• Title/Summary/Keyword: Optical Components

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Performance Evaluation of Low-cost Optical Components used for Measuring the Optical Density and Concentration of Particulate Matter(PM) (입자상물질의 광학밀도 및 농도측정에 적용된 저가형 광학 부품의 성능평가)

  • Baik, Young Jo;Hong, Terki;Hwang, Cheol Hong;Park, Seul Hyun
    • Journal of the Korean Society of Safety
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    • v.31 no.5
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    • pp.1-6
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    • 2016
  • The performance of a set of low-cost optical components used for measuring the optical density of PM particles was evaluated in the present study. To this end, the set of low-cost optical components was replaced with that of general optical components used to measure the PM optical density under identical experimental conditions. The optical densities measured from the set of general optical components were then compared to those obtained from the set of low-cost optical components. While the optical density is measured, another key parameter, the dimensionless extinction constant of PM particles (which is needed to optically measure the PM concentration) was also determined in the present study. The experimental results indicate that the optical density and PM concentration measurements performed by low-cost optical components are feasible, producing trackable variations in the OD and concentrations compared to values obtained from the set of general optical components.

Petri-Nets Modeling and Performance Evaluation of Optical-components Manufacturing System (광 부품 조립 시스템의 모델링과 성능평가)

  • 김영호;김지한;정승권;배종일;이만형
    • Proceedings of the Korean Society of Machine Tool Engineers Conference
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    • 2002.04a
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    • pp.491-495
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    • 2002
  • In the paper, a Visual factory model for a optical-components manufacturing process is built. The optical-components manufacturing process is composed of 3 operation processes; optical sub assembly process, package assembly process, and fiber assembly process. Each process is managed not a batch mode, which is one of most popular manufacturing styles to produce a great deal of industrial output, but though a modular cell. In the processes, a modular cell has to be processed independently of the other cells. Optimization for the composition of assembly cell in the optical-components system is made by the Visual factory model.

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Modeling of Optical-components Manufacturing System Using Petri-Net (페트리 네트를 이용한 광부품 조립 시스템의 모델링)

  • 김영호;차동국;정승권;배종일;이만형
    • Proceedings of the Korean Society of Precision Engineering Conference
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    • 2002.05a
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    • pp.636-639
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    • 2002
  • In the paper, a Visual factory model for a optical-components manufacturing process is built. The optical-components manufacturing process is composed of 3 operation processes; optical sub assembly process, package assembly process, and fiber assembly process. Each process is managed not a batch mode, which is one of most popular manufacturing styles to produce a great deal of industrial output, but though a modular cell. In the processes, a modular cell has to be processed independently of the other cells. Optimization for the composition of assembly cell in the optical-components system is made by the Visual factory model.

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대만의 광산업 시장 동향

  • Jeong, U-Geum
    • Photonics industry news
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    • s.34
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    • pp.12-17
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    • 2006
  • 대만은 광산업 분야를 OE(Optoelectronics Components, FPD(Flat Panel Display), Optical Storage, Optical Lens Components & Laser Applications, OFC(Optical Fiber Communications, Optical Input & Output Devices 등 6개 대분류로 나누고 있으며 수년간 중점적으로 육성해 온 분야는 OE 및 FPD와 관련이 큰 LED 분야이다.

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Tuned Optical Reflection Characteristics of Chemically-Treated Ti Substrates

  • Yun, Ho-Gyeong;Kim, Myoung;You, In-Kyu
    • ETRI Journal
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    • v.34 no.6
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    • pp.954-957
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    • 2012
  • Titanium foils for use in photoelectrochemical devices are treated with a $HNO_3$-HF solution. After this treatment, the optical reflection characteristics of the Ti substrates are markedly increased in terms of not only reflectivity but also optimized wavelength. Furthermore, the "multiple beam interference" theory and optical analysis of surface morphologies clearly verify the origin of the optimized optical reflection properties.

Reconfigurable Optical Add-Drop Multiplexer Using a Polymer Integrated Photonic Lightwave Circuit

  • Shin, Jang-Uk;Han, Young-Tak;Han, Sang-Pil;Park, Sang-Ho;Baek, Yong-Soon;Noh, Young-Ouk;Park, Kang-Hee
    • ETRI Journal
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    • v.31 no.6
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    • pp.770-777
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    • 2009
  • We have developed a fully functional reconfigurable optical add-drop multiplexer (ROADM) switch module using a polymer integrated photonic lightwave circuit technology. The polymer variable optical attenuator (VOA) array and digital optical switch array are integrated into one polymer PLC chip and packaged to form a 10-channel VOA integrated optical switch module. Four of these optical switch modules are used in the ROADM switch module to execute 40-channel switching and power equalization. As a wavelength division multiplexer (WDM) filter device, two C-band 40-channel athermal arrayed waveguide grating WDMs are used in the ROADM module. Optical power monitoring of each channel is carried out using a 5% tap PD. A controller and firmware having the functions of a 40-channel switch and VOA control, optical power monitoring, as well as TEC temperature control, and data communication interfaces are also developed in this study.

Crosstalk-Enhanced DOS Integrated with Modified Radiation-Type Attenuators

  • Han, Young-Tak;Shin, Jang-Uk;Park, Sang-Ho;Han, Sang-Pil;Lee, Chul-Hee;Noh, Young-Ouk;Lee, Hyung-Jong;Baek, Yong-Soon
    • ETRI Journal
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    • v.30 no.5
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    • pp.744-746
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    • 2008
  • This letter presents a crosstalk-enhanced polymer thermo-optic digital optical switch operating at a low power consumption. Modified radiation-type attenuators are integrated in a series with a conventional $1{\times}2$ digital optical switch. A low optical crosstalk of less than -45 dB is attained at a low applied switching power of 60 mW, and an insertion loss of about 1.1 dB is exhibited.

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40 Gbps All-Optical 3R Regeneration and Format Conversion with Related InP-Based Semiconductor Devices

  • Jeon, Min-Yong;Leem, Young-Ahn;Kim, Dong-Churl;Sim, Eun-Deok;Kim, Sung-Bock;Ko, Hyun-Sung;Yee, Dae-Su;Park, Kyung-Hyun
    • ETRI Journal
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    • v.29 no.5
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    • pp.633-640
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    • 2007
  • We report an experimental demonstration of 40 Gbps all-optical 3R regeneration with all-optical clock recovery based on InP semiconductor devices. We also obtain alloptical non-return-to-zero to return-to-zero (NRZ-to-RZ) format conversion using the recovered clock signal at 10 Gbps and 40 Gbps. It leads to a good performance using a Mach-Zehnder interferometric wavelength converter and a self-pulsating laser diode (LD). The self-pulsating LD serves a recovered clock, which has an rms timing jitter as low as sub-picosecond. In the case of 3R regeneration of RZ data, we achieve a 1.0 dB power penalty at $10^{-9}$ BER after demultiplexing 40 Gbps to 10 Gbps with an eletroabsorption modulator. The regenerated 3R data shows stable error-free operation with no BER floor for all channels. The combination of these functional devices provides all-optical 3R regeneration with NRZ-to-RZ conversion.

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Optical Components for High Speed Optical Communications (대용량 광통신 부품 기술 동향)

  • Baek, Yongsoon
    • Korean Journal of Optics and Photonics
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    • v.24 no.6
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    • pp.297-310
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    • 2013
  • With the explosive growth of internet data traffic due to the FTTH penetration, prevalence of smart devices and cloud network service, the demand for higher bandwidth is ever increasing with the pace of more than 40% annual growth. To accommodate ultra high bandwidth traffic, optical components in each hierarchy have progressed rapidly. WDM has begun to be deployed along with higher bandwidth service in the access network. Next-generation ROADM is under development for efficient network management in the metro network. For long-haul transmission, an advanced modulation scheme based on coherent transmission technology has been adopted to enhance spectral efficiency. In this paper, core components to meet the demands of high speed, high efficiency and low power consumption will be reviewed.