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    • 2. 发明授权
    • Input means for interactive devices
    • 用于交互式设备的输入装置
    • US07679601B2
    • 2010-03-16
    • US11432630
    • 2006-05-12
    • Shyang-Jye ChangMing-Jye TsaiChi-Liang ChenShun-Nan Liou
    • Shyang-Jye ChangMing-Jye TsaiChi-Liang ChenShun-Nan Liou
    • G09G5/00
    • G06F3/04892G06F3/0346H04N5/4403H04N21/42222
    • An input means adapted for an interactive device is disclosed, which comprises: an inertial sensing module, for detecting a gesture movement of a user and thus generating a gesture signal accordingly; a multifunctional keypad, having at least a key to be selected and pressed for generating a selecting signal accordingly; a control unit, for fetching the selecting signal and the gesture signal and thus generating a control signal corresponding thereto; a signal processing unit, for receiving and processing the control signal so as to generate an interactive signal and then sending the interactive signal to the control unit; and a wireless transmission module, being used to transmit the interactive signal of the control unit to the interactive device.
    • 公开了适用于交互式装置的输入装置,其包括:惯性感测模块,用于检测用户的手势运动,从而相应地产生手势信号; 多功能键盘,具有至少一个要被选择和按下的键,用于相应地产生选择信号; 控制单元,用于取出所述选择信号和所述手势信号,从而产生与其对应的控制信号; 信号处理单元,用于接收和处理控制信号,以产生交互信号,然后将交互信号发送到控制单元; 以及无线传输模块,用于将控制单元的交互信号发送到交互设备。
    • 3. 发明申请
    • Inertial sensing input apparatus
    • 惯性传感输入装置
    • US20060256077A1
    • 2006-11-16
    • US11304744
    • 2005-12-16
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • G09G5/00
    • G06F3/0346
    • An inertial sensing input apparatus is disclosed in the invention, comprising: a housing; a first inertial part, coupled to a circuit substrate received in the housing, for detecting a motion measured with respect to a second axis and a third axis of a space and also for detecting a motion measured along a first axis of a plane; a second inertial part, coupled to the circuit substrate, for detecting a motion measured with respect to a first axis of the space and also for optionally detecting a motion measured along a second axis of the plane; and a micro-controller, coupled to the circuit substrate, capable of converting electrical signals received from the first and the second inertial parts into a displacement signal while transmitting the displacement signal to an electronic display device by a means of transmission.
    • 在本发明中公开了一种惯性感测输入装置,包括:壳体; 第一惯性部分,耦合到容纳在壳体中的电路基板,用于检测相对于空间的第二轴和第三轴测量的运动,并且还用于检测沿着平面的第一轴测量的运动; 耦合到所述电路基板的第二惯性部件,用于检测相对于所述空间的第一轴线测量的运动,并且还用于可选地检测沿着所述平面的第二轴线测量的运动; 以及耦合到电路基板的微控制器,其能够将从第一和第二惯性部件接收的电信号转换为位移信号,同时通过传输方式将位移信号传输到电子显示装置。
    • 4. 发明申请
    • Inertial mouse
    • 惯性鼠
    • US20060256085A1
    • 2006-11-16
    • US11189861
    • 2005-07-27
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • G09G5/08
    • G06F3/0346G06F3/03543
    • An inertial mouse is disclosed in the invention, comprising: a housing; a first inertial part, coupled to a circuit substrate received in the housing, for detecting a motion measured with respect to a second axis and a third axis of a space and also for detecting a motion measured along a first axis of a plane; a second inertial part, coupled to the circuit substrate, for detecting a motion measured with respect to a first axis of the space and also for optionally detecting a motion measured along a second axis of the plane; and a micro-controller, coupled to the circuit substrate, capable of converting electrical signals received from the first and the second inertial parts or cells into a displacement signal while transmitting the displacement signal to an electronic display device by a means of transmission.
    • 本发明公开了一种惯性鼠标,包括:壳体; 第一惯性部分,耦合到容纳在壳体中的电路基板,用于检测相对于空间的第二轴和第三轴测量的运动,并且还用于检测沿着平面的第一轴测量的运动; 耦合到所述电路基板的第二惯性部件,用于检测相对于所述空间的第一轴线测量的运动,并且还用于可选地检测沿着所述平面的第二轴线测量的运动; 以及耦合到电路基板的微控制器,其能够将从第一和第二惯性部件或单元接收的电信号转换为位移信号,同时通过传输方式将位移信号传输到电子显示装置。
    • 5. 发明授权
    • Inertial sensing input apparatus
    • 惯性传感输入装置
    • US07825898B2
    • 2010-11-02
    • US11304744
    • 2005-12-16
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • G09G5/08
    • G06F3/0346
    • An inertial sensing input apparatus is disclosed in the invention, comprising: a housing; a first inertial part, coupled to a circuit substrate received in the housing, for detecting a motion measured with respect to a second axis and a third axis of a space and also for detecting a motion measured along a first axis of a plane; a second inertial part, coupled to the circuit substrate, for detecting a motion measured with respect to a first axis of the space and also for optionally detecting a motion measured along a second axis of the plane; and a micro-controller, coupled to the circuit substrate, capable of converting electrical signals received from the first and the second inertial parts into a displacement signal while transmitting the displacement signal to an electronic display device by a means of transmission.
    • 在本发明中公开了一种惯性感测输入装置,包括:壳体; 第一惯性部分,耦合到容纳在壳体中的电路基板,用于检测相对于空间的第二轴和第三轴测量的运动,并且还用于检测沿着平面的第一轴测量的运动; 耦合到所述电路基板的第二惯性部件,用于检测相对于所述空间的第一轴线测量的运动,并且还用于可选地检测沿着所述平面的第二轴线测量的运动; 以及耦合到电路基板的微控制器,其能够将从第一和第二惯性部件接收的电信号转换为位移信号,同时通过传输方式将位移信号传输到电子显示装置。
    • 7. 发明授权
    • Inertial mouse
    • 惯性鼠
    • US07821494B2
    • 2010-10-26
    • US11189861
    • 2005-07-27
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • Ming-Jye TsaiShun-Nan LiouRen-Yuan YuChin-Lin HsiehShyang-Jye ChangHsiang-Yu Huang
    • G09G5/08
    • G06F3/0346G06F3/03543
    • An inertial mouse is disclosed in the invention, comprising: a housing; a first inertial part, coupled to a circuit substrate received in the housing, for detecting a motion measured with respect to a second axis and a third axis of a space and also for detecting a motion measured along a first axis of a plane; a second inertial part, coupled to the circuit substrate, for detecting a motion measured with respect to a first axis of the space and also for optionally detecting a motion measured along a second axis of the plane; and a micro-controller, coupled to the circuit substrate, capable of converting electrical signals received from the first and the second inertial parts or cells into a displacement signal while transmitting the displacement signal to an electronic display device by a means of transmission.
    • 本发明公开了一种惯性鼠标,包括:壳体; 第一惯性部分,耦合到容纳在壳体中的电路基板,用于检测相对于空间的第二轴和第三轴测量的运动,并且还用于检测沿着平面的第一轴测量的运动; 耦合到所述电路基板的第二惯性部件,用于检测相对于所述空间的第一轴线测量的运动,并且还用于可选地检测沿着所述平面的第二轴线测量的运动; 以及耦合到电路基板的微控制器,其能够将从第一和第二惯性部件或单元接收的电信号转换为位移信号,同时通过传输方式将位移信号传输到电子显示装置。
    • 8. 发明申请
    • Position detecting system and method of the same
    • 位置检测系统及其方法
    • US20080154457A1
    • 2008-06-26
    • US11980475
    • 2007-10-31
    • Ren-Yuan YuYung-Yu ChenShyang-Jye ChangShih-Hao WangMing-Jye Tsai
    • Ren-Yuan YuYung-Yu ChenShyang-Jye ChangShih-Hao WangMing-Jye Tsai
    • G05D1/00
    • G05D1/027G05D1/0219G05D1/0238G05D1/0274G05D2201/0203
    • A position detecting system and a method of the same are disclosed according to the present invention as follows: an inertia sensing module and an obstacle sensing module are adapted to detect a displacement signal of a cleansing apparatus and a distance signal of a distance between the cleansing apparatus and an obstacle respectively; and then a signal processing module is adapted to convert the displacement signal and the distance signal into an actual displacement path and an obstacle distance respectively, and then compare the actual displacement path and the obstacle distance with a preset path respectively to determine if the cleansing apparatus is traveling at the same place over again, or if the cleansing apparatus is going to hit the obstacle, and then the signal processing module will adjust a traveling path based on comparison results; and a control module is adapted to control traveling of the cleansing apparatus based on the adjusted traveling path. Hence, the cleansing apparatus is capable of repeating the foregoing steps for detecting and positioning purposes at any time during a cleansing process, thereby avoiding repetitive cleaning at the same place.
    • 根据本发明公开了一种位置检测系统及其方法,惯性感测模块和障碍物感测模块适于检测清洁装置的位移信号和清洁之间的距离的距离信号 装置和障碍物; 然后信号处理模块适于将位移信号和距离信号分别转换成实际位移路径和障碍物距离,然后分别将实际位移路径和障碍物距离与预设路径进行比较,以确定清洁设备 在同一地方再次行驶,或者如果清洁装置撞到障碍物,则信号处理模块将根据比较结果调整行驶路径; 并且控制模块适于基于经调整的行进路径来控制清洁装置的行进。 因此,清洁装置能够在清洁过程中的任何时间重复上述用于检测和定位的步骤,从而避免在同一地点的重复清洁。
    • 9. 发明授权
    • Noise reduction system and noise reduction method
    • 降噪系统和降噪方法
    • US08275141B2
    • 2012-09-25
    • US12771024
    • 2010-04-30
    • Shih-Yu PanMin-Qiao LuJiun-Bin HuangShyang-Jye Chang
    • Shih-Yu PanMin-Qiao LuJiun-Bin HuangShyang-Jye Chang
    • A61F11/06
    • G10L21/0272
    • A noise reduction system and a noise reduction method are provided. The noise reduction system comprises a uni-directional microphone, an omni-directional microphone and a signal processing module. The signal processing module comprises an adaptive noise control (ANC) unit, a main noise reduction unit and an optimizing unit. The uni-directional microphone senses a first audio source to output a first audio signal, and the omni-directional microphone senses a second audio source to output a second audio signal. The ANC unit executes an adaptive noise control to output an estimated signal according to the first audio signal and the second audio signal. The main noise reduction unit executes a main noise reduction process to output a de-noise speech signal according to the estimated signal and the second audio signal. The optimizing unit executes an optimizing process to output an optimized speech signal according to the de-noise speech signal.
    • 提供降噪系统和降噪方法。 降噪系统包括单向麦克风,全向麦克风和信号处理模块。 信号处理模块包括自适应噪声控制(ANC)单元,主降噪单元和优化单元。 单向麦克风感测第一音频源以输出第一音频信号,并且全向麦克风感测第二音频源以输出第二音频信号。 ANC单元执行自适应噪声控制,以根据第一音频信号和第二音频信号输出估计信号。 主降噪单元执行主噪声降低处理,以根据估计的信号和第二音频信号输出去噪声语音信号。 优化单元执行优化处理,以根据去噪语音信号输出优化的语音信号。
    • 10. 发明申请
    • METHOD FOR MODIFYING NAVIGATION INFORMATION AND NAVIGATION APPARATUS USING THE SAME
    • 用于修改导航信息的方法和使用该导航信息的导航装置
    • US20100131198A1
    • 2010-05-27
    • US12411776
    • 2009-03-26
    • Shyang-Jye ChangYung-Yu Chen
    • Shyang-Jye ChangYung-Yu Chen
    • G01C21/36
    • G01C21/30G01C25/00
    • A method for modifying navigation information is provided in the present invention. The method comprises steps of detecting a status information with respect to a moving carrier guiding by a navigating route; comparing the status information with a characteristic information corresponding to a characteristic point on the navigating route; and finally, determining whether the moving carrier is passing the characteristic point according to the comparing result and modifying the coordinate position of the carrier. In another embodiment, the present invention further provides a navigating apparatus comprising a sensing module for detecting the status of the moving carrier, a signal processing unit, and a storage unit for storing a map information. The signal processing unit comparing the status information to the characteristic information with respect to the characteristic point on the navigating route, and modifying the deviation of the moving carrier to the modify location according to the comparing result.
    • 本发明提供了一种修改导航信息的方法。 该方法包括以下步骤:检测相对于由导航路线引导的移动载体的状态信息; 将状态信息与对应于导航路线上的特征点的特征信息进行比较; 最后,根据比较结果确定运动载体是否正在通过特征点,并修改载波的坐标位置。 在另一个实施例中,本发明还提供一种导航装置,包括用于检测移动载体的状态的感测模块,信号处理单元和用于存储地图信息的存储单元。 所述信号处理单元将所述状态信息与所述特征信息相对于所述导航路线上的特征点进行比较,并且根据所述比较结果修改所述移动运营商对所述修改位置的偏差。