用于生物医学应用的独立的单芯片安培测量平台

Markus Haberler, I. Siegl, Christian Zajc, Carolin Kollegger, C. Steffan, T. Maier, Loric Petruzzi, G. Mutinati, R. Hainberger, G. Holweg, M. Auer
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引用次数: 0

摘要

提出了一种独立的RFID电化学测量平台,该平台由具有电化学传感器和储能元件接口能力的单片系统(SoC)组成。13.56 MHz的RFID接口可实现双向无线通信和无线电力传输。片上电路允许SoC从射频场收集能量到外部能量存储元件。这一功能使所提出的SoC成为同类系统中第一个实现无需预充电储能元件即可独立运行的系统。由DAC、多工作电极恒电位器和ADC组成的传感器接口可实现双向电流传感。在电化学分析过程中,SoC在2.9 v电源下的功耗小于83µA。对独立式测量平台原型的实验调查表明,所达到的精度可与专业实验室设备相媲美,从而为该平台在即时诊断(PoC)中的使用铺平了道路。
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A Self-Contained, Single-Chip Amperometric Measurement Platform for Biomedical Applications
A self-contained RFID electrochemical measurement platform consisting of a single System-on-Chip (SoC) with interface capabilities to electrochemical sensors and energy storage elements is presented. A 13.56 MHz RFID interface enables two-way wireless communication and wireless power transfer. An on-chip circuit allows the SoC to harvest energy from the RF field into external energy storage elements. This functionality makes the proposed SoC the first implementation among similar systems to enable self-contained operation without the need for pre-charged energy storage elements. A sensor interface consisting of a DAC, a multi-working-electrode potentiostat and an ADC enables bidirectional current sensing. During the electrochemical analysis, the SoC consumes less than 83 µA from a 2.9-V supply. Experimental investigations on a prototype of the self-contained measurement platform suggest that the achieved accuracy is comparable to that of professional laboratory equipment, thus paving the way for the use of the platform in Point-of-Care (PoC) diagnostics.
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