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    • 3. 发明授权
    • Method for fault tracing in electronic measurement and test arrangements for electrochemical elements
    • 电子测量中的故障跟踪方法和电化学元件的测试布置
    • US06995568B2
    • 2006-02-07
    • US10704783
    • 2003-11-10
    • Rainer HaldPeter HaugDejan IlicWilli WallkumPeter Birke
    • Rainer HaldPeter HaugDejan IlicWilli WallkumPeter Birke
    • G01R31/28
    • G01R31/36G01R35/00
    • A method for fault tracing in automatically operating electronic measurement and test arrangements for a large number of electrochemical elements, wherein holders for the electrochemical elements are provided on the measurement and test arrangements and wherein cell simulators are provided with an external shape and size, including electrical connections, which approximately simulate one of the electrochemical elements to be tested, and contain test electronics, with a behaviour of the cell simulators with inverse polarity differing to a major extent from a behaviour with polarity based on the application, including the steps of inserting of the cell simulators into the holders, activating one of the cell simulators and applying a measurement current applied to it, measuring the voltage on the cell simulator and comparing the voltage with the nominal voltage predetermined for the cell simulator.
    • 一种自动操作电子测量和测试装置中用于大量电化学元件的故障跟踪的方法,其中用于电化学元件的保持器设置在测量和测试装置上,并且其中,电池模拟器具有外部形状和尺寸,包括电 连接,其近似地模拟待测试的电化学元件之一并且包含测试电子器件,具有相反极性的电池模拟器的行为在很大程度上不同于基于应用的极性行为,包括以下步骤:插入 将电池模拟器插入支架中,激活电池模拟器之一并施加施加到其上的测量电流,测量电池模拟器上的电压并将电压与预定用于电池模拟器的额定电压进行比较。
    • 5. 发明申请
    • EMERGENCY SYSTEM FOR POWER FAILURES
    • 电力故障应急系统
    • US20140103882A1
    • 2014-04-17
    • US14123546
    • 2012-05-23
    • Edward PytlikRainer Hald
    • Edward PytlikRainer Hald
    • H02J7/00
    • H02J7/0029H02J7/0091
    • An emergency system for power failures includes a single-cell or multiple-cell rechargeable battery selected from the group consisting of NiMH, NiCd, NiZn, Ag2O/Zn or lithium-ion, and a charging electronics system that charges the battery, wherein the charging electronics system provides a charging voltage at which the battery does not overcharge at a temperature of up to 80° C., and wherein the charging electronics system supplies a charging voltage at which the battery is transferred into a charging state and/or is kept in a charging state, in which the battery is charged to 5% to 30%.
    • 一种用于断电的应急系统包括从NiMH,NiCd,NiZn,Ag2O / Zn或锂离子组成的组中选择的单节电池或多节电池充电电池,以及对电池充电的充电电子系统,其中充电 电子系统提供在高达80℃的温度下电池不会过充电的充电电压,并且其中充电电子系统提供充电电压,在该充电电压下,电池被转移到充电状态和/或保持在 充电状态,其中电池充电至5%至30%。