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Performance-Driven Microfabrication-Oriented Methodology for MEMS Conceptual Design with Application in Microfluidic Device Design

机译:面向微机械制造的mEms微观制造方法论及其在微流控装置设计中的应用

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摘要

Performance and manufacturability are two important issues that must be taken into account during MEMS design. Existing MEMS design models or systems follow a process-driven design paradigm, that is, design starts from the specification of process sequence or the customization of foundry-ready process template. There has been essentially no methodology or model that supports generic, high-level design synthesis for MEMS conceptual design. As a result, there lacks a basis for specifying the initial process sequences. To address this problem, this paper proposes a performance-driven, microfabrication-oriented methodology for MEMS conceptual design. A unified behaviour representation method is proposed which incorporates information of both physical interactions and chemical/biological/other reactions. Based on this method, a behavioural process based design synthesis model is proposed, which exploits multidisciplinary phenomena for design solutions, including both the structural components and their configuration for the MEMS device, as well as the necessary substances for the chemical/biological/other reactions. The model supports both forward and backward synthetic search for suitable phenomena. To ensure manufacturability, a strategy of using microfabrication-oriented phenomena as design knowledge is proposed, where the phenomena are developed from existing MEMS devices that have associated MEMS-specific microfabrication processes or foundry-ready process templates. To test the applicability of the proposed methodology, the paper also studies microfluidic device design and uses a micro-pump design for the case study.
机译:性能和可制造性是MEMS设计中必须考虑的两个重要问题。现有的MEMS设计模型或系统遵循过程驱动的设计范式,即设计从过程顺序的规范或定制可铸造工厂的过程模板开始。基本上没有方法或模型可以支持MEMS概念设计的通用高级设计综合。结果,缺乏指定初始处理顺序的基础。为了解决这个问题,本文提出了一种用于MEMS概念设计的性能驱动,面向微制造的方法。提出了一种统一的行为表示方法,该方法结合了物理相互作用和化学/生物/其他反应的信息。在此方法的基础上,提出了一种基于行为过程的设计综合模型,该模型利用多学科现象为设计解决方案,包括MEMS器件的结构部件及其配置,以及化学/生物/其他反应所需的物质。 。该模型支持向前和向后综合搜索以找到合适的现象。为了确保可制造性,提出了一种使用面向微细加工的现象作为设计知识的策略,该现象是从具有关联的MEMS专用微细加工工艺或可用于代工厂的工艺模板的现有MEMS设备开发出来的。为了测试所提出方法的适用性,本文还研究了微流体装置的设计,并将微泵设计用于案例研究。

著录项

  • 作者

    Deng Y.-M.; Lu Wen Feng;

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  • 年度 2005
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  • 原文格式 PDF
  • 正文语种 en
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