IEEE Trans Biomed Circuits Syst. 2017 Dec;11(6):1324-1334. doi: 10.1109/TBCAS.2017.2727219. Epub 2017 Aug 24.
Recent advances in electronics and electrochemical sensors have led to an emerging class of next generation wearables, detecting analytes in biofluids such as perspiration. Most of these devices utilize ion-selective electrodes (ISEs) as a detection method; however, ion-sensitive field-effect transistors (ISFETs) offer a solution with improved integration and a low power consumption. This work presents a wearable, thermoelectrically powered system composed of an application-specific integrated circuit (ASIC), two commercial power management integrated circuits and a network of commercial thermoelectric generators (TEGs). The ASIC is fabricated in 0.35 m CMOS and contains an ISFET array designed to read pH as a current, a processing module which averages the signal to reduce noise and encodes it into a frequency, and a transmitter. The output frequency has a measured sensitivity of 6 to 8 kHz/pH for a pH range of 7-5. It is shown that the sensing array and processing module has a power consumption 6 W and, therefore, can be entirely powered by body heat using a TEG. Array averaging is shown to reduce noise at these low power levels to 104 V (input referred integrated noise), reducing the minimum detectable limit of the ASIC to 0.008 pH units. The work forms the foundation and proves the feasibility of battery-less, on-body electrochemical for perspiration analysis in sports science and healthcare applications.
最近电子学和电化学传感器的发展带来了新一代可穿戴设备的出现,这些设备可以检测生物流体(如汗液)中的分析物。这些设备中的大多数都使用离子选择性电极(ISE)作为检测方法;然而,离子敏感场效应晶体管(ISFET)提供了一种改进的集成和低功耗的解决方案。本工作提出了一种由专用集成电路(ASIC)、两个商用电源管理集成电路和商用热电发生器(TEG)网络组成的可穿戴、热电驱动系统。该 ASIC 采用 0.35μm CMOS 工艺制造,包含一个设计用于读取 pH 值的 ISFET 阵列,一个用于平均信号以降低噪声并将其编码为频率的处理模块,以及一个发射器。输出频率在 7-5 的 pH 范围内具有 6 至 8 kHz/pH 的测量灵敏度。结果表明,传感阵列和处理模块的功耗为 6 W,因此可以完全由 TEG 利用人体热量供电。结果表明,在这些低功耗水平下,阵列平均可将噪声降低到 104 V(输入参考集成噪声),从而将 ASIC 的最小可检测极限降低到 0.008 pH 单位。这项工作为无电池、体内电化学在运动科学和医疗保健应用中的汗液分析奠定了基础并证明了其可行性。