Yin Yue, Zhang Xinbing, Feng Ziting, Qi Haobo, Lu Haodong, He Jiayu, Jin Chaoqi, Luo Yihao
School of Microelectronics, Northwestern Polytechnical University, 1 Dongxiang Road, Chang'an District, Xi'an 710129, China.
Micromachines (Basel). 2024 Aug 30;15(9):1108. doi: 10.3390/mi15091108.
In this paper, a rail-to-rail transconductance stable and enhanced ultra-low-voltage operational transconductance amplifier (OTA) is proposed for electrocardiogram (ECG) signal processing. The variation regularity of the bulk transconductance of pMOS and nMOS transistors and the cancellation mechanism of two types of transconductance variations are revealed. On this basis, a transconductance stabilization and enhancement technique is proposed. By using the "current-reused and transconductance-boosted complementary bulk-driven pseudo-differential pairs" structure, the bulk-driven pseudo-differential pair during the input common-mode range (ICMR) is stabilized and enhanced. The proposed OTA based on this technology is simulated using the TSMC 0.18 μm process in a Cadence environment. The proposed OTA consumes a power below 30 nW at a 0.4 V voltage supply with a DC gain of 54.9 dB and a gain-bandwidth product (GBW) of 14.4 kHz under a 15 pF capacitance load. The OTA has a high small signal figure-of-merit (FoM) of 7410 and excellent common-mode voltage () stability, with a transconductance variation of about 1.35%. Based on a current-scaling version of the proposed OTA, an OTA-C low-pass filter (LPF) for ECG signal processing with stability is built and simulated. With a -3 dB bandwidth of 250 Hz and a power consumption of 20.23 nW, the filter achieves a FoM of 3.41 × 10, demonstrating good performance.
本文提出了一种用于心电图(ECG)信号处理的轨到轨跨导稳定且增强的超低压运算跨导放大器(OTA)。揭示了pMOS和nMOS晶体管体跨导的变化规律以及两种跨导变化的抵消机制。在此基础上,提出了一种跨导稳定和增强技术。通过采用“电流复用和跨导增强的互补体驱动伪差分对”结构,在输入共模范围(ICMR)内的体驱动伪差分对得到了稳定和增强。基于该技术提出的OTA在Cadence环境中采用台积电0.18μm工艺进行了仿真。所提出的OTA在0.4V电源电压下功耗低于30nW,在15pF电容负载下直流增益为54.9dB,增益带宽积(GBW)为14.4kHz。该OTA具有7410的高小信号品质因数(FoM)和出色的共模电压()稳定性,跨导变化约为1.35%。基于所提出的OTA的电流缩放版本,构建并仿真了一个用于ECG信号处理且具有稳定性的OTA-C低通滤波器(LPF)。该滤波器-3dB带宽为250Hz,功耗为20.23nW,FoM为3.41×10,表现出良好的性能。