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Electric design dedicated CAD solution 'ECAD DCX 2025'

ECAD DCX 2025 Released An electrical design CAD solution equipped with a wealth of features for electrical design, including control panels and distribution boards.

"ECAD DCX" is a database-type CAD software specifically for electrical design that combines design information and component information, enabling integration not only with electrical design but also with manufacturing support systems, purchasing systems, and production management systems. 【Features】 ■ Real-time information updates and error detection ■ Automatic creation of reports such as bill of materials, terminal block tables, and wiring diagrams from drawing data ■ Ability to upload created hole processing drawings to "Cabista," making it easier to arrange cabinets ■ Search for necessary components from the cloud-based component catalog database 'ECAD Library' and register them in your company's master ■ Design data is linked with purchasing systems and production management systems. The "ECAD series" has supported the design of control panels and power distribution panels in Japan for approximately 40 years. The cumulative implementation record exceeds 29,000 licenses, promoting business reform utilizing data from design to procurement and manufacturing. *For more details, please download the materials below. Feel free to contact us with any inquiries.

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[Analysis Case] Optimization Analysis of Connecting Rod Shape

Analysis conducted with a 1/2 model! A case study seeking the shape that minimizes equivalent stress.

We would like to introduce the "Optimization Analysis of Connecting Rod Shape" conducted by our company. In this case, we sought the shape that minimizes the equivalent stress while maintaining the volume when compressive and tensile loads are applied to the connecting rod. Additionally, we performed optimization with the condition that the elliptical deformation of the large end hole under tensile load is minimized, as well as optimization that maintains stress and displacement while minimizing volume. 【Stress Minimization Results】 ■ Equivalent Stress Reduction Rate - Under compressive load: Approximately 25% - Under tensile load: Approximately 28% ■ Number of Optimization Iterations: 50 ■ Analysis Time: 21 minutes *Detailed information about this case can be viewed through the related links. For more information, please feel free to contact us.

  • Analysis and prediction system

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