• Title/Summary/Keyword: Spatial DLC

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Synthesis Method for the Adaptive SLB Channel Based on the Spatial DLC (Spatial DLC를 기반으로 한 적응적 SLB 채널 합성에 대한 연구)

  • Jang, Youn Hui;Kim, Whan-Woo
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
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    • v.29 no.8
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    • pp.608-614
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    • 2018
  • This paper describes the synthesis method for an adaptive SLB channel, which is robust to interference in the ULA radar system. The SLB channel based on the spatial DLC can be synthesized simply and is effective in blanking the signal coming from the sidelobe. We combined it with adaptive beamforming, which removes the strong interference using its correlation matrix. The adaptive SLB channel would suppress the interference below the noise, so it has good performance in an interference environment. This research will be applicable to planar array systems.

Pulsed Magnet ron Sputtering Deposit ion of DLC Films Part II : High-voltage Bias-assisted Deposition

  • Chun, Hui-Gon;Lee, Jing-Hyuk;You, Yong-Zoo;Ko, Yong-Duek;Cho, Tong-Yul;Nikolay S. Sochugov
    • Journal of the Korean institute of surface engineering
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    • v.36 no.2
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    • pp.148-154
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    • 2003
  • Short ($\tau$=40 $mutextrm{s}$) and high-voltage ($U_{sub}$=2~8 kV) negative substrate bias pulses were used to assist pulsed magnetron sputtering DLC films deposition. Space- and time-resolved probe measurements of the plasma characteristics have been performed. It was shown that in case of high-voltage substrate bias spatial non-uniformity of the magnetron discharge plasma density greatly affected DLC deposition process. By Raman spectroscopy it was found that maximum percentage of s $p^3$-bonded carbon atoms (40 ~ 50%) in the coating was attained at energy $E_{c}$ ~700 eV per deposited carbon atom. Despite rather low diamond-like phase content these coatings are characterized by good adhesion due to ion mixing promoted by high acceleration voltage. Short duration of the bias pulses is also important to prevent electric breakdowns of insulating DLC film during its growth.wth.