APPARATUSES AND METHODS FOR GENERATING DISTRIBUTED X-RAYS
    14.
    发明申请
    APPARATUSES AND METHODS FOR GENERATING DISTRIBUTED X-RAYS 有权
    用于产生分布式X射线的装置和方法

    公开(公告)号:US20140185776A1

    公开(公告)日:2014-07-03

    申请号:US14136362

    申请日:2013-12-20

    CPC classification number: H01J35/14 H01J35/16 H01J35/30 H01J2235/16

    Abstract: An apparatus and method to generate distributed x-rays. A hot cathode of an electron gun is used in vacuum to generate electron beams having certain initial movement energy and speed. Periodic scanning is performed with the initial low-energy electron beams, which are thus caused to be reciprocally deflected. A current-limiting device is provided in the travel path of the electron beams along the direction of the reciprocal deflection. Through holes arranged in an array on the current-limiting device, only part of the electron beams targeting specific positions can pass to form sequential electron beam currents distributed in an array. These electron beam currents are accelerated by a high-voltage electric field to obtain high energy, bombard an anode target, and thus sequentially generate corresponding focus spots and x-rays distributed in an array at the anode target.

    Abstract translation: 一种生成分布式X射线的装置和方法。 真空中使用电子枪的热阴极来产生具有一定的初始移动能量和速度的电子束。 用初始低能电子束进行周期性扫描,从而使其相互偏转。 电流限制装置沿着往复偏转的方向设置在电子束的行进路径中。 通过排列在限流装置上的阵列中的通孔,只有部分针对特定位置的电子束可以通过以形成分布在阵列中的顺序电子束电流。 这些电子束电流通过高电压电场加速以获得高能量,轰击阳极靶,从而顺序地产生在阳极靶上分布在阵列中的相应聚焦点和x射线。

    Pulsed sampling-based ion mobility spectrometer and sniffer

    公开(公告)号:US11346807B2

    公开(公告)日:2022-05-31

    申请号:US16626767

    申请日:2019-06-12

    Abstract: There are provided an ion mobility spectrometer and a sniffer. The ion mobility spectrometer includes: an ion migration tube; a sampling gas path having a sampling device configured to temporarily store a sample gas collected by a sampling head in a sampling pipe; a sample introduction gas path having two ends in communication with the gas inlet and outlet of the ion migration tube respectively, and configured to introduce a carrier gas within the ion migration tube into the sampling pipe and to carry a sample gas temporarily stored in the sampling pipe into the ion migration tube; and a valve assembly configured to only allow gas to flow from the sampling device to the sampling pipe in a sampling state, and to only allow gas to flow from the ion migration tube through the sampling pipe back to the ion migration tube in a sample introduction state.

    Gas chromatograph-ion mobility spectrometry combined equipment

    公开(公告)号:US11320407B2

    公开(公告)日:2022-05-03

    申请号:US16714799

    申请日:2019-12-16

    Abstract: The present disclosure discloses a gas chromatograph-ion mobility spectrometry combined equipment, including: a gas chromatograph device for pre-separating a to-be-detected sample to form a pre-separated sample; an ion mobility spectrometry device in fluid communication with an outlet of the gas chromatograph device for detecting the pre-separated sample; and a gas circulating device in fluid communication with a discharged gas interface of the ion mobility spectrometry device for processing a discharged gas from the ion mobility spectrometry device, wherein the gas circulating device is further in gas communication with the gas chromatograph device for conveying a part of the discharged gas to the gas chromatograph device to serve as a carrier gas, which drives the to-be-detected sample to enter the gas chromatograph device. The miniaturization and the portability of the gas chromatograph-ion mobility spectrometry combined equipment are improved.

    Filament power supply for electron accelerator and electron accelerator

    公开(公告)号:US10694616B2

    公开(公告)日:2020-06-23

    申请号:US16667849

    申请日:2019-10-29

    Abstract: The present disclosure provides a filament power supply for an electron accelerator and an electron accelerator. The filament power supply includes: a rectifier circuit configured to convert a power frequency AC voltage signal into a DC voltage signal; an inverter circuit configured to convert the DC voltage signal into an AC voltage signal; a sampling circuit configured to sample the AC voltage signal to obtain a current sampling signal or a voltage sampling signal; a pulse width modulation control chip configured to adjust a pulse width modulation signal until a voltage of the current sampling signal is equal to that of a reference current signal, or a voltage of the voltage sampling signal is equal to that of a reference voltage signal; a modulation circuit configured to modulate the power frequency AC voltage signal to obtain a modulation signal and output the pulse width modulation signal and the modulation signal.

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