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    • 1. 发明授权
    • Device for the electrical and mechanical connection of two printed circuit boards
    • 用于两个印刷电路板的电气和机械连接的装置
    • US06435881B1
    • 2002-08-20
    • US09868675
    • 2001-12-06
    • Walter ZeinRalf SchmidMartin Frey
    • Walter ZeinRalf SchmidMartin Frey
    • H01R1200
    • H01R12/772H01R4/4809H01R12/721H01R12/79H05K3/326
    • A device for the electrical and mechanical connection of a first, preferably elastically flexible printed circuit board to a second printed circuit board wherein an electrically conductive contact pin, protruding from the second printed circuit board and projecting through an opening in the first printed circuit board, is electrically conductively connected to a conductor track of the first printed circuit board. The device further includes an electrically conductive clamping part with elastically flexible protrusions embodied on it that embrace the contact pin by nonpositive engagement, and a bearing region of the clamping part that is electrically connected to the protrusions is pressed in prestressed fashion against a conductor track disposed on the first printed circuit board.
    • 一种用于将第一优选弹性柔性印刷电路板电连接到第二印刷电路板的装置,其中从第二印刷电路板突出并突出穿过第一印刷电路板中的开口的导电接触销, 导电连接到第一印刷电路板的导体轨道。 该装置还包括导电夹持部分,其具有弹性柔性突起,其上嵌有柔性突起,其通过非正向接合包围接触销,并且电连接到突起的夹持部分的支承区域以预定方式被压靠在布置的导体轨道上 在第一个印刷电路板上。
    • 2. 发明授权
    • Conductive foil
    • 导电箔
    • US06417455B1
    • 2002-07-09
    • US09533686
    • 2000-03-23
    • Walter ZeinRalf SchmidMartin Frey
    • Walter ZeinRalf SchmidMartin Frey
    • H01B708
    • H01B7/0869
    • In a conductive foil, for the conductive connection of electrical/electronic components, the foil including an elastically malleable, non-conductive carrier foil strip on which a plurality of printed circuit traces are arranged, insulated to the outside and running next to each other in the longitudinal direction of the carrier foil strip, in order to ensure that the conductive foil can be bent in a lasting two- or three-dimensional shape. The conductive foil is provided with at least one lastingly malleable shaping element that is insulated from the printed circuit traces and that runs in the longitudinal direction of the carrier foil strip.
    • 在导电箔中,为了电气/电子部件的导电连接,箔包括弹性可延展的非导电载体箔条,多个印刷电路迹线布置在其上,绝缘到外部并彼此相邻运行 载体箔条的纵向方向,以确保导电箔可以以持久的二维或三维形状弯曲。 导电箔设置有至少一个与印刷电路迹线绝缘并且在载体箔条的纵向方向上延伸的至少一个可延展的成形元件。
    • 5. 发明授权
    • Method for beam calibration and usage of a calibration body
    • 用于光束校准和使用校准体的方法
    • US08009299B2
    • 2011-08-30
    • US11813334
    • 2006-01-05
    • Matthias BrunnerRalf SchmidBernhard MuellerAxel Wenzel
    • Matthias BrunnerRalf SchmidBernhard MuellerAxel Wenzel
    • G01B11/14
    • G09G3/006G01R31/305G01R31/308G01R35/005H01J2237/2826
    • The invention relates to a method of calibration of the beam position of a corpuscular beam. A calibration body with structures is used, wherein the structures have a structure period PS in the plain section and within each structure there is a position L intended for the measurement. For the calibration, at least one detection signal each at structures in the plain section of the calibration body is generated, wherein the corpuscular beam is deflected with deflectors on beam target positions L1 with the beam target period P1, which is larger than half of the structure period PS, whereby a basic calibration is used for the control of the deflectors, and wherein the beam target deflections deviate either in the beam target period P1 from the structure period PS and/or in the beam target position L1 from the position L.
    • 本发明涉及一种校准红细胞束的束位置的方法。 使用具有结构的校准体,其中结构在平坦部分中具有结构周期PS,并且在每个结构内具有用于测量的位置L. 对于校准,生成校准体的平坦部分中的结构处的至少一个检测信号,其中,粒子束在束目标位置L1上被偏转器偏转,其中光束目标周期P1大于 结构周期PS,由此使用基准校准来控制偏转器,并且其中光束目标偏转在光束目标周期P1中与结构周期PS和/或从位置L的光束目标位置L1偏离。