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    • 1. 发明申请
    • AUTOMATIC GAIN STABILIZATION AND TEMPERATURE COMPENSATION FOR ORGANIC AND/OR PLASTIC SCINTILLATION DEVICES
    • 有机和/或塑料扫描装置的自动增益稳定和温度补偿
    • WO2011100240A3
    • 2012-02-02
    • PCT/US2011024040
    • 2011-02-08
    • GRIESHABER VEGA KGCAHILL BONAVENTURE
    • CAHILL BONAVENTURE
    • G01T1/40G01T1/202
    • G01T1/202G01T1/2008G01T1/40
    • A detector and associated method are provided including a first scintillation material 40 having a light yield temperature dependence and an output at a first energy level, a second scintillation material 42 having a light yield temperature dependence similar to the first material and an output at a second energy level, and detection circuitry 72, 76, 78, 82, 84, 100, 102. The first and second outputs are responsive to radiation emitted from an ionizing radiation source 68. The detection circuitry includes a photo multiplier tube 72 configured to convert photon outputs from the first and second scintillating materials 40, 42 to electrical pulses, a counter circuit configured to count the electrical pulses generated in the photo multiplier tube 72 by the first and second materials, and a gain control circuit 102 configured to monitor the electrical pulses generated in the photomultiplier tube 72 by the second material 42 and adjust a gain of the detector upon detecting a drift in the output of the second material 42.
    • 提供一种检测器和相关联的方法,其包括具有光屈服温度依赖性的第一闪烁材料40和在第一能级的输出,具有类似于第一材料的光屈服温度依赖性的第二闪烁材料42和第二闪烁材料的输出 能级和检测电路72,76,78,82,84,100,102。第一和第二输出响应于从电离辐射源68发射的辐射。检测电路包括被配置成转换光子的光电倍增管72 从第一和第二闪烁材料40,42输出到电脉冲,配置成对由第一和第二材料在光电倍增管72中产生的电脉冲进行计数的计数器电路;以及增益控制电路102,被配置为监视电脉冲 通过第二材料42在光电倍增管72中产生,并且在检测到ou中的漂移时调节检测器的增益 第二材料的输入42。
    • 6. 发明申请
    • CLOCK PULSE CONTROL DEVICE OF A MICROWAVE PULSE RADAR
    • 微波脉冲雷达的时钟脉冲控制装置
    • WO2006122778B1
    • 2007-11-29
    • PCT/EP2006004667
    • 2006-05-17
    • GRIESHABER VEGA KGGRIESSBAUM KARL
    • GRIESSBAUM KARL
    • G01S13/18G01F23/284
    • G01F23/284G01S7/03G01S7/28G01S13/18
    • The invention relates to a clock pulse control circuit for generating a transmit clock pulse (ts) and a sampling clock pulse (ta; tb; tc), wherein the clock pulse control circuit comprises a first oscillator (20) for generating a first clock pulse (ts) of a first frequency, and a second oscillator (21) for generating a plurality of second clock pulses (ta; tb; tc), that are shifted in time in relation to each other, of a second frequency. The clock pulse control circuit is designed such that based on the first clock pulse (ts) and the plurality of second clock pulses (ta; tb; tc) the transmit clock pulse (ts) is providable to a transmit pulse generator (2), and the sampling clock pulse (ta; tb; tc) is providable to a sampling pulse generator (6).
    • 本发明涉及用于产生发送时钟脉冲(ts)和采样时钟脉冲(ta; tb; tc)的时钟脉冲控制电路,其中时钟脉冲控制电路包括第一振荡器(20),用于产生第一时钟脉冲 (ts)和第二振荡器(21),所述第二振荡器(21)用于产生第二频率在时间上相互偏移的多个第二时钟脉冲(ta; tb; tc)。 时钟脉冲控制电路被设计为使得基于第一时钟脉冲(ts)和多个第二时钟脉冲(ta; tb; tc)可以向发送脉冲发生器(2)提供发送时钟脉冲(ts) 并且采样时钟脉冲(ta; tb; tc)可以提供给采样脉冲发生器(6)。
    • 7. 发明申请
    • ELECTRONIC INSERT ARRANGEMENT FOR A MEASURING DEVICE HOUSING
    • 测量箱的电子应用安排
    • WO2007073876A3
    • 2007-10-11
    • PCT/EP2006012048
    • 2006-12-14
    • GRIESHABER VEGA KGOHMAYER GERDSTAIGER HOLGERDECK THOMAS
    • OHMAYER GERDSTAIGER HOLGERDECK THOMAS
    • G01D11/24
    • G01F23/00G01D11/245
    • The invention relates to an electronic insert arrangement for a measuring device, comprising an electronic insert and an electronic module. The electronic insert comprises a first fixing device and a first interface and the electronic module comprises a second fixing device and a second interface. Said first fixing device and said second fixing device can be arranged in order to couple the electronic module to the electronic insert in such a manner that a distance between the first interface and the second interface is essentially kept constant when the electronic insert is displaced. Said electronic insert is embodied in order to carry out first functionality processes and the electronic module is embodied in order to carry out second functionality processes.
    • 本发明涉及一种用于与电子模块和电子模块的测量仪器的电子嵌入件组件,所述具有电子模块的第一连接装置和一个第一接口,并且其中所述电子模块包括第二连接装置和第二接口。 第一紧固装置和第二紧固装置可以与电子模块的耦合件接合到电子模块,使得第一接口和第二接口之间的距离在电子模块的运动期间保持基本恒定。 电子模块被配置为执行第一功能的过程,并且电子模块被配置为执行第二功能的过程。
    • 9. 发明申请
    • WIRELESS COMMUNICATION
    • 无线通信
    • WO2004047043A3
    • 2004-07-08
    • PCT/EP0312854
    • 2003-11-17
    • GRIESHABER VEGA KGDECK THOMASSKOWAISA JUERGENSACK HOLGERLAUN ROBERT
    • DECK THOMASSKOWAISA JUERGENSACK HOLGERLAUN ROBERT
    • G05B23/02
    • G05B19/042G05B2219/25131
    • The invention relates to a sensor unit (1) comprising a measurement signal sensor (4), which records a measurement signal (9), an A/D converter (5) for digitizing the measurement signal (9), a transmitting and/or receiving device (6) for wirelessly transmitting data to a surrounding unit (2) and a processor (7). The processor (7) is a control processor for controlling the measurement signal sensor, the A/D converter and the transmitting and/or receiving device. The digitized measurement signal (9) is directly transmitted via the transmitting and/or receiving device (6) to the surrounding unit (2) without the performance of a complex, power-intensive and thus costly evaluation in the sensor unit (1).
    • 本发明涉及的传感器单元(1)与测得的信号接收器(4),其检测5的测量信号〜(9)中,A / D转换器,用于数字化所述测量信号(9),发射和/或接收装置((5) 6)(用于数据的对环境设备2)和处理器(7)的无线传输。 所述处理器(7)是一个控制处理器,用于控制测量的信号接收器,所述A / D转换器和所述发射和/或接收装置。 数字化的测量信号(9)通过发送和/或接收装置直接传送(6)周围的装置(2),而不会在传感器单元(1)费时和功率密集的并因此昂贵的评价。