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Presentation of case studies. What is the 3D CAD required for the design of material handling and transportation equipment?

3D CAD that achieves a reduction in lead time for transportation equipment development! Realizing ultra-fast response capable of handling 3 million parts in 0.2 seconds.

In the design of conveying equipment, the requirements vary for each customer due to factors such as the conveyed items and factory layout, necessitating a unique and quick turnaround design for each case. To achieve a vertical startup of the equipment, it is crucial to extract detailed customer requirements at an early stage of specification discussions and to help them quickly understand the structure and operability of the equipment. For mechanical designers, the 3D CAD iCAD SX achieves high-speed response, handling 3 million parts in 0.2 seconds. You can manage the entire conveying equipment, including material handling devices like conveyors and AGVs, on 3D CAD without stress. Since the movements of the machinery can be simulated in advance for the entire system, there is no worry about damaging the machinery or causing harm to people. This leads to improved design quality and reduced development lead times. \\Customer case studies that have realized manufacturing DX are exclusively available on the 【special site】/ /                     ^^^^^^^^^^^^^ ▶ Click on the special site to download the case studies now!  ↓↓↓

  • 3D CAD

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Realizing parallel examination of mechanics and control! 3D CAD suitable for automotive equipment design.

Achieving front-loading in automotive equipment development, including control and robot verification! Ultra-fast response 3D CAD that smoothly handles large-scale data.

In the automotive industry, there is a demand for the rapid market introduction of new vehicles, which requires the development of automotive production equipment with short delivery times and high quality. Additionally, not only mechanical design but also PLC simulation of equipment and welding robot simulation are becoming more complex, leading to the use of simulators for pre-validation. However, general simulation software requires the conversion of 3D CAD data, necessitating the reconfiguration of mechanisms and IO information with each design change. This makes it difficult to conduct parallel considerations in line with design progress, and many customers may have given up on this approach. To solve this issue, it is important to achieve control debugging and robot simulation directly on the 3D CAD platform. iCAD SX offers ultra-fast response by processing 3 million parts in 0.2 seconds, allowing it to handle vast amounts of data, including the operation and control information of large-scale models, and enables control debugging and robot simulation directly on the 3D CAD. This facilitates an earlier start to control design, shortening the equipment development period and achieving front-loading. ▶ A special site is currently showcasing limited case studies!    ↓↓↓

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  • 3D CAD

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What is the 3D CAD required for semiconductor manufacturing equipment design?

3D CAD that achieves a reduction in lead time for semiconductor equipment development! Realizing ultra-fast response handling of 3 million parts in 0.2 seconds.

In recent years, the development of semiconductor manufacturing equipment has seen a tremendous increase in the number of components due to the complexity of the required functions. Therefore, the biggest challenge is how to efficiently arrange various mechanical devices within a limited space. 'iCAD SX V8' is a domestically developed 3D CAD specialized for mechanical design, created to support Japanese manufacturing. iCAD achieves high-speed response, handling 3 million components in 0.2 seconds, allowing for stress-free design consideration and verification of the entire semiconductor manufacturing equipment, which can involve tens of thousands of parts. Leveraging its ability to handle vast amounts of information, it is possible to accumulate and utilize design information necessary for equipment development, including piping, wiring, and control (movement), all within a single CAD data file. This data can be used across various scenarios and departments, from design to manufacturing, assembly, and maintenance. *Case studies from semiconductor manufacturing equipment manufacturers are currently available for limited viewing on a special website. Please click the link below to download.

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  • 3D CAD

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[Manufacturer Case Studies Available] 3D CAD Required for Press Machine Design

Improving design quality through operational considerations of the press machine and entire conveying equipment in 3DCAD.

In the design of press machines, it is essential to efficiently carry out work processing and transportation to each stage. Therefore, it is important to deepen the consideration of "movement" in addition to the structure and configuration of the press machine from the conceptual design stage. However, when progressing with design in 3D CAD, the following problems arise, and it is often reported that the consideration of "movement" is abandoned: - The 3D model becomes heavy, making it difficult to apply movement. - It takes time to convert for simulation. The cause of this is that data becomes heavy due to the history and constraints of general 3D CAD. With iCAD SX, the examination of the device's operation and the confirmation of related interferences can be performed with a single tool. This feature, along with ultra-fast response, allows for the design to progress while experimenting with the device's movements. Furthermore, based on the set movements and the ladder program created by the control designer, the verification of the control program can be conducted on the 3D CAD. By integrating mechanics and control, it is possible to shorten development lead times and improve design quality. ▶ Click on the special site and download the <Case Studies> now!   ↓↓↓

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  • 3D CAD

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Shibaura Mechatronics Co., Ltd. [3D CAD Implementation Case] i CAD SX

A 3D CAD that smoothly carries out the assembly design of 40,000 parts, achieving "zero interference" and "reduction of rework in the manufacturing process."

We would like to introduce a case study of business improvement using the 3D CAD "iCAD SX," which is specialized in mechanical design. "Shibaura Mechatronics Corporation" decided to transition to 3D design in order to improve the efficiency of their semiconductor manufacturing equipment design operations. After comparing three products: an existing 2D CAD from the same manufacturer, a high-end 3D CAD, and iCAD SX, they selected "iCAD SX" as the only one that could withstand practical use. As a result, despite being custom-made products without a prototyping process, they achieved "zero interference" at the design stage. By utilizing 3D data and a viewer, they successfully reduced the man-hours required for creating assembly instruction manuals. [Main Benefits of Implementation] - Achieved "zero interference" at the design stage, reducing rework costs in the manufacturing process. - Reduced design time by 30% compared to the time estimated with 2D CAD. - Increased inquiries through visual appeal. [Download Materials] - Currently available for limited access on the special site. Please click the link below.    ▼▼▼ Click here ▼▼▼

  • 3D CAD

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