US2018284052A1PendingUtilityA1

Gas sensor

Assignee: NGK INSULATORS LTDPriority: Mar 31, 2017Filed: Mar 28, 2018Published: Oct 4, 2018
Est. expiryMar 31, 2037(~10.7 yrs left)· nominal 20-yr term from priority
G01N 27/4071G01N 27/41G01N 27/409G01N 27/4072G01N 27/419
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Claims

Abstract

A gas sensor includes reference gas regulating device that applies a control voltage that is set between the reference electrode and the measurement-object gas side electrode; and a detecting device that detects the specific gas concentration in the measurement-object gas on the basis of a voltage between the reference electrode and the measurement electrode during a second period, from among a first period that is started upon setting of the control voltage to on state, during which a potential difference between the reference electrode and the measurement-object gas side electrode is large, and the second period that is started upon setting of the control voltage to off state after the potential difference falls from the first period. Tf, a fall time of the potential difference between the first period and the second period, and T2, a second time that is a length of the second period, satisfies Tf≤T2.

Claims

exact text as granted — not AI-modified
What is claimed is: 
     
         1 . A gas sensor comprising:
 a layered body that is formed by stacking a plurality of oxygen ion-conductive solid electrolyte layers, and that includes a measurement-object gas flowing portion which a measurement-object gas is introduced and flowed in;   a reference electrode that is formed inside of the layered body, and that receives a reference gas introduced therein, the reference gas being used as a standard for detection of a specific gas concentration in the measurement-object gas;   a measurement electrode provided on an inner peripheral surface of the measurement-object gas flowing portion;   a measurement-object gas side electrode provided in a region of the layered body that is exposed to the measurement-object gas;   a reference gas introducing portion that introduces the reference gas to a periphery of the reference electrode;   a reference gas regulating device that applies a control voltage that is repetitively set to on state and off state between the reference electrode and the measurement-object gas side electrode to pump in oxygen to the periphery of the reference electrode; and   a detecting device that detects the specific gas concentration in the measurement-object gas on the basis of a voltage between the reference electrode and the measurement electrode during a second period, from among a first period that is started upon setting of the control voltage to on state, during which a potential difference between the reference electrode and the measurement-object gas side electrode is large, and the second period that is started upon setting of the control voltage to off state after the potential difference falls from the first period,   wherein the gas sensor satisfies the following Formula (1),
     Tf≤T 2  (1)
 
   (where Tf is a fall time [msec] of the potential difference between the first period and the second period, and   T 2  is a second time [msec] that is a length of the second period).   
     
     
         2 . The gas sensor according to  claim 1 , wherein the peak current Ip 3 max flowed in the reference electrode by using the control voltage is 10 μA or more. 
     
     
         3 . The gas sensor according to  claim 1 , wherein the second time T 2  is 10 msec or less. 
     
     
         4 . The gas sensor according to  claim 1 , wherein the fall time Tf is 3 msec or less. 
     
     
         5 . The gas sensor according to  claim 1 , wherein a fall residual voltage DVref 10  calculated according to the following Formula (2) is 55 mV or less,
     DV ref10=( V ref2 −V ref1)×0.1 +V ref1 −V ref0  (2),
 
 (where Vref 0  is a voltage [mV] between the reference electrode and the measurement-object gas side electrode in a state in which the layered body is placed in an air and in which the control voltage is not applied, 
 Vref 1  is a minimum voltage [mV] between the reference electrode and the measurement-object gas side electrode in a state in which the layered body is placed in the air and in which the control voltage is repetitively set to on state and off state, and 
 Vref 2  is a maximum voltage [mV] between the reference electrode and the measurement-object gas side electrode in a state in which the layered body is placed in the air and in which the control voltage is repetitively set to on state and off state.)

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