Study of the alignment of TO-can assembly

碩士 === 中華大學 === 電機工程學系(所) === 99 === Long distance fiber optic communication usually uses LD of the 1310 nm as high power light source. Common semiconductor laser emitted light cone of ellipse shape, has 18o ~40o divergence angle, a ball lens or aspheric lens is needed to re-focus light beam into...

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Main Authors: Wu, Chen-Ming, 吳振銘
Other Authors: Kao, Chuan-Yuan
Format: Others
Language:zh-TW
Published: 2011
Online Access:http://ndltd.ncl.edu.tw/handle/89918556029737735952
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spelling ndltd-TW-099CHPI54420022015-10-13T20:22:58Z http://ndltd.ncl.edu.tw/handle/89918556029737735952 Study of the alignment of TO-can assembly TO-can封裝對位研究 Wu, Chen-Ming 吳振銘 碩士 中華大學 電機工程學系(所) 99 Long distance fiber optic communication usually uses LD of the 1310 nm as high power light source. Common semiconductor laser emitted light cone of ellipse shape, has 18o ~40o divergence angle, a ball lens or aspheric lens is needed to re-focus light beam into fiber. First TO-can devices should be assembled to TOSA by alignment. Then fiber plug in to TOSA connector to get the maximum coupling power without alignment. This thesis studies how to improve the alignment accuracy between LD and ball lens, in order to improve the coupling efficiency of a TOSA device. We use the optical simulation software ZEMAX analysis result to make maps which ball lens miss align LD relating with fiber coupling efficiency. We introduce the quality control skill, (1) SPC (statistical process control),and (2) GRR(gauge repeatability and reproducibility) to analyze the measurement results. Kao, Chuan-Yuan 高川原 2011 學位論文 ; thesis 71 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 中華大學 === 電機工程學系(所) === 99 === Long distance fiber optic communication usually uses LD of the 1310 nm as high power light source. Common semiconductor laser emitted light cone of ellipse shape, has 18o ~40o divergence angle, a ball lens or aspheric lens is needed to re-focus light beam into fiber. First TO-can devices should be assembled to TOSA by alignment. Then fiber plug in to TOSA connector to get the maximum coupling power without alignment. This thesis studies how to improve the alignment accuracy between LD and ball lens, in order to improve the coupling efficiency of a TOSA device. We use the optical simulation software ZEMAX analysis result to make maps which ball lens miss align LD relating with fiber coupling efficiency. We introduce the quality control skill, (1) SPC (statistical process control),and (2) GRR(gauge repeatability and reproducibility) to analyze the measurement results.
author2 Kao, Chuan-Yuan
author_facet Kao, Chuan-Yuan
Wu, Chen-Ming
吳振銘
author Wu, Chen-Ming
吳振銘
spellingShingle Wu, Chen-Ming
吳振銘
Study of the alignment of TO-can assembly
author_sort Wu, Chen-Ming
title Study of the alignment of TO-can assembly
title_short Study of the alignment of TO-can assembly
title_full Study of the alignment of TO-can assembly
title_fullStr Study of the alignment of TO-can assembly
title_full_unstemmed Study of the alignment of TO-can assembly
title_sort study of the alignment of to-can assembly
publishDate 2011
url http://ndltd.ncl.edu.tw/handle/89918556029737735952
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AT wuchenming tocanfēngzhuāngduìwèiyánjiū
AT wúzhènmíng tocanfēngzhuāngduìwèiyánjiū
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