Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment

Wafers are usually placed in a front opening unified pod (FOUP) while waiting in the line of manufacturing processes; a conventional way for preventing (or removing) contamination is to purge an FOUP with a gas, so as to maintain the cleanliness level. This study investigates the effect of the flow...

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Main Authors: Shih-Cheng Hu, Zhe-Wei Li, Tee Lin, Ben-Ran Fu
Format: Article
Language:English
Published: MDPI AG 2018-07-01
Series:Applied Sciences
Subjects:
Online Access:http://www.mdpi.com/2076-3417/8/7/1149
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spelling doaj-0c47e7fa95124a60a7cba65d4be299fa2020-11-24T21:49:48ZengMDPI AGApplied Sciences2076-34172018-07-0187114910.3390/app8071149app8071149Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-EnvironmentShih-Cheng Hu0Zhe-Wei Li1Tee Lin2Ben-Ran Fu3Department of Energy and Refrigerating Air-conditioning Engineering, National Taipei University of Technology, Taipei 10608, TaiwanDepartment of Energy and Refrigerating Air-conditioning Engineering, National Taipei University of Technology, Taipei 10608, TaiwanDepartment of Energy and Refrigerating Air-conditioning Engineering, National Taipei University of Technology, Taipei 10608, TaiwanDepartment of Mechanical Engineering, Ming Chi University of Technology, New Taipei City 24301, TaiwanWafers are usually placed in a front opening unified pod (FOUP) while waiting in the line of manufacturing processes; a conventional way for preventing (or removing) contamination is to purge an FOUP with a gas, so as to maintain the cleanliness level. This study investigates the effect of the flow rate of clean dry air (CDA), supplied to the purge system and air curtain, on the moisture prevention performance, while opening the FOUP door in a mini-environment. An initial relative humidity (RH) in the pre-purged FOUP was approximately 0%, whereas an RH in the mini-environment was about 43%. Conventional, diffuser, and panel purge approaches were tested. The results showed that the moisture in the surroundings rapidly entered the FOUP when the door was opened, without using either the purge system or air curtain. When the CDA was then supplied to both the purge system and the air curtain, the RH values decreased significantly; the drop slope of the RH for the diffuser- and panel-purge processes was much larger than that of the conventional-purge process. In addition, the moisture prevention performance when the developed panel-purge system was used was slightly lower than when using the diffuser-purge system. However, the use of the panel-purge method could sufficiently suppress the vibration problem. In the present study, the case with CDA flow rates of 150 L/min to the air curtain and 250 L/min to the panel-purge device had the best moisture prevention performance, because of the smallest values for both the mean and maximum RH values (i.e., 1.3% and 9.5%, respectively) in the FOUP.http://www.mdpi.com/2076-3417/8/7/1149moisture preventionFOUPair curtainpanel purgediffuser
collection DOAJ
language English
format Article
sources DOAJ
author Shih-Cheng Hu
Zhe-Wei Li
Tee Lin
Ben-Ran Fu
spellingShingle Shih-Cheng Hu
Zhe-Wei Li
Tee Lin
Ben-Ran Fu
Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
Applied Sciences
moisture prevention
FOUP
air curtain
panel purge
diffuser
author_facet Shih-Cheng Hu
Zhe-Wei Li
Tee Lin
Ben-Ran Fu
author_sort Shih-Cheng Hu
title Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
title_short Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
title_full Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
title_fullStr Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
title_full_unstemmed Humidity Control for Front Opening Unified Pod after Opening Its Door in a Mini-Environment
title_sort humidity control for front opening unified pod after opening its door in a mini-environment
publisher MDPI AG
series Applied Sciences
issn 2076-3417
publishDate 2018-07-01
description Wafers are usually placed in a front opening unified pod (FOUP) while waiting in the line of manufacturing processes; a conventional way for preventing (or removing) contamination is to purge an FOUP with a gas, so as to maintain the cleanliness level. This study investigates the effect of the flow rate of clean dry air (CDA), supplied to the purge system and air curtain, on the moisture prevention performance, while opening the FOUP door in a mini-environment. An initial relative humidity (RH) in the pre-purged FOUP was approximately 0%, whereas an RH in the mini-environment was about 43%. Conventional, diffuser, and panel purge approaches were tested. The results showed that the moisture in the surroundings rapidly entered the FOUP when the door was opened, without using either the purge system or air curtain. When the CDA was then supplied to both the purge system and the air curtain, the RH values decreased significantly; the drop slope of the RH for the diffuser- and panel-purge processes was much larger than that of the conventional-purge process. In addition, the moisture prevention performance when the developed panel-purge system was used was slightly lower than when using the diffuser-purge system. However, the use of the panel-purge method could sufficiently suppress the vibration problem. In the present study, the case with CDA flow rates of 150 L/min to the air curtain and 250 L/min to the panel-purge device had the best moisture prevention performance, because of the smallest values for both the mean and maximum RH values (i.e., 1.3% and 9.5%, respectively) in the FOUP.
topic moisture prevention
FOUP
air curtain
panel purge
diffuser
url http://www.mdpi.com/2076-3417/8/7/1149
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