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    • 1. 发明申请
    • APPARATUS AND METHOD FOR MAGNETIC CONTROL OF AN ELECTRON BEAM
    • 电子束磁控制装置及方法
    • US20120027165A1
    • 2012-02-02
    • US12845579
    • 2010-07-28
    • Antonio CaiafaMaja Harfman TodorovicJoseph Leclaire Reynolds
    • Antonio CaiafaMaja Harfman TodorovicJoseph Leclaire Reynolds
    • A61B6/03H01J35/14
    • H05G1/52H01J35/14
    • An apparatus and method for magnetic control of an electron beam includes a control circuit having a first low voltage source and a second low voltage source. The control circuit also includes a first switching device coupled in series with the first low voltage source and configured to create a first current path with the first low voltage source when in a closed position and a second switching device coupled in series with the second low voltage source and configured to create a second current path with the second low voltage source when in a closed position. The control circuit further includes a capacitor coupled in parallel with an electron beam manipulation coil and positioned along the first and second current paths and a current source circuit electrically coupled to the electron beam manipulation coil and constructed to generate an offset current in the first and second current paths.
    • 用于电子束的磁控制的装置和方法包括具有第一低电压源和第二低电压源的控制电路。 控制电路还包括与第一低电压源串联耦合的第一开关器件,并配置成在处于闭合位置时产生与第一低电压源的第一电流通路,以及与第二低电压串联耦合的第二开关器件 源和配置为当处于关闭位置时与第二低电压源产生第二电流路径。 控制电路还包括与电子束操作线圈并联并沿着第一和第二电流路径定位的电容器和电耦合到电子束操纵线圈的电流源电路,并被构造成在第一和第二电流线路中产生偏移电流 当前路径。
    • 4. 发明授权
    • Apparatus and method for magnetic control of an electron beam
    • 用于电子束磁控制的装置和方法
    • US09504135B2
    • 2016-11-22
    • US12845579
    • 2010-07-28
    • Antonio CaiafaMaja Harfman TodorovicJoseph Leclaire Reynolds
    • Antonio CaiafaMaja Harfman TodorovicJoseph Leclaire Reynolds
    • H05G1/08H05G1/52H01J35/14H01J35/30H01J29/76
    • H05G1/52H01J35/14
    • An apparatus and method for magnetic control of an electron beam includes a control circuit having a first low voltage source and a second low voltage source. The control circuit also includes a first switching device coupled in series with the first low voltage source and configured to create a first current path with the first low voltage source when in a closed position and a second switching device coupled in series with the second low voltage source and configured to create a second current path with the second low voltage source when in a closed position. The control circuit further includes a capacitor coupled in parallel with an electron beam manipulation coil and positioned along the first and second current paths and a current source circuit electrically coupled to the electron beam manipulation coil and constructed to generate an offset current in the first and second current paths.
    • 用于电子束的磁控制的装置和方法包括具有第一低电压源和第二低电压源的控制电路。 控制电路还包括与第一低电压源串联耦合的第一开关器件,并配置成在处于闭合位置时产生与第一低电压源的第一电流通路,以及与第二低电压串联耦合的第二开关器件 源和配置为当处于关闭位置时与第二低电压源产生第二电流路径。 控制电路还包括与电子束操作线圈并联并沿着第一和第二电流路径定位的电容器和电耦合到电子束操纵线圈的电流源电路,并被构造成在第一和第二电流线路中产生偏移电流 当前路径。
    • 10. 发明授权
    • Method and system for active resonant voltage switching
    • 有源谐振电压开关的方法和系统
    • US08861681B2
    • 2014-10-14
    • US12972156
    • 2010-12-17
    • Antonio CaiafaPeter Michael EdicColin Richard Wilson
    • Antonio CaiafaPeter Michael EdicColin Richard Wilson
    • H05G1/32H02M7/10H02M3/337H05G1/10H02M1/00
    • H02M7/10H02M3/337H02M2001/0058H05G1/10Y02B70/1433Y02B70/1491
    • Methods and systems for active resonant voltage switching are provided. One active resonant switching system includes a voltage switching system having one or more active resonant modules to provide a switching voltage output. Each of the resonant modules includes a plurality of switching devices configured to operate in open and closed states to produce first and second voltage level outputs from a voltage input. The resonant modules also include a capacitor connected to the switching devices and configured to receive a discharge energy during a resonant operating cycle when switching an output voltage from the first voltage level to the second voltage level, wherein the capacitor is further configured to restore system energy when switching from the second to first voltage level. The resonant modules further include a resonant inductor configured to transfer energy to and from the capacitor.
    • 提供了主动谐振电压切换的方法和系统。 一个有源谐振开关系统包括具有一个或多个有源谐振模块以提供开关电压输出的电压切换系统。 每个谐振模块包括多个开关装置,其被配置为在打开和关闭状态下操作以从电压输入产生第一和第二电压电平输出。 谐振模块还包括连接到开关装置的电容器,并且被配置为在将输出电压从第一电压电平切换到第二电压电平时在谐振操作周期期间接收放电能量,其中电容器还被配置为恢复系统能量 当从第二电压电平切换到第一电压电平时。 谐振模块还包括被配置为将能量传递到电容器和从电容器传输能量的谐振电感器。