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Towards a Reduced-Wire Interface for CMUT-Based Intravascular Ultrasound Imaging Systems

机译:面向基于CMUT的血管内超声成像系统的简化线接口

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Having intravascular ultrasound (IVUS) imaging capability on guide wires used in cardiovascular interventions may eliminate the need for separate IVUS catheters and expand the use of IVUS in a larger portion of the vasculature. High frequency capacitive micro machined ultrasonic transducer (CMUT) arrays should be integrated with interface electronics and placed on the guide wire for this purpose. Besides small size, this system-on-a-chip (SoC) front-end should connect to the back-end imaging system with a minimum number of wires to preserve the critical mechanical properties of the guide wire. We present a 40 MHz CMUT array interface SoC, which will eventually use only two wires for power delivery and transmits image data using a combination of analog-to-time conversion (ATC) and an impulse radio ultra-wideband (IR-UWB) wireless link. The proof-of-concept prototype ASIC consumes only 52.8 mW and occupies 4.07 mm2 in a 0.35-μm standard CMOS process. A rectifier and regulator power the rest of the SoC at 3.3 V from a 10 MHz power carrier that is supplied through a 2.4 m micro-coax cable with an overall efficiency of 49.1%. Echo signals from an 8-element CMUT array are amplified by a transimpedance amplifier (TIA) array and down-converted to baseband by quadrature sampling using a 40 MHz clock, derived from the power carrier. The ATC generates pulse-width-modulated (PWM) samples at 2 × 10 MS/s with 6 bit resolution, while the entire system achieved 5.1 ENOB. Preliminary images from the prototype system are presented, and alternative data transmission and possible future directions towards practical implementation are discussed.
机译:在心血管介入治疗中使用的导丝上具有血管内超声(IVUS)成像功能可以消除对单独IVUS导管的需求,并扩大IVUS在较大脉管系统中的使用。高频电容微加工超声换能器(CMUT)阵列应与接口电子设备集成在一起,并放置在导丝上以达到此目的。除了体积小之外,该片上系统(SoC)前端还应使用最少数量的导线连接到后端成像系统,以保留导丝的关键机械性能。我们提出了一种40 MHz CMUT阵列接口SoC,该芯片最终将仅使用两条线进行功率传输,并结合使用模拟时间转换(ATC)和脉冲无线电超宽带(IR-UWB)无线技术来传输图像数据链接。概念验证原型ASIC在0.35μm标准CMOS工艺中仅消耗52.8 mW的功率,并占据4.07 mm2的面积。整流器和调节器通过10 mH的载波以3.3 V的电压为SoC的其余部分供电,该载波通过2.4 m微型同轴电缆提供,总效率为49.1%。来自8元素CMUT阵列的回波信号由跨阻放大器(TIA)阵列放大,并通过使用40 MHz时钟进行正交采样而下变频至基带,该时钟源自电源载波。 ATC以2×10 MS / s的速度生成脉宽调制(PWM)样本,分辨率为6位,而整个系统则达到5.1 ENOB。展示了来自原型系统的初步图像,并讨论了替代性数据传输以及可能走向实际实现的方向。

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