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    • 43. 发明申请
    • Method and device for adjusting wavelength distribution pattern in laser
    • 调整激光波长分布图的方法和装置
    • US20050205536A1
    • 2005-09-22
    • US11083738
    • 2005-03-18
    • Yoshihiro NorikaneManabu SeoYasufumi Yamada
    • Yoshihiro NorikaneManabu SeoYasufumi Yamada
    • G02B26/08B23K26/06B23K26/067G01J3/14G01J3/18G02B27/28G02B27/46
    • B23K26/0676B23K26/0604B23K26/066B23K26/067G01J3/0229G01J3/14G01J3/18
    • A plurality of configurations is simultaneously formed in a material by a single laser beam having a desired distribution pattern of wavelengths. An input laser beam has an initial wavelength distribution pattern. The initial wavelength distribution pattern is adjusted or modified into a desired final wavelength distribution pattern. For example, the initial wavelength distribution pattern is a wide range of wavelengths in a single bell-curve distribution while the desired final wavelength distribution pattern has a specific number of sharp peaks each over a predetermined narrow range. The laser beam having the desired final wavelength distribution pattern is focused upon on a material. Because of the multiple peaks in the wavelength distribution, the laser beam is focused at a plurality of the focal distances. A number of structures is simultaneously formed in a material at the multiple focal points or at multiple locations/depths when the above laser beam is projected onto the material.
    • 通过具有期望的波长分布图案的单个激光束在材料中同时形成多个构造。 输入激光束具有初始波长分布图案。 将初始波长分布图案调整或修改为所需的最终波长分布图案。 例如,初始波长分布图案是单个钟形曲线分布中的宽波长范围,而期望的最终波长分布图案在预定的窄范围内具有特定数量的尖峰。 具有期望的最终波长分布图案的激光束聚焦在材料上。 由于波长分布中的多个峰值,激光束被聚焦在多个焦距处。 当将上述激光束投射到材料上时,在多个焦点处的材料中或多个位置/深度处同时形成多个结构。
    • 49. 发明授权
    • Spectral distribution measuring device
    • 光谱分布测量装置
    • US08497988B2
    • 2013-07-30
    • US12879761
    • 2010-09-10
    • Kohei ShimboManabu SeoNaohiro Kamijo
    • Kohei ShimboManabu SeoNaohiro Kamijo
    • G01J3/28
    • G01J3/50G01J3/02G01J3/0208G01J3/0229G01J3/06G01J3/18G01J3/2803G01J3/2823G02B3/0087G02B13/22G02B27/0025
    • A spectral distribution measuring device includes an illumination unit configured to illuminate white light to a surface of an object being measured; a slit array having a plurality of slits formed in alignment at equal intervals; a linear image sensor including a light receiving face having a plurality of rectangular pixels adjacently arranged in alignment and a plurality of spectral light-irradiated areas divided in each predetermined number of neighboring pixels; a plurality of areas being measured which is set on the surface of the object being measured, and reflects the light irradiated by the illumination unit to the plurality of slits; and a diffraction unit configured to diffract and disperse reflection light which is reflected from the areas being measured and has passed through each slit, the diffraction unit being disposed such that a direction where a diffraction image expands is inclined at an angle to a direction where the light receiving face expands.
    • 光谱分布测量装置包括被配置为将白光照射到被测量物体的表面的照明单元; 狭缝阵列,其具有以等间隔对准地形成的多个狭缝; 线性图像传感器,其包括具有相邻排列成对的多个矩形像素的光接收面和在每个预定数量的相邻像素中划分的多个光谱光照射区域; 测量被测物体的表面上被测量的多个区域,并将照明单元照射的光反射到多个狭缝; 以及衍射单元,被配置为衍射和分散从被测量区域反射并穿过每个狭缝的反射光,所述衍射单元被设置为使得衍射图像扩展的方向与所述衍射单元的方向成一定角度倾斜, 光接收面扩大。
    • 50. 发明申请
    • SPECTRAL CHARACTERISTIC MEASURING DEVICE AND IMAGE FORMING APPARATUS
    • 光谱特性测量装置和图像形成装置
    • US20130182251A1
    • 2013-07-18
    • US13737157
    • 2013-01-09
    • Kohei ShimboNaohiro KamijoManabu SeoYoichi Kubota
    • Kohei ShimboNaohiro KamijoManabu SeoYoichi Kubota
    • G01J3/02
    • G01J3/0208G01J3/0205G01J3/0229G01J3/0248G01J3/1804G01J3/2803
    • A spectral characteristic measuring device includes an illuminating unit that illuminates a medium; a light dividing unit that divides reflection light from the medium into reflection light beams; a first imaging unit that includes first lenses and second lenses arranged alternately in a staggered pattern and focuses the respective reflection light beams; a diffraction unit that includes a first diffraction region and a second diffraction region and diffracts the focused reflection light beams to form diffraction images; and a light receiving unit that includes plural pixels for receiving the diffraction images. The reflection light beams focused by the first lenses enter the first diffraction region to form first diffraction images, the reflection light beams focused by the second lenses enter the second diffraction region to form second diffraction images, and the first and second diffraction images are arranged alternately on the light receiving unit in a pixel arrangement direction.
    • 光谱特性测量装置包括照亮介质的照明单元; 将来自介质的反射光分成反射光束的光分割单元; 第一成像单元,其包括以交错图案交替布置的第一透镜和第二透镜,并且对各个反射光束进行聚焦; 衍射单元,其包括第一衍射区域和第二衍射区域,并衍射聚焦反射光束以形成衍射图像; 以及包括用于接收衍射图像的多个像素的光接收单元。 由第一透镜聚焦的反射光束进入第一衍射区域以形成第一衍射图像,由第二透镜聚焦的反射光束进入第二衍射区域以形成第二衍射图像,并且第一和第二衍射图像交替布置 在像素排列方向上的光接收单元上。