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Proposal of a new structural thermal vacuum sensor with diode-thermistors combined with a micro-air-bridge heater

机译:带有二极管热敏电阻和微风桥加热器的新型结构热真空传感器的建议

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New structural Pirani gauge-type thermal vacuum sensor with a microheater and two pn junction diodes, Th-A and Th-B, as a high-sensitive temperature sensor working like a thermistor formed on a micro-air-bridge (MAB) is proposed. The MAB is separated into two regions of A and B. The Th-A and the Th-B can measure temperatures of the region A and the region B connected to the region A with thermal resistance, respectively. The microheater is formed in the region A and can maintain its temperature by feedback control. The diode-thermistor, Th-C, formed on the SOI substrate is provided to measure the ambient temperature T_c. Principle of this Pirani gauge-type thermal vacuum sensor is based on the measurement of the pressure-dependent thermal conductivity of gaseous media due to the heat exchange between the heated MAB (suspended film) and surrounding gas in vacuum. This has more than two orders of magnitude measurable pressure range (2 x 10~(-3)-1 x 10~5 Pa) compared with traditional Pirani vacuum sensor, and has very fast response and low power consumption.
机译:提出了一种新型的具有微加热器和两个pn结二极管Th-A和Th-B的结构性皮拉尼真空计型热真空传感器,作为像在微型空气桥(MAB)上形成的热敏电阻一样工作的高灵敏度温度传感器。 。 MAB分为A和B两个区域。Th-A和Th-B可以分别通过热阻测量区域A和连接到区域A的区域B的温度。微型加热器形成在区域A中,并且可以通过反馈控制来保持其温度。提供形成在SOI衬底上的二极管热敏电阻Th-C以测量环境温度T_c。这种皮拉尼真空计式热真空传感器的原理是基于对气态介质的压力依赖性热导率的测量,该热导率是由于加热的MAB(悬浮膜)与真空中的周围气体之间的热交换引起的。与传统的Pirani真空传感器相比,它具有超过两个数量级的可测量压力范围(2 x 10〜(-3)-1 x 10〜5 Pa),并且响应速度非常快且功耗低。

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