Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach

碩士 === 國立高雄第一科技大學 === 系統資訊與控制研究所 === 101 === In order to miniaturize sophisticated electrical component, the ball grid array (BGA) of semiconductor packing method is needed. However, the temperature control is important major process of BGA processes. The purpose of this thesis is to keep uniform te...

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Main Authors: Ching-Yuan Su, 蘇慶源
Other Authors: Chin-I Huang
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/79488502102995187255
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spelling ndltd-TW-101NKIT53920032017-02-19T04:29:59Z http://ndltd.ncl.edu.tw/handle/79488502102995187255 Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach 應用疊代優化模糊PID控制策略於液氣並存雙相均溫設備之研製與控制實現 Ching-Yuan Su 蘇慶源 碩士 國立高雄第一科技大學 系統資訊與控制研究所 101 In order to miniaturize sophisticated electrical component, the ball grid array (BGA) of semiconductor packing method is needed. However, the temperature control is important major process of BGA processes. The purpose of this thesis is to keep uniform temperature between a stove and well mixed of tin liquid on BGA process, and then to improve the yield rate, a curve of temperature even to reduce consumption of electric power. Hence, the phase changed between liquid and gas approach with PID, Fuzzy, Fuzzy-PID control logic to homogenize uniform temperature. Finally, the iterative training Fuzzy-PID approach is used to obtain the best parameters of Kp, Ki, Kd. The experimental results of this thesis show that:When gas pressure is 50psi, gas type is nitrogen, the liquid height is two-thirds in tin stove, the liquid temperature of tin stove can keep on 300℃/12.22min and the range of variation is ±2℃ on stove plate with iterative training Fuzzy-PID approach. Chin-I Huang 黃勤鎰 2013 學位論文 ; thesis 81 zh-TW
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language zh-TW
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sources NDLTD
description 碩士 === 國立高雄第一科技大學 === 系統資訊與控制研究所 === 101 === In order to miniaturize sophisticated electrical component, the ball grid array (BGA) of semiconductor packing method is needed. However, the temperature control is important major process of BGA processes. The purpose of this thesis is to keep uniform temperature between a stove and well mixed of tin liquid on BGA process, and then to improve the yield rate, a curve of temperature even to reduce consumption of electric power. Hence, the phase changed between liquid and gas approach with PID, Fuzzy, Fuzzy-PID control logic to homogenize uniform temperature. Finally, the iterative training Fuzzy-PID approach is used to obtain the best parameters of Kp, Ki, Kd. The experimental results of this thesis show that:When gas pressure is 50psi, gas type is nitrogen, the liquid height is two-thirds in tin stove, the liquid temperature of tin stove can keep on 300℃/12.22min and the range of variation is ±2℃ on stove plate with iterative training Fuzzy-PID approach.
author2 Chin-I Huang
author_facet Chin-I Huang
Ching-Yuan Su
蘇慶源
author Ching-Yuan Su
蘇慶源
spellingShingle Ching-Yuan Su
蘇慶源
Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
author_sort Ching-Yuan Su
title Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
title_short Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
title_full Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
title_fullStr Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
title_full_unstemmed Realization Of The Uniform Temperature Apparatus With Gas-liquid Coexistent System By Iterative Fuzzy PID Control Approach
title_sort realization of the uniform temperature apparatus with gas-liquid coexistent system by iterative fuzzy pid control approach
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/79488502102995187255
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