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    • 1. 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。
    • 7. 发明授权
    • Diagnostic method and apparatus for gas sensor
    • 气体传感器的诊断方法和装置
    • US07596993B2
    • 2009-10-06
    • US12283440
    • 2008-09-12
    • Reina FukagaiNorikazu IedaMasahiro TanakaHiroshi InagakiMasaki HirataTakahiro Suzuki
    • Reina FukagaiNorikazu IedaMasahiro TanakaHiroshi InagakiMasaki HirataTakahiro Suzuki
    • G01M15/04
    • F02D41/1474F02D41/1456F02D41/1494F02D41/1495F02D2041/1432G01N27/4175
    • A gas sensor diagnostic method includes the steps of counting the reversal number of times that a target air-fuel ratio for an air-fuel mixture to be supplied to an internal combustion engine reverses from a rich side to a lean side or from the lean side to the rich side through a specific air-fuel ratio defined as a boundary of the rich and lean sides; obtaining a detection signal of gas sensor at constant time intervals during a diagnosis period between a timing when the count for the reversal number is started and a timing when the reversal number reaches a predetermined number; calculating a first moderated signal by applying a first moderation calculation to the detection signal, and a second moderated signal by applying a second moderation calculation to the detection signal; calculating a deviation between the first and second moderated signals; and determining whether the gas sensor is in the abnormal state on the basis of the deviation obtained during the diagnosis period.
    • 气体传感器诊断方法包括以下步骤:计算供给内燃机的空气燃料混合物的目标空燃比从富侧向稀侧反转的倾倒次数 通过定义为富边和贫边的边界的特定空燃比向富地提供; 在开始反转次数的定时与反转次数达到预定次数的定时之间的诊断期间,以恒定的时间间隔获取气体传感器的检测信号; 通过对所述检测信号应用第一审核计算来计算第一调节信号,以及通过对所述检测信号应用第二审核计算来计算第二调节信号; 计算第一和第二调节信号之间的偏差; 并基于在诊断期间获得的偏差来确定气体传感器是否处于异常状态。
    • 9. 发明授权
    • Gas concentration detection apparatus and gas concentration detection system
    • 气体浓度检测仪和气体浓度检测系统
    • US08166800B2
    • 2012-05-01
    • US12549108
    • 2009-08-27
    • Norikazu IedaYoshinori InoueHiroyuki TsukadaMasahiro Tanaka
    • Norikazu IedaYoshinori InoueHiroyuki TsukadaMasahiro Tanaka
    • G01N7/00
    • G01N27/407
    • A gas concentration detection apparatus and system including a gas sensor. Voltage Vd generated across detection resistor Rd through which pump current Ip flows is differentially amplified by OP1, and offset voltage Vofs is superposed thereon to obtain a detection voltage Vout. The amplification factor applied to the differential amplification of the voltage Vd is changed by turning switch SW3 on and off. When switch SW2 is turned on, the input terminal potentials of the operational amplifier OP1 are equalized, so that voltage Vofs is output as the detection voltage Vout. The detection voltage Vout contains an error attributable to the electronic components which form the circuit. The detection voltage Vout containing the error when SW2 is turned on is acquired as a correction voltage for each amplification factor, and is used for correction at the time of detection of the concentration so as to cancel the error.
    • 一种气体浓度检测装置和系统,包括气体传感器。 泵浦电流Ip流过的检测电阻Rd两端产生的电压Vd被OP1差分放大,并且偏置电压Vofs叠加在其上,以获得检测电压Vout。 施加到电压Vd的差分放大的放大系数通过打开和关闭开关SW3来改变。 当开关SW2导通时,运算放大器OP1的输入端电位相等,从而输出电压Vofs作为检测电压Vout。 检测电压Vout包含归属于形成电路的电子部件的误差。 获取包含SW2导通时的误差的检测电压Vout作为每个放大系数的校正电压,并且在检测浓度时用于校正以消除误差。
    • 10. 发明申请
    • Method of Diagnosing Malfunction in Gas Concentration Detecting Unit and Malfunction Diagnostic Apparatus Thereof
    • 气体浓度检测装置故障诊断方法及故障诊断装置
    • US20080060939A1
    • 2008-03-13
    • US11884262
    • 2006-02-16
    • Yoshinori InoueNorikazu IedaMasahiro TanakaReina Fukagai
    • Yoshinori InoueNorikazu IedaMasahiro TanakaReina Fukagai
    • G01N27/28
    • G01N27/4175
    • To provide a malfunction diagnosing method and apparatus capable of reliably determining a malfunction even where the malfunction occurs in a common wire connecting a gas sensor and a control circuit for driving it. In a gas concentration measurement unit 1 having a sensor control circuit 50 which is connected to a sensor element 10 including an oxygen pump cell 14 and an oxygen concentration detection cell 24 and controls and drives this sensor element 10, a variation state of a terminal voltage at one connecting point (specifically, a Vs+ terminal) other than connecting points between electrodes facing a measurement chamber of each cell 14 and 24 and a common wire 24 is detected by a malfunction detection circuit 53 and an arithmetic processor 54. Based on this variation state of the terminal voltage, diagnosis of malfunction in the common wire 42 is executed. When the common wire 42 is broken, the terminal voltage at the Vs+ terminal varies with oscillations. Therefore, the malfunction detection circuit 53 and the arithmetic processor 54 detect this voltage variation with oscillations to output a malfunction determination signal to a CPU.
    • 提供即使在连接气体传感器和用于驱动气体传感器的控制电路的公共线中发生故障的情况下也能够可靠地确定故障的故障诊断方法和装置。 在具有传感器控制电路50的气体浓度测量单元1中,传感器控制电路50连接到包括氧气泵室14和氧浓度检测单元24的传感器元件10,并且控制和驱动该传感器元件10,端子电压的变化状态 在面对每个单元14和24的测量室的电极和公共线24之间的连接点之外的一个连接点(具体地,Vs +端子)由故障检测电路53和运算处理器54检测。基于该变化 执行端子电压的状态,执行公共线42中的故障诊断。 当公共线42断开时,Vs +端子的端子电压随振荡而变化。 因此,故障检测电路53和算术处理器54通过振荡检测该电压变化,向CPU输出故障判定信号。