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JSSC 2019第6期RF & Wireless0.18μm

Reference-Less Time-Division Duplex Transceiver IC for a Renal

首款用于肾去神经术的时分双工收发器IC,实现微创手术并减少并发症。
0.18-μm HV BCDMOS, 2.1 mm², ±0.5°C温度测量精度, 120-V pp RF信号
肾去神经术时分双工收发器IC微创手术温度传感器
创新点1:首次实现时分双工收发器IC,采用时间分割技术在同一频段实现双向通信,解决了传统肾动脉消融导管中多线束带来的尺寸限制问题,使导管直径缩小37.5%(1.6mm),达到5 Fr级别。这是系统架构级的创新。
创新点2:六电极共享四根电线进行分组通信,通过创新的多路复用技术实现电极独立控制,在保证射频能量传输(120Vpp摆幅、6W功率)的同时完成温度和阻抗监测,减少了传统方案中50%的布线需求。属于电路设计创新。
创新点3:集成高精度BJT温度传感器与阻抗测量功能,在65-75°C范围内实现±0.5°C的3σ精度(需单点校准),并采用0.18μm HV BCDMOS工艺将高压供电(±35V DC)与信号处理集成在2.1mm²芯片内。这是传感与工艺协同创新。
创新点4:采用500kHz 21Vrms交流供电结合直流偏压的混合供能方案,在70V击穿电压限制下实现高压射频输出,同时通过片上电源管理满足不同模块的电压需求(从低压逻辑到高压驱动)。属于电源电路创新。
Abstract
This paper presents the first time-division duplex transceiver integrated circuit (IC) for a 5 Fr (1.6 mm), six-electrode renal denervation (RDN) catheter for treating resistant hypertension. The diameter of the resulting RDN catheter, with each IC encapsulated in a platinum electrode, is 37.5% smaller than those of conventional catheters, enabling minimally invasive surgery with reduced complications. The six electrodes sharing only four electrical wires perform packet communication with an external power control unit for inde- pendent operation and deliver the designated radio-frequency (RF) energy to the renal artery wall while measuring the local temperature and impedance. The measured 3 σ inac- curacy of a bipolar junction transistor (BJT)-based on-chip temperature sensor from 65 °C to 75 °C is ±0.5 °C after one-point trimming. Two 500-kHz, 21-V rms ac signals with ±35-V dc potentials are used as power supplies to transfer up to 6-W RF ablation signals with 120-V pp swing while keeping the maximum dc supply voltages of the ICs less than the breakdown voltage of 70 V . The proposed RDN IC fabricated using a 0.18-μm high-voltage bipolar, CMOS, LDMOS (HV BCDMOS) occupies an area of 2.1 mm 2.