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    • 11. 发明申请
    • TEST APPARATUS AND CONTROL METHOD THEREOF
    • 测试装置及其控制方法
    • US20160161418A1
    • 2016-06-09
    • US14862242
    • 2015-09-23
    • SAMSUNG ELECTRONICS CO., LTD.
    • Yeong Bae YEO
    • G01N21/78
    • G01N21/78G01N21/07G01N21/253G01N2021/0325G01N2021/7783
    • A test apparatus and a control method thereof are provided. The test apparatus is configured to test a sample in a reactor. The test apparatus includes at least one light emitter configured to emit light to chambers of the reactor, a light receiver configured to receive light passed through the chambers while scanning the chambers, and a processor configured to determine a position or an area of a chamber among the chambers, based on light receiving positions of the light receiver, and respective intensities of the received light. The processor is further configured to measure an optical density of light passed through the determined position or the determined area of the chamber.
    • 提供了一种测试装置及其控制方法。 测试装置被配置为在反应器中测试样品。 所述测试装置包括至少一个被配置为将光发射到所述电抗器的室的光发射器,被配置为在扫描所述腔室时接收通过所述腔室的光的光接收器,以及被配置为确定腔室的位置或面积的处理器 基于光接收器的光接收位置的腔室和接收的光的相应强度。 处理器还被配置为测量通过所确定的位置或确定的腔室区域的光的光密度。
    • 14. 发明申请
    • MEASUREMENT SYSTEM USING OPTICAL WAVEGUIDE
    • 使用光波导的测量系统
    • US20150177125A1
    • 2015-06-25
    • US14569885
    • 2014-12-15
    • Kabushiki Kaisha Toshiba
    • Shingo KASAI
    • G01N21/17
    • G01N21/7703G01N21/552G01N33/54333G01N2021/1727G01N2021/7783
    • According to one embodiment, a measurement system which includes an optical waveguide, magnetic fine particles, a first magnetic field application unit, a second magnetic field application unit and a controller is provided. A first material specifically bonding with a target substance is immobilized on a surface of the optical waveguide. A second material specifically bonding with the target substance is immobilized on a surface of the magnetic fine particle. The first magnetic field application unit generates a magnetic field that moves the magnetic fine particles in a direction away from the optical waveguide. The second magnetic field application unit generates a magnetic field that moves the magnetic fine particles in a direction of approaching the optical waveguide. The controller controls the first magnetic field application unit to apply the magnetic field intermittently in a state where the second magnetic field application unit applies the magnetic field.
    • 根据一个实施例,提供一种包括光波导,磁性细颗粒,第一磁场施加单元,第二磁场施加单元和控制器的测量系统。 与目标物质特异性结合的第一种材料固定在光波导的表面上。 与目标物质特异性结合的第二种材料被固定在磁性细颗粒的表面上。 第一磁场施加单元产生使磁性微粒沿远离光波导的方向移动的磁场。 第二磁场施加单元产生使磁性微粒沿接近光波导的方向移动的磁场。 控制器控制第一磁场施加单元在第二磁场施加单元施加磁场的状态下间歇地施加磁场。
    • 20. 发明授权
    • Optical splitter, combiner and device
    • 光分路器,组合器和设备
    • US08213754B2
    • 2012-07-03
    • US12305847
    • 2007-06-21
    • Jason PngSoon Thor Lim
    • Jason PngSoon Thor Lim
    • G02B6/26
    • G02B6/125B82Y20/00G01N21/774G01N21/7746G01N2021/7776G01N2021/7783G02B6/12004G02B6/1225
    • An optical splitter, a combiner and a device. The optical splitter comprises a first longitudinal waveguide for receiving an incoming light wave; at least first and second pairs of output waveguides, the output waveguides of each pair being disposed on opposite sides of the first waveguide; wherein each of the output waveguides of each pair comprises a longitudinal portion disposed parallel to the first waveguide and such that optical power is coupled from the first waveguide into the respective longitudinal portions and the longitudinal portions of output waveguides of the first and second pairs are displaced along a length of the first waveguide; wherein each of the output waveguides of each pair further comprises a substantially S-shaped portion continuing from the respective longitudinal portions and such that optical power coupling between the respective S-shaped portions of output waveguides of the first and second pairs is substantially inhibited.
    • 光分路器,组合器和设备。 光分路器包括用于接收入射光波的第一纵向波导; 至少第一和第二对输出波导,每对的输出波导设置在第一波导的相对侧上; 其中每对的每个输出波导包括平行于第一波导设置的纵向部分,并且使得光功率从第一波导耦合到相应的纵向部分中,并且第一和第二对的输出波导的纵向部分被移位 沿着所述第一波导的长度; 其中每对的每个输出波导还包括从各个纵向部分延伸的基本上S形的部分,并且基本上禁止第一和第二对的输出波导的各个S形部分之间的光功率耦合。