A low-power wireless nano-potentiostat for biomedical applications with ISO 18000-3 interface in 0.35 μm CMOS

T. Fedtschenko, A. Utz, Alexander Stanitzki, A. Hennig, André Lüdecke, Norbert Haas, R. Kokozinski
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引用次数: 1

Abstract

This article presents a new configurable wireless sensor system that can be used for biochemical and biomedical measurements, e.g. for monitoring the glucose level in blood. The sensor systems consists of an integrated nano-potentiostat which performs the actual measurements and an ISO 18000-3 compliant transponder module which allows wireless telemetric data transmission and also powers the whole sensor system. The two-chip sensor system was implemented in a 0.35 μm CMOS technology. The architecture and implementation details of both ASICs are presented in this article. A demonstrator system has been manufactured in combination with a chronoamperometric glucose sensor which allows the measurement of the glucose level in tear fluid. For a range of sensor currents from 0.1 μA to 10 μA the potentiostat achieved an accuracy of more than 5 % at a total power dissipation of less than 600 μW. With the realized antenna geometry a wireless communication distance of more than 7 cm has been achieved.
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一种低功耗无线纳米恒电位器,用于生物医学应用,具有ISO 18000-3接口,0.35 μm CMOS
本文介绍了一种新的可配置无线传感器系统,可用于生化和生物医学测量,例如监测血液中的葡萄糖水平。传感器系统包括一个集成的纳米恒电位器,它执行实际测量和一个符合ISO 18000-3标准的应答器模块,它允许无线遥测数据传输,也为整个传感器系统供电。该双芯片传感器系统采用0.35 μm CMOS技术实现。本文介绍了这两种asic的体系结构和实现细节。一个演示系统已经制造,结合计时电流葡萄糖传感器,允许测量泪液中的葡萄糖水平。在0.1 μA到10 μA的传感器电流范围内,恒电位器在总功耗小于600 μW的情况下实现了超过5%的精度。利用所实现的天线几何结构,实现了7cm以上的无线通信距离。
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