Tank container with electronic monitoring device
    101.
    发明申请
    Tank container with electronic monitoring device 有权
    带集装箱的电子监控装置

    公开(公告)号:US20060021423A1

    公开(公告)日:2006-02-02

    申请号:US11192261

    申请日:2005-07-28

    IPC分类号: G01M3/04

    CPC分类号: G01M3/186

    摘要: A tank container with electronic monitoring device includes a tank barrel and a container frame supporting the same. The tank barrel includes a valve assembly and a valve assembly protection box. The electronic monitoring device is installed inside the valve assembly protection box, or on a sealing surface of the tank barrel, or in a range of the container frame outside the tank barrel. The electronic monitoring device includes a sensor for detecting a leakage condition of the cargoes contained in the tank container and transmitting an information data related to the leakage condition, and a data processing module connected with the sensor for processing the data. The invention can be used for detecting a sealing condition of a sealing surface and an illegal open of a lid of the valve assembly protection box as well as for realizing a global tracking, whereby ensuring a safe transport for containers.

    摘要翻译: 具有电子监控装置的储罐容器包括罐筒和支撑该容器的容器框架。 罐筒包括阀组件和阀组件保护盒。 电子监控装置安装在阀组件保护箱内,或者在罐筒的密封表面上,或者在罐筒外部的容器框架的范围内。 该电子监视装置包括:传感器,用于检测容纳在罐箱中的货物的泄漏状况,并发送与泄漏状况相关的信息数据;以及数据处理模块,与传感器连接以处理数据。 本发明可用于检测密封面的密封状态和阀组件保护盒的盖子的非法打开以及实现全局跟踪,从而确保容器的安全运输。

    Dynamic method for changing the operation of a multiple-pass monochromator between additive and subtractive modes
    102.
    发明授权
    Dynamic method for changing the operation of a multiple-pass monochromator between additive and subtractive modes 失效
    用于在添加和减影模式之间改变多通道单色仪的操作的动态方法

    公开(公告)号:US06989898B2

    公开(公告)日:2006-01-24

    申请号:US10361304

    申请日:2003-02-10

    IPC分类号: G01J3/12

    摘要: Inverting optics are used to invert, with respect to the dispersion plane, the wavefront of a monochromator employing a beam making more than one pass through the dispersing medium. Further, the inverting functionality can be turned-on or turned-off, thereby reversibly converting between additive and subtractive monochromator architectures. Inversion reversal is accomplished by reorienting the inverting optics orthogonally about an axis coaxial with the beam, either back and forth or monotonically, or by displacing portions or all of the inverting optics into and out of the beam. Examples of inverting optics include Dove prisms and equivalent multiple all-reflective surfaces. The system and method can be applied to two-pass and other multi-pass monochromators and to dual and other multiple serial monochromator configurations using diffraction gratings or other dispersing elements.

    摘要翻译: 反相光学器件用于相对于色散平面反转单色仪的波前,其使用多于一个的光束通过分散介质。 此外,反相功能可以被打开或关闭,从而在加和减色单色器结构之间的可逆转换。 逆向反转是通过使与反射光学器件正交的轴正交地绕着与光束前后或单调相同轴的方向,或通过将部分或全部反相光学器件移入和移出光束来实现的。 反转光学器件的示例包括Dove棱镜和等效的多个全反射表面。 该系统和方法可以应用于使用衍射光栅或其他分散元件的双通等多色单色仪和双重和其他多个串行单色仪配置。