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    • 21. 发明授权
    • Wavelength selecting module and wavelength selecting apparatus
    • 波长选择模块和波长选择装置
    • US06760085B2
    • 2004-07-06
    • US10082823
    • 2001-10-19
    • Yoshiro SatoManabu Takami
    • Yoshiro SatoManabu Takami
    • G02F113
    • G02F1/13718G02F2203/055H04J14/02
    • A wavelength selecting module includes a first collimator for collimating diverging light to generate a collimated light beam and a liquid crystal cell having a predetermined helical direction. The liquid crystal cell separates a light signal having a specific wavelength among a plurality of light signals of the collimated light beam into a left circularly polarized light and a right circularly polarized light, reflects one of the left and right circularly polarized light signals that has a same optical rotatory direction as the predetermined helical direction toward the first collimator in a first state. The liquid crystal cell passes the plurality of light signals of the collimated light beam in a second state. The liquid crystal cell changes between the first state and the second state in accordance with a change in a voltage applied thereto, thereby switching between selection and non-selection of light having the specific wavelength.
    • 波长选择模块包括用于准直发散光以产生准直光束的第一准直仪和具有预定螺旋方向的液晶单元。 液晶单元将准直光束的多个光信号中的具有特定波长的光信号分离成左圆偏振光和右圆偏振光,反射左右圆偏振光信号中的一个,具有 在第一状态下与朝向第一准直仪的预定螺旋方向相同的旋转方向。 液晶单元在第二状态下通过准直光束的多个光信号。 液晶单元根据施加到其上的电压的变化在第一状态和第二状态之间变化,从而在具有特定波长的光的选择和非选择之间切换。
    • 27. 发明授权
    • Circuit for injecting simulating-noise signals in a power line
    • 用于在电力线中注入模拟噪声信号的电路
    • US4417207A
    • 1983-11-22
    • US243458
    • 1981-03-13
    • Yoshiro Sato
    • Yoshiro Sato
    • G01R31/00G01R31/02H03K3/53
    • G01R31/021G01R31/001
    • A simulated-noise signal is injected in the power line of equipment under test without loss of AC power by the use of a series resonance circuit having a resonance frequency equal to the frequency of the AC power supply. The series resonance circuit is connected in the power line in parallel with the equipment, and a capacitor is connected to the power line in parallel with the series resonance circuit and the equipment. A switching element is used to short-circuit the resonance circuit when noise simulation is not carried out. For the simulation of lightening strikes the circuit further comprises a simulated-noise signal generator including a capacitor charged by a DC power supply, a first switching element to discharge the charge of the capacitor to the equipment, and a second switching element for establishing a by-pass of the discharging current. By closing the second switching element after the first switching element is closed, a square-wave signal is fed to the equipment. In order to simulate ringing-surge signals, the circuit includes a generator to generate a damped-wave signal similar to a ringing signal. This generator has a capacitor charged by a DC power supply, a switching element for discharging the charge of the capacitor to the equipment, and an inductance coil connected to the discharging circuit. When the switching element is closed, a damped-wave signal is fed to the equipment.
    • 通过使用谐振频率等于交流电源的频率的串联谐振电路,将模拟噪声信号注入被测设备的电力线,而不损失交流电力。 串联谐振电路与设备并联连接在电源线中,电容器与串联谐振电路和设备并联连接到电源线。 当不执行噪声模拟时,开关元件用于使谐振电路短路。 对于减轻雷击的模拟,电路还包括模拟噪声信号发生器,其包括由直流电源充电的电容器,用于将电容器的电荷放电到设备的第一开关元件,以及用于建立通过 - 通过放电电流。 通过在第一开关元件闭合之后闭合第二开关元件,将方波信号馈送到设备。 为了模拟振铃信号,电路包括一个发生器,产生类似于振铃信号的阻尼波信号。 该发电机具有由直流电源充电的电容器,用于将电容器的电荷放电到设备的开关元件和连接到放电电路的电感线圈。 当开关元件闭合时,阻尼波信号被馈送到设备。
    • 29. 发明授权
    • Method of assaying complex and kit to be used therefor
    • 测定复合物的方法和用于其的试剂盒
    • US08900882B2
    • 2014-12-02
    • US13056040
    • 2009-05-14
    • Kiyotaka FujitaRyo KojimaYoshiro SatoNatsuki Sato
    • Kiyotaka FujitaRyo KojimaYoshiro SatoNatsuki Sato
    • G01N33/543G01N33/536
    • G01N33/536G01N2333/765
    • In the case of assaying the level of complex AB in a sample which likely contains the complex AB composed of substance A with another substance B, the complex is assayed by the competitive homogeneous assay method with the use of reagents including a reagent containing partner C specifically binding to substance A, a reagent containing partner D specifically binding to substance B, a reagent containing fine particles carrying substance A or an analog thereof and substance B or an analog thereof, and a reagent containing partner C specifically binding to substance A and partner D specifically binding to substance B. Thus, the complex in the sample can be easily assayed. The above method is applicable to general-purpose biochemical automatic analyzers.
    • 在可能含有由物质A与其他物质B组成的复合物AB的样品中测定复合物AB的水平的情况下,通过竞争性均一测定方法使用包含含有配偶体C的试剂的试剂来测定复合物 与物质A结合,与物质B特异性结合的含有配偶体D的试剂,含有携带物质A或其类似物的细颗粒的试剂和物质B或其类似物,以及与物质A和配偶体D特异性结合的含有配子C的试剂 特异性结合于物质B.因此,可以容易地测定样品中的复合物。 以上方法适用于通用生化自动分析仪。
    • 30. 发明申请
    • METHOD OF ASSAYING COMPLEX AND KIT TO BE USED THEREFOR
    • 测定复合物的方法及其使用的试剂盒
    • US20110136261A1
    • 2011-06-09
    • US13056040
    • 2009-05-14
    • Kiyotaka FujitaRyo KojimaYoshiro SatoNatsuki Sato
    • Kiyotaka FujitaRyo KojimaYoshiro SatoNatsuki Sato
    • G01N33/566
    • G01N33/536G01N2333/765
    • In the case of assaying the level of complex AB in a sample which likely contains the complex AB composed of substance A with another substance B, the complex is assayed by the competitive homogeneous assay method with the use of reagents including a reagent containing partner C specifically binding to substance A, a reagent containing partner D specifically binding to substance B, a reagent containing fine particles carrying substance A or an analogue thereof and substance B or an analogue thereof, and a reagent containing partner C specifically binding to substance A and partner D specifically binding to substance B. Thus, the complex in the sample can be easily assayed. The above method is applicable to general-purpose biochemical automatic analyzers.
    • 在可能含有由物质A与其他物质B组成的复合物AB的样品中测定复合物AB的水平的情况下,通过竞争性均一测定方法使用包含含有配偶体C的试剂的试剂来测定复合物 与物质A结合,与物质B特异性结合的含有试剂的配偶体D,含有携带物质A的微粒或其类似物的试剂和物质B或其类似物,以及与物质A和配偶体D特异性结合的含有试剂的配偶体C 特异性结合于物质B.因此,可以容易地测定样品中的复合物。 以上方法适用于通用生化自动分析仪。