• Title/Summary/Keyword: Substrate angle

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The Fluxless Wetting Properties of TSM-coated Glass Substrate to the Pb-free Solders (TSM(Top Surface Metallurgy)이 증착된 유리기판의 Pb-free 솔더에 대한 무플럭스 젖음 특성)

  • 홍순민;박재용;박창배;정재필;강춘식
    • Journal of the Microelectronics and Packaging Society
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    • v.7 no.2
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    • pp.47-53
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    • 2000
  • The fluxless wetting properties of TSM-coated glass substrate were evaluated by the wetting balance method. We could estimate the wettability of the TSM with new parameters obtained from the wetting balance test for one side-coated specimen. It was more effective in wetting to use Cu as a wetting layer and Au as a protection layer than to use Au itself as a wetting layer. The SnSb solder showed better wettability than SnAg, SnBi, and SnIn solders. The contact angle of the one side-coated glass substrate to the Pb-free solders could be calculated from the farce balance equation by measuring the static force and the tilt angle.

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Angle-dependent modulation of the critical current of YBa$_2Cu_3O_7$ step-edge Josephson junctions on SrTiO$_3$ substrate (SrTio$_3$ 기판 위에 제작된 YBa$_2Cu_3O_7$ 계단형 모서리 조셉슨 접합의 각도에 따른 임계전류 특성)

  • Hwang, Yun-Seok;Moon, Sun-Kyung;Lee, Soon-Gul;Kim, Jin-Tae
    • 한국초전도학회:학술대회논문집
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    • v.9
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    • pp.83-86
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    • 1999
  • We have fabricated $_2Cu_3O_7$ step-edge junctions with different step orientations and studied their transition properties. Steps with different orientations were prepared on the substrate. Josephson junctions were made on a single substrate with step orientations ranging from 0$^{\circ}$ to 165$^{\circ}$ at 15$^{\circ}$ interval. We measured current-voltage characteristics, the critical current, and the superconducting transition temperature as a function of the angle. The critical current showed a modulation that has a maximum near 0$^{\circ}$ or 90$^{\circ}$ and a minimum near 45$^{\circ}$ and 135$^{\circ}$. We believe that the critical current modulation with the step orientation could be associated with the symmetry of high T$_c$ superconductor.

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Surface treatment of polyethylene terephthalate films by corona discharge (코로나방전에 의한 polyethylene terephthalate 필름의 표면처리)

  • 김명룡
    • Electrical & Electronic Materials
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    • v.8 no.3
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    • pp.316-323
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    • 1995
  • A vital step in magnetic tape manufacturing is the surface modification of polymer substrate prior to ink application. A critical element for good adhesion of magnetic ink on polymeric substrate is the ability to join ink in cost-effective manner. Corona discharging is one of the effective methods of modifying polymer surface to improve adhesion while maintaining the desirable properties of the film itself. Surface treatment by corona which is exposure of film surface to electron or ion bombardment, rather than mere exposure to active species, like atomic oxygen or ozone, can enhance adhesion by removing contaminant, electret, roughening surface, and/or introducing reactive chemical groups. Reactive neutrals, ions, electron and photons generated during the corona treatment interact simultaneously with polymers to alter surface chemical composition, wettability, and thus film adhesion. However, it is highly recommended that extensive chains scission be avoided because it can lead to side-effect by forming sticky matter, resulting in dropouts. This paper reviews principles of surface preparation of polymer substrate by corona discharging. In addition, the experimental section provides a description of parameter optimization on corona discharging treatment and its side-effect. Experimental results are discussed in terms of surface wetting as determined by contact angle measurements.

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Electrical property improvement of ZnO:Al transparent conducting oxide thin film as surface treatment of polymer substrate (폴리머 기판의 표면개질을 통한 ZnO:Al 투명전도막의 전기적 특성 개선)

  • Paeng, Sung-Hwan;Jung, Ki-Young;Park, Byung-Wook;Kwak, Dong-Joo
    • Proceedings of the KIEE Conference
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    • 2008.07a
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    • pp.1352-1353
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    • 2008
  • In this study, aluminium - doped zinc oxide (ZnO:Al) transparent conducting film was deposited on PET(polyethylen terephthalate) substrate by r.f. magnetron sputtering method. PET substrate was surface-treated in an atmospheric pressure DBD(dielectric barrier discharge) plasma to increase deposition rate and to improve electrical propesties. Morphological changes by DBD plasma were obsered using contact angle measurement. The contact angle of water on PET was reduced from 62$^{\circ}$ to 42$^{\circ}$ by DBD plasma surface treatment. The plasma treatment also increased deposition rate and electrical propesties. The electrical resistivity as low as $4.97{\times}10^{-3}[{\Omega}-cm]$ and the deposition rate of 234[${\AA}$-m/min] were obtained in ZnO:Al film with surface treatment time of 5min, and 20min., respectively.

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Study in Minimum of Edge Bump using the Chamfer Angle in Blu-ray Disc Cover layer Spin Coating Process (블루레이 디스크의 커버 레이어 스핀코팅 시 챔퍼각을 이용한 끝단 범프 최소화 연구)

  • Lee, H.G.;Son, S.K.;Cho, K.C.;Shin, H.G.;Kim, B.H.
    • Transactions of the Society of Information Storage Systems
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    • v.2 no.3
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    • pp.178-183
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    • 2006
  • A Blu-ray disc, which has a more than 25GB optical capacity, has been known as a promising next-generation optical disc format. It commonly has a 1.1 mm thick substrate and a 0.1 mm thick cover layer for beam transmitting and the protection of the reflecting surface. The cover layer is generally formed by the spin coating process. However, in conventional spin coating, small bumps are formed along the rim of the disc, which results in the fatal reading error. Numerical simulation of the thin film flow behaviors during spin coating with the commercial solver and optimal spinning conditions was obtained. Thickness distribution of the cover layer according to the variation of substrate's edge shape could be calculated as well. By modifying the shape of the substrate edge shape, the bumps along the disc rim could be minimized, and it was proved that the chamfered edge, around $5{\sim}10$ degree, is the simplest and most effective way to minimize the bumps.

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Magnetoresistance changes of sputtered NiFe thin films with deposition temperatures (NiFe 박막의 증착온도에 따른 MR 특성)

  • 이원재;백성관;민복기;송재성
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 2000.11a
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    • pp.355-358
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    • 2000
  • Magnetoresistance changes of NiFe thin films were investigated as a function of deposition temperature. DC magnetron sputtering was employed to fabricate Ta/NiFe(t)/Ta thin films on Si(001) substrates with in-situ field or with no-field. The thickness(t) of NiFe films was a range of 4 to 15nm. Substrate temperature was a range of 30 to 400$^{\circ}C$. MR measurement was carried out as a function of angle $\theta$, between external field and current direction. MR ratio increased with increasing substrate temperature, also, max. MR ratio was observed in samples deposited at 300$^{\circ}C$. With increasing upto 400$^{\circ}C$, MR ratio was rapidly decreased in the case of thinner NiFe films. In non-field deposited NiFe films, both angle $\theta$=0, 90。, there was no significant change in MR curves. However, MR curves of in-situ field deposited NiFe films were different in both angles $\theta$=0 and 90。

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Synthesis and Printability of Aqueous Ceramic Ink with Graft Polymer (Graft Polymer를 이용한 수계 세라믹 잉크의 합성 및 프린팅 특성평가)

  • Lee, Ji-Hyeon;Hwang, Hae-Jin;Kim, Jin-Ho;Hwang, Kwang-Taek;Han, Kyu-Sung
    • Korean Journal of Materials Research
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    • v.29 no.10
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    • pp.639-646
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    • 2019
  • Ink-jet printing is a manufacturing process technology that directly prints a digitalized design pattern onto a substrate using a fine ink jetting system. In this study, environmentally friendly yellow aqueous ceramic ink is synthesized by mixture of distilled water, yellow ceramic pigment and additives for ink-jet printing. The graft polymer, which combines electrostatic repulsion and steric hindrance mechanism, is used as a surfactant for dispersion stability of aqueous ceramic ink. Synthesized ceramic ink with graft polymer surfactant shows better dispersion stability than did ceramic ink with PAA surfactant; synthesized ink also shows desirable ink-jet printability with the formation of a single ink droplet during printability test. Finally, ceramic ink printed on glass substrate and ceramic ink with graft polymer surfactant shows a high contact angle without surface treatment on glass substrate. Consequently, it is confirmed that the ceramic ink with graft polymer surfactant can achieve high printing resolution without additional surface treatment process.

Uniformity of $YBa_2$$Cu_3$$O_7$ Step-edge Josephson Junctions (Y$Ba_2$$Cu_3$$O_7$ 모서리 죠셉슨 접합의 균일성)

  • Lee, S.G.;Hwang, Y.;Kim, J.T.
    • Progress in Superconductivity
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    • v.2 no.2
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    • pp.81-85
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    • 2001
  • Uniformity of critical currents of YBa$_2$Cu$_3$O$_{7}$ step-edge Josephson junctions on SrTiO$_3$(100) substrates have been studied at various step-line angles. 15 identical junctions were made in series on each substrate that has a long straight step-edge line. Step-line angles studied were 0$^{\circ}$, 15$^{\circ}$, 30$^{\circ}$, and 45$^{\circ}$with respect to the crystal major axes of the substrate. Scattering of junction critical currents among the junctions on the same substrate increased with the step-line angle. Current-voltage curves showed standard resistively-shunted-junction (RSJ) characteristics in most of the 0$^{\circ}$junctions. However, the number of junctions showing RSJ behavior decreased with increasing step-line angle. Variations of detailed microstructure of the step-edge among junctions, which are coupled with the d-wave symmetry of YBa$_2$Cu$_3$O$_{7}$, are believed to be the main cause for the nonuniformity in the critical current.ent.

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Optimization of polymer substrate's surface treatment for improvement of transparent conducting oxide thin film (투명전도막의 특성향상을 위한 기판 표면처리법의 최적화)

  • Choi, Woo-Jin;Kim, Ji-Hoon;Jung, Ki-Young;Darma, Jessie;Choo, Young-Bae;Sung, Youl-Moon;Kwak, Dong-Joo
    • Proceedings of the KIEE Conference
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    • 2009.07a
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    • pp.1425_1426
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    • 2009
  • In this study, commercially available polyethylene terephthalate(PET), which is widely used as a substrate of flexible electronic devices, was modified by dielectric barrier discharge(DBD) method in an air condition at atmospheric pressure, and aluminium - doped zinc oxide (ZnO:Al) transparent conducting film was deposited on PET substrate by r. f. magnetron sputtering method. Surface analysis and characterization of the plasma-treated PET substrate was carried out using contact angle measurements, X-ray Photoelectron Spectroscopy(XPS) and Atomic Force Microscopy (AFM). Especially the effect of surface state of PET substrate on some important properties of ZnO:Al transparent conducting film such as electrical and morphological properties and deposition rate of the film, was studied experimentally. The results showed that the contact angle of water on PET film was reduced significantly from $62^{\circ}$ to $43^{\circ}$ by DBD surface treatment at 20 min. of treatment time. The plasma treatment also improved the deposition rate and electrical properties. The deposition rate was increased almost linearly with surface treatment time. The lowest electrical resistivity as low as $4.97{\times}10^{-3}[\Omega-cm]$ and the highest deposition rate of 234[${\AA}m$/min] were obtained in ZnO:Al film with surface treatment time of 5min. and 20min., respectively.

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A study on Design for Phase Shifter for Microwave Circuits (마이크로파 회로용 Phase Shifter의 설계에 관한 연구)

  • ;;;;;Hiroyuki Arai
    • Proceedings of the Korean Institute of Information and Commucation Sciences Conference
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    • 2000.05a
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    • pp.152-155
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    • 2000
  • This paper presents the characteristics of phase shifter which is operating at 2 GHz band and 12 GHz band. Two types of substrate stick with different dielectric constants are considered in these bands. Dielectric constants of microstrip feed crank line is 2.6. In the case of a small substrate stick with dielectric constant of 9 in the calculation, S21 phase is linearly varied at 1.98 GHz and 2.45 GHz, and variation of the shifting angle is about 20。. The angle of S21 phase shifting at 12 GHz band if calculated about 30。

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