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    • 15. 发明申请
    • Radio-frequency mouse
    • 射频鼠标
    • US20110175812A1
    • 2011-07-21
    • US12929297
    • 2011-01-13
    • Chun-Nan HsienRuei-Chen MaoChien-Lung LuYao-Hung ChuangWen-Chang Chang
    • Chun-Nan HsienRuei-Chen MaoChien-Lung LuYao-Hung ChuangWen-Chang Chang
    • G06F3/033
    • H02J7/025G06F1/26G06F3/03543H02J17/00H02J50/20
    • A radio-frequency mouse is used for receiving an electromagnetic wave transmitted by an electronic device. The radio-frequency mouse includes a RF transceiver, a sensor, a micro-controller, a battery, and a power management circuit. The RF transceiver receives and converts an electromagnetic wave into a RF power. The sensor outputs an operation signal according to an operating condition of the RF mouse. The micro-controller transfers an operation signal to the RF transceiver, and the RF transceiver transmits the operation signal to the electronic device. The power management circuit receives the RF power, and selectively supplies the RF power or the battery power of the battery to the sensor and the micro-controller according to RF power. Thus, when the RF power is higher than a preset value, the RF mouse is supplied with power, thereby saving the battery power of the RF mouse and improving a battery life of the RF mouse.
    • 射频鼠标用于接收由电子设备发送的电磁波。 射频鼠标包括RF收发器,传感器,微控制器,电池和电源管理电路。 RF收发器接收并将电磁波转换成RF功率。 传感器根据RF鼠标的工作状态输出操作信号。 微控制器将操作信号传送到RF收发器,RF收发器将操作信号发送到电子设备。 功率管理电路接收RF功率,并且根据RF功率选择性地将电池的RF功率或电池电力提供给传感器和微控制器。 因此,当RF功率高于预设值时,向RF鼠标提供电力,从而节省了RF鼠标的电池电量并提高了RF鼠标的电池寿命。
    • 18. 发明申请
    • Computer input device with time-difference-type bi-coordinate output, time-difference-type data input processing method, and sensor thereof
    • 具有时差型双坐标输出的计算机输入装置,时差型数据输入处理方法及其传感器
    • US20100073286A1
    • 2010-03-25
    • US12382505
    • 2009-03-18
    • Tsung-Hsi LinChien-Mo Lai
    • Tsung-Hsi LinChien-Mo Lai
    • G09G5/08
    • G06F3/0317G06F1/3259Y02D10/155
    • A computer input device with a time-difference-type bi-coordinate output, a time-difference-type data input processing method, and a sensor thereof. The computer input device includes a first light source for producing a first projecting beam in an alternating on and off manner; a second light source for producing a second projecting beam when the first light source is turned off; and a sensor module. The sensor module includes an optical signal receiving region for receiving the first projecting beam to obtain a first image data and receiving the second projecting beam to obtain a second image data; a control unit for comparing the first image data obtained at different time points to compute a first displacement data and comparing the second image data obtained at different time points to compute a second displacement data; and a storage unit for storing the first displacement data and the second displacement data.
    • 具有时差型双坐标输出的计算机输入装置,时差型数据输入处理方法及其传感器。 计算机输入装置包括用于以交替的开关方式产生第一投影光束的第一光源; 第二光源,用于在第一光源关闭时产生第二投影光束; 和传感器模块。 传感器模块包括用于接收第一投影光束以获得第一图像数据并接收第二投影光束以获得第二图像数据的光信号接收区域; 控制单元,用于比较在不同时间点获得的第一图像数据,以计算第一位移数据,并比较在不同时间点获得的第二图像数据,以计算第二位移数据; 以及存储单元,用于存储第一位移数据和第二位移数据。
    • 20. 发明申请
    • Optical multi-touch method of window interface
    • 窗口界面的光学多点触控方法
    • US20100064262A1
    • 2010-03-11
    • US12379898
    • 2009-03-04
    • Chih-Chien Liao
    • Chih-Chien Liao
    • G06F3/033G06F3/042
    • G06F3/0317G06F3/038
    • An optical multi-touch method of a window interface is adapted to control an object in the window interface. The method includes providing a first optical sensing window to obtain a first tracking signal and providing a second optical sensing window to obtain a second tracking signal; resolving the first tracking signal to determine a first displacement direction and resolving the second tracking signal to determine a second displacement direction; and controlling a motion of the object in the window interface according to a relative relation between the first displacement direction and the second displacement direction.
    • 窗口接口的光学多点触摸方法适于控制窗口界面中的对象。 该方法包括提供第一光学感测窗口以获得第一跟踪信号并提供第二光学感测窗口以获得第二跟踪信号; 解决第一跟踪信号以确定第一位移方向并且解析第二跟踪信号以确定第二位移方向; 以及根据所述第一位移方向和所述第二位移方向之间的相对关系来控制所述物体在所述窗口界面中的运动。