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    • 1. 发明授权
    • 홀로그래피 3차원 영상 표시 장치 및 방법
    • 3全息三维显示装置及方法
    • KR101701414B1
    • 2017-02-02
    • KR1020100098830
    • 2010-10-11
    • 삼성전자주식회사
    • 최규환송훈이홍석최윤선배정목한승훈
    • G03H1/22G03H1/02
    • G03H1/2294G03H2001/0224G03H2210/30G03H2222/36G03H2225/25
    • 홀로그래피 3차원영상표시장치가개시된다. 개시된홀로그래피 3차원영상표시장치는기록빔을조사하는기록광원; 상기기록광원에서조사된기록빔을, 복수개로공간분할된입체영상에대응하는홀로그램정보에따라시순차변조하는전기적어드레스공간광변조기(EASLM); 상기복수개에대응하는개수로구획된복수의영역을구비하며, 상기변조된기록빔이상기복수의영역중 대응하는영역에촬상되어홀로그램을생성하는광학적어드레스공간광변조기(OASLM); 상기 EASLM에서시순차적으로변조된기록빔에의해생성된홀로그램을축소복제하여상기 OASLM 상의복수의영역중 대응하는위치로전송하는스캐닝광학부; 상기 OASLM에면광을생성, 조사하는재생광원부;를포함한다.
    • 一种装置,包括被配置为发射记录光束的记录光源,EASLM,被配置为根据对应于空间分割成多个部分的3维图像的全息图信息,对记录光源发射的记录光束进行时间顺序调制; OASLM 被配置为包括与所述三维图像的所述多个分割部分对应的多个区域和与使用所述调制记录光束的所述部分相对应的区域上的图像,以形成全息图;扫描光学单元,被配置为再现形成的全息图 通过由EASLM以缩小比例尺度序列调制的记录光束,并将全息图传送到对应于该部分的OASLM的区域,以及再现光源,被配置为产生表面光并将表面光发射到OASLM。
    • 5. 发明公开
    • 전기-습윤 프리즘 어레이를 포함하는 디스플레이
    • 显示器包括电湿染料阵列
    • KR1020140079266A
    • 2014-06-26
    • KR1020130082296
    • 2013-07-12
    • 삼성전자주식회사
    • 김윤희송훈배정목최규환최윤선권용주
    • G02B5/04G02B27/22
    • G02B27/2242G02B3/14G02B5/045G02F1/133526H04N13/359
    • Disclosed is a display including an electro-wetting prism array. The display according to an embodiment of the present invention includes a 2D display providing an image using light from a light source; a prism array; and an optical element increasing refractive power of light transmitted through itself, wherein refractive power of one or more prisms is controlled in the prism array in real time. In the display, the optical element may be formed at the front or the back of the prism array. The optical element is one of a group consisting of a convex lens, a Fresnel lens, a holographic optical element (HOE), a diffractive optical element (DOE), a second electro-wetting prism array, a liquid crystal lens, and an optical lens which acts as a lens. The convex lens may be a variable focus lens.
    • 公开了一种包括电润湿棱镜阵列的显示器。 根据本发明的实施例的显示器包括使用来自光源的光提供图像的2D显示器; 棱镜阵列 以及增加透射自身的光的屈光力的光学元件,其中一个或多个棱镜的屈光力实时地被控制在棱镜阵列中。 在显示器中,光学元件可以形成在棱镜阵列的前面或后面。 光学元件是由凸透镜,菲涅尔透镜,全息光学元件(HOE),衍射光学元件(DOE),第二电泳液棱镜阵列,液晶透镜和光学元件组成的组之一 透镜作为透镜。 凸透镜可以是可变焦距透镜。
    • 8. 发明公开
    • 가변 액체 프리즘 어레이 및 그 제조 방법
    • 可更换液晶镜片阵列及其制造方法
    • KR1020130092850A
    • 2013-08-21
    • KR1020120014406
    • 2012-02-13
    • 삼성전자주식회사
    • 김억수배정목송훈원강희정득석최규환최윤선
    • G02B26/00G02F1/01
    • G02B5/06G02B5/045G02B26/005G02B26/0883
    • PURPOSE: A variable liquid prism array and a manufacturing method thereof are provided to use an electrode wiring layer as a mask, thereby forming an electrode without a separate mask and preventing misalignment. CONSTITUTION: A variable liquid prism array comprises a substrate (10), a wiring layer a conductive line portion formed on the substrate and a non-conductive line area in which the conductive line portion is not arranged; partitions (25) provided on the wiring layer; cells (28) divided by the partitions; a first fluid included within the cells; a second fluid provided on the first fluid; a plurality of side electrodes (31~34) which are provided in the side of the partitions and are spaced apart from each other along an area corresponding to the non-conductive line area of the wiring layer; and an upper electrode which are arranged to be spaced apart from the side electrodes in the upper part of the partitions.
    • 目的:提供一种可变液晶棱镜阵列及其制造方法,以使用电极布线层作为掩模,从而形成不具有单独掩模的电极并防止未对准。 构成:可变液体棱镜阵列包括基板(10),布线层,形成在基板上的导电线部分和不布置导线部分的非导电线区域; 设置在布线层上的分隔壁(25) 细胞(28)除以分隔; 包含在细胞内的第一流体; 设置在第一流体上的第二流体; 多个侧面电极(31〜34),其设置在所述隔壁的一侧,并且沿着与所述布线层的非导电线区域对应的区域彼此间隔开; 以及上部电极,其被布置成与隔板的上部中的侧电极间隔开。
    • 9. 发明公开
    • 초점길이 가변형 마이크로 렌즈와 이를 포함하는 마이크로 렌즈 어레이 및 이를 포함하는 3D 디스플레이와 그 동작 방법
    • 具有改变焦距的微透镜,包括其的微透镜阵列,包含微透镜阵列的3D显示器和操作3D显示器的方法
    • KR1020130087937A
    • 2013-08-07
    • KR1020120009209
    • 2012-01-30
    • 삼성전자주식회사
    • 최규환김윤희김억수배정목송훈원강희최윤선
    • G02B27/22G02B3/14G02B26/00
    • G02B3/14G02B3/0006G02B26/005G09G5/00
    • PURPOSE: A variable micro lens, a micro lens array including the same, and a three-dimensional display are provided to make a perfect image on the area of an image pickup device corresponding to each micro lens. CONSTITUTION: A micro lens (L1) includes a first to a fourth electrode (62, 64, 66, 68). The first and a third electrode are separated from each other. A second electrode and the fourth electrode are vertically located from the first and the third electrode. The second and the fourth electrode are separated from each other. The first and the third electrode are located between the second electrode and the fourth electrode. The second electrode includes a curved first part (64A). The fourth electrode includes a curved second part (68A). The first and the second part are curved inside a unit cell. The first part of the second electrode is overlapped with each end of the first and the third electrode. The second part of the fourth electrode is overlapped with other end of the first and the third electrode.
    • 目的:提供可变微透镜,包括其的微透镜阵列和三维显示器,以在对应于每个微透镜的图像拾取装置的区域上形成完美图像。 构成:微透镜(L1)包括第一至第四电极(62,64,66,68)。 第一和第三电极彼此分离。 第二电极和第四电极从第一和第三电极垂直定位。 第二和第四电极彼此分离。 第一和第三电极位于第二电极和第四电极之间。 第二电极包括弯曲的第一部分(64A)。 第四电极包括弯曲的第二部分(68A)。 第一部分和第二部分在单元电池内弯曲。 第二电极的第一部分与第一和第三电极的每个端部重叠。 第四电极的第二部分与第一和第三电极的另一端重叠。