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    • 91. 发明授权
    • Gas analyzing apparatus
    • 气体分析仪
    • US09448179B2
    • 2016-09-20
    • US14578666
    • 2014-12-22
    • HORIBA, Ltd.
    • Yusuke MizunoTakuji OidaMisato Arakawa
    • G01N7/00G01N21/00G01N27/00G01N31/00G01N33/00G01N17/00G01N21/76
    • G01N21/766G01N33/0026G01N2201/129
    • A gas analyzing apparatus includes a gas analyzing unit, a luminescence inducing component generating unit, and a measurement signal calculating unit. The gas analyzing unit receives a sample gas containing a component gas and/or a standard gas and the luminescence inducing gas. The gas analyzing unit is configured to output a detection signal based on an intensity of a reaction light generated by the interaction between the component gas and the luminescence inducing component. The luminescence inducing component generating unit generates the luminescence inducing gas by electric discharge generated repeatedly at specified intervals. The measurement signal calculating unit calculates a first measurement signal based on a first detection signal, based on the reaction light generated when the sample gas and the luminescence inducing gas are introduced, and a second detection signal, based on the reaction light generated when the standard gas and the luminescence inducing gas are introduced.
    • 气体分析装置包括气体分析单元,发光感应组件生成单元和测量信号计算单元。 气体分析单元接收含有成分气体和/或标准气体和发光诱导气体的样品气体。 气体分析单元被配置为基于由组分气体和发光诱导组件之间的相互作用产生的反应光的强度来输出检测信号。 发光诱导分量产生单元通过以规定的间隔重复产生的放电产生发光诱导气体。 测量信号计算单元基于当引入样品气体和发光诱导气体时产生的反应光,基于第一检测信号计算第一测量信号,并且基于当标准 引入气体和发光诱导气体。
    • 92. 发明授权
    • Corrosion detection sensor device
    • 腐蚀检测传感器装置
    • US09442060B2
    • 2016-09-13
    • US13426956
    • 2012-03-22
    • Juri KatoTakao Miyazawa
    • Juri KatoTakao Miyazawa
    • G01N27/00G01N17/02
    • G01N17/02
    • A sensor device includes a first electrode, a second electrode and a functional element. The first electrode includes a first metallic material in which either a first passivation film is formed on a surface thereof or the first passivation film present on the surface thereof is lost, in association with changes in an environment of a measurement site. The second electrode includes a second metallic material different from the first metallic material, the second electrode being spaced apart from the first electrode. The functional element is configured to measure a difference in electric potential between the first electrode and the second electrode that changes depending on presence or absence of the first passivation film.
    • 传感器装置包括第一电极,第二电极和功能元件。 第一电极包括第一金属材料,其中在其表面上形成有第一钝化膜或其表面上存在的第一钝化膜与测量部位的环境的变化相关联。 第二电极包括与第一金属材料不同的第二金属材料,第二电极与第一电极间隔开。 功能元件被配置为测量根据第一钝化膜的存在或不存在而改变的第一电极和第二电极之间的电位差。
    • 93. 发明授权
    • Humidity determining device and environmental tester including the same
    • 湿度测定装置和环境试验机包括相同
    • US09429535B2
    • 2016-08-30
    • US14470177
    • 2014-08-27
    • NAGANO SCIENCE CO., LTD.
    • Hidetoshi Yoshida
    • G01N27/00G01N27/27G01N27/12G01N17/00G01N27/22
    • G01N27/121G01N17/002G01N27/126G01N27/225
    • A humidity determining device 20 includes first and second humidity determining sensors 17, 18 and a control unit 21. When the first and second humidity determining sensors 17, 18 react with a chemical substance, the humidity determining performance of the first humidity determining sensor 17 and the humidity determining performance of the second humidity determining sensor 18 change with time at different amounts of change. The control unit 21 computes a difference value between a first humidity value and a second humidity value determined by the first and second humidity determining sensors 17, 18. When the difference value is greater than a predetermined reference value, the control unit 21 outputs an anomaly signal indicating that the humidity determining performance of at least one of the first or second humidity determining sensors 17, 18 has been reduced.
    • 湿度测定装置20包括第一和第二湿度测定传感器17,18和控制单元21.当第一和第二湿度测定传感器17,18与化学物质反应时,第一湿度测定传感器17的湿度确定性能和 第二湿度测定传感器18的湿度决定性能随着时间的不同而发生变化。 控制单元21计算由第一和第二湿度测定传感器17,18确定的第一湿度值和第二湿度值之间的差值。当差值大于预定参考值时,控制单元21输出异常 指示第一或第二湿度确定传感器17,18中的至少一个的湿度确定性能已经降低的信号。
    • 94. 发明授权
    • Systems and methods for particle sensing and characterization
    • 用于粒子感测和表征的系统和方法
    • US09423336B2
    • 2016-08-23
    • US14160465
    • 2014-01-21
    • Beckman Coulter, Inc.
    • Marshall Donnie Graham
    • G01N27/00G01R27/08G01N15/12G01M1/00
    • G01N15/12G01M1/00G01N1/00
    • Systems and methods are provided for sensing and characterizing small particles, and in particular blood cells suspended in a liquid medium. Exemplary systems include a volumeter conduit having a central region of higher electrical resistivity disposed between a first and second distal region of lower electrical resistivity, and a current source and sensing circuit module in electrical connectivity with the first and second distal regions. The module provides an electrical excitation current to the first and second distal regions to establish a particle-sensitive zone within the conduit, and detects current changes occasioned by particles of the biological sample passing through the particle-sensitive zone.
    • 提供了用于感测和表征小颗粒,特别是悬浮在液体介质中的血液细胞的系统和方法。 示例性系统包括体积计导管,其具有设置在具有较低电阻率的第一和第二远端区域之间的较高电阻率的中心区域,以及与第一和第二远端区域电连接的电流源和感测电路模块。 该模块向第一和第二远侧区域提供电激励电流,以在导管内建立颗粒敏感区域,并且检测由通过颗粒敏感区域的生物样品颗粒引起的电流变化。
    • 95. 发明授权
    • Sensor and a method of assembling a sensor
    • 传感器和组装传感器的方法
    • US09375711B2
    • 2016-06-28
    • US13043352
    • 2011-03-08
    • Romano HoofmanGerard ReuversFranciscus Petrus WiddershovenEvelyne GrideletMarcus Henricus van Kleef
    • Romano HoofmanGerard ReuversFranciscus Petrus WiddershovenEvelyne GrideletMarcus Henricus van Kleef
    • G01N27/00B01L3/00G01N27/327
    • B01L3/502715B01L2200/12B01L2300/0645G01N27/3275Y10T29/49105
    • “Click-assembly” methods of assembling a sensor for sensing biologically-active molecules by measuring impedance changes, are disclosed, comprising supporting a bio-sensor on a carrier, the bio-sensor comprising an electronic component having at least one micro-electrode and at least one electrical contact, functionalizing the bio-sensor by physically or chemically coupling a bio-receptor molecule to each of the at least one micro-electrode, and subsequently assembling the bio-sensor with a micro-fluidic unit by means of a clamp which clamps the bio-sensor with the micro-fluidic unit, such that in use a fluid introduced into the micro-fluidic unit is able to contact the bio-receptor and is isolated from the electrical contact. The clamp may be a spring, and the method may avoid a requirement for sealing by chemical or thermal means and thereby avoid damaging the bio-receptor.Sensors which can be assembled according to such methods are also disclosed.
    • 公开了通过测量阻抗变化来组装用于感测生物活性分子的传感器的“点击组装”方法,其包括在载体上支撑生物传感器,所述生物传感器包括具有至少一个微电极的电子部件和 至少一个电接触,通过将所述生物受体分子物理或化学耦合至所述至少一个微电极中的每一个来官能化所述生物传感器,以及随后通过夹具将所述生物传感器与微流体单元组装 其利用微流体单元夹持生物传感器,使得在使用中,引入微流体单元的流体能够接触生物接受体并与电接触物隔离。 夹具可以是弹簧,并且该方法可以避免通过化学或热方式对密封的要求,从而避免损坏生物受体。 还公开了可以根据这些方法组装的传感器。