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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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Free membership registrationμ-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!
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Free membership registrationThis 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.
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Free membership registrationThis 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.
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Free membership registrationIon 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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Free membership registrationIt is ideal for the design and manufacturing sites of high-frequency heating, quenching, and annealing.
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