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Our company estimates the number of products operating in the market and the necessary repair parts based on reliability engineering, providing support to derive the appropriate inventory levels. By achieving demand forecasting, we can avoid issues such as holding excessive repair parts or being unable to respond due to shortages. 【Benefits and Features of the Service】 ■ Improvement in the quality of after-sales service ■ Reduction of costs associated with inventory storage ■ Capability to respond even without data for estimates *Currently, we are offering materials that clearly explain the mechanism and service content for estimating the number of repair parts. Please check it out from "PDF Download."
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By combining our electronic form system "i-Reporter" and the equipment maintenance management system "FLiPS," it is possible to manage spare parts in maintenance operations. - The number of spare parts is enormous, leading to management oversights... - Due to entry errors and time lags, inventory counts are not accurately calculated or reflected... - There have been instances of forgetting to replenish spare parts due to their low usage frequency and quantity... We address such concerns in spare parts management by immediately reflecting on-site reports and results into the system with "i-Reporter." "FLiPS" manages inventory in and out, displaying only the necessary data for administrators to prevent misunderstandings. *For more details, please refer to the PDF document or feel free to contact us.
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"Particle-PLUS" is a simulation software suitable for research, development, and manufacturing of devices, materials, and systems using plasma. It allows for fast results without the need to simulate the entire device by combining axisymmetric models and mirror-symmetric boundary conditions. It supports both 2D (two-dimensional) and 3D (three-dimensional) analyses, enabling efficient analysis even for complex models. 【Features】 ■ Specializes in low-pressure plasma analysis ■ Allows for fast results without the need to simulate the entire device by combining axisymmetric models and mirror-symmetric boundary conditions ■ Excels in plasma simulation for low-pressure gases, which are difficult to compute with fluid models ■ Supports both 2D (two-dimensional) and 3D (three-dimensional) analyses, enabling efficient analysis even for complex models ■ Customization to fit customer devices is possible as a strength of in-house developed software *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce the "Availability Workbench ALT (Accelerated Testing) Module" that we handle. By importing/exporting simple data, it is possible to conduct analysis by inputting data. This product is recommended for those who want to conduct analysis related to accelerated testing or those who wish to perform destructive testing for quality improvement but are struggling with limited sample sizes or time. 【Features】 ■ Analysis can be conducted by inputting data through simple data import/export ■ Easy setup of multiple acceleration conditions ■ Support from experts well-versed in equipment management and failure analysis across various industries ■ Project management in bulk through the tool ■ Intuitive user interface ■ Compatible with other modules *For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce the "Reliability Workbench FMECA Module" that we handle. It supports the AIAG/VDA FMEA format, abolishes the conventional RPN evaluation, and introduces an evaluation based on AP, along with a seven-step analysis that needs to be addressed in order, thereby assisting in achieving these objectives. This product is recommended for those involved in quality management of automotive-related products and for those struggling with AIAG/VDA compliance. 【Features】 ■ Project management in bulk through the tool ■ Intuitive user interface ■ Compatibility with other modules *For more details, please refer to the PDF document or feel free to contact us.
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Weibull analysis is a method that uses the number of failures as input to determine the unreliability. Once the unreliability is known, the failure rate and unreliability can also be determined. Our company regularly holds free seminars on Weibull analysis. We provide clear explanations from the basics of reliability data analysis to an overview of Weibull analysis and representative methods. For more details, please check below. https://www.wavefrontsales.com/teikiseminar/weibull/
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Simulation Analysis of Gas Flow in Shower Head Type CVD Equipment Initially compatible with various simulations 【Features】 ■ By adopting a non-structured mesh, it is possible to calculate the complex shapes of actual equipment as they are. ■ High parallel efficiency allows for quick computation results even for large-scale shapes. ■ Since a particle method is used, unlike fluid models, convergence solutions can always be obtained even with poor quality computational grids. ■ With comprehensive technical support, even those new to simulations or busy with experiments can reliably achieve results. ◆ Compatible with various cases ◆ - Simulation of rarefied gas flow in a vacuum chamber - Simulation of thin film generation in semiconductor manufacturing - Simulation of thin film generation in semiconductor manufacturing such as Chemical Vapor Deposition (CVD), Organic Light Emitting Diodes (OLED), and Molecular Beam Epitaxy (MBE) ◆ Outputs various computation results ◆ - Calculation of chemical reactions - Calculation of chemical reactions from Arrhenius-type reaction data - Calculation of dissociation, recombination, and molecular (atomic) exchange reactions - Multiple reaction equations can be set on the GUI *We also offer contract analysis, so please feel free to contact us.
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**Features** - Adopts unstructured mesh, allowing for calculations that accurately reflect the complex shapes of actual devices. - High parallel efficiency enables quick computation results even for large-scale geometries. - Utilizes a particle method, ensuring convergence to a solution even with poor-quality computational grids, unlike fluid models. - Comprehensive technical support ensures that even those new to simulation or busy with experiments can reliably achieve results. **Supports Various Cases** - Simulation of rarefied gas flow in a vacuum chamber. - Simulation of thin film generation in semiconductor manufacturing. - Chemical vapor deposition (CVD), organic light-emitting diode (OLED), molecular beam epitaxy (MBE). - Film deposition simulations involving chemical reactions like CVD. **Outputs Various Computational Results** - Calculation of chemical reactions. - Calculation of chemical reactions from Arrhenius-type reaction data. - Calculation of dissociation, recombination, and molecular (atomic) exchange reactions. - Ability to set multiple reaction equations on the GUI. *For more details, please refer to the catalog or feel free to contact us.*
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Simulation Analysis of Dust Behavior Affecting Contamination Initially compatible with various simulations 【Features】 ■ By adopting unstructured meshes, it is possible to compute the exact shape of complex actual devices. ■ High parallel efficiency allows for quick computation results even for large-scale shapes. ■ Since a particle method is used, unlike fluid models, convergence solutions can be obtained even with poor-quality computational grids. ■ With comprehensive technical support, even those new to simulations or busy with experiments can reliably achieve results. ◆ Supports various case studies ◆ - Simulation of rarefied gas flow in a vacuum chamber - Simulation of thin film generation in semiconductor manufacturing - Simulation of thin film generation in semiconductor manufacturing such as Chemical Vapor Deposition (CVD), Organic EL (OLED), and Molecular Beam Epitaxy (MBE) ◆ Outputs various computational results ◆ - Calculation of chemical reactions - Calculation of chemical reactions from Arrhenius-type reaction data - Calculation of dissociation, recombination, and molecular (atomic) exchange reactions - Multiple reaction equations can be set up on the GUI *We also offer contract analysis, so please feel free to contact us.*
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The "Service Parts and Repair Parts (Spare Parts, Replacement Parts) Demand Forecasting System" is a service that can handle data acquisition, management, and analysis using integrated functions. For the acquisition and management of defect information, we provide i-Reporter, FLiPS, and AiPOST. For data analysis and simulation, we offer Availability Workbench. Additionally, by integrating these tools, it is possible to quantitatively evaluate equipment utilization rates, maintenance cycle optimization, required spare parts quantity, lifecycle costs, and more. 【Features】 ■ Centralized management and visualization of projects through tools ■ Quantitative evaluation through simulation for areas previously reliant on intuition in the field ■ Intuitive user interface *For more details, please refer to the PDF materials or feel free to contact us.
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The paperless tool for experimental data, "BIOVIA Notebook," is an electronic lab notebook that can be easily introduced and operated. It is the ideal tool for accelerating DX promotion in technology development and research departments, and it can be used by all customers engaged in "experiments," regardless of industry. In the past, it has achieved cost reductions on the scale of hundreds of millions of yen and has a track record of operating with 4,000 users without the need for dedicated personnel. Additionally, by using "Pipeline Pilot," which comes with BIOVIA Notebook, integration with other systems, including LIMS, is also possible. 【Features】 ■ Content is easier to read with a common format ■ Simple screen layout allows for intuitive operation ■ Easy to introduce and start ■ No special preparation or training is required before use ■ Compatible with Word / Excel / PowerPoint and many web browsers ■ Excellent search system within the electronic lab notebook allows for efficient use of data *For more details, please check the PDF download.
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FLiPS is a maintenance management system, and the following benefits can be expected from its implementation. 【Expected Benefits】 - Reduction of waiting time for spare parts and optimization of inventory - Centralized management linking the quality of manufactured products with the condition of equipment - Visualization of costs, schedules, and actual results necessary for equipment maintenance - Optimization of cycles for regular inspections and parts replacements - Efficiency in budgeting for equipment purchases and maintenance management We have operational experience with both on-premises and cloud solutions.
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This technology is a system that plans and manages maintenance operations for various types of machinery and equipment based on a calendar. It enables labor-saving in maintenance operations compared to traditional methods of creating and managing equipment ledgers using paper or Excel. We have operational experience with both on-premises and cloud solutions.
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The Availability Workbench Weibull module can calculate the failure rate of equipment components based on failure data. The purpose of Weibull analysis is to calculate the failure rate of equipment, understand the characteristics of equipment failures, and lead to maintenance optimization. Experts familiar with equipment management and failure analysis in various industries provide support. 【Features】 ■ Analysis can be performed by inputting data ■ Immediate connection to maintenance optimization through integration with RCMCost and AvSim ■ Support from experts well-versed in equipment management and failure analysis across various industries ■ Project management in bulk through tools ■ Intuitive user interface ■ Possible integration with other modules *For more details, please refer to the PDF materials or feel free to contact us.
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The Availability Workbench AvSim module can simulate the impact of spare parts inventory levels on the lifecycle costs of equipment. It is also possible to simulate the operational rate and performance of the equipment. It models the dependencies of spare parts and achieves optimization of inventory levels. 【Features】 ■ Capable of calculating equipment operational rates and performance ■ Support from experts familiar with equipment management and failure analysis across various industries ■ Project bulk management through tools ■ Intuitive user interface ■ Compatible with other modules *For more details, please refer to the PDF materials or feel free to contact us.
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"RCMCost" enables reliability-centered maintenance (RCM) based on failure mode and effects and criticality analysis (FMECA). This product supports the achievement of objectives such as minimizing costs, meeting safety and environmental goals, and fulfilling operational targets. Additionally, it allows for the calculation of appropriate maintenance cycles. 【Features】 ■ Project management in bulk through tools ■ Intuitive user interface ■ Compatible with other modules ■ Ability to calculate appropriate maintenance cycles ■ Support from experts familiar with equipment management and failure analysis across various industries *For more details, please refer to the PDF materials or feel free to contact us.
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FLiPS is a calendar-based asset management system, and we particularly recommend it to customers who have the following concerns: - Want to centrally manage the quality of manufactured products and the condition of equipment in relation to each other - Want to visualize the costs, schedules, and actual results necessary for equipment maintenance - Want to know the optimal cycle for regular inspections and replacements - Want to streamline the budgeting process for equipment purchases and maintenance management We have operational experience with both on-premises and cloud solutions.
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The electronic laboratory notebook "BIOVIA Notebook" is an easy-to-implement and operate ELN/electronic laboratory notebook. It promotes innovation in research and development by accelerating the speed of research and development, reducing costs, and enabling information sharing across organizations in the daily operations of researchers. In the past, we have achieved cost reductions on the scale of hundreds of millions of yen and have operated with 4,000 users without the need for dedicated personnel. Additionally, by using "Pipeline Pilot" that comes with BIOVIA Notebook, integration with other systems, including LIMS, is also possible. 【Features】 ■ Content is easier to read with a common format ■ Simple screen layout allows for intuitive operation ■ Easy to implement and start ■ No special preparation or training is required before use ■ Compatible with Word / Excel / PowerPoint and many web browsers ■ Excellent search system within the electronic laboratory notebook allows for efficient use of data *For more details, please check the PDF download.
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The dedicated analysis software for arc discharge, "VizSpark," not only considers the characteristics of arc plasma but also takes into account the thermal interactions with solids, magnetic fields, and fluid dynamics, making it applicable for a wide range of purposes. It can analyze the heat generated by arc plasma, the pressure and temperature rise associated with heating, and the energy efficiency of the arc plasma. 【Features】 ■ Developed by engineers from Esgee Technologies, a U.S. company founded by experts in plasma simulation. ■ Allows for accurate verification of arc formation in the development of circuit breakers and relays. ■ Capable of predicting issues caused by overcurrent. ■ By predicting surface temperatures due to arcs, it enables forecasting of wear on terminals and contacts, as well as terminal melting. ■ Contributes to the reliability and safety improvements of electric vehicles and home appliances. *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and torque over time Recently, there has been an increase in projects for cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The analysis diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations, water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and time variations of torque Recently, there has been an increase in projects for cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to identify areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by undertaking actual contract work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer: https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effects ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for cooling analysis of E-Axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine calculation meshes - The analysis diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to identify areas where oil is present. Our company undertakes actual contracted work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling: https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for cooling analysis of eAxles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it can only determine the areas where oil is present. Our company undertakes actual contracted work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - It diverges and does not converge Additionally, even when analyzed using particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it only provides a rough idea of where the oil is located. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in the liquid ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of e-axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries regarding: - Excessive analysis time - Difficulty in creating fine computational meshes - Divergence and failure to converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contracted work from Tier 1 customers. SAE presentation paper on motor oil cooling from the developer: https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Time variation of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Recently, there has been an increase in projects for oil cooling analysis of E-Axles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine computational meshes - The solution diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it is only possible to determine the areas where oil is present. Our company has gained know-how that cannot be obtained solely from software sales by actually undertaking contract work from Tier 1 customers. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/
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【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation, water hammer effect ■ Coupling of pump flow with the rigid body motion of valves and cam rings ■ Flow in low to medium vacuum conditions ■ Compressible flow (subsonic) ■ Cavitation ■ Flow field (velocity vectors, pressure), flow rate, fluid forces, and time variation of torque Recently, there has been an increase in projects for oil cooling analysis of eAxles for automobiles, and when solving the VOF method with other CFD software, we have received inquiries such as: - Analysis time is too long - It is difficult to create fine calculation meshes - It diverges and does not converge Additionally, even when analyzing with particle methods, we have received feedback that accurate thermal analysis cannot be performed, and it can only determine the areas where oil is present. Our company undertakes actual contract work from Tier 1 customers, gaining know-how that cannot be obtained solely from software sales. Development source's SAE presentation paper on motor oil cooling https://saemobilus.sae.org/content/2020-01-0168/
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The Reliability Workbench is a tool based on reliability engineering used for evaluating and analyzing reliability and safety in accordance with functional safety. The Prediction module assists in calculating electronic component failure rates based on various handbooks.
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◆Engagement in Materials Informatics (MI)! By utilizing electronic experimental data, initiatives in MI such as machine learning become possible. 1) An electronic lab notebook (ELN) that can be easily introduced and operated. 2) Its simple operation allows for software utilization even without a dedicated system developer (proven track record of operation with 4,000 users without the need for dedicated personnel). 3) Expandability: Integration with other software is possible. ◇Main Features - Flexibly document experimental content Quickly and easily record experimental content such as text, images, documents, chemical structures, and analytical data. - Electronic signatures and intellectual property protection Ensure timely signing and approval of the lab notebook, which is a standard feature. Protect intellectual property and comply with regulations. - Powerful search Easily record, search, and share data from anywhere. - Features for chemists Record chemical structures and reaction formulas using preferred chemical drawing tools (BIOVIA Draw, MarvinSketch, ChemDraw). - Advanced analysis and reporting Scientific data analysis, visualization, and automated report generation using BIOVIA Pipeline Pilot.
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1) It is an electronic lab notebook (ELN) that can be easily introduced and operated. 2) Its simple operation allows for software utilization even without a dedicated system developer (there is a proven track record of operation with 4,000 users without the need for a dedicated person). 3) Expandability: It can be integrated with other software. ◇ Main Features - Flexibly describe experimental content: Quickly and easily record experimental content such as text, images, documents, chemical structures, and analytical data. - Electronic signatures and intellectual property protection: Ensure timely signing and approval of the lab notebook as a standard feature, protecting intellectual property and ensuring regulatory compliance. - Powerful search: Easily record, search, and share data from anywhere. - Features for chemists: Record chemical structures and reaction formulas using preferred chemical drawing tools (BIOVIA Draw, MarvinSketch, ChemDraw). - Advanced analysis and reporting: Scientific data analysis, visualization, and automated report generation using BIOVIA Pipeline Pilot.
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◆Engagement in Materials Informatics (MI)! By utilizing electronic experimental data, initiatives in MI such as machine learning become possible. 1) An electronic lab notebook (ELN) that is easy to introduce and operate. 2) Simple operations allow for software utilization without the need for dedicated system developers (proven track record of operation with 4,000 users without dedicated personnel). 3) Expandability: Integration with other software is possible. ◇Main Features - Flexibly document experimental content Quickly and easily record experimental content such as text, images, documents, chemical structures, and analytical data. - Electronic signatures and intellectual property protection Ensure timely signing and approval of the lab notebook, which is a standard feature. Protect intellectual property and comply with regulations. - Powerful search capabilities Easily record, search, and share data from anywhere. - Features for chemists Record chemical structures and reaction formulas using preferred chemical drawing tools (BIOVIA Draw, MarvinSketch, ChemDraw). - Advanced analysis and reporting Scientific data analysis, visualization, and automated report generation using BIOVIA Pipeline Pilot.
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The "Availability Workbench (AWB)" is software that calculates the failure probability and lifespan of equipment based on equipment configuration, work performance, and failure history information, supporting maintenance-related tasks. It can seamlessly integrate with various analysis tools, ERP, and EAM, allowing for calculations from failure rates to lifecycle costs. 【Targeted Tasks】 ■ Evaluation of equipment failure characteristics and lifespan under in-house installation environments and usage conditions ■ Calculation of quantitative values to determine maintenance cycles ■ Verification of the comprehensiveness of tasks and maintenance cycles ■ Optimization of combinations of various tasks ■ Consideration of costs, operational rates, necessary spare parts, and required personnel due to maintenance implementation ■ Determination of maintenance methods based on risk ■ Creation of medium- to long-term maintenance plans based on LCC evaluation *You can view materials introducing the functions via the download button below. Please feel free to contact us with any inquiries.
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You can use it on iOS, Windows, and Android! ● You can easily create a no-code work guidance type web recording and reporting app by yourself. ● Each guidance can accurately instruct the timing for referencing necessary steps and manuals based on the work scenario, achieving standardization of all on-site work and its recording and reporting tasks. ● Once the report from the field is completed, the i-Reporter’s recording and reporting forms are automatically generated, allowing for real-time information sharing.
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1) It is an electronic lab notebook (ELN) that can be easily introduced and operated. 2) Its simple operation allows for the use of the software even without a dedicated system developer (there is a proven track record of operation with 4,000 users without the need for a dedicated person). 3) Expandability: It can be integrated with other software. ◇ Main Features - Flexible description of experimental content Quickly and easily record experimental content such as text, images, documents, chemical structures, and analytical data. - Electronic signatures and intellectual property protection Ensure timely signing and approval of the lab notebook, which is a standard feature. Protect intellectual property and comply with regulations. - Powerful search Easily record, search, and share data from anywhere. - Features for chemists Record chemical structures and reaction formulas using preferred chemical drawing tools (BIOVIA Draw, MarvinSketch, ChemDraw). - Advanced analysis and reporting Scientific data analysis, visualization, and automated report generation using BIOVIA Pipeline Pilot.
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This time, the goal was to grasp the trends of optimal experimental conditions by predicting characteristic values. <Background> From traditional to modern times, developing materials with better characteristic values is an important task across all fields and remains a significant challenge. Additionally, since the characteristic values of materials can be influenced by various factors, there is a demand for increased efficiency in material development. For instance, factors such as the materials used during development, reaction time, temperature, and hysteresis may also affect the results. While it is ideal to introduce experimental design methods for all these conditions and discover optimal conditions through actual experiments and measurements, this is not realistic from a cost and time perspective. Therefore, we conducted machine learning using a small dataset that recorded several experimental conditions (for example, explanatory variables X1, X2, X3, X4, ...) and their respective characteristic values (for example, objective variables Y1, Y2). In this case, we were able to easily perform machine learning to create a model and improve prediction accuracy. *For more details, please contact us.*
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While full implementation across the company is challenging, starting with project-based implementation is possible. A small start is feasible. **Features & Easy Usability** - Simple, easy to implement and operate (proven track record of operation with 4,000 users without the need for dedicated personnel) - Compatible with OFFICE (Word, Excel, PPT) / PC, tablets (Apple), and various web browsers - Easy to operate without worrying about layout - Simply drag and drop the necessary data files from various sections (MS Office, Chemical Sketch, PDF, etc.) - Searchable within the electronic lab notebook, allowing for bulk management of experimental values, papers, and other data.
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"Particle-PLUS" is software suitable for research and development of devices using plasma, compatible with ICP and CCP. - Excels in simulations of low-pressure gases where fluid modeling is difficult - Calculation functions for inductive heating for ICP simulations - Advanced physical model analysis such as CCP and external circuit models - Capable of simultaneously simulating ICP and CCP - Supports 2D and 3D, efficiently analyzing complex models - As a strength of our in-house developed software, customization to fit customer devices is possible ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD), etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us at sales@wavefront.co.jp.
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"Neural Designer" is a no-programming-required application that allows you to easily build predictive models using deep learning. It supports the creation of three types of predictive models: approximation models, classification models, and time series forecasting models. (In particular, approximation models are also referred to as regression models or surrogate models.) Using various measurement data and simulation results, you can construct predictive models with neural networks. This enables significant time savings in simulations. It is also effective for optimizing operating conditions and settings for various devices and machinery. 【Features】 ■ Not only can you build predictive models, but you can also output relationships and create surrogate models. ■ Basic statistical processing, such as checking for missing values in data analysis, can be performed with one button. ■ You can visualize the relationship between the target variable and each design variable in a graph. ■ The relationship between the target variable and each design variable can be expressed in the form of y=f(x). ■ The created models can be output in C or Python format. *For more details, please refer to the documentation. Feel free to contact us with any inquiries. ★ With the version upgrade, functionality and convenience have been further enhanced! The "Optimization (Inverse Analysis)" and "Japanese Version" have been released.
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The dedicated analysis software for arc discharge, "VizSpark," not only considers the characteristics of arc plasma but also takes into account the heat exchange with solids, magnetic fields, and fluid dynamics, making it applicable for a wide range of purposes. It can analyze the heat generated by arc plasma, the pressure and temperature rise associated with heating, as well as the energy efficiency of the arc plasma. 【Features】 ■ Developed by engineers from Esgee Technologies, a company established by experts in plasma simulation in the United States. ■ Allows for accurate verification of arc formation in the development of circuit breakers and relays. ■ Capable of predicting issues caused by overcurrent. ■ By predicting the surface temperature caused by the arc, it can forecast wear on terminals and contacts, as well as terminal melting. ■ Contributes to improving the reliability and safety of electric vehicles and home appliances. *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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It is said that we have entered an era where the use of machine learning and AI is desired in research and development. Our company assists in improving operational efficiency by utilizing machine learning and AI. Experienced engineers will propose various plans tailored to our customers' needs, such as "packaged software sales" and "contract analysis." Please feel free to contact us when you need assistance. 【Software We Handle】 ■ Predictive modeling tool "Neural Designer" ■ Plasma analysis "Particle PLUS/DL" ■ Data science tool "Pipeline Pilot" ■ Material development analysis software "Materials Studio" ■ Electronic lab notebook "BIOVIA Notebook" *For more details, please refer to the PDF materials or feel free to contact us.
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"Neural Designer" is a no-programming-required application that allows you to easily build predictive models using deep learning. It supports the creation of three types of predictive models: approximation models, classification models, and time series prediction models. (In particular, approximation models are also referred to as regression models or surrogate models.) Using various measurement data and simulation results, you can construct predictive models with neural networks. This enables significant time savings in simulations. It is also effective for optimizing operating conditions and settings for various devices and machines. 【Features】 - Not only can you build predictive models, but you can also output relationships and create surrogate models. - Basic statistical processing, such as checking for missing values in data analysis, can be performed with one button. - You can visualize the relationship between the target variable and each design variable in a graph. - The relationship between the target variable and each design variable can be expressed in the form of y=f(x). - The created models can be output in C or Python formats. *For more details, please refer to the documentation. Feel free to contact us with any inquiries. ★ With the version upgrade, functionality and convenience have been further enhanced! The "Optimization (Inverse Analysis)" and "Japanese Version" have been released.
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This is an analysis case of magnetron sputtering using a cylindrical target, which is one method for forming a strong film on the inside of a long cylindrical pipe. By combining the axisymmetric model and mirror symmetry boundary conditions available in Particle-PLUS, it is possible to obtain results quickly without the need to simulate the entire device. ◇ Features of 'Particle-PLUS' - It excels in low-pressure plasma analysis. - By combining the axisymmetric model and mirror symmetry boundary conditions, it allows for rapid results without the need to simulate the entire device. - It specializes in plasma simulations for 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. - Customization is possible as a strength of our in-house developed software. ◆ Various calculation results can be output ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Density distribution/temperature distribution/velocity distribution of neutral gas and more. *Please feel free to contact us for more details.
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FLiPS is a system that manages various events related to lines, processes, facilities, equipment, and machinery in a chronological order using a calendar format. In addition to equipment management, it enables process management, quality management, traceability, and cost management. Recently, we have been receiving many inquiries regarding the management of manufacturing processes and quality. Do you have any of the following challenges or concerns? - I want to centrally manage data from the manufacturing site. - I want to collect data on equipment utilization rates and product yields. - I want to visualize the collected data. - I want to visualize the progress of operations. - I am being asked to pursue digital transformation (DX), but I don't know where to start, etc. With FLiPS, it is possible to digitize historical data by accumulating data on processes, progress, and achievements. Additionally, it can be integrated with BI tools like Motion Board for real-time visualization and understanding of the current situation, and with electronic form systems like i-Reporter to digitize manufacturing records and reporting tasks, reducing manual data entry work.
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FLiPS is a system that manages various events related to lines, processes, facilities, equipment, and machinery in a chronological order using a calendar format. In addition to equipment management, it enables process management, quality management, traceability, and cost management. Recently, we have been receiving many inquiries regarding the management of manufacturing processes and quality. Do you have any of the following challenges or concerns? - I want to centrally manage data from the manufacturing site. - I want to collect data on equipment utilization rates and product yields. - I want to visualize the collected data. - I want to visualize the progress of operations. - I am being asked to pursue digital transformation (DX), but I don't know where to start, etc. With FLiPS, it is possible to digitize historical data by accumulating data on processes, progress, and achievements. Additionally, it can integrate with BI tools such as Motion Board to visualize and understand the current situation in real-time, and it can work with electronic document systems like i-Reporter to digitize manufacturing records and reporting tasks, reducing manual data entry work.
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FLiPS is a system that manages various events related to lines, processes, facilities, equipment, and machinery in a chronological order using a calendar format. In addition to equipment management, it enables process management, quality control, traceability, and cost management. Recently, we have been receiving many inquiries regarding the management of manufacturing processes and quality. Do you have any of the following challenges or concerns? - I want to centrally manage data from the manufacturing site. - I want to collect data on equipment utilization rates and product yields. - I want to visualize the collected data. - I want to visualize the progress of operations. - I am being asked to pursue digital transformation (DX), but I don't know where to start, etc. With FLiPS, it is possible to digitize historical data by accumulating data on processes, progress, and achievements. Additionally, by integrating with BI tools such as Motion Board, it allows for real-time visualization and understanding of the current situation, and by collaborating with electronic reporting systems like i-Reporter, it can digitize manufacturing records and reporting tasks, reducing manual entry work.
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