Electromagnetic field analysis software Product List and Ranking from 4 Manufacturers, Suppliers and Companies

Electromagnetic field analysis software Product List

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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

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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

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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

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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

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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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[Information] Altair's Electromagnetic Field Analysis Solution

Introducing the creation of mathematical models that define objectives, including antenna design utilizing machine learning!

This document provides information about our "Electromagnetic Field Analysis Solutions." We introduce "Radiated Emission Analysis Considering PCBs," which allows for high-speed electromagnetic field analysis including printed circuit boards, and "Radio Wave Propagation Cases Utilizing PLATEAU Data," which evaluates and examines the radio wave environment in actual urban areas. Additionally, we also cover "In-Vehicle Connectivity," which allows for the simulation of connectivity solutions and services. [Contents] ■ Radiated Emission Analysis Considering PCBs ■ Radio Wave Propagation Cases Utilizing PLATEAU Data ■ In-Vehicle Connectivity ■ Antenna Design Leveraging Machine Learning *For more details, please download the PDF or feel free to contact us.

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[Analysis Case] Electromagnetic Field Analysis of Polyethylene-Filled Waveguide

We will introduce a case where the reflection coefficient obtained as a result of analysis was compared with the theoretical value!

When a dielectric such as polyethylene is filled in a rectangular waveguide, electromagnetic wave reflection occurs at the boundary with air. Considering a system where polyethylene is filled in part of a rectangular waveguide of standard WRJ-5, the distribution of electromagnetic waves was analyzed using the finite element method. As a result, it was found that the absolute value of the electric field on the polyethylene side is constant, indicating that there is no reflection at the output surface (the impedance boundary is correctly set). [Case Summary] ■ Analysis Module: PHOTO-WAVEjω ■ Analysis Results - It can be seen that there is no reflection at the output surface since the absolute value of the electric field on the polyethylene side is constant (the impedance boundary is correctly set). - In the calculation of the scattering matrix, the characteristic impedances of air and polyethylene were set as ZAir = 279.052Ω and ZPE = 156.987Ω. *For more details, please refer to the related links or feel free to contact us.

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[Analysis Case] Electromagnetic Field Analysis of Wireless Power Transfer (Electromagnetic Induction Method)

Introducing an analysis case of wireless power transmission using electromagnetic induction method.

In recent years, research and development have been conducted on wireless power transmission technology that transmits power wirelessly. First, as a basic model, we consider two coils as shown in the left diagram. The transmitting coil and receiving coil are arranged vertically, and circuit elements are connected to the coils. On our company's website, we introduce analysis examples of wireless power transmission using electromagnetic induction. For more details, please refer to the related links below. 【Case Overview】 ■ Software Used: PHOTO-EDDYjω ■ Analysis Results ・Self Inductance: 358.7 [uH] ・Mutual Inductance: 38.4 [uH] *For more details, please refer to the related links or feel free to contact us.

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[Analysis Case] Magnetic Field Analysis of Concentrated Winding IPM Motor

The electromagnetic steel sheet uses a B-H curve equivalent to 35A300! The benchmark model adopts a concentrated winding stator.

IPM motors have a structure in which magnets are embedded in the rotor, allowing for the utilization of both magnetic torque and reluctance torque, making them widely used as high-efficiency motors. In this analysis, we examined the induced voltage in an unloaded state and the torque waveform under load conditions. The magnets are input with a magnetization vector, and the coil current is input as current density. The current density is set with a time point sequence of a three-phase AC waveform. By setting the rotational speed at the nodes that make up the rotor, we take rotation into account. 【Case Overview】 ■ Analysis Type: 2D Nonlinear Magnetic Field Analysis ■ Software Used: PHOTO-MAG *For more details, please refer to the related links or feel free to contact us.

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Heat and electromagnetic field analysis software [μ-EXCEL free demo version - free trial version]

Download now! [Easy and fast initial assessment heat and electromagnetic field analysis software using Excel] - Can be easily used by on-site personnel.

The voices from the field surely want to quickly confirm various ideas first! - Can we verify this idea using analysis software? - But will it be manageable on-site? Should we request help from a specialized department? - Even if we implement it, don't we need to plan a budget? - Isn't it necessary to have experts who can interpret the results? For those people, we recommend the μ-EXCEL series! - A concept that simplifies operations as much as possible to deliver quick results! - Subscription for 9,800 yen per month, with applications on a monthly basis, and resuming is also okay! - The video site of analysisknowhow.com is full of hints! - We also offer professional consulting, analysis, and development services! ▽ Download the [Sample Software (Free)] at the bottom of the page now! ▽ * Various themes can be analyzed ◯ Temperature analysis of heating and cooling circuits ◯ Temperature analysis of high-frequency induction heating coils ◯ Motor characteristic analysis ◯ Magnetization and torque analysis of motors ◯ Suction force analysis of actuators ◯ Electric field analysis created by electrodes and charges ◯ Current distribution analysis in conductors ◯ Strain and thermal stress analysis of structures ◯ Wireless power transmission, and much more * Usage achievements - Over 200 companies in various fields - Improvements and developments tailored to customer requests have also been implemented.

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電磁界解析ソフト 【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

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Electromagnetic Field Analysis Software 【μ-EXCEL Mutech Rakuten Market Store】

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

"μ-Excel" is an affordable software for thermal, structural, and electromagnetic field analysis. It operates on Excel, allowing for professional simulations with a familiar user experience. It is structured in a series based on analysis themes, with dedicated macros for each, making it easy to use. You can purchase the subscription version of this product at the newly opened Mutech Rakuten store. 【Features】 ■ Input and output data are stored in sheets, allowing for flexible data processing. ■ Implements necessary tools such as modelers and meshers for finite element analysis. ■ 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! ★ ・Target product: μ-Excel Subscription New 3-Month License ・Benefit: 2000 yen OFF coupon ・Period: February 8, 2022 (Tuesday) 10:00 to March 1, 2022 (Tuesday) 9:59

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Electromagnetic Field Analysis Software 【μ-EXCEL Basics of Electromagnetic Field Analysis / Materials】

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 read it. 【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. - By clicking the "View Details" button, you can access know-how points and videos. - In the "Category" menu, you can 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.

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Electromagnetic Field Analysis Software 【μ-MRI Magnetic Shielding Room Design Software】

The "μ-MRI" magnetic shield room design software allows you to execute calculations from mesh division with just one button! Complex analyses that are usually difficult 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 those 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 drawing. By performing repeated calculations, you can consider the optimal shield placement and the minimum number of shields required. For more details, please visit [Analysis Know-How.com] and check "062 μ-MRI Introduction." Here are the key points: - Dedicated software for MRI shield rooms - Specification of room layout and number of shield layers for walls and floors - One-button operation for mesh division and calculation execution - Instant display of the 5GAUSS line - Complex analysis made accessible to anyone Additionally: - We offer professional consulting that delves into your issues - We provide contracted analysis and custom development at a low cost.

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Electromagnetic Field Analysis Software 【μ-E&S Vector Magnetic Property Analysis / Development Case Studies】

A small high-power motor developed by Professor Masato Enokizono of the Vector Magnetic Characteristics Research Institute, capable of continuous operation at 10,000 RPM with a diameter of approximately 10 cm and air cooling.

Introduction of the article published in the March 22nd edition of the Nikkan Kogyo Shimbun. The development is centered around Professor Masato Enokizono (Specially Appointed Professor at Nippon Bunri University, Emeritus Professor at Oita University, and Visiting Professor at RWTH Aachen University), who devised the "Vector Magnetic Property Analysis" technology. *The article can be found at the following links: 1) Vector Magnetic Property Technology Research Institute http://www.vector-magtec.jp/index.html 2) Mutec HP news https://www.mutec.org/ - Induction motors are used across various industries; they are simple, robust, resistant to harsh environments, low-cost, and maintenance-free. - Increasing output requires larger sizes, or high-speed rotation in smaller sizes, but heat generation in the iron core is a challenge. - Currently, electromagnetic steel sheets are about 300μm thick; thinning them helps suppress heat generation, and this time we have invented practical 80μm steel sheets. - Thin steel sheets are difficult to laminate, so we will mass-produce them using a winding lamination method. A dual-type rotor that sandwiches from both sides will further increase torque. - EV synchronous motors generate a lot of heat in the coils, and magnets are sensitive to heat, necessitating a water cooling system. The developed induction motor uses air cooling, and low output can be integrated into four wheels. - A new choice that overturns the common belief that "induction motors are impossible!" The challenges of increasing speed involve coil winding, processing ultra-thin electromagnetic steel sheets, and low friction in the rotating shaft. We aim for practical application through joint research with specialized technology manufacturers.

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