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This document explains, based on our company's implementation results and experience, the necessary considerations for threshold examination, which is always a concern when conducting predictive maintenance, as well as what indicators should be used when considering and implementing predictive maintenance. Additionally, we focus on the analysis of causal relationships with quality-related issues, which we have received many inquiries about in recent years, in conjunction with equipment maintenance. When building IoT and predictive maintenance systems, it is essential to start with a system that is around 60 to 70 points rather than aiming for a perfect score of 100 from the beginning. Gradually improving the system towards the desired state is necessary. This document introduces some of the essence of that approach.
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CFD provides a means to shorten product development periods, reduce prototyping costs, and obtain detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can assist in product development using Simerics' CAE/CFD software. Heat exchangers have various applications, including boilers, steam generators, and commonly in air conditioners, refrigerators, and automotive radiators. While it is essential to enhance heat transfer efficiency, there is also a demand for miniaturization, requiring various trial and error in the design process. However, designing requires significant time and costs for prototyping and experiments. In CFD simulations, computation time can often increase depending on the shape of the shell and the number of tubes. However, with Simerics' CFD, high-performance thermal fluid analysis can be processed quickly through large-scale parallel computing, allowing for easy and rapid acquisition of results. The interior of the shell is also modeled in detail, replicating conditions close to actual experiments. This is expected to lead to significant reductions in man-hours and costs! There are many more reasons to use Simerics' CFD software. Please check the link below or feel free to contact us!
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CFD provides detailed data that is difficult to obtain through experiments, helping to shorten product development periods and reduce prototyping costs. In this article, we will introduce application examples that can assist in product development using Simerics' CAE/CFD software. Check valves (non-return valves) play an important role in preventing water hammer and regulating flow direction. Research and development are ongoing daily to enhance the durability of piping. However, this requires spending a lot of cost and time on prototyping and testing the valves. Even when performing CFD simulations, setting up the mesh deformation associated with the opening and closing of flow paths can be quite cumbersome. With Simerics' CFD, high-performance template meshes are provided, and the movement and deformation of the computational mesh that occurs during calculations are fully automated, allowing anyone to easily and quickly generate meshes. This is expected to significantly reduce labor and costs! There are still many reasons to use Simerics' CFD software. You can view more details through the link below or feel free to contact us anytime!
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CFD provides a way to shorten product development time, reduce prototyping costs, and obtain detailed data that is difficult to measure through experiments. In this article, we will introduce application examples that can be useful for product development using Simerics' CAE/CFD software. To prevent a car from overheating, it is necessary to intake air into the engine room and cool various components, making the design of the grille shape and ventilation parts crucial. Additionally, the grille not only serves a cooling function but also represents the car's "face," making it an important aspect of its appearance. Despite being such an important part, designing it requires significant time and costs for prototyping and experimentation. CFD simulations can also become large-scale, often leading to longer computation times; however, with Simerics' CFD, high-performance flow analysis can be processed quickly through large-scale parallel computing, allowing for easy and rapid results. It also models the complex engine room in detail, recreating conditions close to actual experiments. This can lead to significant reductions in labor and costs! There are many more reasons to use Simerics' CFD software. Please check the link below or feel free to contact us!
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CFD provides detailed data that is difficult to obtain through experiments, helping to shorten product development periods and reduce prototyping costs. In this article, we will introduce application examples that can assist in product development using Simerics' CAE/CFD software. One common component used in hydraulic machinery, such as automotive oil pumps, is the internal gear. Research and development are continuously conducted to enhance the efficiency of transporting hydraulic oil. However, this requires significant time and costs for prototyping and testing the oil pump. Additionally, even when performing CFD simulations, generating the computational mesh for the gear teeth can be quite labor-intensive. With Simerics' CFD, high-performance template meshes are provided, and the deformation of the computational mesh that occurs during calculations is fully automated, allowing anyone to easily and quickly generate meshes. This is expected to lead to significant reductions in man-hours and costs! There are still many reasons to use Simerics' CFD software. You can find more information through the link below or feel free to contact us anytime!
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In this article, we will introduce application examples that can be useful for product development using Simerics' CAE/CFD software. In particular, in Japan, there are many instances of flooding, and there are situations where we must drive on submerged roads. Creating vehicles that can withstand flooded road conditions has become one of the important challenges in automotive development, but this requires spending a lot of cost and time on prototype manufacturing and testing. CFD simulations tend to become large-scale and take a long time to compute, but with Simerics' CFD, high-performance free surface fluid analysis can be processed quickly through large-scale parallel computing, allowing for easy and rapid results. The complex engine compartment is also modeled in detail, reproducing conditions close to actual experiments. Of course, changes in water depth and driving speed are also easily possible. From these calculation results, we can understand the pathways and amounts of water intrusion, providing feedback for shape design and preventing damage and electric shock. There are still many reasons to use Simerics' CFD software. You can find more details through the link below or feel free to contact us anytime!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and 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 The biggest strength is the ability to automatically create meshes even for clearances in the micrometer range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsation and 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 The greatest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, please see the actual mesh creation and movement in a demo presentation!!
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Simerics MP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 variations of flow fields (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the micrometer range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery applications, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. In particular, we encourage you to see the actual mesh creation and movement through a demo presentation!!
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SimericsMP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the functionalities of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 The biggest strength is the ability to automatically create meshes for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be published online. Especially, the actual mesh creation and motion should definitely be demonstrated in a demo!
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SimericsMP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 variations of flow fields (velocity vectors, pressure), flow rate, fluid forces, and torque The greatest strength is the ability to automatically create meshes even for clearances in the micrometer range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoid pumps for engine lubrication. *There is a lot of information that cannot be posted online. Particularly, we encourage you to see the actual mesh creation and movement through a demonstration!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery applications, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and motion should definitely be demonstrated in a demo presentation!!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque Its greatest strength is the ability to automatically create meshes with clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should be demonstrated in a demo presentation!
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Simerics MP+ is a fluid simulation tool designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid simulation tool Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 variations of flow fields (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult with other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automotive and construction machinery, with examples such as vane pumps for power steering and CVTs, and trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should definitely be demonstrated in a demo!
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**Features** - By adopting an unstructured mesh, it is possible to calculate the exact shape of complex real devices. - High parallel efficiency allows for quick computation results even for large-scale shapes. - Since it uses a particle method, unlike fluid models, it can achieve a convergent solution even with poor quality computational grids. - With comprehensive technical support, even those new to simulations or busy with experiments can reliably obtain 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 formation 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. - Multiple reaction equations can be set up on the GUI. *For more details, please refer to the catalog or feel free to contact us.*
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"Particle-PLUS" is a simulation software suitable for research, development, and manufacturing of devices and materials using plasma. - It specializes in low-pressure plasma analysis. - It is capable of advanced physical model analysis such as CCP and external circuit models. - It excels in plasma simulation for low-pressure gases, where fluid modeling is challenging. - It supports 2D (two-dimensional) and 3D (three-dimensional) analyses, efficiently handling complex models. - As a strength of our in-house developed software, it can perform CCP and magnetron sputtering calculations with standard functions, and customization to fit customer equipment is also possible. ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Electron and ion density distribution/temperature distribution/generation distribution - Particle flux and energy flux to the wall - Energy spectrum of electrons and ions at the wall - Neutral gas density distribution/temperature distribution/velocity distribution, etc. *Please feel free to contact us for more details.
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**Features** - Adopts unstructured mesh, allowing for calculations that directly 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 Calculation 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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Are you facing issues like these? ◆ Unable to understand or explain the content of algorithms built with machine learning ◆ Being told to consider machine learning, but there are few tools available for immediate use ◆ Receiving proposals for project implementation, but the costs are too high to afford... etc. In the "Seminar Materials on Machine Learning Using SPM and Predictive Analysis of Concrete Strength," we will take concrete as an example and explain: ◆ Why traditional statistical methods are not being effectively utilized? ◆ Why is machine learning being utilized? ◆ How has machine learning been applied?
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Our company, which is engaged in a wide range of activities from software development and sales for scientific technology and engineering simulation to consulting, is currently offering a free technical document titled "Predictive Maintenance Starting from Scratch with IoT," which condenses our know-how! This document introduces how to get started with predictive maintenance in a way that aligns with real-world practices, which is not often covered elsewhere. By reading it, you will understand the "specific steps" to take when building a system. [Contents Overview (Partial)] ■ What to start with for predictive maintenance ■ Organizing and digitizing information ■ Analyzing failure information ■ Examining information obtained from sensors *You can view it immediately from the "PDF Download."
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VizSpark is an arc plasma simulation software developed by Esgee Technologies in the United States, founded by Professor Raja from the University of Texas at Austin, an expert in plasma simulation. It has the most achievements in the analysis of spark plugs and circuit breakers, with many case studies presented at academic conferences. In Japan, it has a strong track record primarily among complete vehicle manufacturers and internal combustion engine-related manufacturers, and it supports the analysis of devices such as: - Ignition plugs (spark plugs) - Circuit breakers - Atmospheric pressure discharge - Plasma torches (plasma jets) - Welding - Thermal spraying - High-intensity lamps
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VizSpark is an arc plasma simulation software developed by Esgee Technologies in the United States, founded by Professor Raja, an expert in plasma simulation at the University of Texas at Austin. It has the most extensive track record in the analysis of spark plugs and circuit breakers, with many case studies presented at academic conferences. In Japan, it has a significant track record primarily among complete vehicle manufacturers and internal combustion engine-related manufacturers, and it supports the analysis of devices such as: - Ignition plugs (spark plugs) - Circuit breakers - Atmospheric pressure discharges - Plasma torches (plasma jets) - Welding - Thermal spraying - High-intensity lamps
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Simerics MP+ is a fluid analysis software designed to calculate the transient characteristics of various volumetric pumps, compressors, and valves. It is developed based on the thermal fluid analysis software Simerics MP and utilizes all the features of Simerics MP. 【The following fluid analyses are possible】 ■ Free surface flow ■ Flow considering the compressibility of air contained in liquids ■ Pressure pulsations and 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 variations of flow field (velocity vectors, pressure), flow rate, fluid forces, and torque The biggest strength is the ability to automatically create meshes even for clearances in the µm range, which is difficult for other general-purpose fluid analysis software!! Recently, there has been an increase in achievements with oil pumps for automobiles and construction machinery, with examples such as vane pumps for power steering and CVT, as well as trochoidal pumps for engine lubrication. *There is a lot of information that cannot be posted online. Especially, the actual mesh creation and movement should be demonstrated in a live demo!!
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This software comprehensively evaluates and supports Reliability, Availability, Maintainability, and Safety from the development stage of railway vehicles and railway signals through the usage stage until the end of the product's life. The reliability, availability, and safety evaluation support tools, Reliability Workbench (RWB), Availability Workbench (AWB), and HAZOP, are products developed by Isograph Ltd. in the UK, and the Reliability Workbench has been implemented in over 10,000 sites worldwide. We also offer a free demo version, so please feel free to contact us.
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- Are you still using Excel for functional safety tasks? - Are you spending an enormous amount of time calculating failure rates and referencing FMEDA? - Are you manually creating FT diagrams from scratch? ========= Isn't it time to try using tools? ========= 【Benefits of Using Tools】 1. Standardize the workflow for functional safety tasks and eliminate issues related to individual reliance. 2. Ensure traceability by transferring IDs between safety requirements, FMEDA, and FTA. 3. Import/export standard formats for FMEA/FMEDA. 4. Enable bulk conversion from FMEA/FMEDA to FT diagrams. 5. Standardize evaluation points for FTA results (cut set analysis results). 6. Effectively utilize the rich information obtained from cut sets: - Q [failure rate after exposure time] - Q/T [failure rate per unit time] - Importance, risk increase (decrease) value - Information on dependent failures and common cause failures - β model - Validity of model representation - Comparison with FMEDA 【Others】 Integration with external tools such as Doors and electronic CAD is also possible.
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This document introduces the evaluation of systems (systems and subsystems) and management through CMMS/EAM. It covers issues encountered when applying Reliability Centered Maintenance (RCM), considerations for implementing RCM, reliability information, evaluation of reliability and availability at the system level, formulation of maintenance strategies, and management points in CMMS/EAM. [Contents] ■ Reliability Centered Maintenance ■ Issues when applying RCM ■ Considerations for implementing RCM and reliability information ■ Evaluation of reliability and availability at the system level and formulation of maintenance strategies ■ Management points in CMMS/EAM ■ Conclusion *For more details, please refer to the PDF document or feel free to contact us.
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This document introduces examples of conducting reliability assessments for systems. By evaluating the reliability of a system, one can understand the overall reliability of the system and the importance of the components that make up the system. Methods for evaluating reliability include Reliability Block Diagram (RBD) analysis and Fault Tree Analysis (FTA). [Contents] ■ Reliability Block Diagram (RBD) analysis ■ Examples of system reliability assessment ■ Figures 1-6 ■ Considerations for maintenance ■ Development of maintenance plans *For more details, please refer to the PDF document or feel free to contact us.
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This document introduces Weibull analysis. In Weibull analysis, the number of failures is used as input to determine the unreliability. Once the unreliability is known, the failure rate and reliability can also be determined. (Refer to the relationship between failure rate and reliability) To express the bias in the occurrence of failures, Weibull distribution is used in failure analysis. By using Weibull distribution, it has become possible to express the bias in the occurrence of failures, including the probability density of failure occurrences.
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This document introduces the relationship between failure rate, reliability, unreliability, and failure probability density, among other reliability information. There is a close relationship between reliability, unreliability, failure probability density, and failure rate (which can be viewed from different perspectives as needed); knowing one allows you to understand the other metrics. When managing failures using CMMS/EAM, it is possible to aggregate the number of failures over time. If the number of failures over time is known, the time dependence of failure rate, reliability, and unreliability can be understood. Weibull analysis is a method of failure analysis that leverages this characteristic. [Contents] - The relationship between failure rate, reliability, failure probability density, and unreliability - Detailed explanation of the diagrams - Summary *For more details, please refer to the PDF document or feel free to contact us.
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Our company specializes in analysis software for semiconductor-related equipment. We offer a lineup of rarefied fluid analysis software and plasma analysis software, which are actively used in simulations for organic EL and magnetron sputtering. This is for those who are struggling with "wanting to develop new products," "wanting to create and verify actual equipment during product improvements," or "wanting to conduct preliminary verification and comparative verification with equipment." Additionally, since these are in-house developed products, we provide extensive support even after implementation. 【Lineup / Features】 《Rarefied Fluid Analysis Software 'DSMC-Neutrals'》 ■ Supports unstructured meshes, allowing for calculations of complex shapes ■ Capable of simulating gas flow throughout the entire equipment 《Plasma Analysis Software 'Particle-PLUS'》 ■ Capable of low-pressure plasma simulations ■ Useful for research, development, and manufacturing of devices and materials using plasma *For more details, please refer to the materials. Feel free to contact us as well.
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"Particle-PLUS" is a simulation software suitable for research and development of devices using plasma, compatible with CCP. - Excels in simulations of low-pressure gases where fluid modeling is challenging. - Advanced physical model analysis including CCP and external circuit models. - Supports 2D and 3D, efficiently analyzing even complex models. - As a strength of our in-house developed software, it not only includes standard functions for CCP and magnetron sputtering calculations but also allows customization to fit customer devices. ◆ 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 information@wavefront.co.jp.
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Our company, which is engaged in a wide range of activities from software development and sales for scientific technology and engineering simulation to consulting, is currently offering a free technical document titled "Reliability-Centered Maintenance (RCM) and CMMS," condensed with our know-how! What is Reliability-Centered Maintenance? From basic knowledge to characteristics of failures and methods for determining optimal maintenance strategies, we provide plenty of tips essential for the implementation of CMMS and EAM. You will acquire knowledge about Reliability-Centered Maintenance (RCM) and CMMS that you might hesitate to ask others! 【Contents Overview (Partial)】 ■ What is Reliability-Centered Maintenance? ■ Characteristics of Equipment Failures ■ Maintenance Strategies (with Decision Tree) ■ Expansion and Integration with CMMS/EAM *You can view it immediately from the "PDF Download."
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With the increasing interest in autonomous driving, the complexity of onboard systems is expected to rise, necessitating not only safety requirements but also security assessments. In Europe, security evaluations are already being conducted in parallel with safety assessments, and the attack tree method exists as a means to carry out security evaluations. The security threat analysis tool Attack Tree provided by Isograph Ltd. (UK) is designed to assist in assessing security vulnerabilities in software. For example, the following representations are possible: - Visual representation of how an attack can succeed - Representation of which attacks have the highest likelihood of success using probability distributions Furthermore, it is also possible to express indicators such as: - The method that has the lowest cost and highest probability of success for an attacker - The difficulty of executing the attack and whether special equipment is required Security assessment is a factor directly related to the safety of vehicles. By referencing the probabilities of threats identified using the Attack Tree within the functional safety Fault Tree, it becomes possible to conduct evaluations that consider both safety and threats.
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"Particle-PLUS" is a simulation software suitable for research and development of devices using plasma, compatible with CCP. - Excels in plasma simulation for low-pressure gases where fluid modeling is challenging - Advanced physical model analysis including CCP and external circuit models - Supports 2D (two-dimensional) and 3D (three-dimensional) analysis, efficiently handling complex models - As a strength of our in-house developed software, it offers standard functions for CCP and magnetron sputtering calculations, as well as customization to fit customer devices ◆ 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 information@wavefront.co.jp.
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◆Do you have any of the following concerns?◆ - You have gathered failure information but don’t know what to do with it. - You want to make good use of the collected failure information. - You want to analyze the failure information yourself but don’t know the best method. - You want to connect the results of your analysis to actions that reduce missed opportunities. ◆Organizing Failure Information Data and Building a System◆ Our company addresses the above concerns by: 1. Clarifying the problem awareness. 2. Presenting and selecting the key performance indicators (KPIs) that should be calculated. 3. Creating a database for failure information. 4. Conducting analysis using the current failure data. 5. Considering actions derived from the analysis results. 6. Building a system to carry out steps 1 to 5. We assist in organizing failure information and building a system that allows customers to select actions that could reduce issues and failures leading to missed opportunities based on the analysis results. The above content assumes that failure information has been collected in advance or can be collected, but we can also accommodate situations where failure information is extremely limited or not gathered. (*1) *1: Please contact us separately if you would like to see detailed materials.
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◆Do you have any of the following concerns?◆ - You have collected failure information but don't know what to do with it. - You want to make good use of the collected failure information. - You want to analyze the failure information yourself but don't know the best method. - You want to connect the results of your analysis to actions that reduce opportunity loss. ◆Organizing Failure Information Data and Building a System◆ Our company addresses the above concerns by: 1. Clarifying the awareness of the problem. 2. Presenting and selecting the key performance indicators (KPIs) that should be calculated. 3. Creating a database of failure information. 4. Conducting analysis using the current failure data. 5. Considering actions derived from the analysis results. 6. Building a system to carry out steps 1 to 5. We assist in organizing failure information and building a system that allows customers to select actions that are likely to reduce defects and failures leading to opportunity loss based on the analysis results. The above content assumes that failure information has been collected in advance or can be collected, but we can also accommodate situations where failure information is extremely limited or not gathered. (*1) *1: Please contact us separately if you would like to see detailed materials.
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◆Do you have any of the following concerns?◆ - You have collected failure information but don't know what to do with it. - You want to effectively utilize the collected failure information. - You want to conduct your own analysis based on the failure information but don't know the best method. - You want to connect the results of your analysis to actions that will reduce opportunity loss. ◆Organizing Failure Information Data and Building a System◆ Our company addresses the above concerns by: 1. Clarifying the problem awareness. 2. Presenting and selecting the key performance indicators (KPIs) that should be calculated. 3. Creating a database of failure information. 4. Conducting analysis using the current failure data. 5. Considering actions derived from the analysis results. 6. Building a system to carry out steps 1 to 5. We assist in organizing failure information and building a system that allows customers to select actions that are likely to reduce defects and failures leading to opportunity loss based on the analysis results. The above content assumes that failure information has been collected in advance, but we can also accommodate situations where failure information is extremely limited or not collected. (※1) ※1: Please contact us separately if you would like to see detailed materials.
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"Particle-PLUS" is a simulation software suitable for the research, development, and manufacturing of devices and materials using plasma. - It specializes in low-pressure plasma analysis. - It can perform advanced physical model analysis such as CCP and external circuit models. - It excels in plasma simulation for low-pressure gases, where calculations using fluid models are challenging. - It supports both 2D and 3D, allowing for efficient analysis even with complex models. - As a strength of our in-house developed software, it can perform CCP and magnetron sputtering calculations with standard features, and customization to fit customer devices is also possible. ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the 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.
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"Materials Studio" A suite of molecular modeling/simulation tools for next-generation material development equipped with quantum mechanics (density functional theory), classical mechanics (molecular dynamics calculations), mesoscale (dissipative particle dynamics calculations, etc.), statistics, and analysis/crystallization tools. 【Features】 ■ Simulation software that streamlines material development Available for use by those engaged in research, development, design, and manufacturing across various industries and fields. ■ Supports various types of materials Predicts how the atomic and molecular structures relate to the physical properties and behaviors of materials in the fields of materials science and chemistry, effectively aiding in the understanding of physical phenomena. ■ Examples Tribochemical (lubrication) reactions Research and development of crystal growth, thin film formation, fuel cells, lubricants, etc. Catalysts, polymers and mixtures, metals and alloys, batteries and fuel cells, etc. ■ Enhanced visualization with "Materials Studio Visualizer" ■ All tasks, including crystal structure creation, calculation condition settings, and calculation result display, can be performed on a single GUI screen. *For more details, please feel free to contact us.
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"Particle-PLUS" is a simulation software suitable for research, development, and manufacturing of devices and materials using plasma. - It specializes in low-pressure plasma analysis. - It can perform advanced physical model analysis such as CCP and external circuit models. - It excels in plasma simulation for low-pressure gases, where calculations with fluid models are challenging. - It supports 2D (two-dimensional) and 3D (three-dimensional) analyses, allowing efficient analysis of complex models. - As a strength of our in-house developed software, it can perform CCP and magnetron sputtering calculations with standard features, and customization to fit customer devices is also possible. ◆ Supports various cases ◆ - Magnetron sputtering - PVD, plasma CVD - Capacitively coupled plasma (CCP) - Dielectric barrier discharge (DBD) - Electrophoresis, etc. ◆ Outputs various calculation results ◆ - Potential distribution - Density distribution/temperature distribution/generation distribution of electrons and ions - Particle flux and energy flux to the walls - Energy spectrum of electrons and ions at the walls - Density distribution/temperature distribution/velocity distribution of neutral gas, etc. *For more details, please feel free to contact us.
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Our company specializes in analysis software for semiconductor-related equipment. We offer a lineup of rarefied fluid analysis software and plasma analysis software, which are effective for simulations of organic EL and magnetron sputtering. We can also accommodate customer needs. 【Product Lineup】 《Rarefied Fluid Analysis Software 'DSMC-Neutrals'》 ■ Supports unstructured meshes, allowing calculations for complex shapes ■ Capable of simulating gas flow throughout the entire equipment 《Plasma Analysis Software 'Particle-PLUS'》 ■ Enables low-pressure plasma simulations ■ Suitable for research, development, and manufacturing of devices and materials using plasma With these two systems, we can support various simulations in semiconductor manufacturing, including thin film generation, sputtering, and plasma etching. *For more details, please refer to the materials. Feel free to contact us with any inquiries.
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Support from fault rate calculation to report creation in a seamless manner! Reliability Workbench is a tool based on reliability engineering used for evaluating and analyzing reliability and safety in accordance with functional safety standards. It has been adopted by many companies both domestically and internationally as a tool for evaluating the reliability and safety of equipment required by functional safety standards such as IEC61508 and ISO26262, with a total of 8,000 sites having implemented it worldwide. The main industries where it has been adopted are as follows: - Automotive - Railways - Aircraft - Plants - Industrial equipment In Japan, many automotive-related companies, including Denso Corporation, as well as railway-related customers such as Japan Signal and Nabtesco, have adopted this tool, with over 50 customers in the automotive and railway sectors alone. Additionally, this tool has the following features that support standardization and simplification of work: - Integration with electronic CAD - Database creation of failure data - Automatic deployment of failure modes and distribution ratios to FMEA - Cross-referencing between FMEA and FaultTree+
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AiPOST is an information sharing and management system developed with the aim of systematizing the circulation of paper-based forms. It is particularly recommended for customers facing the following issues: - Wanting to share information that occurred on-site immediately, but having no means other than phone calls, resulting in no record being kept. - Wanting to circulate information related to events that occurred on-site, but having inconsistent methods among individuals, making it difficult to know where the information is. - Having made a work request but being unable to grasp the current status. - Distributing information via email, but finding it difficult to determine which information is relevant to them due to the variety of types. - Wanting to centrally manage inquiry information from customers and analyze it in Excel as needed. Additionally, there has been an increase in the use of AiPOST in conjunction with business systems and email, allowing for the following functionalities: 1. Sending email notifications when information or requests related to the user arrive. 2. Managing the progress of business operations on the AiPOST side, simplifying the status confirmation of requests and information distribution. 3. Treating AiPOST as an input terminal in conjunction with maintenance systems, allowing for overall management of equipment information within the maintenance system.
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We support the construction of systems related to data collection and visualization, analysis, product improvement, optimization of operating conditions, and predictive maintenance by combining simulation technology, reliability evaluation, and equipment maintenance expertise. The main target equipment includes: - Various plants - Semiconductor manufacturing equipment - Air conditioning systems In this study, we will support the construction of systems by utilizing different tools and systems according to the customer's requests and objectives, such as: - 1D simulation software (1D CAE) - 3D simulation software (3D CAE) - Reliability and safety evaluation software - Statistical analysis software - Machine learning/AI software - IoT information collection infrastructure - Equipment maintenance management systems - Tablet systems Additionally, in conducting this study, we recommend starting small by narrowing down the target equipment.
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AiPOST is an information sharing and management system developed with the aim of systematizing the circulation of paper-based forms. It is particularly recommended for customers facing the following issues: - Unable to grasp the current status after making a work request - Distributing information via email, but the types are varied, making it difficult to understand which information is relevant to them - Wanting to centrally manage inquiry information from customers and analyze it in Excel as needed Additionally, recently there has been an increase in the use of AiPOST in conjunction with business systems and email, allowing for the following: 1. Notifications via email when information or requests relevant to them arrive 2. Management of work progress on the AiPOST side, simplifying the status confirmation of requests and information distribution 3. Treating AiPOST as an input terminal in conjunction with maintenance systems, allowing for overall management of equipment information through the maintenance system.
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AiPOST is an information sharing and management system developed with the aim of systematizing the circulation of paper-based forms. It is particularly recommended for customers facing the following issues: - Unable to grasp the current status after making a work request - Distributing information via email, but the types are varied, making it difficult to understand which information is relevant to them - Wanting to centrally manage inquiry information from customers and analyze it in Excel as needed Additionally, there has been an increase in the use of AiPOST in conjunction with business systems and email, allowing for the following functionalities: 1. Notifications via email when information or requests relevant to the user arrive 2. Managing the progress of tasks on the AiPOST side, simplifying the status checks and information distribution 3. Treating AiPOST as an input terminal in conjunction with maintenance systems, allowing for overall management of equipment information within the maintenance system.
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