• Title/Summary/Keyword: 그린 테이프

Search Result 13, Processing Time 0.016 seconds

Study on Condition of Fabrication Processing for R. F. High-power Unit Capacitor and Electrical Characteristics According to Addition of ZrO2 (고주파용 대용량 단위 유전체 제조공정과 ZrO2 첨가에 따른 전기적 특성 연구)

  • Ahn, Young-Soo;Kim, Joon-Soo;Park, Joo-Seok;Kim, Hong-Soo;Han, Moon-Hee;No, Kwang-Soo
    • Journal of the Korean Ceramic Society
    • /
    • v.39 no.9
    • /
    • pp.822-828
    • /
    • 2002
  • Fabrication and electrical characterization of R. F. High-power unit capacitors were investigated to study on condition of fabrication processing for R. F. High-power unit capacitor and electrical characteristics according to addition of $ZrO_2$. The unit capacitors were fabricated using tape casting. The optimum mixture ratio of dielectrics and mixing binder for the slurry fabrication was 57.5∼60.0: 42.5∼40.0 wt%. The slurry viscosity was 4000∼5000 cps and casting state of green tape fabricated using these slurry was excellent. Optimum stacking was made by 200 kg/$cm^2$ pressure with 80$^{\circ}C$ heating. $ZrO_2$ was added to improve the electrical characteristics of unit capacitor, especially breakdown characteristics. The dielectric constant and loss factor of the unit condenser having different $ZrO_2$ amounts was not changed in the addition range of 1 to 5 wt%. Also, dielectric constant was not changed in the frequency range of 10 to 500 kHz. It was found that characteristics of resistance voltage was improved through the formation of $CaZrO_3$ and the reduction of particle size as about 3wt% $ZrO_2$ was added.

The Preparation of NiCuZn Ferrite Slurry Using the Water Mixed Binder System (수계 바인더를 이용한 NiCuZn Ferrite의 슬러리 제조)

  • 류병환;이정민;고재천
    • Resources Recycling
    • /
    • v.7 no.4
    • /
    • pp.35-42
    • /
    • 1998
  • Surface mount technology is the biggest theme in the area of deιIronic component. To miniatunze an electronic component, s such as ferrite chip inductor, the cer뼈lic wet process for green-sheet lamination and/or screen printing method through a s solvent medium system is widely used. The preparation and characterization of NiCuZn Ferrite (NCZF) shurry and the green s sheet using the water mixed binder system has been studied. The 21 vol% of NCZF slurry was prepared by a ball milling. The p polyacrylic vinyl copolymer (Mw; 60,000) was used as a binder. Th$\xi$ mixture of distilled water, isopropyl alcohol (IPA) and 2l butoxy ethanol was used as a dispersion medium. The water content of medium varied from about 40% to 80%. As the results. Thc disp$\xi$rston stability of the NCZF slurry was attributed to the free polymer rather than the electrostatic force of the particle. T The viscosity of the NCZF slurry was greatly depended on the ratio of water content in the medium.

  • PDF

UWB Bandpass Filter Using Capacitive Coupling with Cross Resonator ("+"자 공진기와 용량성 결합을 이용한 초광대역 대역 통과 여파기)

  • Dong, Thai Hoa;Lee, Jae-Young;Kim, Ihn-Seok
    • The Journal of Korean Institute of Electromagnetic Engineering and Science
    • /
    • v.21 no.5
    • /
    • pp.486-493
    • /
    • 2010
  • This article introduces a novel ultra wideband(UWB) bandpass filter(BPF) with sharp roll-off characteristics in stripline structure. The UWB characteristic is basically obtained from capacitive coupled cross resonator. The resonator has ${\lambda}/2$ length. And at the center of the resonator, two stubs are loaded, one is a ${\lambda}/8$ short-circuited stub and the other is a ${\lambda}/8$ open-circuited stub. The two stubs provide two attenuation poles at lower and upper cutoff frequencies. For input and output lines, two identical capacitively coupled lines have been installed to suppress the unwanted signals in the lower and upper stopbands. The filter has been designed for the U.S. UWB band(3.1~10.6 GHz) with two transmission zeros at 2.4 and 11.1 GHz. The filter has been realized with Low Temperature Core-fired Ceramic(LTCC) green tape which has the dielectric constant of 7.8. Measurement results agree well with HFSS simulation results. Insertion loss less than 0.7 dB and return loss better than 14 dB in the pass band have been measured. The group delay in the center frequency is 0.27 ns and the group delay variation within pass band is less than 0.5 ns. The size of the filter is $6{\times}18{\times}0.6\;mm^3$.