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    • 51. 发明授权
    • Radiation detection system and method of indicating presence of radiation
    • 辐射检测系统和指示辐射存在的方法
    • US08530838B2
    • 2013-09-10
    • US12975106
    • 2010-12-21
    • John M. Frank
    • John M. Frank
    • G01J1/00G01J1/42G01J5/02
    • G01T1/36
    • A radiation detection system can include a radiation detector to detect radiation and an audio output device to produce audible sounds. The detected radiation can correspond to radiation information including energy information and energy intensity information. In an embodiment, the audio output device can produce an audio spectrum in a scanning mode, and in another embodiment, the audio output device can produce sounds at corresponding sound repetition rates depending on the energy intensity of the detected radiation. A method of using a radiation detection system can include placing an object near a radiation detector, generating a radiation signal corresponding to radiation emitting from the object, and analyzing the radiation signal to generate radiation information including energy information and energy intensity information. The method can also include filtering the radiation information to produce filtered radiation information, and outputting sounds corresponding to the filtered radiation information.
    • 辐射检测系统可以包括用于检测辐射的辐射检测器和音频输出设备以产生可听见的声音。 检测到的辐射可以对应于包括能量信息和能量强度信息的辐射信息。 在一个实施例中,音频输出设备可以以扫描模式产生音频频谱,并且在另一个实施例中,音频输出设备可以根据检测到的辐射的能量强度产生对应声音重复频率的声音。 使用辐射检测系统的方法可以包括将物体放置在辐射检测器附近,产生对应于从物体发射的辐射的辐射信号,以及分析辐射信号以产生包括能量信息和能量强度信息的辐射信息。 该方法还可以包括对辐射信息进行滤波以产生滤波的辐射信息,以及输出对应于滤波的辐射信息的声音。
    • 55. 发明授权
    • Optical angle-of-arrival measurement system and method for multiple light sources
    • 光学到达角度测量系统和多种光源的方法
    • US08441626B2
    • 2013-05-14
    • US12971357
    • 2010-12-17
    • Bing Wen
    • Bing Wen
    • G01J1/00
    • G01S3/781G01S3/784
    • An OAOA measurement system uses optical elements to converge incoming light from multiple sources onto an FPA as respective crosshair patterns made from lines which are oblique with respect to the FPA's axes, such that each pattern's location indicates the angular position of its corresponding source. The optical elements are arranged such that each crosshair's center point is at least twice as bright as the lines which form the crosshair's arms. The position of each crosshair is interpolated by defining regions around each arm of one of the crosshairs, determining the points of peak intensity in each row or column within each region, and curve-fitting the points to define each arm. Multiple crosshair patterns are accommodated by assigning a small magnitude value to each pixel of a defined arm, and then repeating the interpolation process for another crosshair.
    • OAOA测量系统使用光学元件将来自多个源的入射光收敛到FPA上,作为由相对于FPA的轴倾斜的线形成的十字线图案,使得每个图案的位置指示其相应源的角位置。 光学元件布置成使得每个十字准线的中心点至少是形成十字准直臂的线的两倍。 通过定义十字准线之一的每个臂周围的区域来插入每个十字准线的位置,确定每个区域内每行或列中的峰值强度点,以及曲线拟合点以限定每个臂。 通过为定义的臂的每个像素分配小的幅值,然后对另一个十字准线重复插值处理来适应多个十字线图案。
    • 56. 发明授权
    • Method and device for automatic laser focusing
    • 自动激光聚焦的方法和装置
    • US08379194B2
    • 2013-02-19
    • US12919456
    • 2009-02-18
    • Mark Geisel
    • Mark Geisel
    • G01J1/00
    • B23K26/046
    • The invention relates to a process and an apparatus for automatic laser focusing. The core concept of the process is the automatable and especially preferably the automated photographing of the focal spot generated during a focus series by camera and a determination of the particular focal spot diameter as well as an evaluation of this data by an interpolated or approximating function that allows a conclusion about the focal spot with the smallest focal spot diameter and thus with the associated optimal focal distance. A series of disadvantages present in the state of the art can be avoided by using the process in accordance with the invention, in particular the great expenditure of time in the determining of the optimal focal distance and the uncertainty in the selection of the optimal focal spot associated with an operator are eliminated in the framework of the photographing of a focus series.
    • 本发明涉及一种用于自动激光聚焦的方法和装置。 该过程的核心概念是可自动化的,特别优选的是通过照相机在聚焦系列期间产生的焦点的自动拍摄以及特定焦点直径的确定以及通过内插或近似函数评估该数据, 允许关于具有最小焦点直径的焦点的结论,并且因此具有相关联的最佳焦距。 可以通过使用根据本发明的方法来避免现有技术中存在的一系列缺点,特别是在确定最佳焦距的时间上的巨大支出以及选择最佳焦点的不确定性 在焦点系列的拍摄的框架中消除与操作者相关联。
    • 58. 发明申请
    • SYSTEM FOR MEASURING PROPERTIES OF TEST SAMPLES IN FLUID
    • 用于测量流体中测试样品性质的系统
    • US20120287422A1
    • 2012-11-15
    • US13467350
    • 2012-05-09
    • MICHAEL HOLECZEKHeike SeibtUlrich RettigAmir AgahMarlene HolderriedThomas Benz
    • MICHAEL HOLECZEKHeike SeibtUlrich RettigAmir AgahMarlene HolderriedThomas Benz
    • G01J1/00
    • G01N21/8507G01N2021/154
    • A photometer for measuring photometric magnitudes in a liquid medium includes a housing adapted to be introduced into the medium for on-site measurements; and light-emitting measuring beam transmitter and receiver that are arranged behind opposing measuring windows in a measuring slot in the housing, in which the slot is open to the medium. A measuring beam is generated in a measuring conduit in the measuring slot. A reference conduit is included for a reference measurement which is separate from the measuring conduit. At least one carrier part for the measuring beam transmitter and the measuring beam receiver is provided to move on a given path in the housing. The carrier part is constructed to move on the given path from the measuring conduit to the reference conduit and back, for measuring intensity values of the measuring beam in the measuring conduit and in the reference conduit.
    • 用于测量液体介质中的测光量值的光度计包括适于被引入到介质中用于现场测量的壳体; 以及发射测量光束发射器和接收器,其布置在外壳中的测量槽中的相对的测量窗后面,其中槽对介质开放。 在测量槽中的测量导管中产生测量光束。 包括与测量导管分开的参考测量的参考导管。 提供用于测量光束发射器和测量光束接收器的至少一个载体部分以在壳体中的给定路径上移动。 载体部分被构造成在给定路径上从测量导管移动到参考导管并返回,用于测量测量导管和参考导管中的测量光束的强度值。