Tsukada Tsuyoshi, Takigawa Ryusei, Hasegawa Yoshihiro, Al Farisi Muhammad Salman, Shikida Mitsuhiro
Department of Biomedical Information Sciences, Hiroshima City University, Hiroshima 731-3194, Japan.
Micromachines (Basel). 2022 Dec 24;14(1):42. doi: 10.3390/mi14010042.
A tube-integrated flow sensor is proposed in this study by integrating a micro-electro mechanical systems (MEMS) flow-sensing element and electrical wiring structure on the same copper on polyimide (COP) substrate. The substrate was rolled into a circular tube with the flow-sensing element installed at the center of the tube. The signal lines were simultaneously formed and connected to the Cu layer of the substrate during the fabrication of the sensing structure, thus simplifying the electrical connection process. Finally, by rolling the fabricated sensor substrate, the flow sensor device itself was transformed into a circular tube structure, which defined the airflow region. By implementing several slits on the substrate, the sensing element was successfully placed at the center of the tube where the flow velocity is maximum. Compared to the conventional sensor structure in which the sensor was placed on the inner wall surface of the tube, the sensitivity of the sensor was doubled.
本研究提出了一种管集成式流量传感器,通过在聚酰亚胺覆铜(COP)基板上集成微机电系统(MEMS)流量传感元件和电气布线结构。将基板卷成圆形管,流量传感元件安装在管的中心。在传感结构制造过程中,信号线同时形成并连接到基板的铜层,从而简化了电气连接过程。最后,通过卷绕制造好的传感器基板,流量传感器装置本身转变为圆形管结构,该结构界定了气流区域。通过在基板上设置若干狭缝,传感元件成功地放置在管内流速最大的中心位置。与传统的将传感器置于管内壁表面的传感器结构相比,该传感器的灵敏度提高了一倍。