Kuo Hsuan-Lun, Chen Shih-Lun
Department of Engineering and System Science, National Tsing Hua University, Hsinchu 300044, Taiwan.
Department of Electronic Engineering, Chung Yuan Christian University, Taoyuan City 320317, Taiwan.
Micromachines (Basel). 2024 Jan 17;15(1):143. doi: 10.3390/mi15010143.
A 16-channel front-end readout chip for a radiation detector is designed for portable or wearable healthcare monitoring applications. The proposed chip reads the signal of the radiation detector and converts it into digital serial-out data by using a nonbinary successive approximation register (SAR) analog-to-digital converter (ADC) that has a 1-MS/s sampling rate and 10-b resolution. The minimum-to-maximum differential and integral nonlinearity are measured as -0.32 to 0.33 and -0.43 to 0.37 least significant bits, respectively. The signal-to-noise-and-distortion ratio and effective number of bits are 57.41 dB and 9.24 bits, respectively, for an input frequency of 500 kHz and a sampling rate of 1 MS/s. The SAR ADC has a 38.9-fJ/conversion step figure of merit at the sampling rate of 1 MS/s. The proposed chip can read input signals with peak currents ranging from 20 to 750 μA and convert the analog signal into a 10-bit serial-output digital signal. The input dynamic range is 2-75 pC. The resolution of the peak current is 208.3 nA. The chip, which has an area of 1.444 mm × 10.568 mm, is implemented using CMOS 0.18-μm 1P6M technology, and the power consumption of each channel is 19 mW. This design is suitable for wearable devices, especially biomedical devices.
一款用于辐射探测器的16通道前端读出芯片专为便携式或可穿戴医疗监测应用而设计。所提出的芯片读取辐射探测器的信号,并通过使用具有1 MS/s采样率和10位分辨率的非二进制逐次逼近寄存器(SAR)模数转换器(ADC)将其转换为数字串行输出数据。最小至最大差分非线性和积分非线性分别测量为-0.32至0.33和-0.43至0.37最低有效位。对于500 kHz的输入频率和1 MS/s的采样率,信噪失真比和有效位数分别为57.41 dB和9.24位。在1 MS/s的采样率下,SAR ADC的优值为38.9 fJ/转换步长。所提出的芯片可以读取峰值电流范围为20至750 μA的输入信号,并将模拟信号转换为10位串行输出数字信号。输入动态范围为2 - 75 pC。峰值电流分辨率为208.3 nA。该芯片面积为1.444 mm×10.568 mm,采用CMOS 0.18-μm 1P6M技术实现,每个通道的功耗为19 mW。这种设计适用于可穿戴设备,尤其是生物医学设备。