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A 0.3 GHz to 1.4 GHz N-path mixer-based code-domain RX with TX self-interference rejection

机译:具有TX自干扰抑制功能的0.3 GHz至1.4 GHz N路径基于混频器的码域RX

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A code-domain N-path RX is proposed based on PN-code modulated LO pulses for concurrent reception of two code-modulated signals. Additionally, a combination of Walsh-Function and PN sequence is proposed to translate in-band TX self-interference (SI) to out-of-band at N-path RX output enabling frequency filtering for high SI rejection. A 0.3 GHz-1.4 GHz 65-nm CMOS implementation has 35 dB gain for desired signals and concurrently receives two RX signals while rejecting mismatched spreading codes at RF input. Proposed TX SI mitigation approach results in 38.5 dB rejection for -11.8dBm 1.46 Mb/s QPSK modulated SI at RX input. The RX achieves 23.7dBm OP1dB for in-band SI, while consuming ~35mW and occupies 0.31mm.
机译:提出了一种基于PN码调制LO脉冲的码域N路径RX,用于同时接收两个码调制信号。此外,提出了沃尔什功能和PN序列的组合,以将带内TX自干扰(SI)转换为N路径RX输出处的带外,从而实现了对高SI抑制的频率滤波。 0.3 GHz-1.4 GHz 65-nm CMOS实现的期望信号增益为35 dB,并同时接收两个RX信号,同时拒绝RF输入上不匹配的扩展码。提议的TX SI缓解方法可在RX输入处对-11.8dBm 1.46 Mb / s QPSK调制的SI产生38.5 dB的抑制。 RX的带内SI达到23.7dBm OP1dB,消耗约35mW,占用0.31mm。

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