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    • 3. 发明授权
    • Capacitor for intermediate-circuit assemblies of low inductance
    • 低电感中间电路组件的电容器
    • US06262876B1
    • 2001-07-17
    • US09417974
    • 1999-10-13
    • Ernst Schimanek
    • Ernst Schimanek
    • H01G432
    • H01G9/008H01G9/06H01G9/08
    • A contact sleeve passing through a central region of a capacitor provides a low-inductance connection between a lower contact surface of a capacitor and a first outer port. The sleeve is separated from the windings of the capacitor by an insulative layer. A second outer port is formed in close proximity to and insulated from the first outer port so that arcing between the outer ports is prevented. The resulting capacitor has a low inductance and is useful in, for example, the intermediate circuit design of converters, resulting in a compact and reliable configuration.
    • 通过电容器的中心区域的接触套筒在电容器的下接触表面和第一外端口之间提供低电感连接。 套管通过绝缘层与电容器的绕组分离。 第二外部端口形成为紧邻第一外部端口并与第一外部端口绝缘,从而防止外部端口之间的电弧。 所得到的电容器具有低电感,并且在例如转换器的中间电路设计中是有用的,导致紧凑且可靠的配置。
    • 4. 发明授权
    • Converter with low-inductance capacitor in an intermediate-circuit
assembly
    • 在中间电路组件中具有低电感电容器的转换器
    • US6097617A
    • 2000-08-01
    • US417975
    • 1999-10-13
    • Ernst Schimanek
    • Ernst Schimanek
    • H02M7/00H02M1/00
    • H02M7/003
    • Capacitors and power electronic components, such as power switches of hybrid configuration, are positioned with low inductance and in close proximity to each other on one said of an intermediate-circuit assembly, below a flat intermediate-circuit bus. The bus and the capacitors and power electronic components are electrically and conductively connected. An electrically insulated and heat-dissipating cooling body is positioned on the other side of the intermediate-circuit assembly. At least a portion of the converter circuitry or the entire converter is arranged in a single housing. The result is a compact and reliable electronic circuit arrangement for a converter.
    • 电容器和电力电子部件,例如混合配置的电源开关,位于具有低电感的位置,并且在平坦的中间电路总线之下的中间电路组件的一个上彼此靠近。 总线和电容器和电力电子部件是电气和导电连接的。 电绝缘和散热的冷却体位于中间回路组件的另一侧。 转换器电路或整个转换器的至少一部分被布置在单个外壳中。 结果是用于转换器的紧凑且可靠的电子电路装置。
    • 6. 发明授权
    • Overload and short circuit protection device for a power semiconductor
circuit
    • 功率半导体电路的过载和短路保护装置
    • US5831807A
    • 1998-11-03
    • US847681
    • 1997-04-28
    • Juergen MasannekErnst Schimanek
    • Juergen MasannekErnst Schimanek
    • G01R31/02H02H3/08H02H7/122H02H3/00
    • H02H7/1227
    • An overcurrent and short circuit protection device for a power semiconductor component is responsive to output current signals representing the actual output current(s) of the semiconductor component. A short-circuit window comparator receives the output current signals and produces an error signal when the sum of all output current signals is less than a minimum allowable value or more than a maximum allowable value. An overcurrent window comparator receives the same output current signals, determines a positive maximum instantaneous value and a negative maximum instantaneous value, and produces an error signal when either one of these exceeds a maximum allowable value. An error signal from either window comparator interrupts operation of the power semiconductor component and locks out all higher level control signals to the power semiconductor component.
    • 用于功率半导体部件的过电流和短路保护装置响应于表示半导体部件的实际输出电流的输出电流信号。 当所有输出电流信号的和小于最小允许值或大于最大允许值时,短路窗口比较器接收输出电流信号并产生误差信号。 过电流窗口比较器接收相同的输出电流信号,确定正的最大瞬时值和负的最大瞬时值,并且当它们中的任一个超过最大允许值时产生误差信号。 来自任一窗口比较器的误差信号中断功率半导体部件的操作,并将所有较高级别的控制信号锁定到功率半导体部件。