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    • 3. 发明授权
    • Optical composite cure radiometer and method
    • 光复合固化辐射计及方法
    • US07175436B2
    • 2007-02-13
    • US10888638
    • 2004-07-09
    • Joshua Friedman
    • Joshua Friedman
    • A61C5/00A61C3/00G01J5/02
    • G01J1/4209A61C19/004A61C19/04G01J2001/4247
    • A radiometer and method for providing an indication of the amount of time (exposure duration) needed to cause a light curable dental resin composite material to maximally polymerize in response to the application of light from any light-curing source during the preparation of a dental restoration. It describes a radiometer comprising a sample holder of a size designed to hold a sample equivalent of said dental light curable dental material such that the thickness of the sample of light curable material in the sample holder will correspond to the depth of the composite material in the dental restoration; a solid state light sensor; a microprocessor programmed to respond to the output voltage or change in electrical resistance of the light sensor based upon an algorithm defining a mathematical model representative of the change in light transmission through the light curable dental material as a function of the degree to which said light curable dental material is being polymerized. It includes a time display that is responsive to the output signal generated from the microprocessor for displaying the amount of time (exposure duration) needed to maximally polymerize the light curable dental material in the dental restoration.
    • 一种辐射计和方法,用于提供使光固化牙科树脂复合材料在制备牙齿修复体期间响应于来自任何光固化源的光的应用而最大程度聚合所需的时间量(暴露持续时间)的指示 。 它描述了一种辐射计,其包括样本保持器,其尺寸设计成保持等同于所述牙科光固化牙科材料的样品,使得样品保持器中的可光固化材料样品的厚度将对应于复合材料的深度 牙修复 固态光传感器; 微处理器被编程为响应于光传感器的输出电压或电阻的变化,该算法基于定义表示通过光可固化牙科材料的光透射变化的数学模型的算法作为所述光可固化的程度的函数 牙科材料正在聚合。 它包括响应于从微处理器产生的输出信号的时间显示,用于显示在牙科修复体中最大程度聚合光可固化牙科材料所需的时间量(暴露持续时间)。
    • 10. 发明申请
    • OPTICAL DISPLACEMENT SENSOR
    • 光学位移传感器
    • US20160252370A1
    • 2016-09-01
    • US15044698
    • 2016-02-16
    • SICK OPTEX CO., LTD.
    • Tasuku YUGUCHI
    • G01D5/34G01J1/42
    • G01D5/34G01B11/14G01J1/4209
    • The present invention includes an imager 1 having an automatic exposure stopping function, which are implemented therein, and includes an exposure time measuring unit 24 to measure the exposure time from the start of exposure to the stopping of exposure in the imager 1, a measurement distance calculating unit 21 to calculate the measurement distance to an object M on the basis of a displacement of the light receiving position in the imager 1, and a data output/storage unit 25 to output and/or store, as data related with acquisition of a distance actual value, which is an actual distance to the object, in a condition in which the measured exposure time and the measurement distance calculated with this exposure time are associated with each other.
    • 本发明包括一个具有自动曝光停止功能的成像器1,该成像器在其中实现,并且包括曝光时间测量单元24,用于测量从曝光开始到曝光成像器1中的停止曝光的曝光时间,测量距离 计算单元21基于成像器1中的光接收位置的位移和用于输出和/或存储的数据输出/存储单元25来计算到对象M的测量距离,作为与获取 在以该曝光时间计算的测量曝光时间和测量距离彼此相关联的条件下,距离实际值(其是到物体的实际距离)。