Abstract:
Most gas sensors suffer from the cross sensitivity to environmental temperature, which significantly reduces the accuracy and reliability of measurements. Current solutio...Show MoreMetadata
Abstract:
Most gas sensors suffer from the cross sensitivity to environmental temperature, which significantly reduces the accuracy and reliability of measurements. Current solutions require the fabrication of a thermometer in close proximity to the gas sensor or an identical reference sensor to compensate for the sensor drift due to temperature. This increases the device size, fabrication cost, and the power required to operate the sensor; and also adds to the complexity of the device circuit for signal processing. Here, we demonstrate a single resonant gas sensor, based on a microbeam uniformly coated with metal-organic frameworks (MOFs), capable of simultaneously measuring environmental temperature and gas concentration (water vapor). Using the electrostatic harmonic voltage, we actuate the microbeam simultaneously near the first and second vibration modes. The frequency shifts of these two modes due to physical stimuli changes are monitored in real time. The lower electrode of the clamped-clamped microbeam resonator is perforated to reduce the effect of squeeze film damping, thereby allowing operation under atmospheric pressure. We demonstrate experimentally the effectiveness of this technique to measure the environmental temperature and gas concentration.
Published in: 2018 IEEE SENSORS
Date of Conference: 28-31 October 2018
Date Added to IEEE Xplore: 27 December 2018
ISBN Information:
ISSN Information:
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- IEEE Keywords
- Index Terms
- Reliable Measure ,
- Atmospheric Pressure ,
- Water Vapor ,
- Actuator ,
- Vibrational Modes ,
- Frequency Shift ,
- Gas Concentration ,
- Metal–organic Frameworks ,
- Gas Sensors ,
- Environmental Concentrations ,
- Physical Stimuli ,
- Stimulus Change ,
- Microbeam ,
- Reference Sensor ,
- Lower Electrode ,
- Temperature Changes ,
- Power Consumption ,
- Frequency Response ,
- Real-time Data ,
- Quality Factor ,
- Water Vapor Content ,
- Surface Resonance ,
- Frequency Ratio ,
- Chamber Temperature ,
- Beam Length ,
- Vibration Velocity ,
- Vibration Amplitude ,
- Higher-order Modes ,
- Higher Modes
- Author Keywords
Keywords assist with retrieval of results and provide a means to discovering other relevant content. Learn more.
- IEEE Keywords
- Index Terms
- Reliable Measure ,
- Atmospheric Pressure ,
- Water Vapor ,
- Actuator ,
- Vibrational Modes ,
- Frequency Shift ,
- Gas Concentration ,
- Metal–organic Frameworks ,
- Gas Sensors ,
- Environmental Concentrations ,
- Physical Stimuli ,
- Stimulus Change ,
- Microbeam ,
- Reference Sensor ,
- Lower Electrode ,
- Temperature Changes ,
- Power Consumption ,
- Frequency Response ,
- Real-time Data ,
- Quality Factor ,
- Water Vapor Content ,
- Surface Resonance ,
- Frequency Ratio ,
- Chamber Temperature ,
- Beam Length ,
- Vibration Velocity ,
- Vibration Amplitude ,
- Higher-order Modes ,
- Higher Modes
- Author Keywords