Passively-aligned Optical Transceiver for Light Peak Application

碩士 === 國立中山大學 === 光電工程學系研究所 === 101 === The aim of this dissertation is to fabricate miniaturized active optical cable (AOCs) based on precision positioning property of MT ferrule High density multimedia interface (HDMI) optical cables were need to demonstrate the feasibility of MT ferrule by measur...

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Main Authors: Dung-Chin Yang, 楊東欽
Other Authors: An-Kuo Chu
Format: Others
Language:zh-TW
Published: 2013
Online Access:http://ndltd.ncl.edu.tw/handle/6dnded
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spelling ndltd-TW-101NSYS51240062019-05-15T21:02:51Z http://ndltd.ncl.edu.tw/handle/6dnded Passively-aligned Optical Transceiver for Light Peak Application 被動對準收發光模組與Light Peak的運用 Dung-Chin Yang 楊東欽 碩士 國立中山大學 光電工程學系研究所 101 The aim of this dissertation is to fabricate miniaturized active optical cable (AOCs) based on precision positioning property of MT ferrule High density multimedia interface (HDMI) optical cables were need to demonstrate the feasibility of MT ferrule by measuring the optical coupling efficiency and bandwidth of cables. The 45o ×4 ribbon fibers with metal coating were inserted into the MT ferrule , and the combined structures were need to form the transmission module and receiver module together with Vertical-Cavity Surface-Emitting Laser array and photodetector array. Techniques were to polish 45o ×4 fiber ribbon were developed, DC and high-speed measurement platforms were set up to measure the characteristics of the optical modules. In addition, we used the Light Tools to simulate coupling efficiency of the optical module, and compared the simulation results with measurement. The fabricated HDMI AOCs exhibited excellent optical and high-speed performance. The optical coupling losses between transmitting module and receiving module of HDMI AOCs are less than 4.5dB.The opening of the eye diagram is 1700mV by 2000mV. An-Kuo Chu 朱安國 2013 學位論文 ; thesis 42 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立中山大學 === 光電工程學系研究所 === 101 === The aim of this dissertation is to fabricate miniaturized active optical cable (AOCs) based on precision positioning property of MT ferrule High density multimedia interface (HDMI) optical cables were need to demonstrate the feasibility of MT ferrule by measuring the optical coupling efficiency and bandwidth of cables. The 45o ×4 ribbon fibers with metal coating were inserted into the MT ferrule , and the combined structures were need to form the transmission module and receiver module together with Vertical-Cavity Surface-Emitting Laser array and photodetector array. Techniques were to polish 45o ×4 fiber ribbon were developed, DC and high-speed measurement platforms were set up to measure the characteristics of the optical modules. In addition, we used the Light Tools to simulate coupling efficiency of the optical module, and compared the simulation results with measurement. The fabricated HDMI AOCs exhibited excellent optical and high-speed performance. The optical coupling losses between transmitting module and receiving module of HDMI AOCs are less than 4.5dB.The opening of the eye diagram is 1700mV by 2000mV.
author2 An-Kuo Chu
author_facet An-Kuo Chu
Dung-Chin Yang
楊東欽
author Dung-Chin Yang
楊東欽
spellingShingle Dung-Chin Yang
楊東欽
Passively-aligned Optical Transceiver for Light Peak Application
author_sort Dung-Chin Yang
title Passively-aligned Optical Transceiver for Light Peak Application
title_short Passively-aligned Optical Transceiver for Light Peak Application
title_full Passively-aligned Optical Transceiver for Light Peak Application
title_fullStr Passively-aligned Optical Transceiver for Light Peak Application
title_full_unstemmed Passively-aligned Optical Transceiver for Light Peak Application
title_sort passively-aligned optical transceiver for light peak application
publishDate 2013
url http://ndltd.ncl.edu.tw/handle/6dnded
work_keys_str_mv AT dungchinyang passivelyalignedopticaltransceiverforlightpeakapplication
AT yángdōngqīn passivelyalignedopticaltransceiverforlightpeakapplication
AT dungchinyang bèidòngduìzhǔnshōufāguāngmózǔyǔlightpeakdeyùnyòng
AT yángdōngqīn bèidòngduìzhǔnshōufāguāngmózǔyǔlightpeakdeyùnyòng
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