Motor model JMAG-RT promoting model-based design
Mecha and Control Coordination Seminar
To eliminate the barriers between mechanical design and control design.
- Company:JSOL JMAGビジネスカンパニー
- Price:Other
Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.
91~120 item / All 745 items
Mecha and Control Coordination Seminar
To eliminate the barriers between mechanical design and control design.
ICT Service Coordinator Evolving Amid Change
Our company provides consistent services from ICT consulting to system construction and operation, supporting our customers throughout the lifecycle of utilizing ICT. We offer solutions that support various business processes, in addition to core system implementation and information systems or system infrastructure. In particular, we are focusing on developing our business around the JMAG-RT solution. We also conduct JMAG experience seminars. 【Business Content】 ■ System consulting, system integration, CAE *For more details, please refer to our catalog or feel free to contact us.
A review master that simulates management item reviews in the construction industry.
The review master is a support tool that simplifies the complex score calculation resulting from the review of the system through features like the wizard function, aiding in the formulation of management strategies. For more details, please download the catalog.
Device simulation program specialized for semiconductor lasers in two dimensions (formerly LASTIP)
<Main Features> ■ Simulation software for semiconductor lasers based on a two-dimensional structural model ■ Calculations can be executed more lightly as effects in the resonator direction are not included ■ Convergence is smoother as the finite element calculation mesh is also set in two dimensions <Diverse Physical Models and Functions> ■ Light output-current (L-I) characteristics ■ Current-voltage (I-V) characteristics ■ Two-dimensional potential, electric field, and current distribution ■ Two-dimensional distribution of electron and hole density ■ Band diagrams under various bias conditions ■ Two-dimensional distribution of occupancy and density of deep level traps in semiconductors ■ Two-dimensional optical field distribution of multiple transverse modes ■ Two-dimensional local optical gain distribution ■ Mode-dependent refractive index dependence on bias current ■ Mode-dependent gain and refractive index change dependence on bias current ■ Dependence of spontaneous emission spectrum on current ■ Far-field distribution ■ Time evolution (transient model) and temperature dependence (uniform temperature) of all the above quantities ■ For other features and details, please download the catalog or contact us. ■ If you wish to try a trial version, please contact us using the information below.
Physical Model in CSuprem
Based on physical models for ion implantation, deposition, etching, diffusion, and oxidation, it is possible to perform one-dimensional, two-dimensional, and three-dimensional process simulations of various semiconductor structures. It is an indispensable and reliable accurate simulation tool for controlling research and development costs in IC manufacturing processes. It can output doping profiles for device simulators.
Explanation of the options for the semiconductor LD and optical device 3D simulator PICS3D.
Introduction to various options and physical models of the semiconductor LD and optical device 3D simulator PICS3D.
Crosslight's TCAD integrates 2D/3D process simulators and device simulators. Free trial available!
■ A video demonstrating the automatic processing of simulations using NovaTCAD is currently available on the YouTube link below! ■ If you would like a trial version, please use the "Trial Version Application Form." (For details about the product, please refer to the product introduction materials.)
We will introduce how the hybrid model synchronizes models from different functional areas to enhance the safety, reliability, and profitability of assets.
AspenTech has devised a method to integrate first-principles-based process simulation models and expertise with AI and analytics algorithms. The resulting application software is a hybrid modeling system that can achieve more than either first-principles modeling or AI alone. With AspenHybridModels, the following becomes possible: - Modeling processes and equipment that are difficult to model using first principles alone. - Providing comprehensive and highly accurate models more quickly with less reliance on expertise. - Optimizing and evaluating optionality across multiple assets to select the best strategy for achieving goals. - Creating accurate and purpose-built models that enable the optimization of closed-loop production. Download this white paper to learn how to operate assets more safely, reliably, and profitably with hybrid models.
Introducing examples of challenges solved by adopting AspenTech products!
We will introduce the following case studies of AspenTech products. For more details, please refer to the individual case studies published in the related catalog.
AspenTech Engineering Solutions Comprehensive Catalog V14
We comprehensively introduce about 70 types of products that can be used for research and development, process design, and operations.
Factory reconstruction, line/layout changes, equipment updates, and achieving partial optimization, overall optimization, and comfort in factory logistics.
"FlexSim" is a discrete event simulation software that analyzes the current state of all locations where people and goods exist, such as production lines and warehouse layouts, to identify issues and visualize multiple improvement proposals using numbers and graphs. It helps solve challenges such as cost reduction and addressing labor shortages, contributing to increased productivity and profits of facilities. ■ How to improve productivity? By utilizing discrete event simulation to analyze the current situation and quantify multiple improvement proposals (such as costs, number of workers, number of equipment, etc.), we can optimize bottlenecks and queues. ■ Quickly create simulations in three steps - Place 3D objects by dragging and dropping from the standard library - Input processing times and speeds for the 3D objects - Automatically visualize operating rates and production volumes with graphs and numbers *For more details, please refer to the PDF materials or feel free to contact us.
Inclusive process simulation
AVEVA PRO/II Simulation is a professional tool that performs comprehensive simulations necessary for process design, improvement, and operational analysis. It calculates rigorous steady-state thermal and material balances across various processes, from oil and gas separation to reactive distillation.
Simulation and selection tool for rotary and linear motion mechanisms.
Easily simulate various mechanisms such as tables, arms, belts, ball screws, and rack and pinions. It is a powerful tool that allows you to select the optimal combination while changing values such as drive patterns, loads, gear ratios, and screw leads.
Technical Document: "Vehicle Motion Model and Driving Simulator Connecting Experiments and Analysis"
Introduction to the vehicle motion model and the pinnacle of real-time simulation technology, the driving simulator.
Adopted by Ferrari and VOLVO! We pursue vehicle dynamics evaluation, handling stability, ride comfort, and control development!
This document is the material presented during the "Automotive Technology Exhibition 2014" workshop held on May 23, 2014 (Friday). In recent years, driving simulators have begun to be utilized as a method for front-loading real vehicle experiments in the development process. This document includes information about Driving Simulators (DiM) for vehicle development, which seamlessly connects the two areas of experimentation and analysis. 【Main Contents】 ■ Current Status of Driving Simulators → DS (Driving Simulator) vs DiM (Driver in Motion) → Necessity of DS ■ Driver in Motion (DiM) → Key Technologies of DiM, etc. For more details, please contact us or download the catalog.
Next-generation vehicle motion model! We provide solutions that integrate experimentation and analysis.
VI-grade provides vehicle motion simulation software and associated engineering services for all engineers involved in vehicle dynamics development in the automotive, motorcycle, railway, aerospace, and motorsports fields. Leveraging years of expertise in system-level simulation technology, we offer solutions that integrate experimentation and analysis in both offline and online simulation domains for industry professionals with specialized knowledge. 【Features】 ■ High-precision, low-degree-of-freedom vehicle motion models ■ Stable driver models ■ Analysis environment provided For more details, please refer to the catalog or feel free to contact us.
Offline and online calculations are possible! Software for vehicle motion simulation.
"VI-CarRealTime" is software for vehicle motion simulation that enables both offline and online calculations to quickly implement various considerations related to vehicle development. It provides a consistent vehicle model from the upstream stages of development across various fields, including dynamic behavior of vehicle models, ride comfort, handling performance, and SILS/HILS. [Features] - High-precision, low-degree-of-freedom vehicle motion model - Various interfaces - High-precision, highly robust driver model - Standard events for various performance evaluation tests - Significant reduction in analysis time For more details, please refer to the catalog or feel free to contact us.
Introducing the analysis of rubber products! Please feel free to consult us if you are having trouble with structural design or analysis.
★★Shirutoku Report: Useful Information You Should Know★★ The Structural Design Department primarily focuses on "structural design of metal and plastic enclosures using CAD" and "front-loading development using thermal fluid simulation/structural simulation technologies." *There are various names for structural analysis, structural CAE, stress analysis, FEM analysis, etc. In this report, we will briefly introduce our efforts in structural simulation and then discuss the analysis of rubber products (which are useful in waterproof design, among other applications). For more details, please take a moment to read through it. [Contents] ■ Efforts in Structural Simulation ■ Analysis of Rubber Products (Useful in Waterproof Design, etc.) *For more information, please refer to the PDF document or feel free to contact us.
Visualization of equipment and issues! 3D simulation that offers numerous benefits.
At Nippon Highcom, we conduct 3D simulations of production equipment using robots for welding, painting, transportation, etc., utilizing the versatile and highly compatible DELMIA V5, providing numerous benefits to our customers. The contents of the simulation include: - Verification and optimization of layout feasibility in 3D - Consideration and selection of robots and tools - Optimization of robot movements and automatic mutual interference checks for multiple robots - Offline robot teaching and downloading to actual machines, along with corrections - Verification of adding robots or changing layouts to existing equipment 【Benefits】 - Visualization of issues through 3D representation of equipment → Early identification of problems through high-precision image sharing - Equipment evaluation possible with high precision and reduced man-hours compared to conventional methods - Reduction of equipment malfunctions caused by robots → Eliminating issues such as unreachable areas, inability to take positions, and interference - Reduction of on-site construction man-hours and risks → Shortening schedules and improving planning accuracy For more details, please contact us.
A Modelica-based 1D simulation software developed by Wolfram Research, famous for Mathematica.
Wolfram SystemModeler has all the tools necessary for physical modeling and simulation. Wolfram SystemModeler does not require any add-ons and fully supports the Modelica language. When integrated with Mathematica, it provides a comprehensive environment for rapid iteration of integrated analysis, understanding, and system development. It is truly a driving force for insights, innovation, and results.
The world's only software dedicated to analyzing arc discharge! Strong in analyzing spark plugs and circuit breakers!!
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 case studies presented at academic conferences. In Japan, it has a significant track record, especially among major automobile manufacturers, and 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
For reducing man-hours and costs! Capable of various simulations such as thin film generation, sputtering, and plasma etching. Support after implementation is also reliable.
Our company specializes in analysis software for semiconductor-related equipment. We offer a lineup of rarefied fluid analysis software and plasma analysis software, which are actively used in simulations for organic EL and magnetron sputtering. This is for those who are struggling with "wanting to develop new products," "wanting to create and verify actual equipment during product improvements," or "wanting to conduct preliminary verification and comparative verification with equipment." Additionally, since these are in-house developed products, we provide extensive support even after implementation. 【Lineup / Features】 《Rarefied Fluid Analysis Software 'DSMC-Neutrals'》 ■ Supports unstructured meshes, allowing for calculations of complex shapes ■ Capable of simulating gas flow throughout the entire equipment 《Plasma Analysis Software 'Particle-PLUS'》 ■ Capable of low-pressure plasma simulations ■ Useful for research, development, and manufacturing of devices and materials using plasma *For more details, please refer to the materials. Feel free to contact us as well.
A case study of the DC magnetron sputtering method using process plasma, known as 'Particle-PLUS'.
"Particle-PLUS" is a simulation software suitable for research, development, and manufacturing of devices and materials using plasma. - It excels in low-pressure plasma analysis. - It specializes in plasma analysis within vacuum chambers, enabling fast simulations of film deposition rates and more. - It is adept at plasma simulations in low-pressure gases, where calculations using fluid models are challenging. - It supports both 2D and 3D, allowing efficient analysis even for complex models. - As a strength of our in-house developed software, customization to fit the customer's equipment is also possible. ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitive coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us.
Analysis case of magnetron sputtering simulation of a rotating target using cut-cell mesh in 'Particle-PLUS'.
"Particle-PLUS" is a simulation software suitable for the research, development, and manufacturing of devices and materials using plasma. - It excels in low-pressure plasma analysis. - By combining axisymmetric models with mirror-symmetric boundary conditions, it allows for rapid results without the need for full device simulations. - It specializes in plasma simulations in low-pressure gases, where calculations using fluid models are challenging. - It supports both 2D (two-dimensional) and 3D (three-dimensional) analyses, enabling efficient analysis of complex models. - As a strength of our in-house developed software, customization to fit the customer's device is also possible. ◆ Supports various applications ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitive coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Electron and ion density distribution/temperature distribution/generation distribution - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *Please feel free to contact us for more details.