A front-end ASIC with receive sub-array beamforming integrated with a 32 × 32 PZT matrix transducer for 3-D transesophageal echocardiography

Chao Chen, Zhao Chen, D. Bera, S. Raghunathan, M. Shabanimotlagh, Emile Noothout, Z. Chang, Jacco Ponte, C. Prins, H. Vos, J. Bosch, M. Verweij, N. Jong, M. Pertijs
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引用次数: 55

Abstract

This paper presents a power- and area-efficient front-end ASIC that is directly integrated with an array of 32 × 32 piezoelectric transducer elements to enable the next-generation miniature ultrasound probes for real-time 3-D transesophageal echocardiography. The 6.1 × 6.1 mm2 ASIC, implemented in a low-voltage 0.18 μm CMOS process, effectively reduces the number of cables required in the probe's narrow shaft by means of 96 sub-array beamformers, which have a compact element-matched layout and employ mismatch-scrambling to enhance the dynamic range. The ASIC consumes less than 230 mW while receiving and its functionality has been successfully demonstrated in a 3-D imaging experiment.
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一种集成了32 × 32 PZT矩阵换能器的接收子阵列波束形成前端ASIC,用于三维经食管超声心动图
本文介绍了一种功耗和面积效率高的前端ASIC,它直接集成了32 × 32压电传感器元件阵列,使下一代微型超声探头能够用于实时三维经食管超声心动图。采用低压0.18 μm CMOS工艺实现的6.1 × 6.1 mm2 ASIC,通过96个子阵列波束形成器,有效地减少了探头窄轴所需的电缆数量,这些波束形成器具有紧凑的元件匹配布局,并采用错匹配置乱来增强动态范围。ASIC在接收时的功耗低于230兆瓦,其功能已在3d成像实验中成功验证。
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