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A signal processing ASIC for ISFET-based chemical sensors

机译:用于基于ISFET的化学传感器的信号处理ASIC

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With the advantages of small size, reliability, rapid response, compatibility to standard CMOS technology and on-chip signal processing, Ion-Sensitive Field Effect Transistor (ISFET)-based transducers are increasingly being applied in physiological data acquisition and environment monitoring. This paper presents a signal processing Application Specific Integrated Circuit (ASIC) and a discrete temperature compensation chip design of a potentiometric ISFET-based chemical sensor. To assure the measurement of a correct pH value, the two-point calibration circuitry based on the response of standard pH 4 and 7 buffer solution has been implemented by using Algorithmic State Machine hardware algorithms. For battery power consideration, the proposed signal processing ASIC consisting of low voltage (3 V) mixed signal modules has been developed and fabricated in a 0.5 μm CMOS technology. The results demonstrate small differences of pH response of ISFET's operating with and without ASIC device, i.e. only the order of 0.1 mV/pH with respect to sensitivity. Furthermore, using the temperature compensating circuitry reduces the ISFET temperature coefficient to +0.15 mV/℃, and hence results in a lower pH value variation of — 0.0023 pH/℃. It was shown that more accurate pH measurement can be concluded with the proposed ASIC and V_T extractor circuitry.
机译:具有体积小,可靠性高,响应速度快,与标准CMOS技术兼容以及片上信号处理等优点,基于离子敏感场效应晶体管(ISFET)的传感器正越来越多地用于生理数据采集和环境监测。本文提出了一种基于ISFET的电位传感器的信号处理专用集成电路(ASIC)和离散温度补偿芯片设计。为了确保测量正确的pH值,已经通过使用算法状态机硬件算法实现了基于标准pH 4和7缓冲溶液的两点校准电路。考虑到电池电量,已开发并采用0.5μmCMOS技术制造了由低压(3 V)混合信号模块组成的信号处理ASIC。结果证明了在有和没有ASIC器件的情况下ISFET的pH响应的微小差异,即灵敏度方面仅为0.1 mV / pH。此外,使用温度补偿电路可将ISFET温度系数降低至+0.15 mV /℃,因此可降低-0.0023 pH /℃的pH值。结果表明,使用建议的ASIC和V_T提取器电路可以得出更准确的pH测量结果。

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