National Key Laboratory of Science and Technology on Micro/Nano Fabrication, Department of Biomedical Engineering, College of Future Technology, Peking University, Beijing 100871, China.
Academy for Advanced Interdisciplinary Studies, Peking University, Beijing 100871, China.
Sci Adv. 2024 Aug 23;10(34):eadp6094. doi: 10.1126/sciadv.adp6094. Epub 2024 Aug 21.
Flexible tactile sensors play important roles in many areas, like human-machine interface, robotic manipulation, and biomedicine. However, their flexible form factor poses challenges in their integration with wafer-based devices, commercial chips, or circuit boards. Here, we introduce manufacturing approaches, device designs, integration strategies, and biomedical applications of a set of flexible, modular tactile sensors, which overcome the above challenges and achieve cooperation with commercial electronics. The sensors exploit lithographically defined thin wires of metal or alloy as the sensing elements. Arranging these elements across three-dimensional space enables accurate, hysteresis-free, and decoupled measurements of temperature, normal force, and shear force. Assembly of such sensors on flexible printed circuit boards together with commercial electronics forms various flexible electronic systems with capabilities in wireless measurements at the skin interface, continuous monitoring of biomechanical signals, and spatial mapping of tactile information. The flexible, modular tactile sensors expand the portfolio of functional components in both microelectronics and macroelectronics.
灵活的触觉传感器在许多领域都扮演着重要的角色,例如人机界面、机器人操作和生物医学。然而,它们的灵活形态在与基于晶圆的设备、商业芯片或电路板集成方面带来了挑战。在这里,我们介绍了一系列灵活的模块化触觉传感器的制造方法、器件设计、集成策略以及在生物医学中的应用。这些传感器克服了上述挑战,并与商业电子产品实现了合作。这些传感器利用光刻定义的金属或合金细线作为传感元件。通过在三维空间中排列这些元件,可以实现对温度、正压力和剪切力的精确、无滞后和解耦测量。将这种传感器组装在柔性印刷电路板上,并与商业电子产品一起,形成了各种具有在皮肤界面进行无线测量、连续监测生物力学信号以及空间映射触觉信息能力的柔性电子系统。灵活的模块化触觉传感器扩展了微电子学和宏观电子学中功能组件的组合。