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    • 55. 发明申请
    • METHOD OF SENSING OF LOW-VOLTAGE IMAGE SENSOR
    • 低电压图像传感器的传感方法
    • US20120187279A1
    • 2012-07-26
    • US13432991
    • 2012-03-28
    • Mi Jin KIMBong Ki MheenYoung Joo SongSeong Su Park
    • Mi Jin KIMBong Ki MheenYoung Joo SongSeong Su Park
    • H01L27/148
    • H01L27/14609H04N5/235H04N5/3559H04N5/3597H04N5/374
    • A sensing method of an image sensor. The image sensor includes: a light receiving device; a signal conversion unit including a transfer transistor having a plurality of transfer gates and for converting photocharges generated by the light receiving device into a voltage to output the voltage; and a sensing control unit for generating at least two reset signals and/or at least two transfer signals applied to the transfer gates of the transfer transistor during a one-time photosensing cycle. The image sensor is obtained by changing the structure and driving method of a transfer transistor of a typical 4-transistor CMOS image sensor and employs a deep depletion operation and a multiple reset operation, thereby reducing an image lag and increasing the well capacity of the light receiving device.
    • 图像传感器的感测方法。 图像传感器包括:光接收装置; 信号转换单元,包括具有多个传输门并将由光接收装置产生的光电荷转换成电压以输出电压的传输晶体管; 以及感测控制单元,用于在一次光敏周期期间产生施加到传输晶体管的传输门的至少两个复位信号和/或至少两个传输信号。 图像传感器通过改变典型的4晶体管CMOS图像传感器的传输晶体管的结构和驱动方法获得,并且采用深度耗尽操作和多重复位操作,从而减少图像滞后并增加光阱的容量 接收设备。
    • 59. 发明授权
    • Driving voltage control module
    • 驱动电压控制模块
    • US07822404B2
    • 2010-10-26
    • US11474552
    • 2006-06-26
    • Byoung Gun ChoiSeong-Su Park
    • Byoung Gun ChoiSeong-Su Park
    • H04B1/16
    • H03F3/19H03F1/02H03F1/0211H03F3/24H03F3/245H04B2001/045
    • Provided is a driving voltage control module capable of minimizing current consumption and time taken to return from a standby state to a normal state by controlling driving voltages for electronic circuits and systems for communication when a mobile communication transceiving circuit or a communication system is in a standby state in which there is no busy signal. The driving voltage control module includes a regulator for converting an input power voltage into a predetermined level of DC voltage, and supplying the converted DC voltage to an external circuit module as a driving voltage; and a voltage controller for controlling an output voltage level of the regulator, wherein, under control of the voltage controller, a level of the driving voltage is adjusted to be a standby voltage level lower than a turn-on voltage level of a switching device constituting the external circuit module. With the driving voltage control module, the transceiving circuit and the RF circuit of the RF mobile communication terminal can be supplied with distinct power voltages each corresponding to the cut-off state, the standby state, and the normal operation state, thereby reducing current consumption and the time taken to reach the normal state from the standby state. This can increase the battery lifetime and embody a high-speed RF mobile communication terminal.
    • 提供了一种驱动电压控制模块,其能够通过在移动通信收发电路或通信系统处于待机状态时控制用于电子电路和通信系统的驱动电压,从而将电流消耗和从待机状态返回到正常状态所需的时间最小化 没有忙信号的状态。 驱动电压控制模块包括用于将输入电源电压转换为预定电平的DC电压的调节器,并将转换的DC电压作为驱动电压提供给外部电路模块; 以及用于控制所述调节器的输出电压电平的电压控制器,其中,在所述电压控制器的控制下,将所述驱动电压的电平调整为低于构成的开关器件的导通电压电平的待机电压电平 外部电路模块。 利用驱动电压控制模块,可以向RF移动通信终端的收发电路和RF电路提供与截止状态,待机状态和正常操作状态对应的不同的电源电压,从而减少电流消耗 以及从待机状态达到正常状态所需的时间。 这可以增加电池寿命并且体现高速RF移动通信终端。