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    • 3. 发明授权
    • Sensitivity adjusting equipment of photoelectric smoke detector
    • 光电式烟雾探测器灵敏度调节装置
    • US06797959B2
    • 2004-09-28
    • US10223240
    • 2002-08-19
    • Shenq-Tsong ChangHo-Lin TsayTai-Shan LiaoBih-Chang WangTing-Ming Huang
    • Shenq-Tsong ChangHo-Lin TsayTai-Shan LiaoBih-Chang WangTing-Ming Huang
    • G01J508
    • G08B29/22G08B17/107G08B17/113
    • The sensitivity adjusting equipment applied to a photoelectric smoke detector is provided. The photoelectric smoke detector includes a luminous component for providing an input light and a detecting component for receiving an even output light. The sensitivity adjusting equipment includes a light-scattering device having a scattering component and an adjustable hole for scattering the input light evenly and adjusting an intensity of the input light so as to output the even output light to the detecting component. The sensitivity adjusting equipment also includes a movable platform having a first brace connected to the photoelectric smoke detector and a supporting base having a second brace connected to the light-scattering device. The movable platform is moved to make the photoelectric smoke detector and the light-scattering device combined to adjust the sensitivity of the photoelectric smoke detector.
    • 提供了应用于光电式烟雾探测器的灵敏度调节设备。 光电式烟雾检测器包括用于提供输入光的发光部件和用于接收均匀输出光的检测部件。 灵敏度调节装置包括具有散射分量的光散射装置和用于均匀地散射输入光的可调节孔,并且调节输入光的强度,以将均匀的输出光输出到检测部件。 灵敏度调节设备还包括具有连接到光电烟雾探测器的第一支架的可移动平台和具有连接到光散射装置的第二支架的支撑座。 移动平台移动,使光电式烟雾探测器和光散射装置相结合,调节光电式烟雾探测器的灵敏度。
    • 5. 发明授权
    • System and method for nondestructive measuring refractive index and thickness of lens
    • 非破坏性测量折射率和透镜厚度的系统和方法
    • US08823927B2
    • 2014-09-02
    • US13468129
    • 2012-05-10
    • Chia-Yen ChanShenq-Tsong ChangTing-Ming HuangPo-Han Huang
    • Chia-Yen ChanShenq-Tsong ChangTing-Ming HuangPo-Han Huang
    • G02B13/00G01B1/00
    • G01M11/0235G01M11/025
    • The present invention discloses a system and method for nondestructively measuring the refractive index and the central thickness of a lens. The system comprises a radius measurement module arranged for measuring the curvature radius of the first surface of the lens; a focus measurement module arranged for measuring the best focus distance of the first surface of the lens; and a calculation module arranged for performing the first or the second calculation process according to the lensmaker's formula. Wherein, when the central thickness is given, the calculation module performs the first calculation process according to the curvature radius, the best focus distance and the central thickness to calculate the refractive index. On the contrary, when the refractive index is given, the calculation module performs the second calculation process according to the curvature radius, the best focus distance and the refractive index to calculate the central thickness.
    • 本发明公开了一种用于非破坏性地测量透镜的折射率和中心厚度的系统和方法。 该系统包括:半径测量模块,被布置成用于测量透镜的第一表面的曲率半径; 聚焦测量模块,布置成用于测量透镜的第一表面的最佳聚焦距离; 以及计算模块,其被布置为根据所述制镜公式执行所述第一或第二计算处理。 其中,当给出中心厚度时,计算模块根据曲率半径,最佳聚焦距离和中心厚度执行第一计算过程以计算折射率。 相反,当给出折射率时,计算模块根据曲率半径,最佳聚焦距离和折射率执行第二计算处理以计算中心厚度。
    • 6. 发明申请
    • SYSTEM AND METHOD FOR NONDESTRUCTIVE MEASURING REFRACTIVE INDEX AND THICKNESS OF LENS
    • 用于非结合测量折射率指数和透镜厚度的系统和方法
    • US20130301038A1
    • 2013-11-14
    • US13468129
    • 2012-05-10
    • Chia-Yen ChanShenq-Tsong ChangTing-Ming HuangPo-Han Huang
    • Chia-Yen ChanShenq-Tsong ChangTing-Ming HuangPo-Han Huang
    • G01M11/02G01M11/08
    • G01M11/0235G01M11/025
    • The present invention discloses a system and method for nondestructively measuring the refractive index and the central thickness of a lens. The system comprises a radius measurement module arranged for measuring the curvature radius of the first surface of the lens; a focus measurement module arranged for measuring the best focus distance of the first surface of the lens; and a calculation module arranged for performing the first or the second calculation process according to the lensmaker's formula. Wherein, when the central thickness is given, the calculation module performs the first calculation process according to the curvature radius, the best focus distance and the central thickness to calculate the refractive index. On the contrary, when the refractive index is given, the calculation module performs the second calculation process according to the curvature radius, the best focus distance and the refractive index to calculate the central thickness.
    • 本发明公开了一种用于非破坏性地测量透镜的折射率和中心厚度的系统和方法。 该系统包括:半径测量模块,被布置成用于测量透镜的第一表面的曲率半径; 聚焦测量模块,布置成用于测量透镜的第一表面的最佳聚焦距离; 以及计算模块,其被布置为根据所述制镜公式执行所述第一或第二计算处理。 其中,当给出中心厚度时,计算模块根据曲率半径,最佳聚焦距离和中心厚度执行第一计算过程以计算折射率。 相反,当给出折射率时,计算模块根据曲率半径,最佳聚焦距离和折射率执行第二计算处理以计算中心厚度。