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    • 2. 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。
    • 8. 发明授权
    • 전기수력학 제트 프린팅 장치를 이용한 3차원 구조물의 제조방법
    • 3使用电动动力喷墨印刷装置的三维结构的制造方法
    • KR101692237B1
    • 2017-01-04
    • KR1020150034250
    • 2015-03-12
    • 한국세라믹기술원
    • 정현성김효태김창열고은별
    • B22F3/105B41J2/06B33Y50/02B33Y70/00
    • 본발명은, 전기전도성의필러와고분자계바인더를포함하는전도성잉크를형성하는단계와, 상기전도성잉크를전기수력학적제트프린팅장치의원료공급부에투입하는단계와, 상기전기수력학적제트프린팅장치의노즐과기판이놓인접지전극사이에전압을인가하는단계와, 상기원료공급부에서상기노즐로상기전도성잉크를공급하는단계와, X축및 Y축을따라이동이가능하게구비된기판을기준으로 Z축을따라상기노즐이상하로움직이게하고상기전기수력학적제트프린팅장치의노즐에서상기전도성잉크를디자인된패턴으로상기기판위에분사하는단계및 상기기판에분사된 3차원구조의결과물을열처리하는단계를포함하는것을특징으로하는전기수력학적제트프린팅장치를이용한 3차원구조물의제조방법에관한것이다. 본발명에의하면, 전기수력학적제트프린팅장치를이용하여형태와패턴이제어된 3차원구조물을제조할수 있다.
    • 本发明涉及一种使用电动动力喷墨打印装置的三维结构制造方法,包括:制备含有导电填料和基于聚合物的粘合剂的导电油墨的步骤; 将导电油墨输入到电动喷射印刷装置的原料供给单元中的步骤; 在电动水射流印刷装置的喷嘴和放置基板的接地电极之间施加电压的步骤; 从原料供给单元向喷嘴供给导电性油墨的工序; 相对于基板移动的X轴和Y轴沿着Z轴垂直移动喷嘴的步骤,并且通过电动喷射印刷装置的喷嘴以设计的图案将导电油墨喷射到基板上; 以及对通过在基板上喷射导电油墨而获得的三维产品进行热处理的步骤。 根据本发明,可以制造通过使用电动水射流印刷装置来控制形状和图案的三维结构。
    • 9. 发明公开
    • 근접장 통신용 자성체 시트의 제조 방법
    • 用于近场通信的石英板的制造方法
    • KR1020140033611A
    • 2014-03-19
    • KR1020120099500
    • 2012-09-07
    • 한국세라믹기술원
    • 김효태윤영준김종희
    • H01F1/16H01F41/00H05K9/00
    • Disclosed is a method for manufacturing a magnetic sheet for near-field communication which is capable of reducing manufacturing costs by minimizing loss of raw materials, easily performing a cutting process, and reducing an amount of scrapped materials. According to an embodiment of the present invention, a method for manufacturing a magnetic sheet comprises: a step (a) for dividing a magnetic film into multiple green sheet blocks by primarily cutting the magnetic film; a step (b) for dividing the divided green sheet blocks into multiple unit chips by secondarily and completely cutting the divided green sheet blocks; a step (c) for plasticizing the divided unit chips; a step (d) for loading the plasticized unit chips on a load jig; a step (e) for attaching a base film on the plasticized unit chips; a step (f) for removing the load jig from the unit chips which are attached to the base film; and a step (g) for bonding the exposed unit chips by removing the load jig, and for attaching a protective film.
    • 公开了一种用于近场通信的磁片的制造方法,其能够通过使原材料的损耗最小化,容易进行切削加工,减少报废材料的量来降低制造成本。 根据本发明的实施例,一种制造磁性片的方法包括:通过主要切割磁性膜将磁性膜分割成多个生坯片块的步骤(a); 步骤(b),用于通过二次并完全切割分割的生片块将分割的生片块划分成多个单位碎片; 用于使分割的单元芯片塑化的步骤(c); 步骤(d),用于将塑化单元芯片装载在装载夹具上; 步骤(e),用于将基膜附着在塑化单元芯片上; 步骤(f),用于从连接到基膜的单元芯片上移除负载夹具; 以及步骤(g),用于通过去除负载夹具来接合暴露的单元芯片,以及用于附接保护膜。