Battery pack and charging control method thereof
    12.
    发明授权
    Battery pack and charging control method thereof 有权
    电池组及其充电控制方法

    公开(公告)号:US08618773B2

    公开(公告)日:2013-12-31

    申请号:US12881094

    申请日:2010-09-13

    Abstract: A charging control method for a battery pack including a plurality of battery cells in which a full charge voltage value is initially set as a first voltage value. The charging control method includes: charging the plurality of battery cells to the first voltage value in an initial charge mode; and resetting the full charge voltage value to a second voltage value less than the first voltage value in a subsequent charge mode.

    Abstract translation: 一种电池组的充电控制方法,包括其中初始设定完全充电电压值作为第一电压值的多个电池单元。 充电控制方法包括:在初始充电模式下将多个电池单元充电到第一电压值; 以及在随后的充电模式中将完全充电电压值重置为小于第一电压值的第二电压值。

    Battery pack and balancing method of battery cells
    13.
    发明授权
    Battery pack and balancing method of battery cells 失效
    电池组和电池单元的平衡方法

    公开(公告)号:US08350528B2

    公开(公告)日:2013-01-08

    申请号:US12467142

    申请日:2009-05-15

    CPC classification number: H02J7/0016

    Abstract: A balancing method for a battery pack includes balancing battery cells near an end of discharge. A deep discharge of the battery cells can be prevented without using an overdischarge control unit. One battery cell balancing method includes: a balancing check condition determination step for determining whether or not a maximum voltage out of voltages of the battery cells is smaller than a reference voltage; a balancing start condition determination step for determining whether or not a residual capacity difference or voltage difference between the individual battery cells exceeds a reference value; a balancing time calculation step for calculating a balancing time for discharging the battery cell that exceeds the reference value; and a balancing operation step for discharging the selected battery cell when the battery cells are under charge or are at rest or when a discharge current of the battery cells is smaller than a reference current.

    Abstract translation: 电池组的平衡方法包括在放电结束附近平衡电池单元。 可以防止电池单元的深度放电而不使用过放电控制单元。 一种电池单元平衡方法包括:平衡检查条件确定步骤,用于确定电池单元的电压中的最大电压是否小于参考电压; 平衡开始条件确定步骤,用于确定各个电池单元之间的剩余容量差或电压差是否超过参考值; 平衡时间计算步骤,用于计算超过参考值的电池单元的放电平衡时间; 以及平衡操作步骤,用于当电池单元处于充电状态或静止时或当电池单元的放电电流小于参考电流时对所选择的电池单元进行放电。

    Protective circuit module and rechargeable battery including the same
    14.
    发明申请
    Protective circuit module and rechargeable battery including the same 有权
    保护电路模块和可充电电池包括相同的

    公开(公告)号:US20100098974A1

    公开(公告)日:2010-04-22

    申请号:US12588633

    申请日:2009-10-22

    Abstract: A protective circuit module and a rechargeable battery including the same, the protective circuit module including a circuit board main body having an electrode terminal tab configured to electrically connect to an electrode terminal of a bare cell, a chip-type PTC device on the circuit board main body, and a heat transfer member connected to the chip-type PTC device and the electrode terminal tab.

    Abstract translation: 一种保护电路模块和包括该保护电路模块的可再充电电池,保护电路模块包括电路板主体,该电路板主体具有电连接到裸电池的电极端子的电极端子接头,电路板上的芯片型PTC器件 主体和连接到芯片型PTC器件和电极端子接头的传热部件。

    Method and/or apparatus for high speed visualization of depth image-based 3D graphic data
    15.
    发明授权
    Method and/or apparatus for high speed visualization of depth image-based 3D graphic data 失效
    用于基于深度图像的3D图形数据的高速可视化的方法和/或装置

    公开(公告)号:US07450132B2

    公开(公告)日:2008-11-11

    申请号:US11052135

    申请日:2005-02-08

    CPC classification number: G06T15/10 G06T15/04 G06T15/205

    Abstract: A method and/or apparatus for high speed visualization of depth image-based 3D graphic data. The method includes: reading point texture data of a 3D object; performing a 3D warping for each of the reference images of the simple texture data at a predetermined view point to obtain warped images; performing a depth test and a splatting for each pixel of the plurality of warped images to obtain final color data; and visualizing an object by using the final color data. Accordingly, it is possible to reduce memory usage and increase the number of visualization per a second and to effectively implement visualization of 3D graphic object in, particularly, a mobile terminal.

    Abstract translation: 一种用于基于深度图像的3D图形数据的高速可视化的方法和/或装置。 该方法包括:读取3D对象的点纹理数据; 在预定视点处对简单纹理数据的每个参考图像执行3D翘曲以获得翘曲图像; 对所述多个翘曲图像中的每个像素执行深度测试和拼接以获得最终颜色数据; 并通过使用最终颜色数据来可视化对象。 因此,可以减少存储器使用量并增加每秒可视化的数量,并且有效地实现特别是移动终端中的3D图形对象的可视化。

    LITHOGRAPHY ALIGNMENT SYSTEM AND METHOD USING nDSE-BASED FEEDBACK CONTROL
    16.
    发明申请
    LITHOGRAPHY ALIGNMENT SYSTEM AND METHOD USING nDSE-BASED FEEDBACK CONTROL 审中-公开
    LITHOGRAPHY对准系统和使用基于nDSE的反馈控制的方法

    公开(公告)号:US20080090312A1

    公开(公告)日:2008-04-17

    申请号:US11550372

    申请日:2006-10-17

    CPC classification number: G03F9/7038 G03F9/7088 G03F9/7092 G03F9/7096

    Abstract: A contact lithography alignment system and method use nanoscale displacement sensing and estimation (nDSE) to maintain an alignment and compensate for a disturbance of one or more objects during contact lithography. A method of maintaining an alignment includes establishing an initial alignment of one or more objects and employing nDSE-based feedback control of relative positions of more or more of the objects to maintain the alignment during contact lithography. A method of disturbance compensation includes acquiring a first image, acquiring a second image, estimating an alignment error using nDSE applied to the first and second image, and adjusting a relative position to reduce the alignment error. A contact lithography system includes an optical sensor, a feedback processor providing nDSE and a position controller that adjusts relative positions of one or more objects to reduce an alignment error determined using the nDSE.

    Abstract translation: 接触光刻对准系统和方法使用纳米尺度位移感测和估计(nDSE)来保持对准并补偿接触光刻期间一个或多个物体的干扰。 保持对准的方法包括建立一个或多个对象的初始对准,并且采用基于nDSE的多个对象的相对位置的反馈控制来保持接触光刻期间的对准。 干扰补偿的方法包括获取第一图像,获取第二图像,使用施加到第一和第二图像的nDSE来估计对准误差,以及调整相对位置以减小对准误差。 接触光刻系统包括光学传感器,提供nDSE的反馈处理器和调整一个或多个对象的相对位置以减少使用nDSE确定的对准误差的位置控制器。

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