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    • 2. 发明授权
    • Subminiature imaging optical system
    • 超小型成像光学系统
    • US07474480B2
    • 2009-01-06
    • US11987387
    • 2007-11-29
    • Hye Ran OhIn Cheol ChangHo Seop JeongHo Sik YouSang Hyuck Lee
    • Hye Ran OhIn Cheol ChangHo Seop JeongHo Sik YouSang Hyuck Lee
    • G02B9/06G02B3/02
    • G02B13/003G02B9/06G02B13/18
    • A subminiature imaging optical system including: a first lens having overall positive refractive power, the first lens including a first lens part having a convex object-side surface, a second lens part having an object-side surface in contact with an image-side surface of the first lens part and a third lens part having an object-side surface in contact with an image-side surface of the second lens part; and a second lens having overall positive refractive power, the second lens including a fourth lens part having an object-side surface with a convex center and a concave peripheral portion, about an optical axis, a fifth lens part having an object-side surface in contact with an image-side surface of the fourth lens part and a sixth lens part having an object-side surface in contact with an image-side surface of the fifth lens part, wherein the second lens part has a stop provided on the object-side or image-side surface thereof.
    • 一种超小型成像光学系统,包括:具有整体正屈光力的第一透镜,所述第一透镜包括具有凸形物体侧表面的第一透镜部分,具有与图像侧表面接触的物体侧表面的第二透镜部分 并且具有与第二透镜部的图像侧表面接触的物体侧表面的第三透镜部; 和具有整体正屈光力的第二透镜,所述第二透镜包括第四透镜部分,所述第四透镜部分具有围绕光轴的具有凸中心和凹周边部分的物体侧表面,所述第五透镜部分具有物体侧表面 与第四透镜部分的图像侧表面接触,并且具有与第五透镜部分的图像侧表面接触的物体侧表面的第六透镜部分,其中第二透镜部分设置在物镜侧表面上, 侧面或图像侧表面。
    • 3. 发明申请
    • Subminiature imaging optical system
    • 超小型成像光学系统
    • US20080130143A1
    • 2008-06-05
    • US11987387
    • 2007-11-29
    • Hye Ran OhIn Cheol ChangHo Seop JeongHo Sik YouSang Hyuck Lee
    • Hye Ran OhIn Cheol ChangHo Seop JeongHo Sik YouSang Hyuck Lee
    • G02B9/08
    • G02B13/003G02B9/06G02B13/18
    • A subminiature imaging optical system including: a first lens having overall positive refractive power, the first lens including a first lens part having a convex object-side surface, a second lens part having an object-side surface in contact with an image-side surface of the first lens part and a third lens part having an object-side surface in contact with an image-side surface of the second lens part; and a second lens having overall positive refractive power, the second lens including a fourth lens part having an object-side surface with a convex center and a concave peripheral portion, about an optical axis, a fifth lens part having an object-side surface in contact with an image-side surface of the fourth lens part and a sixth lens part having an object-side surface in contact with an image-side surface of the fifth lens part, wherein the second lens part has a stop provided on the object-side or image-side surface thereof.
    • 一种超小型成像光学系统,包括:具有整体正屈光力的第一透镜,所述第一透镜包括具有凸形物体侧表面的第一透镜部分,具有与图像侧表面接触的物体侧表面的第二透镜部分 并且具有与第二透镜部的图像侧表面接触的物体侧表面的第三透镜部; 和具有整体正屈光力的第二透镜,所述第二透镜包括第四透镜部分,所述第四透镜部分具有围绕光轴的具有凸中心和凹周边部分的物体侧表面,所述第五透镜部分具有物体侧表面 与第四透镜部分的图像侧表面接触,并且具有与第五透镜部分的图像侧表面接触的物体侧表面的第六透镜部分,其中第二透镜部分设置在物镜侧表面上, 侧面或图像侧表面。
    • 5. 发明授权
    • Subminiature imaging optical system
    • 超小型成像光学系统
    • US07457053B2
    • 2008-11-25
    • US11826974
    • 2007-07-19
    • Hye Ran OhHo Seop JeongDong Ik ShinHo Sik You
    • Hye Ran OhHo Seop JeongDong Ik ShinHo Sik You
    • G02B9/04G02B9/00G02B13/18
    • G02B13/006G02B13/003G02B13/18
    • A subminiature imaging optical system includes a first lens including a first lens part having a convex object-side surface, a second lens part having an object-side surface in contact with an image-side surface of the first lens part, and a third lens part having an object-side surface in contact with an image-side surface of the second lens part and a concave image-side surface, about the optical axis; and a second lens including a fourth lens part having an object-side surface with a convex center and a concave peripheral portion about the optical axis, a fifth lens part having an object-side surface in contact with an image-side surface of the fourth lens part, and a sixth lens part having an object-side surface in contact with an image-side surface of the fifth lens part, and an image-side surface with a concave center and a convex peripheral portion about the optical axis.
    • 一种超小型成像光学系统包括:第一透镜,包括具有凸形物体侧表面的第一透镜部分,具有与第一透镜部分的像侧表面接触的物体侧表面的第二透镜部分;以及第三透镜 具有与第二透镜部的图像侧表面接触的物体侧表面的部分和围绕光轴的凹形图像侧表面; 以及具有第四透镜部的第二透镜,所述第四透镜部具有具有凸起中心的物体侧表面和围绕光轴的凹形周边部分,第五透镜部分具有与第四透镜部分的图像侧表面接触的物体侧表面 透镜部分和具有与第五透镜部分的像侧表面接触的物体侧表面的第六透镜部分以及围绕光轴的具有凹入中心和凸起周边部分的图像侧表面。
    • 6. 发明授权
    • Optical movement sensing system
    • 光学运动感应系统
    • US07723669B2
    • 2010-05-25
    • US12000673
    • 2007-12-14
    • Hye Ran OhHo Sik YouIn Cheol Chang
    • Hye Ran OhHo Sik YouIn Cheol Chang
    • H01J3/14G02B15/14
    • G06F3/0421
    • There is provided an optical movement sensing system which can be miniaturized and ensures a wide angle of view. The optical movement sensing system collecting light reflected from an object to be imaged on an optical sensor, the optical movement sensing system including: a wide-angle lens including a first lens element having a curved object-side surface; and a second lens element having an object-side surface in contact with an image-side surface of the first lens element and having a planar image-side surface. The optical movement sensing system with this configuration can be reduced in size and weight and has a wide angle of view. Therefore, the optical movement sensing system is applicable to a mobile device such as a mobile telecommunication terminal and assures sufficient peripheral light amount.
    • 提供了可以小型化并确保广角视角的光学运动感测系统。 所述光学运动感测系统收集从光学传感器上要成像的物体反射的光,所述光学运动感测系统包括:广角镜头,包括具有弯曲物体侧表面的第一透镜元件; 以及第二透镜元件,其具有与第一透镜元件的图像侧表面接触并具有平面图像侧表面的物体侧表面。 具有这种结构的光学运动感测系统可以减小尺寸和重量并且具有广阔的视野。 因此,光学移动感测系统可应用于诸如移动电信终端的移动设备,并且确保足够的周边光量。
    • 7. 发明申请
    • Optical movement sensing system
    • 光学运动感应系统
    • US20080156967A1
    • 2008-07-03
    • US12000673
    • 2007-12-14
    • Hye Ran OhHo Sik YouIn Cheol Chang
    • Hye Ran OhHo Sik YouIn Cheol Chang
    • G09G3/02
    • G06F3/0421
    • There is provided an optical movement sensing system which can be miniaturized and ensures a wide angle of view. The optical movement sensing system collecting light reflected from an object to be imaged on an optical sensor, the optical movement sensing system including: a wide-angle lens including a first lens element having a curved object-side surface; and a second lens element having an object-side surface in contact with an image-side surface of the first lens element and having a planar image-side surface. The optical movement sensing system with this configuration can be reduced in size and weight and has a wide angle of view. Therefore, the optical movement sensing system is applicable to a mobile device such as a mobile telecommunication terminal and assures sufficient peripheral light amount.
    • 提供了可以小型化并确保广角视角的光学运动感测系统。 所述光学运动感测系统收集从光学传感器上要成像的物体反射的光,所述光学运动感测系统包括:广角镜头,包括具有弯曲物体侧表面的第一透镜元件; 以及第二透镜元件,其具有与第一透镜元件的图像侧表面接触并具有平面图像侧表面的物体侧表面。 具有这种结构的光学运动感测系统可以减小尺寸和重量并且具有广阔的视野。 因此,光学移动感测系统可应用于诸如移动电信终端的移动设备,并且确保足够的周边光量。
    • 9. 发明授权
    • Multi-wavelength semiconductor laser device
    • 多波长半导体激光器件
    • US07460579B2
    • 2008-12-02
    • US11159350
    • 2005-06-23
    • Jong Ik ParkYu Seung KimKi Won MoonHye Ran Oh
    • Jong Ik ParkYu Seung KimKi Won MoonHye Ran Oh
    • H01S5/00
    • H01S5/4025H01S3/08086H01S3/0809
    • A semiconductor laser device comprises: a substrate having a top surface divided into a first region and a second region; a high-output LD including a first conductivity-type clad layer, an active layer, and a second conductivity-type clad layer including an upper portion having a first ridge structure, sequentially formed on the first region of the substrate; and a low-output LD including a first conductivity-type clad layer, an active layer, and a second conductivity-type clad layer including an upper portion having a second ridge structure, sequentially formed on the second region of the substrate, wherein the first and second ridge structures are formed in such a manner that they are extended to both ends opposed to each other, the first ridge structure is bent at two or more bending positions, and the second ridge structure is rectilinear.
    • 半导体激光装置包括:基板,其具有分为第一区域和第二区域的顶表面; 包括依次形成在所述基板的所述第一区域上的包括具有第一脊结构的上部的第一导电型覆盖层,有源层和第二导电型覆盖层的高输出LD, 以及依次形成在所述基板的第二区域上的包括第一导电型覆盖层,有源层和包括具有第二脊结构的上部的第二导电型覆盖层的低输出LD,其中, 并且第二脊结构形成为使得它们彼此相对延伸到两个端部,第一脊结构在两个或更多个弯曲位置弯曲,并且第二脊结构是直线的。
    • 10. 发明授权
    • Optical system
    • 光学系统
    • US07764445B2
    • 2010-07-27
    • US12076011
    • 2008-03-12
    • Hye Ran OhIn Cheol ChangSeok Cheon LeeYoung Su JinCheong Hee Lee
    • Hye Ran OhIn Cheol ChangSeok Cheon LeeYoung Su JinCheong Hee Lee
    • G02B9/06G02B9/00
    • G02B13/006G02B9/10G02B9/28G02B13/003
    • An optical system is mounted in a mobile communication terminal and a personal digital assistant (PDA) for a monitoring camera and a digital camera. The optical system includes: a first optical element formed in a meniscus shape entirely convex toward an object and having a positive refractive power; and a second optical element having an object-side surface convex toward the object and an image-side surface formed of a plane, wherein the second optical element includes: a fourth optical element having an object-side surface entirety convex toward the object on the optical axis; and a fifth optical element having an object-side surface in contact with an image-side surface of the fourth optical element, and an image-side surface and an object-side surface formed of planes respectively.
    • 光学系统安装在用于监视摄像机和数字照相机的移动通信终端和个人数字助理(PDA)中。 光学系统包括:第一光学元件,其形成为朝向物体完全凸起并具有正折射光焦度的弯月形状; 以及第二光学元件,其具有朝向物体的物体侧表面凸起,以及由平面形成的像侧表面,其中所述第二光学元件包括:第四光学元件,其具有朝向所述物体的所述物体的整个凸面 光轴; 以及具有与第四光学元件的图像侧表面接触的物体侧表面的第五光学元件和分别由平面形成的图像侧表面和物体侧表面。