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    • 1. 发明申请
    • CURSOR CONTROL DEVICE
    • 光标控制装置
    • US20120256828A1
    • 2012-10-11
    • US13097092
    • 2011-04-29
    • TAI-CHUN LITSUNG-JEN CHUANGSHIH-FANG WONG
    • TAI-CHUN LITSUNG-JEN CHUANGSHIH-FANG WONG
    • G06F3/033
    • G06F3/044
    • The cursor control device includes a housing, a first capacitor, a second capacitor, a first capacitance measurement unit, a second capacitance measurement unit, and a processor. Each capacitor includes a stator plate and a rotor plate. The rotor plates are movable relative to the stator plates. The stator plate and the rotor plate of the first capacitor are substantially perpendicular to the stator plate and the rotor plate of the second capacitor. The capacitance measurement units respectively measure the corresponding capacitance of the capacitors. The processor analyzes acceleration and duration of the changes in capacitance to ascertain movement direction and distance of the device according to the capacitance measured by the capacitance measurement units, when the capacitance between the stator plate and the rotor plate of the first capacitor, or between the stator plate and the rotor plate of the second capacitor changes.
    • 光标控制装置包括壳体,第一电容器,第二电容器,第一电容测量单元,第二电容测量单元和处理器。 每个电容器包括定子板和转子板。 转子板可相对于定子板移动。 第一电容器的定子板和转子板基本上垂直于第二电容器的定子板和转子板。 电容测量单元分别测量电容器的相应电容。 处理器分析电容变化的加速度和持续时间,以确定器件根据由电容测量单元测量的电容的运动方向和距离,当定子板与第一电容器的转子板之间的电容或第 定子板和第二电容器的转子板发生变化。
    • 2. 发明申请
    • APPARATUS CAPABLE OF SWITCHING VOLUME ADJUSTMENT MODE AUTOMATICALLY AND VOLUME ADJUSTMENT METHOD THEREOF
    • 可自动调整容量调节方式的装置及其调整方法
    • US20090022338A1
    • 2009-01-22
    • US12141887
    • 2008-06-18
    • SHIH-FANG WONGTAI-CHUN LIBIN HETSUNG-JEN CHUANG
    • SHIH-FANG WONGTAI-CHUN LIBIN HETSUNG-JEN CHUANG
    • H03G3/00
    • H03G3/001H03G3/02
    • A method for automatically switching volume adjustment mode of an electronic device is provided. The method includes: storing a first predetermined volume and a second predetermined volume; when receiving a signal for volume adjustments, judging a current adjustment mode of the electronic device; if the current adjustment mode is the heavy adjustment mode, adjusting the volume with larger increment/decrement; if a value of the volume is larger than or equal to the first predetermined volume, switching to the light adjustment mode automatically; if the adjustment mode is the light adjustment mode, adjusting the volume with smaller increment/decrement; if the volume is less than or equal to the second predetermined volume, switching to the heavy adjustment mode automatically. The present invention also provides an electronic device capable of switching volume adjustment mode automatically.
    • 提供一种用于自动切换电子设备的音量调节模式的方法。 该方法包括:存储第一预定体积和第二预定体积; 当接收到用于音量调节的信号时,判断电子设备的当前调整模式; 如果当前调整模式是重调整模式,则以较大的增量/减量调节音量; 如果音量值大于或等于第一预定音量,则自动切换到调光模式; 如果调整模式是调光模式,则以较小的增量/减量调节音量; 如果体积小于或等于第二预定体积,则自动切换到重度调节模式。 本发明还提供一种能够自动切换音量调节模式的电子装置。
    • 5. 发明申请
    • CHARGING CIRCUIT
    • 充电电路
    • US20080042622A1
    • 2008-02-21
    • US11840227
    • 2007-08-17
    • SHIH-FANG WONGTAI-CHUN LI
    • SHIH-FANG WONGTAI-CHUN LI
    • H02J7/00
    • H02J7/0075
    • A charging circuit for charging a rechargeable battery (70) includes a charge management unit (40), a comparator (80) and a changeover switch (60). The changeover switch (60) includes a default state of connecting the rechargeable battery to the comparator (80), so that the comparator (80) produces a comparison result by comparing a battery voltage of the rechargeable battery (70) with a preset voltage threshold. The comparison result is transmitted to the charge management unit (40) and the charge management unit (40) controls the changeover switch (60) to switch from the default state to a controlled state if the battery voltage is less than the preset voltage threshold according to the comparison result. In the controlled state the changeover switch (60) connects the rechargeable battery (70) to the charge management unit (40), so that the charge management unit (40) charges the rechargeable battery (70).
    • 充电电池(70)的充电电路包括充电管理单元(40),比较器(80)和转换开关(60)。 切换开关(60)包括将可再充电电池连接到比较器(80)的默认状态,使得比较器(80)通过将可再充电电池(70)的电池电压与预设电压阈值进行比较来产生比较结果 。 如果电池电压小于预设电压阈值,则比较结果被传送到充电管理单元(40),并且充电管理单元(40)控制切换开关(60)从默认状态切换到受控状态, 比较结果。 在受控状态下,切换开关(60)将可再充电电池(70)连接到充电管理单元(40),使得充电管理单元(40)对可再充电电池(70)充电。