• 제목/요약/키워드: High dielectric composite

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반도체 봉지용 고충진 AIN/Epoxy 복합재료 (Highly filled AIN/epoxy composites for microelectronic encapsulation)

  • 배종우;김원호;황영훈
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2000년도 춘계학술발표대회 논문집
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    • pp.131-134
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    • 2000
  • Increased temperature adversely affects the reliability of a device. So, package material should have high thermal diffusion, i.e., high thermal conductivity. And, there are several other physical properties of polymeric materials that are important to microelectronics packaging, some of which are a low dielectric constant, a low coefficient of thermal expansion (CTE), and a high flexural strength. In this study, to get practical maximum packing fraction of AIN (granular type) filled EMC, the properties such as the spiral flow, thermal conductivity, CTE, and water resistance of AIN-filled EMC (65-vol%) were evaluated according to the size of AIN and the filler-size distribution. Also, physical properties of AIN filled EMC above 65-vol% were evaluated according to increasing AIN content at the point of maximum packing fraction (highly loading condition). The high loading conditions of EMC were set $D_L/D_S$=12 and $X_S$=0.25 like as filler of sphere shape and the AIN filled EMC in this conditions can be obtained satisfactory fluidity up to 70-vol%. As a result, the AIN filled EMC (70-vol%) at high loading condition showed improved thermal conductivity (about 6 W/m-K), dielectric constant (2.0~3.0), CTE(less than 14 ppm/$^{\circ}C$) and water resistance. So, the AIN filled EMC (70-vol%) at high loading condition meets the requirement fur advanced microelectronic packaging materials.

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저 유전성 Mullite/Glass 복합체에 관한 연구 (Low dielectric mullite/glass composite)

  • 백용혁;김주영;강선명
    • 한국결정성장학회지
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    • 제9권6호
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    • pp.606-611
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    • 1999
  • Kaolin으로부터 합성한 mullite에 brosilicate계 유리를 혼합하여 기판재료로 적합한 저유전성 Mullite/Glass 복합체를 제조하였다. 유리를 첨가함으로써 액상소결에 의한 Cu, Au, Ag-Pd 등의 배선 사용이 가능한 저온에서 치밀한 소결체를 얻을수 있었다. 기판의 물성저하의 원이 되는 유리의 결정화는 나타나지 않았다. 소결온도 950~$1100^{\circ}C$의 범위에서 유리 50 wt%의 조성의 복합체에서 유전상수 약 5.2~5.4 (at 1 MHz), 열팽창을 5.3~$5.7{\times}10^{-6}{\cdot}^0C^{-1}$, , 꺾임강도 130 MPa로 high-performed substrate로서 적합한 특성을 나타내었다.

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Electrical and Chemical Properties of ultra thin RT-MOCVD Deposited Ti-doped $Ta_2O_5$

  • Lee, S. J.;H. F. Luan;A. Mao;T. S. Jeon;Lee, C. h.;Y. Senzaki;D. Roberts;D. L. Kwong
    • JSTS:Journal of Semiconductor Technology and Science
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    • 제1권4호
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    • pp.202-208
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    • 2001
  • In Recent results suggested that doping $Ta_2O_5$ with a small amount of $TiO_2$ using standard ceramic processing techniques can increase the dielectric constant of $Ta_2O_5$ significantly. In this paper, this concept is studied using RTCVD (Rapid Thermal Chemical Vapor Deposition). Ti-doped $Ta_2O_5$ films are deposited using $TaC_{12}H_{30}O_5N$, $C_8H_{24}N_4Ti$, and $O_2$ on both Si and $NH_3$-nitrided Si substrates. An $NH_3$-based interface layer at the Si surface is used to prevent interfacial oxidation during the CVD process and post deposition annealing is performed in $H_2/O_2$ ambient to improve film quality and reduce leakage current. A sputtered TiN layer is used as a diffusion barrier between the Al gate electrode and the $TaTi_xO_y$ dielectric. XPS analyses confirm the formation of a ($Ta_2O_5)_{1-x}(TiO_2)_x$ composite oxide. A high quality $TaTi_xO_y$ gate stack with EOT (Equivalent Oxide Thickness) of $7{\AA}$ and leakage current $Jg=O.5A/textrm{cm}^2$ @ Vg=-1.0V has been achieved. We have also succeeded in forming a $TaTi_x/O_y$ composite oxide by rapid thermal oxidation of the as-deposited CVD TaTi films. The electrical properties and Jg-EOT characteristics of these composite oxides are remarkably similar to that of RTCVD $Ta_2O_5, suggesting that the dielectric constant of $Ta_2O_5$ is not affected by the addition of $TiO_2$.

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The Effect of Butt Gap in Insulation Properties for a HTS Cable

  • D.S.Kwag;Kim, Y.S.;Kim, H.J.;Kim, S.H.
    • 한국초전도ㆍ저온공학회논문지
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    • 제5권3호
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    • pp.43-47
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    • 2003
  • For an electrical insulation design of HTS cable, it is important to understand the dielectric characteristics of insulation materials in $LN_2$ and the insulation type. Generally, the electrical insulation of HTS Cable is classified into two types of the composite insulation and solid insulation type. In this research, we selected the insulation paper/$LN_2$ composite insulation type for the electric insulation of a HTS cable, and studied electric insulation characteristics of synthetic Laminated Polypropylene Paper (LPP) in liquid nitrogen ($LN_2$) for the application to high temperature superconducting (HTS) cable. Furthermore, we compared the breakdown characteristics of the butt gap and bended mini-model cable. It is necessary to understand the winding parameter of insulation paper/$LN_2$ composite insulation.

3-3 결합으로 이루어진 PZT/고분자 압전복합체 (Piezoelectric PZT/Polymer Composite with 3-3 Connectivity)

  • 윤기현;염상덕
    • 한국세라믹학회지
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    • 제25권2호
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    • pp.125-130
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    • 1988
  • The characteristics of the PZT/PMM and PZT/Butadiene composites with 3 dimensional network structure have been investigated as a function of the PZT volume fraction. The dielectric constants of the PZT composites increased linearly as the PZT volume fraction increased. However, they are not significantly affected by the polymer compliance. The piezoelectric d33 coefficients of the PZT/Butadiene are largest than the PZT/PMM because of the high elastic compliance which promotes stress transfer. The values of the mechanical quality factor adn frequency factor of the PZT/PMM composite are slightly larger, while the planar coupling factor is smaller, than the PZT/Butadiene composite. These results are due to strong interaction and mechanical coupling between PZT and PMM.

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Gold functionalized-graphene oxide-reinforced acrylonitrile butadiene rubber nanocomposites for piezoresistive and piezoelectric applications

  • Mensah, Bismark;Kumar, Dinesh;Lee, Gi-Bbeum;Won, Joohye;Gupta, Kailash Chandra;Nah, Changwoon
    • Carbon letters
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    • 제25권
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    • pp.1-13
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    • 2018
  • Gold functionalized graphene oxide (GOAu) nanoparticles were reinforced in acrylonitrile-butadiene rubbers (NBR) via solution and melt mixing methods. The synthesized NBR-GOAu nanocomposites have shown significant improvements in their rate of curing, mechanical strength, thermal stability and electrical properties. The homogeneous dispersion of GOAu nanoparticles in NBR has been considered responsible for the enhanced thermal conductivity, thermal stability, and mechanical properties of NBR nanocomposites. In addition, the NBR-GOAu nanocomposites were able to show a decreasing trend in their dielectric constant (${\varepsilon}^{\prime}$) and electrical resistance on straining within a range of 10-70%. The decreasing trend in ${\varepsilon}^{\prime}$ is attributed to the decrease in electrode and interfacial polarization on straining the nanocomposites. The decreasing trend in electrical resistance in the nanocomposites is likely due to the attachment of Au nanoparticles to the surface of GO sheets which act as electrical interconnects. The Au nanoparticles have been proposed to function as ball rollers in-between GO nanosheets to improve their sliding on each other and to improve contacts with neighboring GO nanosheets, especially on straining the nanocomposites. The NBR-GOAu nanocomposites have exhibited piezoelectric gauge factor (${GF_{\varepsilon}}^{\prime}$) of ~0.5, and piezo-resistive gauge factor ($GF_R$) of ~0.9 which clearly indicated that GOAu reinforced NBR nanocomposites are potentially useful in fabrication of structural, high temperature responsive, and stretchable strain-sensitive sensors.

탄성체의 두께, 종류 및 희석제 함유량이 전기활성 유전탄성체의 구동 성능에 미치는 영향 (Effects of Thickness, Elastomer Types and Thinner Content on Actuation Performance of Electro Active Dielectric Elastomers)

  • 이빈;임정걸;류상렬;이동주
    • Composites Research
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    • 제27권1호
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    • pp.25-30
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    • 2014
  • 실리콘 KE-12, NBR 그리고 NR 등의 유전 탄성체 종류, 두께 및 희석제 함유량을 함수로 한 전기활성 유전탄성체(EADE) 구동 성능에 대해 연구하였다. 탄성체의 두께($1{\rightarrow}0.5{\rightarrow}0.25{\rightarrow}0.1{\rightarrow}0.05$ mm)의 감소에 따라 그리고 희석제의 함유량 증가에 따라 KE-12 탄성체의 작동변위는 증가하였지만, 유전파괴는 낮은 전압에서 발생되었다. 동일한 탄성체 두께(1 mm)에 대해서 KE-12의 변위(2.24 mm)는 동일한 전압(25 kV)에서 NBR 혹은 NR보다 더 높게 나타났다. 시험한 탄성체 종류 중 KE-12는 가장 낮은 탄성계수를 NBR은 가장 높은 탄성계수 나타냈다. 하지만, NBR 탄성체의 변위는 높은 유전상수 때문에 NR의 경우 보다 높았다. EADE 구동기의 중요한 요소는 탄성체의 두께, 탄성계수 및 유전상수임을 확인하였다.

기계적 특성이 우수한 원통형 복합재료 안테나의 설계 및 충격 실험 (Design and Impact Testing of Cylindrical Composite-Antenna-Structures having High Mechanical Performanc)

  • 김동섭;조상현;황운봉;이중희
    • 한국복합재료학회:학술대회논문집
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    • 한국복합재료학회 2005년도 추계학술발표대회 논문집
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    • pp.35-38
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    • 2005
  • The Objective of this work was to design Composite Antenna Structures (CAS) and investigate impact behavior of CAS which was various curvature. This term, CAS, indicates that structural surface becomes antenna. Constituent materials were selected considering electrical properties, dielectric constants and tangent loss as well as mechanical properties. For the antenna performance, microstrip antenna layers inserted into structural layers were designed for satellite communication at the resonant frequency of 12.5 GHz and final demonstration article was. After making five kinds of curved CAS, which radii of curvature are flat, 200, 150, 100, 50 mm. The antenna performance changed in accordance with variation of curvature. The Reflection coefficient was independent of curvature but the gain decreased with the radius of curvature. The impact test equipment was Dyna-8250 drop weight tester. The impact characteristic in accordance with curvature is maximum absorb energy is same each other. The impact energy was 8.5 J. For various Impact energy test, five energy levels 3 J, 5 J, 7 J, 10 J, 20 J were used. The performance of impact damaged antenna was estimated by measuring the return loss and the radiation pattern. It was revealed that the performance of antenna was not related to the impact damage. Because the impactor did not damage the patch directly. CAS have good impact stability for the antenna performance.

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Electrical and Thermal Characterization of Organic Varnish Filled with ZrO2 Nano Filler Used in Electrical Machines

  • Selvaraj, D. Edison;Vijayaraj, R.;Sugumaran, C. Pugazhendhi
    • Journal of Electrical Engineering and Technology
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    • 제10권4호
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    • pp.1700-1711
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    • 2015
  • In the last decade it has been witnessed significant developments in the area of nano particles and nano scale fillers on electrical, thermal, and mechanical properties of polymeric materials such as resins, varnishes, enamel and bakelites. The electric and thermal properties were more important in the electrical equipments for both steady state and transient state conditions. This paper deals with the characterization of the electric and thermal properties of the pure varnish and zirconia (ZrO2) filler mixed varnish. The electric properties such as dielectric loss (tan δ), dielectric constant (ε), dielectric strength and partial discharge voltage were analyzed and detailed for different samples. It was observed that zirconia nano filler mixed varnish has the superior dielectric and thermal properties when compared to those of standard varnish. It has shown that at power frequency the 1wt% nano composite sample has the higher permittivity value when compared to other samples. It has been examined that the 1wt% sample was having higher inception and extinction voltages when compared to other samples. It has been observed that 1wt% sample has higher dielectric strength when compared with other samples. There has been an improvement of thermal property by adding few weight percent of zirconia nano fillers. There was not much variation in glass transition among the nano mixed composites. The weight loss was improved at 1wt% of the zirconia nano fillers.

에폭시/몬모릴로나이트 나노복합재료의 유전특성 평가 (Evaluation on Dielectric Properties of Epoxy/Montmorillonite Nanocomposites)

  • 장용균;김우년;김준경;박민;윤호규
    • 폴리머
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    • 제30권6호
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    • pp.492-497
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    • 2006
  • 에폭시/몬모릴로나이트(MMT) master batch의 혼합온도를 달리하여 복합재료를 제조하였으며, MMT의 박리에 의한 복합재료의 유전특성을 비교하였다. MMT 함량이 낮은 복합재료에서 MMT의 박리가 지배적으로 발생하였으며, 고함량의 MMT 복합재료에서는 master batch 제조온도가 증가할수록 MMT의 층간거리가 증가하였다. 박리가 지배적인 저함량의 MMT 복합재료에서는 적절한 후경화 조건에 의해 유리전이온도가 증가되는 것을 알 수 있었다. MMT의 박리가 효과적으로 발생한 복합재료에서는 에폭시 분자구조의 배향분극이 억제됨으로써 유전율과 유전손실이 감소하였으며, 에폭시/MMT master batch의 혼합온도 및 시간, 그리고 복합재료의 후경화 조건에 따라서 복합재료의 유전특성을 향상시킬 수 있었다.