使用相位误差为 0.035% 的纯相位调制和像素内平均的电化学 CMOS 生物传感器阵列

Aditi Jain, Saeromi Chung, Eliah Aronoff Spencer, Drew A Hall
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引用次数: 0

摘要

本文介绍了一种基于电化学阻抗光谱(EIS)的 16×20 CMOS 生物传感器阵列,这是一种高灵敏度的无标记技术,可用于床旁快速疾病检测。这种高密度系统采用极性模式检测,在 5 kHz - 1 MHz 频率范围内进行仅相位的 EIS 测量。该设计的主要特点是采用了数字读出电路,确保了技术的可扩展性,同时在前端采用了负载补偿跨阻放大器,所有这些都集成在 140×140 μm2 的像素内。该架构实现了像素内数字化和累积,读出时间每增加 10 倍,信噪比就增加 10 dB。这款 3×4 mm2 芯片采用 180 nm CMOS 工艺制造,通过一个对占空比不敏感的相位检测器,在 100 kHz 时实现了 0.035% 的均方根相位误差,是像素内量化的最小单位面积芯片之一,达到了最先进的性能。
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An Electrochemical CMOS Biosensor Array Using Phase-Only Modulation With 0.035% Phase Error And In-Pixel Averaging.

This paper presents a 16×20 CMOS biosensor array based on electrochemical impedance spectroscopy (EIS), a highly sensitive label-free technique for rapid disease detection at point-of-care. This high-density system implements a polar-mode detection with phase-only EIS measurement over a 5 kHz - 1 MHz frequency range. The design features predominantly digital readout circuitry, ensuring scalability with technology, along with a load-compensated transimpedance amplifier at the front, all within a 140×140 μm2; pixel. The architecture enables in-pixel digitization and accumulation, which increases the SNR by 10 dB for each 10× increase in readout time. Implemented in a 180 nm CMOS process, the 3×4 mm2 chip achieves state-of-the-art performance with an rms phase error of 0.035% at 100 kHz through a duty-cycle insensitive phase detector and one of the smallest per pixel areas with in-pixel quantization.

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Table of Contents Erratum to “Design of an Extreme Low Cutoff Frequency Highpass Frontend for CMOS ISFET via Direct Tunneling Principle” IEEE Transactions on Biomedical Circuits and Systems Publication Information IEEE Circuits and Systems Society Information Guest Editorial: Ultralow-Power Technologies for Edge Computing in Human-Machine Interface Applications
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