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    • 1. 发明授权
    • Highly sensitive spectroscopic unit
    • 高灵敏度光谱单位
    • US08098374B2
    • 2012-01-17
    • US12444244
    • 2007-10-02
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • G01J3/28
    • G01J3/1804G01J3/02G01J3/021G01J3/0291G01J3/14G01J3/26G01J3/2803
    • The invention is directed to a highly sensitive spectrum analysis unit with a diffraction grating, wherein a parallel light bundle having a wavelength range impinges on a diffraction grating which splits the different wavelengths into spectra by diffraction in first directions, and wavelength partial ranges of the spectrally split light bundle can be focused on a detector row by means of camera optics, and evaluation electronics are connected to the detector row and acquire the generated spectrum as information and display it. The invention is characterized in that the light bundle passes a first optical element, and then wavelength partial ranges of a spectrally split light bundle impinge on respective partial regions of a diffraction grating, the diffraction grating having the same grating constant across all partial regions and a changing profile shape, the profile shapes generating different blaze wavelengths that lie in the respective wavelength partial ranges.
    • 本发明涉及一种具有衍射光栅的高灵敏度光谱分析单元,其中具有波长范围的平行光束照射在衍射光栅上,衍射光栅通过在第一方向上的衍射将不同波长分裂成光谱,并且光谱的波长部分范围 分光束可以通过相机光学器件聚焦在检测器行上,并且评估电子器件连接到检测器行并且获取所生成的光谱作为信息并显示它。 本发明的特征在于,光束通过第一光学元件,然后将光谱分裂的光束的部分范围波动在衍射光栅的各个部分区域上,衍射光栅在所有部分区域具有相同的光栅常数,并且 改变轮廓形状,产生位于相应波长部分范围内的不同火焰波长的轮廓形状。
    • 2. 发明申请
    • HIGHLY SENSITIVE SPECTROSCOPIC UNIT
    • 高灵敏度光谱仪
    • US20100007878A1
    • 2010-01-14
    • US12444244
    • 2007-10-02
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • Ralf WolleschenskyHans-Juergen DobschalReinhard Steiner
    • G01J3/18G01J3/36G01J3/28
    • G01J3/1804G01J3/02G01J3/021G01J3/0291G01J3/14G01J3/26G01J3/2803
    • The invention is directed to a highly sensitive spectrum analysis unit with a diffraction grating, wherein a parallel light bundle having a wavelength range impinges on a diffraction grating which splits the different wavelengths into spectra by diffraction in first directions, and wavelength partial ranges of the spectrally split light bundle can be focused on a detector row by means of camera optics, and evaluation electronics are connected to the detector row and acquire the generated spectrum as information and display it. The invention is characterized in that the light bundle passes a first optical element, and then wavelength partial ranges of a spectrally split light bundle impinge on respective partial regions of a diffraction grating, the diffraction grating having the same grating constant across all partial regions and a changing profile shape, the profile shapes generating different blaze wavelengths that lie in the respective wavelength partial ranges.
    • 本发明涉及一种具有衍射光栅的高灵敏度光谱分析单元,其中具有波长范围的平行光束照射在衍射光栅上,衍射光栅通过在第一方向上的衍射将不同波长分裂成光谱,并且光谱的波长部分范围 分光束可以通过相机光学器件聚焦在检测器行上,并且评估电子器件连接到检测器行并且获取所生成的光谱作为信息并显示它。 本发明的特征在于,光束通过第一光学元件,然后将光谱分裂的光束的部分范围波动在衍射光栅的各个部分区域上,衍射光栅在所有部分区域具有相同的光栅常数,并且 改变轮廓形状,产生位于相应波长部分范围内的不同火焰波长的轮廓形状。
    • 5. 发明申请
    • System and method of recording and playing back pictures
    • 记录和播放图像的系统和方法
    • US20060238626A1
    • 2006-10-26
    • US11455422
    • 2006-06-19
    • Reinhard Steiner
    • Reinhard Steiner
    • H04N5/76
    • H04N5/2627H04N5/222
    • A system for recording and playing back pictures of objects according to the time slice technology comprises a camera arrangement including several cameras simultaneously capturing pictures of at least one object, a storage assembly for storing all captured pictures, a display assembly for displaying captured pictures, and a control unit for controlling the camera arrangement, the storage assembly and the display assembly. The cameras, in each case, are high speed video cameras having high resolution adapted to capture a great number of pictures per second which all are stored in the storage assembly and then can be retrieved from the storage assembly in arbitrary sequence for creating movie sequences. A related method comprises the steps of simultaneous capturing of pictures of an object by means of several cameras of a camera assembly, whereby said several cameras in each case are high speed high resolution video cameras adapted to capture a great number of pictures per second, storing all captured pictures in a storage means or in several storage means, displaying the captured pictures on a display assembly, and selecting desired pictures from the stored pictures and/or displayed pictures and combining said selected pictures to movie sequences.
    • 根据时间片技术记录和再现对象的图像的系统包括:相机装置,其包括同时捕获至少一个物体的图像的多个照相机,用于存储所有拍摄图像的存储组件,用于显示拍摄图像的显示组件;以及 用于控制相机布置的控制单元,存储组件和显示组件。 在每种情况下,相机是具有高分辨率的高速摄像机,其适于捕获每秒大量的图像,其全部存储在存储组件中,然后可以以任意顺序从存储组件中检索以创建电影序列。 相关方法包括以下步骤:通过相机组件的几个摄像机同时捕获对象的图像,其中每种情况下所述几个摄像机是适用于每秒拍摄大量图像的高速高分辨率摄像机,存储 在存储装置或几个存储装置中的所有拍摄的图像,在显示组件上显示拍摄的图像,以及从存储的图像和/或显示的图像中选择所需的图像,并将所选择的图像组合成电影序列。
    • 6. 发明申请
    • SIGNAL AND POWER SUPPLY TRANSMISSION
    • 信号和电源传输
    • US20140376696A1
    • 2014-12-25
    • US14127552
    • 2012-06-25
    • Jens IgneyReinhard Steiner
    • Jens IgneyReinhard Steiner
    • H05G1/56H03K17/691
    • H05G1/56A61B6/40H03K17/691H05G1/10
    • The present invention relates to signal and power supply transmission for an X-ray source. In order to provided an improved signal and power supply transmission with reduced constructional complexity and enhanced operation possibilities, an integrated signal and power supply transmission arrangement is provided, comprising a supply board (12), a main board (14), an insulating plate (16), at least one transformer arrangement (18), and at least one signal transmission arrangement (20). The insulating plate is provided between the supply and the main board. The transformer arrangement is provided to supply electric energy to the driving circuit of a transistor, which in turn feeds an X-ray source. The transformer arrangement comprises a primary electric conductor arranged on the supply board to cause electromagnetic induction in a secondary electric conductor arranged on the main board. The signal transmission arrangement is adapted to transmit a signal between the supply board and the main board; wherein the signal transmission arrangement comprises at least a first optical signal transmission device provided on the supply board, and a second optical signal transmission device (30) provided on the main board. The insulating plate is light-transmissive at least in the part between the first and second optical signal transmission device. The first and the second optical signal transmission devices are arranged in an optical connection path.
    • 本发明涉及一种用于X射线源的信号和电源传输。 为了提供具有降低的结构复杂性和增强的操作可能性的改进的信号和电源传输,提供了一种集成的信号和电源传输装置,包括供电板(12),主板(14),绝缘板 16),至少一个变压器装置(18)和至少一个信号传输装置(20)。 绝缘板设置在电源和主板之间。 该变压器装置被提供用于向晶体管的驱动电路提供电能,晶体管又驱动X射线源。 变压器装置包括布置在供电板上的主电导体,以在布置在主板上的二次电导体中引起电磁感应。 信号传输装置适于在供电板和主板之间传输信号; 其中,所述信号传输装置至少包括设置在所述供电板上的第一光信号传输装置和设置在所述主板上的第二光信号传输装置(30)。 绝缘板至少在第一和第二光信号传输装置之间的部分是透光的。 第一和第二光信号传输装置布置在光连接路径中。
    • 7. 发明申请
    • Method and device for exposing x-ray images
    • 曝光X光影像的方法和装置
    • US20070003015A1
    • 2007-01-04
    • US10556737
    • 2004-05-05
    • Joachim BrendlerReinhard Steiner
    • Joachim BrendlerReinhard Steiner
    • H05G1/42
    • H05G1/46
    • The invention relates to a method of controlling the exposure of an X-ray image. Starting values for the tube current, the tube voltage and the exposure duration are hereby set on the X-ray tube (10). Following the start of the exposure, the resultant dose rate is measured by a sensor (30, 31) and made available to a control system (100, 200, 300). In order to achieve a predetermined dose for the X-ray image, the control system adjusts the following variables in succession: the tube current within a current range; if applicable, the exposure duration within a time slot; the tube voltage within a voltage range; the exposure duration within the time slot. A rapid controlling of the tube current is enabled, preferably by the pulse-width modulation of the counter-voltage at the control grid of the X-ray tube.
    • 本发明涉及一种控制X射线图像曝光的方法。 因此,在X射线管(10)上设置管电流,管电压和曝光持续时间的起始值。 在曝光开始之后,所得到的剂量率由传感器(30,31)测量,并可用于控制系统(100,200,300)。 为了实现X射线图像的预定剂量,控制系统依次调整以下变量:管电流在电流范围内; 如果适用,在一个时间段内的曝光持续时间; 电压范围内的管电压; 时间段内的曝光持续时间。 优选通过在X射线管的控制栅格处的对电压的脉冲宽度调制来实现管电流的快速控制。
    • 8. 发明授权
    • Signal and power supply transmission
    • 信号和电源传输
    • US09258873B2
    • 2016-02-09
    • US14127552
    • 2012-06-25
    • Jens IgneyReinhard Steiner
    • Jens IgneyReinhard Steiner
    • H05G1/56H03K17/691H05G1/10A61B6/00
    • H05G1/56A61B6/40H03K17/691H05G1/10
    • The present invention relates to signal and power supply transmission for an X-ray source. In order to provided an improved signal and power supply transmission with reduced constructional complexity and enhanced operation possibilities, an integrated signal and power supply transmission arrangement is provided, comprising a supply board (12), a main board (14), an insulating plate (16), at least one transformer arrangement (18), and at least one signal transmission arrangement (20). The insulating plate is provided between the supply and the main board. The transformer arrangement is provided to supply electric energy to the driving circuit of a transistor, which in turn feeds an X-ray source. The transformer arrangement comprises a primary electric conductor arranged on the supply board to cause electromagnetic induction in a secondary electric conductor arranged on the main board. The signal transmission arrangement is adapted to transmit a signal between the supply board and the main board; wherein the signal transmission arrangement comprises at least a first optical signal transmission device provided on the supply board, and a second optical signal transmission device (30) provided on the main board. The insulating plate is light-transmissive at least in the part between the first and second optical signal transmission device. The first and the second optical signal transmission devices are arranged in an optical connection path.
    • 本发明涉及一种用于X射线源的信号和电源传输。 为了提供具有降低的结构复杂性和增强的操作可能性的改进的信号和电源传输,提供了一种集成的信号和电源传输装置,包括供电板(12),主板(14),绝缘板 16),至少一个变压器装置(18)和至少一个信号传输装置(20)。 绝缘板设置在电源和主板之间。 该变压器装置被提供用于向晶体管的驱动电路提供电能,晶体管又驱动X射线源。 变压器装置包括布置在供电板上的主电导体,以在布置在主板上的二次电导体中引起电磁感应。 信号传输装置适于在供电板和主板之间传输信号; 其中,所述信号传输装置至少包括设置在所述供电板上的第一光信号传输装置和设置在所述主板上的第二光信号传输装置(30)。 绝缘板至少在第一和第二光信号传输装置之间的部分是透光的。 第一和第二光信号传输装置布置在光连接路径中。