← 返回 JSSC 论文列表JSSC 2021第10期RF & Wireless0.18µm
A Transceiver ASIC for a Single-Cable 64-Element Intra-V ascular Ultrasound
一款用于单电缆64阵元血管内超声探头的收发器ASIC,支持3D成像。
0.18-µm HV CMOS, 30V发射脉冲, 71dB动态范围, 21MHz带宽, 6mW接收功耗
血管内超声ASIC3D成像高压开关低噪声放大器
▸创新点1:单微同轴电缆连接64阵元换能器,通过单一电缆实现64个压电换能器阵元与成像系统的连接,显著简化了导管内部布线复杂度,提升了系统的集成度和可靠性。
▸创新点2:集成高压开关与低噪声放大器,采用0.18-µm HV CMOS工艺,集成了高压开关和低噪声放大器,支持30-V高压脉冲发射和71-dB动态范围的接收放大,实现了高效信号处理。
▸创新点3:支持全合成孔径成像与阵元测试模式,通过调制供电电压传输配置数据,实现全合成孔径成像,并集成阵元测试模式,检测换能器阵元的连接状态,提升系统可靠性和成像质量。
▸创新点4:低功耗设计,接收模式下仅消耗6 mW,适合在导管尖端等受限空间内长时间工作,提升了系统的实用性和续航能力。
Abstract
This article presents an application-specific integrated circuit (ASIC) designed for intra-vascular ultrasound imaging that interfaces 64 piezoelectric transducer elements to an imaging system using a single micro-coaxial cable. Thus, it allows a single-element transducer to be replaced by a transducer array to enable 3-D imaging. The 1.5-mm-diameter ASIC is intended to be mounted at the tip of a catheter, directly integrated with a 2-D array of piezoelectric transducer elements. For each of these elements, the ASIC contains a high-voltage (HV) switch, allowing the elements to transmit an acoustic wave in response to an HV pulse generated by the imaging system. A low-noise amplifier then amplifies the resulting echo signals and relays them as a signal current to the imaging system, while the same cable provides a 3-V supply. Element selection and other settings can be programmed by modulating configuration data on the supply, thus enabling full synthetic aperture imaging. An integrated element test mode measures the element capacitance to detect bad connections to the transducer elements. The ASIC has been fabricated in a 0.18- µm HV CMOS technology and consumes only 6 mW in receive. Electrical measurements show correct switching of 30-V transmit pulses and a receive amplification with a 71-dB dynamic range, including 12 dB of programmable gain over a 3-dB bandwidth of 21 MHz. The functionality of the ASIC has been successfully demonstrated in a 3-D imaging experiment.