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    • 1. 发明申请
    • SENSOR CONTROL DEVICE AND AIR FUEL RATIO DETECTING APPARATUS
    • 传感器控制装置和空气燃料比检测装置
    • US20090095052A1
    • 2009-04-16
    • US11870867
    • 2007-10-11
    • Yoshinori INOUEHiroshi InagakiNorikazu IedaKeigo Banno
    • Yoshinori INOUEHiroshi InagakiNorikazu IedaKeigo Banno
    • G01M15/10
    • F02D41/1454F02D41/1456F02D41/28
    • A gas sensor apparatus 3 in an air-fuel ratio detection system 1 includes a gas sensor element 4 which outputs a detection signal corresponding to air-fuel ratio, and a gas sensor control circuit 2 which includes a detection section 20 for outputting a first output signal VIP1, a second output signal VIP2, and a third output signal VIP3 in accordance with the detection signal. This detection section 20 outputs the first output signal VIP1 which changes in accordance with the air-fuel ratio at least within a wide first air-fuel ratio zone, the second output signal VIP2 which changes in accordance with the air-fuel ratio within a narrow zone in the vicinity of the stoichiometric ratio, and the third output signal VIP3 which changes in accordance with the air-fuel ratio within a narrow zone in the lean region.
    • 空燃比检测系统1中的气体传感器装置3包括输出对应于空燃比的检测信号的气体传感器元件4和气体传感器控制电路2,该气体传感器控制电路2包括:检测部20,其输出第一输出 信号VIP1,第二输出信号VIP2,以及根据检测信号的第三输出信号VIP3。 该检测部20至少在宽的第一空燃比区域内输出根据空燃比而变化的第一输出信号VIP1,第二输出信号VIP2根据空燃比而变化, 在第三输出信号VIP3中,第三输出信号VIP3根据稀薄区域内的窄带内的空燃比而变化。
    • 2. 发明授权
    • Sensor control device and air fuel ratio detecting apparatus
    • 传感器控制装置和空燃比检测装置
    • US07802463B2
    • 2010-09-28
    • US11870867
    • 2007-10-11
    • Yoshinori InoueHiroshi InagakiNorikazu IedaKeigo Banno
    • Yoshinori InoueHiroshi InagakiNorikazu IedaKeigo Banno
    • G01N27/407F02D41/02
    • F02D41/1454F02D41/1456F02D41/28
    • A gas sensor apparatus 3 in an air-fuel ratio detection system 1 includes a gas sensor element 4 which outputs a detection signal corresponding to air-fuel ratio, and a gas sensor control circuit 2 which includes a detection section 20 for outputting a first output signal VIP1, a second output signal VIP2, and a third output signal VIP3 in accordance with the detection signal. This detection section 20 outputs the first output signal VIP1 which changes in accordance with the air-fuel ratio at least within a wide first air-fuel ratio zone, the second output signal VIP2 which changes in accordance with the air-fuel ratio within a narrow zone in the vicinity of the stoichiometric ratio, and the third output signal VIP3 which changes in accordance with the air-fuel ratio within a narrow zone in the lean region.
    • 空燃比检测系统1中的气体传感器装置3包括输出对应于空燃比的检测信号的气体传感器元件4和气体传感器控制电路2,该气体传感器控制电路2包括:检测部20,其输出第一输出 信号VIP1,第二输出信号VIP2,以及根据检测信号的第三输出信号VIP3。 该检测部20至少在宽的第一空燃比区域内输出根据空燃比而变化的第一输出信号VIP1,第二输出信号VIP2根据空燃比而变化, 在第三输出信号VIP3中,第三输出信号VIP3根据稀薄区域内的窄带内的空燃比而变化。
    • 7. 发明申请
    • Gas detecting system
    • 气体检测系统
    • US20050161325A1
    • 2005-07-28
    • US11042089
    • 2005-01-26
    • Yoshinori InoueNorikazu IedaMasahiro TanakaHiroshi Inagaki
    • Yoshinori InoueNorikazu IedaMasahiro TanakaHiroshi Inagaki
    • G01N27/407G01N27/26
    • G01N27/4062G01N27/407
    • A gas detecting system comprises: a sensor element including: an oxygen pump cell comprising a first oxygen ion conducting solid electrolyte layer between a first pair of electrodes; an oxygen concentration measuring cell comprising a second oxygen ion conducting solid electrolyte layer between a second pair of electrodes; and a measurement chamber between the oxygen pump cell and the oxygen concentration measurement cell; a plurality of lead wires connected with the first and second pairs of electrodes; and a control unit electrically connected with the electrodes through the lead wires, wherein the lead wires includes a common lead wire connected with electrodes confronting the measurement chamber of the first and second pairs of electrodes, and wherein the common lead wire has a portion to contact in an electrically insulated state with at least one of the lead wires other than the common lead wire.
    • 一种气体检测系统,包括:传感器元件,包括:氧泵单元,包括在第一对电极之间的第一氧离子导电固体电解质层; 氧浓度测量池,包括在第二对电极之间的第二氧离子导电固体电解质层; 以及氧泵电池和氧浓度测量电池之间的测量室; 与所述第一和第二对电极连接的多个引线; 以及控制单元,其通过所述引线与所述电极电连接,其中所述引线包括与所述第一对和第二对电极的所述测量室相对的电极连接的公共引线,并且其中所述公共引线具有接触部分 处于电绝缘状态,其中除了公共引线之外的至少一个引线。
    • 9. 发明授权
    • Gas sensor control device and method
    • 气体传感器控制装置及方法
    • US08268147B2
    • 2012-09-18
    • US11898552
    • 2007-09-13
    • Norikazu IedaTomonori UemuraHiroshi Inagaki
    • Norikazu IedaTomonori UemuraHiroshi Inagaki
    • G01N27/419G01N27/26G06F19/00
    • G01N27/4065
    • A control device for a gas sensor is configured to: receive a mode command to specify one of a plurality of sensor energization modes including at least a gas concentration detection mode, a protection mode and a pre-energization mode; switch a sensor element of the gas sensor into the one of the plurality of sensor energization modes according to the mode command; judge satisfaction of a certain condition where the mode command is to specify the gas concentration detection mode and the sensor element is in any of the plurality of sensor energization modes other than the pre-energization mode at the time of receipt of the mode command; and prohibit the sensor element from switching over to the gas concentration detection mode when the certain condition is satisfied.
    • 用于气体传感器的控制装置被配置为:接收模式命令以指定至少包括气体浓度检测模式,保护模式和预通电模式的多个传感器通电模式之一; 根据模式命令将气体传感器的传感器元件切换成多个传感器通电模式中的一个; 判断模式命令是否指定气体浓度检测模式的一定条件的满足,并且传感器元件处于接收到模式命令时除了预通电模式之外的多个传感器通电模式中的任何一种; 并且当满足一定条件时,禁止传感器元件切换到气体浓度检测模式。