NIH Transducer Resource Center and Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, USA.
NIH Transducer Resource Center and Department of Biomedical Engineering, University of Southern California, Los Angeles, CA, USA.
Ultrasonics. 2014 Mar;54(3):754-8. doi: 10.1016/j.ultras.2013.10.010. Epub 2013 Oct 23.
High performance limiters are described in this paper for applications in high frequency ultrasound imaging systems. Limiters protect the ultrasound receiver from the high voltage (HV) spikes produced by the transmitter. We present a new bipolar power transistor (BPT) configuration and compare its design and performance to a diode limiter used in traditional ultrasound research and one commercially available limiter. Limiter performance depends greatly on the insertion loss (IL), total harmonic distortion (THD) and response time (RT), each of which will be evaluated in all the limiters. The results indicated that, compared with commercial limiter, BPT-based limiter had less IL (-7.7 dB), THD (-74.6 dB) and lower RT (43 ns) at 100 MHz. To evaluate the capability of these limiters, they were connected to a 100 MHz single element transducer and a two-way pulse-echo test was performed. It was found that the -6 dB bandwidth and sensitivity of the transducer using BPT-based limiter were better than those of the commercial limiter by 22% and 140%, respectively. Compared to the commercial limiter, BPT-based limiter is shown to be capable of minimizing signal attenuation, RT and THD at high frequencies and is thus suited for high frequency ultrasound applications.
本文介绍了一种用于高频超声成像系统的高性能限幅器。限幅器可保护超声接收器免受发射器产生的高压(HV)尖峰的影响。我们提出了一种新的双极功率晶体管(BPT)结构,并将其设计和性能与传统超声研究中使用的二极管限幅器和一种商业可用的限幅器进行了比较。限幅器的性能在很大程度上取决于插入损耗(IL)、总谐波失真(THD)和响应时间(RT),我们将在所有限幅器中评估这三个参数。结果表明,与商业限幅器相比,基于 BPT 的限幅器在 100MHz 时具有更低的 IL(-7.7dB)、THD(-74.6dB)和更低的 RT(43ns)。为了评估这些限幅器的性能,我们将它们连接到一个 100MHz 的单阵元换能器上,并进行了双向脉冲回波测试。结果发现,使用基于 BPT 的限幅器的换能器的-6dB 带宽和灵敏度比商业限幅器分别提高了 22%和 140%。与商业限幅器相比,基于 BPT 的限幅器能够在高频下最小化信号衰减、RT 和 THD,因此适用于高频超声应用。