저가형 유기 SOP 적용을 위한 저온 공정의 $BaTiO_3$ 임베디드 커페시터 설계 및 제작

Design and Fabrication of Low Temperature Processed $BaTiO_3$ Embedded Capacitor for Low Cost Organic System-on-Package (SOP) Applications

  • 이승재 (마이크로/나노 소자 및 패키징 연구실, 전자공학과, 광운대학교) ;
  • 박재영 (마이크로/나노 소자 및 패키징 연구실, 전자공학과, 광운대학교) ;
  • 고영주 (대덕전자)
  • Lee, Seung-J. (Micro/Nano Devices & Packaging Lab. Department of Electronic Engineering, Kwangwoon University) ;
  • Park, Jae-Y. (Micro/Nano Devices & Packaging Lab. Department of Electronic Engineering, Kwangwoon University) ;
  • Ko, Yeong-J. (Daeduck Electronics, Ansan-City)
  • 발행 : 2006.07.12

초록

Tn this paper, PCB (Printed Circuit Board) embedded $BaTiO_3$ MIM capacitors were designed, fabricated, and characterized for low cost organic SOP applications by using 3-D EM simulator and low temperature processes. Size of electrodes and thickness of high dielectric films are optimized for improving the performance characteristics of the proposed embedded MIM capacitors at high frequency regime. The selected thicknesses of the $BaTiO_3$ film are $12{\mu}m$, $16{\mu}m$, and $20{\mu}m$. The fabricated MIM capacitor with dielectric constant of 30 and thickness of $12{\mu}m$ has capacitance density of $21.5p\;F/mm^2$ at 100MHz, maximum quality factor of 37.4 at 300 MHz, a quality factor of 30.9 at 1GHz, self resonant frequency of 5.4 GHz, respectively. The measured capacitances and quality factors are well matched with 3-D EM simulated ones. These embedded capacitors are promising for SOP based advanced electronic systems with various functionality, low cost, small size and volume.

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