Electronic Engineering Department, Universitat Autònoma de Barcelona, Edifici Q, Campus UAB, 08193 Cerdanyola del Valles, Spain.
Sensors (Basel). 2023 Nov 3;23(21):8945. doi: 10.3390/s23218945.
This work presents a MEMS resonator used as an ultra-high resolution water vapor sensor (humidity sensing) to detect human activity through finger movement as a demonstrator example. This microelectromechanical resonator is designed as a clamped-clamped beam fabricated using the top metal layer of a commercial CMOS technology (0.35 μm CMOS-AMS) and monolithically integrated with conditioning and readout circuitry. Sensing is performed through the resonance frequency change due to the addition of water onto the clamped-clamped beam coming from the moisture created by the evaporation of water in the human body. The sensitivity and high-speed response to the addition of water onto the metal bridge, as well as the quick dewetting of the surface, make it suitable for low-power human activity sensing.
这项工作提出了一种作为超灵敏水蒸气传感器(湿度传感)的微机电谐振器,通过手指运动来检测人类活动,作为演示示例。这个微机电谐振器设计为使用商业 CMOS 技术(0.35μm CMOS-AMS)的顶层金属层制造的被夹紧的被夹紧的梁,并与调节和读出电路单片集成。传感是通过由于从人体水分蒸发产生的湿气加到被夹紧的被夹紧的梁上引起的共振频率变化来实现的。金属桥表面上水的快速蒸发导致了其对水的添加具有高灵敏度和高速响应,以及快速去湿,这使其适合低功耗的人类活动感应。