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    • 61. 发明申请
    • OPTICAL TOUCH DISPLAY DEVICE
    • 光触摸显示设备
    • US20110261015A1
    • 2011-10-27
    • US12916835
    • 2010-11-01
    • CHIH-HUNG LUWei-Chung WangHui-Hsuan Chen
    • CHIH-HUNG LUWei-Chung WangHui-Hsuan Chen
    • G06F3/042
    • G06F3/0421
    • An optical touch device includes a display panel and at least a light emitting and receiving unit. The display panel includes a transparent substrate having a touch surface and a plurality of side surfaces adjacent to the touch surface. At least one of the side surfaces is a first light incidence surface and at least one of the side surfaces is a first light emitting surface. Each light emitting and receiving unit includes a linear light source and a light sensing component. The linear light source is disposed beside the first light incidence surface and is configured for providing optical signals into the transparent substrate. The light sensing component is disposed beside the first light emitting surface. The light sensing component is configured for receiving the optical signals from the linear light source. The optical touch display device has advantages of low cost.
    • 光学触摸装置包括显示面板和至少一个发光和接收单元。 显示面板包括具有触摸表面和与触摸表面相邻的多个侧表面的透明基板。 侧表面中的至少一个是第一光入射表面,并且至少一个侧表面是第一发光表面。 每个发光和接收单元包括线性光源和光感测部件。 线性光源设置在第一光入射面旁边,并且被配置为将光信号提供到透明基板中。 光感测部件设置在第一光发射表面旁边。 光感测部件被配置为从线性光源接收光信号。 光触摸显示装置具有成本低的优点。
    • 62. 发明申请
    • OPTICAL RANGING SENSOR AND ELECTRONIC EQUIPMENT
    • 光学测距传感器和电子设备
    • US20110194097A1
    • 2011-08-11
    • US12978700
    • 2010-12-27
    • Akifumi YAMAGUCHIHideo WadaMasaru KuboJason Lu/ Chih-Hung Lu
    • Akifumi YAMAGUCHIHideo WadaMasaru KuboJason Lu/ Chih-Hung Lu
    • G01C3/08
    • G01C3/085
    • An optical ranging sensor includes a light emitting unit for projecting a light beam on an object to be measured, a light receiving unit on which a light spot of reflected light of the light beam from the object is formed, and a processing circuit unit for processing output signals from the light receiving unit and detecting a distance to the object. The light receiving unit includes an effective light receiving part having light receiving cells arranged in matrix form in a first direction in which a position of the light spot moves as the object moves along a direction of an optical axis of the light emitting unit, and in a second direction orthogonal to the first direction. A size of the effective light receiving part in the second direction is not smaller than a radius of the light spot but not larger than a diameter thereof.
    • 一种光学测距传感器,包括:用于将光束投射在待测物体上的发光单元,形成有来自物体的光束的反射光的光点的光接收单元;以及处理电路单元, 从光接收单元输出信号并检测到物体的距离。 光接收单元包括有效光接收单元,该有效光接收单元具有沿着第一方向排列成矩阵形状的光接收单元,其中当物体沿着发光单元的光轴方向移动时,光点的位置移动, 与第一方向正交的第二方向。 第二方向上的有效光接收部的尺寸不小于光斑的半径,但不大于其直径。
    • 63. 发明授权
    • Multimedia data communication method and system
    • 多媒体数据通信方法及系统
    • US07917173B2
    • 2011-03-29
    • US11453158
    • 2006-06-13
    • Chih-Hung LuChien-Chang PanCho-Yi Lin
    • Chih-Hung LuChien-Chang PanCho-Yi Lin
    • H04B1/38H04M1/00
    • H04N1/32561H04N1/00307H04N1/32571H04N1/32593H04N1/32603H04N2101/00
    • The present invention discloses a multimedia processing system for communicating data among a baseband module, an image sensor module, and at least one display module in a wireless mobile phone. The multimedia processing system further comprises a serial baseband interface, an image sensor interface, and a display interface which transmits and receives different kinds of data, including processing data, image data and display data, among each others. Several hardware implementations for the serial interface, including a serial peripheral interface and a universal asynchronous receiver and transmitter interface, are disclosed according to certain embodiments of the invention. Moreover, another embodiment comprises a bypass mechanism which bypasses signals to other components because under certain circumstances it is reasonable to bypass incoming data signals directly from one device to another. For example, to accelerate the image data transfer which has a changeless data structure, a direct bypass data transfer is preferable in order to improve the data transfer speed. Furthermore, the present invention also discloses another embodiment to provide a method for communicating among a baseband module, an image sensor module, and at least one display module in a wireless mobile phone. The method performs transmitting and receiving data among the mentioned modules and other components via at least one serial interface scheme.
    • 本发明公开了一种用于在无线移动电话中的基带模块,图像传感器模块和至少一个显示模块之间传送数据的多媒体处理系统。 多媒体处理系统还包括串行基带接口,图像传感器接口和显示接口,其中发送和接收包括处理数据,图像数据和显示数据在内的不同种类的数据。 根据本发明的某些实施例,公开了用于串行接口的几种硬件实现,包括串行外设接口和通用异步接收器和发送器接口。 此外,另一个实施例包括旁路机构,其旁路信号到其他部件,因为在某些情况下,将输入的数据信号直接从一个设备旁路到另一个设备是合理的。 例如,为了加速具有不变数据结构的图像数据传送,为了提高数据传送速度,优选直接旁路数据传送。 此外,本发明还公开了提供一种用于在无线移动电话中在基带模块,图像传感器模块和至少一个显示模块之间进行通信的方法的另一实施例。 该方法通过至少一个串行接口方案在所提及的模块和其他组件之间执行发送和接收数据。
    • 67. 发明授权
    • Method and buffer device for data stream transformation
    • 用于数据流转换的方法和缓冲器
    • US06924809B2
    • 2005-08-02
    • US10758746
    • 2004-01-13
    • Tzu-Yi ChaoChih-Hung Lu
    • Tzu-Yi ChaoChih-Hung Lu
    • H04N19/423G06F17/30G09G5/39H04N7/24H04N19/00H04N19/426
    • H04N19/423H04N19/60H04N19/61
    • In a method and buffer device for data stream transformation, a buffer memory is configured into addressable locations for writing an input data stream therein, a label memory is used for storing write and read labeled positions, and a buffer controller is connected to the buffer memory and the label memory. The buffer controller controls the writing of the input data stream into the addressable locations of the buffer memory according to the write labeled positions and a write data sequence, calculates the read labeled positions corresponding to the write labeled positions in accordance with the write data sequence and a read data sequence, updates the read labeled positions stored in the label memory, and reads data from the addressable locations of the buffer memory with reference to the read labeled positions stored in the label memory so as to generate an output data stream.
    • 在用于数据流变换的方法和缓冲装置中,将缓冲存储器配置成可寻址位置,用于在其中写入输入数据流,标签存储器用于存储写入和读取标记位置,并且缓冲器控制器连接到缓冲存储器 和标签记忆。 缓冲器控制器根据写入标记位置控制输入数据流写入缓冲存储器的可寻址位置和写入数据序列,根据写入数据序列计算与写入标记位置对应的读取的标记位置, 读取数据序列更新存储在标签存储器中的读取的标记位置,并且参考存储在标签存储器中的读取的标记位置从缓冲存储器的可寻址位置读取数据,以便生成输出数据流。
    • 69. 发明授权
    • Variable size sensing system and method for redefining size of sensing area thereof
    • 可变尺寸感测系统和方法,用于重新定义其感测区域的尺寸
    • US08976159B2
    • 2015-03-10
    • US12479836
    • 2009-06-07
    • Cho-Yi LinHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • Cho-Yi LinHsin-Chi ChengChih-Hung LuYi-Hsien Ko
    • G06F3/041G06F3/042
    • G06F3/0421
    • In a variable size sensing system and a method for redefining the size of a sensing area thereof, the sensing system includes four elements, a mark and two image sensing devices. The four elements are consecutively connected and thereby forming a frame. Two of the four elements have variable lengths so as to adjust the size of the frame. The inner edge of the frame defines a sensing area of a parallelogram shape. The sensing system has a first and a second working mode. The sensing area has a first size and a second size when the sensing system is in the first working mode and the second working mode respectively, wherein the first size is predetermined and smaller than the second size. The mark is used to mark a fixed length. When the sensing system is changed from the first working mode to the second working mode, the mark sensed by the image sensing devices can be utilized to redefine the size of the sensing area in the sensing system.
    • 在可变尺寸感测系统和用于重新定义其感测区域的尺寸的方法中,感测系统包括四个元件,标记和两个图像感测装置。 四个元件连续地连接,从而形成一个框架。 四个元件中的两个具有可变长度,以便调整框架的尺寸。 框架的内边缘限定了平行四边形形状的感测区域。 感测系统具有第一和第二工作模式。 当感测系统分别处于第一工作模式和第二工作模式时,感测区域具有第一尺寸和第二尺寸,其中第一尺寸预定并小于第二尺寸。 标记用于标记固定长度。 当感测系统从第一工作模式改变到第二工作模式时,由感光装置感测的标记可以用于重新定义传感系统中感测区域的尺寸。