The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel
碩士 === 國立高雄應用科技大學 === 電子工程系 === 100 === Each node voltage of the grayscale detection is implemented for the traditional design process using a higher voltage from source input and operated several pieces of series resistance to retrieve the detection reference node voltage. The color analyzer is cap...
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ndltd-TW-100KUAS83930892015-10-13T22:01:10Z http://ndltd.ncl.edu.tw/handle/57013616918435990745 The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel 全自動可程式化視網膜級面板迦瑪校調系統 Chi-Shih Tsai 蔡基士 碩士 國立高雄應用科技大學 電子工程系 100 Each node voltage of the grayscale detection is implemented for the traditional design process using a higher voltage from source input and operated several pieces of series resistance to retrieve the detection reference node voltage. The color analyzer is captured each grayscale luminance and depicted the gamma curve. The above complicated process must be performed several times and replaced the series resistance by manual operation. In order to achieve the 0.1% error value purpose of gamma calibration curve for repetitive work, it can follow and enhance the high efficiency industry requirement. In this thesis, it is necessary to include the automation calibration system instead of the complicated and repetitive tasks. Digital programmable chips can be induced to correct the fine node voltage, and it can also control the programmable instrument by a USB interface. The automation calibration system is mixed the instrument interface for pressing the software execution button with graphical user interface (GUI) to replace and correct the Gamma curve. This thesis can enhance the industry performance cost ratio (PCR) of retinal grade panel process for the new iPad product, etc. Gwo-Jia Jong, Ph.D. 鐘國家 101 學位論文 ; thesis 75 zh-TW |
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碩士 === 國立高雄應用科技大學 === 電子工程系 === 100 === Each node voltage of the grayscale detection is implemented for the traditional design process using a higher voltage from source input and operated several pieces of series resistance to retrieve the detection reference node voltage. The color analyzer is captured each grayscale luminance and depicted the gamma curve. The above complicated process must be performed several times and replaced the series resistance by manual operation. In order to achieve the 0.1% error value purpose of gamma calibration curve for repetitive work, it can follow and enhance the high efficiency industry requirement.
In this thesis, it is necessary to include the automation calibration system instead of the complicated and repetitive tasks. Digital programmable chips can be induced to correct the fine node voltage, and it can also control the programmable instrument by a USB interface. The automation calibration system is mixed the instrument interface for pressing the software execution button with graphical user interface (GUI) to replace and correct the Gamma curve. This thesis can enhance the industry performance cost ratio (PCR) of retinal grade panel process for the new iPad product, etc.
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Gwo-Jia Jong, Ph.D. |
author_facet |
Gwo-Jia Jong, Ph.D. Chi-Shih Tsai 蔡基士 |
author |
Chi-Shih Tsai 蔡基士 |
spellingShingle |
Chi-Shih Tsai 蔡基士 The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
author_sort |
Chi-Shih Tsai |
title |
The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
title_short |
The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
title_full |
The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
title_fullStr |
The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
title_full_unstemmed |
The Comprehensive Automation and Programmable Calibration System of the Retinal Grade Panel |
title_sort |
comprehensive automation and programmable calibration system of the retinal grade panel |
publishDate |
101 |
url |
http://ndltd.ncl.edu.tw/handle/57013616918435990745 |
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