IEEE Trans Biomed Circuits Syst. 2023 Oct;17(5):1097-1110. doi: 10.1109/TBCAS.2023.3294560. Epub 2023 Nov 21.
This article presents a chip designed for wireless intra-cardiac monitoring systems. The design consists of a three-channel analog front-end, a pulse-width modulator featuring output-frequency offset and temperature calibration, and inductive data telemetry. By employing a resistance boosting technique in the instrumentation amplifier feedback, the pseudo-resistor exhibits lower non-linearity, leading to a total harmonic distortion of below 0.1%. Furthermore, the boosting technique enhances the feedback resistance, leading to a reduction in the size of the feedback capacitor and, consequently, the overall size. To make the modulator's output frequency resilient to temperature and process changes, coarse and fine-tuning algorithms are used. The front-end channel is capable of extracting the intra-cardiac signal with an effective number of bits of 8.9, while exhibiting an input-referred noise of less than 2.7 μV, and consuming 200 nW per channel. The front-end output is encoded by an ASK-PWM modulator, which drives an on-chip transmitter at 13.56 MHz. The proposed System-on-Chip (SoC) is fabricated in a 0.18 μm standard CMOS technology and consumes 4.5 μW while occupying 1.125 mm.
本文提出了一种用于无线心内监测系统的芯片设计。该设计包括一个三通道模拟前端、一个具有输出频率偏移和温度校准功能的脉宽调制器以及感应数据遥测。通过在仪表放大器反馈中采用电阻升压技术,伪电阻表现出更低的非线性,总谐波失真低于 0.1%。此外,升压技术增强了反馈电阻,从而减小了反馈电容器的尺寸,进而减小了整体尺寸。为了使调制器的输出频率对温度和工艺变化具有弹性,采用了粗调和微调算法。前端通道能够以 8.9 的有效位数提取心内信号,同时输入参考噪声小于 2.7 μV,每个通道消耗 200 nW。前端输出由 ASK-PWM 调制器进行编码,该调制器驱动 13.56 MHz 的片上发射器。该片上系统 (SoC) 采用 0.18 μm 标准 CMOS 技术制造,消耗 4.5 μW,占用面积为 1.125 mm²。