首页> 外文期刊>NASA Tech Briefs >Rapid-Response Semiconductor Sensor With Resistance Detection Determines Partial Pressure of Oxygen This sensor is suited to applications that use feedback to control the fuel-air mixture for engines, boilers, and other combustion apparatus for greater efficiency.
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Rapid-Response Semiconductor Sensor With Resistance Detection Determines Partial Pressure of Oxygen This sensor is suited to applications that use feedback to control the fuel-air mixture for engines, boilers, and other combustion apparatus for greater efficiency.

机译:具有电阻检测功能的快速响应半导体传感器可确定氧气的分压。该传感器适用于使用反馈来控制发动机,锅炉和其他燃烧设备的燃油-空气混合物以提高效率的应用。

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In the past, solid electrolytes have mainly been used as oxygen sensors for automobiles. This type of sensor measures the difference between the oxygen partial pressures of a reference electrode and a measurement electrode, and always requires a reference electrode. Consequently, the problem with this type of sensor is that the sensor structure is complex, making miniaturization difficult. To resolve this problem, a resistance-type oxygen sensor has been developed that does not require a reference electrode. Also previously, resistive oxygen gas sensors have exhibited slow response times, making such a sensor difficult to incorporate into an effective feedback sys-tem, such as those used to control modern electronic fuel injection systems for gasoline engines.
机译:过去,固体电解质主要用作汽车的氧气传感器。这种类型的传感器测量参考电极和测量电极的氧分压之间的差,并且始终需要参考电极。因此,这种传感器的问题在于传感器结构复杂,难以小型化。为了解决该问题,已经开发了不需要参考电极的电阻型氧气传感器。同样在以前,电阻式氧气传感器显示出较慢的响应时间,使得这种传感器难以集成到有效的反馈系统中,例如那些用于控制现代汽油发动机电子燃油喷射系统的传感器。

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    《NASA Tech Briefs》 |2011年第10期|p.2022|共2页
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