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High-Resolution All-Digital Transmit Beamformer for High-Frequency and Wearable Ultrasound Imaging Systems

机译:适用于高频和可穿戴超声成像系统的高分辨率全数字发射波束形成器

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In this article, we present a high delay resolution and all-digital transmit-beamforming circuit for use in high-frequency and wearable ultrasound imaging systems. The proposed transmit beamformer comprises an all-digital delay-locked loop (ADDLL), a cycle-based beamforming delay line (CBDL), and a pulse controller. ADDLL can provide specific digital control code for the CBDL to generate stable and suitable delays to excite array transducer elements without variations in process, voltage, and temperature. CBDL not only provides a finer delay resolution for high-frequency ultrasound imaging systems but also requires a few delay cells to maintain the duty cycle of long prorogation signals, thereby significantly reducing hardware costs. The pulse controller can adjust the number and width of output pulses to meet the requirements of different ultrasonic transducers and Doppler ultrasound color imaging. The proposed transmit beamformer uses a 0.18- mu m CMOS technology for a 30-MHz high-frequency linear array with 256 elements, and the focusing depth is from 3.5 to 8.1 mm. The measurement results indicate that the proposed transmit-beamforming design can achieve a maximum time delay of 562.6 ns with an average time resolution of 535 ps. The proposed design offers a smaller volume and finer delay resolution, and it is highly suitable for wearable ultrasound imaging systems.
机译:在本文中,我们提出了一种高延迟分辨率和全数字发射波束形成电路,用于高频和可穿戴超声成像系统。提出的发射波束形成器包括全数字延迟锁定环(ADDLL),基于周期的波束形成延迟线(CBDL)和脉冲控制器。 ADDLL可以为CBDL提供特定的数字控制代码,以生成稳定且合适的延迟来激发阵列换能器元件,而不会改变过程,电压和温度。 CBDL不仅为高频超声成像系统提供了更好的延迟分辨率,而且还需要一些延迟单元来维持长授权信号的占空比,从而显着降低了硬件成本。脉冲控制器可以调节输出脉冲的数量和宽度,以满足不同超声换能器和多普勒超声彩色成像的要求。拟议中的发射波束形成器采用0.18微米CMOS技术用于具有256个元件的30 MHz高频线性阵列,聚焦深度为3.5至8.1 mm。测量结果表明,所提出的发射波束形成设计可以实现562.6 ns的最大时间延迟,平均时间分辨率为535 ps。提出的设计提供了更小的体积和更精细的延迟分辨率,并且非常适合可穿戴超声成像系统。

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