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Ultrasensitive stretchable patches for joint motion monitoring
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作者 LI Tengteng LI Ziwei +8 位作者 HAO Yafeng WU Huijia ZHU Pu MA Fupeng LI Fengchao YU Jiangang LIU Meihong LEI Cheng LIANG Ting 《Journal of Measurement Science and Instrumentation》 CAS CSCD 2024年第3期285-291,共7页
Wearable devices have great application potential in the next generation of smart portable electronics,especially in the fields of medical monitoring,soft robotics,artificial intelligence,and human-machine interfaces.... Wearable devices have great application potential in the next generation of smart portable electronics,especially in the fields of medical monitoring,soft robotics,artificial intelligence,and human-machine interfaces.Piezoelectric flexible strain sensors are key components of wearable devices.However,existing piezoelectric flexible strain sensors have certain limitations in weak signal monitoring due to their large modulus and low sensitivity.To solve this problem,the concept of Kirigami(paper-cutting)was introduced in this study to design the sensor structure.By comparing the Kirigami structures of different basic structures,the serpentine structure was determined as the basic configuration of the sensor.The serpentine structure not only provides excellent tensile properties,but also significantly improves the sensitivity of the sensor,which performs well in monitoring weak signals.On this basis,the adhesion properties of the flexible sensor were analyzed and tested,and the optimal ratio of the substrate was selected for preparation.In addition,a low-cost and rapid prototyping process for stretchable patches was established in this study.Using this technology,we prepared the sensor device and tested its performance.Finally,we successfully developed a flexible sensor with a sensitivity of 0.128 mV/μɛand verified its feasibility for wrist joint motion monitoring applications.This result opens up new avenues for the recovery care of tenosynovitis patients after surgery. 展开更多
关键词 flexible sensor piezoelectric film motion monitoring wearable sensor
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射频/微波MEMS Shunt开关的开启时间研究 被引量:1
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作者 龙永福 朱自强 +2 位作者 赖宗声 郭方敏 石艳玲 《电子学报》 EI CAS CSCD 北大核心 2002年第8期1204-1206,共3页
本文描述了射频 /微波MEMSshunt开关的理论模型和数值结论 .把可动薄膜的运动近似地模拟为作用在可动薄膜上的变静电力、弹力及空气阻力的单自由度阻尼振动 .给出了典型MEMSshunt开关开启时间的数学表达式及数值计算值 .根据可动膜厚、... 本文描述了射频 /微波MEMSshunt开关的理论模型和数值结论 .把可动薄膜的运动近似地模拟为作用在可动薄膜上的变静电力、弹力及空气阻力的单自由度阻尼振动 .给出了典型MEMSshunt开关开启时间的数学表达式及数值计算值 .根据可动膜厚、材料和几何结构参数不同 ,得到了典型的MEMSshunt开关的开启时间大约为 1~ 40μs.其计算值同文献 [4 ]的值相符得很好 .本文还讨论了该理论模型和数值计算的局限性 . 展开更多
关键词 MEMS Shunt开关 开启时间 理论模型 数值计算 微机电系统 可动薄膜
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