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    • 4. 发明申请
    • CURRENT STEERING CIRCUIT AND CURRENT STEERING METHOD FOR CONTROLLING BRANCH CURRENT FLOWING THROUGH BRANCH
    • 通过分支控制分支电流流动的电流转向电路和电流转向方法
    • US20140239910A1
    • 2014-08-28
    • US14191347
    • 2014-02-26
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H03K5/04H02J7/00
    • H02J7/0014H02J7/0021H02J7/007H03K5/04Y10T307/747
    • A current steering circuit for controlling a branch current flowing through a branch is provided. The branch is coupled to a first main switch. The current steering circuit includes a sensing device, a first auxiliary switch and a control unit. The sensing device is coupled to the branch and arranged for sensing the branch current to generate a sensing result. The first auxiliary switch is coupled in parallel with the first main switch. The control unit is coupled to the sensing device and the first auxiliary switch, wherein while the first main switch is turned on, the control unit generates a first switch control signal to the first auxiliary switch, and adjusts a duty cycle of the first switch control signal according to the sensing result in order to adjust the branch current.
    • 提供了用于控制流过分支的分支电流的电流转向电路。 分支耦合到第一主开关。 当前的转向电路包括感测装置,第一辅助开关和控制单元。 感测装置耦合到分支并被布置用于感测分支电流以产生感测结果。 第一辅助开关与第一主开关并联连接。 控制单元耦合到感测装置和第一辅助开关,其中当第一主开关导通时,控制单元产生到第一辅助开关的第一开关控制信号,并调节第一开关控制的占空比 信号根据感测结果为了调整分支电流。
    • 5. 发明申请
    • BATTERY SYSTEM BALANCING CONTROL METHOD FOR PERFORMING BALANCING CONTROL WITH AID OF REFERENCE VOLTAGE INFORMATION AND BATTERY SYSTEM THEREOF
    • 用于通过参考电压信息和电池系统来执行平衡控制的电池系统平衡控制方法
    • US20140239899A1
    • 2014-08-28
    • US14191452
    • 2014-02-27
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00
    • H02J7/0014H02J7/0021H02J7/007H03K5/04Y10T307/747
    • A battery system balancing control method for performing balancing control with aid of reference voltage information and battery system are provided. The battery system balancing control method includes: after a specific reference resistor of a plurality of reference resistors is installed into a specific battery module of a set of battery modules connected in series within a power supply device and the reference resistors are electrically connected in series, converting a total voltage of the set of battery modules into the reference voltage information, wherein each battery module of the set of battery modules includes at least one battery cell, and the reference voltage information includes a plurality of sets of reference voltage levels respectively corresponding to the reference resistors; and performing balancing control of the specific battery module according to a set of reference voltage levels corresponding to the specific reference resistor within the sets of reference voltage levels.
    • 提供了一种用于通过参考电压信息和电池系统进行平衡控制的电池系统平衡控制方法。 电池系统平衡控制方法包括:在将多个参考电阻器的特定参考电阻器安装到串联连接在电源装置内的一组电池模块的特定电池模块中并且参考电阻器串联电连接之后, 将所述一组电池模块的总电压转换为参考电压信息,其中所述一组电池模块的每个电池模块包括至少一个电池单元,并且所述参考电压信息包括分别对应于 参考电阻; 以及根据在所述参考电压电平组内的与所述特定参考电阻器相对应的一组参考电压电平来执行所述特定电池模块的平衡控制。
    • 7. 发明申请
    • METHOD AND APPARATUS FOR PERFORMING BATTERY BALANCING CONTROL WITH AID OF PLUGGABLE MECHANISM
    • 用可插拔机制来实现电池平衡控制的方法和装置
    • US20140015490A1
    • 2014-01-16
    • US13940192
    • 2013-07-11
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00
    • H02J7/0014G06F17/5009G06F2217/78H02J7/0016H02J7/0042
    • A method for performing battery balancing control with aid of pluggable mechanism is provided. The method is applied to a power supply device. The method includes the steps of: providing a pluggable external module, wherein the pluggable external module includes a first connection port, and further includes a set of external balancing circuits corresponding to a set of battery cells of a specific battery module within the power supply device, respectively; and on a case of the specific battery module, providing a second connection port corresponding to the first connection port, allowing the pluggable external module to be coupled to the specific battery module with aid of the pluggable mechanism formed with the first connection port and the second connection port, in order to utilize the set of external balancing circuits to perform balancing operations on the set of battery cells. Associated apparatuses are further provided.
    • 提供一种借助于可插拔机构进行电池平衡控制的方法。 该方法应用于电源装置。 该方法包括以下步骤:提供可插拔的外部模块,其中所述可插拔外部模块包括第一连接端口,并且还包括对应于所述电源装置内的特定电池模块的一组电池单元的一组外部平衡电路 , 分别; 并且在特定电池模块的情况下,提供对应于第一连接端口的第二连接端口,借助于形成有第一连接端口的可插拔机构和第二连接端口,允许可插拔外部模块耦合到特定电池模块 连接端口,以便利用该组外部平衡电路来对该组电池单元执行平衡操作。 还提供了相关装置。
    • 8. 发明申请
    • Systems and methods for configuring and charging hybrid battery systems
    • 混合电池系统配置和充电的系统和方法
    • US20110248681A1
    • 2011-10-13
    • US12798566
    • 2010-04-07
    • Bruce A. MillerFu-Sheng Tsai
    • Bruce A. MillerFu-Sheng Tsai
    • H02J7/00
    • H02J7/0018
    • Systems and methods for simultaneously charging two or more cell strings of a hybrid battery system from a shared input current path to the battery system. An input common charging current may be limited to the smallest maximum allowable charging current value of multiple battery cell strings of a hybrid battery system, or may be provided as the greater of the maximum allowable charging currents of multiple battery cell strings of a hybrid battery system with current supplied to individual cell strings that require less than the maximum current being individually controlled so as not to exceed the maximum allowable current for each of the individual cell strings of the hybrid battery system.
    • 从共享输入电流路径向电池系统同时充电混合电池系统的两个或多个电池串的系统和方法。 输入公共充电电流可以限制为混合电池系统的多个电池单元串的最小允许充电电流值的最小值,或者可以被提供为混合电池系统的多个电池单元串的最大允许充电电流中的较大者 其中电流被提供给需要小于最大电流被单独控制的单个电池串,以便不超过混合电池系统的每个单独电池串的最大允许电流。
    • 9. 发明授权
    • Current steering circuit and current steering method for controlling branch current flowing through branch
    • 用于控制流经分支的分支电流的电流转向电路和电流转向方法
    • US09281696B2
    • 2016-03-08
    • US14191347
    • 2014-02-26
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00H03K5/04
    • H02J7/0014H02J7/0021H02J7/007H03K5/04Y10T307/747
    • A current steering circuit for controlling a branch current flowing through a branch is provided. The branch is coupled to a first main switch. The current steering circuit includes a sensing device, a first auxiliary switch and a control unit. The sensing device is coupled to the branch and arranged for sensing the branch current to generate a sensing result. The first auxiliary switch is coupled in parallel with the first main switch. The control unit is coupled to the sensing device and the first auxiliary switch, wherein while the first main switch is turned on, the control unit generates a first switch control signal to the first auxiliary switch, and adjusts a duty cycle of the first switch control signal according to the sensing result in order to adjust the branch current.
    • 提供了用于控制流过分支的分支电流的电流转向电路。 分支耦合到第一主开关。 当前的转向电路包括感测装置,第一辅助开关和控制单元。 感测装置耦合到分支并被布置用于感测分支电流以产生感测结果。 第一辅助开关与第一主开关并联连接。 控制单元耦合到感测装置和第一辅助开关,其中当第一主开关导通时,控制单元产生到第一辅助开关的第一开关控制信号,并调节第一开关控制的占空比 信号根据感测结果为了调整分支电流。
    • 10. 发明授权
    • Battery management circuit and battery management method for managing battery apparatus
    • 电池管理电路和电池管理方法
    • US09172256B2
    • 2015-10-27
    • US13940237
    • 2013-07-11
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00G06F17/50
    • H02J7/0014G06F17/5009G06F2217/78H02J7/0016H02J7/0042
    • A battery management circuit for managing a battery apparatus is provided. The battery apparatus includes at least a first battery unit and a second battery unit connected in parallel. The battery management circuit includes a detection circuit and an adjustment circuit. The detection circuit is arranged to detect a voltage relationship between the first and second battery units to generate a first detection result. The adjustment circuit is coupled to the detection circuit. When the voltage relationship does not meet a predetermined voltage condition, the adjustment circuit is arranged to adjust a voltage of at least one of the first and second battery units in order to make the voltage relationship meet the predetermined voltage condition.
    • 提供一种用于管理电池装置的电池管理电路。 电池装置至少包括并联连接的第一电池单元和第二电池单元。 电池管理电路包括检测电路和调整电路。 检测电路被配置为检测第一和第二电池单元之间的电压关系,以产生第一检测结果。 调整电路耦合到检测电路。 当电压关系不满足预定的电压条件时,调节电路被布置为调节第一和第二电池单元中的至少一个的电压,以使电压关系满足预定的电压状态。