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30 pJ/b, 67 Mbps, Centimeter-to-Meter Range Data Telemetry With an IR-UWB Wireless Link

机译:带有IR-UWB无线链接的30 pJ / b,67 Mbps,厘米到米范围的数据遥测

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This paper reports an energy-efficient, impulse radio ultra wideband (IR-UWB) wireless link operating in 3–5 GHz for data telemetry over centimeter-to-meter range distances at rates extended to tens of Mbps. The link comprises an all-digital, integrated transmitter (TX) fabricated in 90 nm 1P/9M CMOS that incorporates a waveform-synthesis pulse generator and a timing generator for on-off-keying (OOK) pulse modulation and phase scrambling. The link also incorporates an energy-detection receiver (RX) realized with commercial off-the-shelf (COTS) components that performs radio-frequency (RF) filtering, amplification, logarithmic power detection for data demodulation and automatic level control for robust operation in the presence of distance variations. Employing a miniaturized, UWB, chip antenna for the TX and RX, wireless transmission of pseudo-random binary sequence (PRBS) data at rates up to 50 Mbps over 10 cm–1 m is shown. Further, employing a high-gain horn antenna for the RX, wireless transmission of PRBS data at rates up to 67 Mbps over 50 cm–4 m is shown with a TX energy consumption of 30 pJ/b (i.e., power consumption of 2 mW) from 1.2 V. The measured bit error rate (BER) in both cases is . Results from wireless recording of the background current of a carbon-fiber microelectrode (CFM) in one fast-scan cyclic voltammetry (FSCV) scan using the IR-UWB link are also included, exhibiting excellent match with those obtained from a conventional frequency-shift-keyed (FSK) link at MHz.
机译:本文报告了一种高效节能的脉冲超宽带无线(IR-UWB)无线链路,其工作频率为3-5 Mbps,可在厘米到米的距离范围内以数十Mbps的速率进行数据遥测。该链路包括以90 nm 1P / 9M CMOS制成的全数字集成发射机(TX),该发射机集成了波形合成脉冲发生器和用于开关键控(OOK)脉冲调制和相位加扰的定时发生器。该链路还集成了由商用现货(COTS)组件实现的能量检测接收器(RX),该组件执行射频(RF)滤波,放大,对数功率检测以进行数据解调,并自动进行电平控制以实现可靠的操作。距离变化的存在。显示了一种用于TX和RX的小型UWB芯片天线,显示了在10 cm–1 m内以高达50 Mbps的速率无线传输伪随机二进制序列(PRBS)数据。此外,对于RX使用高增益喇叭天线,在50 cm–4 m上以高达67 Mbps的速率无线传输PRBS数据,显示TX能耗为30 pJ / b(即,功耗为2 mW) )从1.2 V开始。两种情况下的实测误码率(BER)为。还包括使用IR-UWB链接在一次快速扫描循环伏安法(FSCV)扫描中无线记录碳纤维微电极(CFM)背景电流的结果,与通过常规频移获得的结果非常匹配键控(FSK)链接(MHz)。

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