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Action PC Product List

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HPC for the scRNA-seq analysis software 'Cell Ranger'

For bioinformatics applications!

Cell Ranger is an analysis software that counts gene expression levels from scRNA-seq data. ⇒ To perform single cell RNA-seq (scRNA-seq) analysis efficiently, it is recommended to use the free software Cell Ranger. However, to comfortably conduct analyses with Cell Ranger, high-spec computing with a CPU of 16 cores or more and at least 128GB of memory is required. Therefore, please consider the models introduced here!

  • Desktop PC

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Applied Cryo-Electron Microscope Analysis Workstation

Applied CERVO for Cryo-EM analysis, supporting the application analysis of advanced technology that achieved atomic-level resolution.

Cryo-Electron Microscope Analysis HPC Workstation Accelerate single-particle analysis from large-scale image data consisting of thousands to tens of thousands of images!! We propose a high-performance computing system for advanced analysis that supports the three-dimensional structural analysis of biomolecules. We support the acceleration and time-saving of research and development with a cryo-electron microscope and image detector that can efficiently collect high-quality electron microscope images, along with a computer capable of processing high-precision image analysis programs at high speed. *Recommended for users of single-particle analysis software such as RELION and CryoSPARC.

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  • Electron microscope
  • Transmission electron microscope
  • Imaging and image analysis equipment

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Applied Mk1D Workstation

Compact PC for Mk1D analysis, ideal for fieldwork and compact lab environments.

The MinION Mk1D is an ultra-compact DNA/RNA sequencer developed by Oxford Nanopore Technologies, boasting high performance despite its portable size. It supports USB-C connectivity, allowing for easy integration with the latest laptops and workstations. Equipped with a Peltier temperature control function, it enables stable sequencing within a range of 10 to 35°C. It supports ultra-long reads of over 4Mb, making it ideal for real-time genome analysis and metagenome analysis. An LED indicator provides an intuitive understanding of the operational status. It accommodates a wide range of applications, including whole genome analysis of bacteria, amplicon analysis of viruses, identification of 16S rRNA, and transcriptome analysis (cDNA and direct RNA).

  • Stress Analysis
  • Structural Analysis
  • Thermo-fluid analysis

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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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  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis

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Applied AutoDesk Fusion Designer CAE PC

Consolidating everything needed for 3D manufacturing into one.

An all-in-one package that can handle everything from design to analysis and manufacturing, with software capable of 3D CAD/CAM/CAE simulations. AutoDesk Fusion is software that consolidates all the necessary functions for manufacturing into one package. It includes features for 3D modeling, assembly, 2D drawing creation, analysis functions, and cutting tool path creation (CAM), as well as advanced capabilities for high-quality product design, such as circuit design and generative design tools that utilize AI. Additionally, by leveraging cloud technology, it enables reduced analysis computation time and data sharing that is not limited by location.

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  • Structural Analysis
  • Thermo-fluid analysis
  • Stress Analysis

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Recommended PC for Applied J-OCTA

J-OCTA enables collaboration of simulators at various scales on a common platform for research and development in materials and life sciences.

J-OCTA is a multi-scale simulation software that predicts the properties of high-performance materials, such as resins, rubber, nanocomposites, thin films, inks, and batteries, as well as research and development in the life sciences field, including drug discovery and formulation, from atomic scale to micrometer scale on a computer. It can be used as a knowledge discovery tool to understand the mechanisms of complex phenomena that cannot be fully grasped through experiments alone, as well as a data creation tool for informatics.

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  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis

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Recommended PC for Applied SIMULIA CST Studio

Electromagnetic field analysis simulation software SIMULIA CST Studio Suite recommended workstation

Electromagnetic Field Analysis Simulation Software SIMULIA CST Studio Suite Recommended for smooth operation of the software: Applied HPC Workstation This is a high-performance three-dimensional electromagnetic field analysis software package for the design, analysis, and optimization of electrical components and systems. CST Studio Suite consolidates electromagnetic solvers for applications across all areas related to electromagnetic fields into a single user interface. By linking each solver, hybrid simulations can be performed, allowing engineers to flexibly analyze the entire system composed of multiple components in an efficient and comprehensible manner. Through collaborative design with other SIMULIA products, electromagnetic simulations can be integrated into the design flow, advancing the development process from the initial stages.

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  • Magnetic field analysis/electromagnetic wave analysis

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Applied J-Composites Recommended PC

J-Composites is a modeling tool for resin composite press molding analysis that supports various composite molding methods.

J-Composites/Form Modeler is a model creation tool for resin composite press molding analysis. It automatically constructs material models for press molding from various test results, allowing for easy setup of complex composite stacking models through a dedicated user interface, and can export them as input files for LS-DYNA. Additionally, by considering both in-plane and out-of-plane material properties, it more accurately predicts and evaluates defects such as wrinkles that occur during the molding of dry fiber substrates and thermoplastic/thermosetting prepregs.

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  • Stress Analysis
  • Structural Analysis

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Applied Digimat Recommended PC

Digimat is software specialized in composite material simulation, enabling the prediction of macro material properties that reflect microstructure.

Digimat is software specialized in composite material simulation. To apply composites in products, predicting the unique physical properties of composites is key. Digimat predicts the material properties of composites from the material properties and microstructural information of the matrix and inclusions. Furthermore, we provide an interface for structural analysis that takes into account the distribution of material properties resulting from the molding process using the predicted material properties. Digimat supports the research and development of new materials and product design using composite materials.

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  • Structural Analysis
  • Mechanism Analysis
  • Stress Analysis

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Applied AutoDesk Inventor Designer CAE PC

Powerful integrated solution of CAD and simulation.

Inventor Nastran is an embedded finite element analysis (FEA) software integrated into "Inventor" for designers and analysts. It is used for professional-level simulation analysis and virtual prototypes of models designed in CAD. Since it is integrated into Inventor, it allows for analysis while designing, thereby speeding up and improving the efficiency of the design process. With Autodesk Inventor Nastran, you can perform professional-level simulation analysis. Inventor Nastran supports everything from basic FEA to more advanced FEA, and offers various features such as: - Material model analysis - Automatic drop testing - Automatic impact analysis - Automatic generation of neutral plane meshes - Optimization of beam modeling, among others.

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  • Structural Analysis
  • Stress Analysis
  • Thermo-fluid analysis

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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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  • Stress Analysis
  • Structural Analysis
  • Thermo-fluid analysis

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Drive simulator "SCANeR studio" operation PC

A driving simulation platform that reproduces reality, from advanced driver assistance to autonomous driving.

AVSimulation SCANeR Studio is a real-time driving simulation platform that enables the reproduction and verification of driving environments in the development of ADAS (Advanced Driver Assistance Systems) and autonomous driving. - Faithfully reproduces real road, traffic environments, and weather conditions - Supports modeling of sensors (LiDAR, cameras, radar) and vehicle dynamics - Compatible with SIL (Software-in-the-Loop) and HIL (Hardware-in-the-Loop) environments - Capable of simulating a wide range from individual vehicles to entire cities - Easy integration with other CAE tools and ADAS development software It allows design, development, and verification to be completed in a virtual space, contributing to cost reduction and improved development speed. There are numerous implementation achievements in automotive manufacturers, research institutions, and Tier 1 suppliers.

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  • simulator
  • Industrial PCs

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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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  • Structural Analysis
  • Thermo-fluid analysis
  • Mechanism Analysis

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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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  • Other analyses
  • Thermo-fluid analysis
  • Industrial PCs

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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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  • Structural Analysis
  • Mechanism Analysis
  • Analysis Services

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