• Title/Summary/Keyword: 단일렌즈

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Fabrication and Transmission Experiment of the Distributed Feedback Laser Diode(DFB-LD) Module for 2.5Gbps Optical Telecommunication System (2.5Gbps 광통신용 distrbuted feedback laser diode(DFB-LD) 모듈 제작 및 광송신 실험)

  • 박경현;강승구;송민규;이중기;조호성;장동훈;박찬용;김정수;김홍만
    • Korean Journal of Optics and Photonics
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    • v.5 no.3
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    • pp.423-430
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    • 1994
  • We designed and fabricated the single mode fiber pigtailed DFB-LD module for 2.5 Gbps optical communication system. In the design of the DFB-LD module, we made the module divided into two parts of inner sub-module and outer 14-pin butterfly package and cylindrical shaped sub-module contain quasi confocal 2 lens system including optical isolator and electrical connection between these parts via hybrid substrate of bias T circuit. Laser welding was used to assemble the sub-module which requires accurate fixing between optical elements. The fabricated DFB-LD module showed optical coupling efficiency of 20% and - 3 dB small signal response of more than 2.6 GHz. We confirmed mechanical reliability of the module by temperature cycle test where the tested module exhibit optical power fluctuation of less than 10%. Finally we evaluated the performance of the fabricated DFB-LD module as light source of 2.5 Gbps optical communication system, sensitivity of - 30.2 dBm was obtained through 47 km optical fiber transmission under the criterion of $1\times10^{-10}$ BER and transmission penalties were 1.5 dB caused by extinction ratio and 1.0 dB caused by chromatic dispersion of normal single mode fiber. fiber.

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Glass Antenna Using Transparent IZTO/Ag/IZTO Multilayer Electrode (IZTO/Ag/IZTO 다층 투명전극을 이용한 안경용 웨어러블 안테나)

  • Hong, Seungman;Kim, Youngsung;Jung, Chang Won
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.17 no.2
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    • pp.372-377
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    • 2016
  • Communication flow is changing rapidly. Recently, a range of wearable devices such as wearable glasses and wearable watch, have been launched. These kinds of wearable devices help people to live a more comfortable life. Wearable devices most have an antenna for wireless communication. This paper reports a transparent antenna that is made of an optically transparent material for wearable glasses. Transparent antenna can be applied to smart windows and will not disturb the view of user. IZTO/Ag/IZTO multilayer electrode has higher electrical and optical properties. This antenna is available because of its good electrical properties. This study measured the performance of the proposed transparent antenna, which is made of a multilayer electrode, applied to a lens. The proposed antenna was simulated with several substrates. The antenna impedance was matched with length and width of the antenna. The antenna's conductivity and transparency was measured using a HMS-3000 and UV-spectrometer. A 40nm thick Ag single layer antenna was fabricated on a flexible polyimide substrate for comparing the antenna performances. The fabricated antenna is useable at a frequency of 2.4-2.5GHz, which is suitable for Wifi communications and has peak gain of 2.89dBi and an efficiency of 34%.

DESIGN OF THE OPTICAL SYSTEM FOR A PROTOMODEL OF SPACE INFRARED CRYOGENIC SYSTEM (우주탑재용 적외선카메라 시험모델의 광학계 설계)

  • Lee, Dae-Hee;Pak, Soo-Jong;Yuk, In-Soo;Nam, Uk-Won;Jin, Ho;Lee, Sung-Ho;Han, Jeong-Yeol;Yang, Hyung-Suk;Kim, Dong-Lak;Kim, Geon-Hee;Park, Seong-Je;Kim, Byung-Hyuk;Jeong, Han
    • Journal of Astronomy and Space Sciences
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    • v.22 no.4
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    • pp.473-482
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    • 2005
  • Many technical challenges are being tried for a large space infrared telescope, which is one of the major objectives of the Strategic Technology Road Map (STRM) of KASI (Korea Astronomy and Space Science Institute), As one of these challenges, KASI and KBSI (Korea Basic Science Institute) have started a cooperation project for developing a space infrared cryogenic system with KIMM (Korea Institute of Machinery as Materials) and i3system co. In this paper, we generate optical requirements for the Protomodel of Space Infrared Cryogenic System (PSICS), and design a single lens optical system with a bandpass of $3.8\~4.8{\mu}m$, a field of view of $15^{\circ}\times12^{\circ}$, and an angular resolution of $0.047^{\circ}$, to develop a further complex optical system.