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    • 4. 发明公开
    • 무소결 페라이트 세라믹 후막을 이용한 전자파 차폐시트
    • 使用非烧结铁氧体厚膜的电磁屏蔽片
    • KR1020130127103A
    • 2013-11-22
    • KR1020120050760
    • 2012-05-14
    • 한국세라믹기술원
    • 윤영준김효태남중희김종희
    • H05K9/00B32B15/01
    • B32B9/005B32B7/12B32B9/045B32B2307/212H05K9/0081
    • An electromagnetic shielding sheet using a non-sintered ferrite ceramic thick film and a manufacturing method thereof, which solve communication malfunction by an eddy current by shielding an electromagnetic wave so that electromagnetic coupling between a reader and a transponder by placing the electromagnetic shielding sheet between a metal plate and a coil antenna of the transponder, are disclosed. The electromagnetic shielding sheet using the non-sintered ferrite ceramic thick film includes ferrite magnetic powder printed from ferrite ink, a ceramic thick film formed of polymer resin immersed in space of the ferrite magnetic powder, an adhesive film attached to the ceramic thick film, and a protective film attached to the adhesive film.
    • 一种使用非烧结铁氧体陶瓷厚膜的电磁屏蔽片及其制造方法,其通过屏蔽电磁波来解决通过涡电流的通信故障,从而通过将电磁屏蔽片放置在电磁屏蔽片之间来实现读取器和应答器之间的电磁耦合 公开了应答器的金属板和线圈天线。 使用非烧结铁氧体陶瓷厚膜的电磁屏蔽片包括从铁氧体油墨印刷的铁氧体磁性粉末,浸渍在铁氧体磁性粉末的空间中的聚合物树脂形成的陶瓷厚膜,附着在陶瓷厚膜上的粘合膜,以及 附着在粘合膜上的保护膜。
    • 7. 发明公开
    • 방열패키지 일체형 태양전지모듈
    • 集成了散热片的太阳能电池模块
    • KR1020120111585A
    • 2012-10-10
    • KR1020110030150
    • 2011-04-01
    • 한국세라믹기술원주식회사 신우테크문병용
    • 김효태김종희김창열김흥순문병용
    • H01L31/052
    • Y02E10/50H01L31/052
    • PURPOSE: A heat dissipation package integrated solar cell module is provided to alleviate a difference between the heat expansion rates of a solar cell and a heat dissipation frame by omitting lamination and heat treatment processes of a bottom electrode. CONSTITUTION: Solar cells(11-14) are separately arranged on the bottom of a panel(20). A heat dissipation frame(61) is arranged on the side of the panel and on the bottom of the solar cells. The heat dissipation frame supports the panel and the solar cells. The heat dissipation frame receives heat from the solar cells and discharges the heat outside. A buffer layer is formed in order to alleviate a difference between the heat expansion rates of the solar cell and the heat dissipation frame. A metal electrode layer is formed between the buffer layer and the solar cells.
    • 目的:提供散热封装集成太阳能电池模块,通过省略底电极的层压和热处理工艺,减轻太阳能电池和散热框架的热膨胀率之间的差异。 构成:太阳能电池(11-14)分别布置在面板(20)的底部。 散热框架(61)布置在面板的侧面和太阳能电池的底部。 散热框架支撑面板和太阳能电池。 散热框架从太阳能电池接收热量并将热量排出外部。 形成缓冲层以减轻太阳能电池的热膨胀率和散热框架之间的差异。 在缓冲层和太阳能电池之间形成金属电极层。