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    • 2. 发明专利
    • Optical ranging sensor device and electronic apparatus
    • 光学测距传感器和电子设备
    • JP2011163901A
    • 2011-08-25
    • JP2010026599
    • 2010-02-09
    • Pixart Imaging IncSharp Corpシャープ株式会社ピックスアート・イメージング・インコーポレイテッドPixArt Imaging Inc.
    • YAMAGUCHI AKISHIWADA HIDEOKUBO MASARUJASON LU
    • G01C3/06G01S17/48
    • G01C3/085
    • PROBLEM TO BE SOLVED: To provide an optical ranging sensor device that achieves miniaturization, high performance, low power consumption, high-speed response, and low cost.
      SOLUTION: A light receiving element 13 with a position detection light receiving part, a processing circuit part and a driving circuit part mounted thereon is formed of one chip by a structure in which the light emitting element 13 is formed on the same plane as a light emitting element 12, and the light emitting element 12 and the light receiving element 13 are formed in the same package, by mounting the light emitting element 12 and the light emitting element 13 on the same leadframe 11, and integrally molding them from translucent resin 14a, 14b and light shielding resin 15. Thus, the production cost is reduced by reducing the size of the optical ranging sensor. Further, a valid light receiving part of the position detection light receiving part is designed to be smaller than a designed size of a light spot. Thus, the production cost is further reduced by reducing the size of the chip of the light receiving part 13. In addition, the performance is improved by reducing the response time and power consumption, and increasing the S/N ratio upon signal processing, by eliminating an invalid light receiving part of the position detection light receiving part and unnecessary signals from the invalid light receiving part.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供实现小型化,高性能,低功耗,高速响应和低成本的光学测距传感器装置。 解决方案:具有位置检测光接收部分的光接收元件13,安装在其上的处理电路部分和驱动电路部分由一个芯片形成,其中发光元件13形成在同一平面上 作为发光元件12,通过将发光元件12和发光元件13安装在同一引线框架11上,将发光元件12和光接收元件13形成在相同的封装中,并将它们从 半透明树脂14a,14b和遮光树脂15.因此,通过减小光学测距传感器的尺寸来降低生产成本。 此外,位置检测光接收部分的有效光接收部分被设计为小于光点的设计尺寸。 因此,通过减小光接收部分13的芯片的尺寸,进一步降低了制造成本。此外,通过减少响应时间和功耗以及通过信号处理来提高S / N比来提高性能,通过 消除位置检测光接收部分的无效光接收部分和来自无效光接收部分的不必要的信号。 版权所有(C)2011,JPO&INPIT
    • 4. 发明专利
    • Optical touch display
    • 光学触摸显示
    • JP2011014120A
    • 2011-01-20
    • JP2009201381
    • 2009-09-01
    • Pixart Imaging Inc原相科技股▲ふん▼有限公司
    • KO YI-HSIENLIN CHO-YI
    • G06F3/042G06F3/041
    • G06F3/0428
    • PROBLEM TO BE SOLVED: To provide an optical touch display which is low in manufacturing cost and is excellent in the stability of sensitivity.SOLUTION: The optical touch display includes a display panel, a light source module, and a sensing module. The display panel has a first side, a second side adjacent to the first side, a third edge adjacent to the second side, and a fourth side adjacent to the third side. The light source module is disposed beside the first side and the second side of the display panel and provides first parallel light which impinges from the first side of the display panel and is emitted from the third side and passes a display surface of the display panel, and second parallel light which impinges from the second side of the display panel and is emitted from the fourth side and passes the display surface of the display panel. The sensing module is disposed beside the third side and the fourth side of the display panel and senses the first parallel light and the second parallel light.
    • 要解决的问题:提供制造成本低且灵敏度稳定性优异的光学触摸显示器。解决方案:光学触摸显示器包括显示面板,光源模块和感测模块。 显示面板具有第一侧,与第一侧相邻的第二侧,与第二侧相邻的第三边缘和与第三侧相邻的第四侧。 光源模块设置在显示面板的第一侧和第二侧旁边,并提供从显示面板的第一侧入射的第一平行光,并从第三侧发射并通过显示面板的显示面, 以及第二平行光,其从显示面板的第二面入射并从第四面发射并通过显示面板的显示面。 感测模块​​设置在显示面板的第三侧和第四侧旁边,并感测第一平行光和第二平行光。
    • 5. 发明专利
    • Sensor system and method for detecting position of pointer
    • 用于检测指针位置的传感器系统和方法
    • JP2011003173A
    • 2011-01-06
    • JP2009213067
    • 2009-09-15
    • Pixart Imaging Inc原相科技股▲ふん▼有限公司
    • CHEN HSIN-CHIASU TZUNG-MINLU CHIH-HUNGLIN CHO-YI
    • G06F3/041G06F3/033G06F3/038
    • PROBLEM TO BE SOLVED: To provide a sensor system capable of detecting a position of a pointer no matter where in a sensing area the pointer is located, and a method for detecting the position of the pointer.SOLUTION: The sensor system comprises a sensing area 116, a reflecting mirror disposed at a dotted line 202, an image sensing device 110, and a processing circuit. The reflecting mirror indicates a mirror image of the pointer 102 that approaches the sensing area. When the pointer approaches the sensing area, the image sensing device senses the pointer and the mirror image. When the pointer approaches the sensing area, the processing circuit calculates a coordinate value of the pointer from the image sensed by the image sensing device and a planned size of the pointer. Here, the radius of a circular orthogonal projection of the pointer formed in the sensing area is the planned size of the pointer.
    • 要解决的问题:提供一种能够检测指示器的位置的传感器系统,而不管指示器位于感测区域的哪里,以及用于检测指针位置的方法。解决方案:传感器系统包括感测区域 116,设置在虚线202处的反射镜,图像感测装置110和处理电路。 反射镜指示接近感测区域的指示器102的镜像。 当指示器接近感测区域时,图像感测装置感测指针和镜像。 当指示器接近感测区域时,处理电路根据图像感测装置感测到的图像和指针的规划大小来计算指针的坐标值。 这里,形成在感测区域中的指针的圆形正交投影的半径是指针的计划大小。
    • 9. 发明专利
    • Image recognition method capable of recognizing a plurality of objects without recording entire image
    • 没有记录整体图像的能够识别多个对象的图像识别方法
    • JP2006313543A
    • 2006-11-16
    • JP2006122821
    • 2006-04-27
    • Pixart Imaging Inc原相科技股▲ふん▼有限公司
    • CHEN MEI-JU
    • G06T1/20G06T7/60
    • G06K9/50
    • PROBLEM TO BE SOLVED: To provide an image recognition method capable of recognizing a plurality of objects without using an image buffer.
      SOLUTION: The method includes: (A) successively acquiring pixel values of each row sequentially in the image; (B) determining a start point of a newly detected image segment located in a currently inspected row of the image; (C) accumulating information of the newly detected image segment point-by-point starting from the start point; (D) determining an end point of the newly detected image segment; (E)identifying the object to which the newly detected image segment belongs according to a spatial correlation between the newly detected image segment and a previously detected image segment in an adjacent previously inspected row of the image; (F) collecting accumulated information of each object to which the image segment belongs; (G) identifying the image segment of the next object contained in the row; and (H) reading all pixel values contained in the image and recognizing each object in the image.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种能够在不使用图像缓冲器的情况下识别多个对象的图像识别方法。 解决方案:该方法包括:(A)在图像中连续获取每行的像素值; (B)确定位于所述图像的当前检查行中的新检测到的图像段的起始点; (C)从起点开始逐点累积新检测到的图像段的信息; (D)确定新检测的图像段的终点; (E)根据新检测到的图像段与先前检测到的图像的相邻行中的先前检测到的图像段之间的空间相关性来识别新检测到的图像段所属的对象; (F)收集图像段所属的每个对象的累积信息; (G)识别包含在行中的下一个对象的图像段; 和(H)读取图像中包含的所有像素值并识别图像中的每个对象。 版权所有(C)2007,JPO&INPIT