• Title/Summary/Keyword: branch coupler

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Laser lithography system for the fabrication of optical waveguides (광도파로 소자 제작을 위한 레이저 리소그래피 장치)

  • Park, K. H.;Byun, Y. T.;Kim, M. W.;Kim, S. H.;Choi, S. S.;Cho, W. R.;Park, S. H.;Kim. U.
    • Korean Journal of Optics and Photonics
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    • v.8 no.2
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    • pp.169-173
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    • 1997
  • Most conventional lithography systems have been oriented to fabricate electronic devices. Therefore, it is not so easy to fabricate large aspect ratios of waveguide patterns with those systems. When considering costs and efficiencies, a laser lithography system provides number of benefit in realizing waveguide patterns. However, because the conventional laser lithography system could make only positive tone masks, it is inconvenient in determining the direction of the waveguide. A simple and reliable technique to produce negative tone masks was developed by using the laser beam writing. This technique was not sensitive to environmental situations such as dust, vibration, intensity variation. Making use of the technique a variety of device patterns such as Y-branch, directional coupler, and highly smooth S-shape bend could be successfully fabricated with a good contrast.

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Metamaterial CRLH Structure-based Balun for Common-Mode Current Indicator

  • Kahng, Sungtek;Lee, Jinil;Kim, Koon-Tae;Kim, Hyeong-Seok
    • Journal of Electrical Engineering and Technology
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    • v.9 no.1
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    • pp.301-306
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    • 2014
  • We proposed a new PCB-type 'common-mode current($I_c$) and differential-mode current($I_d$) detector' working for fast detection of $I_c$ and $I_d$ from the differential-mode signaling, with miniaturization effect and possibility of cheaper fabrication. In order to realize this device, we suggest a branch-line-coupler balun having a composite right- and left-handed(CRLH) one-layer microstrip phase-shifting line as compact as roughly ${\lambda}_g/14$. The presented balun obviously is different from the conventional bent-&-folded delay lines or slits on the ground for coupling the lines on the top and bottom dielectrics. As we connect the suggested balun output ports of the differential-mode signal lines via the through-port named U and coupled-port named L, $I_c$ and $I_d$ will appear at port ${\Delta}$ and port ${\Sigma}$ of the present device, in order. The validity of the design scheme is verified by the circuit-and numerical electromagnetic analyses, and the dispersion curve proving the metamaterial characteristics of the geometry. Besides, the examples of the $I_c$ and $I_d$ indicator are observed as the even and odd modes in differential-mode signal feeding. Also, the proposed device is shown to be very compact, compared with the conventional structure.