Design of Refractive/Diffractive Hybrid IR Zoom Collimator
碩士 === 逢甲大學 === 電機工程所 === 97 === This research studies the design of hybrid (refractive/diffractive) IR zoom collimator that applies in dynamic simulation of infrared imaging system. The zoom collimator designed for infrared seeker test uses United States patent US6091551 for the initial structure a...
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ndltd-TW-097FCU054420032015-11-13T04:09:16Z http://ndltd.ncl.edu.tw/handle/63872725400385946011 Design of Refractive/Diffractive Hybrid IR Zoom Collimator 折/繞射複合型紅外變焦準直鏡設計 Yu-Cheng Su 蘇育正 碩士 逢甲大學 電機工程所 97 This research studies the design of hybrid (refractive/diffractive) IR zoom collimator that applies in dynamic simulation of infrared imaging system. The zoom collimator designed for infrared seeker test uses United States patent US6091551 for the initial structure and reduces the amount of original lens from eleven to seven which consists of four groups called front fixed group, zoom group, compensation group, and rear fixed group, whose power are positive, negative, negative, and positive. The optical performance of the system over the entire 2.7: 1 zoom ratio has the effective focal length 49.2 mm at the wide angle mode, the effective focal length 72.3 mm at the intermediate mode, and the effective focal length 128 mm at the telephoto mode. The maximum image size is 8.16 mm, the relative illumination is over 90%, the distortion is less 5%, and MTF at 30 lp/mm is greater than 0.3. The lens group, while designing, has introduced focusing and image quality correction factor, which ensures that the collimator system is in the best situation. none 陳德請 2009 學位論文 ; thesis 93 zh-TW |
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碩士 === 逢甲大學 === 電機工程所 === 97 === This research studies the design of hybrid (refractive/diffractive) IR zoom collimator that applies in dynamic simulation of infrared imaging system. The zoom collimator designed for infrared seeker test uses United States patent US6091551 for the initial structure and reduces the amount of original lens from eleven to seven which consists of four groups called front fixed group, zoom group, compensation group, and rear fixed group, whose power are positive, negative, negative, and positive. The optical performance of the system over the entire 2.7: 1 zoom ratio has the effective focal length 49.2 mm at the wide angle mode, the effective focal length 72.3 mm at the intermediate mode, and the effective focal length 128 mm at the telephoto mode. The maximum image size is 8.16 mm, the relative illumination is over 90%, the distortion is less 5%, and MTF at 30 lp/mm is greater than 0.3. The lens group, while designing, has introduced focusing and image quality correction factor, which ensures that the collimator system is in the best situation.
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author_facet |
none Yu-Cheng Su 蘇育正 |
author |
Yu-Cheng Su 蘇育正 |
spellingShingle |
Yu-Cheng Su 蘇育正 Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
author_sort |
Yu-Cheng Su |
title |
Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
title_short |
Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
title_full |
Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
title_fullStr |
Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
title_full_unstemmed |
Design of Refractive/Diffractive Hybrid IR Zoom Collimator |
title_sort |
design of refractive/diffractive hybrid ir zoom collimator |
publishDate |
2009 |
url |
http://ndltd.ncl.edu.tw/handle/63872725400385946011 |
work_keys_str_mv |
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