Editorial Type:
Article Category: Research Article
 | 
Online Publication Date: 17 Oct 2005

Optimization of a Minienvironment Design Using Computational Fluid Dynamics

Page Range: 29 – 34
DOI: 10.17764/jiet.2.40.1.b1762603371140r7
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This paper discusses the use of a CFD (computational fluid dynamics) code for the design and optimization processes of a minienvironment mounted on a wafer process tool. The three-dimensional code was used to predict the air velocity flied and pressure distribution in the minienvironment based on a finite volume approach. The geometric model consists of the minienvironment, the tool surface, and the integrated I/O Indexer interfaces. The airflow in the minienvironment (with a conceptual design configuration) was simulated. The results prompted a design change. The new design has a desirable airflow for a more effective minienvironment performance. Particular attention was paid to air recirculation zones that could potentially trap particles generated during the process and to maintaining a positive differential pressure to prevent cross contamination. CFD was shown to be an important step in the design process.

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