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Self-Regulated Bias Circuits for Efficient Adjustment of the Operating Temperature of Chemoresistive Gas Sensors

机译:自调节偏置电路,可有效调节化学电阻式气体传感器的工作温度

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摘要

A bias circuit is required for chemoresistive gas sensors to appropriately adjust their operating temperature and facilitate the readout of their output response. If the sensor is properly biased, its overall performance regarding sensitivity, selectivity, and power consumption can be greatly enhanced. We have introduced the concept of self-regulated biasing as an alternative to the conventional fixed biasing methods. In self-regulated bias circuits, the gas sensor is an active component in its own bias circuit, so the operating point is dynamically adjusted during a measurement. This will provide the sensor with different modes of operation. Here, we have proposed two self-regulated bias circuits the operation of which is analytically and experimentally studied. Results show that the first circuit puts the sensor in a low-power idle mode when no target gas is presented, and hence the power consumption is considerably reduced and the sensor lifetime may be prolonged. The second circuit puts the sensor in a power-down mode upon sensing a gas. This state is held until the circuit is reset. So the second bias circuit acts as a gas latch besides other important features like increased safety in explosive environments. Obviously, other self-regulated bias circuits can be designed for additional desired modes of operations.
机译:化学电阻式气体传感器需要一个偏置电路,以适当地调整其工作温度并促进其输出响应的读出。如果传感器正确偏置,则可以大大提高传感器在灵敏度,选择性和功耗方面的整体性能。我们介绍了自调节偏置的概念,以替代传统的固定偏置方法。在自调节偏置电路中,气体传感器是其自身偏置电路中的有源组件,因此在测量过程中可以动态调整工作点。这将为传感器提供不同的操作模式。在这里,我们提出了两个自调节偏置电路,对其工作进行了分析和实验研究。结果表明,当没有目标气体出现时,第一电路将传感器置于低功率空闲模式,因此功耗大大降低,并且传感器寿命可能得到延长。第二电路在检测到气体后将传感器置于掉电模式。该状态一直保持到电路复位为止。因此,除其他重要功能(如在爆炸性环境中提高安全性)外,第二个偏置电路还充当气体闩锁。显然,可以为其他所需的工作模式设计其他自调节偏置电路。

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