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    • 5. 发明授权
    • Gas concentration sensing apparatus capable of suppressing sensor voltage oscillation
    • 能够抑制传感器电压振荡的气体浓度检测装置
    • US06478940B1
    • 2002-11-12
    • US09383383
    • 1999-08-26
    • Toshiyuki SuzukiEiichi KurokawaSatoshi HadaTomoo Kawase
    • Toshiyuki SuzukiEiichi KurokawaSatoshi HadaTomoo Kawase
    • G01N2741
    • G01N27/4065
    • A limit-current type A/F sensor produces element current responsive to oxygen concentration in the exhaust gas when a voltage is applied to its sensor element portion. An application voltage control circuit comprises an operational amplifier and resistors. An output of the control circuit is applied to one terminal of the A/F sensor via a driver circuit. The other terminal of the A/F sensor is connected to an output terminal of an operational amplifier via a current-detecting resistor. The element current value, detected by the current-detecting resistor, is returned to the application voltage control circuit via a buffer. In the application voltage control circuit, adjustment of the gain is performed in such a manner that the inclination of the application voltage line on the V-I coordinate becomes larger than the inclination equivalent to the A.C. impedance of the sensor element in the sensor activated condition.
    • 当电压施加到其传感器元件部分时,极限电流型A / F传感器产生响应于排气中的氧浓度的元件电流。 施加电压控制电路包括运算放大器和电阻器。 控制电路的输出通过驱动电路施加到A / F传感器的一个端子。 A / F传感器的另一个端子通过电流检测电阻连接到运算放大器的输出端。 由电流检测电阻检测的元件电流值通过缓冲器返回到施加电压控制电路。 在施加电压控制电路中,以使得V-I坐标上的施加电压线的倾斜度大于传感器激活状态下传感器元件的交流阻抗等于倾斜度的方式进行增益调整。
    • 6. 发明授权
    • Gas concentration sensing apparatus
    • 气体浓度检测装置
    • US06383354B1
    • 2002-05-07
    • US09394030
    • 1999-09-13
    • Eiichi KurokawaTomoo KawaseSatoshi HadaToshiyuki Suzuki
    • Eiichi KurokawaTomoo KawaseSatoshi HadaToshiyuki Suzuki
    • G01N27407
    • G01N27/4074
    • A gas concentration sensing apparatus includes a gas introducing portion for introducing a measurement gas. A first cell opposed to the gas introduction portion operates for pumping oxygen from the measurement gas in the gas introducing portion. A second cell opposed to the gas introducing portion operates for sensing a concentration in a specific component of the measurement gas from which oxygen has been pumped by the first cell. There is a reference gas chamber to which at least one of the first cell and the second cell is exposed. The one of the first cell and the second cell which is exposed to the reference gas chamber includes an electrode facing the gas introducing portion. A current flowing through the first cell is sensed. A voltage is applied to the first cell in response to the sensed current through the first cell. A current flowing through the second cell is sensed. A voltage is applied to the second cell in response to the sensed current through the second cell. A voltage at the electrode is floated from a voltage of 0 V.
    • 气体浓度检测装置包括用于导入测量气体的气体导入部。 与气体引入部相对的第一电池用于从气体导入部中的测量气体中泵送氧气。 与气体导入部相对的第二电池用于感测由第一电池泵送氧气的测定气体的特定成分中的浓度。 存在第一电池和第二电池中的至少一个被暴露的参考气室。 暴露于参考气室的第一电池和第二电池中的一个包括面对气体导入部分的电极。 感测流过第一单元的电流。 响应于通过第一单元的感测电流,向第一单元施加电压。 感测流经第二单元的电流。 响应于通过第二单元的感测电流,向第二单元施加电压。 电极上的电压从0V的电压浮起。
    • 8. 发明授权
    • Gas concentration measuring apparatus compensating for error component of output signal
    • 补偿输出信号误差分量的气体浓度测量装置
    • US06336354B1
    • 2002-01-08
    • US09497179
    • 2000-02-03
    • Toshiyuki SuzukiEiichi KurokawaTomoo KawaseSatoshi Hada
    • Toshiyuki SuzukiEiichi KurokawaTomoo KawaseSatoshi Hada
    • G01N2712
    • G01N27/4067
    • A gas concentration measuring apparatus is provided which measures the concentration of a given gas using a gas sensor. The gas sensor includes a sensor element producing a gas concentration signal indicative of the concentration of the gas, a heater heating the sensor element, and an insulator disposed between the sensor element and the heater. The apparatus includes a heater control circuit which may provisionally supply electrical power to the heater by applying a Pulse-Width-Modulated signal. The heater control circuit performs a switching operation to supply power to the heater cyclically. The apparatus corrects an error contained in the gas concentration signal arising from a leakage current flowing into the sensor element through the insulator during the switching operation of the heater control circuit.
    • 提供一种气体浓度测量装置,其使用气体传感器测量给定气体的浓度。 气体传感器包括产生指示气体浓度的气体浓度信号的传感器元件,加热传感器元件的加热器和设置在传感器元件和加热器之间的绝缘体。 该装置包括加热器控制电路,该加热器控制电路可通过施加脉冲宽度调制信号临时向加热器供电。 加热器控制电路执行切换操作以循环地向加热器供电。 该装置在加热器控制电路的切换操作期间,通过绝缘体校正由流入传感器元件的漏电流引起的气体浓度信号中包含的误差。
    • 10. 发明授权
    • Gas concentration measuring apparatus producing current signals as a function of gas concentration
    • 产生作为气体浓度的函数的电流信号的气体浓度测量装置
    • US06446488B1
    • 2002-09-10
    • US09321873
    • 1999-05-28
    • Eiichi KurokawaTomoo KawaseSatoshi HadaToshiyuki Suzuki
    • Eiichi KurokawaTomoo KawaseSatoshi HadaToshiyuki Suzuki
    • G01N700
    • G01N27/4065F02D41/1455F02D41/1456
    • A gas concentration measuring apparatus is provided which may be employed in measuring an air-fuel ratio of mixture sucked into automotive engines. The apparatus includes a gas concentration sensor exposed to a gas and a voltage applying circuit. The gas concentration sensor is responsive to application of voltage to produce a current signal indicative of concentration of the gas. The voltage applying circuit includes an operational amplifier which operates on a source voltage and which outputs the voltage for developing the voltage applied to the gas concentration sensor which has a level changing as a function of voltage inputted to the operational amplifier. The operational amplifier is designed to have an amplitude of each of the voltages inputted to and outputted from the operational amplifier which falls within a given input/output voltage range defined between an upper limit and a lower limit of a source voltage range and near at least one of the upper and lower limits of the source voltage range, thereby allowing the air-fuel ratio to be measured with higher accuracy over a wide range.
    • 提供一种气体浓度测量装置,其可用于测量吸入汽车发动机的混合物的空燃比。 该装置包括暴露于气体的气体浓度传感器和电压施加电路。 气体浓度传感器响应于施加电压以产生指示气体浓度的电流信号。 电压施加电路包括运算放大器,该运算放大器基于源电压运行,并且输出用于显现施加到气体浓度传感器的电压的电压,其具有作为输入到运算放大器的电压的函数的电平变化。 运算放大器被设计成具有输入到运算放大器的输出和输出的每个电压的幅度,其落在在源极电压范围的上限和下限之间限定的给定输入/输出电压范围内,并且至少接近 源极电压范围的上限和下限之一,从而允许在较宽范围内以更高精度测量空燃比。