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    • 41. 发明授权
    • Computer monitoring system and monitoring method
    • 计算机监控系统及监控方法
    • US07631129B2
    • 2009-12-08
    • US11962118
    • 2007-12-21
    • Ming-Chih HsiehKuang-Lung Ko
    • Ming-Chih HsiehKuang-Lung Ko
    • G06F13/00
    • G06F11/30
    • An exemplary computer monitoring system includes a central processing unit (CPU) connected to a computer, a first microprocessor, a second microprocessor, and a select switch connected to a terminal device. The CPU is connected to the select switch via the first microprocessor and the second microprocessor respectively for transmitting data. When one of the first and second microprocessors is halted, the other one of the first and second microprocessors is selected by the select switch under the control of the CPU. The CPU sends a reset signal to the halted microprocessor to reset it. A monitoring method using the computer monitoring system for improving stability and reliability of the computer monitoring system is disclosed.
    • 示例性的计算机监视系统包括连接到计算机的中央处理单元(CPU),第一微处理器,第二微处理器和连接到终端设备的选择开关。 CPU经由第一微处理器和第二微处理器分别连接到选择开关以发送数据。 当第一和第二微处理器中的一个被暂停时,第一和第二微处理器中的另一个在CPU的控制下由选择开关选择。 CPU将复位信号发送到停止的微处理器以将其复位。 公开了一种使用计算机监控系统提高计算机监控系统的稳定性和可靠性的监控方法。
    • 42. 发明申请
    • Touch Display Device and Method of Determining Touch Mode Thereof
    • 触摸显示设备及确定其触摸模式的方法
    • US20090109192A1
    • 2009-04-30
    • US12241161
    • 2008-09-30
    • Kuan-Lin LiuMing-Chih HsiehChu-Hui Lin
    • Kuan-Lin LiuMing-Chih HsiehChu-Hui Lin
    • G06F3/045
    • G06F3/045G06F3/0416
    • The present invention relates to a touch display device and a method of determining touch mode thereof. The touch display device comprises a control module, a resistance touch panel, and a measuring element. The resistance touch panel comprises a first conductive layer and a second conductive layer. The method comprises: pressing the first conductive layer to contact the second conductive layer; measuring the voltage of the second conductive layer to obtain a first voltage value and a second voltage value; activating a touch pen operation mode if a difference between the first voltage value and the second voltage value is smaller than a predicted error value; and activating a finger operation mode if the difference between the first voltage value and the second voltage value is larger than the predicted error value.
    • 本发明涉及触摸显示装置及其触摸模式的确定方法。 触摸显示装置包括控制模块,电阻触摸面板和测量元件。 电阻触摸面板包括第一导电层和第二导电层。 该方法包括:按压第一导电层以接触第二导电层; 测量第二导电层的电压以获得第一电压值和第二电压值; 如果第一电压值和第二电压值之间的差小于预测误差值,则激活触摸笔操作模式; 以及如果所述第一电压值和所述第二电压值之间的差大于所述预测误差值,则激活手指操作模式。
    • 49. 发明授权
    • System for connecting electronic devices
    • 用于连接电子设备的系统
    • US08433837B2
    • 2013-04-30
    • US12827501
    • 2010-06-30
    • Ming-Chih Hsieh
    • Ming-Chih Hsieh
    • G06F13/00
    • G06F13/4072G06F2213/0016
    • A system includes a master device and a number of slave devices connected to the master device via a bus. Each slave device includes a control unit, a switch unit, and a lock unit. When a new slave device is connected to the system, the control unit of the new slave device transmits a request signal to the master device. The master device detects whether the master device is communicating with the already connected slave devices after receiving the request signal, and outputs an enable signal to the new slave device according to the detected result. The control unit of the new slave device controls the lock unit of the new slave device to turn on and turn off the switch unit of the new slave device according to the enable signal.
    • 系统包括主设备和通过总线连接到主设备的多个从设备。 每个从设备包括控制单元,开关单元和锁定单元。 当新的从设备连接到系统时,新的从设备的控制单元向主设备发送请求信号。 主设备在接收到请求信号后,检测主设备是否与已连接的从设备进行通信,并根据检测结果向新的从设备输出使能信号。 新从设备的控制单元控制新从设备的锁定单元根据使能信号打开并关闭新从设备的开关单元。
    • 50. 发明授权
    • Auto iris lens calibration device and method
    • 自动光圈镜头校准装置及方法
    • US08411148B2
    • 2013-04-02
    • US13171471
    • 2011-06-29
    • Ming-Chih Hsieh
    • Ming-Chih Hsieh
    • H04N17/00H04N5/238
    • H04N17/002
    • An iris calibration device includes one or more groups of light sources, a microcontroller (MCU), and a display. The MCU connects to a system on chip (SoC) of a digital camera device. The digital camera device includes an iris lens. The MCU receives an “on” command or an “off” command from the SoC. The MCU turns on or turn off a group of light sources according to the “on” command or the “off” command The SoC adjusts the iris lens according to an average luminance of the one or more light sources sensed by a sensor of the digital camera device.
    • 虹膜校准装置包括一组或多组光源,微控制器(MCU)和显示器。 MCU连接到数码相机设备的片上系统(SoC)。 数码相机装置包括一个光圈镜头。 MCU从SoC接收到on命令或者off命令。 MCU根据on命令或off命令打开或关闭一组光源SoC根据数字照相机设备的传感器感测到的一个或多个光源的平均亮度来调节光圈镜头。