首页> 外文会议>2018 IEEE/MTT-S International Microwave Symposium >Expand Horizons of Microfluidic Systems: An Inkjet Printed Flexible Energy Autonomous Micropump System for Wearable and IoT Microfluidic Applications
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Expand Horizons of Microfluidic Systems: An Inkjet Printed Flexible Energy Autonomous Micropump System for Wearable and IoT Microfluidic Applications

机译:扩展微流体系统的视野:适用于可穿戴和物联网微流体应用的喷墨打印柔性能量自主微泵系统

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A novel inkjet printed flexible energy autonomous micropump system is proposed to provide actuation forces and open new applications for microfluidic such as smart skin and IoT. The broadband energy harvester is proposed to harvest nearfield two-way talk radio at 464.5 MHz and far-field UHF RFID reader from 850 MHz to 950 MHz simultaneously. The nearfield energy harvesting can support high power at certain time to overcome IC cold start and the far-field energy harvesting can harvest power all the time to maintain the function. The proposed broadband rectifier can be operated from 300 MHz to over 1200 MHz which equals to over 120 % fractional bandwidth. The RF-DC conversion efficiency is about 50 % while 20 dBm input power is used and the load impedance isn$mathbf{125} Omega$n. The duty cycle for the charging and discharging of the far-field energy harvesting is 13 %. The proof-of-concept system is built and the micropump is driven successfully by both near-field and far-field energy harvesting.
机译:提出了一种新颖的喷墨打印的柔性能量自主微泵系统,以提供驱动力并为微流体(例如智能皮肤和物联网)打开新的应用程序。建议使用宽带能量收集器来同时收集464.5 MHz的近场双向通话无线电和850 MHz至950 MHz的远场UHF RFID阅读器。近场能量收集可以在特定时间支持大功率以克服IC冷启动,而远场能量收集则可以始终收集功率以维持功能。所建议的宽带整流器可以在300 MHz至1200 MHz以上的频率下工作,这相当于120%的分数带宽。当使用20 dBm输入功率且负载阻抗为$mathbf{125} Omega $ n。远场能量收集的充电和放电占空比为13%。建立了概念验证系统,并且通过近场和远场能量收集成功驱动了微型泵。

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