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Development of geometrically based fabrication emulator for MEMS micromachining and excimer laser ablation

机译:用于MEMS微加工和受激准分子激光烧蚀的基于几何的制造仿真器的开发

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摘要

Computer aided design (CAD) is a key point in the development of all engineering products for cost reduction and for accelerating the update of products. Unlike mechanical design, which usually yields truly 3-D objects, the 2-D extruded nature of the microelectromechanical systems (MEMS) fabrication process makes it extremely suitable to be represented using an automatic solid modeling flow. In this paper, the relationship between key MEMS fabrication procedures and their corresponding solid modeling functions are first correlated. Based on these correlations, a fabrication process emulator, called the NCKU Z-Fabricator is subsequently developed to emulate MEMS fabrication, and successful microfabrication examples are demonstrated. Finally, the simulation module for a novel multi-user MEMS platform "SMart" and the non-traditional excimer laser ablation process are designed and demonstrated using the Z-Fabricator. Following the correlation and methodology outlined in this paper, it is expected that users will be able to design their own process emulator to customize their own special fabrication requirements and to reduce the cost of software in a more flexible manner.
机译:计算机辅助设计(CAD)是开发所有工程产品以降低成本和加快产品更新的关键点。与通常会产生真正3D对象的机械设计不同,微机电系统(MEMS)制造过程的2D挤压性质使其非常适合使用自动实体建模流程进行表示。在本文中,首先将关键的MEMS制造程序与其相应的实体建模功能之间的关系进行了关联。基于这些相关性,随后开发了一种称为NCKU Z-Fabricator的制造过程仿真器来模拟MEMS制造,并演示了成功的微制造示例。最后,使用Z-Fabricator设计和演示了新型多用户MEMS平台“ SMart”的仿真模块和非传统的准分子激光烧蚀工艺。遵循本文概述的相关性和方法,期望用户将能够设计自己的过程仿真器,以定制自己的特殊制造要求,并以更灵活的方式降低软件成本。

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