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A Continuous-Time Delta-Sigma Modulator for Biomedical Ultrasound Beamformer Using Digital ELD Compensation and FIR Feedback

机译:利用数字ELD补偿和FIR反馈的生物医学超声波束形成器连续时间Delta-Sigma调制器

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This paper presents the design of a continuous-time modulator (CTDSM) to be used in an ultrasound beamformer for biomedical imaging. To achieve better resolution, the prototype modulator operates at 1.2 GHz. It incorporates a digital excess loop delay (ELD) compensation to replace the active adder in front of the internal quantizer. A digitally controlled reference-switching matrix, combined with the data-weighted averaging (DWA) technique, results in a delay-free feedback path. A multi-bit FIR feedback DAC, along with its compensation path, is used to achieve lower clock jitter sensitivity and better loop filter linearity. The modulator achieves 79.4 dB dynamic range, 77.3 dB SNR, and 74.3 dB SNDR over a 15 MHz signal bandwidth. Fabricated in a 65 nm CMOS process, the core modulator occupies an area of only 0.16 and dissipates 6.96 mW from a 1 V supply. A 58.6 fJ/conversion-step figure of merit is achieved.
机译:本文介绍了一种用于生物医学成像的超声束形成器中的连续时间调制器(CTDSM)的设计。为了获得更好的分辨率,原型调制器的工作频率为1.2 GHz。它集成了数字超额环路延迟(ELD)补偿,以取代内部量化器前面的有源加法器。数字控制的参考开关矩阵与数据加权平均(DWA)技术相结合,可形成无延迟的反馈路径。多位FIR反馈DAC及其补偿路径用于实现较低的时钟抖动灵敏度和更好的环路滤波器线性度。调制器在15 MHz的信号带宽上可实现79.4 dB的动态范围,77.3 dB的SNR和74.3 dB的SNDR。核心调制器采用65 nm CMOS工艺制造,仅占0.16面积,从1 V电源消耗的功率为6.96 mW。实现了58.6 fJ /转换步骤的品质因数。

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