Analysis Software Product List and Ranking from 163 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

Analysis Software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
This ranking is based on the number of page views on our site.

  1. 応用計測サービス Saitama//Other construction industries
  2. JIPテクノサイエンス Tokyo//Information and Communications
  3. アドバンスドナレッジ研究所 Tokyo//Building materials, supplies and fixtures manufacturers
  4. 4 B7 Tokyo//Information and Communications
  5. 5 エルメック Tokyo//others

Analysis Software Product ranking

Last Updated: Aggregation Period:Dec 17, 2025~Jan 13, 2026
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. Hard Bone Inclusion Abnormal Sound Detection System エルメック
  3. "EnergyWin" power plant thermal efficiency analysis technical support 電力テクノシステムズ
  4. 4 Thermal Fluid Analysis Software 'FlowDesigner' アドバンスドナレッジ研究所
  5. 5 Ground analysis software 'PLAXIS' *Introduction of slope stability analysis case studies JIPテクノサイエンス

Analysis Software Product List

136~150 item / All 801 items

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[Case Study] Nonlinear Static Magnetic Field Analysis of Magnetic Shielding

The analysis model is the 1/8 model based on symmetry! We will introduce an analysis case using an external field coil.

We will introduce a case study of magnetic field analysis for magnetic shielding. A coil is placed outside the shield, and the internal magnetic field is calculated. The analysis model uses the "Box shield model" proposed by the Electrical Engineering Society's Investigation Committee. The coil used is an external field coil, and the analysis model is set as a 1/8 model due to symmetry. The analysis type is nonlinear static magnetic field analysis. Eddy currents are not considered. We have included diagrams of the B-H characteristics of the ss400 used in this study, so please refer to the related links below for more details. 【Case Overview】 ■ Analysis Model: Box shield model ■ Analysis Type: Nonlinear static 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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[Analysis Case] Predicting the magnetization distribution within a plastic magnet from measurement data.

Estimating the magnetization distribution from the numerical data of magnetic flux density obtained through the forward problem! Introducing an analysis case of the inverse problem.

The analysis of the magnetic field created by magnets and coils is referred to as a forward problem. On the other hand, the problem of determining magnetization or current from the magnetic field distribution is called an inverse problem. In this case, we will introduce an example (inverse problem) where we estimate the magnetization inside a magnet from numerical data of the magnetic flux density on the surface of a plastic magnet and analyze the magnetic flux density created by that magnetization. For convenience, we will estimate the magnetization from the magnetic flux density obtained through the forward problem and calculate the magnetic flux density at a different location. Since we will use the results of the forward problem, we can compare the results of the forward and inverse problem analyses to evaluate the validity of the inverse problem's analytical function. 【Case Overview】 ■ Software Used: PHOTO-MAGTZ ■ Analysis Results - The magnetic flux density at a position 1mm away from the surface of the magnet is generally consistent between the forward and inverse problems. - There are multiple magnetization distributions that indicate the same magnetic flux density. *For more details, please refer to the PDF document or feel free to contact us.

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[Analysis Case] Electric Field Analysis of Wound Capacitors

The capacitance of the cathode is theoretically calculated by approximating a cylindrical capacitor as a parallel plate capacitor, and compared with the analytical results!

The wound-type capacitor has a structure where electrode foils and dielectrics are alternately layered and rolled up, featuring a compact design while increasing the area of the electrodes. In "PHOTO-VOLTBM," there is no need for air mesh, allowing for the easy creation of complex-shaped models in conjunction with programmatic mesh deformation. In this case study, we will perform an electric field analysis of the wound-type capacitor. Additionally, we will compare the capacitance obtained from the analysis with theoretical values. For detailed information on the analysis conditions and results, please refer to the related links below. [Case Overview] ■ Analysis Module: PHOTO-VOLTBM *For more details, please check the related links or feel free to contact us.

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[Analysis Case] Nonlinear Electric Field Analysis of Cable Joints

The analysis type is axisymmetric analysis using the MKSA unit system! A case study using current distribution analysis.

Here is an example of nonlinear electric field analysis for cable joints. The electric field analysis software "PHOTO-VOLT" and "VOLTjω" can be selected from two modes: electric field analysis and current distribution analysis. This case uses current distribution analysis. In the electrical insulation design of direct current power cable joints, it is necessary to consider the nonlinear conductivity characteristics of the insulating material. For detailed analysis results, please refer to the related links below. [Case Overview] ■ Software Used: PHOTO-VOLT or VOLTjω * For more details, please refer to the related links or feel free to contact us.

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[Analysis Case] Electric Field Analysis of Cylindrical Capacitor (Capacitance Calculation)

Not only with VOLT, but also with VOLTjω, analysis is possible! Here are examples of analyses conducted under three conditions!

In this analysis case, we will introduce a comparison between the calculated values of the capacitance of a cylindrical capacitor and the theoretical solutions. The analysis covers three conditions: "Cylindrical Capacitor (Air)," "Cylindrical Capacitor (Dielectric - Radial Two Layers)," and "Cylindrical Capacitor (Dielectric - Circumferential Two Layers)." Since this case involves electrostatic field analysis, it can be analyzed not only in VOLT but also in VOLTjω. For more details, please refer to the related links below. 【Case Overview】 ■ Software Used: PHOTO-VOLT or VOLTjω ■ Analysis Results - Cylindrical Capacitor (Air): 5.039E-11 - Cylindrical Capacitor (Dielectric - Radial Two Layers): 3.681E-10 - Cylindrical Capacitor (Dielectric - Circumferential Two Layers): 3.780E-10 *For more details, please refer to the related links or feel free to contact us.

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[Analysis Case] Thermal Conductivity Analysis of a Circular Cylinder (Comparison with Theoretical Solutions)

We will conduct thermal conduction analysis under three conditions! Here, we will introduce a case study using a circular pipe model.

We will introduce an analysis case that focuses on the boundary conditions used in thermal conduction analysis, comparing theoretical solutions with simulation results. The thermal conduction analysis software "PHOTO-THERMO" can be used not only for coupled analysis using heat generation density obtained from electromagnetic field analysis but also independently. In this case, we used a circular pipe model as shown in the left figure. We conducted thermal conduction analysis under three conditions: "constant temperature boundary condition," "heat generation density," and "heat transfer boundary condition." Since theoretical solutions can be obtained for all of these, you can evaluate the validity of the program by comparing the analysis results. [Case Overview] ■ Conditions for Thermal Conduction Analysis - Constant temperature boundary condition - Heat generation density - Heat transfer boundary condition *For more details, please refer to the related links or feel free to contact us.

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[Analysis Case] Induction Heating Analysis of Induction Furnace [Temperature Dependence of Electrical Conductivity]

The analysis type is axisymmetric analysis! A case of magnetic field-thermal coupled analysis using temperature-dependent electrical conductivity.

Using the heat generation density obtained from magnetic field analysis, thermal conduction analysis will be conducted, resulting in a temperature distribution. This is an example of magnetic field-thermal coupled analysis using temperature-dependent electrical conductivity. The heated object is a metal filled in a crucible. An alternating current flows through the coil, and the metal is heated by the eddy currents flowing through it. In induction heating analysis, the temperature distribution varies depending on the elapsed time and the location of the analysis target. When the electrical conductivity has temperature-dependent characteristics, the distribution of electrical conductivity changes by location, necessitating a close coupled analysis of the magnetic field and heat. [Case Overview] ■ Analysis Type: Axisymmetric Analysis ■ Analysis Module: PHOTO - EDDYjω & THERMO ■ Coil: Current Density Vector ■ Frequency: 3[kHz] ■ Conductor: Temperature Dependence of Electrical Conductivity *For more details, please refer to the related links or feel free to contact us.

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Electromagnetic field analysis software 'PHOTO-Series' <Demo version available>

Limited-time offer: Free demo version (download version) available! No expiration date. You can try out the same features as the full version, except for the element count limit.

The electromagnetic field analysis software "PHOTO-Series" is a simulation tool that can visualize magnetic field distributions and eddy current density distributions. Based on the governing equations of electromagnetic phenomena, the "Maxwell equations," it visualizes the strength and direction of electromagnetic fields. It can cover a wide range of areas, from low-frequency electric field analysis to high-frequency electromagnetic field analysis such as radio waves. One of the non-destructive testing methods for detecting defects, the eddy current deep flaw method, is also included in the analysis targets. ★ We will conduct a demo version giveaway campaign. <Campaign Period> November 1, 2023 (Wednesday) to January 31, 2024 (Wednesday) <Demo Version Overview> ◎ You can try the program without any time restrictions. ◎ All functions except for the number of elements (or nodes) limit are the same as the product version. <Target Audience> ◎ Those considering purchasing the product. ◎ Those who want to actually try out the software. ◎ Those who want to confirm the operational feel or practice the operation. This is a campaign that has been conducted in the past and received positive feedback. If you are interested, please contact us via the "Contact Us" button below.

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UV diffusion plate "UFD"

"Eliminates uneven UV light irradiation" Controls the spread angle in the ultraviolet range (200nm and above) for diffusion! Excellent transmittance even in high-temperature environments 'UV Diffusion Plate: UFD'

The "UFD" is a UV diffusion plate that can be used in the ultraviolet range. It can eliminate unevenness in the irradiation of UV (200nm and above) light sources. Due to the structure formed on the surface of synthetic quartz, it diffuses light at angles of 5°, 15°, and 25° (FWHM) when parallel light is incident, efficiently spreading the illumination light within a specified range. Additionally, you can use it while maintaining the weather resistance of synthetic quartz. 【Features】 ■ Usable in the UV range ■ Good heat resistance with a quartz base ■ Compatible with sizes of 150mm x 150mm (custom order) (larger sizes available upon consultation) ■ Diffusion angles at 240nm: 5°, 15°, 25° (FWHM) *Based on our simulations *For more details, please refer to the PDF document or feel free to contact us.

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Elimination of lighting unevenness using a lens diffusion plate for LED.

Irradiation within a certain range! Achieving efficient lighting with minimal energy loss.

"Lens Diffuser: LSD (Light Shaping Diffusers)" transfers fine holographic micro-structures onto the surface of a thin film, which diffuses incident light at a consistent angle due to its refractive properties, utilizing the interference patterns of the hologram as a micro-lens array. In this column, we will introduce a method for eliminating lighting unevenness using lens-function diffusers, which effectively addresses issues such as "chromatic aberration caused by lenses" in LED lighting devices. We invite you to read on. [Contents] ■ Elimination of lighting unevenness using lens-function diffusers *For more details, please refer to the PDF document or feel free to contact us.

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Differences between LED lens diffusion plates and general diffusion plates.

General diffusion plates have irregular protrusions and unprocessed areas on their surface! Introducing the differences!

Our company provides solutions for the development of optical systems and optical units that correspond to various properties of light, from the conceptual stage to prototyping and mass production. In this column, we introduce the differences between lens diffusion plates and general diffusion plates using photographs, so please take a moment to read it. [Contents] ■ Differences between lens diffusion plates and general diffusion plates *For more details, please refer to the PDF document or feel free to contact us.

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Reliability Assurance in Structural Design: Design Value Calculation Service (Design Margin Verification)

We will solve your concern of 'It's unsettling to make judgments based only on experience... I want numerical evidence for the design rationale!' (Design margin confirmation)

We conduct "simulation for calculating design values" at our company. (Design margin confirmation) For example, if you want to create a waterproof design that can withstand water pressure, we analyze the relationship between the water pressure acting on the waterproof membrane and the load from the cushion using stress simulation to derive the appropriate cushion load. Additionally, if you are concerned about vibrations during the transportation and operation of the housing, we analyze the main causes of resonance in the frame at dangerous frequency ranges and propose structural changes to ensure that the maximum resonance point shifts to a safe frequency range. We have various case studies available. Please feel free to consult us. 【Simulation Use Cases】 ■ Waterproofing - We want to create a waterproof design that can withstand water pressure. ■ Vibration - We are concerned about vibrations during the transportation and operation of the housing. ■ Implementation Reliability - We want to demonstrate the improvement effects on the reliability of BGA package joints. *For more details, please refer to the PDF materials or feel free to contact us.

  • Analysis and prediction system

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Inclinometer Color Q Scope Rental

You can check the internal condition of the casing pipe and its joints in detail.

In the measurement of inclinometers, a dedicated casing pipe is used. Depending on the curvature of the pipe and the connection state between pipes, there can be significant impacts on measurements, such as the inclinometer probe derailing or data variability. The "Color Q Scope" is an inexpensive borehole camera that allows for easy checking of the curvature of the inclinometer casing pipe and the connection points of the pipes by obtaining color data compared to conventional cameras. By using this device, you can inspect the inside of the casing, enabling reliable measurements. For more details, please contact us.

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3D rarefied fluid analysis software "DSMC-Neutrals"

Analysis of gas flow under low-pressure conditions. Analysis software compatible with rarefied gases (rarefied fluids).

**Features** - By adopting an unstructured mesh, it is possible to compute the exact shape of complex real devices. - High parallel efficiency allows for quick computation results even for large-scale shapes. - Since it employs a particle method, unlike fluid models, it can achieve a converged solution even with poor-quality computational grids. - With comprehensive technical support, even those new to simulation or busy with experiments can reliably obtain results. **Supports Various Cases** - Simulation of rarefied gas flow in a vacuum chamber. - Simulation of thin film generation in semiconductor manufacturing. - Chemical vapor deposition (CVD), organic light-emitting diode (OLED), molecular beam epitaxy (MBE). - Film deposition simulations that include chemical reactions like CVD. **Outputs Various Calculation Results** - Calculation of chemical reactions. - Calculation of chemical reactions from Arrhenius-type reaction data. - Calculations of dissociation, recombination, and molecular (atomic) exchange reactions. - Multiple reaction equations can be set up on the GUI. *For more details, please refer to the catalog or feel free to contact us.*

  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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