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    • 3. 发明授权
    • Method and apparatus for measuring optical property of fluorescent sample
    • 用于测量荧光样品的光学性质的方法和装置
    • US08288739B2
    • 2012-10-16
    • US12381926
    • 2009-03-18
    • Kenji Imura
    • Kenji Imura
    • F21V9/16
    • G01N21/645G01N2021/6419G01N2021/8663
    • An optical property measuring method and an optical property measuring apparatus according to an aspect of the invention are operable to select bi-spectral characteristics relatively close to bi-spectral characteristics of a fluorescent sample, out of multiple bi-spectral characteristics stored in advance, based on a relative ratio between excitation efficiencies of the fluorescent sample illuminated by excitation illuminations whose spectral distributions are different from each other, in calculating an optical property of the fluorescent sample. The inventive optical property measuring method and optical property measuring apparatus are advantageous in calculating an optical property of a fluorescent sample easily and with high precision.
    • 根据本发明的一个方面的光学性质测量方法和光学性能测量装置可操作以从基于预先存储的多个双光谱特性中选择相对接近荧光样品的双光谱特性的双光谱特性 在荧光样品的光学性质的计算中,通过荧光样品的激发效率相对于荧光样品的光学特性而相互之间的光谱分布彼此不同的激发照明照射的相对比例。 本发明的光学特性测量方法和光学性能测量装置有利于容易且高精度地计算荧光样品的光学特性。
    • 5. 发明申请
    • Calibration reference light source and calibration system using the same
    • 校准参考光源和校准系统使用相同
    • US20090051910A1
    • 2009-02-26
    • US12229171
    • 2008-08-20
    • Kenji Imura
    • Kenji Imura
    • G01J3/02
    • G01J3/10G01J3/0254G01J3/28G01J2003/104G01J2003/2866
    • In a calibration reference light source and a sensitivity calibration system using the same, a plurality of single-wavelength light sources for emitting reference lights having mutually different single-wavelengths are used instead of a black body radiation source for radiating a white light, and not only the intensities of the single-wavelength reference lights, but also the wavelengths thereof are measured to obtain sensitivity correction coefficients of intensity-to-radiance conversion data. Thus, obtained reference radiance are highly reliable and sensitivity correction of spectrophotometers and spectral illuminometers can be performed with high accuracy and reliability at a user side, whereby the calibration reference light source and the calibration system using the same can be obtained at low cost.
    • 在校准基准光源和使用其的灵敏度校准系统中,使用用于发射具有相互不同的单一波长的参考光的多个单波长光源代替用于发射白光的黑体辐射源,而不是 仅测量单波长参考光的强度,还测量其波长,以获得强度到辐射转换数据的灵敏度校正系数。 因此,获得的基准亮度高度可靠,并且可以在用户侧以高精度和可靠性执行分光光度计和光谱照度计的灵敏度校正,由此可以以低成本获得校准参考光源和使用其的校准系统。
    • 6. 发明申请
    • Light receiving optical system, and spectrophotometer incorporated with the same
    • 光接收光学系统和分光光度计结合使用
    • US20090015916A1
    • 2009-01-15
    • US12217851
    • 2008-07-09
    • Kenji Imura
    • Kenji Imura
    • G01N21/00G01J3/42
    • G01J3/02G01J3/0208G01J3/0218G01J3/0237G01J3/024G01J3/0289G01J3/04G02B23/24G02B26/0816
    • A light receiving optical system includes: a relay optical system for converging light to be measured which has been converged on an image plane of an objective optical system on a view angle defining aperture for incidence through the view angle defining aperture. The light receiving optical system has the relay optical system with a relay lens operable to be selectively switched between a first and a second conjugated positions, and a first and a second light flux limiting aperture members disposed in proximity to the relay lens in the case where the relay lens is selectively switched between the first and the second conjugated positions. The relay optical system selectively forms, on the image plane of the objective optical system, an enlarged image and a reduced image of the view angle defining aperture in the case where the relay lens is selectively switched between the first and the second conjugated positions to define an incident light flux through the view angle defining aperture by a first and a second light flux limiting apertures, respectively, in the case where the relay lens is selectively switched between the first and the second conjugated positions. A spectrophotometer has the light receiving optical system.
    • 光接收光学系统包括:用于会聚已被聚焦在物镜光学系统的像平面上的被测光的中继光学系统,该视场角定义孔通过视角定义孔入射。 光接收光学系统具有中继透镜,其具有可操作以在第一和第二共轭位置之间有选择地切换的中继透镜,以及设置在中继透镜附近的第一和第二光通量限制孔部件, 中继透镜在第一和第二共轭位置之间有选择地切换。 在中继透镜在第一和第二共轭位置之间有选择地切换的情况下,中继光学系统在物镜光学系统的图像平面上选择性地形成放大图像和视角定义孔径的缩小图像,以限定 在中继透镜在第一和第二共轭位置之间有选择地切换的情况下,分别通过第一和第二光通量限制孔分别穿过视角定义孔的入射光束。 分光光度计具有光接收光学系统。
    • 7. 发明授权
    • Reflection characteristic measuring apparatus
    • 反射特性测量装置
    • US07436516B2
    • 2008-10-14
    • US11708221
    • 2007-02-19
    • Yoshihiro OkuiJun MatsumotoKenji Imura
    • Yoshihiro OkuiJun MatsumotoKenji Imura
    • G01N21/55
    • G01N21/57
    • A reflection characteristic measuring apparatus includes: a light irradiating member for irradiating light toward a sample surface to be measured; a light detector, having a two-dimensional light receiving surface, for receiving reflection light from the sample surface illuminated with the light irradiated by the light irradiating member to output two-dimensional light receiving data concerning a first area corresponding to an area of the light receiving surface; an area setter for setting a second area at an appropriate position within the first area, the second area being smaller than the first area, to restrict light receiving data to be used in obtaining a reflection characteristic of the sample surface; and a calculator for obtaining a characteristic of the sample surface, based on two-dimensional light receiving data concerning the second area. The area setter detects whether the two-dimensional light receiving data concerning the first area includes a peak value concerning light receiving; sets the second area, with a position of the peak value being defined as a reference position, if the peak value is detected; and sets the second area, with a central position on the first area being defined as the reference position, if the peak value is not detected.
    • 反射特性测量装置包括:用于向被测样品表面照射光的光照射部件; 具有二维光接收表面的光检测器,用于接收由被照射光照射部件照射的光照射的来自样品表面的反射光,以输出关于对应于光的区域的第一区域的二维光接收数据 接收面; 区域设定器,用于将第二区域设置在第一区域内的适当位置,第二区域小于第一区域,以限制要获得样品表面的反射特性所使用的光接收数据; 以及用于基于关于第二区域的二维光接收数据来获得样品表面的特性的计算器。 区域设定器检测关于第一区域的二维光接收数据是否包括关于光接收的峰值; 如果检测到峰值,则设置第二区域,其中峰值的位置被定义为参考位置; 并且如果没有检测到峰值,则将第一区域的中心位置定义为基准位置的第二区域。