Analysis software Product List and Ranking from 43 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

Analysis software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. JIPテクノサイエンス Tokyo//Information and Communications
  2. 応用計測サービス Saitama//Other construction industries
  3. ミューテック Kanagawa//Facility Design Office
  4. 4 日本イーエスアイ Tokyo//others
  5. 5 ジツタ 東京営業所 Tokyo//Information and Communications

Analysis software Product ranking

Last Updated: Aggregation Period:Sep 24, 2025~Oct 21, 2025
This ranking is based on the number of page views on our site.

  1. General-purpose linear and nonlinear structural analysis system "DIANA" JIPテクノサイエンス
  2. GNSS measurement system "ARUQ" ジツタ 東京営業所
  3. Pressure Meter Testing Device "AUTO LLT2" 応用計測サービス
  4. Nice seal Type B, Type D, Type E (strip type) 応用計測サービス
  5. 4 Rust Degree Automatic Assessment Solution "AIJO Check Rust" COMSYS JOHO SYSTEM Corporation

Analysis software Product List

421~435 item / All 787 items

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Electromagnetic Field Analysis Software PHOTO-Series Product Lineup

Fast calculation speed enables practical and full-fledged "electromagnetic field analysis" on a computer.

The PHOTO series is a general-purpose electromagnetic field analysis software developed to simulate electromagnetic phenomena utilized in a wide range of fields using computers. Although electromagnetic phenomena can be broadly categorized, the application areas of electromagnetism are extensive, and various numerical analysis methods have been devised. Furthermore, in real product design, it is necessary to evaluate not only the electromagnetic field but also various derived phenomena. To address these issues, the PHOTO series adopts the following methods: - Provides optimal solvers tailored to various application areas, from high-frequency electromagnetic waves to low-frequency electric and magnetic fields. - Each solver is composed of program modules for different analysis methods, allowing the selection of numerical analysis techniques suitable for the problem at hand. - Enables coupled analysis execution, such as electromagnetic fields and heat conduction, electromagnetic forces and structural deformation, and vibrations, through combinations of modules. - Offers a product configuration that allows the selection of efficient modules according to various problems. Our company provides these modules as products combined with standard applications in mind. If there is a request to build a special analysis system, we also accommodate customization based on these module groups.

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3D Electromagnetic Wave Analysis Software (Frequency Response) WAVEjω

3D Electromagnetic Wave Frequency Response Analysis Software (High Frequency) PHOTO-WAVE jω

3D high-frequency electromagnetic field analysis software using the finite element method (high-frequency electromagnetic field simulator) with a module for frequency response analysis. ■□■Features■□■ ■Since it is integrated with the PHOTO series pre- and post-processing, data creation, analysis, and result processing can be performed as a series of operations. ■It is integrated with other PHOTO series modules, allowing for easy coupled analysis, such as deriving temperature distribution from heat generation obtained through electromagnetic field analysis. ■A revolutionary speedup has been achieved by combining the edge element method and ICCG method. Therefore, 3D electromagnetic wave analysis (high-frequency analysis) can be performed on a personal computer. ■Since it uses the finite element method, it is suitable for analyzing closed regions, especially those involving multiple media. ■When coupled with the thermal conduction analysis software PHOTO-THERMO, it is possible to calculate temperature distribution from heat generation within dielectrics.

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■Magnetic field analysis software (considering dynamic magnetic fields, motion, and equations of motion) MOTION

Dynamic magnetic field analysis (dynamic magnetic field simulator for motion and motion equations)

Analysis of transient response in 2D axisymmetric and 3D dynamic magnetic fields using the finite element method considering motion (Dynamic Magnetic Field Simulator) ■□■Features■□■ ■Since it is integrated with other PHOTO series modules, coupled analysis, such as obtaining temperature distribution from heat generation calculated by electromagnetic field analysis, can be easily performed. ■A revolutionary speedup has been achieved through the combined use of edge element method and ICCG method (dozens of times faster than conventional finite element methods). ■The use of the finite element method ensures stable solutions, making it safe for beginners to use. ■By incorporating a slide interface for 2D, axisymmetric, and 3D problems, the motion of objects can be easily handled. ■The motion of objects due to electromagnetic forces can be calculated in real-time by solving the equations of motion.

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■Magnetic Field Analysis Software (Dynamic Magnetic Field / Transient Response) EDDY

EDDY: Transient response analysis software for two-dimensional axisymmetric and three-dimensional dynamic magnetic fields using the finite element method.

The software for dynamic magnetic field analysis using the finite element method (magnetic field simulator) performs static analysis and transient response analysis. It can handle three-dimensional, two-dimensional, and axisymmetric problems. ■□■Features■□■ ■Since it is an integrated pre-post processor dedicated to the PHOTO series, data creation, analysis, and result processing can be performed as a series of operations. ■It is integrated with other PHOTO series modules, allowing for easy coupled analysis, such as obtaining temperature distribution from heat generation determined by electromagnetic field analysis. ■A revolutionary speed-up has been achieved through the combined use of edge element method and ICCG method (dozens of times faster than conventional finite element methods). ■The use of the finite element method ensures stable solutions, making it safe for beginners to use. ■When coupled with the thermal conduction analysis software PHOTO-THERMO, it is possible to calculate temperature distribution from Joule heating within conductors.

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■Magnetic Field Analysis Software (Dynamic Magnetic Field / Frequency Response) EDDYjω

Frequency response analysis software for dynamic magnetic fields using the finite element method EDDY jω

Perform frequency response analysis Finite element method magnetic field analysis software (magnetic field simulator) ■□■Features■□■ ■Since it is integrated with the PHOTO series dedicated pre- and post-processing, data creation, analysis, and result processing can be performed as a series of operations. ■It is integrated with other PHOTO series modules, allowing for easy coupled analysis, such as deriving temperature distribution from heat generation obtained through electromagnetic field analysis. ■A groundbreaking speedup has been achieved through the combined use of edge element method and ICCG method (dozens of times faster than conventional finite element methods). ■When a sine wave input is used and linear approximation holds, results can be obtained in a single calculation without the need for time-stepping calculations. ■Since it uses the finite element method, the solutions are stable, making it easy for beginners to use with confidence. ■Coupled calculations with thermal conduction analysis, stress analysis, and fluid analysis are easy to perform.

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3D stress analysis software (frequency response) ELASjω

Finite element method software (simulator) for elastic vibration analysis performing frequency response analysis.

3D Frequency Response Analysis Software (Simulator) ■□■Features■□■ ■ Uses the ICCG method, allowing for fast calculations and analysis on a personal computer. ■ Utilizes the finite element method, ensuring stable solutions, making it user-friendly even for beginners. ■ Capable of coupled calculations with electromagnetic field analysis. ■ Can simultaneously perform vibration analysis and sound field analysis.

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3D Stress Analysis Software (Transient Response) ELAS

Finite element method software (simulator) for elastic stress analysis conducting transient response analysis.

■ Features ■ ■ Uses the ICCG method, allowing for fast calculations and analysis on a computer. ■ Utilizes the finite element method, ensuring stable solutions that can be safely used by beginners. ■ Capable of coupled calculations with electromagnetic field analysis.

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[Case Study] Electromagnetic Wave Analysis of a Waveguide Using a Slide Interface

Analysis of applying a slide interface to a non-connected mesh.

The electromagnetic wave analysis of the waveguide using the slide interface assumes that the boundaries of the analysis target are surrounded by perfect conductors, and calculates the electromagnetic field inside the waveguide formed by the electric field input from the lower convex part. For more details, please download the catalog.

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[Analysis Case] Analysis of a Microwave Oven

Below is an example of the analysis of electromagnetic waves inside a microwave.

The number of nodes in the microwave analysis is 2494, and the number of elements is 1956. The analysis conditions are as follows: relative permittivity: real part: air 1, dielectric 40; imaginary part: air 0, dielectric -5; relative permeability: real part: air 1, dielectric 1; imaginary part: air 0, dielectric 0. For more details, please download the catalog.

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[Case Study] Calculation of Electromagnetic Force in the Plunger Model

The analytical model for calculating electromagnetic force in the plunger model was set as a three-dimensional model.

The calculation of electromagnetic force in the plunger model was performed for the plunger model proposed by the Institute of Electrical Engineers for electromagnetic force verification, calculating the electromagnetic force acting on the center pole when current flows through the coil, as well as the magnetic flux density in various parts of the model. For more details, please download the catalog.

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[Case Study] Analysis of Actuators

The subject of analysis is the actuator.

The analysis of the actuator involves examining the forces that occur between the driver and the stator when the driver, composed of magnets and magnetic materials, is shifted axially by a differential z [mm]. For more details, please download the catalog.

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Analysis Case: Analysis of Capacitance

This shows an example of capacitance analysis through electric field analysis between the iron core and the coil.

The analysis of capacitance is shown below with shape data created from planar elements of the outer surfaces of each component. The number of nodes is 1112, and the number of elements is 1064. Since the boundary element method is used, a mesh for air is not required. The analysis calculations were performed using the electric field analysis software PHOTO-VOLTBM. For more details, please download the catalog.

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[Analysis Case] Electric Field Analysis Between Electrodes

The electric field analysis between the electrodes was conducted using an axisymmetric model.

We analyzed the electric field distribution between the anode and cathode when 1V and -1V were applied, respectively, in a vacuum. It is assumed that the potential does not vary with time. The analysis module used is PHOTO-VOLT. Since the electrodes are conductors, the moment the potential is applied, charges move to the surface of the electrodes. Therefore, the potential is set at the surface of the electrodes, and modeling the interior of the electrodes is no longer necessary. (Only the space in the vacuum will be modeled.) For more details, please download the catalog.

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[Analysis Case] Analysis of PTC Resin Heater

Analyzing the property that the electrical resistance increases as the temperature rises.

PTC resin has the property of increasing electrical resistance as the temperature rises (temperature dependence). We conducted an analysis of a heater that utilizes this property. This heater has the characteristic that as the temperature rises, the intrinsic resistance of the PTC resin increases, limiting the current, so it does not exceed a certain temperature. We will perform a current distribution analysis when a voltage of 100[V] is applied to the electrode terminals of the heater. For more details, please download the catalog.

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[Analysis Case] Induction Heating Analysis of Steel Plates (Coupled Analysis of Magnetic Field and Heat)

The target of the analysis is a steel plate penetrated by three-phase alternating current lines.

The analysis of induction heating of a steel plate (coupled analysis of magnetic field and heat) involves calculating the eddy currents flowing in the steel plate generated by the magnetic field created by three-phase current, and then determining the heat distribution caused by these eddy currents. Next, we analyze heat conduction based on the calculated heat generation. For more details, please download the catalog.

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