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    • 34. 发明授权
    • System and method for adaptive power supply to reduce power consumption
    • 自适应电源的系统和方法,以降低功耗
    • US07414450B2
    • 2008-08-19
    • US11251107
    • 2005-10-13
    • Wenzhe LuoPaul OuyangFeng Chen
    • Wenzhe LuoPaul OuyangFeng Chen
    • H03H11/26G01R35/04
    • H02M3/07
    • A system and method for adaptively providing a power supply voltage. The system includes an oscillator configured to receive an output voltage and generate a firs signal. The first signal is associated with a first frequency and a first period. Additionally, the system includes a frequency comparator configured to receive the first signal associated with the first frequency and a second signal associated with a second frequency and to generate a third signal if the first frequency and the second frequency are not equal, and a voltage regulator coupled to the frequency comparator and configured to generate the output voltage based on at least information associated with the third signal. The output voltage is received by a powered system, and the powered system is configured to receive a clock signal associated with a clock frequency. The clock frequency is equal to the second frequency.
    • 一种用于自适应地提供电源电压的系统和方法。 该系统包括配置成接收输出电压并产生第一信号的振荡器。 第一信号与第一频率和第一周期相关联。 另外,该系统包括:频率比较器,被配置为接收与第一频率相关联的第一信号和与第二频率相关联的第二信号,并且如果第一频率和第二频率不相等则产生第三信号;以及电压调节器 耦合到频率比较器并被配置为基于至少与第三信号相关联的信息来产生输出电压。 输出电压由供电系统接收,并且供电系统被配置为接收与时钟频率相关联的时钟信号。 时钟频率等于第二个频率。
    • 35. 发明申请
    • SYSTEM AND METHOD FOR PROVIDING ADAPTIVE POWER SUPPLY TO SYSTEM ON A CHIP
    • 在芯片上向系统提供自适应电源的系统和方法
    • US20070262647A1
    • 2007-11-15
    • US11743134
    • 2007-05-01
    • Wenzhe LuoPaul OuyangFeng Chen
    • Wenzhe LuoPaul OuyangFeng Chen
    • H02J1/10
    • G06F1/26Y10T307/305Y10T307/383Y10T307/50
    • A system and method for adaptively providing a power supply voltage. The system includes an input/output subsystem configured to receive a first voltage, an analog subsystem configured to receive a second voltage and coupled to the input/output subsystem, a first digital subsystem configured to receive a third voltage and coupled to the input/output subsystem, and a second digital subsystem configured to receive a fourth voltage and coupled to the input/output subsystem, the first digital subsystem, and the analog subsystem. Additionally, the system includes a first adaptive power supply configured to receive an input voltage and generate the third voltage, and a second adaptive power supply configured to receive the input voltage and generate the fourth voltage.
    • 一种用于自适应地提供电源电压的系统和方法。 该系统包括被配置为接收第一电压的输入/输出子系统,被配置为接收第二电压并耦合到输入/输出子系统的模拟子系统,被配置为接收第三电压并耦合到输入/输出的第一数字子系统 子系统和被配置为接收第四电压并耦合到输入/输出子系统,第一数字子系统和模拟子系统的第二数字子系统。 另外,该系统包括被配置为接收输入电压并产生第三电压的第一自适应电源,以及被配置为接收输入电压并产生第四电压的第二自适应电源。
    • 36. 发明申请
    • HEAT DISSIPATION DEVICE
    • 散热装置
    • US20070146999A1
    • 2007-06-28
    • US11306369
    • 2005-12-26
    • Yu-Chen LinFeng Chen
    • Yu-Chen LinFeng Chen
    • H05K7/20
    • H01L23/4093H01L2924/0002H01L2924/00
    • A heat dissipation device includes a retention module, a heat sink, a locking plate and a clip rotatably connecting with the retention module. The retention module includes an opening in a center thereof. The heat sink includes a heat conducting body and plurality of fins radially extending from the heat conducting body. The heat conducting body has a bottom portion received in the opening of the retention module. The locking plate engages with the bottom portion of the heat conducting body of the heat sink. The locking plate has a first portion abutting a bottom of the retention module, and a second portion opposite to the first portion. The second portion is pressed by a pressing portion of the clip when the heat dissipation device is at a locked position.
    • 散热装置包括保持模块,散热器,锁定板和与保持模块可旋转地连接的夹子。 保持模块在其中心包括开口。 散热器包括导热体和从导热体径向延伸的多个翅片。 导热体具有容纳在保持模块的开口中的底部。 锁定板与散热片的导热体的底部接合。 锁定板具有邻接保持模块的底部的第一部分和与第一部分相对的第二部分。 当散热装置处于锁定位置时,第二部分被夹子的按压部分按压。
    • 37. 发明授权
    • System and method for providing adaptive power supply to system on a chip
    • 用于向芯片上的系统提供自适应电源的系统和方法
    • US07233868B2
    • 2007-06-19
    • US11251583
    • 2005-10-13
    • Wenzhe LuoPaul OuyangFeng Chen
    • Wenzhe LuoPaul OuyangFeng Chen
    • G01R19/00G01R35/04
    • G06F1/26Y10T307/305Y10T307/383Y10T307/50
    • A system and method for adaptively providing a power supply voltage. The system includes an input/output subsystem configured to receive a first voltage, an analog subsystem configured to receive a second voltage and coupled to the input/output subsystem, a first digital subsystem configured to receive a third voltage and coupled to the input/output subsystem, and a second digital subsystem configured to receive a fourth voltage and coupled to the input/output subsystem, the first digital subsystem, and the analog subsystem. Additionally, the system includes a first adaptive power supply configured to receive an input voltage and generate the third voltage, and a second adaptive power supply configured to receive the input voltage and generate the fourth voltage.
    • 一种用于自适应地提供电源电压的系统和方法。 该系统包括被配置为接收第一电压的输入/输出子系统,被配置为接收第二电压并耦合到输入/输出子系统的模拟子系统,被配置为接收第三电压并耦合到输入/输出的第一数字子系统 子系统和被配置为接收第四电压并耦合到输入/输出子系统,第一数字子系统和模拟子系统的第二数字子系统。 另外,该系统包括被配置为接收输入电压并产生第三电压的第一自适应电源,以及被配置为接收输入电压并产生第四电压的第二自适应电源。
    • 38. 发明申请
    • System and method for adaptive power supply to reduce power consumption
    • 自适应电源的系统和方法,以降低功耗
    • US20070058084A1
    • 2007-03-15
    • US11251107
    • 2005-10-13
    • Wenzhe LuoPaul OuyangFeng Chen
    • Wenzhe LuoPaul OuyangFeng Chen
    • H04N5/63
    • H02M3/07
    • A system and method for adaptively providing a power supply voltage. The system includes an oscillator configured to receive an output voltage and generate a firs signal. The first signal is associated with a first frequency and a first period. Additionally, the system includes a frequency comparator configured to receive the first signal associated with the first frequency and a second signal associated with a second frequency and to generate a third signal if the first frequency and the second frequency are not equal, and a voltage regulator coupled to the frequency comparator and configured to generate the output voltage based on at least information associated with the third signal. The output voltage is received by a powered system, and the powered system is configured to receive a clock signal associated with a clock frequency. The clock frequency is equal to the second frequency.
    • 一种用于自适应地提供电源电压的系统和方法。 该系统包括被配置为接收输出电压并产生第一信号的振荡器。 第一信号与第一频率和第一周期相关联。 另外,该系统包括:频率比较器,被配置为接收与第一频率相关联的第一信号和与第二频率相关联的第二信号,并且如果第一频率和第二频率不相等则产生第三信号;以及电压调节器 耦合到频率比较器并被配置为基于至少与第三信号相关联的信息来产生输出电压。 输出电压由供电系统接收,并且供电系统被配置为接收与时钟频率相关联的时钟信号。 时钟频率等于第二个频率。
    • 40. 发明申请
    • 3D Fingerprint and palm print data model and capture devices using multi structured lights and cameras
    • 3D指纹和掌纹数据模型,并采用多结构化的照明和摄像头捕获设备
    • US20060120576A1
    • 2006-06-08
    • US11269312
    • 2005-11-08
    • Feng Chen
    • Feng Chen
    • G06K9/00
    • G06K9/00G06K9/00033G06K9/2036
    • A method and system for biometric identification utilizes structured light (e.g., fine grid) that is projected to the target objects (fingers and palm). The image with structured light on the object contours can give 3D information of the objects with resolution to satisfy NIST fingerprint standard. In embodiments, the structured light can be of different color, to reduce the burden of the software processing. To enhance the capture speed, a model with 2D image on “smooth” 3D surface can be used. In this “2.5-D” case, the finest feature of the structured light can be as big as millimeter size. Although grid-structured light can satisfy current requirement of fingerprint and palm print capture standards, in other embodiments, a customized structure based on the initial scan result can give optimal result on the 3D data. This may be useful when higher resolution is desired.
    • 用于生物识别的方法和系统利用投射到目标对象(手指和手掌)的结构光(例如细网格)。 对象轮廓上的结构光图像可以给出具有分辨率的对象的3D信息,以满足NIST指纹标准。 在实施例中,结构化光可以具有不同的颜色,以减少软件处理的负担。 为了提高拍摄速度,可以使用“平滑”3D表面上的2D图像模型。 在这种“2.5-D”的情况下,结构光的最好的特征可以是毫米的大小。 虽然栅格结构的光可以满足指纹和掌纹捕获标准的当前要求,但在其他实施例中,基于初始扫描结果的定制结构可以在3D数据上给出最佳结果。 当需要更高分辨率时,这可能是有用的。