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    • 2. 发明申请
    • ELECTRON MULTIPLIER FOR MASS SPECTROMETER
    • 电子倍增器用于质谱仪
    • US20150187550A1
    • 2015-07-02
    • US14571701
    • 2014-12-16
    • Agilent Technologies, Inc.
    • Kazushi Hirano
    • H01J43/10H01J49/02
    • H01J49/025H01J43/26H01J43/30
    • A secondary electron multiplier includes: a conversion dynode for emitting a secondary electron in response to an incident ion; a plurality of dynodes configured to have multi-stages from second to final stages for receiving the secondary electron; and a first voltage applying device for applying a first negative voltage to the conversion dynode and sequentially dividing the first negative voltage to apply to each of the second-stage and subsequent dynodes, wherein the secondary electron multiplier is configured to sequentially multiply the emitted secondary electron by the second-stage and subsequent dynodes. In the secondary electron multiplier, any of the second-stage and subsequent dynodes have a second voltage applying device for applying a second negative voltage. The secondary electron multiplier has an improved ion detection efficiency without a large reduction of a usable period thereof, thereby enhancing the sensitivity of a mass spectrometer.
    • 二次电子倍增器包括:用于响应于入射离子发射二次电子的转换倍增电极; 多个倍增电极被配置为具有从第二级到第二级的多级,用于接收二次电子; 以及第一电压施加装置,用于将第一负电压施加到转换倍增电极,并且顺序地分割第一负电压以施加到每个第二级和随后的倍增电极,其中二次电子倍增器被配置为顺序地将发射的二次电子 通过第二级和后续的倍增极。 在二次电子倍增器中,任何第二级和随后的倍增电极都具有用于施加第二负电压的第二电压施加装置。 二次电子倍增器具有改善的离子检测效率,而不会大大降低可用的周期,从而提高了质谱仪的灵敏度。
    • 5. 发明授权
    • Device for measuring and processing a high dynamic input signal, and corresponding leak detector and measuring and processing method
    • 用于测量和处理高动态输入信号的装置,以及相应的泄漏检测器和测量和处理方法
    • US08700346B2
    • 2014-04-15
    • US13144082
    • 2010-01-11
    • Pascal Jourdan
    • Pascal Jourdan
    • G01F17/00
    • G01F17/00H01J43/246H01J43/30
    • The invention relates to a device for measuring and processing an input signal (To) of at least two decades, comprising: an electron multiplier (4) that has an exponential gain on the basis of the power supply voltage (Vm) thereof and which receives said input signal (To); a power supply (5) that provides the power supply voltage (Vm) of said multiplier (4); a control circuit (6) of the power supply (5), the gain (10) and shift (11) parameters of which are adjustable and define an output signal range while varying the exponential gain of said multiplier (4); a logarithmic compression amplifier (T), the output of which is received as an input of the control circuit (6) so as to vary the exponential gain of the electron multiplier (4), in a continuous manner over the dynamic range of a measurement, on the basis of the output signal (IoG) of the electron multiplier (4), and forming the output signal (Vout) of said device; a measuring and calculating means for predetermining the value of the exponent (b) for the exponential gain of the electron multiplier (4) and for calculating the gain (10) and shift (11) parameter values of said control circuit (6) on the basis of the value of said predetermined exponent (b). The invention also relates to a corresponding leak detector and measuring and processing method.
    • 本发明涉及一种用于测量和处理至少二十年的输入信号(To)的装置,包括:电子倍增器(4),其基于其电源电压(Vm)具有指数增益,并且接收 所述输入信号(To); 提供所述乘法器(4)的电源电压(Vm)的电源(5); 电源(5)的控制电路(6),其增益(10)和移位(11)参数是可调节的,并且在改变所述乘法器(4)的指数增益的同时限定输出信号范围; 对数压缩放大器(T),其输出作为控制电路(6)的输入被接收,以便在测量动态范围内连续地改变电子倍增器(4)的指数增益 ,基于电子倍增器(4)的输出信号(IoG),并形成所述装置的输出信号(Vout); 用于预先确定电子倍增器(4)的指数增益的指数(b)的值并用于计算所述控制电路(6)的增益(10)和移位(11)参数值的测量和计算装置, 所述预定指数(b)的值的基础。 本发明还涉及相应的泄漏检测器和测量和处理方法。
    • 7. 发明授权
    • Mass spectrometer
    • 质谱仪
    • US08519327B2
    • 2013-08-27
    • US13380440
    • 2009-06-22
    • Hideaki Izumi
    • Hideaki Izumi
    • H01J49/26
    • H01J49/025H01J43/30
    • In an ion detector, power supplies (21 through 23) generating independently controllable voltages are provided to respectively apply voltages to first to fifth dynodes (11 through 15), a final dynode (16), and an anode (17) in a secondary electron multiplier (10). Furthermore, the signal from the anode (17) is extracted, and the signal from the fifth dynode (15), which has a low electron multiplication rate, is extracted. These two signals are concurrently converted into digital values, taken in by a data processing unit (34), and stored in a data storage unit (35). When a mass spectrum is created in the data processing unit (34), the two detected data for the same time are read out and the presence or absence of signal saturation or waveform deformation is determined from the values of one of the detection data. If there is a high probability of signal saturation, the detection data based on the signals in the intermediate stages are selected, and the level of the selected data is corrected. The application of independent voltages to the secondary electron multiplier (10) makes the signal saturation less likely to occur. Even if saturation temporarily occurs, an unsaturated signal can be reflected in the mass spectrum.
    • 在离子检测器中,提供产生独立可控电压的电源(21至23),以分别施加电压到第二至第五倍增电极(11至15),最终倍增电极(16)和阳极(17) 乘数(10)。 此外,提取来自阳极(17)的信号,并且提取具有低电子倍率的来自第五倍增极(15)的信号。 这两个信号同时被转换为由数据处理单元(34)接收的数字值,并存储在数据存储单元(35)中。 当在数据处理单元(34)中产生质谱时,读出两个相同时间的检测数据,并根据检测数据之一的值确定是否存在信号饱和或波形变形。 如果信号饱和的概率很高,则选择基于中间级的信号的检测数据,校正所选数据的电平。 对二次电子倍增器(10)施加独立电压使得不太可能发生信号饱和。 即使暂时发生饱和,也可以在质谱中反映不饱和信号。
    • 9. 发明授权
    • Composite gamma-neutron detection system
    • 复合γ中子检测系统
    • US08389941B2
    • 2013-03-05
    • US12976861
    • 2010-12-22
    • Joseph BendahanEdward James Morton
    • Joseph BendahanEdward James Morton
    • G01T1/164
    • H01J43/30G01T1/16G01T1/167G01T1/208G01T3/06G01V5/0025G01V5/0091H01J40/04H01J43/08H01J43/18
    • The present invention provides a gamma-neutron detector based on mixtures of thermal neutron absorbers that produce heavy-particle emission following thermal capture. The detector consists of one or more thin screens embedded in transparent hydrogenous light guides, which also serve as a neutron moderator. The emitted particles interact with the scintillator screen and produce a high light output, which is collected by the light guides into a photomultiplier tube and produces a signal from which the neutrons are counted. Simultaneous gamma-ray detection is provided by replacing the light guide material with a plastic scintillator. The plastic scintillator serves as the gamma-ray detector, moderator and light guide. The neutrons and gamma-ray events are separated employing Pulse-Shape Discrimination (PSD). The detector can be used in several scanning configurations including portal, drive-through, drive-by, handheld and backpack, etc.
    • 本发明提供了一种基于热中子吸收剂的混合物的γ中子检测器,其在热捕获之后产生重粒子发射。 检测器由一个或多个嵌入在透明氢光导中的薄屏幕组成,也可作为中子调节剂。 发射的颗粒与闪烁体屏幕相互作用并产生高光输出,该光输出由光导收集到光电倍增管中并产生中子被计数的信号。 通过用塑料闪烁体代替导光材料来提供同时的γ射线检测。 塑料闪烁体用作γ射线检测器,调节剂和光导。 使用脉冲形状识别(PSD)分离中子和γ射线事件。 检测器可用于多种扫描配置,包括门禁,驱动器,驱动器,手持和背包等。