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Circuit design and simulation of a transmit beamforming ASIC for high-frequency ultrasonic imaging systems

机译:高频超声成像系统发射波束形成ASIC的电路设计和仿真

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This paper describes the design of a programmable transmit beamformer application-specific integrated circuit (ASIC) with 8 channels for ultrasound imaging systems. The system uses a 20-MHz reference clock. A digital delay-locked loop (DLL) was designed with 50 variable delay elements, each of which provides a clock with different phase from a single reference. Two phase detectors compare the phase difference of the reference clock with the feedback clock, adjusting the delay of the delay elements to bring the feedback clock signal in phase with the reference clock signal. Two independent control voltages for the delay elements ensure that the mark space ratio of the pulses remain at 50%. By combining a 10- bit asynchronous counter with the delays from the DLL, each channel can be programmed to give a maximum time delay of 51 ;C;s with 1 ns resolution. It can also give bursts of up to 64 pulses. Finally, for a single pulse, it can adjust the pulse width between 9 ns and 100 ns by controlling the current flowing through a capacitor in a one-shot circuit, for use with 40-MHz and 5-MHz transducers, respectively.
机译:本文介绍了用于超声成像系统的具有8个通道的可编程发射波束形成器专用集成电路(ASIC)的设计。该系统使用20 MHz参考时钟。设计了一个具有50个可变延迟元件的数字延迟锁定环(DLL),每个延迟元件均提供与单个参考相位不同的时钟。两个鉴相器将参考时钟的相位差与反馈时钟进行比较,从而调整延迟元件的延迟,以使反馈时钟信号与参考时钟信号同相。延迟元件的两个独立控制电压可确保脉冲的标记空间比率保持在50%。通过将10位异步计数器与DLL的延迟相结合,可以对每个通道进行编程,以提供1 ns分辨率的最大时间延迟51C。它还可以提供多达64个脉冲的脉冲串。最后,对于单个脉冲,它可以通过控制单脉冲电路中流过电容器的电流(分别用于40 MHz和5 MHz的传感器),在9 ns和100 ns之间调整脉冲宽度。

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