Design of phase control and drive system for phase-controlled transducer based on high intensity focused ultrasound

Xinyu Guo, Jinxu Tao, Jiaqi Wang
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Abstract

In recent years, the multi-element phase-controlled transducer used in high intensity focused ultrasound (HIFU) treatment have attracted the attention of many researchers due to their advantages such as adjustable focal length. The phase control and drive system of the multi-element phase-controlled transducer is one of the key factors that determine whether it can be used in clinical treatment. In this paper, a field programmable logic gate array (FPGA), a high-speed digital-to-analog converter and an integrated power amplifier are used to design a phase control and drive system for multi-element phase-controlled transducer for high intensity focused ultrasound treatment. The system has functions of multi-channel output and real-time transmission of delay data of each channel by the personal computer. The actual measurement results show that the peak-to-peak value of the output sine wave signal of each channel of the system can reach 35.3V, the phase resolution can reach 1ns, the delay error is less than 1ns, and the output signal has no high-order harmonic interference, which meets the phase resolution and driving requirements of multi-element phase-controlled transducer applied in clinical treatment.
基于高强度聚焦超声的相位控制换能器的相位控制与驱动系统设计
近年来,用于高强度聚焦超声(HIFU)治疗的多元件相位控制换能器因其焦距可调等优点而受到许多研究者的关注。多元件相控换能器的相位控制与驱动系统是决定其能否应用于临床治疗的关键因素之一。本文采用现场可编程逻辑门阵列(FPGA)、高速数模转换器和集成功率放大器,设计了用于高强度聚焦超声治疗的多元相控换能器的相位控制和驱动系统。该系统具有多通道输出和各通道延时数据由个人计算机实时传输的功能。实际测量结果表明,系统各通道输出正弦波信号的峰峰值可达35.3V,相位分辨率可达1ns,延迟误差小于1ns,输出信号无高次谐波干扰,满足临床治疗中应用的多元相控换能器的相位分辨率和驱动要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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