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Analysis Software(wave) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 03, 2025~Sep 30, 2025
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Analysis Software Product List

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Inertial Sensor-Based Walking Analysis Software 【Wave Walk】

Simple gait analysis using the COMETA company's inertial sensor "Wave Track".

COMETA's walking analysis software "Wave Walk" is an easy-to-use walking analysis tool that utilizes the small wireless inertial sensor "Wave Walk." Measurement is simply done by attaching the approximately 5g inertial sensors to the toes of both feet and walking. The data measured by the sensors is transmitted to a dedicated receiver and saved on a laptop. Since the sensor is ultra-lightweight at 5g, the subject does not feel any discomfort from wearing it, and being wireless allows for free movement without being restricted to a measurement area.

  • others
  • Other measurement, recording and measuring instruments

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3D Microwave and Optical Wave Analysis Software / μ-WAVE

FDTD method (Finite-Difference Time-Domain), equipped with orthogonal grid pre-post processing, for high-speed analysis of electromagnetic fields in the time domain!

The optical wave and microwave analysis software μ-WAVE is a highly practical electromagnetic wave simulation tool. μ-WAVE quickly analyzes the electromagnetic field distribution in the time domain. 【Features】 - Adopts FDTD and CIP methods for analysis - High-speed computation for problems on the scale of 10 million cells (when using FDTD) - Realizes infinite boundaries without PML (when using CIP) - The time step determined by the Courant condition remains unchanged even with partially small cells (significantly reduces 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 details, please request materials or view the PDF data available for download.

  • Magnetic field analysis/electromagnetic wave analysis

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Wave Power Generation Device "GPI"

Power generation cost of 5 yen/kWh! Local production for local consumption renewable energy generation that enables the resolution of power shortages and the procurement of inexpensive electricity. Contributing to a decarbonized society by generating power 24 hours a day, 365 days a year.

The "GPI (Green Power Island)" is a wave power generation device that can be remotely controlled from land, on board a ship, or directly from the GPI platform. Equipped with a powerful thruster for navigation (with GPS functionality), it automatically maintains its installation position. Considering the environmental impact, it can control its position without anchoring to the seabed. Additionally, it is possible to have a helipad and lodging facilities. 【Advantages in Maintenance】 - Made of seawater-resistant concrete, with a lifespan of several decades. - The floats that move up and down due to wave power are always in motion, eliminating the need for anti-fouling paint treatment. - The rack bars are continuously cleaned with freshwater supplied by GPI, ensuring smooth operation. - The generator is automatically lubricated, allowing for stable power generation for 20 years after operation, among other benefits. *For more details, please download the PDF or feel free to contact us.

  • Generators and transmission motors

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Semiconductor Material Development Analysis Software 'Materials Studio'

Effective materials development simulation software for "Materials Informatics" - 'Materials Studio'

By utilizing tools and collaborating, we can contribute to new material development more efficiently and easily. ■ Ideal for "Materials Informatics" This is a group of molecular modeling/simulation tools for next-generation material development equipped with quantum mechanics, classical mechanics, mesoscale, statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines material development It can be used by those engaged in research, development, design, and manufacturing across various industries. ■ Supports various types of materials ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. 【Examples】 Tribochemical (lubrication) reactions Analysis of CFRP (carbon-based materials) Crystal growth, thin film formation, fuel cells, lubricants, catalysts, polymers, mixtures, metals and alloys, batteries, and fuel cells, etc. *For more details, please feel free to contact us. Wavefront Co., Ltd. Sales Department MAIL: sales@wavefront.co.jp URL: http://www.wavefront.co.jp/

  • others
  • plastic
  • Other metal materials

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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 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 tools, data creation, analysis, and result processing can be performed as a continuous operation. ■It is integrated with other PHOTO series modules, allowing for easy coupled analysis, such as calculating temperature distribution from heat generation obtained through electromagnetic field analysis. ■A revolutionary speed-up has been achieved by combining the edge element method and ICCG method. Therefore, 3D electromagnetic wave analysis (high-frequency analysis) is now possible on a personal computer. ■Using the finite element method makes it 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.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Services
  • Contract Analysis

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[Analysis Case] Input Impedance Analysis of a Dipole Antenna

Set impedance boundaries at the model boundary! Here are examples compared with the results of the moment method.

We will introduce a case study analyzing the input impedance of a dipole antenna using the electromagnetic wave analysis software "PHOTO-WAVEjω." The antenna has a diameter of 1mm, a length of 60.5mm, and a gap of 0.5mm. An impedance boundary was set at the model boundary. The antenna was treated as a perfect conductor. 【Case Overview】 ■ Software Used: PHOTO-WAVEjω ■ Analysis Conditions - An impedance boundary was set at the model boundary - The antenna was treated as a perfect conductor *For more details, please refer to the related links or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Services
  • Contract Analysis

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Editing and analysis software for seismic waveform data 'ArkWave'

Editing and analyzing seismic waveform data is easy! It can also be used as a tool for creating reports!

"ArkWave" is an editing and analysis software that allows for easy processing (editing) and analysis of seismic waveform data, and can also generate waveform data such as compatible seismic waves. It features an automatic loading function that does not require specifying the seismic waveform file format. Additionally, it can be used as a format conversion program for seismic waveform files. It is suitable for pre- and post-processing programs for the three-dimensional dynamic response analysis programs TDAP III and FDAP III, and can also be used as a tool for creating reports. 【Features】 ■ Capable of processing up to 524,288 seismic waveform points ■ Easily generates seismic waveform data in a conversational format ■ Allows for basic editing, such as extracting specific sections of seismic waveform data, and simple waveform processing like integration ■ Analysis results of seismic waveform data can be instantly confirmed on the screen *For more details, please refer to the PDF materials or feel free to contact us.

  • Other analyses

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[Analysis Case] Analysis using automatic load condition setting function (TE wave, TM wave)

Specify a set of nodes that are on the same plane! Calculate the electric field at each node and set it as the loading condition.

In versions prior to Ver8.0 of "PHOTO-WAVEjω," it was necessary to set the electric field (3 components) at nodes or the current density (3 components) at elements as load conditions. Since Ver8.2, a feature has been added to automatically set these load conditions. Users can specify a set of nodes that are on the same plane, and by simply inputting a few parameters, the program calculates the electric field at each node and sets it as the load condition. [Issues] ■ In versions prior to Ver8.0 of "PHOTO-WAVEjω," it was necessary to set the electric field at nodes or the current density at elements as load conditions. ■ When setting the electric field in a rectangular waveguide, it was necessary to set each electric field component from the coordinates of each node, which was a cumbersome task for users. *For more details, please refer to the related links or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Services
  • Contract Analysis

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Presentation of Case Study Collection: Recommended CAD/CAE Related Solutions

There is a proven record of reducing the model creation time from 1 month to 1 day! A CAD/CAE-related solution that is simple, convenient, easy to use, and also leads to cost reduction!

【Simerics MP for SOLIDWORKS】 Easily perform thermal fluid analysis on SolidWorks! With a built-in wizard, even beginners can easily conduct analyses! 【Simerics MP】 Simerics MP is a thermal fluid analysis software characterized by low cost, fast analysis, and easy, clean mesh generation! It has been gaining traction overseas, particularly among automotive-related companies, and is highly regarded in the academic field. 【Simerics MP+(PumpLinx)】 This is an advanced fluid analysis software that adds features for easily creating meshes for volumetric pumps and compressors, as well as the ability to analyze valves. It excels in analyses that other fluid analysis software may struggle with! 【CFturbo】 In addition to integration with the aforementioned Simerics products, there are numerous integration achievements with other well-known fluid analysis software! It is an essential software for the design and development of turbomachinery!

  • Other CAD
  • Thermo-fluid analysis
  • Contract Analysis

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Waveform analysis software "MTB-OWM"

Easy and intuitive operation! Software that allows automatic waveform analysis.

The "MTB-OWM Type Waveform Analysis Software" allows for the extraction of various parameters from waveform data obtained from an oscilloscope, equivalent to or beyond what the measuring instrument can handle, using only a PC. This enables waveform analysis without occupying the oscilloscope. Additionally, it significantly enhances measurement and analysis capabilities with a variety of options such as ultra-long memory support for waveforms, search functions, and automated report generation, contributing to substantial labor savings. 【Features】 ○ Waveform display & cursor function ○ Waveform analysis function ○ Waveform calculation function (optional) ○ Long-memory waveform display function & search function (optional) ○ Automated report generation for waveform analysis (optional) For more details, please contact us or download the catalog.

  • Other analyses

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[Analysis Case] Electromagnetic Field Analysis of E-plane T-junction Waveguide

Using the analysis module "PHOTO-WAVEjω"! The scattering matrix was obtained from the analysis results.

We conducted an analysis using the finite element method to determine the distribution of electromagnetic waves input from each port in a T-shaped waveguide used for signal processing in radar and other applications. Three ports were set up on an E-plane T-junction waveguide. Due to symmetry, a 1/2 model was created, with natural boundary conditions on the XY plane and symmetric boundary conditions on the other sides. As a result, the absolute values of S31 and S13 calculated were 0.644 and 0.631, respectively, with an error of 2.0%. [Case Summary] ■ Analysis Module: PHOTO-WAVEjω ■ Analysis Results - The absolute values of S31 and S13 calculated were 0.644 and 0.631, respectively, with an error of 2.0%. *For more details, please refer to the related links or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Services
  • Contract Analysis

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[Analysis Case] Scattering Analysis of Plane Waves by a Dielectric Sphere

Using the software "PHOTO-WAVEjω"! Analyzing the scattered waves after hitting a sphere using the finite element method.

We present a case where the scattered wave in the far field, when a plane wave is incident on a scattering body and scattered, is estimated using the finite element method. A plane wave polarized in the X-axis direction is incident in the Z-axis direction, and the scattered wave after it hits the sphere is analyzed using the finite element method. Next, based on those results, we estimate the scattered wave in the far field using two different methods and compare the results. The shape is modeled in full. [Software Used] ■PHOTO-WAVEjω *For more details, please refer to the related links or feel free to contact us.

  • Magnetic field analysis/electromagnetic wave analysis
  • Analysis Services
  • Contract Analysis

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Noise and Vibration Analysis Software 'WAVELET'

Sound and vibrations are clearly visible! Our uniquely developed analysis method allows us to identify specific frequencies and sound pressure levels by "converting them into color images on a time axis," making AI assessment possible with this application.

The characteristics of sound and vibration that were not visible with conventional waveform data are converted into a "color image on the time axis" that reveals specific frequencies and sound pressure levels using our unique analysis method. This technique enables spectral analysis of sudden and non-stationary changes in sound and vibration, making it useful for phenomenon analysis and research in various fields. Additionally, in combination with our AI image recognition system, automatic judgment, which was difficult with FFT analysis or octave analysis, has become possible, in addition to visual judgment. 【Measurement Examples】 Product shipment impact testing (cracks, fractures) Impact testing of concrete and external wall infrastructure Analysis of abnormal sounds due to aging degradation of gearboxes Impact analysis of golf balls, research and development Crack detection in semiconductors Medical and physiological applications (ECG, fracture detection), etc. 【Features】 ■ Visualization of sound and vibration ■ Possible visual judgment ■ Automatic judgment possible in combination with AI image recognition system ■ Usable for analysis and research in various fields *For more details, please refer to the PDF document or feel free to contact us.

  • Other inspection equipment and devices
  • Other analyses

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