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An Impulse Radio PWM-Based Wireless Data Acquisition Sensor Interface

机译:基于脉冲无线电PWM的无线数据采集传感器接口

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摘要

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 IR transmitter with an all-digital power amplifier combines them while preserving the timing information by transmitting impulses at the PWM rising and falling edges. On the receiver 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 imaging system in a 0.18-$mu ext{m}$HV CMOS process, occupying 0.18 mm2active 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 at$2 imes 10$MS/s.
机译:提出了一种基于脉冲无线电脉冲宽度调制(IR-PWM)的传感器接口电路,用于具有极端尺寸和功率限制的低功率和高吞吐量无线数据采集系统(wDAQ)。两个三斜率模数转换器(ATC)将两个带宽高达5 MHz的模拟信号转换为PWM信号,带有全数字功率放大器的IR发射器将它们组合在一起,同时通过发送来保留时序信息在PWM上升沿和下降沿产生脉冲。在接收器端,紧随包络检波器的RF-LNA会恢复传入的脉冲,T触发器将脉冲序列恢复为PWM,以由时间数字转换器(TDC)进行数字化。介绍了有关ATC的详细分析和设计指南,并以0.18- n $ mu text {m} $ nHV CMOS工艺,占用0.18毫米 n 2 n无效区域,并且从1.8 V电源消耗3.94 mW。在该原型中建议的TDC产生7位分辨率,而整个wDAQ在以下位置达到5.8有效位数: n $ 2 乘以10 $ nMS / s。

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