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    • 2. 发明授权
    • Power adaptor
    • 电源适配器
    • US09374010B2
    • 2016-06-21
    • US13945878
    • 2013-07-18
    • Yu-Cheng ShenYu Hung
    • Yu-Cheng ShenYu Hung
    • H02M3/335H02M7/02H02M1/00
    • H02M3/33507H02M2001/0032Y02B70/16
    • A power adaptor is provided. The power adaptor includes a voltage converter, a connecting port, a first transformer and a controller. The voltage converter receives an input voltage and determines whether to convert the input voltage to an output voltage according to an indicating signal. The first transformer includes a primary side and a secondary side. The primary side and the secondary side are coupled to each other, and a first end and a second end of the secondary side are coupled to the connecting port, respectively. The controller generates the indicating signal according to a voltage at the primary side of the first transformer. The connecting port is used to connect to an electrical device, and when the connecting port is electrically connected to the electrical device, a first end and a second end of the secondary side are short to a reference ground end of the secondary side.
    • 提供电源适配器。 电源适配器包括电压转换器,连接端口,第一变压器和控制器。 电压转换器接收输入电压,并根据指示信号确定是否将输入电压转换为输出电压。 第一变压器包括初级侧和次级侧。 初级侧和次级侧彼此耦合,次级侧的第一端和第二端分别耦合到连接端口。 控制器根据第一变压器初级侧的电压产生指示信号。 连接端口用于连接到电气设备,并且当连接端口电连接到电气设备时,次级侧的第一端和第二端与次级侧的基准接地端相比较短。
    • 3. 发明授权
    • Battery module and overcharge protecting method thereof
    • 电池模块及其过充电保护方法
    • US09184607B2
    • 2015-11-10
    • US14185893
    • 2014-02-20
    • Yu-Hsiu SuKe-Jen HungYu-Cheng Shen
    • Yu-Hsiu SuKe-Jen HungYu-Cheng Shen
    • H02J7/00H01M10/00G08B21/00G01N27/416H01M10/42
    • H02J7/0029G01N27/416G08B21/00H01M10/4207H01M10/425H02J7/0031H02J2007/0037
    • A battery module and an overcharge protecting method are provided. The overcharge protecting method includes following steps: detecting a battery voltage of a rechargeable battery during a charging process; determining whether the battery voltage is larger than or equals to an upper limit voltage; if no, continuously charging the rechargeable battery until the battery voltage reaches a charging cut-off voltage and then the charging process is ended; if yes, stopping the charging process, reducing the value of the charging cut-off voltage and using the reduced charging cut-off voltage as the charging cut-off voltage in the next charging process. In the subsequent charging process, once the overcharge occurs, the value of the charging cut-off voltage is continuously reduced until the overcharge of the rechargeable battery does not occur during the charging process.
    • 提供电池模块和过充电保护方法。 过充电保护方法包括以下步骤:在充电过程中检测可再充电电池的电池电压; 确定电池电压是否大于或等于上限电压; 如果否,连续充电可充电电池,直到电池电压达到充电截止电压,然后充电过程结束; 如果是,停止充电过程,减少充电截止电压的值,并使用减少的充电截止电压作为下次充电过程中的充电截止电压。 在随后的充电过程中,一旦发生过充电,充电截止电压的值将持续减小,直到充电过程中不会发生充电电池的过充电。
    • 7. 发明授权
    • Device and method for block code error correction
    • 块代码纠错的装置和方法
    • US07181669B2
    • 2007-02-20
    • US10734286
    • 2003-12-15
    • Yu-Cheng ShenKuo-Ming WangPei YuCheng-Yueh Hsiao
    • Yu-Cheng ShenKuo-Ming WangPei YuCheng-Yueh Hsiao
    • H03M13/05H03M13/29
    • H03M13/2707H03M13/15H03M13/1515H03M13/2915
    • A device and method for block code error correction. The device includes a block code input unit, an erasing address table, an error table and a decoder. The block code input unit is used to input a block code. The erasing address table and the error table have a plurality of erasing entities and error entities in rows and columns, respectively. The decoder decodes the block code in a row direction based on the erasing address table to find data errors on rows and update the error table, and updates the erasing address table in the row direction according to a first determination principle. Next, the decoder decodes the block code in a column direction based on the erasing address table to find data errors on columns and update the error table, and updates the erasing address table in the column direction according to a second determination principle.
    • 一种用于块码纠错的装置和方法。 该装置包括块代码输入单元,擦除地址表,错误表和解码器。 块代码输入单元用于输入块代码。 擦除地址表和错误表分别具有行和列中的多个擦除实体和错误实体。 解码器基于擦除地址表对行方向上的块码进行解码,以查找行上的数据错误并更新错误表,并根据第一确定原理更新行方向上的擦除地址表。 接下来,解码器基于擦除地址表在列方向上解码块码,以查找列上的数据错误并更新错误表,并根据第二确定原理更新列方向上的擦除地址表。
    • 8. 发明申请
    • BATTERY MODULE AND OVERCHARGE PROTECTING METHOD THEREOF
    • 电池模块及其过载保护方法
    • US20140253042A1
    • 2014-09-11
    • US14185893
    • 2014-02-20
    • Yu-Hsiu SuKe-Jen HungYu-Cheng Shen
    • Yu-Hsiu SuKe-Jen HungYu-Cheng Shen
    • H02J7/00
    • H02J7/0029G01N27/416G08B21/00H01M10/4207H01M10/425H02J7/0031H02J2007/0037
    • A battery module and an overcharge protecting method are provided. The overcharge protecting method includes following steps: detecting a battery voltage of a rechargeable battery during a charging process; determining whether the battery voltage is larger than or equals to an upper limit voltage; if no, continuously charging the rechargeable battery until the battery voltage reaches a charging cut-off voltage and then the charging process is ended; if yes, stopping the charging process, reducing the value of the charging cut-off voltage and using the reduced charging cut-off voltage as the charging cut-off voltage in the next charging process. In the subsequent charging process, once the overcharge occurs, the value of the charging cut-off voltage is continuously reduced until the overcharge of the rechargeable battery does not occur during the charging process.
    • 提供电池模块和过充电保护方法。 过充电保护方法包括以下步骤:在充电过程中检测可再充电电池的电池电压; 确定电池电压是否大于或等于上限电压; 如果否,连续充电可充电电池,直到电池电压达到充电截止电压,然后充电过程结束; 如果是,停止充电过程,减少充电截止电压的值,并使用减少的充电截止电压作为下次充电过程中的充电截止电压。 在随后的充电过程中,一旦发生过充电,充电截止电压的值将持续减小,直到充电过程中不会发生充电电池的过充电。