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

  • 이해곤 (JMI(주) 연구소) ;
  • 손성기 (JMI(주) 연구소) ;
  • 조기철 (강원대학교 기계.메카트로닉스공학부) ;
  • 신홍규 (강원대학교 기계.메카트로닉스공학부) ;
  • 김병희 (강원대학교 기계.메카트로닉스공학부)
  • Published : 2006.09.01

Abstract

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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