Magnetic field analysis/electromagnetic wave analysis
  • soft

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Introduction to Desktop Structural Analysis Program

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

【Features】 ○ A structural analysis solution that combines the pre- and post-processor "Simcenter Femap" with the analysis solver "Simcenter Nastran." ○ The entire process of creating analysis models, performing analyses, and displaying results from shape data created in 3D-CAD is realized in one software on a single PC. ○ High operability. ○ Easy to implement pricing. ◎ For more detailed information, please refer to the catalog or contact us directly.

  • Structural Analysis
  • soft

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Case study: 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 Summary** ■Product Name: Simcenter Femap with 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 plating, 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 close to the actual structure and conducted a strength analysis of the entire hull model. - The mesh generation feature of Simcenter Femap allows for the creation of complex hull FEM models. - Creation and management of loads such as static/dynamic water pressure and cargo conditions. - Improved computational efficiency through continuous analysis of multiple load cases. - The parallel processing capability of Simcenter Nastran enables analysis of large-scale models. □ For other features and details, please refer to the catalog.

  • Other analyses
  • soft

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[Example] Rotor Dynamics

Introducing the rotational system analysis capabilities of Simcenter Nastran!!!

**Case Overview** ■Product Name: Simcenter Nastran ■Analysis: Eigenvalue analysis, linear transient analysis, frequency response analysis ■Industry: Mechanical components Stable operation is extremely important for various rotating machinery such as turbines, jet engines, generators, fluid equipment, and electric products, and vibration prevention is an essential challenge. In this example, we will introduce the rotating system analysis capabilities of Simcenter Nastran using a representative model of rotor dynamics. □ For other features and details, please refer to the catalog.

  • Other analyses
  • soft

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[Example] Rotating Dynamics Eigenvalue Analysis

We conducted a modal complex eigenvalue analysis at the specified rotation speeds to investigate the whirling modes due to rotation, changes in damping, and critical speeds.

**Case Overview** ■Product Name: Simcenter Nastran ■Analysis: Modal Analysis of Natural Frequencies ■Industry: Other The vibration characteristics of rotating bodies exhibit whirl motion due to centrifugal force, tilt vibrations, and gyroscopic effects as the axis rotates, resulting in changes in eigenvalues. When the direction of rotation and whirl motion align, it is referred to as forward whirl; when they are opposite, it is called backward whirl. When the rotational speed matches the eigenvalue of the axis, the amplitude of the whirl increases, leading to instability in the rotating system and potential damage to components. The speed at this point is referred to as the critical speed. In this analysis, modal complex eigenvalue analysis was conducted for specified rotational speeds to investigate the whirl modes induced by rotation, changes in damping, and critical speeds. □ For other functions and details, please refer to the catalog.

  • Other analyses
  • soft

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Rotating body and bearing coupled analysis software 'MADYN2000'

We lead in the analysis of rotating bodies using specialized software for fluid film bearings, magnetic bearings, and coupled analysis with bearings, as well as optimization CAE analysis techniques.

MADYN2000 is a finite element software developed by experts in bearings for coupled analysis of rotating bodies and bearings. It allows for smooth performance analysis of rotating bodies, optimization analysis of various parameters of bearings, and coupled analysis with active magnetic bearings and their PID control systems. The calculation of support stiffness for rolling bearings uses software and libraries from Swiss company MESYS AG. 【Features】 ⇒ User-friendly with a sophisticated interface. ⇒ Easy model creation with copy and paste functions for input data. ⇒ Smooth unit selection and conversion with unit assistance features. ⇒ Developed on the MATLAB platform, facilitating collaboration with experimental data processing. Executable analysis functions (rotating bodies: lateral and torsional vibrations) - Support load analysis - Complex eigenvalue analysis at rated speed - Frequency response and unbalance analysis - Transient response and speed-up analysis - Parameter variable analysis → Campbell diagram → Critical speed map → Sensitivity analysis of support stiffness and dampers → Sensitivity analysis of coupling stiffness

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  • others
  • soft

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