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    • 2. 发明授权
    • Distance measurement system and method
    • 距离测量系统和方法
    • US09127930B2
    • 2015-09-08
    • US13224481
    • 2011-09-02
    • Shu-Sian YangRen-Hau GuHsin-Chia ChenSen-Huang Huang
    • Shu-Sian YangRen-Hau GuHsin-Chia ChenSen-Huang Huang
    • H04N7/18G01B11/02G01S17/46
    • G01B11/026G01S17/46
    • A distance measurement method comprising: projecting a light beam having a speckle pattern to at least one reference plane to show a plurality of images with the speckle pattern on the at least one reference plane. The speckle pattern has a plurality of speckles, so as to capture the image with the speckle pattern on the reference plane to obtain a plurality of reference image information. When the object enters the area illuminated by a light source module, an image with the speckle pattern on a surface of an object is captured to obtain an object image information. Then, a plurality of brightness relationships among each of the speckles with adjacent speckles rounding each speckle are computed according to the reference image and the object image information to obtain relative brightness information of each speckle, which is used to compute position of the object.
    • 一种距离测量方法,包括:将具有斑点图案的光束投射到至少一个参考平面,以在至少一个参考平面上显示具有斑点图案的多个图像。 斑点图案具有多个斑点,以便在参考平面上以斑点图案捕获图像,以获得多个参考图像信息。 当物体进入由光源模块照亮的区域时,捕获在物体表面上具有斑纹图案的图像以获得对象图像信息。 然后,根据参考图像和对象图像信息计算每个散斑与具有相邻散斑的每个斑点之间的多个亮度关系,以获得用于计算对象位置的每个散斑的相对亮度信息。
    • 5. 发明授权
    • Distance measurement method and system, and processing software thereof
    • 距离测量方法和系统及其处理软件
    • US08675921B2
    • 2014-03-18
    • US13224411
    • 2011-09-02
    • Shu-Sian YangRen-Hau GuHsin-Chia ChenSen-Huang Huang
    • Shu-Sian YangRen-Hau GuHsin-Chia ChenSen-Huang Huang
    • G06K9/00
    • G01B11/14G01B11/002G01S17/08G06K9/64
    • A distance measurement system and method are provided. The distance measurement method first projects a light beam with a speckle pattern to reference planes and an object to allow the reference planes and a surface of the object each have an image of the speckle pattern, the speckle pattern having a plurality of speckles. Next, images of the speckle pattern reflected by the reference planes are captured to generate reference image information, and an image of the speckle pattern reflected by the surface of the object is captured to generate an object image information. A processing module which may be a processing software can compare the object image information with the reference image information to obtain several similarity scores. If the most the most similarity score is greater than a threshold value, the processing module identifies the corresponding reference plane, thereby computing the position of the object.
    • 提供了距离测量系统和方法。 距离测量方法首先将具有散斑图案的光束投射到参考平面,并且使对象允许参考平面和物体的表面各自具有斑点图案的图像,斑点图案具有多个斑点。 接下来,捕获由参考平面反射的斑纹图案的图像以生成参考图像信息,并且捕获由对象的表面反射的斑纹图案的图像以生成对象图像信息。 可以是处理软件的处理模块可以将对象图像信息与参考图像信息进行比较,以获得多个相似度分数。 如果最相似性得分大于阈值,则处理模块识别对应的参考平面,由此计算对象的位置。
    • 8. 发明申请
    • HUMAN FACE RECOGNITION METHOD AND APPARATUS
    • 人脸识别方法和装置
    • US20130114852A1
    • 2013-05-09
    • US13541050
    • 2012-07-03
    • Ren-Hau GUYu-Hao HUANGYu-Han CHENMing-Tsan KAOSen-Huang HUANG
    • Ren-Hau GUYu-Hao HUANGYu-Han CHENMing-Tsan KAOSen-Huang HUANG
    • G06K9/62
    • G06K9/00234
    • A human face recognition method and apparatus are provided. A processor of the human face recognition apparatus calculates red, green, and blue component statistic information for each of a plurality of human face images. The processor uses an independent component analysis algorithm to analyze component statistic information of two colors and derive a piece of first component information and a piece of second component information. The processor transforms the pieces of first component information and second component information into a frequency domain to derive a piece of first frequency-domain information and a piece of second frequency-domain information. The processor calculates an energy value of the first frequency-domain information within a frequency range. The energy value is used to decide whether the human face images are captured from a human being.
    • 提供人脸识别方法和装置。 人脸识别装置的处理器针对多个人脸图像中的每一个计算红,绿和蓝分量统计信息。 处理器使用独立的分量分析算法来分析两种颜色的分量统计信息,并得到一条第一分量信息和一条第二分量信息。 处理器将第一分量信息和第二分量信息转换成频域以导出一段第一频域信息和一条第二频域信息。 处理器计算频率范围内的第一频域信息的能量值。 能量值用于确定人脸图像是否从人类获取。
    • 10. 发明申请
    • CHIP PACKAGE STRUCTURE AND CHIP PACKAGING PROCESS
    • 芯片包装结构和芯片包装过程
    • US20120168945A1
    • 2012-07-05
    • US13210485
    • 2011-08-16
    • Wei-Chung WangSen-Huang Huang
    • Wei-Chung WangSen-Huang Huang
    • H01L21/78H01L23/498
    • H01L23/3114H01L21/561H01L24/19H01L24/20H01L27/14618H01L27/14683H01L2224/12105H01L2924/14H01L2924/00
    • A chip package structure includes a silicon substrate, a sensing component, a metal circuit layer, a first insulating layer and a conductive metal layer. The silicon substrate has opposite first and second surfaces. The sensing component is disposed on the first surface. The metal circuit layer is disposed on the first surface and electrically connected to the sensing component. The first insulating layer covers the second surface and has a first through hole to expose a portion of the second surface. The conductive metal layer is disposed on the first insulating layer and includes first leads and a second lead. The first leads are electrically connected to the metal circuit layer. The second lead is filled in the first through hole to electrically connect to the silicon substrate and one of the first leads. A chip packaging process for fabricating the chip package structure is also provided.
    • 芯片封装结构包括硅衬底,感测部件,金属电路层,第一绝缘层和导电金属层。 硅衬底具有相对的第一和第二表面。 感测部件设置在第一表面上。 金属电路层设置在第一表面上并电连接到感测部件。 第一绝缘层覆盖第二表面并且具有第一通孔以暴露第二表面的一部分。 导电金属层设置在第一绝缘层上,并且包括第一引线和第二引线。 第一引线电连接到金属电路层。 第二引线被填充在第一通孔中以电连接到硅衬底和第一引线之一。 还提供了用于制造芯片封装结构的芯片封装工艺。