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    • 1. 发明申请
    • COMBUSTIBLE GAS SENSOR
    • 可燃气体传感器
    • US20100221148A1
    • 2010-09-02
    • US12593389
    • 2008-03-19
    • Tsutomu OieKazutaka OkamotoYoshiaki NakataYutaka YamagishiShuji Takamatsu
    • Tsutomu OieKazutaka OkamotoYoshiaki NakataYutaka YamagishiShuji Takamatsu
    • G01N31/12
    • G01N27/16
    • The present invention provides a combustible gas sensor that can realize a considerable improvement in the measurement sensitivity and the measurement precision by increasing the contact area between the measurement object gas and the oxidation catalyst particles, increasing the amount of heat generation of oxidation reaction in accordance therewith, and improving the transference of the oxidation reaction heat, while reducing the scale of the whole.In this invention, a temperature measurement element such as a thermopile obtained by joining different kinds of metals is formed on a top surface of a Si substrate; a porous catalyst layer made by allowing a porous material layer to carry oxidation catalyst particles such as Pt or a chain-form catalyst layer made by linking and bonding numerous oxidation catalyst particles in a chain form is provided on a heat-sensitive part of this temperature measurement element; and this porous catalyst layer or the chain-form catalyst layer is integrally bonded with the heat-sensitive part of this temperature measurement element.
    • 本发明提供一种可燃气体传感器,其可以通过增加测量对象气体和氧化催化剂颗粒之间的接触面积来提高测量灵敏度和测量精度的显着提高,从而增加氧化反应的发热量 ,并改善氧化反应热的转移,同时降低整体的规模。 在本发明中,在Si衬底的顶表面上形成诸如通过接合不同种类的金属获得的热电堆的温度测量元件; 通过使多孔材料层承载氧化催化剂颗粒如Pt或链形催化剂层制成的多孔催化剂层,其通过将多个氧化催化剂颗粒以链形式连接和结合而制备,在该温度的热敏部分 测量元件; 并且该多孔催化剂层或链状催化剂层与该温度测量元件的热敏部分一体地结合。
    • 5. 发明授权
    • Material evaluation method
    • 材料评估方法
    • US6053035A
    • 2000-04-25
    • US71332
    • 1998-05-01
    • Satoshi NomuraShuji TakamatsuMotoi Nakao
    • Satoshi NomuraShuji TakamatsuMotoi Nakao
    • G01N27/416G01N27/00G01N27/30G01Q20/00G01N17/00G01N27/26
    • G01N27/305
    • A method for evaluating material is carried out by making current measurements in an electrolyte positioned between a sensor and a material to be evaluated. The sensor has a substrate and a sensor surface. A light source is disposed in a spaced relationship with the substrate of the sensor. An electrolyte such as a gas or a solution is positioned to contact the sensor surface, and a material to be evaluated is positioned to contact the electrolyte, such that the electrolyte is positioned between the sensor and the material to be evaluated. A change in a property of the electrolyte, for example, pH, is caused by irradiating the sensor with the light beam. By generating a current in the substrate and then measuring the current, the pH of the electrolyte may be determined.
    • 用于评估材料的方法是通过在位于传感器和被评估材料之间的电解质中进行电流测量来进行的。 传感器具有基板和传感器表面。 光源以与传感器的基板间隔的关系设置。 诸如气体或溶液的电解质被定位成与传感器表面接触,并且待评估的材料被定位成接触电解质,使得电解质位于传感器和待评估材料之间。 通过用光束照射传感器引起电解质的性质变化,例如pH值的变化。 通过在衬底中产生电流然后测量电流,可以确定电解质的pH。