Particle measuring device and particle measuring method
    13.
    发明授权
    Particle measuring device and particle measuring method 有权
    粒子测量装置和粒子测量方法

    公开(公告)号:US09372072B2

    公开(公告)日:2016-06-21

    申请号:US13637614

    申请日:2011-04-01

    Applicant: Nobuaki Ito

    Inventor: Nobuaki Ito

    Abstract: This particle measuring device includes a stage, a reflected light illuminating device, a transmitted light illuminating device, an illumination control device, an imaging device, and an image processing device. Based on a transmitted light image acquired by imaging an opaque fine particle group using transmitted light and a reflected light image acquired by imaging an opaque fine particle group using reflected light, by associating transmitted light particles present in the transmitted light image and reflected light particles present in the reflected light image with each other using a predetermined method, various characteristics (the position, the size, the brightness level, and the like) of individual particles out of a fine particle group are simultaneously measured.

    Abstract translation: 该粒子测量装置包括载物台,反射光照明装置,透射光照明装置,照明控制装置,成像装置和图像处理装置。 基于通过使用透射光成像不透明微粒组而获得的透射光图像和通过使用反射光成像不透明微粒组而获得的反射光图像,通过将透射光图像中存在的透射光粒子与存在于反射光粒子中的反射光粒子相关联 在使用预定方法的反射光图像中,同时测量细颗粒组中的各个颗粒的各种特性(位置,大小,亮度水平等)。

    SYSTEM FOR CHARACTERIZING THE PHYSIOLOGICAL STATE OF PLANTS AND CORRESPONDING METHOD
    14.
    发明申请
    SYSTEM FOR CHARACTERIZING THE PHYSIOLOGICAL STATE OF PLANTS AND CORRESPONDING METHOD 有权
    表征植物生理状态和相关方法的系统

    公开(公告)号:US20160084636A1

    公开(公告)日:2016-03-24

    申请号:US14784773

    申请日:2014-04-18

    Abstract: The invention concerns a system (1) for characterising the physiological state of woody plants (2, 3) with branches grown in rows, such as vine plants, said system (1) including a vehicle (10) designed to move between said rows, a geolocation device (14) and a processing unit (15), and being characterized in that it includes a sensor (16) including a light source (17) designed to emit a light beam (18) and a light receiver (19), said light beam (18) being able to intersect the branches, as the vehicle (10) moves forward, said light beam (18) having a dimension (L) greater than the diameter (D) of the thickest of the branches in said row (6), said light beam (18) projecting, onto said light receiver (19), a shadow (20A, 208) from which the processing unit (15) determines the diameter (D1, D2 of the branch (2A, 28) in question.

    Abstract translation: 本发明涉及一种系统(1),用于表征木本植物(2,3)的生理状态,其中分支生长成行,例如藤本植物,所述系统(1)包括设计成在所述行之间移动的车辆(10) 地理定位装置(14)和处理单元(15),其特征在于,它包括一个传感器(16),包括设计成发射光束(18)的光源(17)和光接收器(19) 所述光束(18)能够与所述分支相交,因为所述车辆(10)向前移动,所述光束(18)的尺寸(L)大于所述行中最厚的分支的直径(D) (6),所述光束(18)在所述光接收器(19)上投射阴影(20A,208),所述处理单元(15)从所述阴影(20A,208)确定所述分支(2A,28)的直径(D1,D2) 有问题

    LASER MEASUREMENT SYSTEM AND METHOD
    15.
    发明申请
    LASER MEASUREMENT SYSTEM AND METHOD 审中-公开
    激光测量系统和方法

    公开(公告)号:US20150355056A1

    公开(公告)日:2015-12-10

    申请号:US14299648

    申请日:2014-06-09

    Abstract: A laser measurement system for tires is provided. The laser measurement system includes a rim mounting bracket including an arm. The laser measurement system includes a mounting head slidably coupled to the arm. The laser measurement system includes a laser coupled to the mounting head and configured to be positioned over at least one side surface of a tire that does not contact a ground surface when the tire is in use.

    Abstract translation: 提供了一种用于轮胎的激光测量系统。 激光测量系统包括具有臂的边缘安装支架。 激光测量系统包括可滑动地联接到臂的安装头。 激光测量系统包括耦合到安装头的激光器,并被配置为定位在轮胎的至少一个侧表面上,轮胎在使用时不接触地面。

    Absolute diameter measurement arm
    16.
    发明授权
    Absolute diameter measurement arm 有权
    绝对直径测量臂

    公开(公告)号:US09157723B2

    公开(公告)日:2015-10-13

    申请号:US14083162

    申请日:2013-11-18

    Applicant: Axiam, Inc.

    CPC classification number: G01B5/08 G01B11/08 G01B21/10

    Abstract: A measurement apparatus and corresponding method can be used to measure an absolute diameter of a part in a shop floor environment. A tracker such as a laser tracker monitors a position of a probe end of a measurement arm of the apparatus. The position measured by the laser tracker can be used directly account for errors in the apparatus such as, for example, positioning errors of the measurement arm. The position monitoring of the tracking device eliminates complex apparatus calibrations and calculations used for previous devices.

    Abstract translation: 可以使用测量装置和相应的方法来测量车间环境中的零件的绝对直径。 诸如激光跟踪器的跟踪器监视装置的测量臂的探针端的位置。 由激光跟踪器测量的位置可以直接用于装置中的误差,例如测量臂的定位误差。 跟踪设备的位置监控消除了以前设备使用的复杂设备校准和计算。

    DEVICE FOR MEASURING AN INTERNAL OR EXTERNAL PROFILE OF A TUBULAR COMPONENT
    19.
    发明申请
    DEVICE FOR MEASURING AN INTERNAL OR EXTERNAL PROFILE OF A TUBULAR COMPONENT 有权
    用于测量管状部件的内部或外部轮廓的装置

    公开(公告)号:US20140360036A1

    公开(公告)日:2014-12-11

    申请号:US14369365

    申请日:2012-12-26

    Abstract: A device includes a first sensor for making a radial measurement of a tubular component and a support which can drive the first sensor in a circular trajectory in a predefined plane orthogonal to the principal axis of the component. The support includes a principal body that can be attached to the component by a releasable attachment mechanism and a rotary shaft onto which an arm carrying the first sensor is attached to allow displacement of the first sensor in a circular trajectory inside or about the component. The device further includes a second sensor for measuring an angular position of the first sensor for each of its radial measurements, the radial and angular measurements obtained allowing the profile of the component in the predefined plane to be determined.

    Abstract translation: 一种装置包括用于进行管状部件的径向测量的第一传感器和能够以与部件的主轴正交的预定平面中的圆形轨迹驱动第一传感器的支撑件。 支撑件包括主体,其可以通过可释放的附接机构和旋转轴附接到部件上,在所述旋转轴上安装有承载第一传感器的臂,以允许第一传感器以部件内部或周围的圆形轨迹移位。 该装置还包括第二传感器,用于在其每个径向测量中测量第一传感器的角位置,获得的径向和角度测量值允许确定预定平面中的部件的轮廓。

    Determination of optimal diameters for nanowires
    20.
    发明授权
    Determination of optimal diameters for nanowires 有权
    确定纳米线的最佳直径

    公开(公告)号:US08810808B2

    公开(公告)日:2014-08-19

    申请号:US13971523

    申请日:2013-08-20

    Applicant: Munib Wober

    Inventor: Munib Wober

    Abstract: Methods of optimizing the diameters of nanowire photodiode light sensors. The method includes comparing the response of nanowire photodiode pixels having predetermined diameters with standard spectral response curves and determining the difference between the spectral response of the photodiode pixels and the standard spectral response curves. Also included are nanowire photodiode light sensors with optimized nanowire diameters and methods of scene reconstruction.

    Abstract translation: 优化纳米线光电二极管光传感器直径的方法。 该方法包括比较具有预定直径的纳米线光电二极管像素与标准光谱响应曲线的响应,并确定光电二极管像素的光谱响应与标准光谱响应曲线之间的差异。 还包括具有优化的纳米线直径和场景重建方法的纳米线光电二极管光传感器。

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