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    • 1. 发明申请
    • Camera module having an array lens
    • 相机模块具有阵列透镜
    • US20080007623A1
    • 2008-01-10
    • US11822301
    • 2007-07-03
    • Sang LeeHo JeongSeok LeeHo YouSung Kim
    • Sang LeeHo JeongSeok LeeHo YouSung Kim
    • H04N5/225H04N9/04
    • H04N9/04G02B13/001G02B13/006G02B13/0085G02B13/009H01L27/14618H01L2924/0002H04N5/2253H04N5/2254H04N5/2257H01L2924/00
    • In a camera module having an array lens, a first lens group has at least two lenses. A second lens group has a plurality of lenses corresponding to the lenses of the first lens group, the second lens group stacked below the first lens group and interposing a spacer part therebetween. An image sensor has an imaging region where light passing through the first and second lens groups is imaged. Also, a shielding unit shields portions excluding apertures of the lenses of the first and second lens groups, the shielding unit disposed between the first and second lens groups. The camera module has a lower optical system along an optical axis for smaller size, keeps light refracted from an adjacent lens from affecting an image, blocks leakage of light for imaging and increases definition of the image through signal processing.
    • 在具有阵列透镜的相机模块中,第一透镜组具有至少两个透镜。 第二透镜组具有对应于第一透镜组的透镜的多个透镜,第二透镜组堆叠在第一透镜组下方并且在其间插入间隔部分。 图像传感器具有通过第一和第二透镜组的光成像的成像区域。 此外,屏蔽单元屏蔽除了第一和第二透镜组的透镜的孔的部分,屏蔽单元设置在第一和第二透镜组之间。 相机模块沿着光轴具有较小的光学系统,以便较小的尺寸,保持相邻透镜的光线不会影响图像,阻止用于成像的光的泄漏,并通过信号处理增加图像的定义。
    • 3. 发明申请
    • Optical lens system of mobile camera
    • 移动摄像机光学透镜系统
    • US20070132875A1
    • 2007-06-14
    • US11606343
    • 2006-11-30
    • Sang LeeHo JeongHo You
    • Sang LeeHo JeongHo You
    • H04N5/225
    • H04N5/2254H04N5/23238H04N9/045
    • An optical lens system of a mobile camera is provided. The lens optical system includes: an optical lens in which one pair of incident surfaces corresponding to the divided view angles are adjacently arranged at the center portion, optical beams incident at the divided view angles being transmitted through respective off-axis lens systems; and one pair of image sensors separately arranged under both lower portions of the optical lens to receive the optical beams transmitted through the off-axis lens systems. As one pair of the image sensors is separately arranged on both lower portions of the optical lens, the images formed in the image sensors can be easily combined. Moreover, during the combination of the image, the disparity of the images can be prevented by the narrowed distance between the incident surfaces.
    • 提供了一种移动摄像机的光学透镜系统。 透镜光学系统包括:光学透镜,其中对应于分割视角的一对入射表面相邻地布置在中心部分处,以分割视角入射的光束通过相应的离轴透镜系统透射; 以及一对图像传感器,分别布置在光学透镜的两个下部,以接收透过离轴透镜系统的光束。 由于一对图像传感器被单独布置在光学透镜的两个下部上,所以可以容易地组合图像传感器中形成的图像。 此外,在图像的组合期间,可以通过入射表面之间的变窄的距离来防止图像的差异。
    • 4. 发明申请
    • Wafer scale lens and optical system having the same
    • 晶圆尺度透镜和具有相同的光学系统
    • US20060262416A1
    • 2006-11-23
    • US11403814
    • 2006-04-14
    • Sang LeeSung KimChon KyongHo Jeong
    • Sang LeeSung KimChon KyongHo Jeong
    • G02B25/00
    • G02B27/0037G02B9/06G02B13/003G02B13/0055G02B13/006G02B27/4211G02B27/4216
    • Provided are wafer scale lenses having a diffraction surface as well as a refractive surface, and an optical system having the same. The wafer scale lens includes a lens substrate, a first lens element formed on the object side of the lens substrate, having a positive refractive power, a second lens element formed on the image side of the lens substrate, having a diffraction surface, and a third lens element deposited on the diffraction surface of the second lens element, having a negative refractive power. The invention allows miniaturized optical system and efficient calibration of angle of view, reducing the angle of light incident onto the diffractive surface, thereby increasing diffraction efficiency and eliminating high order diffraction light to improve picture quality.
    • 本发明提供具有衍射面以及折射面的晶片级透镜,以及具有该折射面的光学系统。 晶片级透镜包括透镜基板,形成在透镜基板的物体侧的具有正折光力的第一透镜元件,形成在透镜基板的像侧上的具有衍射面的第二透镜元件,以及 第三透镜元件沉积在第二透镜元件的衍射表面上,具有负折光力。 本发明允许小型化的光学系统和视角的有效校准,减少入射到衍射面上的光的角度,从而提高衍射效率,消除高阶衍射光以提高图像质量。
    • 5. 发明申请
    • Lens for LED light sources
    • LED光源镜头
    • US20060083003A1
    • 2006-04-20
    • US11155242
    • 2005-06-17
    • Jin KimHo JeongSang LeeJoo Jun
    • Jin KimHo JeongSang LeeJoo Jun
    • F21V5/00
    • F21V5/04F21V7/0091F21Y2115/10G02B19/0028G02B19/0061G02B19/0071H01L33/58H01L33/60
    • A lens for light emitting diode (LED) light sources which allows light emitted from an LED light source to exit the lens in a direction perpendicular to a vertical center axis of the lens. The lens of the present invention includes an inner space which is defined in a lens body having both a bottom surface and an upper reflective surface, so that light passing through the inner space is partially reflected by total internal reflection on a portion (selective transmission surface, inner reflective surface, inside reflective surface) of a boundary surface between the inner space and the lens body. Thus, light emitted from an LED light source efficiently exits the lens through a side surface. Accordingly, the lens of the present invention is used in efficient display and illumination optical systems.
    • 用于发光二极管(LED)光源的透镜,其允许从LED光源发射的光在垂直于透镜的垂直中心轴线的方向上离开透镜。 本发明的透镜包括限定在具有底表面和上反射表面的透镜体中的内部空间,使得穿过内部空间的光部分地被反射部分(选择性透射表面 ,内部反射面,内部反射面)内部空间与透镜体之间的边界面。 因此,从LED光源发射的光通过侧面有效地离开透镜。 因此,本发明的透镜用于有效的显示和照明光学系统中。
    • 6. 发明申请
    • Inner focus type zoom lens system
    • 内置焦距变焦镜头系统
    • US20060164732A1
    • 2006-07-27
    • US11326299
    • 2006-01-06
    • Sang LeeHo JeongChon Kyong
    • Sang LeeHo JeongChon Kyong
    • G02B15/14
    • G02B15/14G02B3/14
    • An inner-focus type zoom lens system used for a camera module having an image sensor and using an LC lens is provided. The inner-focus type zoom lens system includes an objective lens group, a condensing lens group, at least one moving lens group, and an LC lens. The objective lens group is located most closely to an object side and fixed, and the condensing lens group is located most closely to an image side and fixed. The moving lens group is located between the objective lens group and the condensing lens group and moved for zooming. The LC lens includes an inner space filled with an LC material whose refractive index and abbe number change according to an applied voltage. The LC lens compensates for an image plane using the changes of the refractive index and the abbe number of the LC material when the zooming is performed by the moving of the moving lens.
    • 提供了一种用于具有图像传感器并使用LC透镜的相机模块的内焦型变焦透镜系统。 内聚焦型变焦透镜系统包括物镜组,聚焦透镜组,至少一个移动透镜组和LC透镜。 物镜组最靠近物体侧并固定,聚光透镜组最靠近图像侧并固定。 移动透镜组位于物镜组和聚焦透镜组之间,并且被移动以进行变焦。 LC透镜包括填充有折射率和阿贝数根据施加电压而改变的LC材料的内部空间。 LC透镜通过移动透镜的移动进行变焦时,使用LC材料的折射率和阿贝数的变化来补偿像平面。
    • 7. 发明申请
    • Inner zoom lens system
    • 内变焦镜头系统
    • US20060139767A1
    • 2006-06-29
    • US11281402
    • 2005-11-18
    • Sang LeeHo JeongChon Kyong
    • Sang LeeHo JeongChon Kyong
    • G02B15/14
    • G02B13/18G02B15/177
    • An inner zoom lens system for use in a camera module having an image sensor and appropriate for an inner-focus type is provided. The inner zoom lens system includes, sequentially from an object side, a first lens group, a second lens group, a third lens group, and a fourth lens group. The first lens group is fixed and has minus refractive power. The second lens group has plus refractive power and performs a zooming operation by moving such that an interval between the first and the second lens groups is reduced when zooming from a wide angle end to a telephoto end. The third lens group has minus refractive power and moves such that a position of an image plane is corrected depending the zooming due to the movement of the second lens group. The fourth lens group has plus refractive power.
    • 提供了一种用于具有适于内聚焦类型的图像传感器的相机模块中的内部变焦透镜系统。 内部变焦透镜系统从物体侧依次包括第一透镜组,第二透镜组,第三透镜​​组和第四透镜组。 第一透镜组是固定的,具有负折射光焦度。 第二透镜组具有加折射力并且通过移动执行缩放操作,使得当从广角端到远摄端放大时,第一和第二透镜组之间的间隔减小。 第三透镜组具有负折光力,并且移动,使得由于第二透镜组的移动而使得根据变焦而校正像平面的位置。 第四透镜组具有加折射光焦度。
    • 8. 发明申请
    • DIPOLAR SIDE-EMITTING LED LENS AND LED MODULE INCORPORATING THE SAME
    • DIPOLAR SIDE发光LED透镜和LED模块并入
    • US20060081863A1
    • 2006-04-20
    • US11085534
    • 2005-03-21
    • Jin KimHun HahmHyung KimJin KimJoo JunSang LeeChon KyongHo Jeong
    • Jin KimHun HahmHyung KimJin KimJoo JunSang LeeChon KyongHo Jeong
    • H01L33/00
    • H01L33/54H01L33/60
    • The present invention relates to a dipolar LED and a dipolar LED module incorporating the same, in which an upper hemisphere-shaped base houses an LED chip therein and adapted to radiate light from the LED chip to the outside, and a pair of reflecting surfaces placed at opposed top portions of the base in a configuration symmetric about an imaginary vertical plane. The vertical plane passes through the center of the LED chip perpendicularly to a light-emitting surface of the LED chip. The reflecting surfaces are extended upward away from the top portions of the base to reflect light from the LED chip away from the imaginary vertical plane. A pair of radiating surfaces are placed outside the reflecting surfaces, respectively, to radiate light from the reflecting surfaces to the outside. In this way, light emission from the LED chip can be concentrated in both lateral directions.
    • 本发明涉及一种双极性LED和包括其的双极LED模块,其中上半球形基座容纳LED芯片并适于将来自LED芯片的光辐射到外部,并且一对反射表面被放置 在基部的相对的顶部部分处于关于假想垂直平面对称的构造中。 垂直平面通过LED芯片的中心垂直于LED芯片的发光表面。 反射面向上延伸离开基座的顶部,以将来自LED芯片的光反射离开虚拟垂直平面。 一对辐射表面分别放置在反射表面的外侧,以将来自反射表面的光辐射到外部。 以这种方式,来自LED芯片的光发射可以集中在两个横向上。
    • 9. 发明申请
    • Protein chip for analyzing interaction between protein and substrate peptide thereof
    • 用于分析蛋白质与其底物肽之间的相互作用的蛋白质芯片
    • US20060105407A1
    • 2006-05-18
    • US10541261
    • 2003-10-18
    • Sang LeeSeok Lee
    • Sang LeeSeok Lee
    • G01N33/537C12M1/34
    • C40B30/04C07K1/1077C07K14/5759C12N9/0006G01N33/54353G01N33/6803
    • A protein chip of a S—L—SP form wherein a substrate peptide (SP) is immobilized on a solid substrate (S) by the mediation of a linker protein (L). Such chip is usefully employed in a method for analyzing the interaction between a reactive protein and its substrate peptide involving the steps of: adding to the protein chip a reactive protein showing a specific interaction with the substrate protein immobilized on the protein chip; and detecting the interaction between the reactive protein and the substrate peptide. The use of such protein chip and methodology allows an increase in the reactivity between a peptide with low molecular weight and an enzyme with high molecular weight and between the peptide and a reactive antibody on the protein chip, so that the interaction between the peptide and the protein can be analyzed rapidly and massively.
    • S-L-SP形式的蛋白质芯片,其中通过连接蛋白(L)的介导将底物肽(SP)固定在固体底物(S)上。 这种芯片有用地用于分析反应蛋白质及其底物肽之间的相互作用的方法,其涉及以下步骤:向蛋白质芯片中加入显示与固定在蛋白质芯片上的底物蛋白的特异性相互作用的反应性蛋白质; 并检测反应蛋白和底物肽之间的相互作用。 使用这种蛋白质芯片和方法可以增加低分子量的肽与高分子量的酶之间以及肽与蛋白质芯片上的反应性抗体之间的反应性,使得肽与 蛋白质可以快速,大量地分析。