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    • 11. 发明授权
    • Micro-lens module
    • 微型镜头模块
    • US08547648B2
    • 2013-10-01
    • US12890115
    • 2010-09-24
    • Chuan-Hui YangNai-Yuan Tang
    • Chuan-Hui YangNai-Yuan Tang
    • G02B13/18G02B9/06
    • G02B13/0025G02B13/006
    • A micro-lens module including a first lens, a second lens, and an aperture stop is provided. The first lens is disposed between an object side and an image side, wherein a first surface of the first lens facing the object side is an aspheric surface, and the curvature radius of the aspheric surface is R1. The second lens is disposed between the first lens and the image side, wherein a second surface of the second lens facing the image side is an aspheric surface, and the curvature radius of the aspheric surface is R2. The aperture stop is disposed between the first lens and the second lens, wherein the distance from the first surface to the aperture stop is d1, and the distance from the second surface to the aperture stop is d2. The micro-lens module satisfies 6>d2/d1>2.5 and −2.5
    • 提供了包括第一透镜,第二透镜和孔径光阑的微透镜模块。 第一透镜设置在物体侧和像侧之间,其中第一透镜的面向物体侧的第一表面是非球面,并且非球面的曲率半径为R1。 第二透镜设置在第一透镜和图像侧之间,其中第二透镜的朝向像侧的第二表面是非球面,并且非球面的曲率半径为R2。 孔径光阑设置在第一透镜和第二透镜之间,其中从第一表面到孔径光阑的距离为d1,并且从第二表面到孔径光阑的距离为d2。 微透镜模块满足6> d2 / d1> 2.5和-2.5
    • 12. 发明申请
    • STRUCTURE OF A WAFER LEVEL SUBSTRATE FOR CARRYING LIGHT EMITTING DEVICES
    • 用于承载发光装置的水平基底的结构
    • US20120319292A1
    • 2012-12-20
    • US13161297
    • 2011-06-15
    • Sin-Hua HoNai-Yuan TangChuan-Ching Hsueh
    • Sin-Hua HoNai-Yuan TangChuan-Ching Hsueh
    • H01L23/48
    • H01L33/486H01L33/60H01L2924/0002H01L2933/0033H01L2924/00
    • Structure and fabricating method of a wafer level substrate for carrying light emitting devices are provided in present invention. The wafer level silicon substrate structure includes a first substrate and a second substrate. A metal line is constructed on a surface of the first substrate according to a predetermined pattern. The predetermined pattern is divided into a plurality of first portions and a plurality of second portions. The second substrate is adhered to the surface of the first substrate. The second substrate has a plurality of through holes. Each of the through holes is respectively corresponding to the first portions. Each of the first portions is adapted to electrically connect with a light emitting device. The provided wafer level substrate structure configured with light emitting devices is capable of providing uniform light output, having better light extraction property, improving process yield, higher production yield and achieving product uniformity.
    • 在本发明中提供了用于承载发光器件的晶片级衬底的结构和制造方法。 晶片级硅衬底结构包括第一衬底和第二衬底。 根据预定图案,在第一基板的表面上构造金属线。 预定图案被分成多个第一部分和多个第二部分。 第二基板粘附到第一基板的表面。 第二基板具有多个通孔。 每个通孔分别对应于第一部分。 每个第一部分适于与发光装置电连接。 配置有发光器件的提供的晶片级衬底结构能够提供均匀的光输出,具有更好的光提取性能,提高工艺产量,更高的产量和实现产品均匀性。
    • 14. 发明授权
    • Compact image pickup lens
    • 紧凑型摄像镜头
    • US07443614B2
    • 2008-10-28
    • US11691338
    • 2007-03-26
    • Nai-Yuan Tang
    • Nai-Yuan Tang
    • G02B9/12
    • G02B13/0035G02B9/12
    • A compact image pickup lens includes, in order from an object side to an image side, a first lens element G1 of positive refractive power, a second lens element G2 of positive refractive power, and a third lens element G3 of negative refractive power. The first lens element has a meniscus shape with its convex surface L1 on the object side. The second lens element also has a meniscus shape but with its convex surface L4 on the image side. Each of the first, second and third lens elements has at least one aspheric surface. An aperture STO is further positioned in front of the second lens element. The image pickup lens satisfies the following conditions: 0.85≦(v1/v2)≦1.15 and 0.85≦(v2/v3)≦1.25, where v1 is the Abbe number at the d-line (587.5618 nm) of the first lens element, v2 is the Abbe number at the d-line (587.5618 nm) of the second lens element, and v3 is the Abbe number at the d-line (587.5618 nm) of the third lens element.
    • 紧凑型图像拾取透镜从物体侧到像侧依次包括正屈光力的第一透镜元件G 1,正折光力的第二透镜元件G 2和负折射率的第三透镜元件G 3 功率。 第一透镜元件具有在物体侧上具有凸面L 1的弯液面形状。 第二透镜元件也具有弯月面形状,但是在像侧上具有凸面L 4。 第一,第二和第三透镜元件中的每一个具有至少一个非球面。 孔STO进一步定位在第二透镜元件的前面。 图像拾取透镜满足以下条件:0.85 <=(v 1 / v 2)<= 1.15和0.85 <=(v 2 / v 3)<= 1.25,其中v 1是d线上的阿贝数 587.5618nm),v 2是第二透镜元件的d线(587.5618nm)处的阿贝数,v 3是第三透镜的d线(587.5618nm)处的阿贝数 元件。
    • 15. 发明授权
    • Micro-lens module
    • 微型镜头模块
    • US08351137B2
    • 2013-01-08
    • US13045937
    • 2011-03-11
    • Nai-Yuan Tang
    • Nai-Yuan Tang
    • G02B9/04G02B9/06G02B9/12
    • G02B13/005G02B13/003G02B13/0035G02B13/006
    • A micro-lens module including a plurality of lens groups is provided. The lens groups are disposed between an object side and an image side, wherein at least one lens group in the lens groups is composed by a complex lens. The complex lens includes a plurality of lenses, the lenses are adhered to each other, and an index of at least one lens in the lenses is different from indexes of the other lens in the lenses. The provided micro-lens module has an improved imaging quality and a miniaturized size while considering a manufacturing convenience.
    • 提供了包括多个透镜组的微透镜模块。 透镜组设置在物体侧和像侧之间,其中透镜组中的至少一个透镜组由复合透镜构成。 复透镜包括多个透镜,透镜彼此粘合,并且透镜中的至少一个透镜的折射率与透镜中的另一个透镜的指标不同。 所提供的微型透镜模块在考虑制造方便的同时具有改进的成像质量和小型化尺寸。
    • 16. 发明申请
    • WIDE-ANGLE LENS
    • 宽角镜头
    • US20080158695A1
    • 2008-07-03
    • US11961180
    • 2007-12-20
    • Nai-yuan Tang
    • Nai-yuan Tang
    • G02B9/60
    • G02B13/04
    • A wide-angle lens includes, in order from the object side to the image side, a first lens element of negative refractive power, a second lens element of positive refractive power, a third lens element of positive refractive power and a cemented doublet element of positive refractive power consisting of a fourth lens element and a fifth lens element cemented together. The combined focal length of the second, third, fourth and fifth lens elements satisfies one specified condition, which allows the wide-angle lens to be effectively shortened and makes the construction thereof compact.
    • 广角透镜从物体侧到像侧依次包括负屈光力的第一透镜元件,正屈光力的第二透镜元件,正屈光力的第三透镜元件和粘合双曲面元素 正屈光力由第四透镜元件和第五透镜元件粘合在一起构成。 第二,第三,第四和第五透镜元件的组合焦距满足一个特定条件,这允许广角镜头被有效地缩短并使其结构紧凑。