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アプライド

EstablishmentSeptember 20, 1982
capital38173Ten thousand
number of employees755
addressFukuoka/Hakata-ku, Fukuoka-shi/3-3-1 Higashi Hie
phone092-481-7812
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last updated:Jun 25, 2026
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3DCAD・3Dモデリング・点群データ処理向けモデル 3DCAD・3Dモデリング・点群データ処理向けモデル
バイオインフォマティクス・ゲノム・創薬解析向けモデル バイオインフォマティクス・ゲノム・創薬解析向けモデル
科学技術計算・CAE解析・シミュレーション向けモデル 科学技術計算・CAE解析・シミュレーション向けモデル
マテリアルズ・インフォマティクス・材料解析向けモデル マテリアルズ・インフォマティクス・材料解析向けモデル
LLM・生成AI開発・ハイエンドGPUサーバー向けモデル LLM・生成AI開発・ハイエンドGPUサーバー向けモデル
Industrial and specialized purpose PCs Industrial and specialized purpose PCs
Computer for machine vision/image processing Computer for machine vision/image processing
NAS storage products NAS storage products
DX solutions for the manufacturing industry DX solutions for the manufacturing industry
科学技術計算・CAE解析・シミュレーション向けモデル

科学技術計算・CAE解析・シミュレーション向けモデル

製品開発の高度化・短納期化が進む中、構造解析、流体解析、電磁場解析、熱解析、分子シミュレーションなどの科学技術計算は、研究開発や設計業務を支える重要な基盤となっています。解析モデルの大規模化・高精細化に伴い、計算量や必要メモリは増加しており、一般的なPCでは計算時間が長期化し、検証回数や開発スピードが制限される場合があります。アプライドでは、使用するCAE・解析ソフトウェアの特性、モデル規模、並列計算への対応状況に合わせて、CPU、GPU、メモリ、高速ストレージ、ネットワークを最適に構成。高性能ワークステーションから複数CPU・GPUを搭載したHPCサーバー、複数ノードによるクラスター環境まで幅広くご提案します。単なる高性能化ではなく、実際の解析処理で効果を発揮する構成を重視し、計算時間の短縮、検証回数の増加、試作コストの削減、設計品質の向上を支援。システムの選定・構築から導入、運用、将来の拡張まで一貫してサポートします。

High-frequency three-dimensional electromagnetic field analysis software 'Ansys HFSS'

Industry standard for electromagnetic field simulation! High-precision analysis results, reduced design time, and fewer prototypes.

"Ansys HFSS" is a high-frequency three-dimensional electromagnetic field analysis software that can automatically optimize the mesh while performing electromagnetic field analysis. It features multiple methods such as FEM, MoM, and hybrid techniques tailored to the target. Distributed processing using multi-core CPUs/GPUs accelerates large-scale analyses. Additionally, options are available for 3D structures (MCAD) and printed circuit board specialization (HFSS 3D Layout). 【Main Features】 ■ High-precision "Adaptive Auto Mesh" ■ Diverse solver groups ■ HPC (parallel computing) support ■ Two types of GUI (MCAD/Layout) *For more details, please download the PDF or feel free to contact us.

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General-purpose structural analysis software 'Ansys Mechanical'

The class-leading general-purpose structural analysis software! Intuitive operability and advanced solver technology.

"Ansys Mechanical" is a general-purpose structural analysis software with advanced features and a flexible licensing system that meets various demands. It has a sophisticated UI that can be intuitively handled even by non-CAE specialized designers. It employs a persistent and highly reliable world-class structural, thermal, and acoustic solver. [Features] ■ Intuitive UI and seamless CAD integration ■ Extremely advanced analytical capabilities and multiphysics ■ High-level analysis scalability *For more details, please download the PDF or feel free to contact us.

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Free fluid simulation software [OpenFOAM]

We provide support from hardware to software implementation!

OpenFOAM is a fluid simulation software that allows for numerical fluid analysis free of charge. Software for such fluid analysis includes ANSYS's FLUENT and CFX, as well as CD-adapco's STAR-CD and STAR-CCM+. However, depending on the module configuration, some of these software packages can have high annual usage fees. That is why Applied is currently supporting the transition to OpenFOAM, which can be used for free. This time, we will also introduce suitable hardware for using OpenFOAM. ■ Various parts can be customized according to your needs! ■ Recommended models based on application and software usage are also available! ■ On-site hardware maintenance can be added! *For a fee

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Workstation for the general-purpose acoustic analysis software 'Actran'

When conducting simulations that require acoustic analysis!

This product is a workstation for the general-purpose acoustic analysis software 'Actran'. Actran is a top-tier acoustic analysis software that solves problems related to acoustics, vibroacoustics, and aeroacoustics. It is adopted by automotive manufacturers, aerospace and defense companies, and consumer product manufacturers, facilitating the understanding and improvement of acoustic performance in design. Such analysis tasks require a high-clock CPU. This model is equipped with a high-clock CPU ranging from 3.2 to 4.4 GHz.

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Workstation for the general-purpose structural analysis software 'Nastran'

When conducting simulations that require structural analysis!

This product is a workstation for 'Nastran', which can perform simulations that require structural analysis. 'Nastran' is widely adopted as a reliable application for solving advanced structural analysis problems, used for static analysis, dynamic analysis, and thermal conduction analysis in linear and nonlinear domains. It is utilized in a wide range of research institutions and companies, from foundational research to cutting-edge research across various industries.

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HPC for the general-purpose three-dimensional thermal fluid analysis system 'Stream' with a structured grid system.

Overwhelming calculation speed! Equipped with a high-performance CPU (24 cores)!

In stream parallel processing, it can be said that having a higher CPU performance is advantageous. Since it has become an efficient solver that improves calculation speed according to the degree of parallelism, we are particular about the CPU we choose.

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Multi-physics coupled analysis simulation software "COMSOL" operating PC

Overwhelming calculation speed! Strongly supports collision analysis!

In the automotive industry, collision analysis requires accurate simulation of complex physical phenomena for vehicle safety evaluation. It is particularly important to reproduce elements such as deformation, stress, and energy absorption during a collision with high precision. The accuracy of the simulation is directly linked to design optimization and safety improvement, making a high-performance PC essential. Our COMSOL operational PCs address these challenges and enable more efficient analysis. 【Usage Scenarios】 - Evaluation of automotive collision safety - Optimization of vehicle body structure - Analysis of energy absorption performance during collisions 【Benefits of Implementation】 - Reduction in analysis time - Shortening of design cycles - Improvement in product safety

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Recommended PC for Electromagnetic Field Analysis "EMCoS Studio" for Automotive Use

Recommended PC for EMCoS Studio, which strongly supports automotive EMC design.

In the automotive industry, electromagnetic compatibility (EMC) measures are essential for ensuring product safety and reliability. Particularly with the increase in onboard electronic devices, EMC issues have become more complex, necessitating efficient countermeasures. The recommended PC for EMCoS Studio is designed to fully leverage the advanced simulation capabilities of EMC Studio, contributing to solving challenges in EMC design for automotive manufacturers. 【Usage Scenarios】 - EMC design in automotive manufacturing - EMC analysis of wire harnesses - EMC evaluation of onboard electronic devices 【Benefits of Implementation】 - Increased efficiency in EMC design - Reduced product development time - Lower costs for EMC testing

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PC for Operation of Composite Material Analysis 'J-Composites' for Automobiles

Recommended PC for accelerating composite material analysis, J-Composites

In the automotive industry's collision safety evaluation, accurate analysis of composite materials is essential. To achieve a balance between vehicle lightweighting and safety, it is necessary to predict the behavior of composite materials in detail and conduct optimal design. J-Composites Dynamic PC provides high computational power and stability to address this challenge. By using J-Composites/Form Modeler, it is possible to easily set up complex composite laminate models and export them as input files for LS-DYNA. This allows for more accurate prediction and evaluation of defects such as wrinkles during collisions, contributing to the design of safer vehicles. 【Application Scenarios】 - Automotive collision safety simulations - Component design using composite materials - Vehicle development that balances lightweighting and safety 【Benefits of Implementation】 - Improved collision safety - Streamlined design processes - Reduced product development time

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Multi-scale analysis 'J-OCTA' operational PC for the automotive industry

Supporting lightweighting of automobiles through property prediction of polymer materials.

In the automotive industry, reducing vehicle weight is a crucial challenge for improving fuel efficiency and minimizing environmental impact. To achieve weight reduction, it is essential to adopt lighter materials while maintaining strength. J-OCTA simulates the properties of polymer materials such as resins and rubbers to support optimal material selection. This helps reduce the number of experiments and contributes to shortening the development period. 【Application Scenarios】 - Design of components using polymer materials - Prediction and optimization of material properties - Development of lightweight materials 【Benefits of Implementation】 - Increased efficiency in material development - Reduction in development costs - Improvement in product performance

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PC for operation of the collision analysis software 'HYCRASH' for the automotive industry

Automatically generate initial conditions for Ansys LS-DYNA! Quickly respond to vehicle design changes.

In the automotive industry, ensuring collision safety is the top priority. Since vehicle design changes occur frequently, a rapid response is required. To enhance the accuracy of collision analysis, it is essential to consider the initial conditions of press-formed materials, such as sheet thickness and plastic strain. However, traditional analysis methods necessitate changes to the analysis model and re-simulation with each design change, hindering quick responses. HYCRASH addresses this issue by automatically generating initial conditions for Ansys LS-DYNA. 【Usage Scenarios】 - Collision analysis in automotive manufacturers - Rapid analysis response during design changes - Utilization of press forming simulation results 【Benefits of Implementation】 - Improved analysis accuracy - Reduced design period - Efficient response to design changes

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PC for operating the shock analysis software 'Radioss' for the aerospace industry.

Accelerating collision, drop, and destruction analysis to support lightweight design in the aerospace field.

In the aerospace industry, reducing the weight of aircraft structures is essential to achieve both safety and fuel efficiency. In particular, evaluating the strength of structures against collisions and impacts is a critical issue during the design phase. Altair Radioss accurately simulates high-speed and large deformation phenomena such as collisions, drops, and failures, enabling safety and reliability assessments without relying on prototypes or physical tests. 【Application Scenarios】 - Collision safety design of aircraft components - Impact resistance evaluation of composite materials - Structural analysis in lightweight design 【Benefits of Implementation】 - Shortened development time - Improved design quality - Cost reduction

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PC for operating the shock analysis software 'Radioss' for the automotive industry

Quickly perform collision, drop, and destruction analysis to improve automobile safety.

In the automotive industry, safety is one of the most important issues. To enhance occupant protection performance during collisions, it is necessary to accurately understand the vehicle's collision and destruction behavior and reflect this in the design. There is a demand to visualize behaviors under extreme conditions, which are difficult to reproduce through experiments alone, digitally, enabling safety and reliability evaluations without relying on prototypes or actual tests. Altair Radioss is software that accurately reproduces high-speed and large deformation phenomena such as collisions, drops, and destruction, contributing to reduced development costs and improved product quality. 【Application Scenarios】 - Automotive collision safety design - Evaluation of occupant protection performance during collisions - Evaluation of parts' impact resistance - Strength evaluation of vehicle body structures 【Effects of Implementation】 - Reduction of collision analysis time - Shortening of design cycles - Improvement of product safety - Reduction of development costs

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PC for high-speed execution of collision and destruction analysis "Radioss"

PC for running 'Altair Radioss' to perform high-precision and high-speed analysis of collisions, falls, and destruction.

Altair Radioss is an impact analysis software that uses an explicit time integration method to accurately reproduce high-speed and large deformation phenomena such as collisions, drops, and destruction. By visualizing behaviors under extreme conditions that are difficult to replicate in experiments, it enables safety and reliability evaluations without relying on prototypes or actual tests, achieving reductions in development costs and improvements in product quality. ■ Main Features and Characteristics - Supports dynamic phenomenon analysis such as collisions, drops, destruction, and explosions using explicit methods - High-precision simulations considering structural deformation, contact, fracture, and material nonlinearity - Equipped with a wide range of material models including metals, plastics, and composites - Capable of analyzing complex physical phenomena including fluid-structure interaction (FSI) - Supports parallel computing with MPI/OpenMP for fast processing of large-scale models - Extensive implementation track record in automotive, aerospace, defense, electronics, and industrial machinery - Integrated with the HyperWorks platform for seamless collaboration in pre-processing and visualization - Applicable to a wide range of engineering uses including research and development, collision safety design, and impact resistance evaluation

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PC for the operation of the collision analysis support tool "HYCRASH" considering work hardening.

Automatic generation of initial conditions for Ansys LS-DYNA!! Quickly respond to vehicle design changes with "HYCRASH" operational PC.

◆Automatic Generation of Initial Conditions for Ansys LS-DYNA: Rapid Response to Vehicle Design Changes In collision analysis, we aim for further accuracy improvements by considering the initial conditions of press-formed materials, such as sheet thickness and plastic strain. Since FEM meshes are created according to the respective purposes for press forming analysis and collision analysis, it is common to map the results of press forming simulations to the collision model due to differences in modeling of the R parts and mesh sizes. However, this method requires time for changing the analysis model or re-simulating when design changes occur, making rapid response difficult. HYCRASH solves this issue by automatically generating initial conditions for Ansys LS-DYNA using the collision model itself! ◆Automatic Generation of Collision Model Data: Improving Analysis Accuracy and Efficiency The only required input data is the collision analysis model. By simply specifying the part number of the press-formed material, HYCRASH conducts forming analysis for all those parts and fully automatically generates new collision model data. Since the collision model data includes initial conditions such as sheet thickness and plastic strain from the forming analysis results, it enables highly accurate collision analysis.

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Automobile collision analysis pre-post "ARUP software" operating PC

Dedicated pre-post processor for automobile collision and occupant safety analysis "ARUP software"

◆Efficient and Reliable Model Creation ARUP software provides a dedicated preprocessor, PRIMER, designed to efficiently construct large and complex analysis models for automotive collision and occupant safety analysis. PRIMER is nearly 100% compatible with Ansys LS-DYNA and is equipped with extensive checking functions to ensure data reliability. By accurately understanding complex reference relationships, it prevents data loss and the destruction of reference relationships, supporting the stability of the analysis. Additionally, as a feature specialized for automotive safety analysis, it includes a dedicated set of tools that efficiently handle tasks such as positioning occupant dummy models, fitting seat belts, and folding airbags, significantly reducing the man-hours required for model creation. It can also flexibly accommodate user-specific procedures and internal standards, achieving a modeling environment that balances efficiency and reliability. ◆Rapid Result Evaluation and Automated Report Generation With REPORTER, result processing and report creation are automated, allowing for efficient handling of multiple specifications and numerous analysis cases. Reports can be output in HTML or PDF format, making it a significant advantage for quickly and consistently sharing and reporting results.

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BTO for ASU/MOLD-EX resin flow analysis software for the manufacturing industry.

BTO for the resin flow analysis software 'ASU/MOLD-EX' for the manufacturing industry.

The resin injection molding simulation software ASU/MOLD visualizes processes such as filling, warpage and shrinkage analysis, and mold cooling using a three-dimensional solid mesh, providing high-precision results in a short time. It is utilized in various stages from product design to mold creation and molding sites. There are no limitations on the number of CPU cores for calculations on a single PC. It is possible to execute multiple calculation jobs simultaneously, allowing for quick feedback cycles through the comparison of results based on mold shapes and molding conditions. We are configuring the optimal PC for that software.

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PC for the quantum chemistry calculation software 'BIOVIA' used for physical property prediction and analysis.

HPC for those conducting material property prediction and analysis, as well as chemical reaction analysis, using quantum chemistry calculation software.

<Research content using quantum chemistry calculations> - Prediction and analysis of material properties (prediction of stable structures, analysis of electronic states) - Analysis of chemical reactions (transition of energy, calculation of energy amounts) - Development of new materials and substances (design of functional materials, pharmaceutical development, development of new nanomaterials) To those in research and development departments as mentioned above, we introduce HPC for the quantum chemistry calculation software 'BIOVIA TURBOMOLE'.

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3D Measurement and Inspection Software PolyWorks Compatible PC

Workstation compatible with "PolyWorks Inspector" for comparing 3D point clouds and CAD and performing error analysis.

Industry-standard software that analyzes 3D measurement data and guarantees adherence to design specifications. PolyWorks | Inspector is a three-dimensional inspection and quality control software that can accurately analyze vast amounts of point cloud data obtained from CMMs (Coordinate Measuring Machines), laser scanners, optical scanners, and more, by matching it with CAD models. It is adopted across a wide range of manufacturing sectors, including automotive, aerospace, and precision machinery, contributing to quality assurance and improved production efficiency. ■ Key Features - Point cloud processing capabilities: noise removal, mesh generation, surface reconstruction - CAD matching/verification: error color map display, GD&T (Geometric Dimensioning and Tolerancing) analysis - Automation support: automation of inspection sequences, automatic report generation - Data integration: compatible with SPC (Statistical Process Control) and PLM systems ■ Benefits of Implementation - Quantifies the differences between design and actual products, ensuring product quality - Streamlines inspection processes and eliminates reliance on individual expertise - Builds a digital quality foundation compatible with smart factories To comfortably process vast point clouds and CAD models, a combination with a high-end workstation equipped with a high-performance CPU, professional GPU, and large-capacity memory is optimal.

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"DEFORM" plastic processing analysis simulation software operating PC

A plastic processing analysis software that visualizes metal deformation. It supports the optimization of forming processes such as forging, rolling, and cutting.

DEFORM is simulation software designed for high-precision analysis of deformation, stress, and temperature distribution in metal plastic processing. It supports a wide range of plastic processing processes such as forging, rolling, cutting, sintering, and joining, and achieves prototype reduction, process optimization, and quality improvement by numerically reproducing actual processing phenomena. ■ Main Features and Characteristics - High-precision process simulation for analyzing deformation, stress, and temperature distribution in metal plastic processing - Support for various plastic processing methods including forging, rolling, cutting, and extrusion - Visualization of load, friction, and stress concentration on molds to assist in extending mold life - Stabilization of quality through optimization of processing conditions, lubrication states, and temperature parameters - High-precision mesh generation and remeshing capabilities that accommodate complex shapes and multi-stage processes - Realistic deformation behavior reproduction through material models that consider temperature dependence - Equipped with a verified database that can be linked with experimental and manufacturing data - An analytical environment that supports a wide range of process design and optimization from research and development to production technology.

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PC for operating the casting analysis simulation software 'JSCAST'

Visualizing the "invisible flow" at the casting site. A high-spec PC dedicated to the high-precision analysis software "JSCAST."

JSCAST is a simulation software specifically designed for casting that accurately reproduces the flow, solidification, and defects of the casting process. It enables the optimization of materials, molds, and cooling conditions digitally, without relying on skilled craftsmanship or physical prototypes. ■ Main Features and Characteristics - High-precision casting process simulation integrating thermal fluid analysis and solidification analysis - Prediction and visualization of defects such as flow issues, gas entrapment, and shrinkage cavities - Improvement of yield through optimization of molds, cooling pipes, and pouring conditions - Flexible mesh generation that accommodates complex shapes and multi-material casting - Verified physical property database with high consistency with experimental data - Analytical environment operable in both cloud and on-premises settings - Modular structure supporting a wide range of applications including education, research, and production technology

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COMSOL workstation

Overwhelming calculation speed! Equipped with two 28-core CPUs (a total of 56 cores)!

Equipped with a total of 6 internal cooling fans (hot-swappable)! APPLIED SV-XS5220+SMS3Q2TU2SDGP/RTX6000Ada ■ CPU: [2 CPUs] Intel Xeon Gold 5520+ (2.20GHz/28 cores/56 threads) ■ Memory: 256GB (32GB x 8) DDR5-4800 ■ Storage: 1.92TB SATA SSD ■ Graphics: NVIDIA RTX 6000 Ada 48GB-GDDR6 (DisplayPort x4) ■ OS: Windows 11 Pro for Workstations ■ Power Supply: 2000W (80 Plus Platinum certified) redundant power supply (1+1) 1000 Watts (100V AC input) 1800W (200V AC input) ■ 1-year send-back hardware warranty @3,698,000 yen (excluding tax)

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For data analysis and simulation purposes! HPC for MATLAB

When using MATLAB for numerical calculations, data analysis, simulations, and more!

MATLAB enables high-precision numerical calculations, matrix computations, and statistical processing. It is a technical computing language that plays an important role in engineering and scientific fields, facilitating numerical calculations, data analysis, and simulations. It is characterized by high-precision calculations, a rich set of toolboxes, and an intuitive interface, making it widely used across various fields. MATLAB offers automatic parallel support and GPU support for hundreds of functions, allowing calculations to be parallelized without changing the code. Therefore, the performance of the GPU is extremely important.

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Applied SIEMENS Heavy Machinery Engineering Recommended PC

SIEMENS SimCenter Recommended Workstation for Heavy Machinery Engineering

SIEMENS SimCenter Heavy Machinery Engineering Simcenter System Simulation Recommended for comfortable software operation: Applied HPC Workstation A mechatronics system simulation platform that allows design engineers to virtually evaluate and optimize system performance. Combining CAE simulation and testing solutions to achieve engineering of high-quality products. Heavy machinery operates under harsh conditions, and all component parts must withstand these conditions. Heavy machinery manufacturers face the challenge of designing high-performance equipment without reducing fatigue life. Simulation-based durability analysis helps identify weak points in structural engineering and optimize designs. To perform valid analyses, it is necessary to conduct simulations with realistic operating loads.

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Recommended PC for AFDEX by Applied

Forging Analysis Simulation System AFDEX Recommended Workstation

A forging analysis simulation that anyone can easily use. AFDEX supports process design by predicting the manufacturability of forged products. AFDEX is a forging simulation software that can predict issues related to forging, from cold forging to hot forging in various settings. It is applicable to forging analysis in all fields and has achieved results even in areas with few industry precedents, such as thread rolling and plate forging. The user interface is intuitive and easy to understand, allowing analyses to be executed with minimal settings, enabling users to immediately benefit from forging simulation upon implementation.

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Applied JSTAMP/NV Recommended PC

Press Molding Simulation System JSTAMP/NV Recommended Workstation

JSTAMP/NV is an integrated press forming simulation system that supports the entire process from the conceptual stage of mold design to the final stage. JSTAMP is an integrated analysis system specialized for press forming. It features a triple solver equipped with LS-DYNA, JOH/NIKE, and HYSTAMP, achieving significantly higher accuracy and analysis speed compared to traditional methods (implicit method, one-step method). In particular, it is well-equipped with functions for addressing issues such as crack and wrinkle prevention, springback analysis, measurement, and accommodating anticipated shapes.

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Applied Moldex3D Recommended PC

Moldex3D is software with an intuitive interface that can be mastered by both experts in analysis and beginners, offering high reproducibility.

Moldex3D is a three-dimensional resin flow analysis software that boasts a world-class market share. It analyzes the entire mold, including parts, runners, and cooling channels, in three dimensions and reproduces it with high accuracy. In addition to solvers specifically designed for resin flow analysis, such as flow, cooling, and deformation, it offers robust computational features for fiber orientation, stress, and viscoelasticity. It also supports various special molding techniques, enabling efficient solutions for molding defects and optimization of molding conditions. The developer, CoreTech System Co., Ltd., was founded in Taiwan in 1995. Since then, it has led the plastic injection molding industry and continues to provide excellent CAE solutions. Moldex3D is equipped with a variety of optional features in addition to basic analysis functions such as flow, packing pressure, cooling, and deformation (warpage) to meet all the resin flow analysis needs required in design settings. Notably, it features advanced 3D mesh technology-based analysis solvers for fiber orientation and viscoelasticity, an interface with FEA (Finite Element Analysis), analysis tools for molding processes such as hot runners, and modules that support special molding techniques like compression molding and FIM (Fine Bubble Resin Injection Molding).

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Applied JWELD Recommended PC

JWELD is a welding simulation software that can analyze complex production processes such as the creation of raw materials, joining/assembly, finishing processes, and heat treatment using a PC.

JWELD is a welding deformation analysis software that combines a unique solver developed based on the inherent strain analysis solver JWRIAN, created at the Institute of Joining Science, with a Japanese-language user interface. It is capable of calculating not only large structures like hull panels but also thin-walled structures such as piping. The optimization feature automatically generates welding sequences that reduce deformation. JWELD is a production technology analysis platform that allows for the analysis of complex production processes such as joining, assembly and finishing, and heat treatment on a computer. It digitizes the experience and knowledge of skilled technicians, providing a comprehensive evaluation of the impact of processing and joining on products. Even without specialized knowledge, anyone can easily create models, perform analyses, and propose improvements using the intuitive interface set in Japanese. It allows for easy model creation without requiring specialized knowledge in finite element analysis, making it usable even in manufacturing sites where dedicated analysts are not present.

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Recommended PC for Applied EMCoS Studio

EMC Studio is a three-dimensional electromagnetic field analysis software for EMC and antenna design at the product assembly level.

EMCoS Studio enables the simulation of various EMC phenomena, from emissions and immunity to crosstalk, and it has particularly strong analytical capabilities regarding wire harnesses. Its excellent operability and analytical performance have been well received by many automotive and electronics manufacturers in Europe and Japan. Please make use of EMCoS Studio for efficient EMC design.

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Recommended PC for thermal fluid analysis software "Simcenter STAR-CCM+".

Recommended PC for the thermal fluid (CFD) analysis software "Simcenter STAR-CCM+"

Simcenter STAR-CCM+ is a multi-physics analysis software centered around CFD (Computational Fluid Dynamics) provided by Siemens Digital Industries Software. It is primarily used in fields such as automotive, aerospace, energy, and manufacturing. ■ Automotive Industry External aerodynamic analysis (calculation of drag and lift coefficients, prediction of wind noise) Flow analysis of the vehicle underbody and wheelhouse Flow and thermal analysis of engine cooling systems (radiators, fans) HVAC (heating, ventilation, and air conditioning) performance evaluation and passenger comfort analysis Analysis of mixture behavior and exhaust flow in combustion chambers ■ Aerospace Industry Aerodynamic characteristic analysis of the entire aircraft (lift, drag, stall prediction) Flow and thermal environment analysis around engines Icing and de-icing analysis (icing modeling) High-speed flow (supersonic) and acoustic (jet noise, etc.) analysis ■ Medical Devices and Bio Airflow analysis of inhalers and masks Analysis of fluid behavior in blood flow and respiratory systems (for research purposes) Hardware configuration for comfortable operation of Simcenter STAR-CCM+: Workstation

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Recommended PC for structural analysis (FEM) software "Simcenter 3D"

Recommended PC for structural analysis (FEM) software "Simcenter 3D"

Simcenter 3D is an integrated CAE platform provided by Siemens Digital Industries Software, capable of performing advanced multiphysics analyses such as structural, vibration, thermal, acoustic, motion, and electromagnetic field analyses within a single environment. ■ Integrated Platform It operates on Siemens NX CAD, allowing for a consistent environment for CAD and analysis (CAE), integrating everything from model preparation and mesh generation to simulation execution and visualization. ■ Main Analysis Areas Supported - Structural Analysis (Linear and Nonlinear) Static stress, buckling, creep, contact, etc. - Vibration and Eigenvalue Analysis Mode analysis, frequency response, random response, fatigue evaluation, etc. - Thermal Analysis Conduction, convection, radiation, steady-state and transient thermal distribution analysis. - Acoustic Analysis Sound pressure, noise evaluation, structural-acoustic coupling (Vibro-Acoustic). - Multibody Dynamics (MBD) Mechanism analysis, joints, dynamic load calculations. Hardware Configuration for Comfortable Operation of Simcenter 3D: Workstation.

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Recommended PC for COMSOL Multiphysics Physical Analysis

Applied Original HPC Workstation equipped with AMD Ryzen Threadripper

Our company has been manufacturing custom order HPC products at our own factory since its establishment. Recommended PC for running COMSOL Multiphysics, which enables the analysis of a wide range of physical phenomena using the finite element method. COMSOL Multiphysics includes fundamental features such as fluid dynamics, structural analysis, electromagnetic fields, thermoelectricity, convection and diffusion, and acoustics, making it a simulation software capable of analyzing various physical phenomena. We propose HPC suitable for COMSOL Multiphysics, which emphasizes CPU cores and memory. <Featured Models> ■ AMD Ryzen Threadripper 7960X (24 cores) / 256GB memory specification APPLIED Workstation CERVO Ryzen WST-RT7960XAS3Q1TTNVM ■ AMD Ryzen Threadripper 7970X (32 cores) / 256GB memory specification APPLIED Workstation CERVO Ryzen WST-RT7970XAS3Q1TTNVM *For more details, please refer to the PDF document.

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Introduction to HPC for various analysis software "Femtet"

For those looking for HPC for Femtet that can analyze electric fields, magnetic fields, electromagnetic waves, heat conduction, stress, fluids, piezoelectricity, and sound waves!

This product is an HPC designed for those who perform analyses of electric fields, magnetic fields, electromagnetic waves, thermal conduction, stress, fluids, piezoelectricity, and sound waves using Femtet, allowing for comfortable analysis.

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Single-thread focused workstation [CAE/CAD]

If you prioritize single-thread performance when choosing a PC, the Core Ultra 9 285K/7 265K is recommended!

When choosing a computer for CAE software, whether to prioritize single-thread performance or multi-thread performance depends on the software. For software with low parallel efficiency, a high-clock single-thread performance Core Ultra may be optimal. Core Ultra 9 285K: 24 cores (8+16) 3.7–5.6GHz Core Ultra 7 265K: 20 cores (8+12) 3.9–5.5GHz ■ Various parts can be customized according to your needs! ■ Recommended models based on usage and software are also available! ■ On-site hardware maintenance can be added! *For a fee

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NVIDIA PhysicsNeMo compatible GPU workstation

A GPU environment for PhysicsNeMo that integrates physical laws and AI to accelerate design verification.

NVIDIA PhysicsNeMo is a physics AI framework that combines physical laws and AI to accelerate simulations of fluids, heat, structures, and more. This product is a GPU workstation that allows for comfortable execution of learning, inference, and what-if validation of PhysicsNeMo in a local environment. It offers a balanced model equipped with an AMD Ryzen 9 and RTX PRO 4500 Blackwell, as well as a large-scale analysis model featuring a Threadripper and RTX PRO 6000 Blackwell Max-Q. It adopts Ubuntu 24.04 LTS and supports development environments utilizing PyTorch, Docker, Google Colab, and Magnum IO. It allows for quick verification of the results of design variable changes, supporting the efficiency of design exploration and digital twin development.

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