• Title/Summary/Keyword: Pulsed magnetron sputtering

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IGZO films deposited by DC and DC pulsed magnetron sputtering (DC와 DC pulsed magnetron sputtering을 이용한 IGZO 박막 증착)

  • Kim, Min-Su;Kim, Se-Yun;Seong, Sang-Yun;Jo, Gwang-Min;Hong, Hyo-Gi;Lee, Jun-Hyeong;Kim, Jeong-Ju;Heo, Yeong-U
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2011.05a
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    • pp.139-139
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    • 2011
  • DC magnetron sputtering과 DC pulsed magnetron sputtering을 이용하여 공정 압력별, $O_2$ 분압별, 온도등의 증착조건에 따른 IGZO 박막의 특성을 조사하였다. Working pressure 따른 deposition rate 측정한 결과 동일 파워 적용 시 DC magnetron sputtering 대비하여 DC pulsed magnetron sputtering 은 약 84% 수준에 머물렀으며, IGZO 박막 내에 $O_2$의 분압비가 증가함에 따라 투과도는 단파장 영역에서 장파장 영역으로 갈수록 상승 경향을 보였다. 캐리어 농도와 이동도 등 전기적 특성도 증가하는 경향을 보였다. 온도에 따른 전기적 특성을 비교 해 본 결과 상온과 $150^{\circ}C$ 영역에서는 유의차가 없었으며, DC pulsed magnetron sputtering의 경우 $50^{\circ}C$ 영역에서 변곡점이 형성됨을 알수 있었다.

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MPP (Modulated Pulsed Power)와 Magnetron Sputtering을 이용한 박막의 특성 평가

  • Min, Gwan-Sik;Yun, Ju-Yeong;Sin, Yong-Hyeon;Cha, Deok-Jun;Yeo, Chang-Eop;Park, Hwan-Yeol;Heo, Yun-Seong;Tae, Gi-Gwan;Kim, Jin-Tae
    • Proceedings of the Korean Vacuum Society Conference
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    • 2013.02a
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    • pp.256-256
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    • 2013
  • 기존에 사용되어 오던 DCMS (DC magnetron sputtering)과 HPPMS (high-power pulsed magnetron sputtering)에 비해 MPP를 이용한 magnetron sputtering은 높은 증착률을 가지고 있으며, 증착된 박막의 특성도 우수하다고 알려져 있다. 본 연구에서는 최대 출력 700 V, 12.5 A, 100 kHz)의 사양을 가지는 DC, pulse DC, modulated pulsed DC의 세 종류로 변환이 가능한 Power supply를 제작하여 Cr 박막을 증착하였다. 증착시 혼합기체 Ar/$N_2$를 사용하였으며, 박막의 특성을 sputtering power 종류별로 비교 평가하였다. 실험 결과얻어진 박막을 SEM과 XRD를 이용하여 분석하였다.

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The Properties of Multi-Layered Optical Thin Films Fabricated by Pulsed DC Magnetron Sputtering (Pulsed DC 마그네트론 스퍼터링으로 제조된 다층 광학박막의 특성)

  • Kim, Dong-Won
    • Journal of the Korean institute of surface engineering
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    • v.52 no.4
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    • pp.211-226
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    • 2019
  • Optical thin films were deposited by using a reactive pulsed DC magnetron sputtering method with a high density plasma(HDP). In this study, the effect of sputtering process conditions on the microstructure and optical properties of $SiO_2$, $TiO_2$, $Nb_2O_5$ thin films was clarified. These thin films had flat and dense microstructure, stable stoichiometric composition at the optimal conditions of low working pressure, high pulsed DC power and RF power(HDP). Also, the refractive index of the $SiO_2$ thin films was almost constant, but the refractive indices of $TiO_2$ and $Nb_2O_5$ thin films were changed depending on the microstructure of these films. Antireflection films of $Air/SiO_2/Nb_2O_5/SiO_2/Nb_2O_5/SiO_2/Nb_2O_5/Glass$ structure designed by Macleod program were manufactured by our developed sputtering system. Transmittance and reflectance of the manufactured multilayer films showed outstanding value with the level of 95% and 0.3%, respectively, and also had excellent durability.

A Comparative Study of TiAlN Coatings Deposited by DC and Pulsed DC Asymmetric Bipolar Magnetron Sputtering (DC 스퍼터법과 비대칭 바이폴라 펄스 DC 스퍼터법으로 증착된 TiAlN 코팅막의 물성 비교연구)

  • Chun, Sung-Yong;Lee, Tae Yang
    • Journal of the Korean institute of surface engineering
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    • v.47 no.4
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    • pp.168-173
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    • 2014
  • The paper presents the comparative results of TiAlN coatings deposited by DC and pulsed DC asymmetric bipolar magnetron sputtering systems. The results show that, with the decreasing duty cycle and increasing pulse frequency, the coating morphology changes from a columnar to a dense structure, with finer grains. Pulsed sputtered TiAlN coatings showed higher hardness, higher residual stress, and smaller grain sizes than dc prepared TiAlN coatings. Moreover residual stress of pulsed sputtered TiAlN coatings increased on increasing pulse frequency. Meanwhile, the surface roughness decreased continuously with increasing pulsed DC frequency up to 50 kHz.

A Comparative Study of NbN Coatings Deposited by DC and Pulsed DC Asymmetric Bipolar Magnetron Sputtering (DC 스퍼터법과 비대칭 바이폴라 펄스 DC 스퍼터법으로 증착된 NbN 코팅막의 물성 비교연구)

  • Chun, Sung-Yong;Oh, Bok-Hyun
    • Journal of the Korean institute of surface engineering
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    • v.48 no.4
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    • pp.136-141
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    • 2015
  • The paper presents the comparative results of NbN coatings deposited by DC and pulsed DC asymmetric bipolar magnetron sputtering systems. The results show that, with the decreasing duty cycle and increasing pulse frequency, the coating morphology changes from a columnar to a dense structure, with finer grains. The Pulsed sputtered NbN coatings showed higher hardness, higher residual stress, and smaller grain sizes than those of DC prepared NbN coatings. Moreover residual stress of pulsed sputtered NbN coatings increased on increasing pulse frequency. Meanwhile, the surface roughness decreased continuously with increasing pulsed DC frequency up to 50 kHz.

Pulsed Magnetron Sputtering Deposit ion of DLC Films Part I : Low-Voltage Bias-Assisted Deposition

  • Oskomov, Konstantin V.;Chun, Hui-Gon;You, Yong-Zoo;Lee, Jing-Hyuk;Kim, Kwang-Bok;Cho, Tong-Yul;Sochogov, Nikolay S.;Zakharov, Alexender N.
    • Journal of the Korean institute of surface engineering
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    • v.36 no.1
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    • pp.27-33
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    • 2003
  • Pulsed magnetron sputtering of graphite target was employed for deposition of diamond-like carbon (DLC) films. Time-resolved probe measurements of magnetron discharge plasma have been performed. It was shown that the pulsed magnetron discharge plasma density ($∼10^{17}$ $m^{-3}$ ) is close to that of vacuum arc cathode sputtering of graphite. Raman spectroscopy was sed to examine DLC films produced at low ( $U_{sub}$ / < 1 kV) pulsed bias voltages applied to the substrate. It has been shown that maximum content of diamond-like carbon in the coating (50-60%) is achieved at energy per deposited carbon atom of $E_{c}$ =100 eV. In spite of rather high percentage of $sp^3$-bonded carbon atoms and good scratch-resistance, the films showed poor adhesion because of absence of ion mixing between the film and the substrates. Electric breakdowns occurring during the deposition of the insulating DLC film also thought to decrease its adhesion.

A Comparative Study of HfN Coatings Deposited by DC and Pulsed DC Asymmetric Bipolar Magnetron Sputtering (DC 스퍼터법과 비대칭 바이폴라 펄스 DC 스퍼터법으로 증착된 HfN 코팅막의 물성 비교연구)

  • Jeon, Seong-Yong;Jeong, Pyeong-Geun
    • Proceedings of the Korean Institute of Surface Engineering Conference
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    • 2017.05a
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    • pp.103.2-103.2
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    • 2017
  • Nanocrystalline HfN coatings were prepared by reactively sputtering Hf metal target with N2 gas using a magnetron sputtering system operated in DC and ABPP (asymmetric bipolar pulsed plasma) condition with various duties and frequencies. The effects of duty and frequency, ranging from 75 to 100 % and 5 to 50 kHz, on the coating microstructure, crystallographic and mechanical properties were systematically investigated with FE-SEM, AFM, XRD and nanoindentation. The results show that pulsed plasma has a significant influence on coating microstructure and mechanical properties of HfN coatings. Coating microstructure evolves from the columnar structure to a highly dense one as duty decreases. Average grain size and nano hardness of HfN coatings were also investigated with various pulsed conditions.

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Growing Behavior of Nanocrystalline TiN Films by Asymmetric Pulsed DC Reactive Magnetron Sputtering (비대칭 펄스 DC 반응성 마그네트론 스퍼터링으로 증착된 나노결정질 TiN 박막의 성장거동)

  • Han, Man-Geun;Chun, Sung-Yong
    • Journal of the Korean Ceramic Society
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    • v.48 no.5
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    • pp.342-347
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    • 2011
  • Nanocrystalline TiN films were deposited on Si(100) substrate using asymmetric pulsed DC reactive magnetron sputtering. We investigated the growing behavior and the structural properties of TiN films with change of duty cycle and pulsed frequency. Grain size of TiN films were decreased from 87.2 nm to 9.8 nm with decrease of duty cycle. The $2{\theta}$ values for (111) and (200) crystallographic planes of the TiN films were also decreased with decrease of duty cycle. This shift in $2{\theta}$ could be attributed to compressive stress in the TiN coatings. Thus, the change of plasma parameter has a strong influence not only on the microstructure but also on the residual stresses of TiN films.

A Study on Asymmetric Pulsed DC Plasma Power Supply with Energy Recovery Circuit (에너지 반환회로를 갖는 비대칭 펄스형 DC 플라즈마 전원장치에 관한 연구)

  • Choo, Dae-Hyeok;Yoo, Sung-Hwan;Kim, Joohn-Sheok;Han, Ki-Joon
    • The Transactions of the Korean Institute of Power Electronics
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    • v.18 no.6
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    • pp.593-600
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    • 2013
  • The asymmetric pulsed DC reactive magnetron sputtering system is widely used for the high quality plasma sputtering process such as a thin film deposition. In asymmetric pulsed DC power supply a reverse voltage is applied to the target periodically to minimize arc discharging effect. When sputtering in the mid-frequency range (20-350 kHz), the periodic target voltage reversals suppress arc formation at the target and provide long-term process stability. Thus, high quality, defect-free coatings of these materials can now be deposited at competitive rates. In this paper, a new style asymmetric pulsed DC power supply including mid-transformer is presented. In the proposed, an energy recovery circuit is adopted to reduce the mutual inductance of the transformer. As a result, the system dynamics of the voltage control loop is increased highly and the non-linear voltage boosting effect of the conventional system is removed. This work was proved through simulation and laboratory based experimental study.

Diamond-Like Carbon Films Deposited by Pulsed Magnetron Sputtering System with Rotating Cathode

  • Chun, Hui-Gon;You, Yong-Zoo;Nikolay S. Sochugov;Sergey V. Rabotkin
    • Journal of the Korean institute of surface engineering
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    • v.36 no.4
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    • pp.296-300
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    • 2003
  • Extended cylindrical magnetron sputtering system with rotating 600-mm long and 90-mm diameter graphite cathode and pulsed power supply voltage generator were developed and fabricated. Time-dependent Langmuir probe characteristics as well as carbon films thickness were measured. It was shown that ratio of ions flux to carbon atoms flux for pulsed magnetron discharge mode was equal to $\Phi_{i}$ $\Phi$sub C/ = 0.2. It did not depend on the discharge current in the range of $I_{d}$ / = 10∼60 A since both the plasma density and the film deposition rate were found approximately proportional to the discharge current. In spite of this fact carbon film structure was found to be strongly dependent on the discharge current. Grain size increased from 100 nm at $I_{d}$ = 10∼20 A to 500 nm at $I_{d}$ = 40∼60 A. To deposit fine-grained hard nanocrystalline or amorphous carbon coating current regime with $I_{d}$ = 20 A was chosen. Pulsed negative bias voltage ($\tau$= 40 ${\mu}\textrm{s}$, $U_{b}$ = 0∼10 ㎸) synchronized with magnetron discharge pulses was applied to a substrate and voltage of $U_{b}$ = 3.4 ㎸ was shown to be optimum for a hard carbon film deposition. Lower voltages were not sufficient for amorphization of a growing graphite film, while higher voltages led to excessive ion bombardment and effects of recrystalization and graphitization.