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首页> 外文期刊>IEEE transactions on biomedical circuits and systems >A Super-Sensitivity Photoacoustic Receiver System-on-Chip Based on Coherent Detection and Tracking
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A Super-Sensitivity Photoacoustic Receiver System-on-Chip Based on Coherent Detection and Tracking

机译:基于相干检测和跟踪的片上超灵敏度光声接收器系统

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摘要

Photoacoustic (PA) imaging is becoming more attractive because it can obtain high-resolution and high-contrast images through merging the merits of optical and acoustic imaging. High sensitivity receiver is required in deep in-vivo PA imaging due to detecting weak and noisy ultrasound signal. A novel photoacoustic receiver system-on-chip (SoC) with coherent detection (CD) based on the early-and-late acquisition and tracking is developed and first fabricated. In this system, a weak PA signal with negative signal-to-noise-ratio (SNR) can be clearly extracted when the tracking loop is locked to the input. Consequently, the output SNR of the receiver is significantly improved by about 29.9 dB than input one. For the system, a high dynamic range (DR) and high sensitivity analog front-end (AFE), a multiplier, a noise shaping (NS) successive-approximation (SAR) analog-to-digital convertor (ADC), a digital-to-analog convertor (DAC) and integrated digital circuits for the proposed system are implemented on-chip. Measurement results show that the receiver achieves 0.18 mu Vrms sensitivity at the depth of 1 cm with 1 mJ/cm(2) laser output fluence. The contrast-to-noise (CNR) of the imaging is improved by about 22.2 dB. The area of the receiver is 5.71 mm(2), and the power consumption of each channel is about 28.8 mW with 1.8 V and 1 V power supply on the TSMC 65 nm CMOS process.
机译:光声(PA)成像变得更具吸引力,因为它可以通过合并光学和声学成像的优点来获得高分辨率和高对比度图像。由于检测到弱和嘈杂的超声信号,在深度体内PA成像中需要高灵敏度接收器。开发并首先制造了一种基于早期和追踪和跟踪的相干检测(CD)的芯片接收器系统(SOC)。在该系统中,当跟踪环锁定到输入时,可以清楚地提取具有负信噪比(SNR)的弱PA信号。因此,接收器的输出SNR显着提高了约29.9dB的输入。对于系统,高动态范围(DR)和高灵敏度模拟前端(AFE),乘法器,噪声整形(NS)连续近似(SAR)模数转换器(ADC),一个数字 - 用于所提出的系统的模拟转换器(DAC)和集成数字电路在片上实现。测量结果表明,接收器在1厘米的深度达到0.18μmVrms灵敏度,1 mJ / cm(2)激光输出量。成像的对比度(CNR)提高了约22.2dB。接收器的面积为5.71毫米(2),每个通道的功耗约为28.8 MW,TSMC 65nm CMOS工艺上的1.8 V和1 V电源。

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