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    • 1. 发明授权
    • Gas sensor and method for detecting particles in a gas flow
    • 气体传感器和气体流中颗粒检测方法
    • US08163161B2
    • 2012-04-24
    • US12277952
    • 2008-11-25
    • Jens SchneiderDetlef HeimannGoetz ReinhardtHenrico RungeLothar DiehlJuergen RuthThomas Seiler
    • Jens SchneiderDetlef HeimannGoetz ReinhardtHenrico RungeLothar DiehlJuergen RuthThomas Seiler
    • G01N27/407
    • G01N27/419
    • A gas sensor for detecting particles in a gas stream has a first electrochemical pump cell, which has a measuring chamber in which a first electrode is disposed to pump particles between the first measuring chamber and the gas stream. Furthermore, a second electrochemical pump cell is provided, which has a second measuring chamber in which a second electrode is disposed so as to pump particles. The second measuring chamber is connected to the gas stream via an absorber medium for absorption of the particles to be detected. This makes it possible to absorb the particles to be detected in a first operating mode using the absorber medium, and to desorb the absorbed particles in a second operating mode, and to detect the quantity of the desorbed particles. Thus, the gas sensor is able to take even low concentrations into account, and short-term measuring errors do not have such a serious effect.
    • 用于检测气流中的颗粒的气体传感器具有第一电化学泵电池,其具有测量室,其中设置有第一电极以在第一测量室和气流之间泵送颗粒。 此外,提供了第二电化学泵电池,其具有第二测量室,其中设置第二电极以泵送颗粒。 第二测量室经由吸收介质连接到气流,用于吸收要检测的颗粒。 这使得可以使用吸收介质以第一操作模式吸收待检测的颗粒,并且以第二操作模式解吸吸收的颗粒,并且检测解吸的颗粒的量。 因此,气体传感器能够考虑到甚至低的浓度,并且短期测量误差不具有如此严重的影响。
    • 2. 发明申请
    • Gas sensor and method for detecting particles in a gas flow
    • 气体传感器和气体流中颗粒检测方法
    • US20090152130A1
    • 2009-06-18
    • US12277952
    • 2008-11-25
    • Jens SchneiderDetlef HelmannGoetz ReinhardtHenrico RungeLothar DiehlJuergen RuthThomas Seiler
    • Jens SchneiderDetlef HelmannGoetz ReinhardtHenrico RungeLothar DiehlJuergen RuthThomas Seiler
    • G01N27/26
    • G01N27/419
    • A gas sensor 10 for detecting particles in a gas stream has a first electrochemical pump cell 14, which has a measuring chamber 16 in which a first electrode 18 is disposed to pump particles between the first measuring chamber 16 and the gas stream. Furthermore, a second electrochemical pump cell 20 is provided, which has a second measuring chamber 22 in which a second electrode 24 is disposed so as to pump particles. According to the invention, the second measuring chamber 22 is connected to the gas stream via an absorber medium 34 for absorption of the particles to be detected. This makes it possible to absorb the particles to be detected in a first operating mode using the absorber medium 34, and to desorb the absorbed particles in a second operating mode, and to detect the quantity of the desorbed particles. Thus, the gas sensor 10 is able to take even low concentrations into account, and short-term measuring errors do not have such a serious effect.
    • 用于检测气流中的颗粒的气体传感器10具有第一电化学泵电池14,其具有测量室16,第一电极18设置在该测量室16中以在第一测量室16和气流之间泵送颗粒。 此外,提供了第二电化学泵电池20,其具有第二测量室22,第二电极24布置成泵送颗粒。 根据本发明,第二测量室22经由吸收介质34连接到气流,用于吸收待检测的颗粒。 这使得可以使用吸收介质34以第一操作模式吸收待检测的颗粒,并且以第二操作模式解吸吸收的颗粒,并且检测解吸的颗粒的量。 因此,气体传感器10能够考虑到甚至低的浓度,并且短期测量误差不具有如此严重的影响。
    • 8. 发明申请
    • SENSOR ELEMENT HAVING SUPPRESSED RICH GAS REACTION
    • 具有抑制气体反应的传感器元件
    • US20100126883A1
    • 2010-05-27
    • US12521686
    • 2007-11-16
    • Henrico RungeHolger ReinshagenLothar DiehlThomas Seiler
    • Henrico RungeHolger ReinshagenLothar DiehlThomas Seiler
    • G01N27/407G01N27/26F01N11/00F02B77/08
    • G01N27/419
    • A sensor element for determining at least one physical property of a gas mixture is provided. The sensor element has at least one first electrode and at least one second electrode, and at least one solid electrolyte that connects the at least two electrodes. The at least one first electrode is connected via at least one diffusion-resistance element to the at least one gas chamber and/or to at least one reference chamber. The at least one second electrode is connected via at least one flow-resistance element to the at least one gas chamber. The at least one flow-resistance element and the at least one diffusion-resistance element are designed in such a way that the limit current of the at least one first electrode is smaller than the limit current of the at least one second electrode.
    • 提供了一种用于确定气体混合物的至少一种物理性质的传感器元件。 传感器元件具有至少一个第一电极和至少一个第二电极,以及连接至少两个电极的至少一个固体电解质。 所述至少一个第一电极经由至少一个扩散电阻元件连接到所述至少一个气体室和/或至少一个参考室。 至少一个第二电极通过至少一个流阻元件连接到至少一个气室。 至少一个流阻元件和至少一个扩散电阻元件被设计成使得至少一个第一电极的极限电流小于至少一个第二电极的极限电流。
    • 9. 发明授权
    • Sensor element having limiting current calibration free of cracks
    • 传感器元件具有无裂纹的极限电流校准
    • US08852415B2
    • 2014-10-07
    • US12508865
    • 2009-07-24
    • Henrico Runge
    • Henrico Runge
    • G01N27/406G01N27/407
    • G01N27/4072G01N27/406Y10T156/10
    • A sensor element for determining at least one physical property of a gas in a measuring gas chamber, particularly for determining an oxygen concentration in an exhaust gas. The sensor element includes at least one first electrode and at least one second electrode, and at least one solid electrolyte connecting the first electrode and the second electrode. The second electrode is situated on the inside of the sensor element and is able to have gas from the measuring gas chamber applied to it via at least one gas access hole and at least one diffusion barrier. At least partially gas-impermeable cover layer is provided on the diffusion barrier, at least from area to area. The gas access hole has at least one chamfer in the vicinity of the cover layer.
    • 一种用于确定测量气体室中的气体的至少一种物理性质的传感器元件,特别是用于确定废气中的氧气浓度。 传感器元件包括至少一个第一电极和至少一个第二电极,以及连接第一电极和第二电极的至少一个固体电解质。 第二电极位于传感器元件的内部,并且能够通过至少一个气体入口孔和至少一个扩散屏障将来自测量气体室的气体施加到其上。 至少部分不透气的覆盖层至少在区域之间设置在扩散阻挡层上。 气体入口孔在覆盖层附近具有至少一个倒角。