Luo Liang, Wang Ziyuan, Chen Jianwei, Hui Aisn Gioronara, Rogikin Allwins Moore, Liu Rongzhen, Zhou Yao, Jiang Zhujin, He Changde
Department of Engineering Mechanics, Tsinghua University, Beijing 100084, China.
School of Integrated Circuits, Southeast University, Nanjing 214135, China.
Sensors (Basel). 2024 Dec 17;24(24):8037. doi: 10.3390/s24248037.
Tire pressure monitoring systems (TPMSs) are essential for maintaining driving safety by continuously monitoring critical tire parameters, such as pressure and temperature, in real time during vehicle operation. Among these parameters, tire pressure is the most significant, necessitating the use of highly precise, cost-effective, and energy-efficient sensing technologies. With the rapid advancements in micro-electro-mechanical system (MEMS) technology, modern automotive sensing and monitoring systems increasingly rely on MEMS sensors due to their compact size, low cost, and low power consumption. This study presents a novel high-precision capacitive pressure sensor based on a capacitive micromachined ultrasonic transducer (CMUT) structure and a silicon-silicon direct bonding process. The proposed design offers exceptional performance with high accuracy, ultra-low power consumption, and reduced production costs, making it an optimal solution for enhancing the precision and efficiency of TPMS. Leveraging its low power requirements, capacitive sensing technology emerges as a superior choice for energy-efficient systems in the automotive industry.
轮胎压力监测系统(TPMS)对于在车辆运行期间实时持续监测关键轮胎参数(如压力和温度)以维持驾驶安全至关重要。在这些参数中,轮胎压力最为重要,这就需要使用高精度、高性价比且节能的传感技术。随着微机电系统(MEMS)技术的快速发展,现代汽车传感和监测系统越来越依赖MEMS传感器,因为它们尺寸紧凑、成本低且功耗低。本研究提出了一种基于电容式微机械超声换能器(CMUT)结构和硅 - 硅直接键合工艺的新型高精度电容式压力传感器。所提出的设计具有高精度、超低功耗和降低生产成本的卓越性能,使其成为提高TPMS精度和效率的最佳解决方案。利用其低功耗要求,电容式传感技术成为汽车行业节能系统的首选。