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    • 1. 发明申请
    • FUEL CELL WITH PROTECTIVE DEVICE
    • 带保护装置的燃料电池
    • US20080176120A1
    • 2008-07-24
    • US12017802
    • 2008-01-22
    • MING-YAO DONGChun-Chin Tung
    • MING-YAO DONGChun-Chin Tung
    • H01M8/04
    • H01M8/249H01M8/04559H01M8/04589H01M8/04619H01M8/04865H01M8/0488H01M8/04925
    • The present invention relates to a fuel cell with protective device, comprising a plurality of fuel cell stacks, a fuel cell protection circuit unit and a switch control device. The fuel cell protective circuit unit consists of a plurality of channel selection devices and a series-parallel circuit unit. The channel selection devices respectively correspond to one of the fuel cell stacks. The series-parallel circuit unit is electrically connected to the channel selection devices and has an electric output terminal. The fuel cell stacks are respectively electrically connected to the corresponding channel selection devices in the fuel cell protection circuit unit, and the switch control device controls the selection by the corresponding channel selection devices of an electrically open state or an electrically closed state between respective fuel cell stack and the series-parallel circuit unit.
    • 本发明涉及具有保护装置的燃料电池,其包括多个燃料电池堆,燃料电池保护电路单元和开关控制装置。 燃料电池保护电路单元由多个通道选择装置和串并联电路单元组成。 通道选择装置分别对应于燃料电池组之一。 串并联电路单元电连接到通道选择装置并具有电输出端子。 燃料电池组分别电连接到燃料电池保护电路单元中的对应的通道选择装置,并且开关控制装置控制相应的通道选择装置在相应的燃料电池之间的电气打开状态或电闭合状态的选择 堆叠和串并联电路单元。
    • 2. 发明申请
    • FUEL CELL SYSTEM WITH SERIES-PARALLEL CIRCUIT
    • 具有并联电路的燃料电池系统
    • US20080182143A1
    • 2008-07-31
    • US12017883
    • 2008-01-22
    • MING-YAO DONGChun-Chin Tung
    • MING-YAO DONGChun-Chin Tung
    • H01M8/04
    • H01M8/04865H01M8/0488H01M8/04925H01M8/249H02J7/0024
    • The present invention relates to a fuel cell system with series-parallel circuit, comprising a plurality of fuel cell stacks, each fuel cell stack consisting of a fuel cell member and a DC voltage conversion unit; and a series-parallel circuit unit. The fuel cell member in respective fuel cell stack is electrically series-connected to the corresponding DC voltage conversion unit. The DC voltage conversion unit in each fuel cell stack includes a positive terminal and a negative terminal. The series-parallel circuit unit is electrically connected to the positive terminals and the negative terminals of the fuel cell stacks to form a specific electrical series-parallel connection relationship. The series-parallel circuit unit outputs the integrated power from the fuel cell stacks.
    • 本发明涉及一种具有并联电路的燃料电池系统,包括多个燃料电池堆,每个燃料电池堆由燃料电池构件和直流电压转换单元构成; 和串并联电路单元。 各燃料电池堆中的燃料电池构件与相应的直流电压转换单元电连接。 每个燃料电池堆中的直流电压转换单元包括正极端子和负极端子。 串并联电路单元电连接到燃料电池堆的正极端子和负极端子以形成特定的电串并联连接关系。 串并联电路单元输出来自燃料电池堆的集成电力。
    • 3. 发明申请
    • CURRENT-LIMITING VOLTAGE CONVERSION DEVICE
    • 电流限制电压转换器件
    • US20090140709A1
    • 2009-06-04
    • US11949974
    • 2007-12-04
    • MING-YAO DONGWen-Hsing Chang
    • MING-YAO DONGWen-Hsing Chang
    • G05F1/00
    • G05F1/573
    • The present invention relates to a current-limiting voltage conversion device, comprising a voltage conversion unit, a voltage signal unit, a sensor unit and a DC power loop. The voltage conversion unit and the sensor unit are electrically connected in series in the DC power loop. The voltage signal unit outputs a corresponding voltage signal to the voltage conversion unit based on the electric signal output by the sensor unit, and the voltage conversion unit controls the voltage conversion of the voltage conversion unit based on said voltage signal. The voltage signal unit includes outputting a voltage signal corresponding to the power state within a first preset range as detected by the sensor unit and outputting another voltage signal corresponding to the power state within a second preset range as detected by the sensor unit until the power state detected by the sensor unit returns to the first preset range
    • 本发明涉及限流电压转换装置,包括电压转换单元,电压信号单元,传感器单元和直流电源回路。 电压转换单元和传感器单元在直流电源回路中串联电连接。 电压信号单元基于由传感器单元输出的电信号将相应的电压信号输出到电压转换单元,并且电压转换单元基于所述电压信号来控制电压转换单元的电压转换。 电压信号单元包括:输出与由传感器单元检测到的第一预设范围内的功率状态对应的电压信号,并输出与由传感器单元检测到的第二预设范围内的功率状态相对应的另一个电压信号,直到电源状态 由传感器单元检测到的返回到第一预设范围