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    • 2. 发明授权
    • Gas component detector
    • 气体成分检测器
    • US4294801A
    • 1981-10-13
    • US169162
    • 1980-07-15
    • Yoshihiro SegawaMinoru OhtaEturo Yasuda
    • Yoshihiro SegawaMinoru OhtaEturo Yasuda
    • G01N27/12G01N27/04
    • G01N27/12Y10T436/205831Y10T436/214Y10T436/22
    • A gas component detector for detecting a gas component in the exhaust gases includes a detector element of a metal oxide whose electrical resistance value varies suddenly depending on the gas component. The detector element is held on an electrically insulating and heat-resistant holding body and furthermore, the detector element is enclosed by a catalyst carrier body which is fixed to the holding body by an inorganic bonding adhesive. Since the catalyst carrier body is of a porous heat-resistant metal oxide, the exhaust gases to be detected are permitted to pass through the catalyst carrier body and the gas component is oxidated by the aid of a catalyst material carried on the carrier body. The environment of the detector element thus becomes a weak reducing environment thereby preventing the detector element from being reduced and deteriorated.
    • 用于检测废气中的气体成分的气体成分检测器包括金属氧化物的检测元件,其电阻值根据气体成分突然变化。 检测器元件保持在电绝缘和耐热的保持体上,此外,检测器元件由通过无机粘合粘合剂固定到保持体的催化剂载体主体包围。 由于催化剂载体为多孔耐热金属氧化物,因此允许检测的废气通过催化剂载体,借助载体上携带的催化剂材料使气体成分氧化。 因此,检测器元件的环境变成弱的还原环境,从而防止检测器元件的减少和劣化。
    • 4. 发明授权
    • Gas component detector
    • 气体成分检测器
    • US4236138A
    • 1980-11-25
    • US19402
    • 1979-03-12
    • Yoshihiro SegawaMinoru OhtaEturo Yasuda
    • Yoshihiro SegawaMinoru OhtaEturo Yasuda
    • G01N27/04G01N27/12H01L7/00
    • G01N27/12
    • A gas component detector has a detector element of a metal oxide held on one end of a ceramic body. The detector element is exposed to the gases to be detected and the electrical resistance value thereof is varied depending on the component of the gases. An electrical signal representing an electrical resistance value of the detector element is delivered through a pair of electrodes connected to the detector element and further through a pair of sub-lead-lines connected to the electrodes. The pairs of electrodes and sub-lead-lines are inserted in a pair of penetrating holes of the ceramic body after the electrodes and sub-lead-lines have been welded to each other. The ceramic body is inserted in a metal tube and the ceramic body and the metal tube are fixed to each other either by a tight surface contact or an adhesive. The openings of the pair of penetrating holes of the ceramic body at the opposite end with respect to the detector element are closed by a sealing material of an electrically insulating metal oxide.
    • 气体成分检测器具有保持在陶瓷体一端的金属氧化物的检测元件。 检测器元件暴露于要检测的气体,并且其电阻值根据气体的成分而变化。 表示检测器元件的电阻值的电信号通过连接到检测器元件的一对电极进一步通过连接到电极的一对副引线来传送。 在电极和副引线彼此焊接之后,将电极对和副引线对插入陶瓷体的一对穿透孔中。 将陶瓷体插入金属管中,陶瓷体和金属管通过紧密的表面接触或粘合剂彼此固定。 相对于检测器元件的相对端的陶瓷体的一对穿透孔的开口由电绝缘金属氧化物的密封材料封闭。
    • 5. 发明授权
    • Gas sensor
    • 气体传感器
    • US4258563A
    • 1981-03-31
    • US953955
    • 1978-10-23
    • Eturo YasudaYoshihiro SegawaMinoru Ohta
    • Eturo YasudaYoshihiro SegawaMinoru Ohta
    • F02D41/14G01N27/04G01N27/12
    • F02D41/1455G01N27/122
    • A gas sensor including a gas sensing element whose electrical resistance varies in accordance with the gas composition in the exhaust gas, especially the oxygen content in the exhaust gas, and a reference resistor connected in series with the gas sensing element. A predetermined voltage is applied across the series circuit of the gas sensing element and the reference resistor to detect the gas composition in the exhaust gas by a voltage at the junction point of the gas sensing element and the reference resistor. The gas sensor further comprises a circuit for monitoring the voltage at the junction point and another circuit responsive to the monitoring circuit to change the resistance of the reference resistor so that when the voltage at the junction point exceeds the predetermined range, the resistance of the reference resistor is changed such that the voltage at the junction point may change within the predetermined range in the state after the reference resistor is changed to ensure that the voltage at the junction point properly indicates the gas composition even if the resistance of the gas sensing element changes with the operating temperature of the gas sensing element or with time.
    • 一种气体传感器,其包括气体传感元件,其电阻根据排气中的气体组成,特别是废气中的氧含量而变化,以及与气体感测元件串联连接的参考电阻。 在气体感测元件和参考电阻器的串联电路之间施加预定电压,以通过气体感测元件和参考电阻器的接合点处的电压来检测排气中的气体成分。 气体传感器还包括用于监测接合点处的电压的电路和响应于监视电路的另一电路,以改变参考电阻器的电阻,使得当接合点处的电压超过预定范围时,参考电阻 改变电阻器,使得在参考电阻器改变之后的状态下,接合点处的电压可能在预定范围内改变,以确保即使气体感测元件的电阻改变,接合点处的电压也适当地指示气体组成 与气体感测元件的工作温度或时间。
    • 6. 发明授权
    • Gas detection apparatus
    • 气体检测仪
    • US4235096A
    • 1980-11-25
    • US4189
    • 1979-01-17
    • Eturo YasudaYoshihiro SegawaMinoru Ohta
    • Eturo YasudaYoshihiro SegawaMinoru Ohta
    • F02D41/14G01N27/04G01N27/12
    • F02D41/1455G01N27/122
    • A gas detection apparatus with a gas detection element of which the electric resistance changes in accordance with a gas constituent, especially oxygen, in exhaust gas, wherein a fixed voltage is applied to a series circuit of the gas detection element and the reference resistor, and from the voltge at the voltage dividing point between the gas detection element and the reference resistor it is detected whether the gas constituent has exceeded a predetermined range or not. The gas detection apparatus includes a plurality of comparators each for comparing the voltage at the voltage dividing point with a corresponding one of the reference voltages to generate a comparison signal, and a logic circuit responsive to the rise or fall of the comparison signals showing that the gas constituent has exceeded a predetermined range.
    • 一种具有气体检测元件的气体检测元件,其中电阻根据废气中的气体成分,特别是氧气而变化,其中固定电压施加到气体检测元件和参考电阻器的串联电路,以及 从气体检测元件和参考电阻之间的分压点的电压开始,检测气体成分是否超过预定范围。 气体检测装置包括多个比较器,每个比较器用于将分压点处的电压与相应的参考电压进行比较以产生比较信号,以及响应于比较信号的上升或下降的逻辑电路, 气体成分已超过预定范围。
    • 8. 发明授权
    • Gas component detection apparatus
    • 气体成分检测装置
    • US4322383A
    • 1982-03-30
    • US179222
    • 1980-08-18
    • Eturo YasudaSusumu SatoYoshihiro SegawaTadashi HattoriKeiji Aoki
    • Eturo YasudaSusumu SatoYoshihiro SegawaTadashi HattoriKeiji Aoki
    • G01N27/12G01N27/16G01N33/00H01C13/00
    • H01C13/00G01N27/12G01N27/16G01N33/0031
    • A gas component detection apparatus comprises a first and a second gas sensing elements each composed of a metal oxide which exhibits variable electric resistances according to gaseous components and temperatures of gases to be detected. A catalyst is carried at least by the first sensing element for promoting oxidation reactions of the gaseous components of the gases. A first pair of electrodes are inserted into those portions of the first sensing element which are subjected to catalytic action of the catalyst. Into the portions of the second sensing element which are not subjected to catalytic action are inserted a second pair of electrodes. The first pair of electrodes sense a variation in electric resistances resulting from the gaseous components and temperatures of the gases, while the second pair of electrodes detect an electric resistance variation related mainly upon the gas temperatures. Consequently, an output signal reflecting substantially only the gaseous components of the gases is produced by offsetting both of the electric resistances separately sensed utilizing a suitable electric circuit.
    • 气体成分检测装置包括第一和第二气体检测元件,每个气体检测元件由金属氧化物组成,金属氧化物根据气体成分和待检测气体的温度呈现可变的电阻。 催化剂至少由第一感测元件承载,用于促进气体的气体组分的氧化反应。 将第一对电极插入到受催化剂催化作用的第一感测元件的那些部分中。 在不进行催化作用的第二传感元件的部分插入第二对电极。 第一对电极感测由气体组分和气体温度导致的电阻变化,而第二对电极检测主要基于气体温度的电阻变化。 因此,基本上仅反映气体的气体成分的输出信号是通过使用合适的电路单独检测的两个电阻抵消而产生的。
    • 9. 发明授权
    • Gas component detection apparatus
    • 气体组分检测装置
    • US4066413A
    • 1978-01-03
    • US662956
    • 1976-03-01
    • Yoshihiro SegawaSusumu SatoEturo YasudaTadashi HattoriKeiji Aoki
    • Yoshihiro SegawaSusumu SatoEturo YasudaTadashi HattoriKeiji Aoki
    • F02D41/14G01N27/12G01N27/16
    • F02D41/1455G01N27/12
    • A gas component detection apparatus for detecting gas components contained in an exhaust gas from a combustion device and determining an air-fuel ratio of an air-fuel mixture supplied thereto. A gas component detecting element composed of a semiconductive metal oxide is contacted by the exhaust gas andexhibits variable electric resistances according to the concentrations of the gas components. The electric resistance is taken out as an electric signal through two electrodes disposed either on the surface of the detecting element exposed to the exhaust gas or within the detecting element adjacent that exposed surface. A porous coating layer having an exhaust gas permeability covers the surface of the detecting element exposed to the exhaust gas so as to prevent poisonous substances contained in the exhaust gas from depositing on that exposed surface of the detecting element. The coating layer is formed of a metal oxide having electrically insulating properties and carries therein a catalyst promoting an oxidation reaction of the exhaust gas. The detecting element exhibits an abruptly changed electric resistance when the actual air-fuel ratio of the air-fuel mixture supplied into the combustion device is deviated from a stoichiometrical air-fuel ratio, thereby enabling the control of the air-fuel ratio of the air-fuel mixture.
    • 10. 发明授权
    • Gas component detection apparatus
    • 气体成分检测装置
    • US4244918A
    • 1981-01-13
    • US899397
    • 1978-04-24
    • Eturo YasudaSusumu SatoYoshihiro SegawaTadashi HattoriKeiji Aoki
    • Eturo YasudaSusumu SatoYoshihiro SegawaTadashi HattoriKeiji Aoki
    • G01N27/12G01N27/16G01N33/00H01C13/00
    • H01C13/00G01N27/12G01N27/16G01N33/0031
    • A gas component detection apparatus comprises a first and a second gas sensing elements each composed of a metal oxide which exhibits variable electric resistances according to gaseous components and temperatures of gases to be detected. A catalyst is carried at least by the first sensing element for promoting oxidation reactions of the gaseous components of the gases. A first pair of electrodes are inserted into those portions of the first sensing element which are subjected to catalytic action of the catalyst. Into the portions of the second sensing element which are not subjected to catalytic action are inserted a second pair of electrodes. The first pair of electrodes sense a variation in electric resistances resulting from the gaseous components and temperatures of the gases, while the second pair of electrodes detect an electric resistance variation related mainly upon the gas temperatures. Consequently, an output signal reflecting substantially only the gaseous components of the gases is produced by offsetting both of the electric resistances separately sensed utilizing a suitable electric circuit.
    • 气体成分检测装置包括第一和第二气体检测元件,每个气体检测元件由金属氧化物组成,金属氧化物根据气体成分和待检测气体的温度呈现可变的电阻。 催化剂至少由第一感测元件承载,用于促进气体的气体组分的氧化反应。 将第一对电极插入到受催化剂催化作用的第一感测元件的那些部分中。 在不进行催化作用的第二传感元件的部分插入第二对电极。 第一对电极感测由气体组分和气体温度导致的电阻变化,而第二对电极检测主要基于气体温度的电阻变化。 因此,基本上仅反映气体的气体成分的输出信号是通过使用合适的电路单独检测的两个电阻抵消而产生的。