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    • 2. 发明申请
    • RECTIFIER CIRCUIT WITH AC SIDE SHORT-CIRCUITING FUNCTION AND SYNCHRONIZED SWITCH HARVESTING ON INDUCTOR CONVERTER
    • 具有交流侧短路功能的整流器电路和电感转换器的同步开关采集
    • WO2013050620A3
    • 2013-09-26
    • PCT/EP2012069902
    • 2012-10-08
    • FRAUNHOFER GES FORSCHUNG
    • MATEU SAEZ MARIA LORETOZESSIN HENRIKLUEHMANN LARSSPIES PETER
    • H02M7/219
    • H02M7/06G01R19/04H02H7/125H02N2/181
    • Rectifier circuit (600) comprising a pair of input terminals (614, 616), a pair of output terminals (654, 656), and a first circuit (601) interconnecting the pair of input terminals (614, 616). The first circuit (601) comprises an energy storing element (34) and a rectifier bridge (642), wherein the rectifier bridge comprises at least one controllable switching element (645, 647) per bridge branch. An output of the rectifier bridge (642) supplies the pair of output terminals (654, 656) and wherein the at least one controllable switching element per bridge branch is configured to provide a temporary conducting path via the rectifier bridge which bypasses the pair of output terminals (654, 656) and which short-circuits a series connection of the energy storing (34) element and an energy source (12) connectable to the pair of input terminals (614, 616). A converter for synchronized switch harvesting on inductor comprising such a rectifier circuit and a method for rectifying an electrical current generated by an energy source are also described.
    • 整流器电路(600)包括一对输入端子(614,616),一对输出端子(654,656)和互连所述一对输入端子(614,616)的第一电路(601)。 第一电路(601)包括能量存储元件(34)和整流器桥(642),其中整流桥包括每个桥分支的至少一个可控开关元件(645,647)。 整流器桥(642)的输出端提供一对输出端(654,656),并且其中每个桥接支路的至少一个可控开关元件被配置成经由整流桥提供临时导通路径,该整流桥绕过该对输出端 端子(654,656),并且将能量存储(34)元件和能够连接到所述一对输入端子(614,616)的能量源(12)的串联连接短路。 还描述了用于在包括这种整流器电路的电感器上同步开关收集的转换器和用于对由能量源产生的电流进行整流的方法。
    • 9. 发明专利
    • DE102008021875A1
    • 2009-10-08
    • DE102008021875
    • 2008-05-02
    • FRAUNHOFER GES FORSCHUNG
    • FOERSTER FRANKSPIES PETER
    • H02M3/156
    • A potential converter device with a first storage capacitor implemented to be supplied with energy from an energy source to acquire a first potential form at the first storage capacitor, and a second storage capacitor implemented to be supplied with energy from the first storage capacitor to acquire a second potential form at the second storage capacitor. The potential converter device further has a converter electrically connected between the first and second storage capacitors and implemented to execute an energy transmission from the first storage capacitor to the second storage capacitor if the first potential form reaches a first potential threshold value and until the first potential form reaches a second potential threshold value, wherein the first potential threshold value is greater regarding its magnitude than the second potential threshold value.