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A 1.5-mm diameter single-chip CMOS front-end system with transmit-receive capability for CMUT-on-CMOS forward-looking IVUS

机译:直径为1.5mm的单芯片CMOS前端系统,具有收发功能,适用于CMUT-on-CMOS前瞻性IVUS

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Integration of receive and transmit electronics and transducer array elements on a single chip is critical for successful implementation of a highly-flexible forward-looking (FL) IVUS imaging catheter. Single-chip integration reduces the interconnect complexity significantly, and enables the ultimate miniaturization of IVUS arrays. Here we describe a single-chip FL-IVUS system based on a front-end IC implemented in 0.35-µm CMOS that is integrated with a 1.4-mm diameter CMUT array using CMUT-on-CMOS technology. The IC incorporates a pulser capable of generating 25-V pulses and a low-noise receiver transimpedance amplifier dedicated to each of the 56 Tx and 48 Rx CMUT array elements, respectively. The chip also includes a digital control circuitry that is designed to synchronize transmitting and receiving sequence during the data acquisition. All of the active circuitry fits into a size of 1.5-mm diameter silicon donut shape with a 430-µm gap left inside for a guide wire. The single-chip FL-IVUS system requires only 13 external connections and provides 4 parallel outputs. The average power consumption of the chip is reduced to 20 mW by biasing off the unused receive amplifiers using the digital logic. Characterization results of the low-noise preamplifiers in the IC after monolithic integration with the FL-IVUS CMUT array are presented. Successful implementation of the single-chip FL-IVUS system is also demonstrated through a volumetric imaging experiment.
机译:接收和发送电子设备以及换能器阵列元件集成在单个芯片上对于成功实施高度灵活的前视(FL)IVUS成像导管至关重要。单芯片集成可显着降低互连复杂性,并实现IVUS阵列的最终小型化。在这里,我们描述了一种基于前端IC的单芯片FL-IVUS系统,该系统采用0.35 µm CMOS实现,并使用CMUT-on-CMOS技术与直径为1.4 mm的CMUT阵列集成在一起。该IC包含一个能够产生25V脉冲的脉冲发生器和一个分别专用于56个Tx和48个Rx CMUT阵列元件中的每一个的低噪声接收器跨阻放大器。该芯片还包括一个数字控制电路,该电路设计用于在数据采集过程中同步发送和接收序列。所有的有源电路都适合直径为1.5毫米的硅甜甜圈形状,内部留有430微米的间隙用于导线。单芯片FL-IVUS系统仅需要13个外部连接,并提供4个并行输出。通过使用数字逻辑偏置未使用的接收放大器,可以将芯片的平均功耗降低到20 mW。给出了与FL-IVUS CMUT阵列进行单片集成后IC中低噪声前置放大器的表征结果。体积成像实验还证明了单芯片FL-IVUS系统的成功实施。

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