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A fully-integrated reconfigurable dual-band transceiver for short range wireless communication in 180nm CMOS

机译:完全集成的可重配置双波段收发器,用于180nm CMOS中的短距离无线通信

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A fully-integrated reconfigurable dual-band transceiver (TRX) is presented for short range wireless communication. The TRX has two independent RF front-ends for each band with a shared analog baseband to achieve optimum power and cost. In Sub-GHz (760-960MHz) band, the maximum 75dBc 3 harmonic rejection ratio (HRR) is achieved by inserting a RFA with notch filtering. In 2.4GHz band, a single-ended-to-differential (S2D) RFA with phase and gain error compensation is proposed. By optimizing two bands separately, the RX achieves a NF of 5.1dB and 4.2dB, respectively. A Σ-Δ fractional-N PLL with two switchable Class-C VCOs is employed to provide the LOs. Moreover, the multi-mode CMOS PAs are integrated, which achieve the measured output P1dB (OP1dB) of 16.3dBm and 14.8dBm with 25% PAE for Sub-GHz and 2.4GHz bands. Furthermore, to optimize the PA's back-off efficiency, the power-control loop is proposed to detect the input signal PAPR in real time and flexibly reconfigure the PA's operation modes. With this proposed technique, the PAE in Sub-GHz band is improved by ×3.24 and ×1.41 at 9dB and 3dB back-off powers. In 2.4GHz band, the PAE is improved by ×2.17 at 6dB back-off power. The measured results have demonstrated that this presented transceiver has achieved comparable or even better performance in terms of noise, HRR, OP1dB and power efficiency compared with the-state-of-the-arts.
机译:提出了一种用于短距离无线通信的完全集成的可重配置双波段收发器(TRX)。 TRX在每个频带具有两个独立的RF前端,并具有一个共享的模拟基带,以实现最佳的功率和成本。在Sub-GHz(760-960MHz)频带中,通过插入带有陷波滤波器的RFA,可实现最大75dBc 3的谐波抑制比(HRR)。在2.4GHz频带中,提出了具有相位和增益误差补偿的单端至差分(S2D)RFA。通过分别优化两个频段,RX分别实现了5.1dB和4.2dB的NF。采用具有两个可切换C类VCO的Σ-Δ小数N PLL来提供LO。此外,还集成了多模CMOS PA,在Sub-GHz和2.4GHz频段,PAE为25%时,实测输出P1dB(OP1dB)为16.3dBm和14.8dBm。此外,为了优化PA的后退效率,提出了功率控制环路来实时检测输入信号PAPR并灵活地重新配置PA的工作模式。利用此提议的技术,在9dB和3dB的补偿功率下,Sub-GHz频带中的PAE分别提高了3.24倍和1.41倍。在2.4GHz频段,PAE在6dB的退避功率下提高了2.17倍。测量结果表明,与最新技术相比,该款收发器在噪声,HRR,OP1dB和功率效率方面均达到了相当甚至更好的性能。

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