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Questa Verification emerges as the leading platform that incorporates a UVM-aware debugging solution, granting engineers essential insights into the workings of their dynamic class-based testbenches while utilizing the familiar settings of source code and waveform analysis. This verification suite includes an extensive array of technologies, methodologies, and libraries specifically designed for modern ASIC and FPGA designs. As the intricacy of System-on-Chip (SoC) designs increases, Questa consistently evolves and refines its offerings to meet these challenges. The platform not only provides critical insights and updates on fundamental concepts, standards, and methodologies but also offers practical examples that assist users in understanding how to effectively leverage advanced functional verification technologies. Furthermore, the Verification Horizons publication stands as an important tool, conveying essential concepts, values, methodologies, and illustrative examples to enhance comprehension and support the proficient use of these state-of-the-art verification tools. Through its unwavering dedication to innovation and education, Questa empowers engineers to adeptly tackle the complexities of contemporary design verification, ensuring they remain at the forefront of the industry. Ultimately, this commitment fosters a more knowledgeable community of engineers who can confidently embrace new verification challenges as they arise.
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Creo Simulation
PTC
Transform your designs with advanced simulation and analysis tools.
Enhance your product design process by integrating simulation and analysis techniques, which can significantly reduce the costs associated with physical prototyping while simultaneously improving the durability, reliability, and safety of your products. Utilizing digital prototypes to evaluate how your designs perform in real-world conditions is essential for effective product development. Creo Simulation is designed specifically for engineers and includes a comprehensive array of structural, thermal, and vibration analysis tools, alongside an extensive suite of finite element analysis (FEA) options. With the capabilities offered by Creo Simulation, you can thoroughly assess and validate the performance of your 3D virtual prototypes before manufacturing any physical components. Our flexible and innovative simulation solutions cater to the unique needs of each customer, ensuring a tailored experience. This section serves as a valuable resource for discovering our offerings that align with your specifications, and if you have any questions about our tools, please feel free to contact a Creo representative for support. By adopting this proactive strategy, you can guarantee that your products will not only fulfill but also surpass the expectations held within their target markets, setting a new standard for excellence.
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DIGIMU
TRANSVALOR
Revolutionizing material science with precise, efficient microstructure modeling.
DIGIMU® specializes in generating digital polycrystalline microstructures that faithfully represent the diverse properties of materials, thereby accommodating the complex topological characteristics of the microstructure. The boundary conditions set for the Representative Elementary Volume (REV) are designed to replicate the conditions experienced by a material point on a larger scale, especially during relevant thermomechanical cycles. By utilizing a Finite Element formulation, the software effectively models a range of physical phenomena associated with metal forming operations, including recrystallization, grain growth, and Zener pinning due to secondary phase particles. To boost digital precision while reducing computation times, DIGIMU® leverages sophisticated automated anisotropic meshing and remeshing adaptation technologies, which facilitate an accurate depiction of grain boundaries while optimizing element usage. This cutting-edge methodology not only accelerates the computational workflow but also enhances the dependability of the simulations, establishing DIGIMU® as an indispensable resource for material scientists. Additionally, its ability to manage complex simulations without sacrificing accuracy positions DIGIMU® at the forefront of materials research and development.
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COLDFORM
TRANSVALOR
Optimize tool durability and reduce costs with precision analysis.
Cold forming tools endure substantial mechanical and tribological pressures during their use, which can occasionally lead to early failures. Since these tools represent a significant portion of component manufacturing expenses, it becomes essential to proactively identify and mitigate potential problems during the design stage. The COLDFORM® software provides a means to evaluate the mechanical integrity of dies, significantly contributing to their durability. It analyzes stress distribution within the die while also tracking deformations, wear, temperature fluctuations, and any potential damage that may arise during operations. Moreover, COLDFORM® facilitates rapid assessments by applying stresses obtained from the forming process directly to the tools. The software also enables coupled part/tool simulations, which results in highly precise predictions. With a focus on pre-stressed dies, it allows for an accurate evaluation of the necessary pre-stressing for the tools' interference fit. This functionality is invaluable for manufacturers aiming to enhance tool efficacy while simultaneously minimizing expenses related to tool replacements. By leveraging these capabilities, companies can ensure that their cold forming processes are both efficient and cost-effective.
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SIGMASOFT
SIGMA Engineering GmbH
Transform your molding processes with innovative simulation solutions.
SIGMASOFT ® VIRTUAL MOLDING simulation software offers a significant advantage in injection and compression molding by enabling users to evaluate and improve both processes and molds comprehensively, thereby increasing efficiency, productivity, and the quality of parts while reducing waste associated with traditional trial and error techniques. This innovative solution equips manufacturers with the capabilities needed to attain the best possible outcomes in their molding practices, ultimately transforming their production processes for the better.
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PIPE-FLO
Revalize
Revolutionize fluid management with precision, efficiency, and simplicity.
The engineering standard for pipe flow analysis software enables comprehensive management of the fluid system's entire lifecycle. This software stands out in the industry for its exceptional accuracy, functionality, and ease of use, eliminating the need for spreadsheets or concealed expenses. It is essential reading for professionals involved in the management, design, or operation of crucial fluid processing systems. Furthermore, it serves as a vital component of the digital transformation initiative, paving the way for Industry 4.0 and Digital Twin Operations Management. Embracing this technology can significantly enhance operational efficiency and decision-making processes.
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DRAGSIM
RPMGlobal
Optimize mining operations with precise, reliable dragline insights.
When considering options before financial commitments or analyzing processes prior to excavation, DRAGSIM dragline simulation is tailored to help you pinpoint the best strategy for your mining operations. For many years, mining engineers have turned to DRAGSIM for informed operational decisions, quickly obtaining actionable insights into productivity and production expenses with exceptional precision. Its extensive and verifiable features align perfectly with your company's governance standards, fostering trust in its capacity to deliver reliable and accurate data from the mining site to boardroom discussions. Users have the ability to modify various parameters to evaluate the effects of different scenarios. With a proven track record spanning over forty years, DRAGSIM stands as a reliable dragline solution. This system is designed to improve equipment efficiency and streamline waste relocation, allowing you to make decisions with complete confidence through its decision support functionalities. By simulating dragline methods across a range of operational variables and incorporating elements like blasting, waste removal, and other mining equipment into the evaluation, DRAGSIM provides an all-encompassing analysis that bolsters effective mining practices. Ultimately, the insights derived can lead to refined strategies and enhanced operational performance on-site, ensuring that your mining endeavors are optimized for success. Furthermore, the adaptability of DRAGSIM allows for continuous improvement in decision-making processes as new data becomes available.
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ProModel
BigBear.ai
Optimize operations and forecast success with advanced simulation.
ProModel is a robust solution for discrete event simulation and predictive analytics, providing valuable insights into complex decision-making situations. By leveraging ProModel's AI simulation software, organizations can improve their system efficiency while reducing potential risks. Our offerings are data-driven and specifically designed for sectors that require precise planning and forecasting to ensure smooth and effective operations. Recognizing how operational shifts affect production and scheduling is essential for both immediate and long-term success. With our advanced AI simulation software, businesses can proficiently design, simulate, and optimize factory layouts using digital twins, quickly forecast patient volumes and bed occupancy, uncover possible bottlenecks, and enhance capacity planning and scheduling, all of which contribute to improved production workflows. Utilize dynamic simulation models to achieve exceptional process management and gain visual insights that help identify the root causes of bottlenecks, thereby fostering a more streamlined operational process. This all-encompassing tool not only assists in strategic planning but also encourages a culture of ongoing improvement within your organization, ultimately leading to better performance outcomes. By integrating such innovative technology, companies can stay ahead in a competitive landscape while ensuring sustainable growth.
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ChemSep
ChemSep
Revolutionize separation processes with advanced, intuitive column simulation.
ChemSep is a sophisticated column simulator designed for various processes such as distillation, absorption, and extraction, effectively blending traditional equilibrium stage models with nonequilibrium (rate-based) models in an intuitive interface. This software features a comprehensive library that includes capacity and mass transfer performance parameters for different trays and packings, significantly improving the precision of modeling actual column operations. Through its design mode, ChemSep not only automates simulation tasks but also assists in determining column diameter based on designated flood fractions, while employing industry-standard design techniques and pressure drop calculations applicable to both trayed and packed columns. The program's adaptability allows it to accommodate an extensive array of column configurations and specifications, enabling users to tackle separation challenges with confidence. Furthermore, ChemSep can operate as an independent tool or be seamlessly integrated into any CAPE-OPEN compliant flowsheeting software, utilizing pertinent thermodynamic and physical property data to enhance its functionality. This remarkable versatility ensures that ChemSep remains an essential resource for engineers and researchers involved in chemical separation processes, ultimately leading to more efficient and effective outcomes in their projects. With its advanced features and user-friendly design, ChemSep stands out as a premier choice in the realm of column simulation technology.
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CADSIM Plus
Aurel Systems
Revolutionizing chemical process simulation with intuitive precision tools.
CADSIM Plus is a cutting-edge application crafted for the simulation of chemical processes, seamlessly merging a first-principles dynamic simulator with a robust Computer Assisted Drawing (CAD) interface within a single platform. It stands out for its precision in executing heat and material balances across a multitude of chemical processes while also having the capability to generate complex dynamic simulations that integrate control logic and batch operations. The software comes outfitted with a wide variety of generic process modules and offers optional libraries that cater to an array of specific applications. CADSIM Plus is versatile enough to handle a diverse range of drawing complexities, from simple block diagrams to detailed engineering schematics, and it allows for the exporting of designs to AutoCAD and other popular CAD programs. In its 'electronic flowsheet' runtime simulation mode, users benefit from interactive and animated simulation tools, enabling real-time modifications to process conditions as they operate. This adaptable software proves invaluable in areas such as process design, troubleshooting, predicting future scenarios, and tackling issues related to dynamic control, making it an essential resource for engineers and researchers alike. Moreover, its intuitive interface is designed to empower even those who are new to process simulation to effectively utilize its extensive functionalities, enhancing the overall user experience. Thus, CADSIM Plus not only streamlines the simulation process but also fosters innovation in chemical engineering practices.
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DYNAFORM Die Simulation
TST Tooling Software Technology
Revolutionize die simulation with intuitive design and efficiency.
The sixth-generation DYNAFORM Die Simulation Software offers an innovative platform distinguished by its intuitive and aesthetically pleasing interface, which prioritizes user-friendliness. Tailored for the stamping process, this software significantly reduces the requirement for in-depth CAE knowledge, streamlining tasks related to geometry and elements. Key improvements include an organized tree management system for operations, a specialized simulation data manager, and customizable icon groupings that facilitate quick access to drop-down menu functionalities. Moreover, it features independent applications that work seamlessly, integrated capabilities for pre- and post-processing, a multi-window view that enhances analytical capabilities, and the ease of accessing features through right-click options. Designed to support extensive forming simulations, the software encompasses a geometry management tool, a process wizard aimed at optimizing blank sizes, an extensive materials library, newly introduced draw bead shapes, and an effective coordinate system manager. By integrating these advanced features, the software not only elevates the simulation process but also serves as an invaluable asset for engineers and designers, who can leverage its capabilities for improved efficiency and productivity. Ultimately, this comprehensive tool empowers users to tackle complex challenges in die simulation effectively.
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CONSELF
CONSELF
Revolutionize product design with advanced simulation capabilities today!
With the use of CONSELF, you can tap into the capabilities of Computational Fluid Dynamics (CFD) and Finite Element Analysis (FEA) to improve your product designs by minimizing drag and fluid-related losses, enhancing efficiency, optimizing heat exchange processes, evaluating pressure loads, verifying material strength, studying deformation in component shapes, and calculating natural frequencies and modes, among other vital functions. The platform supports both static and dynamic simulations in Structural Mechanics, effectively addressing the behavior of materials under both elastic and plastic conditions. Furthermore, it facilitates modal and frequency analyses, beginning with commonly utilized CAD neutral file formats, which guarantees a smooth integration into your design workflow. This holistic approach not only leads to innovative solutions for intricate engineering problems but also empowers engineers to make informed decisions with confidence in their designs. As a result, the use of CONSELF can significantly streamline the development process and improve overall product performance.
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Pitch Visual OMT
Pitch Technologies
Streamline HLA federation design with precision and collaboration.
In the realm of HLA federations, establishing a comprehensive Federation Object Model (FOM) is crucial for mapping out information exchange. Pitch Visual OMT emerges as a top-tier resource for the creation and administration of these object models. Users can design novel FOMs specific to their needs or refine existing standardized models like the RPR FOM using this tool. Its user-friendly graphical interface enhances the clarity of your FOM design, which in turn supports precision and uniformity. Moreover, Pitch Visual OMT is equipped with utilities for updating older FOMs or managing those compatible with various HLA versions, ensuring flexibility. As you progress through your project, the software facilitates the evaluation of different FOM iterations, allowing for straightforward comparisons. Additionally, its robust reporting capabilities make it easier to disseminate your FOM among colleagues, fostering teamwork and understanding. In conclusion, Pitch Visual OMT is an indispensable tool for professionals engaged in the development of HLA federations, streamlining workflows and enhancing collaboration.
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C-Radiant
Aechelon Technology
Transforming imaging with unparalleled realism and advanced technology.
C-Radiant operates as a supplementary module that significantly upgrades Aechelon Technology's pC-Nova image generator by incorporating advanced physics-based spectral rendering, autogain capabilities, and a variety of noise and sensor special effects, all through cutting-edge shader technology, which removes the need for hardware post-processing. When paired with Aechelon Technology's C-Genesis database framework and toolkit, C-Radiant allows for a cohesive runtime and database system that can accommodate both existing and future sensors. The material descriptions within the database cover a comprehensive spectrum rather than just a single band, which supports the generation of synchronized multi-sensor outputs, including Night Vision Goggles (NVG), Forward Looking InfraRed (FLIR), and Radar systems. This novel method ensures impeccable correlation at the pixel level across all sensors and the Out-The-Window view, functioning smoothly at a refresh rate of 60Hz. Consequently, users can anticipate a significant improvement in visual fidelity and realism in their imaging endeavors, making it a valuable asset for various applications. This combination of features not only enhances performance but also broadens the potential for innovative developments in imaging technologies.
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Inventor Nastran
Autodesk
Transform your design process with advanced simulation capabilities.
Inventor® Nastran® functions as a finite element analysis (FEA) solution embedded within CAD applications, allowing engineers and analysts to conduct a wide variety of studies with different materials. It offers extensive simulation capabilities, covering both linear and nonlinear stress evaluations, dynamic analyses, and heat transfer calculations. This tool is part of the Product Design & Manufacturing Collection, which comprises an array of robust tools aimed at optimizing workflows in Inventor. Alongside its sophisticated simulation functionalities, the collection includes 5-axis CAM systems, nesting solutions, and grants access to software such as AutoCAD and Fusion 360, fostering a comprehensive approach to the product design and manufacturing landscape. By leveraging Inventor Nastran, professionals can not only enhance their analytical processes but also achieve significantly better design results that meet industry standards. Ultimately, this integration empowers teams to innovate and improve efficiency within their projects.
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SALOME
OPEN CASCADE
Empower your simulations with seamless CAD lifecycle management.
SALOME is a powerful open-source tool designed as a holistic platform for Pre- and Post-Processing activities related to numerical simulations. It offers the flexibility to operate independently for creating CAD models, preparing them for analysis, and managing the post-processing of outcomes, or it can serve as a framework for incorporating various external numerical codes, thereby facilitating the creation of applications that manage the entire lifecycle of CAD models. Mastering SALOME, like many advanced software systems, requires a considerable degree of expertise and knowledge. The specialists from OPEN CASCADE, who have invested years in enhancing these platforms, possess the expertise necessary to offer essential support for your development projects. Their wealth of experience guarantees that you can leverage the full potential of SALOME, making it an invaluable asset for your simulation endeavors. Additionally, investing time in learning SALOME can yield significant long-term benefits as it streamlines complex workflows in engineering and computational tasks.
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Schrödinger
Schrödinger
Revolutionizing drug discovery and materials science through innovation.
Transform the domains of drug development and materials science by employing advanced molecular modeling approaches. Our computational platform, rooted in the principles of physics, offers distinct solutions for predictive modeling, data analysis, and collaborative efforts, enabling efficient exploration of chemical space. This state-of-the-art platform is utilized by top industries worldwide, supporting drug discovery projects and materials science endeavors in diverse fields such as aerospace, energy, semiconductors, and electronic displays. It propels our internal drug discovery initiatives, managing the entire process from identifying targets to discovering hits and optimizing leads. Moreover, it boosts our collaborative research aimed at developing innovative medicines to tackle major public health issues. With a dedicated team comprising over 150 Ph.D. scientists, we invest considerable resources into research and development. Our impact on the scientific community is highlighted by over 400 peer-reviewed publications that demonstrate the effectiveness of our physics-based approaches, ensuring we remain leaders in the evolution of computational modeling techniques. We are unwavering in our commitment to pioneering advancements and broadening the horizons of our industry while fostering partnerships that amplify our research capabilities.
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ExecSims
Powersim Solutions
Experience immersive learning through realistic business simulations today!
Corporate trainers and educators at business schools highly value dynamic simulations for their ability to provide exceptional experiential learning opportunities. These engaging simulations effectively showcase the interplay between strategic decisions, operational choices, and performance outcomes. In addition, they serve as a training ground for refining skills such as observation, evaluation, and engaging in constructive conversations. To facilitate the best possible hands-on learning in management, business simulations must closely mirror real-life situations. Utilizing an advanced dynamic modeling platform, our simulations accurately represent non-linear dynamics, time delays, and causal relationships, enabling a realistic evaluation of how team decisions influence business performance. This forward-thinking method equips participants with the necessary tools to tackle intricate business challenges with confidence and expertise. Ultimately, the immersive nature of these simulations fosters a deeper understanding of the complexities inherent in the business world.
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The Mission Management Platform (MMP) is an adaptable software solution engineered for deployment within a modular MSCCS architecture, without any limitations on the number of control working positions (CWP) it can support. Created by Nurjana, the NT MMP functions as a foundational system that facilitates flexible installation in a modular MSCCS framework, while similarly imposing no restrictions on control working positions. The extensive capabilities of the MMP software for MSCCS are categorized into two primary types of Software Modules, each containing a variety of standard NT components like libraries and building blocks: Mission Setup and Analysis Applications. Within this structure, the Scenario Definition and Pre-Mission Control Module empowers users to create a Range Abstraction Layer along with essential environmental data structures that accurately represent various entities engaged in a mission, including geographical terrain, sensors, projectiles, and environmental influences. This Range Abstraction Layer is vital for crafting precise mission scenarios, ensuring that users can effectively simulate and analyze diverse operational conditions. By streamlining the integration of these components, the MMP enhances overall mission planning and execution.
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CAEmate
CAEmate
Revolutionizing infrastructure management with AI-driven digital twins.
WeStatiX SHM merges genuine simulation-based Digital Twins with state-of-the-art Artificial Intelligence to create an advanced platform for infrastructure management. This innovative technology is applicable to a variety of structures, including bridges, tunnels, slopes, and rock walls, providing accurate assessments of both current and future conditions of the monitored assets. With WeStatiX, it becomes possible to enhance structural safety while also reducing monitoring costs and lessening the environmental impact of construction processes. Users can access WeStatiX|SHM directly through a web browser, allowing for the creation of customized digital twins for the real-time monitoring of existing structures in the cloud. This adaptable system covers a broad spectrum of infrastructures such as dams and buildings, highlighting its versatility. By utilizing a combination of sophisticated digital technologies and powerful artificial intelligence algorithms, it acts as a vital tool for the inspection and maintenance of any monitored structure. Moreover, the platform promotes a proactive maintenance strategy, ensuring that the integrity of infrastructure is regularly evaluated and maintained, ultimately leading to longer-lasting assets. This innovative approach represents a significant advancement in the field of infrastructure management, making it easier for stakeholders to prioritize safety and sustainability.
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SimulationX
ESI Group
Optimize complex systems with advanced modeling and simulation tools.
Intricate technical systems, such as machinery and manufacturing plants, are notable for their complex structure, comprising a diverse range of components and subsystems sourced from multiple engineering disciplines, and are increasingly integrated with advanced sensors and control systems. The way these components interact significantly impacts critical aspects such as safety, operational efficiency, and user satisfaction. SimulationX offers a comprehensive platform for modeling, simulating, and analyzing these sophisticated technical systems, addressing various domains including mechanics, hydraulics, pneumatics, electronics, and control systems, while also considering different physical phenomena like thermal and magnetic impacts. Equipped with extensive libraries of components that include specialized model elements tailored to specific applications, users can efficiently access the necessary tools suited to their project needs, facilitating a more streamlined and effective workflow. This adaptability not only promotes a thorough analysis of complex systems but also enhances the optimization process across different engineering fields, ensuring better performance outcomes. Ultimately, the ability to integrate and analyze these various disciplines leads to improved designs and enhanced operational capabilities.
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Virtual REX
FishEye
Streamline sensor integration with virtual testing efficiency today!
Electromagnetic sensors consist of two primary elements: a "front-end" that produces and detects electromagnetic waves through a subsystem called the Receiver/Exciter (REX), and a "back-end" tasked with processing both signal and data, typically managed by software. Each subsystem must be developed separately before they can be integrated effectively. The creation of a fully functional sensor grows more intricate and time-consuming due to unexpected obstacles encountered during integration testing. This intricacy primarily arises from the dependencies between subsystems that are challenging to test when developed individually. Consequently, any required software updates, configuration changes, adjustments to waveforms, or upgrades to technology may lead to significantly increased costs, as they usually necessitate on-site verification with the actual hardware of the front-end. To alleviate these challenges, the Virtual Receiver/Exciter (VREX) employs a simulated front-end, which enhances the efficiency of the testing and integration process. By utilizing a virtual model, developers can proactively identify and rectify potential integration challenges much earlier in the development timeline, ultimately leading to a more streamlined workflow and reduced costs in the long run. This proactive approach not only saves time but also enhances the overall quality of the final product.
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Testing your designs in practical environments can greatly improve the quality of your products while also reducing the expenses related to prototyping and physical testing. The SOLIDWORKS® Simulation suite provides an intuitive array of structural analysis tools that utilize Finite Element Analysis (FEA) to predict how a product will perform under real-world conditions by virtually assessing CAD models. This extensive suite includes features for both linear and non-linear static and dynamic analyses, enabling comprehensive evaluations. With SOLIDWORKS Simulation Professional, you can enhance your designs by examining aspects like mechanical strength, longevity, topology, natural frequencies, as well as investigating heat distribution and the risk of buckling. It also supports sequential multi-physics simulations to improve design precision. In contrast, SOLIDWORKS Simulation Premium offers a more detailed examination of designs, focusing on nonlinear and dynamic responses, various loading scenarios, and composite materials. This advanced level includes three specialized studies: Non-Linear Static, Non-Linear Dynamic, and Linear Dynamics, which together provide a robust assessment of your engineering initiatives. By utilizing these sophisticated tools, engineers are empowered to foster greater design confidence and push the boundaries of innovation in their projects. Ultimately, the integration of such simulations leads to a more efficient design process and superior end products.
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SIMULIA
Dassault Systèmes
Transforming insights into innovation with advanced simulation solutions.
Through the 3DEXPERIENCE® platform, SIMULIA offers sophisticated simulation tools that enable users to gain deeper insights into and evaluate their surroundings. The applications provided by SIMULIA facilitate the evaluation of material and product performance, reliability, and safety, before any physical prototypes are created. These cutting-edge tools can simulate a wide range of scenarios, including structures, fluids, multibody interactions, and electromagnetics, while ensuring seamless integration with product data, even for intricate assemblies. The technology for modeling, simulation, and visualization is thoroughly embedded within the 3DEXPERIENCE platform, encompassing features for process capture, publication, and reuse. By connecting simulation data, results, and intellectual property to the platform, users can enhance their existing investment in simulation technologies, converting these elements into invaluable assets that stimulate innovation for all participants. This integration not only boosts efficiency in workflows but also promotes collaborative progress across various teams and initiatives, ultimately leading to more innovative solutions. As a result, organizations can harness the full potential of their resources while driving continuous improvement in their projects.
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Famic Technologies is a company that creates software called Automation Studio. Automation Studio offers training via documentation, webinars, live online, and in person sessions. Automation Studio has a free trial. Automation Studio is a type of simulation software, and provides features like 1d simulation, design analysis, direct manipulation, 3d modeling, turbulence modeling, presentation tools, Agent-Based modeling, and industry specific database. Automation Studio includes phone support support. Some competitors to Automation Studio include Fieldscale, FieldView, and Energy2D.