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    • 1. 发明授权
    • Apparatus for detecting concentration of nitrogen oxide
    • 用于检测氮氧化物浓度的装置
    • US06228252B1
    • 2001-05-08
    • US09022208
    • 1998-02-11
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • G01N2741
    • G01N27/417G01N27/4074G01N27/419
    • Apparatus for detecting the NOx concentration includes a first measurement chamber 20 communicating with the gas under measurement via a diffusion rate defining layer 4d and a second measurement chamber 26 communicating with the first measurement chamber 20 via diffusion limiting layers 6d, 22d. A first pump current IP1 is controlled so that an output of a Vs cell 6 will be equal to the reference voltage VCO for controlling the oxygen concentration in the first measurement chamber 20 to a pre-set low value. A constant voltage is applied across the second pump cell 8 for decomposing the NOx component in the second measurement chamber 26 for pumping out oxygen for detecting the NOx concentration from a second pump current IP2. The sensor temperature is detected from the internal resistance of the Vs cell for controlling the current supplied to the heaters 12, 14. If the temperature of the gas under measurement is changed rapidly, the sensor temperature is changed. The detected second pump current IP2 is corrected depending on an offset of the detected sensor temperature from the target temperature assuring detection of the NOx concentration to high accuracy.
    • 用于检测NOx浓度的装置包括:第一测量室20,其经由扩散速率限定层4d与测量的气体连通,第二测量室26经由扩散限制层6d,22d与第一测量室20连通。第一泵电流 控制IP1使得Vs单元6的输出将等于用于将第一测量室20中的氧浓度控制为预定的低值的参考电压VCO。 在第二泵电池8上施加恒定电压,以分解第二测量室26中的NOx组分,以从第二泵电流IP2泵出用于检测NOx浓度的氧气。 从Vs单元的内部电阻检测传感器温度,用于控制供给到加热器12,14的电流。如果测量气体的温度快速变化,则传感器温度变化。 检测到的第二泵电流IP2根据检测到的传感器温度与目标温度的偏移量进行校正,确保将NOx浓度检测到高精度。
    • 2. 发明授权
    • Method and a device for controlling an air/fuel ratio sensor
    • 用于控制空/燃比传感器的方法和装置
    • US5895564A
    • 1999-04-20
    • US927527
    • 1997-09-11
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • G01N27/41G01N27/406G01N27/419G01N27/407
    • G01N27/4065G01N27/419
    • An air/fuel ratio sensor is controlled such that the oxygen concentration of the measurement gas can be detected from a pump current substantially instantaneously after a heater turns on. In the air/fuel ratio sensor an oxygen pumping cell and an oxygen concentration measuring cell are each formed of a solid electrolytic layer interposed between a pair of porous electrodes. One of the electrodes of each cell defines a measurement gas chamber in which the diffusion of the measurement gas is controlled. After a micro current is supplied to the other electrode of the oxygen concentration measuring cell for a predetermined period of time, thereby forming an internal reference oxygen source, the supply of the micro current is stopped and at the same time a pump current in the oxygen pumping cell starts to be controlled until the interelectrode voltage of the oxygen concentration measuring cell reaches a target voltage. After the air/fuel ratio sensor is activated, the supply of the micro current is restarted.
    • 控制空气/燃料比传感器,使得可以在加热器接通之后基本上瞬时地从泵电流检测测量气体的氧浓度。 在空气/燃料比传感器中,氧气泵浦单元和氧浓度测量单元各自由置于一对多孔电极之间的固体电解质层形成。 每个电池的一个电极限定测量气体室,其中测量气体的扩散被控制。 在氧浓度测量单元的另一个电极经过预定的时间段供给微电流之后,形成内部基准氧源,停止供给微量电流,同时在氧气中泵送电流 泵电池开始被控制,直到氧浓度测量池的电极间电压达到目标电压。 空燃比传感器启动后,再次启动微电流的供给。
    • 5. 发明授权
    • Apparatus for detecting concentration of nitrogen oxide
    • 用于检测氮氧化物浓度的装置
    • US06533921B2
    • 2003-03-18
    • US09737771
    • 2000-12-18
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • G01N27407
    • G01N27/417G01N27/4074G01N27/419
    • Apparatus for detecting the NOx concentration includes a first measurement chamber 20 communicating with the gas under measurement via a diffusion rate defining layer 4d and a second measurement chamber 26 communicating with the first measurement chamber 20 via diffusion limiting layers 6d, 22d. A first pump current IP1 is controlled so that an output of a Vs cell 6 will be equal to the reference voltage VCO for controlling the oxygen concentration in the first measurement chamber 20 to a pre-set low value. A constant voltage is applied across the second pump cell 8 for decomposing the NOx component in the second measurement chamber 26 for pumping out oxygen for detecting the NOx concentration from a second pump current IP2. The sensor temperature is detected from the internal resistance of the Vs cell for controlling the current supplied to the heaters 12, 14. If the temperature of the gas under measurement is changed rapidly, the sensor temperature is changed. The detected second pump current IP2 is corrected depending on an offset of the detected sensor temperature from the target temperature assuring detection of the NOx concentration to high accuracy.
    • 用于检测NOx浓度的装置包括通过扩散速率限定层4d与测量的气体连通的第一测量室20和经由扩散限制层6d,22d与第一测量室20连通的第二测量室26。 控制第一泵电流IP1,使得Vs单元6的输出将等于用于将第一测量室20中的氧浓度控制为预定的低值的参考电压VCO。 在第二泵电池8上施加恒定电压,以分解第二测量室26中的NOx组分,以从第二泵电流IP2泵出用于检测NOx浓度的氧气。 从Vs单元的内部电阻检测传感器温度,用于控制供给到加热器12,14的电流。如果测量气体的温度快速变化,则传感器温度变化。 检测到的第二泵电流IP2根据检测到的传感器温度与目标温度的偏移量进行校正,确保将NOx浓度检测到高精度。
    • 6. 发明授权
    • Ion current detection apparatus
    • 离子电流检测仪
    • US06222368B1
    • 2001-04-24
    • US09238574
    • 1999-01-28
    • Hiroshi InagakiNoriaki KondoShigeru Miyata
    • Hiroshi InagakiNoriaki KondoShigeru Miyata
    • F02P1700
    • F02P17/12F02P2017/125
    • An ion current detection apparatus which can detect ion current with a high degree of accuracy regardless of the presence of voltage damped oscillation and which does not cause contamination of a spark plug. A spark discharge current Isp generated upon spark discharge of a spark plug 10 flows through a charge diode 28, a capacitor 24, and a diode 22, which form a closed loop together with the spark plug 10 and a secondary winding L2 of an ignition coil 12 that constitutes an ignition apparatus. As a result, a Zener diode 26 connected in parallel to these components generates a Zener voltage Vz and thereby charges the capacitor 24. When a preset wait time has elapsed after the ignition timing for starting spark discharge, the discharge switch 30 short-circuits the opposite ends of the charge diode 28 to discharge the capacitor 24, so that a high voltage having a polarity opposite that in the case of spark discharge is applied to the spark plug. An ion current Iio flowing at this time is detected by use of a resistor 22 connected in parallel to the diode 22.
    • 一种离子电流检测装置,无论电压阻尼振荡的存在如何,都可以高精度地检测离子电流,并且不会引起火花塞的污染。 在火花塞10的火花放电时产生的火花放电电流Isp流过与火花塞10和点火线圈的次级绕组L2形成闭环的充电二极管28,电容器24和二极管22 12构成点火装置。 结果,与这些部件并联连接的齐纳二极管26产生齐纳电压Vz,从而对电容器24充电。当在启动火花放电的点火正时之后经过预设的等待时间时,放电开关30使 充电二极管28的相对端,以对电容器24进行放电,使得与火花放电的极性相反的高电压被施加到火花塞。 此时流过的离子电流Iio通过使用与二极管22并联连接的电阻器22来检测。
    • 7. 发明授权
    • Apparatus for detecting concentration of nitrogen oxide
    • 用于检测氮氧化物浓度的装置
    • US07462266B2
    • 2008-12-09
    • US10329489
    • 2002-12-27
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • G01N27/407
    • G01N27/417G01N27/4074G01N27/419
    • Apparatus for detecting the NOx concentration includes a first measurement chamber 20 communicating with the gas under measurement via a diffusion rate defining layer 4d and a second measurement chamber 26 communicating with the first measurement chamber 20 via diffusion limiting layers 6d, 22d. A first pump current IP1 is controlled so that an output of a Vs cell 6 will be equal to the reference voltage VCO for controlling the oxygen concentration in the first measurement chamber 20 to a pre-set low value. A constant voltage is applied across the second pump cell 8 for decomposing the NOx component in the second measurement chamber 26 for pumping out oxygen for detecting the NOx concentration from a second pump current IP2. The sensor temperature is detected from the internal resistance of the Vs cell for controlling the current supplied to the heaters 12, 14. If the temperature of the gas under measurement is changed rapidly, the sensor temperature is changed. The detected second pump current IP2 is corrected depending on an offset of the detected sensor temperature from the target temperature assuring detection of the NOx concentration to high accuracy.
    • 用于检测NOx浓度的装置包括通过扩散速率限定层4d与测量的气体连通的第一测量室20和经由扩散限制层6d,22d与第一测量室20连通的第二测量室26。 控制第一泵电流IP1,使得Vs单元6的输出将等于用于将第一测量室20中的氧浓度控制为预定的低值的参考电压VCO。 在第二泵电池8上施加恒定电压,以分解第二测量室26中的NOx组分,以从第二泵电流IP2泵出用于检测NOx浓度的氧气。 从Vs单元的内部电阻检测传感器温度,用于控制供给到加热器12,14的电流。如果测量气体的温度快速变化,则传感器温度变化。 检测到的第二泵电流IP2根据检测到的传感器温度与目标温度的偏移量进行校正,确保将NOx浓度检测到高精度。
    • 8. 发明授权
    • Method and apparatus for measuring oxygen concentration and nitrogen oxide concentration
    • 用于测量氧浓度和氮氧化物浓度的方法和装置
    • US06214207B1
    • 2001-04-10
    • US08965512
    • 1997-11-06
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • Shigeru MiyataNoriaki KondoHiroshi Inagaki
    • G01N2741
    • G01N27/417G01N27/4074
    • Using a sole Nox sensor Nox concentration and oxygen concentration are measured accurately. A measurement device for measuring NOx concentration and oxygen concentration comprises an NOx sensor 2 having a first measurement chamber 20 communicating via a diffusion rate regulating layer 4d with the gas under measurement and a second measurement chamber 26 communicating with the first measurement chamber 20 via diffusion rate regulating layers 6d, 22d. A first pump cell 4 and an oxygen concentration measurement Vs cell 6 are formed on the first measurement chamber 20, while a second pump cell 8 is formed on the second measurement chamber 26. Inside of the first measurement chamber 20 is controlled to a constant low oxygen concentration by controlling the first pump current IP1 so that output of Vs cell 6 will equal a reference voltage VC0. By applying a constant voltage across the second pump cell 8 NOx in the second measurement chamber 26 is decomposed to pump out oxygen. Thus NOx concentration and oxygen concentration are measured from the second pump current IP2 and from the first pump current IP1, respectively. During measurement, sensor temperature is detected from the internal resistance of the Vs cell for controlling heater current supplied to heaters 12, 14 to maintain a constant sensor temperature.
    • 使用唯一的Nox传感器可以精确测量Nox浓度和氧气浓度。 用于测量NOx浓度和氧浓度的测量装置包括:NOx传感器2,其具有经由扩散速率调节层4d与测量气体连通的第一测量室20和经由扩散速率与第一测量室20连通的第二测量室26 调节层6d,22d。 在第一测量室20上形成第一泵浦单元4和氧浓度测量Vs单元6,而在第二测量室26上形成第二泵单元8.在第一测量室20的内部被控制为恒定的低 通过控制第一泵电流IP1使得Vs电池6的输出等于参考电压VC0的氧浓度。 通过在第二泵电池8上施加恒定电压,第二测量室26中的NOx被分解以抽出氧气。 因此,从第二泵电流IP2和第一泵电流IP1分别测量NOx浓度和氧浓度。 在测量期间,从Vs单元的内部电阻检测传感器温度,以控制提供给加热器12,14的加热器电流,以保持恒定的传感器温度。
    • 10. 发明授权
    • Connector for NOx sensor
    • NOx传感器连接器
    • US06352632B1
    • 2002-03-05
    • US09238932
    • 1999-01-28
    • Hiroshi InagakiNoriaki Kondo
    • Hiroshi InagakiNoriaki Kondo
    • G01N27407
    • G01N27/417
    • A connector 2b for an NOx sensor is connected via a cable C to an end of a sensor body 2a through which a first pump current and a second pump current flow according to the concentration of oxygen and that of NOx, respectively, contained in a gas to be measured. The connector 2b is provided with not only terminals for inputting a signal to and outputting a signal from the sensor body 2a but also a label resistor RL having resistance corresponding to characteristics (relationship between oxygen concentration and first pump current and that between NOx concentration and second pump current) of the sensor body 2a and label signal output terminals T01 and T02 connected to opposite ends of the label resistor RL. On the basis of characteristics of the sensor body 2a, which are identified from the resistance of the label resistor RL which, in turn, is identified via the terminals T01 and T02, the oxygen concentration and the NOx concentration are accurately obtained from detected values of the first and second pump currents. This enables an NOx sensor to always perform accurate measurement irrespective of variations in characteristics among NOx sensors.
    • 用于NOx传感器的连接器2b通过电缆C连接到传感器主体2a的一端,第一泵电流和第二泵电流分别根据氧气的浓度和包含在气体中的NOx的浓度流过 待测。 连接器2b不仅具有用于向传感器主体2a输入信号并输出​​信号的端子,而且还具有对应于特性(氧浓度与第一泵电流之间的关系以及NOx浓度与第二泵电流之间的关系)的标签电阻器RL 泵电流)和连接到标签电阻器RL的相对端的标签信号输出端子T01和T02。 基于从标签电阻器RL的电阻识别的传感器体2a的特性,再次通过端子T01和T02识别氧传感器本体2a的氧浓度和NOx浓度, 第一和第二泵电流。 这使得NOx传感器总是能够执行精确的测量,而与NOx传感器之间的特性变化无关。