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    • 1. 发明授权
    • Low power consumption circuit and method for reducing power consumption
    • 低功耗电路和降低功耗的方法
    • US09075613B2
    • 2015-07-07
    • US13278329
    • 2011-10-21
    • Hsin-Chung ChenChia-Jen Chang
    • Hsin-Chung ChenChia-Jen Chang
    • G06F1/32G06F1/26
    • G06F1/3296G06F1/26G06F1/324Y02D10/172
    • An exemplary low power consumption circuit includes a microprocessor, a power supply switch module and a main circuit module. The microprocessor is capable of outputting a power control signal and changing a pulse characteristic of the power control signal when the microprocessor switches from a first working mode to a second working mode. The power supply switch module is capable of outputting a power supply signal. The power supply switch module is electrically coupled to the microprocessor to receive the power control signal and thereby modulates a duty cycle of the power supply signal according to a change of the pulse characteristic of the power control signal. The main circuit module is electrically coupled to the power supply switch module to receive the power supply signal and operative with energy provided by the power supply signal. Moreover, a method for reducing power consumption is also provided.
    • 示例性的低功耗电路包括微处理器,电源开关模块和主电路模块。 当微处理器从第一工作模式切换到第二工作模式时,微处理器能够输出功率控制信号和改变功率控制信号的脉冲特性。 电源开关模块能够输出电源信号。 电源开关模块电耦合到微处理器以接收功率控制信号,从而根据功率控制信号的脉冲特性的变化来调制电源信号的占空比。 主电路模块电耦合到电源开关模块以接收电源信号并且与由电源信号提供的能量一起工作。 此外,还提供了降低功耗的方法。
    • 3. 发明申请
    • LOW POWER CONSUMPTION CIRCUIT AND METHOD FOR REDUCING POWER CONSUMPTION
    • 低功耗电路和降低功耗的方法
    • US20120221876A1
    • 2012-08-30
    • US13278329
    • 2011-10-21
    • Hsin-Chung CHENChia-Jen Chang
    • Hsin-Chung CHENChia-Jen Chang
    • G06F1/32
    • G06F1/3296G06F1/26G06F1/324Y02D10/172
    • An exemplary low power consumption circuit includes a microprocessor, a power supply switch module and a main circuit module. The microprocessor is capable of outputting a power control signal and changing a pulse characteristic of the power control signal when the microprocessor switches from a first working mode to a second working mode. The power supply switch module is capable of outputting a power supply signal. The power supply switch module is electrically coupled to the microprocessor to receive the power control signal and thereby modulates a duty cycle of the power supply signal according to a change of the pulse characteristic of the power control signal. The main circuit module is electrically coupled to the power supply switch module to receive the power supply signal and operative with energy provided by the power supply signal. Moreover, a method for reducing power consumption is also provided.
    • 示例性的低功耗电路包括微处理器,电源开关模块和主电路模块。 当微处理器从第一工作模式切换到第二工作模式时,微处理器能够输出功率控制信号和改变功率控制信号的脉冲特性。 电源开关模块能够输出电源信号。 电源开关模块电耦合到微处理器以接收功率控制信号,从而根据功率控制信号的脉冲特性的变化来调制电源信号的占空比。 主电路模块电耦合到电源开关模块以接收电源信号并且与由电源信号提供的能量一起工作。 此外,还提供了降低功耗的方法。
    • 4. 发明申请
    • TOUCH CONTROL DISPLAY APPARATUS AND POSITION INDICATOR THEREOF
    • 触摸控制显示装置及其位置指示器
    • US20100259489A1
    • 2010-10-14
    • US12473133
    • 2009-05-27
    • Hsin-Chung CHENFeng-Chuan YehYi-Ju Li
    • Hsin-Chung CHENFeng-Chuan YehYi-Ju Li
    • G06F3/041
    • G06F3/03545G06F1/1626G06F1/1643G06F2200/1632
    • A touch control display apparatus includes a touch control display and a position indicator. The housing of the display has a touch control displaying area and a receiving portion. The receiving portion has a first metal contact and a second metal contact. The first and the second metal contacts are electrically connected to a positive terminal and a negative terminal of an internal system power source of the display, respectively. The indicator is used for transmitting a position indicating signal to the display, such that the display could sense a position of the indicator located in the touch control displaying area accordingly. The housing of the indicator has a third metal contact and a fourth metal contact. The third and the fourth metal contacts are suitable for electrically connecting the first and the second metal contacts, respectively, such that the indicator could perform a charging operation.
    • 触摸控制显示装置包括触摸控制显示器和位置指示器。 显示器的外壳具有触摸控制显示区域和接收部分。 接收部分具有第一金属接触和第二金属接触。 第一和第二金属触点分别电连接到显示器的内部系统电源的正极端子和负极端子。 指示器用于向显示器发送位置指示信号,使得显示器可以相应地感测位于触摸控制显示区域中的指示器的位置。 指示器的壳体具有第三金属触点和第四金属触点。 第三和第四金属触点分别适于电连接第一和第二金属触点,使得指示器可以执行充电操作。
    • 10. 发明授权
    • Method of driving electrophoretic display
    • 驱动电泳显示的方法
    • US08395566B2
    • 2013-03-12
    • US12352835
    • 2009-01-13
    • Cheng-Hao LeeHsin-Chung Chen
    • Cheng-Hao LeeHsin-Chung Chen
    • G09G3/30
    • G09G3/344G09G3/2007G09G2310/063
    • A method of driving an electro-optic display includes the following steps. First, a first frame is displayed on pixels at a first time. Next, data of a second frame predetermined to be displayed on the pixels at a second time later than the first time is determined. Next, an eliminating frame showing a first extreme gray level or a second extreme gray level is displayed on the pixels at a third time. Afterwards, a medium frame is displayed on the pixels at a fourth time later than the third time. The third and fourth times are between the first and second times. The gray level shown by each pixel at the fourth time is close to the gray level predetermined to be shown by the same pixel at the second time. Thereafter, the second frame is displayed on the pixels at the second time.
    • 驱动电光显示器的方法包括以下步骤。 首先,第一帧在第一时间在像素上显示。 接下来,确定预定在第一时间之后第二时间在像素上显示的第二帧的数据。 接下来,第三次在像素上显示出显示第一极端灰度级或第二极端灰度级的消除框。 之后,比第三次第四次在像素上显示中等帧。 第三次和第四次是在第一次和第二次之间。 第四次由每个像素所示的灰度级接近预定的灰度级,以在第二次由相同的像素显示。 此后,第二帧在第二次显示在像素上。