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A mixed-signal multiplexing system for cable-count reduction in ultrasound probes

机译:用于减少超声探头电缆数量的混合信号多路复用系统

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This paper presents an approach to time-multiplexing multiple receive signals in a miniature ultrasound probe onto a single micro-coaxial cable. The resulting reduction in the number of receive cables alleviates the design of high-element-count endoscope- or catheter-based ultrasound probes. A prototype multiplexing system is presented that employs a custom multiplexing chip that uses current-mode drivers to combine four receive channels, sampled at 25 MHz each, on a single 3-m micro-coaxial cable. On the system-side of the cable, a transimpedance amplifier turns the multiplexed signal back into a voltage, after which it is digitized and equalized to correct for channel-to-channel crosstalk due to non-idealities of the cable. The chip has been implemented in a 0.18 μm CMOS process and consumes less than 1 mW per input channel. Experimental results show that the system can successfully convey 6 MHz Gaussian-shaped pulses applied to the four input channels of the multiplexing chip to the system with a channel-to-channel crosstalk below -31 dB.
机译:本文提出了一种在微型超声探头中将多个接收信号进行时分复用到单根微同轴电缆上的方法。从而减少了接收电缆的数量,从而减轻了高元素数内窥镜或基于导管的超声探头的设计。提出了一个原型多路复用系统,该系统采用定制的多路复用芯片,该芯片使用电流模式驱动器在一条3 m微型同轴电缆上组合四个接收通道,每个接收通道的采样频率分别为25 MHz。在电缆的系统侧,跨阻放大器将多路复用的信号转换回电压,然后对其进行数字化和均衡处理,以校正由于电缆不理想引起的通道间串扰。该芯片已采用0.18μmCMOS工艺实现,每个输入通道的功耗不到1 mW。实验结果表明,该系统可以将施加到多路复用芯片的四个输入通道的6 MHz高斯形脉冲成功地传送到系统,通道间串扰低于-31 dB。

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