Wireless capsule technology: Remotely powered improved high-sensitive barometric endoradiosonde

V. Annese, Christopher Martin, D. Cumming, D. Venuto
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引用次数: 7

Abstract

In this paper an improved design of an RFID powered swallowable barometric endoradiosonde (ERS) is presented. The ERS consists of a micro fabricated capacitive sensor printed in gold on Polycaprolactone (PCL) on which a transponder chip design in 0.35μm AMS technology is in-plane bounded to the PCL substrate. The implantable or inside the body, transponder (tag) is powered by the external reader at 900MHz through inductively coupled antennas. The tag performs the capacitance to frequency conversion and transmits data back to the reader using load-shift keying (LSK) modulation. The ERS can measure the sensor output frequency with an INL error of 0.4%, sensitivity (Δf/ΔP) of -6.12MHz/kPa, occupies a volume of 1mm3 (transponder only), consumes, 400μW and 360μW for, respectively, dynamic and static power. The sensor has an accuracy of ± 0.1kPa, works in the pressure range of 0-1.99kPa (0-15mmHg). The readout circuit has a ±1.84kHz resolution.
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无线胶囊技术:远程供电改进的高灵敏度气压内啡辐射探空仪
本文提出了一种改进的射频识别供电的可吞式气压内啡波探空仪(ERS)设计。该系统由印刷在聚己内酯(PCL)上的镀金微制造电容式传感器组成,在该传感器上设计了一个0.35μm AMS技术的应答器芯片,该芯片与PCL衬底平面内结合。可植入体内的应答器(标签)通过感应耦合天线以900MHz的频率由外部读取器供电。该标签执行电容到频率的转换,并使用负载移位键控(LSK)调制将数据传输回阅读器。ERS测量传感器输出频率的INL误差为0.4%,灵敏度(Δf/ΔP)为-6.12MHz/kPa,体积为1mm3(仅应答器),动态功耗为400μW,静态功耗为360μW。传感器精度为±0.1kPa,工作压力范围为0-1.99kPa (0-15mmHg)。读出电路的分辨率为±1.84kHz。
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