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A 5 Mb/s UWB-IR Transceiver Front-End for Wireless Sensor Networks in 0.13 $mu{hbox{m}}$ CMOS

机译:用于0.13 $ mu {hbox {m}} $ CMOS

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This paper presents a fully integrated UWB-IR transceiver front-end operating in the 7.25–8.5 GHz band designed for high overall transmission and detection energy efficiency and robustness to interferers. The transceiver front-end features a pulsed transmitter that wakes up when triggered by a digital signal, generates a pulse, and automatically switches-off in less than 2 ns. The receiver includes an LNA, a VGA, a squarer, a windowed integrator, and a comparator to perform PPM demodulation of the data. A prototype of the transceiver front-end was integrated in a 0.13 $mu{hbox{m}}$ CMOS technology. The transmitter delivers 13 pJ/pulse to the antenna consuming about 190 pJ/b, with an efficiency $eta_{T}=7%$, well in excess of comparable designs. Using pulse polarity scrambling, it complies with the FCC spectral emission limits up to a pulse repetition frequency (PRF) of 5 MHz. The receiver achieves a sensitivity of $-$87 dBm at a PRF of 100 kHz, and of $-$70 dBm at a PRF of 5 MHz, while consuming 4.2 mW. It can tolerate interferers up to $-$12 dBm at 5.4 GHz.
机译:本文介绍了一个完全集成的UWB-IR收发器前端,其工作在7.25–8.5 GHz频带内,旨在实现较高的整体传输和检测能效以及对干扰源的鲁棒性。收发器前端具有脉冲发射器,该脉冲发射器在被数字信号触发时会唤醒,产生脉冲,并在不到2 ns的时间内自动关闭。接收器包括一个LNA,一个VGA,一个平方器,一个窗口积分器和一个比较器,用于执行数据的PPM解调。收发器前端的原型已集成到0.13 CMOS技术中,该技术是0.13 $ mu {hbox {m}} $ CMOS技术。发射器向天线发送13 pJ /脉冲,消耗约190 pJ / b,效率为 $ eta_ {T} = 7%$ < / formula>,远远超过了同类设计。使用脉冲极性加扰,它符合FCC频谱发射限制,脉冲重复频率(PRF)高达5 MHz。接收机在100 kHz PRF时的灵敏度达到 $-$ 87 dBm,而灵敏度达到 “> $-$ 在5 MHz的PRF时为70 dBm,而功耗为4.2 mW。在5.4 GHz频率下,它可以容忍高达12 dBm的 $-$ 12 dBm。

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