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Micromachined oxygen gas sensors for microscopic energy consumption measurement systems.

机译:用于微观能耗测量系统的微机械氧气传感器。

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Although the indirect calorimeter is a useful tool, its size and expense mean that it is seldom used in hospitals. Furthermore, its flow-through measurement technique dilutes respiratory variations, so they can only be detected with some form of high-precision instrumentation. This study employs MEMS techniques to develop an oxygen sensor as one part of a microscopic energy consumption measurement system, which measures respiration dynamics in a real time manner. The oxygen sensor comprises a polysilicon resistor and a Li-doped (2 wt%) tin-oxide sensing film attached to a thermally isolated silicon-nitride membrane. The power consumption of the sensor is less than 25 mW at an operating temperature of 150 degrees C. Furthermore, it measures oxygen concentrations between 25 and 85% with a linear output response. These characteristics render the proposed sensor suitable for use within a microscopic energy consumption measurement system in either hospital or homecare environments.
机译:尽管间接量热仪是一种有用的工具,但它的大小和费用意味着它很少在医院中使用。此外,它的流通测量技术可稀释呼吸变化,因此只能使用某种形式的高精度仪器才能检测到它们。这项研究利用MEMS技术开发了一种氧传感器,将其作为微观能耗测量系统的一部分,该系统可以实时测量呼吸动力学。氧气传感器包括一个多晶硅电阻器和一个Li掺杂(2重量%)的氧化锡传感膜,该膜附着在热隔离的氮化硅膜上。在150摄氏度的工作温度下,传感器的功耗小于25毫瓦。此外,它以线性输出响应测量25至85%的氧气浓度。这些特性使所提出的传感器适合在医院或家庭护理环境中的微观能耗测量系统中使用。

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