IEEE Trans Biomed Circuits Syst. 2015 Jun;9(3):362-9. doi: 10.1109/TBCAS.2014.2328492. Epub 2014 Aug 12.
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 < 10(-7) . 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 ~433 MHz.
本文报道了一种节能型、脉冲无线电超宽带 (IR-UWB) 无线链路,工作在 3-5GHz 频段,用于在厘米到米级距离内以扩展到数十兆比特每秒的速率进行数据遥测。该链路包括一个全数字、集成发射器 (TX),采用 90nm 1P/9M CMOS 工艺制造,其中包括一个波形合成脉冲发生器和一个用于开关键控 (OOK) 脉冲调制和相位扰码的定时发生器。该链路还包括一个能量检测接收器 (RX),采用商用现成 (COTS) 组件实现,用于射频 (RF) 滤波、放大、对数功率检测,用于数据解调,并自动电平控制,以在距离变化时实现稳健运行。该 TX 和 RX 采用小型化 UWB 芯片天线,可在 10cm-1m 范围内以高达 50Mbps 的速率无线传输伪随机二进制序列 (PRBS) 数据。此外,采用高增益喇叭天线作为 RX,可在 50cm-4m 范围内以高达 67Mbps 的速率无线传输 PRBS 数据,TX 能耗为 30pJ/b(即 2mW 功率消耗),工作电压为 1.2V。在这两种情况下,测量的误码率 (BER) 均<10(-7)。还包括使用 IR-UWB 链路进行的碳纤维微电极 (CFM) 背景电流的无线记录结果,与使用约 433MHz 的传统频移键控 (FSK) 链路获得的结果非常匹配。