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Simulation device Product List and Ranking from 5 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

Simulation device Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. フィジオマキナ Saitama//Research and development equipment and devices
  2. 一般財団法人材料科学技術振興財団 MST Tokyo//Testing, Analysis and Measurement
  3. 日本工業試験所 Osaka//Testing, Analysis and Measurement
  4. 4 穂高電子 Kanagawa//Testing, Analysis and Measurement
  5. 5 MAXET Kanagawa//Trading company/Wholesale

Simulation device Product ranking

Last Updated: Aggregation Period:Jul 22, 2026~Aug 18, 2026
This ranking is based on the number of page views on our site.

  1. Subcutaneous injection simulation device 'Scissor N3' フィジオマキナ
  2. [Analysis Case] ESM-RISM Method LIB Electrolyte Component Simulation 一般財団法人材料科学技術振興財団 MST
  3. Inland water, external water, and tsunami flood modeling device. 日本工業試験所
  4. 4 [Analysis Case] Comparison of Redox Resistance of LIB Electrolyte Components through Quantum Chemical Calculations 一般財団法人材料科学技術振興財団 MST
  5. 4 [Analysis Case] Simulation of Impurity Diffusion in Silicon Crystals 一般財団法人材料科学技術振興財団 MST

Simulation device Product List

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[Analysis Case] Comparison of Redox Resistance of LIB Electrolyte Components through Quantum Chemical Calculations

You can predict the degradability of solvents and additives in the electrolyte solution, as well as the decomposition products.

In high-power lithium-ion batteries (LIBs), it is important to design the system to suppress the decomposition of the electrolyte during the charge and discharge processes. By adding components with low redox stability, it is possible to inhibit the decomposition of the main solvent during these processes and to form a high-quality SEI (Solid Electrolyte Interphase). By evaluating the redox stability of the electrolyte components through simulations, we can obtain indicators of the susceptibility of each component to decomposition during charge and discharge cycles, which can lead to the design of SEI components and characteristics. Measurement methods: Computational science, AI, data analysis Product field: Secondary batteries Analysis purpose: Evaluation of chemical bonding states and others For more details, please download the materials or contact us.

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[Analysis Case] Simulation of Impurity Diffusion in Silicon Crystals

It is possible to determine the diffusion pathways and barriers through simulation.

The electrical, optical, and magnetic properties of semiconductors are strongly influenced by defects and impurities present in the system. Therefore, to achieve the desired material properties, it is necessary to understand and control the behavior of defects and impurities. However, evaluating atomic-level microscopic behavior through experimental methods is challenging, making approaches using computational simulations effective. This document presents a case study using first-principles calculations with the NEB (Nudged Elastic Band) method to evaluate the diffusion pathways and barriers of metal impurities (Fe) in silicon crystals.

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  • Contract Analysis
  • Contract measurement
  • Simulation device

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[Analysis Case] CO2 Adsorption Simulation on MOF using GCMC Method

The adsorption properties of nano-porous materials such as MOF and zeolite can be predicted!

MOFs (Metal-Organic Frameworks) are attracting attention as nano-porous materials with potential applications in separation processes, catalysis, and gas storage. The combinations of MOF topology, linkers, and metal nodes are vast, and the types of synthesizable MOFs are virtually limitless. Therefore, prior screening and understanding of the structure, function, and properties are crucial for the development of new MOF materials. In this case study, we predicted the CO2 adsorption amounts for various MOFs using the GCMC (Grand Canonical Monte Carlo) method and examined the factors affecting the adsorption characteristics.

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  • Contract Analysis
  • Contract measurement
  • simulator
  • Simulation device

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Subcutaneous injection simulation device 'Scissor N3'

A device capable of simulating phenomena occurring in the subcutaneous environment of biopharmaceuticals.

The "Scissor N3" is a device that simulates phenomena occurring at the subcutaneous injection site of biopharmaceuticals. The physical behaviors that occur after various administration methods of conventional non-oral drugs are not well understood, but this product can simulate the chemical and various physical stresses that occur in the subcutaneous environment. Each experiment concludes within 24 hours and provides an in vitro model useful for studying bioavailability (BA) in subcutaneous administration. Additionally, it allows for offline analytical work (for example, concentration measurements using HPLC) to measure the concentration of excipients in samples. 【Features】 ■ High precision prediction of subcutaneous administration ■ Easy management of experiments ■ Connection to an auto-sampler (optional) ■ 4-channel exposure adjustment function ■ pH control through feedback loop *For more details, please refer to the catalog or feel free to contact us.

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  • Other cell research
  • Simulation device

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[Analysis Case] ESM-RISM Method LIB Electrolyte Component Simulation

Detailed illustrations of the schematic diagram near the electrolyte interface and the solvation structure in the electrolyte are provided!

In the charging and discharging process of lithium-ion secondary batteries, various phenomena occur near the interface with the electrolyte and the anode, including the formation of solvation, desolvation, the formation of electric double layers, and the de-insertion and insertion of Li ions. This document introduces a case where the ESM-RISM method, which combines the Effective Shielding Medium Method and the Reference Interaction Site Model, was used to evaluate the microscopic distribution of electrolyte components through simulation. This method is expected to be applicable not only to secondary batteries but also to a wide range of fields, including fuel cells, various catalytic reactions, and the corrosion and protection of metal surfaces. 【Contents】 ■ Overview ■ Data - Schematic diagram of the anode (graphite) - electrolyte interface - Solvation structure in the electrolyte - Electric double layer near the anode - electrolyte interface *For more details, please refer to the PDF document or feel free to contact us.

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  • Lithium-ion battery
  • Simulation device

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Inland water, external water, and tsunami flood modeling device.

Recreating regional damage using house and vehicle models. An experiential simulation to promote disaster prevention awareness.

This product is a simulation device designed as a diorama that realistically reproduces natural disasters. Based on a realistically recreated cityscape in the diorama, it can simulate water damage caused by heavy rain, allowing users to visually experience and easily understand the mechanisms behind flooding. This serves to enhance the disaster preparedness awareness of local residents, which is an important aspect of disaster response. 【Features】 - Diorama design that is easy to understand for people of all ages - Easily viewable from 360 degrees, making the movement of water clear - Simulates inland flooding, external flooding, tsunami inundation, and urban flooding - Reproduces inland water management (underground storage facilities) - Simulates local damage using models of houses and vehicles *For more details, please refer to the PDF materials or feel free to contact us.

  • others
  • Simulation device

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LAN/USB compatible ARINC429 test simulation device

Deploying the 429/717 test from the lab to the field.

This is a compact ARINC 429 interface device that supports USB or Ethernet connections. It balances portability and the inheritability of development assets, from lab testing to field simulations. 【Features】 ■ Option to choose between USB 2.0 or Ethernet connection ■ Compatible with RTx series API for easy migration ■ Excellent portability with battery/external power support *For more details, please download the PDF or feel free to contact us.

  • Company:MAXET
  • Price:Other
  • others
  • Simulation device

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AFV+ Series for Medical Devices

Safety testing of medical devices. Accurate reproduction of voltage and frequency.

In the medical device industry, operational testing under various environmental conditions is essential to ensure product safety. In particular, electrical safety is crucial for protecting the safety of patients and healthcare professionals. Unstable power supply and abnormal voltage or frequency can lead to malfunctions or failures of the equipment, potentially resulting in serious accidents. The AFV+ series is an ideal power supply for reproducing voltage and frequency conditions from various regions to evaluate the safety of medical devices. 【Usage Scenarios】 * Electrical safety testing of medical devices * EMC testing * Operational verification of products for overseas markets 【Benefits of Implementation】 * Simulating various power supply environments to verify equipment safety * Improving product reliability * Rapid deployment to overseas markets

  • power supply
  • Simulation device

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【自動車耐久試験向け】AFCシリーズ

世界各地の電源環境を再現。耐久試験の信頼性を向上。

自動車業界における耐久試験では、製品の信頼性を評価するために、様々な電源環境下での性能評価が求められます。特に、温度変化や振動にさらされる車載電子機器においては、安定した電源供給が不可欠です。不安定な電源は、試験結果の信頼性を損なう可能性があります。Preen「AFCシリーズ」は、±1%の高精度な電圧制御により安定した電源環境を提供し、試験装置の正確な動作をサポートします。必要とされる電圧・周波数条件を忠実に再現することで、信頼性の高い試験結果を得ることが可能です。 【活用シーン】 ・自動車部品の耐久試験 ・車載電子機器の評価試験 ・海外市場向け製品の試験 【導入の効果】 ・試験結果の信頼性向上 ・製品開発期間の短縮 ・グローバル市場への対応 【特長】 ・±1%の高精度な電圧制御 ・世界各国の電圧・周波数条件を再現 ・7インチまたは10インチのタッチスクリーンを標準搭載 ・RS-232およびRS-485通信に対応 ・最大2000kVAまで対応

  • power supply
  • Simulation device

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