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How to utilize 3D data from the conceptual stage for aerospace applications?

A must-see for mechanical designers! Key points for utilizing 3D data from the conceptual stage.

In the aerospace industry, the verification process requires accuracy and efficiency in design. Particularly in the aerospace field, which often involves complex shapes and high-precision parts, the utilization of 3D data is crucial. However, even with the introduction of 3D CAD, there are challenges such as insufficient use during the conceptual design phase, leading to increased design man-hours and ineffective utilization of past design assets. This document explains the concepts and system requirements for leveraging 3D from the conceptual stage to achieve efficiency across the entire business. 【Utilization Scenarios】 * Aircraft design verification * Component design for spacecraft * Simulation 【Benefits of Implementation】 * Reduction in design man-hours * Improvement in design quality * Effective utilization of past design assets

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【Features】 * Purely domestic 3D CAD specialized in machine equipment design * Overwhelming high-speed processing performance * Supports the design of large-scale machinery and entire production equipment lines * Accumulates design information in 3D data for use throughout the manufacturing process * Extensive support unique to domestic development 【Our Strengths】 iCAD Corporation has been continuously developing 'iCAD SX' for over 40 years. We pursue the optimal 3D CAD for mechanical design and provide on-site visits by technicians and direct support from the developers' technicians.

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[Free White Paper] Considerations for Utilizing 3D Data in Conceptual Design and Required System Requirements

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To support Japan's manufacturing, iCAD Corporation has developed the specialized 3D CAD software 'iCAD SX V8' focused on mechanical design. iCAD achieves high-speed response, handling 3 million parts in just 0.2 seconds, allowing for stress-free design consideration and verification of large-scale equipment and entire production lines that can consist of tens of thousands of components. By leveraging its ability to manage vast amounts of information, it is possible to accumulate and utilize the design information necessary for equipment development, including piping, wiring, and control (movement), all within a single CAD data set. This single data set can be used across various scenarios and departments, from design to manufacturing, assembly, and maintenance. This leads to a reduction in development lead time and an improvement in design quality.