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    • 2. 发明申请
    • CLASS-D AMPLIFIER AND MULTI-LEVEL OUTPUT SIGNAL GENERATED METHOD THEREOF
    • CLASS-D放大器和多级输出信号生成方法
    • US20090146737A1
    • 2009-06-11
    • US12025055
    • 2008-02-04
    • Lee-Chun GuoMing-Hsun Sung
    • Lee-Chun GuoMing-Hsun Sung
    • H03F3/217
    • H03F3/217
    • A class-D amplifier and a method of generating a multi-level output signal thereof are provided. The class-D amplifier includes a controlling logic circuit and an output module. The controlling logic circuit analyzes the amplitude of an input signal to generate a voltage modifying signal. A power supply provides a voltage according to the voltage modifying signal. The controlling logic circuit generates controlling signals according to the input signal. The output module generates an output signal to drive a load according to the voltage and the controlling signals. In other words, the resolution of the amplitude of the output signal is increased by modifying the voltage, and a signal to noise ratio is then increased.
    • 提供了D类放大器和一种产生其多电平输出信号的方法。 D类放大器包括控制逻辑电路和输出模块。 控制逻辑电路分析输入信号的幅度以产生电压修正信号。 电源根据电压修正信号提供电压。 控制逻辑电路根据输入信号产生控制信号。 输出模块根据电压和控制信号产生输出信号来驱动负载。 换句话说,通过修改电压来增加输出信号幅度的分辨率,然后增加信噪比。
    • 3. 发明授权
    • Class-D amplifier and multi-level output signal generated method thereof
    • D类放大器及其多电平输出信号产生方法
    • US07675361B2
    • 2010-03-09
    • US12025055
    • 2008-02-04
    • Lee-Chun GuoMing-Hsun Sung
    • Lee-Chun GuoMing-Hsun Sung
    • H03F3/217
    • H03F3/217
    • A class-D amplifier and a method of generating a multi-level output signal thereof are provided. The class-D amplifier includes a controlling logic circuit and an output module. The controlling logic circuit analyzes the amplitude of an input signal to generate a voltage modifying signal. A power supply provides a voltage according to the voltage modifying signal. The controlling logic circuit generates controlling signals according to the input signal. The output module generates an output signal to drive a load according to the voltage and the controlling signals. In other words, the resolution of the amplitude of the output signal is increased by modifying the voltage, and a signal to noise ratio is then increased.
    • 提供了D类放大器和一种产生其多电平输出信号的方法。 D类放大器包括控制逻辑电路和输出模块。 控制逻辑电路分析输入信号的幅度以产生电压修正信号。 电源根据电压修正信号提供电压。 控制逻辑电路根据输入信号产生控制信号。 输出模块根据电压和控制信号产生输出信号来驱动负载。 换句话说,通过修改电压来增加输出信号幅度的分辨率,然后增加信噪比。
    • 4. 发明申请
    • DRIFT COMPENSATION APPARATUS OF CAPACITIVE TOUCH PANEL AND DRIFT COMPENSATION METHOD THEREOF
    • 电容式触控面板补偿装置及其补偿方法
    • US20100214253A1
    • 2010-08-26
    • US12430909
    • 2009-04-28
    • Tzu-Yi WuLee-Chun Guo
    • Tzu-Yi WuLee-Chun Guo
    • G06F3/045
    • G06F3/044
    • A method and an apparatus adapted to a capacitive touch panel for drift compensation are provided, wherein the touch panel includes a plurality of sensors. In the method for drift compensation, a plurality of capacitances respectively sensed by each of the sensors are extracted. Whether the touch panel is in a proximity state is determined upon a slope of the sensed capacitances and a slope parameter. Whether each of the capacitances is drifted is determined upon the capacitance and an allowable noise range. When the touch panel is not in the proximity state and each of the capacitances is drifted, each of the capacitances is compensated according to a drift error of each of the capacitances after a first presetting time has passed.
    • 提供一种适用于电容式触摸面板进行漂移补偿的方法和装置,其中触摸面板包括多个传感器。 在漂移补偿方法中,提取由每个传感器分别感测的多个电容。 触摸面板处于接近状态是根据感测电容的斜率和斜率参数确定的。 每个电容是否漂移是根据电容和可允许的噪声范围确定的。 当触摸面板不处于接近状态并且每个电容漂移时,根据在经过第一预设时间之后的每个电容的漂移误差补偿每个电容。
    • 5. 发明申请
    • TOUCH SENSOR WITH SLIDING STRUCTURE
    • 具有滑动结构的触摸传感器
    • US20100295709A1
    • 2010-11-25
    • US12505544
    • 2009-07-20
    • Tzu-Yi WuLee-Chun Guo
    • Tzu-Yi WuLee-Chun Guo
    • H03M1/22
    • H03M1/287G01D5/24G01D5/2405
    • A touch sensor with a sliding structure is disclosed. The touch sensor includes a first touch detecting plate, a second touch detecting plate, and a capacitance-to-digital converter. The first touch detecting plate includes a first tilt portion, and the second touch detecting plate includes a second tilt portion, wherein a bevel edge of the second tilt portion is parallel to a bevel edge of the first tilt portion. The first touch detecting plate and the second touch detecting plate form a parallelogram slide detecting area. The first touch detecting plate transmits a first detected capacitance, and the second touch detecting plate transmits a second detected capacitance. The capacitance-to-digital converter generates a sliding state detected value according to the first detected capacitance and the second detected capacitance.
    • 公开了一种具有滑动结构的触摸传感器。 触摸传感器包括第一触摸检测板,第二触摸检测板和电容数字转换器。 第一触摸检测板包括第一倾斜部分,并且第二触摸检测板包括第二倾斜部分,其中第二倾斜部分的斜边缘平行于第一倾斜部分的斜边缘。 第一触摸检测板和第二触摸检测板形成平行四边形滑动检测区域。 第一触摸检测板传输第一检测电容,第二触摸检测板传输第二检测电容。 电容数字转换器根据第一检测电容和第二检测电容产生滑动状态检测值。
    • 7. 发明申请
    • ELECTRONIC DEVICE
    • 电子设备
    • US20150025657A1
    • 2015-01-22
    • US14067988
    • 2013-10-31
    • Sheng-Yang PengLee-Chun Guo
    • Sheng-Yang PengLee-Chun Guo
    • G05D15/01G06F1/16
    • G06F1/1615G06F1/1616G06F1/1677
    • An electronic device includes a first machine assembly, a second machine assembly, a first sensor, a second sensor, and a control circuit. The second machine assembly is pivoted to the first machine assembly. The first sensor is located on the first machine assembly and configured to generate first sensing data when the electronic device is in a non-normal working state. The second sensor is located on the second machine assembly and configured to generate second sensing data when the electronic device is in the non-normal working state. The control circuit is coupled to the first sensor and the second sensor and configured to perform a first default operation according to the first sensing data and the second sensing data.
    • 电子设备包括第一机器组件,第二机器组件,第一传感器,第二传感器和控制电路。 第二机器组件枢转到第一机器组件。 第一传感器位于第一机器组件上并被配置为当电子设备处于非正常工作状态时产生第一感测数据。 第二传感器位于第二机器组件上,并且被配置为当电子设备处于非正常工作状态时产生第二感测数据。 控制电路耦合到第一传感器和第二传感器,并且被配置为根据第一感测数据和第二感测数据执行第一默认操作。
    • 8. 发明授权
    • Touch sensor with sliding structure
    • 触摸传感器具有滑动结构
    • US08125467B2
    • 2012-02-28
    • US12505544
    • 2009-07-20
    • Tzu-Yi WuLee-Chun Guo
    • Tzu-Yi WuLee-Chun Guo
    • G06F3/045
    • H03M1/287G01D5/24G01D5/2405
    • A touch sensor with a sliding structure is disclosed. The touch sensor includes a first touch detecting plate, a second touch detecting plate, and a capacitance-to-digital converter. The first touch detecting plate includes a first tilt portion, and the second touch detecting plate includes a second tilt portion, wherein a bevel edge of the second tilt portion is parallel to a bevel edge of the first tilt portion. The first touch detecting plate and the second touch detecting plate form a parallelogram slide detecting area. The first touch detecting plate transmits a first detected capacitance, and the second touch detecting plate transmits a second detected capacitance. The capacitance-to-digital converter generates a sliding state detected value according to the first detected capacitance and the second detected capacitance.
    • 公开了一种具有滑动结构的触摸传感器。 触摸传感器包括第一触摸检测板,第二触摸检测板和电容数字转换器。 第一触摸检测板包括第一倾斜部分,并且第二触摸检测板包括第二倾斜部分,其中第二倾斜部分的斜边缘平行于第一倾斜部分的斜边缘。 第一触摸检测板和第二触摸检测板形成平行四边形滑动检测区域。 第一触摸检测板传输第一检测电容,第二触摸检测板传输第二检测电容。 电容数字转换器根据第一检测电容和第二检测电容产生滑动状态检测值。