State Key Laboratory of Advanced Displays and Optoelectronics and Technologies, Department of Electronic and Computer Engineering, The Hong Kong University of Science and Technology, Hong Kong, 999077, China.
School of Electronic and Computer Engineering, Peking University, Shenzhen, 518055, China.
Adv Sci (Weinh). 2023 May;10(13):e2207683. doi: 10.1002/advs.202207683. Epub 2023 Mar 3.
The application of a versatile, low-temperature thin-film transistor (TFT) technology is presently described as the implementation on a flexible substrate of an analog front-end (AFE) system for the acquisition of bio-potential signals. The technology is based on semiconducting amorphous indium-gallium-zinc oxide (IGZO). The AFE system consists of three monolithically integrated constituent components: a bias-filter circuit with a bio-compatible low cut-off frequency of ≈1 Hz, a 4-stage differential amplifier offering a large gain-bandwidth product of ≈955 kHz, and an additional notch filter exhibiting over 30 dB suppression of the power-line noise. Respectively built using conductive IGZO electrodes with thermally induced donor agents and enhancement-mode fluorinated IGZO TFTs with exceptionally low leakage current, both capacitors and resistors with significantly reduced footprints are realized. Defined as the ratio of the gain-bandwidth product of an AFE system to its area, a record-setting figure-of-merit of ≈86 kHz mm is achieved. This is about an order of magnitude larger than the < 10 kHz mm of the nearest benchmark. Requiring no supplementary off-substrate signal-conditioning components and occupying an area of ≈11 mm , the stand-alone AFE system is successfully applied to both electromyography and electrocardiography (ECG).
目前,一种多功能、低温薄膜晶体管(TFT)技术已被应用于在柔性衬底上实现生物电位信号采集的模拟前端(AFE)系统。该技术基于半导体非晶态铟镓锌氧化物(IGZO)。AFE 系统由三个单片集成的组成部分组成:一个具有约 1 Hz 低截止频率的偏置滤波器电路,一个具有约 955 kHz 大增益带宽积的 4 级差分放大器,以及一个具有超过 30 dB 电源噪声抑制的附加陷波滤波器。分别使用具有热致施主剂的导电 IGZO 电极和具有极低漏电流的增强模式氟化 IGZO TFT 制造,实现了具有显著减小足迹的电容和电阻。定义为 AFE 系统的增益带宽积与其面积之比,实现了约 86 kHz·mm 的创纪录的品质因数。这大约比最近的基准值 <10 kHz·mm 大一个数量级。该独立的 AFE 系统无需额外的基板外信号调理元件,占地面积约为 11 mm²,成功应用于肌电图和心电图(ECG)。