Lim Jaemyung, Rezvanitabar Ahmad, Degertekin F Levent, Ghovanloo Maysam
GT-Bionics lab, School of Electrical and Computer Engineering, Atlanta, GA, USA.
George W. Woodruff School of Mechanical Engineering, Atlanta, GA, USA.
IEEE Sens J. 2019 Jan 15;19(2):603-614. doi: 10.1109/JSEN.2018.2877889. Epub 2018 Oct 29.
A sensor interface circuit based on impulse radio pulse width modulation (IR-PWM) is presented for low power and high throughput wireless data acquisition systems (wDAQ) with extreme size and power constraints. Two triple-slope analog-to-time converters (ATC) convert two analog signals, each up to 5 MHz in bandwidth, into PWM signals, and an impulse radio (IR) transmitted (Tx) with an all-digital power amplifier (PA) combines them while preserving the timing information by transmitting impulses at the PWM rising and falling edges. On the receiver (Rx) side, an RF-LNA followed by an envelope detector recovers the incoming impulses, and a T-flipflop reverts the impulse sequence back to PWM to be digitized by a time-to-digital converter (TDC). Detailed analysis and design guideline on ATC was introduced, and a proof-of-concept prototype was fabricated for a capacitive micromachined ultrasound transducer (CMUT) imaging system in a 0.18-m HV CMOS process, occupying 0.18 mm active area and consuming 3.94 mW from a 1.8 V supply. The proposed TDC in this prototype yielded 7-bit resolution, while the entire wDAQ achieved 5.8 effective number of bits (ENOB) at 2 × 10 MS/s.
本文提出了一种基于脉冲无线电脉宽调制(IR-PWM)的传感器接口电路,用于尺寸和功耗受限的低功耗、高吞吐量无线数据采集系统(wDAQ)。两个三斜率模数时间转换器(ATC)将两个带宽高达5 MHz的模拟信号转换为PWM信号,一个通过全数字功率放大器(PA)发射(Tx)的脉冲无线电(IR)在PWM上升沿和下降沿发送脉冲时将它们组合起来,同时保留定时信息。在接收器(Rx)端,一个射频低噪声放大器(RF-LNA)后跟一个包络检波器恢复输入脉冲,一个T触发器将脉冲序列恢复为PWM,以便由时间数字转换器(TDC)进行数字化。文中介绍了ATC的详细分析和设计指南,并采用0.18μm HV CMOS工艺为电容式微机械超声换能器(CMUT)成像系统制作了一个概念验证原型,其有源面积为0.18 mm,从1.8 V电源获取的功耗为3.94 mW。该原型中提出的TDC具有7位分辨率,而整个wDAQ在2×10 MS/s时实现了5.8有效位数(ENOB)。