Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor

碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 90 === This article is focusing on the sensing component’s designing and analyzing of micro oxygen-solvent, especially the ability to measure the oxygen’s solved volume. According the measures oxygen’s solved volume, we can determine whether it is satisfying the n...

Full description

Bibliographic Details
Main Author: 林嘉龍
Other Authors: Dr.Y.S.Ouyang
Format: Others
Language:zh-TW
Published: 2002
Online Access:http://ndltd.ncl.edu.tw/handle/45597996569240739499
id ndltd-TW-090NTU00415003
record_format oai_dc
spelling ndltd-TW-090NTU004150032015-10-13T12:47:26Z http://ndltd.ncl.edu.tw/handle/45597996569240739499 Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor 設計微溶氧感測器之理論分析與模擬 林嘉龍 碩士 國立臺灣大學 生物產業機電工程學研究所 90 This article is focusing on the sensing component’s designing and analyzing of micro oxygen-solvent, especially the ability to measure the oxygen’s solved volume. According the measures oxygen’s solved volume, we can determine whether it is satisfying the normal standard so as to adjust and control environmental factors and the alertness of system. The design scheme for micro oxygen-solved sensors proposed by this article, especially the design with ISFET and CMOS multiple micro sensor, will be goaled to enhance the sensing alertness, precision and authentication of oxygen solvent volume. We will adopt the integrated design for “Concurrent Engineering (CE)”, “Quality Function Development (QFD)” and “Reversed Engineering”. Initially, we will establish the designing concepts and adopt chemical simulating software further to analyze 8 major molecular structures, the energy in liquid phase, electronic clouds, temperature distribution and reaction. Among them, we will select the most suitable material and re-integrate with ISFET and MOSFET to generate the physical distributed prototype of a component. Dr.Y.S.Ouyang 歐陽又新 2002 學位論文 ; thesis 117 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立臺灣大學 === 生物產業機電工程學研究所 === 90 === This article is focusing on the sensing component’s designing and analyzing of micro oxygen-solvent, especially the ability to measure the oxygen’s solved volume. According the measures oxygen’s solved volume, we can determine whether it is satisfying the normal standard so as to adjust and control environmental factors and the alertness of system. The design scheme for micro oxygen-solved sensors proposed by this article, especially the design with ISFET and CMOS multiple micro sensor, will be goaled to enhance the sensing alertness, precision and authentication of oxygen solvent volume. We will adopt the integrated design for “Concurrent Engineering (CE)”, “Quality Function Development (QFD)” and “Reversed Engineering”. Initially, we will establish the designing concepts and adopt chemical simulating software further to analyze 8 major molecular structures, the energy in liquid phase, electronic clouds, temperature distribution and reaction. Among them, we will select the most suitable material and re-integrate with ISFET and MOSFET to generate the physical distributed prototype of a component.
author2 Dr.Y.S.Ouyang
author_facet Dr.Y.S.Ouyang
林嘉龍
author 林嘉龍
spellingShingle 林嘉龍
Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
author_sort 林嘉龍
title Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
title_short Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
title_full Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
title_fullStr Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
title_full_unstemmed Theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
title_sort theoretical analysis and simulation for the design of micro-dissolve oxygen sensor
publishDate 2002
url http://ndltd.ncl.edu.tw/handle/45597996569240739499
work_keys_str_mv AT línjiālóng theoreticalanalysisandsimulationforthedesignofmicrodissolveoxygensensor
AT línjiālóng shèjìwēiróngyǎnggǎncèqìzhīlǐlùnfēnxīyǔmónǐ
_version_ 1716867407606185984