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    • 82. 发明申请
    • SPECTROSCOPE
    • US20140192354A1
    • 2014-07-10
    • US14234674
    • 2012-05-28
    • Takafumi YokinoKatsumi ShibayamaMasaki HiroseKatsuhiko Kato
    • Takafumi YokinoKatsumi ShibayamaMasaki HiroseKatsuhiko Kato
    • G01J3/02
    • G01J3/0256G01J3/0202G01J3/0259G01J3/0262G01J3/0291
    • A spectroscope comprises a package provided with a light entrance part, a plurality of lead pins penetrating through a support part opposing the light entrance part in the package, and a spectroscopic module supported on the support part within the package. The spectroscopic module has a light detection unit provided with a light transmission part for transmitting therethrough light incident thereon from the light entrance part and a spectroscopic unit, secured to the light detection unit so as to be arranged on the support part side of the light detection unit, including a spectroscopic part for spectrally resolving the light transmitted through the light transmission part while reflecting the light to a light detection part. The lead pins are fitted into fitting parts provided with the light detection unit and electrically connected to the light detection part.
    • 分光镜包括:设置有光入射部分的多个引线,穿过与封装体内的光入口部分相对的支撑部分的多个引脚,以及支撑在封装内的支撑部分上的分光模块。 分光模块具有光检测单元,该光检测单元设置有用于透射从光入射部入射到其上的光的光透射部分和固定到光检测单元的分光单元,以便布置在光检测的支撑部分侧 包括用于光谱分解透过透光部分的光同时将光反射到光检测部分的分光部分。 导引针安装在配备有光检测单元的配件中并电连接到光检测部件。
    • 84. 发明申请
    • SPECTROMETER MODULE
    • 光谱仪模块
    • US20130141718A1
    • 2013-06-06
    • US13637408
    • 2011-03-16
    • Takafumi YokinoKatsumi Shibayama
    • Takafumi YokinoKatsumi Shibayama
    • G01J3/28
    • G01J3/28G01J3/0208G01J3/021G01J3/0259G01J3/0262G01J3/18
    • A spectroscopic module 1 is provided with a spectroscopic unit 8 and a photodetector 9 in addition to a spectroscopic unit 4 and a photodetector 5 and thus can enhance its detection sensitivity for light in a wide wavelength range or different wavelength regions of light. A light-transmitting hole 5b and a light-absorbing layer 12 are disposed between light detecting portions 5a, 9a, while a reflection unit 7 is provided so as to oppose the layer 12 (i.e., region R), whereby the size can be kept from becoming larger. Ambient light La is absorbed by the layer 12. Any part of the light La transmitted through the region R in the layer 12 is reflected to the region R by the unit 7 formed so as to oppose the region R, whereby stray light can be inhibited from being caused by the incidence of the light La.
    • 分光模块1除了分光单元4和光电检测器5之外还设置有分光单元8和光电检测器9,因此可以提高其在宽波长范围或不同波长区域中的光的检测灵敏度。 在光检测部分5a,9a之间设置透光孔5b和光吸收层12,同时设置反射单元7以与层12(即,区域R)相对,从而可以保持尺寸 从变大。 环境光La被层12吸收。穿过层12中的区域R透射的光La的任何部分被形成为与区域R相对的单元7反射到区域R,从而可以抑制杂散光 由于La的发生而引起。
    • 86. 发明申请
    • SPECTROMETER MODULE
    • 光谱仪模块
    • US20130038874A1
    • 2013-02-14
    • US13637410
    • 2011-03-16
    • Katsumi ShibayamaTakafumi Yokino
    • Katsumi ShibayamaTakafumi Yokino
    • G01J3/28
    • G01J3/021G01J3/02G01J3/0202G01J3/0256G01J3/0262G01J3/0291G01J3/18G01J3/36
    • A spectroscopic module 1 is provided with a spectroscopic unit 8 and a photodetector 9 in addition to a spectroscopic unit 7 and a photodetector 4 and thus can enhance its detection sensitivity for light in a wide wavelength range or different wavelength regions of light. A light-transmitting hole 4b is disposed between light detecting portions 4a, 9a, while a reflection unit 6 is provided so as to oppose a region R in a light-absorbing substrate 2, whereby the size can be kept from becoming larger. Ambient light La is absorbed by the region R in the substrate 2. Any part of the light La transmitted through the region R in the substrate 2 is reflected to the region R by the unit 6 formed so as to oppose the region R, whereby stray light can be inhibited from being caused by the incidence of the light La.
    • 分光模块1除了分光单元7和光电检测器4之外还设置有分光单元8和光电检测器9,因此可以提高其在宽波长范围或不同波长区域中的光的检测灵敏度。 在光检测部分4a,9a之间设置透光孔4b,同时设置反射单元6以与光吸收基板2中的区域R相对,从而可以防止尺寸变大。 环境光La被衬底2中的区域R吸收。通过衬底2中的区域R透射的光La的任何部分被形成为与区域R相对的单元6反射到区域R,由此杂散 可以防止光被光La的发生引起。
    • 90. 发明授权
    • Spectroscopy module
    • 光谱模块
    • US08018591B2
    • 2011-09-13
    • US12465276
    • 2009-05-13
    • Katsumi ShibayamaTomofumi Suzuki
    • Katsumi ShibayamaTomofumi Suzuki
    • G01J3/28
    • G01J3/02G01J3/0208G01J3/0243G01J3/0256G01J3/0259G01J3/0286G01J3/0297
    • In a spectroscopy module 1, a light passing hole 50 through which a light L1 advancing to a spectroscopic portion 4 passes is formed in a light detecting element 5. Therefore, it is possible to prevent the relative positional relationship between the light passing hole 50 and a light detecting portion 5a of the light detecting element 5 from deviating. Moreover, the light detecting element 5 is bonded to a front plane 2a of a substrate 2 with an optical resin adhesive 63. Thus, it is possible to reduce a stress generated onto the light detecting element 5 due to a thermal expansion difference between the light detecting element 5 and the substrate 2. Additionally, on the light detecting element 5, a first pool portion 101 is formed so as to be located at least between the light detecting portion 5a and the light passing hole 50 when viewed from a direction substantially perpendicular to the front plane 2a. Thus, when the light detecting element 5 is attached to the substrate 2 via the optical resin adhesive 63, the optical resin adhesive 63 is pooled to remain at the first pool portion 101. Thus, the optical resin adhesive 63 is prevented from penetrating into the light passing hole 50.
    • 在光谱模块1中,在光检测元件5中形成有通过向分光部4前进的光L1通过的光通过孔50.因此,能够防止光通过孔50与 光检测元件5的光检测部分5a偏离。 此外,光检测元件5利用光学树脂粘合剂63接合到基板2的前面2a。因此,可以减少由于光的热膨胀差而在光检测元件5上产生的应力 检测元件5和基板2.此外,在光检测元件5上,当从基本上垂直的方向观察时,第一池部分101形成为至少位于光检测部分5a和光通过孔50之间 到前平面2a。 因此,当光检测元件5通过光学树脂粘合剂63附着到基板2上时,将光学树脂粘合剂63汇集以保持在第一池部101处。因此,防止光学树脂粘合剂63渗透到 光通过孔50。