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    • 32. 发明公开
    • 가역 전기화학 거울
    • 可逆电化学镜
    • KR1020160064338A
    • 2016-06-08
    • KR1020140167573
    • 2014-11-27
    • 한국전자통신연구원
    • 김태엽아칠성조성목류호준
    • G02F1/153
    • G02F1/1533G02F1/1506G02F1/153G02F2001/1536
    • 본발명의가역전기화학거울은제 1 기판이제공되고, 제 2 기판이제공되고, 상기제 1 기판상에제 1 투명전극이제공되고, 상기제 2 기판하에제 2 투명전극이제공되고, 상기제 2 기판과상기제 2 투명전극사이에반투과막이제공되고, 상기제 1 투명전극과상기제 2 투명전극사이에챔버를제공하는격벽이제공되고, 상기챔버내에는전해액이채워진다. 상기제 2 투명전극은 100 내지 500nm의두께를갖는다. 제 2 투명전극의두께를변화시킴으로써 on 상태에서특정가시광영역의빛을반사시킬수 있다. 반투과막이제공됨으로써 off 상태에서적외선영역의반사율을향상시킬수 있다. 전해액으로 Ag-Cu based solution을사용함으로써 off 상태에서의투과율과 on 상태에서의거울특성을향상시킬수 있다.
    • 本发明的可逆电化学反射镜包括第一基板,第二基板,设置在第一基板上的第一透明电极,设置在第二基板上的第二透明电极,设置在第二基板和第二透明电极之间的透反射层 以及设置在所述第一透明电极和所述第二透明电极之间的隔板,作为室,其中所述室被电解液填充。 第二透明电极的厚度为100〜500nm。 改变第二透明电极的厚度,以在可反射的电化学反射镜的导通状态下反射某一可视区域中的光。 提供透反射层以改善可逆电化学镜的断开状态下的红外区的反射率。 使用基于Ag-Cu的溶液作为电解质,以改善断开状态下的透射率和导通状态下的反射镜特性。
    • 35. 发明公开
    • 디스플레이 장치의 제조 방법
    • 制作显示装置的方法
    • KR1020140047503A
    • 2014-04-22
    • KR1020130036894
    • 2013-04-04
    • 한국전자통신연구원
    • 서경수강승열김주연안성덕류호준
    • G02F1/167
    • G02F1/167G02F2001/1678
    • A method for manufacturing a display device according to one embodiment of the present invention includes the steps of forming a bottom electrode on a bottom substrate; simultaneously forming a partition structure which includes a first partition of a first direction including an opening on the bottom electrode, a second partition which crosses the first partition on both sides of the adjacent opening and cell regions which are defined by the first and second partitions, and an ink injection tube which is extended from the first partition on one end of the partition structure; covering the partition structure with a top electrode; and filling the partition structure with electronic ink by injecting the electronic ink to the ink injection tube. [Reference numerals] (S10) Form a bottom electrode on a bottom substrate; (S20) Form partial partitions and tubes on the bottom electrode; (S30) Form a top electrode on a top substrate; (S40) Form adhesive on the top electrode; (S50) Form a display structure by attaching the partition structures to the adhesive; (S60) Inject ink between the partition structures through the tubes; (S70) Form a display device by removing the tubes
    • 根据本发明的一个实施例的显示装置的制造方法包括在底部基板上形成底部电极的步骤; 同时形成分隔结构,其包括第一方向的第一分隔,所述第一分隔部包括在所述底部电极上的开口;第二分隔件,其穿过由所述第一和第二分隔壁限定的相邻开口和单元区域的两侧上的第一分隔; 以及从分隔结构的一端的第一隔板延伸的墨水注入管; 用顶部电极覆盖分隔结构; 以及通过将电子墨水注入到所述墨水注入管中而用电子墨水填充所述分隔结构。 (附图标记)(S10)在底部基板上形成底部电极; (S20)在底部电极上形成部分隔板和管子; (S30)在顶部基板上形成顶部电极; (S40)在顶部电极上形成粘合剂; (S50)通过将分隔结构附接到粘合剂来形成显示结构; (S60)通过管子在分隔结构之间注入墨水; (S70)通过去除管形成显示装置
    • 36. 发明公开
    • 반사형 액정표시장치 및 그의 제조방법
    • 液晶显示及其制造方法
    • KR1020140004289A
    • 2014-01-13
    • KR1020120071078
    • 2012-06-29
    • 한국전자통신연구원
    • 김기현류호준
    • G02F1/1335
    • G02F1/133362G02F1/133504G02F1/133553G02F2001/133565G02F2001/133618G02F2001/136222H01L33/005
    • In the present invention, disclosed are a reflective liquid crystal display device and a manufacturing method thereof. The device includes a first substrate, a reflection layer which is formed on the first substrate, first electrodes which are formed on the reflection layer, a first insulation layer which is formed on the first electrodes, a second substrate which faces the first substrate, a second electrode which is formed on the second substrate, a second insulation layer which is formed on the second electrode, and a liquid crystal layer which is formed between the first insulation layer and the second insulation layer. The second insulation layer includes uneven parts which are formed on the upper side thereof to increase the linearity of incident light from the second substrate to the reflection layer and reflected light from the reflection layer.
    • 在本发明中,公开了一种反射型液晶显示装置及其制造方法。 该装置包括第一基板,形成在第一基板上的反射层,形成在反射层上的第一电极,形成在第一电极上的第一绝缘层,面向第一基板的第二基板, 形成在第二基板上的第二电极,形成在第二电极上的第二绝缘层和形成在第一绝缘层和第二绝缘层之间的液晶层。 第二绝缘层包括在其上侧形成的不均匀部分,以增加从第二基板到反射层的入射光的线性和来自反射层的反射光。
    • 37. 发明公开
    • 듀얼 모드 디스플레이 장치 및 그의 제조방법
    • 用于显示双模式的装置及其制造方法
    • KR1020130130609A
    • 2013-12-02
    • KR1020120127618
    • 2012-11-12
    • 한국전자통신연구원
    • 구재본이정익황치선류호준추혜용
    • H01L51/50G02F1/13H05B33/10
    • H01L27/3225H01L27/3232
    • In the present invention, disclosed are a dual mode display device and a manufacturing method thereof. The dual mode display device includes a bottom substrate, a top substrate which faces the bottom substrate, a thin film transistor part which is formed between the top substrate and the bottom substrate, a first anode which is formed on one side of the thin film transistor part, a first cathode which is formed between the first anode and the top substrate, an organic light emitting layer which is formed between the first cathode and the first anode, a second anode which is formed on the other side of the thin film transistor part, a second cathode which is formed between the second anode and the top substrate or between the second anode and the bottom substrate, and an optical switching layer which is formed between the second cathode and the second anode.
    • 在本发明中,公开了双模显示装置及其制造方法。 双模式显示装置包括底部基板,面向底部基板的顶部基板,形成在顶部基板和底部基板之间的薄膜晶体管部分,形成在薄膜晶体管的一侧上的第一阳极 形成在第一阳极和顶部基板之间的第一阴极,形成在第一阴极和第一阳极之间的有机发光层,形成在薄膜晶体管部分的另一侧上的第二阳极; 形成在第二阳极和顶部衬底之间或第二阳极和底部衬底之间的第二阴极以及形成在第二阴极和第二阳极之间的光学开关层。
    • 39. 发明公开
    • 적외선 감지 센서 및 그 제조 방법
    • 红外检测传感器及其制造方法
    • KR1020110020063A
    • 2011-03-02
    • KR1020090077760
    • 2009-08-21
    • 한국전자통신연구원
    • 조성목류호준양우석전상훈최창억
    • H01L31/02
    • G01J5/20
    • PURPOSE: An infrared detection sensor and a manufacturing method thereof are provided to improve a thermal insulation property of a sensor structure by a narrow support arm with low conductivity, thereby increasing sensitivity of the infrared detection sensor. CONSTITUTION: A metal pad(220a) and a reflective film(220b) are formed on a substrate. A sensor structure(200a) is separated from the reflective film. The sensor structure comprises a sensing film(260), a lower protective film(240), and an upper protective film(270). An anchor(200b) has a fixed thickness on the metal pad. A support arm(200c) is expanded from the anchor to support the sensor structure.
    • 目的:提供一种红外线检测传感器及其制造方法,以通过具有低导电性的窄支撑臂改善传感器结构的绝热性能,从而提高红外线检测传感器的灵敏度。 构成:在基板上形成金属焊盘(220a)和反射膜(220b)。 传感器结构(200a)与反射膜分离。 传感器结构包括感测膜(260),下保护膜(240)和上保护膜(270)。 锚(200b)在金属垫上具有固定的厚度。 支撑臂(200c)从锚固体扩展以支撑传感器结构。