The Influence of Gas on Flat Electron Emission Lamp Device
碩士 === 中原大學 === 電子工程研究所 === 97 === Flat Electronic Emission Lamp (FEEL) is a new pattern of light source with the theory of luminescence utilizing electrons being accelerated by external electronic field to excite the phosphor powders without having UV light emitted. The above mentioned electrons ca...
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ndltd-TW-097CYCU54280582015-10-13T12:04:54Z http://ndltd.ncl.edu.tw/handle/47256292311027070782 The Influence of Gas on Flat Electron Emission Lamp Device 氣體對平面電子發射光源元件影響之研究 Chang-Lin Chiang 江昌霖 碩士 中原大學 電子工程研究所 97 Flat Electronic Emission Lamp (FEEL) is a new pattern of light source with the theory of luminescence utilizing electrons being accelerated by external electronic field to excite the phosphor powders without having UV light emitted. The above mentioned electrons can be generated from two different sources, one is the free electrons from gas ionization, and another source is the secondary electrons generated from the bombardment of ionized gases to the cathode material. It was found by our team that there are advantages of utilizing FEEL: generate uniform double-side lighting, and, with the proper formulation of phosphor slurry, can create transparency, gray-scale, or color image, as well as for further relevant applications. Purpose of this thesis is to identify the factors that can affect FEEL device’s lifetime and efficiency under different process and gas condition, which include the treatment of gas plasma condition, and the influence of different working gases. After the identification of influential factors, the lifetime and efficiency of FEEL devices can be upgraded accordingly. Hui-Kai Zeng 鄭慧愷 2009 學位論文 ; thesis 70 zh-TW |
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碩士 === 中原大學 === 電子工程研究所 === 97 === Flat Electronic Emission Lamp (FEEL) is a new pattern of light source with the theory of luminescence utilizing electrons being accelerated by external electronic field to excite the phosphor powders without having UV light emitted. The above mentioned electrons can be generated from two different sources, one is the free electrons from gas ionization, and another source is the secondary electrons generated from the bombardment of ionized gases to the cathode material. It was found by our team that there are advantages of utilizing FEEL: generate uniform double-side lighting, and, with the proper formulation of phosphor slurry, can create transparency, gray-scale, or color image, as well as for further relevant applications.
Purpose of this thesis is to identify the factors that can affect FEEL device’s lifetime and efficiency under different process and gas condition, which include the treatment of gas plasma condition, and the influence of different working gases. After the identification of influential factors, the lifetime and efficiency of FEEL devices can be upgraded accordingly.
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Hui-Kai Zeng |
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Hui-Kai Zeng Chang-Lin Chiang 江昌霖 |
author |
Chang-Lin Chiang 江昌霖 |
spellingShingle |
Chang-Lin Chiang 江昌霖 The Influence of Gas on Flat Electron Emission Lamp Device |
author_sort |
Chang-Lin Chiang |
title |
The Influence of Gas on Flat Electron Emission Lamp Device |
title_short |
The Influence of Gas on Flat Electron Emission Lamp Device |
title_full |
The Influence of Gas on Flat Electron Emission Lamp Device |
title_fullStr |
The Influence of Gas on Flat Electron Emission Lamp Device |
title_full_unstemmed |
The Influence of Gas on Flat Electron Emission Lamp Device |
title_sort |
influence of gas on flat electron emission lamp device |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/47256292311027070782 |
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