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    • 1. 发明申请
    • Generating Microwave Radiation
    • 生成微波辐射
    • US20130300287A1
    • 2013-11-14
    • US13892204
    • 2013-05-10
    • Oliver Heuermann
    • Oliver Heuermann
    • H01J23/34
    • H01J23/34
    • A method for operating a device having an anode and a cathode for generating microwave radiation with an accelerating voltage is provided. A chronological sequence of the accelerating voltage is provided by a series of voltage pulses. A first voltage pulse with an operating amplitude is applied between the anode and the cathode in order to determine whether an electric flashover occurs during the applied first voltage pulse. A second voltage pulse is applied following the first voltage pulse with a deionization amplitude that is smaller than the operating amplitude when the electric flashover occurs during the applied first voltage pulse.
    • 提供一种用于操作具有用于产生具有加速电压的微波辐射的阳极和阴极的装置的方法。 加速电压的时间顺序由一系列电压脉冲提供。 在阳极和阴极之间施加具有工作幅度的第一电压脉冲,以便确定在所施加的第一电压脉冲期间是否发生电气闪络。 在第一电压脉冲之后施加第二电压脉冲,其中,在施加的第一电压脉冲期间发生电闪络时,去离子振幅小于操作振幅。
    • 2. 发明授权
    • Power converter system using voltage sources driven in alternation
    • 电源转换器系统使用电压源交替驱动
    • US09106154B2
    • 2015-08-11
    • US13361744
    • 2012-01-30
    • Oliver Heuermann
    • Oliver Heuermann
    • H02M7/483G01R33/385H02M7/217
    • H02M7/483G01R33/3852H02M7/217Y10T307/50Y10T307/718
    • A power converter system includes a first unipolar voltage source that produces a first voltage and a second unipolar voltage source that produces a second voltage. The power converter system also includes a transformer with a first primary winding, a second primary winding, and a secondary winding, and control equipment. The first primary winding is connected to the first unipolar voltage source, and the second primary winding is connected to the second unipolar voltage source such that when the first voltage is applied, a first secondary voltage is induced in the secondary winding and that when the second voltage is applied, a second secondary voltage is induced. The first secondary voltage is directed in opposition to the second secondary voltage. The control equipment drives the first unipolar voltage source and the second unipolar voltage source in alternation for the production of the first voltage and the second voltage.
    • 功率转换器系统包括产生第一电压的第一单极电压源和产生第二电压的第二单极电压源。 功率转换器系统还包括具有第一初级绕组,第二初级绕组和次级绕组的变压器以及控制设备。 第一初级绕组连接到第一单极电压源,并且第二初级绕组连接到第二单极电压源,使得当施加第一电压时,在次级绕组中感应出第一次级电压,并且当第二初级绕组的第二 施加电压,引起第二次级电压。 第一次级电压被引导为与第二次级电压相对。 控制设备交替驱动第一单极电压源和第二单极电压源,以产生第一电压和第二电压。
    • 4. 发明申请
    • POWER CONVERTER SYSTEM
    • 电源转换器系统
    • US20120193992A1
    • 2012-08-02
    • US13361744
    • 2012-01-30
    • Oliver Heuermann
    • Oliver Heuermann
    • H02J1/00
    • H02M7/483G01R33/3852H02M7/217Y10T307/50Y10T307/718
    • A power converter system includes a first unipolar voltage source that produces a first voltage and a second unipolar voltage source that produces a second voltage. The power converter system also includes a transformer with a first primary winding, a second primary winding, and a secondary winding, and control equipment. The first primary winding is connected to the first unipolar voltage source, and the second primary winding is connected to the second unipolar voltage source such that when the first voltage is applied, a first secondary voltage is induced in the secondary winding and that when the second voltage is applied, a second secondary voltage is induced. The first secondary voltage is directed in opposition to the second secondary voltage. The control equipment drives the first unipolar voltage source and the second unipolar voltage source in alternation for the production of the first voltage and the second voltage.
    • 功率转换器系统包括产生第一电压的第一单极电压源和产生第二电压的第二单极电压源。 功率转换器系统还包括具有第一初级绕组,第二初级绕组和次级绕组的变压器以及控制设备。 第一初级绕组连接到第一单极电压源,并且第二初级绕组连接到第二单极电压源,使得当施加第一电压时,在次级绕组中感应出第一次级电压,并且当第二初级绕组的第二 施加电压,引起第二次级电压。 第一次级电压被引导为与第二次级电压相对。 控制设备交替驱动第一单极电压源和第二单极电压源,以产生第一电压和第二电压。
    • 6. 发明申请
    • ELECTRONIC TUBE
    • 电子管
    • US20090167133A1
    • 2009-07-02
    • US12335120
    • 2008-12-15
    • Oliver Heuermann
    • Oliver Heuermann
    • H01J7/44
    • H01J1/135H01J23/00H01J23/34
    • An electronic tube and an improved system for actuating the electrodes and/or the heating of a tube and for determining the service life of a tube is provided. The electronic tube has an evacuated or gas-filled region, in which one or several electrodes as well as a device for measuring the temperature of one of the electrodes are arranged. The electrode temperature of a tube may be precisely determined with relatively little effort. The service life of the tube may be predicted more precisely. By monitoring the electrode temperature and correspondingly actuating the electrodes and/or the electrode heating, it is possible to keep the electrode temperature precisely to the desired value (target value).
    • 提供了电子管和用于致动电极的改进的系统和/或管的加热和用于确定管的使用寿命。 电子管具有抽真空或充气区域,其中布置有一个或多个电极以及用于测量其中一个电极的温度的装置。 管的电极温度可以用相当少的精力精确地确定。 可以更精确地预测管的使用寿命。 通过监测电极温度并相应地驱动电极和/或电极加热,可以将电极温度精确地保持在期望值(目标值)。
    • 7. 发明授权
    • Generating microwave radiation
    • 产生微波辐射
    • US09076624B2
    • 2015-07-07
    • US13892204
    • 2013-05-10
    • Oliver Heuermann
    • Oliver Heuermann
    • H01J25/50H01J23/34
    • H01J23/34
    • A method for operating a device having an anode and a cathode for generating microwave radiation with an accelerating voltage is provided. A chronological sequence of the accelerating voltage is provided by a series of voltage pulses. A first voltage pulse with an operating amplitude is applied between the anode and the cathode in order to determine whether an electric flashover occurs during the applied first voltage pulse. A second voltage pulse is applied following the first voltage pulse with a deionization amplitude that is smaller than the operating amplitude when the electric flashover occurs during the applied first voltage pulse.
    • 提供一种用于操作具有用于产生具有加速电压的微波辐射的阳极和阴极的装置的方法。 加速电压的时间顺序由一系列电压脉冲提供。 在阳极和阴极之间施加具有工作幅度的第一电压脉冲,以便确定在所施加的第一电压脉冲期间是否发生电气闪络。 在第一电压脉冲之后施加第二电压脉冲,其中,在施加的第一电压脉冲期间发生电闪络时,去离子振幅小于操作振幅。
    • 8. 发明授权
    • Pulse generator
    • 脉冲发生器
    • US07755217B2
    • 2010-07-13
    • US12002092
    • 2007-12-13
    • Oliver Heuermann
    • Oliver Heuermann
    • H02M3/18
    • H03K17/567G04F1/005H03K3/57H03K17/28
    • A method for controlling a pulse generator is provided. The method includes measuring a switch-on time difference for each cell and controlling the semiconductor switches of each cell for the voltage pulse as a function of the switch-on time difference. The switch-on time difference is measured between a switch-on signal for switching the respective semiconductor switch of the cell to a conducting state and a system response dependent on the switching to the conducting state. A second switch-on signal for each cell is generated in such a time-shifted manner that the system response of each cell occurs simultaneously. The system response is dependent on the switching to the conducting state.
    • 提供了一种用于控制脉冲发生器的方法。 该方法包括测量每个单元的接通时间差并且控制作为接通时间差的函数的电压脉冲的每个单元的半导体开关。 在用于将单元的各个半导体开关切换到导通状态的接通信号和取决于切换到导通状态的系统响应之间测量接通时间差。 以这样的时移方式生成每个单元的第二接通信号,使得每个单元的系统响应同时发生。 系统响应取决于切换到导通状态。
    • 9. 发明申请
    • Pulse generator
    • 脉冲发生器
    • US20080150370A1
    • 2008-06-26
    • US12002092
    • 2007-12-13
    • Oliver Heuermann
    • Oliver Heuermann
    • H02M3/18
    • H03K17/567G04F1/005H03K3/57H03K17/28
    • A method for controlling a pulse generator is provided. The method includes measuring a switch-on time difference for each cell and controlling the semiconductor switches of each cell for the voltage pulse as a function of the switch-on time difference. The switch-on time difference is measured between a switch-on signal for switching the respective semiconductor switch of the cell to a conducting state and a system response dependent on the switching to the conducting state. A second switch-on signal for each cell is generated in such a time-shifted manner that the system response of each cell occurs simultaneously. The system response is dependent on the switching to the conducting state.
    • 提供了一种用于控制脉冲发生器的方法。 该方法包括测量每个单元的接通时间差并且控制作为接通时间差的函数的电压脉冲的每个单元的半导体开关。 在用于将单元的各个半导体开关切换到导通状态的接通信号和取决于切换到导通状态的系统响应之间测量接通时间差。 以这样的时移方式生成每个单元的第二接通信号,使得每个单元的系统响应同时发生。 系统响应取决于切换到导通状态。