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    • 31. 发明申请
    • METHOD AND APPARATUS FOR CONTROLLING A POWER SUPPLY DEVICE WITH AID OF FULL-FEATURED MODULARIZED FUNCTIONAL BLOCKS
    • 用于控制具有全功能模块化功能块的电源装置的方法和装置
    • US20140239898A1
    • 2014-08-28
    • US14191449
    • 2014-02-27
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00
    • H02J7/0014H02J7/0021H02J7/007H03K5/04Y10T307/747
    • A method and apparatus for controlling a power supply device is provided, where the apparatus includes at least one portion of the power supply device. The apparatus includes at least one battery module, each of which is a battery module of a set of battery modules connected in series within the power supply device, where each battery module of the set of battery modules includes at least one battery cell, at least one processing circuit, and at least one balancing circuit, which is electrically connected to the battery cell and the processing circuit. The processing circuit controls operations of the aforementioned each battery module of the set of battery modules. In addition, under control of the processing circuit, the balancing circuit performs balancing of the battery cell. Additionally, the balancing circuit provides the processing circuit with a bias voltage, and the processing circuit obtains electric power from the balancing circuit.
    • 提供了一种用于控制电源装置的方法和装置,其中装置包括电源装置的至少一部分。 该装置包括至少一个电池模块,每个电池模块是在电源装置内串联连接的一组电池模块的电池模块,其中该组电池模块的每个电池模块至少包括至少一个电池单元 一个处理电路和至少一个平衡电路,其被电连接到电池单元和处理电路。 处理电路控制上述电池模块组的每个电池模块的操作。 此外,在处理电路的控制下,平衡电路执行电池单元的平衡。 此外,平衡电路为处理电路提供偏置电压,并且处理电路从平衡电路获得电力。
    • 33. 发明申请
    • BATTERY MANAGEMENT CIRCUIT AND BATTERY MANAGEMENT METHOD FOR MANAGING BATTERY APPARATUS
    • 用于管理电池装置的电池管理电路和电池管理方法
    • US20140015477A1
    • 2014-01-16
    • US13940237
    • 2013-07-11
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00
    • 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。
    • 34. 发明申请
    • ACTIVE BALANCING CIRCUIT FOR BALANCING BATTERY UNITS
    • 用于平衡电池单元的主动平衡电路
    • US20140015474A1
    • 2014-01-16
    • US13940235
    • 2013-07-11
    • Fu-Sheng Tsai
    • Fu-Sheng Tsai
    • H02J7/00
    • H02J7/0014G06F17/5009G06F2217/78H02J7/0016H02J7/0042
    • A balancing circuit for balancing battery units includes a control unit, an inductor unit and an energy transfer unit. The control unit is coupled to at least one battery unit of the battery units. The control unit includes at least one switch device. The inductor unit is coupled between the switch device and the battery unit, and is arranged for taking away an excess energy of the battery unit according to a switch state of the switch device, and accordingly generating an inductive energy corresponding to the excess energy. The energy transfer unit is coupled to the inductor unit, and is arranged for providing the inductive energy to the battery units and storing the inductive energy.
    • 用于平衡电池单元的平衡电路包括控制单元,电感器单元和能量传递单元。 控制单元耦合到电池单元的至少一个电池单元。 控制单元包括至少一个开关装置。 电感器单元耦合在开关装置和电池单元之间,并且被设置为根据开关装置的开关状态来取出电池单元的多余能量,并且因此产生与多余能量对应的感应能量。 能量传递单元耦合到电感器单元,并且被布置成用于向电池单元提供感应能量并存储感应能量。
    • 35. 发明授权
    • High power factors, single stage harmonics correction converter
    • 高功率因数,单级谐波校正转换器
    • US6038146A
    • 2000-03-14
    • US874412
    • 1997-06-13
    • Edward Han Chen LuoPiotr MarkowskiFu-Sheng Tsai
    • Edward Han Chen LuoPiotr MarkowskiFu-Sheng Tsai
    • H02M1/00H02M1/42H02M3/335H02M3/24H02M5/42H02M7/217
    • H02M1/4258Y02B70/126
    • An AC-to-DC power converter (power supply) with high power factors and which minimizes the input charging current flowing through the separate inductor by locating the separate inductor between a full-bridge rectifier and the transformer but out of the storage capacitor's current path. In this manner, when the input voltage is sufficiently high, the converter draws input current into the transformer through the separate inductor, while current flowing to and charging the storage capacitor is unimpeded by the separate inductor. The current being drawn through the separate inductor and into the transformer may also be used to recharge the storage capacitor. Associated losses are reduced and the separate inductor may be reduced in size. Other embodiments eliminate the second primary winding in the transformer and place a second set of windings coupled to the separate inductor between the full-bridge rectifier and the storage capacitor, which reduces the current spike when the storage capacitor is recharged with current flowing through this path.
    • 具有高功率因数的AC到DC功率转换器(电源),并且通过将全桥整流器和变压器之间的分离电感器定位,而不是存储电容器的电流路径,使流过分离电感器的输入充电电流最小化 。 以这种方式,当输入电压足够高时,转换器通过单独的电感器将输入电流吸入变压器,而流向存储电容器的电流不受单独的电感器的阻碍。 通过单独的电感器吸入并进入变压器的电流也可用于对存储电容器进行再充电。 相关的损耗减小,单独的电感器可能会减小。 其他实施例消除了变压器中的第二初级绕组,并且将第二组绕组耦合到全桥整流器和存储电容器之间的分离电感器,这在存储电容器被流过该路径的电流再充电时减小了电流尖峰 。