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Mechatronic Concept Design

我们的产品为机械设计提供了多学科方法,消除了电气、机械和自动化工程师之间的障碍。
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产品描述

Get to market faster by reducing machine development time with MCD

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Mechatronic Concept Design

 

我们的产品为机械设计提供了多学科方法,消除了电气、机械和自动化工程师之间的障碍。 我们可帮助您提高设计速度、提升设计质量,从而不断给机械设计流程带来革新性的转变。 机电一体化概念设计解决方案提供了端到端解决方案,该解决方案能够从概念到生产评估实现多部门协同、重用现有知识、缩短上市时间,并做出较为合理的决策。

Mechatronic Concept Design is made up of powerful features that allow you to build a custom solution. Read more about these features below.

Integrated System Engineering Approach

 

  • You can trace customer requirements all the way through to a finished design using systems engineering principles. A functional model provides a common language for mechanical, electrical and automation disciplines to work together in parallel, which helps you deliver designs faster and with fewer integration issues late in your design process.


     
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Open Interfaces to Other Tools

 

The output of Mechatronics Concept Designer can be used directly by multiple disciplines to continue to refine the designs without the need to re-master the data.

Mechanical designers can use concept models in NX for detailed design
Electrical designers can use model data to select sensors and actuators
Automation designers can use cams and operation sequence information from the model for software development

 

Physics-Based Simulation Capability

 

Mechatronics Concept Designer has easy-to-use modeling and simulation which allows you to quickly create and validate alternative design concepts early in the development cycle. Unlike a model based tool, MCD allows you not only to see what it looks like, but validate that it works. While model centric tools show you the geometry and allow you to model the parts, we go further and allow you to validate that your product works before you build it. This validation is enabled by the re-use library, from which you can quickly add data to the functional model. This data includes joints, motion, sensors, actuators, collision behavior, and other kinematic and dynamic properties for each component. This allows a physics-based, interactive simulation to verify machine operation. This verification helps you detect and correct errors in the digital model.

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