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    • 31. 发明授权
    • Optical image capturing lens assembly
    • 光学摄像镜头组件
    • US08982483B2
    • 2015-03-17
    • US13354332
    • 2012-01-20
    • Ming-Ta ChouTsung-Han Tsai
    • Ming-Ta ChouTsung-Han Tsai
    • G02B9/34G02B13/04G02B3/02G02B13/18G02B13/00
    • G02B13/004G02B9/34G02B13/04
    • An optical image capturing lens assembly includes four non-cemented lens elements, in order from an object side to an image side: a first lens element, a second lens element, a third lens element and a fourth lens element. The first lens element with positive refractive power has a convex object-side surface. The second lens element with negative refractive power has a concave object-side surface and a convex image-side surface. The third lens element with positive refractive power has a convex object-side surface and a convex image-side surface, and is made of plastic material, wherein the surfaces of the third lens element are aspheric. The fourth lens element with negative refractive power has a concave object-side surface and a convex image-side surface, and is made of plastic material, wherein the surfaces of the fourth lens element are aspheric.
    • 光学图像拍摄透镜组件包括从物体侧到像侧的顺序的四个非胶合透镜元件:第一透镜元件,第二透镜元件,第三透镜​​元件和第四透镜元件。 具有正折光力的第一透镜元件具有凸的物体侧表面。 具有负屈光力的第二透镜元件具有凹入的物体侧表面和凸形的图像侧表面。 具有正折光力的第三透镜元件具有凸形物体侧表面和凸形图像侧表面,并且由塑料材料制成,其中第三透镜元件的表面是非球面的。 具有负屈光力的第四透镜元件具有凹面物侧表面和凸像侧表面,并且由塑料材料制成,其中第四透镜元件的表面是非球面的。
    • 32. 发明授权
    • Optical lens for image pickup
    • 用于图像拾取的光学镜头
    • US08743478B2
    • 2014-06-03
    • US13399426
    • 2012-02-17
    • Tsung-Han TsaiMing-Ta Chou
    • Tsung-Han TsaiMing-Ta Chou
    • G02B13/18G02B9/60
    • G02B13/0045
    • An optical lens for image pickup, sequentially arranged from an object side to an image side along the optical axis comprising: a first lens element with positive refractive power having a convex object-side surface; a second lens element with negative refractive power; a third lens element with refractive power; a plastic fourth lens element with positive refractive power having biconvex surfaces with at least one aspheric surface; and a plastic fifth lens element with negative refractive power having a concave image-side surface, with at least one aspheric surface and at least one inflection point. By such arrangements, the optical lens for image pickup satisfies conditions related to shorten the total length and to reduce the sensitivity for use in compact cameras and mobile phones with camera functionalities.
    • 一种用于图像拾取的光学透镜,其沿着光轴从物体侧到像侧依次布置,包括:具有凸起物体侧表面的具有正折光力的第一透镜元件; 具有负屈光力的第二透镜元件; 具有屈光力的第三透镜元件; 具有正屈光力的塑料第四透镜元件,具有至少一个非球面的双凸面; 以及具有负折射力的塑料第五透镜元件,具有凹形图像侧表面,具有至少一个非球面和至少一个拐点。 通过这样的配置,用于图像拾取的光学透镜满足与缩短总长度有关的条件并降低用于具有照相机功能的小型照相机和手机中的灵敏度。
    • 33. 发明授权
    • Optical lens assembly for imaging pickup
    • 用于成像拾音器的光学透镜组件
    • US08605367B2
    • 2013-12-10
    • US13407318
    • 2012-02-28
    • Tsung-Han TsaiMing-Ta Chou
    • Tsung-Han TsaiMing-Ta Chou
    • G02B13/18G02B13/04G02B9/60
    • G02B13/0045
    • An optical lens assembly for imaging pickup, sequentially arranged from an object side to an image side, comprising: a first lens element, a second lens element, a third lens element, a fourth lens element and a fifth lens element. The first lens element with positive refractive power has a convex object-side surface. The second lens element has negative refractive power. The third lens element with refractive power has bi-aspheric surfaces. The fourth lens element with positive refractive power has a concave object-side surface and a convex image-side surface and both being aspheric. The fifth lens element with negative refractive power has a concave image-side surface, bi-aspheric surfaces and at least one inflection point. Therefore, the optical lens assembly for imaging pickup satisfies conditions related to shorten the total length and to reduce the sensitivity for use in compact cameras and mobile phones with camera functionalities.
    • 一种用于成像拾取器的光学透镜组件,其从物体侧到像侧依次布置,包括:第一透镜元件,第二透镜元件,第三透镜​​元件,第四透镜元件和第五透镜元件。 具有正折光力的第一透镜元件具有凸的物体侧表面。 第二透镜元件具有负屈光力。 具有屈光力的第三透镜元件具有双非球面。 具有正折光力的第四透镜元件具有凹面物侧面和凸像侧面,两者均为非球面。 具有负屈光力的第五透镜元件具有凹面图像侧表面,双非球面表面和至少一个拐点。 因此,用于成像拾取的光学透镜组件满足与缩短总长度相关的条件,并降低使用具有照相机功能的小型照相机和移动电话的灵敏度。
    • 34. 发明授权
    • Optical lens assembly for image capture
    • 用于图像捕获的光学透镜组件
    • US08582219B2
    • 2013-11-12
    • US13190430
    • 2011-07-25
    • Tsung-Han TsaiDung Yi HsiehMing-Ta Chou
    • Tsung-Han TsaiDung Yi HsiehMing-Ta Chou
    • G02B9/14G02B13/18
    • G02B13/0035
    • An optical lens assembly for image capture, sequentially arranged from an object side to an image side, comprises: the first lens element with positive refractive power having a concave object-side surface and a convex image-side surface, the second lens element with negative refractive power having a concave object-side surfaces and a convex image-side surface, the third lens element with positive refractive power having a convex object-side surface and a concave image-side surface. Additionally, the optical lens assembly for image capture can satisfy several conditions. By such arrangements, the optical assembly for image capture can effectively correct the aberration and be applied to a compact image pickup device for image capturing.
    • 一种用于图像拍摄的光学透镜组件,从物体侧到像侧依次布置,包括:具有正折射力的第一透镜元件,具有凹面物侧表面和凸像侧表面,第二透镜元件具有负像 具有凹面物侧表面和凸像侧表面的折射光焦度,具有正折射光焦度的第三透镜元件具有凸形物体侧表面和凹形图像侧表面。 此外,用于图像捕获的光学透镜组件可以满足若干条件。 通过这样的布置,用于图像捕获的光学组件可以有效地校正像差并将其应用于用于图像捕获的紧凑型图像拾取装置。
    • 35. 发明申请
    • OPTICAL LENS SYSTEM
    • 光学透镜系统
    • US20130208354A1
    • 2013-08-15
    • US13532441
    • 2012-06-25
    • Tsung-Han TsaiMing-Ta Chou
    • Tsung-Han TsaiMing-Ta Chou
    • G02B13/14G02B9/34G02B13/18
    • G02B13/004G02B9/34G02B13/06G02B13/22
    • This invention provides an optical lens system comprising: a first lens element with negative refractive power having a convex object-side surface; a second lens element with negative refractive power having a concave object-side surface and a convex image-side surface; a third lens element with positive refractive power; a plastic fourth lens element with negative refractive power having a concave object-side surface and a convex image-side surface, with both the object-side and image-side surfaces thereof being aspheric, and having at least one inflection point positioned on at least one of the object-side and image-side surfaces thereof; wherein the number of lens elements with refractive power is limited to four. By such arrangement, especially by the first and the second lens elements with negative refractive power, the system has sufficient back focal length for arranging required optical elements, and thereby is suitable for various applications.
    • 本发明提供了一种光学透镜系统,包括:具有凸起物体侧表面的具有负折光力的第一透镜元件; 具有负折射力的第二透镜元件,具有凹面物侧表面和凸像侧表面; 具有正屈光力的第三透镜元件; 具有负屈光力的塑料第四透镜元件,具有凹面物侧表面和凸像侧表面,其物面和像侧表面都是非球面的,并且至少有一个拐点位于至少 其物体侧和像侧表面之一; 其中具有屈光力的透镜元件的数量被限制为四个。 通过这种布置,特别是通过具有负屈光力的第一和第二透镜元件,该系统具有足够的后焦距用于布置所需的光学元件,从而适用于各种应用。
    • 36. 发明授权
    • Image capturing optical system
    • 摄像光学系统
    • US08427760B2
    • 2013-04-23
    • US13174790
    • 2011-07-01
    • Dung-Yi HsiehMing-Ta Chou
    • Dung-Yi HsiehMing-Ta Chou
    • G02B3/02G02B9/14
    • G02B13/18G02B13/0035
    • An image capturing optical system includes, in order from an object side to an image side: the first lens element with positive refractive power having a convex object-side surface, the second lens element with positive refractive power having a concave object-side surface and a convex image-side surface, the third lens element with positive refractive power having a concave object-side surface and a convex image-side surface, wherein the object-side surface and the image-side surface of the third lens element are aspheric. By such arrangement, the total track length and the photosensitivity of the image capturing optical system can be effectively reduced while retaining high image quality. The image capturing optical system can also be applied to an infrared optical system.
    • 图像拍摄光学系统从物体侧到像侧依次包括具有正物镜侧表面的具有正折光力的第一透镜元件,具有正折射光焦度的第二透镜元件具有凹面物侧表面, 凸面像侧面,具有正折射力的第三透镜元件具有凹面物侧表面和凸像侧表面,其中第三透镜元件的物侧表面和像侧表面是非球面的。 通过这种布置,可以有效地减少图像拍摄光学系统的总轨道长度和光敏性,同时保持高图像质量。 摄像光学系统也可应用于红外光学系统。
    • 37. 发明授权
    • Optical imaging lens assembly
    • 光学成像镜头组件
    • US08379324B2
    • 2013-02-19
    • US13277672
    • 2011-10-20
    • Tsung-Han TsaiMing-Ta Chou
    • Tsung-Han TsaiMing-Ta Chou
    • G02B13/18G02B9/60
    • G02B13/0045G02B13/22
    • An optical imaging lens assembly comprising five non-cemented lens elements with refractive power, sequentially arranged from an object side to an image side, comprising: the first lens element with positive refractive power, the second lens element with negative refractive power, the third lens element with refractive power having a concave object-side surface and at least one aspheric surface, the fourth lens element with positive refractive power having two aspheric surfaces, and the fifth lens element with negative refractive power having a concave object-side surface and a convex image-side surface with both being aspheric. Wherein an image sensor disposed on an image plane and a stop are also provided. By such arrangements, the image pickup optical system satisfies conditions related to shorten the total length and to reduce the sensitivity for use in compact cameras and mobile phones with camera functionalities.
    • 一种光学成像透镜组件,包括具有屈光力的五个非胶合透镜元件,从物体侧依次排列到像侧,包括:具有正折光力的第一透镜元件,具有负屈光力的第二透镜元件,第三透镜 具有凹入物侧表面和至少一个非球面的屈光力元件,具有两个非球面的正折光力的第四透镜元件,具有负折射光焦度的第五透镜元件具有凹面物侧表面和凸面 图像侧表面均为非球面。 还提供了设置在图像平面和停止点上的图像传感器。 通过这样的配置,摄像光学系统满足缩短总长度的条件,降低了用于具有照相机功能的小型照相机和移动电话的灵敏度。
    • 39. 发明申请
    • Optical Imaging Lens Assembly
    • 光学成像镜头组件
    • US20120300316A1
    • 2012-11-29
    • US13277672
    • 2011-10-20
    • Tsung-Han TsaiMing-Ta Chou
    • Tsung-Han TsaiMing-Ta Chou
    • G02B13/18
    • G02B13/0045G02B13/22
    • An optical imaging lens assembly comprising five non-cemented lens elements with refractive power, sequentially arranged from an object side to an image side, comprising: the first lens element with positive refractive power, the second lens element with negative refractive power, the third lens element with refractive power having a concave object-side surface and at least one aspheric surface, the fourth lens element with positive refractive power having two aspheric surfaces, and the fifth lens element with negative refractive power having a concave object-side surface and a convex image-side surface with both being aspheric. Wherein an image sensor disposed on an image plane and a stop are also provided. By such arrangements, the image pickup optical system satisfies conditions related to shorten the total length and to reduce the sensitivity for use in compact cameras and mobile phones with camera functionalities.
    • 一种光学成像透镜组件,包括具有屈光力的五个非胶合透镜元件,从物体侧依次排列到像侧,包括:具有正折光力的第一透镜元件,具有负屈光力的第二透镜元件,第三透镜 具有凹入物侧表面和至少一个非球面的屈光力元件,具有两个非球面的正折光力的第四透镜元件,具有负折射光焦度的第五透镜元件具有凹面物侧表面和凸面 图像侧表面均为非球面。 还提供了设置在图像平面和停止点上的图像传感器。 通过这样的配置,摄像光学系统满足缩短总长度的条件,降低了用于具有照相机功能的小型照相机和手机中的灵敏度。
    • 40. 发明申请
    • IMAGE CAPTURING LENS ASSEMBLY
    • 图像捕获镜头组件
    • US20120287515A1
    • 2012-11-15
    • US13191086
    • 2011-07-26
    • Chih-Wen HsuMing-Ta Chou
    • Chih-Wen HsuMing-Ta Chou
    • G02B13/18G02B9/60
    • G02B13/0045
    • This invention provides an image capturing lens assembly in order from an object side to an image side comprising five lens elements with refractive power: a first lens element with negative refractive power having a convex object-side surface and a concave image-side surface, a second lens element with positive refractive power having a convex image-side surface, a third lens element with positive refractive power having a convex object-side surface, a fourth lens element with negative refractive power having a convex object-side surface and a concave image-side surface; and a fifth lens element with positive refractive power. By such arrangement, sufficient field of view is provided, and the aberration of the lens assembly is corrected for obtaining higher image resolution.
    • 本发明提供了一种从物体侧到像侧的从摄像侧依次包括具有屈光力的五个透镜元件的图像拍摄透镜组件:具有凸起物体侧表面和凹面像侧表面的具有负屈光力的第一透镜元件, 具有凸像侧面的正屈光力的第二透镜元件,具有凸物侧表面的正屈光力的第三透镜元件,具有凸物侧表面的负屈光力的第四透镜元件和凹面像 侧表面 以及具有正屈光力的第五透镜元件。 通过这种布置,提供足够的视场,并且校正透镜组件的像差以获得更高的图像分辨率。