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    • 85. 发明申请
    • PARTICLE ACCELERATOR AND MEDICAL EQUIPMENT
    • 颗粒加速器和医疗设备
    • US20140243576A1
    • 2014-08-28
    • US14171910
    • 2014-02-04
    • Kabushiki Kaisha Toshiba
    • Akiko KakutaniKiyokazu SatoTakeshi YoshiyukiTakashi Yazawa
    • H05H13/04A61N5/10
    • H05H13/04A61N5/1077A61N2005/1088
    • One embodiment of a particle accelerator includes: a particle source from which a particle beam is extracted with a beam pulse width of not greater than 2 μsec; a linear accelerator for accelerating the particle beam extracted from the particle source; a synchrotron for receiving the particle beam transported thereto from the linear accelerator and causing the particle beam to circulate in order to accelerate it until it gets to a predetermined energy level; a bump electromagnet for shifting the circulating path of the particle beam each time it makes a full turn; and a control unit for controlling the extent of magnetic excitation of the bump electromagnet and for controlling the timing of magnetic excitation of the bump electromagnet according to the pulse timing of the particle source.
    • 粒子加速器的一个实施例包括:粒子束以束脉冲宽度不大于2微秒从其中提取出的粒子束; 用于加速从粒子源提取的粒子束的线性加速器; 同步加速器,用于接收从线性加速器传送到其上的粒子束,并使粒子束循环,以加速它直至达到预定的能级; 用于在每次完全转动时移动粒子束的循环路径的凸块电磁体; 以及控制单元,用于控制凸块电磁体的磁激励程度,并根据粒子源的脉冲定时来控制凸块电磁体的磁激励定时。