Differential pressure sensor with dual output using a double-sided capacitive sensing element
US-9470594-B2 · Oct 18, 2016 · US
US9448136B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9448136-B2 |
| Application number | US-201414224154-A |
| Country | US |
| Kind code | B2 |
| Filing date | Mar 25, 2014 |
| Priority date | Mar 27, 2013 |
| Publication date | Sep 20, 2016 |
| Grant date | Sep 20, 2016 |
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A sensor control apparatus which receives from a gas sensor ( 10 ) a sensor output signal Ip corresponding to the concentration of a specific gas component, and a pressure signal P output from a pressure sensor ( 20 ). The sensor control apparatus includes a computation section ( 38 ) which computes a specific component concentration which is corrected based on the pressure signal P so as to eliminate the influence of the pressure of the gas. The sensor control apparatus includes response adjustment sections ( 34 ) and ( 36 ) for adjusting the response rates of the sensor output signal Ip and the pressure signal P before being input to the computation section ( 38 ), the response rate exhibiting a time variation of the corresponding signal to a change in the pressure of the gas, such that the response rate of the sensor output signal Ip or the response rate of the pressure signal P, whichever is faster, approaches the slower of the two.
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What is claimed is: 1. A sensor control apparatus including a computation section which receives from a gas sensor a sensor output signal corresponding to the concentration of a specific gas component contained in a gas flowing through a flow passage provided in an internal combustion engine, and a pressure signal output from a pressure sensor which measures the pressure of the gas, the computation section computing a specific component concentration which represents the concentration of the specific gas component and is corrected based on the pressure signal in order to eliminate an influence of the pressure of the gas on the sensor output signal, the sensor control apparatus comprising: a response adjustment section which adjusts a response rate of at least one of the sensor output signal and the pressure signal before being input to the computation section, the response rate exhibiting a time variation of the corresponding signal to a change in the pressure of the gas, such that the response rate of the sensor output signal or the response rate of the pressure signal, whichever is faster, approaches the slower of the response rate of the sensor output signal and the response rate of the pressure signal; and a delay adjustment section which adjusts a delay time of at least one of the sensor output signal and the pressure signal before being input to the computation section, the delay time being a time between a point at which the pressure of the gas changes and a point at which the corresponding signal begins to respond to the change in the pressure, such that the delay time of the sensor output signal or the delay time of the pressure signal, whichever is shorter, approaches the longer of the delay time of the sensor output signal and the delay time of the pressure signal. 2. A sensor control system comprising: a gas sensor which outputs an output value corresponding to the concentration of a specific gas component contained in a gas flowing through a flow passage provided in an internal combustion engine; a pressure sensor which measures the pressure of the gas; and the sensor control apparatus as claimed in claim 1 . 3. A sensor control method comprising: obtaining from a gas sensor a sensor output signal corresponding to the concentration of a specific gas component contained in a gas flowing through a flow passage provided in an internal combustion engine, and a pressure signal output from a pressure sensor which measures the pressure of the gas; adjusting a response rate of at least one of the sensor output signal and the pressure signal, the response rate exhibiting a time variation of the corresponding signal to a change in the pressure of the gas, such that the response rate of the sensor output signal or the response rate of the pressure signal, whichever is faster, approaches the slower one of the response rate of the sensor output and the response rate of the pressure signal; computing a specific component concentration which represents the concentration of the specific gas component based on the adjusted sensor output signal and the adjusted pressure signal such that the specific component concentration is corrected based on the pressure signal in order to eliminate an influence of the pressure of the gas on the sensor output signal; and adjusting a delay time of at least one of the sensor output signal and the pressure signal, which adjusting step is performed between the obtaining step and the computing step, the delay time being a time between a point at which the pressure of the gas changes and a point at which the corresponding signal begins to respond to the change in the pressure, such that the delay time of the sensor output signal or the delay time of the pressure signal, whichever is shorter, approaches the longer of the delay time of the sensor output signal and the delay time of the pressure signal. 4. A sensor control apparatus including a computation section which receives from a gas sensor a sensor output signal corresponding to the concentration of a specific gas component contained in a gas flowing through a flow passage provided in an internal combustion engine, and a pressure signal output from a pressure sensor which measures the pressure of the gas, the computation section computing a specific component concentration which represents the concentration of the specific gas component and is corrected based on the pressure signal in order to eliminate an influence of the pressure of the gas on the sensor output signal, the sensor control apparatus comprising: a first response adjustment section which adjusts a response rate of the sensor output signal to a change in the pressure of the gas before being input to the computation section and a second response adjustment section which adjusts a response rate of the pressure signal to a change in the pressure of the gas before being input to the computation section, such that the response rate of the sensor output signal or the response rate of the pressure signal, whichever is faster, approaches the slower of the response rate of the sensor output signal and the response rate of the pressure signal.
using pressure sensors · CPC title
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