Industrial VR that allows real-time confirmation of specifications and operation checks with a 3D mockup!
Mitsubishi Hitachi Power Systems Europe needed a tool to verify product specifications before bidding in order to reduce risks associated with discrepancies and defects after winning bids. "IC.IDO" allows different departments and personnel involved in large-scale building design to confirm specifications and functionality in real-time using a 3D mockup, enhancing mutual understanding between departments and significantly shortening development time. Additionally, by identifying and improving defects before entering the construction process, it was possible to reduce the risks of project delays and damages due to quality issues. [Implementation Effects] ■ Everyone involved can review in real-time at full scale ■ Identify and improve defects before entering the construction process ■ Reduce risks of project delays and damages due to quality issues *For more details, please refer to the PDF document or feel free to contact us.
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**Features of "IC.IDO"** - Real-time physics simulation reproduces the actual behavior of components. - Intuitive product operation is possible with an industry-leading 3D user interface. - Real-time data communication between remote locations is enabled. - Supports numerous CAD and PDM systems, facilitating process integration. - Special rendering techniques for large data allow for easy visualization of large datasets. *For more details, please refer to the PDF document or feel free to contact us.*
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For more details, please refer to the PDF document or feel free to contact us.
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ESI Group is a leading company in "virtual prototyping," providing innovative solutions and services that emphasize "materials physics." We have developed unique solutions that enable the replacement of physical prototypes and experiments with virtual design, manufacturing, assembly, testing, and evaluation. Leveraging today's cutting-edge technology, ESI's virtual prototyping addresses the challenge of performance evaluation throughout the product lifecycle, from the start of use to the end of life, proposing a broader concept: Product Performance Lifecycle (TM). This is achieved by creating a Hybrid Twin (TM) that utilizes simulation, physics, and data analysis, allowing for smarter product development, maintaining a connection with the actual product, and enabling performance predictions and maintenance timing throughout the product's usage period.