We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for simulation.
ipros is IPROS GMS IPROS One of the largest technical database sites in Japan that collects information on.

simulation Product List and Ranking from 122 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

simulation Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. ウェーブフロント 本社 Kanagawa//software
  2. SCSK デジタルエンジニアリング事業本部 Tokyo//software
  3. 伊藤忠テクノソリューションズ 科学システム本部 Tokyo//IT/Telecommunications
  4. システムクリエイト Osaka//Industrial Machinery
  5. 5 アルテアエンジニアリング Tokyo//software

simulation Product ranking

Last Updated: Aggregation Period:Feb 11, 2026~Mar 10, 2026
This ranking is based on the number of page views on our site.

  1. PackAssistant Filling Rate Simulation Packaging Configuration Optimization 日本製図器工業
  2. Ultraviolet Sterilization Simulation Service ラ・ポルタ
  3. Cutting Simulation [AdvantEdge] 伊藤忠テクノソリューションズ 科学システム本部
  4. G-code NC program simulation 'NC2Check' システムクリエイト
  5. 4 Materials development simulation "Materials Studio" ウェーブフロント 本社

simulation Product List

181~210 item / All 245 items

Displayed results

"Precise OU" Utility Cost Reduction Simulation

Quick assessment of energy-saving effects from water and hot water conservation in hospitals and nursing facilities in just one minute!

Check the potential for reducing utility costs in hospitals and nursing facilities in just 1 minute! "Pitatto OU" is an automatic water supply control service that effortlessly achieves energy saving, water conservation, and hot water conservation in environments that use large amounts of water and hot water, such as dishwashing in kitchens and mechanical bathtubs (care baths). 【Just select for simulation! Input takes only 1 minute】 You can instantly check the effects of implementation by simply selecting the following items: - Industry (e.g., hospital, nursing facility, etc.) - Type of water supply (tap water, well water, etc.) - Type of fuel for hot water supply (gas, electricity, heavy oil, etc.) There are no initial costs, and it's a monthly subscription for peace of mind. In addition to cost reductions from water and hot water savings, it also contributes to decarbonization management. Furthermore, if the expected effects are not achieved after implementation, there is a risk-free money-back guarantee for the difference. Visualize the "waste" in utility costs and take solid measures. Start with the simulation and feel free to give it a try. *For more details, please check the related links.

  • sink
  • Water boiling equipment
  • Other kitchen equipment and products
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Product Guide Presentation: What High-Speed Molecular Simulation is and How it Accelerates Material Development

Supporting material research and development through high-speed molecular simulations! Here is an overview of our products.

Our Materials Science Suite is capable of addressing a wide range of materials research fields. ■ Property predictions through Density Functional Theory (DFT) calculations and first-principles calculations for periodic systems HOMO/LUMO/pKa/solvent effects/IR/Raman/UV-vis/VCD/NMR/oxidation-reduction potential/triplet excited state energy/TADF S1-Tx gap/fluorescence/phosphorescence/vibrational calculations/structure optimization/transition state calculations/reaction pathway analysis/adsorption energy/bond dissociation energy/electron and hole mobility/reorientation (rearrangement, reconfiguration) energy ■ Property predictions using Molecular Mechanics (MM) methods, Molecular Dynamics (MD) methods, and coarse-grained MD Density/conformation analysis/crosslinked structures/Young's modulus/viscosity/surface tension/glass transition temperature (Tg)/molecular diffusion/thermal expansion/crystal morphology/swelling/stress-strain curves/solubility parameters Methods usable in machine learning Generation of various descriptors and fingerprints/Partial Least Squares (PLS) regression/multiple linear regression (MLR)/Principal Component Regression (PCR)/Kernel PLS/Bayesian classification/Recursive Partitioning (RP) analysis/Self-Organizing Maps/Tg, dielectric constant, boiling point, vapor pressure prediction models/genetic algorithms/active learning

  • 【製品総合ガイド】24_MS-Product-Guide_ページ_03.jpg
  • MS_Maestro.png
  • LiveDesign.png
  • Embedded OS
  • EAI/ETL/WEB application server
  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

From actual vehicle measurement to bench vibration simulation.

We provide consistent support from vehicle running measurement to bench vibration simulation!

We measure general responses (acceleration, displacement, force, strain, etc.) and based on that, we achieve accurate bench vibration simulations. This is suitable for those in various industries, including the automotive industry, who have challenges with fatigue analysis, or those who want to simulate road tests on a bench. For details, please refer to the downloadable materials and contact us. 【Features】 ■ Capable of measuring various driving scenes (market, test course, chassis dynamometer) ■ Calculates input values for bench vibration based on general responses ■ Input values are calculated in iteration steps ■ Enables more accurate fatigue analysis *For more information, please refer to the PDF materials or feel free to contact us.

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Robot simulation

By creating a virtual environment, it becomes possible to achieve more accurate robot simulations.

By using robot simulation software (such as RoboGuide and RoboDK), it is possible to create a virtual environment of the work site and measure the operable environment and cycle time.

  • Other industrial robots
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Robot simulation

Time reduction on-site is possible! Efficiently conduct parts like experiments and sample tests offline.

"Robot simulation" refers to the process of verifying potential issues on a computer before installing a physical robot system. By understanding and resolving problems related to the overall operation, including the robot and its surrounding equipment, in advance, it is possible to reduce unnecessary costs in operations and shorten delivery times, making it extremely useful. Additionally, on a computer, it is possible to check for interference with surrounding equipment during robot operation, perform offline teaching, and verify the validity of robot programming. [Benefits] - Reduces time on-site - Identifies issues in advance - Lowers the risk of damaging the robot *For more details, please download the PDF or feel free to contact us.

  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Analysis simulation

Verify heat conduction and buckling instability to optimize product design! There is a well-equipped and fulfilling environment available.

Our company conducts design verification through static stress and strain analysis in 3D design by introducing various analysis software, enabling us to propose appropriate mechanisms, structures, and shapes. We can verify the mechanical strength of products, topology optimization, and natural frequencies, as well as assess thermal conduction and buckling instability, allowing for the optimization of product design. Additionally, with structural and thermal analysis software for designers, designers themselves can evaluate the performance related to strength, vibration, and heat from the early stages of design. [Analysis Software List] ■SOLIDWORKS Simulation Professional ■iCAD SX FJKSWAD ■CATIA Analysis *For more details, please download the PDF or feel free to contact us.

  • スクリーンショット 2025-05-12 134141.png
  • スクリーンショット 2025-05-12 134159.png
  • simulator
  • Structural Analysis
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Ashworth Belt Tension Simulation

We provide a service for simulating belt tension in low-tension spirals based on the technology of a low-tension spiral invention company.

By predicting the belt tension in the low-tension spiral design phase, optimal belt selection and operating conditions can be considered. Additionally, by simulating the tension on the belt in existing spirals, we can identify issues and support maintenance and belt replacement planning.

  • Food Conveyor Equipment
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Printed Circuit Board Design and Simulation Services

A design simulation that doesn't look back, with specialized technology that is thoroughly focused on noise!

Our company offers a "Printed Circuit Board Design and Simulation Service" that achieves high-quality design through the fusion of simulation and printed circuit board design. With a team of 70 engineers, we realize Quick and High Quality, strongly supporting development through the integration of advanced simulation technology and printed circuit board design technology. Our consistent production system from high-quality board design to implementation contributes to shortening the prototype development period. Certified iNARTE EMC Design Engineers will review and propose solutions, so please feel free to consult us when needed. 【Our Features】 ■ Abundant track record and years of know-how ■ Integrated system from design to implementation ■ Customer-oriented proposals with added value ■ Coverage of Japan with five bases *For more details, please download the PDF or feel free to contact us.

  • Circuit board design and manufacturing
  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Chemical system simulation

Report on the Trends of Electronic Patent Technologies in Chemical System Simulations

You can view patent information categorized by the following technical classifications: - Analysis of material properties - Generation of chemical structures - Prediction of chemical reactions - State estimation of secondary batteries - Combustion and catalysis - Medical and drug discovery

  • others
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Weather simulation

Report on the Trends of Electronic Patent Technology for Weather Simulation

You can view patent information categorized by the following technical classifications: - Weather forecasting - Estimation of environmental conditions - Formation of environmental models - Simulation for observation

  • others
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Offline teaching/robot simulation

Reduce man-hours by 50%! We will introduce what can be done, when it can be used, the types, and their features.

Teaching a robot refers to "the process of instructing the robot on how to move." Simply purchasing a robot will not make it operate as desired. It is necessary to specify "under what conditions, in what order, and in what posture it should move" in accordance with the production line. There are two main types of robot teaching: 1. Offline Teaching Programming the robot's movements in a location where the robot is not present. 2. Online Teaching Using a tool called a pendant to program directly in front of the actual robot. *For more detailed information, please refer to the related links. Feel free to contact us for further inquiries.

  • Other industrial robots
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Casting process simulation

Visualization and optimization of the challenges faced by the entire casting process.

Using the casting process simulation software "MAGMASOFT," we simulate the flow of molten metal and the behavior of solidification to achieve optimal design proposals. By utilizing casting simulation (CAE), we can optimize our customers' product development processes and enable high-level and efficient designs.

  • Casting Machine
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Aerodynamic simulation of automobiles using AICFD.

The advantages of simulation include reproducibility, short cycles, low cost, and comprehensive and rich flow field analysis capabilities!

With the development of the automotive industry and the increasing speed of vehicles, there is growing attention on the aerodynamics of automobiles. Excellent aerodynamic design not only achieves high efficiency and energy savings but also reduces noise and provides better ride comfort, driving performance, stability, and stronger security guarantees. In recent years, it has become an essential element not only in the aerospace field but also in various modern industrial designs. In this case study, we analyzed the aerodynamics of automobiles using a passenger car model and evaluated the underlying pressure distribution and flow vectors. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

  • 4-2.png
  • 4-3.png
  • 4-4.png
  • 4-5.png
  • 4-6.png
  • 4-7.png
  • Other analysis software
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

[AICFD] AI Prediction Simulation of Hull Resistance

The AI prediction feature is one of the distinctive modules of AICFD! It solves the problem of an enormous number of analysis iterations.

In this case, we will simulate the resistance values of a submarine under specific conditions using the AI forecasting function (Intelligent Forecasting) equipped in AICFD. The AI forecasting function is one of the distinctive modules of AICFD, and it solves the problem of the enormous number of analysis iterations in industrial design simulations through real-time result predictions by AI. *For more detailed information, you can view it through the related links. For more details, please download the PDF or feel free to contact us.*

  • 船体抵抗のAI予測シミュレーション2.png
  • 船体抵抗のAI予測シミュレーション3.png
  • 船体抵抗のAI予測シミュレーション4.png
  • 船体抵抗のAI予測シミュレーション5.png
  • Other analyses
  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Production Simulation Service "FabrikNavi"

You will see how to properly manage the factory! Start with one process, and the goal is to optimize the entire factory.

"FabrikNavi" is a service that analyzes processes through a simulator, visualizing challenges and improvement measures with data, and supporting the optimization of efficient production line configurations and production planning. Production volume and resource allocation are visualized, enabling the strengthening of production capacity and the smooth launch of new products. Additionally, we provide a program that can be operated immediately if you are familiar with spreadsheet software. This eliminates the need for dispatching specialized staff, significantly reducing overseas assignment costs. [Features] ■ Improvement points are visualized ■ Data supports investment decisions ■ Can be started immediately without specialized knowledge *For more details, please download the PDF or feel free to contact us.

  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

CNC Simulation using Vericut for Defense Applications

High-precision simulation software that enhances the confidentiality of CNC processing.

In the defense industry, the machining of highly confidential components requires high precision and reliability. Especially for parts that use complex shapes or special materials, it is crucial to minimize the risk of machining errors and ensure consistent quality. Vericut addresses these challenges through CNC machining simulation. By faithfully reproducing G-code NC programs and conducting pre-validation of machining processes, it reduces the risk of confidential information leakage and enables the efficient production of high-quality products. 【Usage Scenarios】 * Machining of highly confidential components * Machining verification during the prototyping stage * Multi-axis machining and complex machining 【Benefits of Implementation】 * Reduction of machining errors * Protection of confidential information * Cost reduction

  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

CNC Simulation by Vericut for Watch Manufacturing

Achieve improved precision and reliability in CNC machining with Vericut.

In the watch manufacturing industry, high precision and reliability are required in the processing of precision parts. Especially for watch components that require complex shapes and fine machining, even slight errors can greatly affect the quality of the product. Tool damage and processing defects in CNC machining not only lead to increased costs but can also harm the brand image. Vericut ensures processing accuracy by simulating the entire CNC machining process, deriving the "correct" result in a single operation. 【Usage Scenarios】 - Machining of precise gears and cases - Machining of complex-shaped components - Utilization of multi-axis machining machines 【Benefits of Implementation】 - Improvement in processing accuracy - Reduction of tool damage and processing defects - Cost reduction - Stabilization of quality

  • simulator
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Engineering Simulation (CAE Analysis) | JTL

We will respond to the rationalization of design development, shortening of periods, performance improvement, and cost reduction.

At JTL, we quickly respond to customer requests across a range of fields from automotive parts to agriculture through evaluation tests and CAE. We can propose changes in product shape and evaluate materials through vibration testing and simulation analysis for issues related to vibrations and noise in structures, from single components to assembly products. Additionally, regarding fatigue issues and identifying causes of defects, we analyze design problems by combining fracture surface analysis, material testing, and actual fatigue testing, allowing us to predict structural issues, strength, and lifespan. 【Applicable Fields】 ■ Product/Mechanism Element Design ■ Electronic Components and Printed Circuit Boards ■ Agriculture Sector (Agriculture, Fisheries, Livestock, and Biotechnology) ■ Energy Conservation/Reduction/Creation ■ Production and Process Improvement *For more details, please refer to the external link or feel free to contact us.

  • Analysis Services
  • Contract Analysis
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Vacuum Forming Simulation T-SIM for Food Packaging

Accurately analyze drawdown and cooling to improve the sealing performance of food packaging.

In the food packaging industry, the airtightness of packaging materials is crucial for maintaining product quality. In particular, accurate analysis that does not overlook even slight abnormalities during the molding process is required to prevent the deterioration of contents and ensure consumer safety. The vacuum forming simulation program T-SIM supports the design of highly airtight packaging materials by accurately analyzing sheet sagging and the cooling process. 【Application Scenarios】 - Design of food packaging containers - Evaluation of packaging material airtightness - Reduction of foreign matter contamination risks 【Benefits of Implementation】 - Reduction of product waste due to sealing failures - Extension of shelf life - Increased reliability from customers

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Aerospace Vacuum Forming Simulation T-SIM

From drawdown to cooling, accurate strength analysis of aerospace components.

In the aerospace industry, lightweight and high-strength components are required. Vacuum forming is an effective method for manufacturing complex-shaped parts, but the strength is greatly influenced by the forming conditions, making pre-validation through simulation essential. In particular, accurately predicting temperature and stress application, and finding the optimal forming conditions, are crucial for enhancing the reliability of components. T-SIM supports the strength design of aerospace parts by employing an integral viscoelastic model and accurately analyzing sheet sag during drawdown and cooling after forming. 【Application Scenarios】 - Forming of aircraft interior components - Manufacturing of rocket parts - Design of drone exterior components 【Benefits of Implementation】 - Improved component strength by identifying optimal forming conditions - Cost reduction through a decrease in the number of prototypes - Shortened development time through quality prediction at the design stage

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

B-SIM Blow Molding Simulation for the Automotive Industry

Blow molding simulation for achieving weight reduction.

In the automotive industry, lightweighting is a crucial challenge for improving fuel efficiency and reducing environmental impact. Blow molding technology can contribute to the production of lightweight and high-strength parts, but advanced simulation is essential for optimal shape design. B-SIM accurately reproduces time-dependent deformations and supports optimal shape design for lightweighting. 【Application Scenarios】 - Fuel tanks - Intake manifolds - Ducts 【Benefits of Implementation】 - Improved fuel efficiency through lightweighting - Reduction in the number of prototypes - Shortened design period

  • Other information systems
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

B-SIM Blow Molding Simulation for Cosmetic Containers

High-precision simulation of blow molding for highly designed cosmetic containers.

In the cosmetics industry, there is a demand for highly designed containers that catch the consumer's eye. In particular, complex shapes and thin-walled molding can easily become manufacturing challenges, potentially leading to an increase in the number of prototypes and costs. B-SIM supports a wide range of processes from direct blow to injection and stretch blow, contributing to solving these challenges by accurately reproducing time-dependent deformation using the K-BKZ model. The parison and preform shapes can be input using the B-SIM template, and can also be imported from Ansys and STL files. It accurately reproduces blow molding with a variety of settings, including clamp position, temperature of the parison and preform, thickness distribution, friction and heat transfer with the mold, timing of the blow, and direction of mold movement. 【Application Scenarios】 - Prototyping of highly designed containers - Optimization of thickness distribution in thin-walled molding - Prediction and countermeasures for molding defects 【Benefits of Implementation】 - Reduction in the number of prototypes - Cost reduction - Manufacturing of high-quality containers

  • Other information systems
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Aerospace Blow Molding Simulation B-SIM

Support for lightweight design, high-precision reproduction of time-dependent deformation.

In the aerospace industry, there is a demand for component designs that achieve both lightweight and high strength. Particularly for components with complex shapes, it is crucial to accurately predict material behavior during the molding process and to conduct optimal designs. Inadequate designs can lead to insufficient strength of components and increased manufacturing costs. B-SIM supports lightweight design by accurately reproducing time-dependent deformations using the K-BKZ model. 【Application Scenarios】 - Design of aircraft components - Design of rocket components - Design of drone components 【Benefits of Implementation】 - Component designs that balance lightweight and strength - Reduction in the number of prototypes - Shortening of design periods

  • Other information systems
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Blow Molding Simulation Using B-SIM for the Packaging Industry

Simulate blow molding to streamline packaging material development.

In the packaging industry, there is a demand for balancing product protection and cost reduction. Blow molding significantly affects the quality and cost of products due to the shape and wall thickness of containers, making the reduction of molding defects and material optimization crucial. B-SIM addresses these challenges by simulating the blow molding process. 【Application Scenarios】 - Shape consideration during the design phase of packaging containers - Cost reduction through material optimization - Prediction and countermeasures for molding defects 【Benefits of Implementation】 - Reduction in the number of prototypes - Reduction in material costs - Shortening of product development time

  • Other information systems
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

High Dynamic Range Image Processing Technology and MATLAB Simulation

~High Dynamic Range Image Processing~ *Available for preview.

Author: Masahiro Okuda, Associate Professor, Faculty of International Environmental Engineering, Kitakyushu City University (Ph.D. in Engineering) Graduated from Keio University, Faculty of Science and Technology in 1993. Completed the doctoral program at the Graduate School of Science and Technology, Keio University in 1998, earning a Ph.D. in Engineering. Served as a visiting researcher at the University of California, Santa Barbara in 1998 and at Carnegie Mellon University in 1999. Became a visiting researcher at Keio University in 2000. Since 2001, he has been an associate professor at the Faculty of International Environmental Engineering, Kitakyushu City University, and has been an associate professor since 2008, continuing to the present. Engaged in research on digital signal processing, multirate signal processing, image coding, and 3D model signal processing. Member of IEEE, the Institute of Electronics, Information and Communication Engineers, and the Institute of Image Information and Television Engineers. Ph.D. in Engineering (Keio University, 1998). Format: B5 size, 108 pages, with accompanying CD (containing m-files).

  • Technical and Reference Books
  • Image Processing Equipment
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Response simulation from the frequency domain and time domain of digital signals.

Response waveform analysis of digital patterns using S-NAP/Field and Pro.

By analyzing multilayer substrates using S・NAP-Field, it is possible to analyze not only microwave circuits but also the coupling of digital circuits. To obtain response waveforms, waveform analysis can be performed using S・NAP-Pro based on the S-parameters obtained from S・NAP-Field, allowing for the observation of crosstalk and response waveforms at the waveform level. There are two methods for performing waveform analysis with S・NAP-Pro: one uses either the linear response waveform analysis function or the harmonic balance analysis function, and the other employs the convolution integral method to determine transient responses. Each of these methods has its own characteristics and should be chosen according to the specific objectives. This paper summarizes the overview and points of consideration for these methods. 【Methods】 ○ Extract signal sources present in the circuit ○ Perform Fourier transform on the signal sources, store the values of each spectrum, and create a frequency table ○ Execute AC analysis according to the frequency table created in the previous step, and obtain the spectrum at the observation point ○ Reconstruct waveforms at each observation point based on the spectrum For more details, please contact us or download the catalog.

  • others
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Implantation Simulation

Simulation for ion species, depth and concentration.

Customer's request "How much energy and dose should be used to achieve the desired depth and concentration?" And "What depth distribution of dopant ions will be given at the specified energy and dose." , We can provide a simulation. (This service presupposes a request for ion implantation.)

  • Other semiconductors
  • EMS
  • Prototype Services
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Regional simulation

Introducing annual data for a 35-tsubo house that meets certain conditions for electricity rate simulation!

Traditional houses and townhouses are excellent examples of passive design. Design that integrates with the local environment and the quality of design that can be felt through the five senses brings invisible value. On the other hand, comfort and energy efficiency have become relatively easy to achieve with the advent of energy-generating devices and high-efficiency equipment. At OM Solar, we emphasize not only achieving comfort and energy efficiency but also integrating these at a high level with passive design. *For more details, you can view the related links. For more information, please download the PDF or feel free to contact us.

  • air conditioning
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Automotive Ignition Plug Simulation "VizSpark"

This is simulation software that makes it possible to analyze arc plasma in automotive spark plugs, which was previously difficult.

VizSpark is an arc plasma simulation software developed by Esgee Technologies in the United States, founded by Professor Raja from the University of Texas at Austin, an expert in plasma simulation. It has the most achievements in the analysis of ignition plugs and circuit breakers, with many cases presented at academic conferences. In Japan, it has a strong track record primarily among complete vehicle manufacturers and internal combustion engine-related manufacturers, and it supports the analysis of devices such as: - Circuit breakers - Atmospheric pressure discharge - Ignition plugs (spark plugs) - Plasma torches (plasma jets) - Welding - Thermal spraying - High-intensity lamps

  • simulator
  • Contract Analysis
  • Analysis Services
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Simulation of a heat exchanger using SimericsMP.

Introduction to the simulation of a shell-and-tube heat exchanger, an example of thermal fluid analysis.

CFD provides a means to shorten product development periods, reduce prototyping costs, and obtain detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can assist in product development using Simerics' CAE/CFD software. Heat exchangers have various applications, including boilers, steam generators, and commonly in air conditioners, refrigerators, and automotive radiators. While it is essential to enhance heat transfer efficiency, there is also a demand for miniaturization, requiring various trial and error in the design process. However, designing requires significant time and costs for prototyping and experiments. In CFD simulations, computation time can often increase depending on the shape of the shell and the number of tubes. However, with Simerics' CFD, high-performance thermal fluid analysis can be processed quickly through large-scale parallel computing, allowing for easy and rapid acquisition of results. The interior of the shell is also modeled in detail, replicating conditions close to actual experiments. This is expected to lead to significant reductions in man-hours and costs! There are many more reasons to use Simerics' CFD software. Please check the link below or feel free to contact us!

  • simulator
  • Thermo-fluid analysis
  • Contract Analysis
  • simulation

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration